Attachment on-demand module capable of gaining fingertip touch and moving along with screen, equipment and use method
By quickly attaching a gain fingertip touch module to the surface of a portable terminal, the problem that existing lubrication and anti-fouling technologies cannot be adapted to e-sports level game operations is solved, achieving touch sensitivity and stability in high-frequency operations and improving the player experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- XIAOWU TECHNOLOGY (GUANGZHOU) CO LTD
- Filing Date
- 2026-02-03
- Publication Date
- 2026-04-21
AI Technical Summary
Existing touch device lubrication and anti-fouling technologies cannot dynamically adapt to e-sports-level game operation modes, resulting in decreased operating feel and increased touch latency, failing to meet players' needs for rapid recovery and stability during high-frequency operations.
A boost fingertip touch attachment module is provided that can move with the screen and is connected to the surface of a portable terminal via a quick-connect method. It includes a wiping part and a non-wiping part. The wiping part is used to attach functional loads to enhance the fingertip touch effect.
It achieves the maintenance of touch sensitivity and stability during high-frequency operations, reduces the difficulty and time cost of frequent maintenance, and improves the player's operating experience in e-sports games.
Smart Images

Figure CN121900640A_ABST
Abstract
Description
Technical Field
[0001] This disclosure relates to the field of touch-assisted enhancement devices, and more particularly to an attachment-on module, device, and usage of enhanced fingertip touch that can move with the screen. Background Technology
[0002] With the rapid development of industries such as mobile gaming and esports, the operational precision, response speed, and feel of portable touchscreen devices directly impact user experience. Especially given the widespread adoption of touchscreen interaction technology in portable touchscreen devices and the unique nature of gaming scenarios, high-frequency swiping and multi-touch operations in games place higher demands on the smoothness, sensitivity, and stability of screen touch.
[0003] Current industry technology development trends, in terms of hardware, focus on solving the problem of physical friction, with the core being improving lubrication and anti-fouling technologies between fingertips and touchscreen devices. The combination of nanomaterials and composite coatings has become a research hotspot, but existing solutions still have shortcomings in compatibility (e.g., different screen materials, temperature and humidity environments) and adaptability to user operating habits. Existing lubrication and anti-fouling technologies include: physical coating solutions, such as nanofilm lubricating layers (approximately 0.001 to 0.005 mm thick); chemical additive solutions, such as lubricating sprays containing silicone oil or alcohol; and user-aided solutions, such as anti-slip powder, wearable finger sleeves, or frosted films. In terms of software, especially high-end gaming devices, dynamic touch management technologies are being explored, such as adjusting touch sensitivity in different areas to extend the lifespan of frequently used areas, but the physical touch problem remains unsolved.
[0004] Currently, in the mobile gaming field, the lubrication and anti-fouling technologies for touchscreen devices mainly rely on solutions such as gaming finger sleeves, temporary spraying of anti-slip powder for mobile games, non-stick fingerprint coatings, and screen non-stick films. However, (1) wearing finger sleeves brings extra burden to users, especially for e-sports level players. The isolation layer between the finger sleeve and the screen causes a decrease in the sensitivity of skin touch feedback, and there is a feeling of tightness and binding, stuffiness and sweating after prolonged use. After repeated use, the finger sleeve is easy to stretch, deform and be damaged; (2) anti-slip powder is easy to interfere with capacitive touch signals due to particle residue, and the poor adhesion makes it easy to fall off. Therefore, a large amount is usually needed before the game to extend the application time of a single application, but this also leads to an excessive amount of single application, which can easily cause the slipping effect of the thick pad and leave residue on the screen; (3) although the non-stick fingerprint coating is It can reduce the initial friction coefficient, but the wear resistance is insufficient under high frequency operation, which leads to the friction coefficient increasing exponentially with the use time, and a period of time is required after each application for the coating to stabilize; (4) Although the screen non-stick film can physically isolate wear, it sacrifices light transmittance and increases touch latency (about 5-10ms), which reduces the visual experience and the character's extreme reaction speed for e-sports players; (5) Although auxiliary lubricating tools containing chemical additives (such as silicone oil spray) can temporarily improve smoothness, long-term use may corrode the oleophobic layer or cause the screen light transmittance to decrease and there may be a risk of corrosion. Summary of the Invention
[0005] The problem to be solved by the present invention However, traditional screen lubrication and anti-smudge technologies cannot dynamically adapt to the operation modes and player needs of e-sports games. For example, in the game League of Legends (LOL), a tense operation during a defensive, pushing, or ambush sequence can last for several minutes. During this time, a shift in attention or a finger being away from the screen for more than a second (statistically, skill animation delays are about 200ms to 1000ms, and the player's maximum reaction speed is about 120ms to 300ms) can affect the current round of combat. When fingers are tense, sweaty, or there is high touch resistance, it is impossible to quickly restore normal operation through existing solutions. Choosing wearable finger sleeves means that they need to be put on in advance and sacrifice the feel of operation. Choosing a screen protector sacrifices light transmittance and increases touch latency. Choosing a fingerprint-resistant coating requires a period of time to solidify after each application. Choosing a mobile game anti-slip powder requires frequent reapplication from a long distance in the storage box.
[0006] In view of this, there is an urgent need for a solution that can be simple to operate, quick to use, sensitive to touch, highly stable, cost-effective and ergonomic for different touch scenarios, so as to meet the touch operation needs of players.
[0007] This disclosure was made in view of the above-mentioned problems, and the purpose of this disclosure is to provide an attached module, device and usage of gain fingertip touch that can move with the screen.
[0008] Solution to the problem A first aspect of this disclosure provides an attachable module for enhanced fingertip touch control that moves with a screen, the screen being included in a portable terminal. The attachable module comprises: a connecting member for engaging the attachable module to a user-accessible location on a target device surface, the target device surface including the portable terminal surface or a quick-connect peripheral device surface of the portable terminal; a carrier member having a wiping portion and a non-wiping portion, the wiping portion being configured to carry a functional load, the functional load being configured to allow a user to swipe it onto the touch finger, the functional load being used to enhance fingertip touch control on the screen; and the non-wiping portion being configured to be fixedly or movably connected between the connecting member and the wiping portion.
[0009] Preferably, the attachment module further includes: the joining method includes a quick-connect method, a one-piece molding method, or a fixed connection method; and / or, the wiping part has a functional structure or surface functionalization structure that can fix or adsorb powder, paste, or liquid; and / or, the attachment module further includes a functional load, which is stored in the carrier member and enables the user to quickly wipe it onto the touch finger, the functional load being used to enhance the fingertip touch on the screen.
[0010] Preferably, the attached module further includes, but is not limited to: the quick-connect method includes adhesive, magnetic, suction cup, clip, plug-in, or socket; or, The wiping section further includes: the functionalized structure includes a physical adsorption structure, a chemical adsorption structure, a mechanical fixation structure, or a functional material, wherein the functional material includes a smart responsive material or a magnetic material; the surface functionalization includes surface physical structure design, surface chemical functionalization modification, electrostatic adsorption, electrostatic flocking, and / or wettability control; or, The functional loading material further includes: in powder, paste, or solid form; or, The functional loading materials also include: solid mobile game powder, liquid anti-slip powder / paste, talc, magnesium carbonate, or fingerprint-resistant oil.
[0011] Preferably, the wiping part further includes: The functionalized structure also includes, but is not limited to: the physical adsorption structure including porous materials, fiber structures, fabric structures or surface rough structures; the chemical adsorption structure being a polymer gel, adhesive or ion exchange material; and the mechanical fixation structure including a container, a mesh or a sandwich structure. The surface functionalization structure also includes, but is not limited to: the surface physical structure design including porous structure, micro / nano rough structure, fiber structure or network structure; or, the surface chemical functionalization modification including polymer brush, gel layer, superphilic / hydrophobic surface or anion / cation exchange coating; or, the electrostatic flocking structure is a functionalization process that uses an electrostatic field to vertically or obliquely oriented and fix short fibers to the surface of the substrate included in the non-wiping part; or, the wettability control structure is to reduce the surface energy of the load by controlling the surface wettability of the load, thereby reducing the aggregation of the load and improving its dispersibility and adsorption efficiency.
[0012] Optionally, the physical adsorption structure may be, but is not limited to, porous materials, including sponges, foams, powder puffs, silicone composite sponges, activated carbon, filter paper, or gauze; or, the physical adsorption structure may be, but is not limited to, fibrous structures, including non-woven fabrics, cotton, cardboard, electrostatic adsorption paper, or activated carbon composite paper; or, the physical adsorption structure may be, but is not limited to, woven fabrics, including terry cloth, velvet, corduroy, or brushed fabrics; or, the physical adsorption structure may be, but is not limited to, surface roughness structures, including hooked structures, sandpaper, or abrasive surfaces. Alternatively, the chemical adsorption structure may be, but is not limited to, a polymeric gel, including hydrogels or water-absorbing resins; or, the chemical adsorption structure may be, but is not limited to, an adhesive, including tapes, patches, waxy matrices, or hot melt adhesives; or, the chemical adsorption structure may be, but is not limited to, ion exchange materials, including zeolites or silica gel. Alternatively, the mechanical fixing structure may be, but is not limited to, containers, including porous box-shaped bodies and bottles with lids; or, the mechanical fixing structure may include a mesh or sandwich structure, including a silicone sealing ring for a leak-proof cup lid. Alternatively, the functional material may be, but is not limited to, a smart response material, including a thermosensitive material, a photothermal conversion material, or a magnetic response material; or, the functional material may be, but is not limited to, a magnetic material, including a magnet and iron powder.
[0013] Preferably, the carrier component further includes: Option A: The non-wiping part is constructed as a single piece, with the wiping part and the connecting member respectively located on the top and bottom surfaces of the single piece; or, the non-wiping part is constructed as a plate, with the wiping part and the connecting member respectively located on the top and bottom surfaces of the plate, or the wiping part and the connecting member respectively located on the side and bottom surfaces of the plate; or Option B: The non-wiping part is constructed as a first part, a second part, and a hinge structure between the first and second parts. The hinge structure allows the first and second parts to switch between a folded state and an unfolded state. In the folded state, the top surfaces of both the first and second parts are located within the inner perimeter. The wiping part is located on the top surface of the first part and / or the top surface of the second part, and the connecting member is located on the bottom surface of the first part or the side surface of the second part. Option C: The non-wiping part is constructed to have a first connector, the first connector having a first bending structure, one end of the first bending structure being provided with the wiping part and used to allow the wiping part to extend in a different direction and / or extend further, and the first bending structure including a first bend and a first extension section and a second extension section at both ends of the first bend, wherein the first extension section is connected to the connecting member, and the second extension section is connected to the wiping part such that the wiping surface of the wiping part faces outward of the first bending structure, and the first bend is configured as a fixed connection or a movable connection.
[0014] Preferably, the carrier component further includes: Scheme A further includes: Sub-scheme A1: The sheet or plate is configured as a strip, and the connecting member is used to configure the attached accompanying module to a target side of the surface of the portable terminal or the surface of the quick-connect peripheral device of the portable terminal in the quick-connect manner, and the length direction of the strip follows the length direction of the target side, or... Sub-scheme A2: The non-wiping part is constructed having a first base, and the first base having a rear side surface and a top surface, wherein the first base is disposed at the rear of the rear side surface of the target device during operation, and the wiping part is disposed on the top surface or rear side surface of the first base such that the wiping surface of the wiping part faces outward from the first base, or... Sub-scheme A3: The non-wiping part is constructed to have a second base, and the second base has a bottom surface and a top surface, and the second base is configured such that when working, the bottom surface is attached to the top surface of the target device, and the area of the bottom surface of the second base is smaller than the top surface of the target device, and the wiping part is disposed on the top surface of the second base such that the wiping surface of the wiping part faces the outward direction of the second base; Sub-scheme A4: The non-wiping part is constructed to have a third base and a connected sub-part, the third base having a bottom surface and a top surface, and the third base being configured such that the bottom surface is attached to the top surface of the target device during operation, and the area of the bottom surface of the third base being smaller than the top surface of the target device, and the wiping part being disposed on the top surface of the third base such that the wiping surface of the wiping part faces outward from the third base, and the sub-part being configured to be located on the left side of the target device during operation, and the right side of the sub-part being attached to the left side of the target device during operation; Scheme B further includes: Sub-scheme B1: The first part and the second part both constitute a plate and are configured as strips, and the connecting member is used to configure the attached module to a side of a target side of the portable terminal surface or the portable terminal's quick-connect peripheral device surface in the quick-connect manner, and the length direction of the strip is in line with the length direction of the target side. Scheme C further includes: Sub-scheme C1: The first extension segment and the second extension segment in the first bending structure respectively include a first plate and a second plate, wherein the connecting member connected to the first plate is used to configure the attached module to the bottom of the bottom surface of the portable terminal surface or the quick-connect peripheral device surface of the portable terminal in the quick-connect manner, and the second plate is configured to a side portion of a target side surface of the portable terminal surface or the quick-connect peripheral device surface of the portable terminal during operation, and the wiping surface of the wiping part connected to the second plate is configured to the top surface or side surface of the second plate, or... Sub-scheme C2: The first extension segment and the second extension segment in the first bending structure respectively include a first plate and a second plate. The first plate is connected to a connecting member for quickly attaching the attached module to the bottom of the bottom surface of the portable terminal surface or the quick-connect peripheral device surface of the portable terminal. The second plate, during operation, is positioned on the side of a target side of the portable terminal surface or the quick-connect peripheral device surface. The wiping surface of the wiping part connected to the second plate is positioned on the top or side surface of the second plate. The quick-connect configuration allows the position of the connecting member at the bottom of the bottom surface to be adjustable, thereby enabling the spatial position of the connected second plate to be adjustable in height from the target side surface. Sub-scheme C3: The first extension segment and the second extension segment in the first bending structure respectively include a first plate and a second plate. The first plate is connected to a connecting member for quickly attaching the attached module to the bottom of the bottom surface of the portable terminal surface or the quick-connect peripheral device surface of the portable terminal. The second plate is positioned on the side of a target side of the portable terminal surface or the quick-connect peripheral device surface during operation. The wiping surface of the wiping part connected to the second plate is positioned on the top or side surface of the second plate. The wiping surface of the wiping part is configured to have a projection onto the top surface of the portable terminal surface or the quick-connect peripheral device surface during operation. Sub-scheme C4: The connecting member is configured to allow the first extension segment to be attached to the bottom surface of the target device in the quick-connect manner during operation, and the second extension segment is configured to have a projection on the front, rear, left, or right side of the target device surface during operation, or... Sub-scheme C5: The connecting member is configured to allow the first extension segment to be attached to the bottom surface of the target device in the quick-connect manner during operation. The first extension segment includes a main portion and at least two secondary portions connected to the main portion and extending in a forked manner. The second extension segment is configured to have a projection onto the front or rear side of the target device surface during operation. The number of second extension segments includes two, which are sequentially arranged in a left-right relationship to the front of the front side or the rear of the rear side of the target device, and are also configured to be coupled to the user's left-hand touch finger and right-hand touch finger, respectively. Sub-scheme C6: The connecting member is constructed to have a plug, and the plug is used to allow the first extension to be inserted into a right side of the target device with a socket during operation, and the second extension is configured to have a projection on the front or rear side of the surface of the target device during operation.
[0015] Preferably, the carrier component further includes: the non-wiping portion in embodiment A is constructed as a single sheet, and the wiping portion and the connecting member are respectively disposed on the top and bottom surfaces of the sheet, including: The bottom surface of the sheet is adhesive, and the top surface is provided with one or more grooves for receiving and shaping the functional load; or, The bottom surface of the sheet is adhesive, and the top surface is provided with one or more grooves for receiving and shaping the functional load, wherein a first release liner is attached to the bottom surface of the sheet, and a second release liner is attached to the top of the grooves; or, The bottom surface of the sheet is adhesive, and the top surface is provided with one or more grooves for accommodating and shaping the functional load. The surface portion of the top surface other than the grooves is configured as a cleaning section; or... The bottom surface of the sheet is adhesive, and the top surface is provided with one or more grooves for receiving and shaping the functional load, and the grooves are formed by the inner periphery of an annular sheet attached to the top surface of the sheet; or, The bottom surface of the sheet is adhesive, and the top surface is configured to have a sheet-like wiping part attached thereto. The wiping part has a porous material, a fibrous structure, a fabric structure, a rough surface structure, or a mesh; or... The bottom surface of the sheet is adhesive, and the top surface is configured to have a sheet-like wiping part attached thereto. The wiping part has a porous material, a fiber structure, a fabric structure, a surface rough structure, or a mesh. A first release liner is attached to the bottom surface of the sheet, and a second release liner is attached to the top of the groove.
[0016] Optionally, the carrier component may also include, but is not limited to: The non-wiping part is configured to be made of one or more combinations of rigid materials, flexible materials, elastic materials, plastic materials, or metallic materials, and / or the wiping part is configured to be made of one or more combinations of rigid materials, flexible materials, elastic materials, plastic materials, or metallic materials; and / or, The top of the wiping section is provided with a protective cover to protect the functional load when not in use; or, the top of the wiping section is provided with a protective cover to protect the functional load when not in use, and the protective cover has a flip-top, sliding rail, magnetic, adhesive, easy-tear, clip-on, or plug-in opening and closing design; and / or, The number of wiping parts includes one or more, or the number of wiping parts is greater than two of which are configured in a left-right relationship to the front of the front side or the rear of the rear side of the target device during operation, and the two are further configured to be coupled to the user's left-hand touch finger and right-hand touch finger respectively; or the number of wiping parts is greater than two of which are configured in a left-right relationship to the left side of the left side or the right side of the target device during operation, and the two are further configured to be coupled to the user's left-hand touch finger and right-hand touch finger respectively; and / or, The functional load is configured to form a wiping surface after being loaded onto the wiping portion, and the surface of the wiping surface is covered with a release protective film; and / or, The functional load is configured to support external addition for replenishment after being reduced by the wiping action, or to support removal and replacement of the wiping section along with the functional load therein, and the wiping section can be quickly connected to the non-wiping section; and / or, The non-wiping portion has a support structure configured such that, under the action of a user's touch finger or non-touch finger, the wiping surface of the wiping portion rubs against the screen to transfer the functional load; and / or, The carrier component also includes a cleaning part configured to be attached to the carrier component and used to clean the user's touch finger.
[0017] A second aspect of this disclosure provides a device for enhanced fingertip touch that moves with the screen, characterized in that the device includes an attachment module as described in the first aspect above; the product type of the device includes a portable terminal or a quick-connect peripheral device for a portable terminal.
[0018] Optionally, the device further includes: The portable terminal includes, but is not limited to, mobile phones, tablets, handheld consoles, or touch screen displays; and / or, the quick-connect peripheral devices include, but are not limited to, multi-functional housings, auxiliary grip handles, screen auxiliary button devices, power banks, magnetic sheets, stands, or heat sinks.
[0019] A third aspect of this disclosure provides a method for using an attached, on-demand module for enhanced fingertip touch that moves with the screen, characterized in that the method includes: For use with the attachment module as described in the first aspect above, the usage further includes: when a user uses a portable terminal with a touch screen, according to the user's touch gain requirements for the screen, quickly connecting the attachment module to a user-touch finger-accessible location on the surface of the portable terminal or on the surface of a quick-connect peripheral device of the portable terminal; or... For use with the attachment-on module as described in the first aspect above, the usage further includes: when a user uses a portable terminal with a touch screen, according to the user's touch gain requirements for the screen, quickly connecting the attachment-on module to a user-touch finger-accessible location on the surface of the portable terminal or the surface of a quick-connect peripheral device of the portable terminal, and the attachment-on module is configured as a sheet and attached to a non-touch hot area of the target device during operation, or... For use with the attachment module as described in the first aspect above, the usage further includes: when a user uses a portable terminal with a touch screen, according to the user's touch gain requirements for the screen, quickly connecting the attachment module to a user-accessible location on the surface of the portable terminal or a quick-connect peripheral device of the portable terminal, thereby allowing the user's touch finger to quickly reach the attachment module and contact and acquire the functional load of the attachment module onto the touch finger via a carrier component included in the attachment module. This action process can be repeated rapidly and frequently during use as needed. When a user uses a portable terminal with a touchscreen, based on the user's enhanced touch requirements, the attached module is quickly connected to a user-accessible location on the surface of the portable terminal or the quick-connect peripheral device, within the user's reach. The surface of the portable terminal or the quick-connect peripheral device includes one or more of its sides. The user touches the front and rear halves of the screen with both hands respectively, allowing both hands to remain on the surface of the portable terminal or the quick-connect peripheral device during use. This satisfies the user's dynamic need for rapid and frequent repetition based on smooth touch input. When a user uses a portable terminal with a touch screen, according to the user's need for enhanced touch control, the attached accessory module is connected to a user-accessible location on the surface of the portable terminal or on the surface of a quick-connect peripheral device of the portable terminal via a quick-connect method. Then, the user's touch finger or non-touch finger acts on the support structure of the non-wiping part included in the attached accessory module, so that the wiping part rubs against the device to transfer the functional load included in the attached accessory module, and the functional load is used to enhance fingertip smoothness. or, For use in the device as described in the second aspect above, the device being quick-connected to an attachment module included in the device, the usage further comprising: when a user uses a portable terminal with a touch screen, according to the user's need for enhanced touch control of the screen, quick-connecting one or more of the attachment modules to one or more sides of the surface of a target device, thereby making the attachment modules accessible when the user holds the target device, so that the touch finger can pick up a functional load included in the attachment module, the functional load being used to enhance fingertip smoothness, or... When a user uses a portable terminal with a touch screen, according to the enhanced touch requirements of the screen, one or more connecting members included in the attached accessory module are quickly connected to the front, rear, left, right, top, or bottom surface of the surface of the portable terminal or the quick-connect peripheral device of the portable terminal, so that when the user holds the surface of the portable terminal or the quick-connect peripheral device of the portable terminal, the touch finger can reach the attached accessory module, so that the touch finger can pick up the functional load included in the attached accessory module, the functional load being used to enhance the smoothness of the fingertip; or, For use in the device as described in the second aspect above, the device is integrally formed or fixedly connected to the attachment module included in the device, the use further comprising: when a user uses a portable terminal with a touch screen, according to the user's need for enhanced touch on the screen, the user holds the target device and the touch finger directly touches the attachment module so that the touch finger dips into the functional load included in the attachment module, the functional load being used to enhance fingertip smoothness.
[0020] The solution proposed in this application achieves the following beneficial effects: Compared to existing touch-assisted enhancement technologies, the attachment-on module or device provided in this application can be configured in a way that allows the user's touch finger to reach a position on the surface of a portable terminal or a quick-connect peripheral device of the portable terminal. This allows a functional load containing lubricant to move with the portable terminal screen, thereby enabling the portable device screen to quickly and readily use the functional load. This satisfies the user's ergonomic need to maintain a firm grip during the touch process of the portable device, while also enabling the rapid, small-quantity, and frequent use of the functional load. This achieves stable touch performance, such as improved fingertip smoothness, and reduces the difficulty, time, and distance costs of frequent maintenance required under ergonomic conditions, as well as the impact of hand sweat on screen response.
[0021] The attachment module or device provided in this application is particularly advantageous for portable devices such as gaming phones, which require single or double-handed holding and involve frequent, instinctive screen and body movements during gameplay. This allows users to more autonomously adjust the smoothness and stability of the touch experience based on the intensity of touch operation and environmental conditions (such as screen temperature and humidity), leveraging a more ergonomic design and dynamic response mechanism. The attachment module or device provided in this application, especially when implemented via a quick-connect method, can flexibly adapt to the different touch heat zones required by various applications. A single attachment module can be flexibly adapted to various usage methods and scenarios. Simultaneously, it provides a solution for mobile esports gamers that is simple to operate, fast to use, sensitive to touch, highly stable, cost-effective, and ergonomic. Further features and benefits of this application will be described in detail in the subsequent specific implementation section. Attached Figure Description
[0022] Figure 1 The diagram shows various target devices of this application, their orientation, side views, and usage scenarios. See sub-figure (a1) for a portable device and sub-figure (a2) for a portable device with a quick-connect peripheral device (multi-functional housing example). The following diagrams also show various usage scenarios of the target devices of this application and their orientations and sides, see the portrait mode usage scenario in sub-figure (b1) and the landscape mode usage scenario in sub-figure (b2); Figure 2 The diagram illustrates an attachment module of this application and its application scenario adapted to a target device, including an embodiment adapted to the rear side in sub-figure (a1) and another embodiment adapted to the front side in sub-figure (a2). Another attached module of this application is shown, and schematic diagrams of its side and orientation are provided, see sub-figure (b1) for the embodiment adapted to the left and right sides, and sub-figure (b2) for another embodiment adapted to the left and right sides and having a first bending structure; Figure 3 This illustration shows another attachment module of this application and its application scenario adapted to a target device. See sub-figure (a1) for an embodiment adapted to the front side and having a first bending structure (obtaining an adjustable first usage state), and sub-figures (b1) and (b2) for a front view and a side view of the attachment module, respectively. Another attached module of this application is shown, along with schematic diagrams of its side and orientation. See sub-figure (a2) for an embodiment adapted to the front of the front side and having a first bending structure (based on sub-figure (a1), the connecting member is rotated and adjusted about an axis so that the second extension section moves from the first use state to the second use state to meet user preferences or different application differences in touch hot zones), and sub-figure (a3) for an embodiment adapted to the front of the front side and having a first bending structure (based on sub-figure (a2), the connecting member is moved forward and adjusted so that the second extension section is suspended at the front of the front side of the target device to obtain an adjustable third use state). Figure 4 This illustration shows a contour-following and forked extension attachment module of this application, and its application scenario adapted to a target device. It includes an embodiment adapted to the front side and having a first bending structure in sub-figure (a1) (a cat-shaped example, with its two front paws positioned in a crouching position on the front side of the target device, and each front paw having a wiping surface on its top surface), and sub-figures (b1) and (b2) showing the front and side views of the attachment module, respectively. Another example of the conformal and forked extension of the present application is shown, and its application scenario diagram adapted to the target device (dog-shaped example). See sub-figure (a2) for a dog with a wiping surface on the top surface of each of its two ears and sub-figure (a3) for another dog with a wiping surface on the top surface of each of its upper body. Figure 5 The diagram illustrates the structural schematics of various possible attachment modules of this application, referring to a possible sheet or plate example in sub-figure (a11) or sub-figure (a12), a possible hinge structure example in sub-figure (b11) or sub-figure (b12), a possible plate example in sub-figure (c11) or sub-figure (c12), and a possible first bending structure example in sub-figure (c13). Schematic diagrams of various other possible attachment modules of this application are also shown. See sub-figure (a21) or sub-figure (a22) for an example of a possible circular sheet or plate, sub-figures (b21), (b22), (b24) and (b25) for an example of a structure in which the wiping part is attached to the top surface of the target device and the sub-part is attached to the side surface of the target device during operation, sub-figure (b23) for an example of a structure in which the wiping part is attached to the top surface of the target device and the sub-part is clamped to the side surface of the target device during operation, sub-figure (b25) for an example of a structure in which the wiping part is configured to be attached to the finger in a wrapping manner as a ring during operation, sub-figures (c21) to (c25) for an example of a possible sheet (or plate) with an icon, and sub-figure (d1) or sub-figure (d2) for another example of a possible sheet (or plate) with an icon. Figure 6 The diagram illustrates various possible application scenarios for the attachment modules of this application. See sub-figure (a11) for examples of various circular or semi-circular sheets (or plates) attached to the top surface of a mobile phone, and sub-figure (a12) for examples of various structures in which the wiping part is attached to the top surface of the target device and the sub-part is attached to the side surface of the target device during operation. Further illustrations show various possible application scenarios for the attached modules with icons, see examples of various possible circular or semi-circular sheets (or plates) attached to the top surface of a mobile phone in sub-figure (a21), and examples of various possible circular or irregularly shaped sheets (or plates) attached to the top surface of a tablet computer in sub-figure (a22). The application also illustrates various possible application scenarios of the attached modules with icons, such as the various possible rectangular or square pieces in subfigure (a31) which are attached to the side of the index finger near the thumb, and the various possible rectangular or square pieces in subfigure (a32) which are attached to the side of the index finger near the thumb and have extension pieces connected to both ends covering the index finger to form a ring. Figure 7 This illustration shows another attachment module of this application and its application scenario of a first quick-connect peripheral device (example of a clip-on mechanical auxiliary button device) adapted to a portable device. Referring to a conventional clip-on mechanical auxiliary button device in sub-figure (a11), the attachment module (e.g., easy-tear adhesive type) in sub-figure (b11) is adapted to a preset part on the top surface of the clip-on mechanical auxiliary button device (and may thus form a projection on the top surface of the target device). Another attachment module of this application and its second quick-connect peripheral device adapted to a portable device (an improved non-back clip mechanical auxiliary button device) are shown in sub-figures (a21) and (a22). This device includes the attachment module but lacks the front and rear back clips and connecting rods of the original device. The improved device adds a quick-connect connecting member coupled to the bottom surface of the target device. The present application also discloses a second quick-connect peripheral device for enhancing touch control of electronic devices and its application scenario adapted to the target device, as shown in sub-figures (a31) and (a32), which does not include an attached accompanying module; Figure 8 Another attachment module of this application is shown, and a third quick-connect peripheral device adapted to a portable device (see sub-figures (a11) and (a12), which includes the attachment module, which is an improved quick-connect shoulder key device of this application with a first bent structure and pluggable). Another illustration of a third quick-connect peripheral device for enhancing touch control of electronic devices disclosed in this application, and its application scenario adapted to a target device, are shown in sub-figures (b21) and (b22). It does not include an attached on-demand module and is a quick-connect shoulder button device with a first bending structure that can be plugged in, which is an improvement of this application.
[0023] Explanation of markings in the attached diagram: 100-Target device; 101-Socket; 102-Front camera; 103-Hollow window; 104-Auxiliary button or auxiliary button structure; 105-Front clamping end; 106-Rear clamping end; 107-Connecting rod; 108-Auxiliary button operation transmission structure; 109-Screen touch head; 110-Data communication line; OO'-Socket insertion axis; 10 - Connecting component; 20 - Non-wiping part; 21 - First extension section; 22 - Second extension section; 23 - Bending point; 30 - Wiping part; 40 - Functional load; 41 - Wiping surface; Double-arrow dashed arc - Reciprocating touch trajectory accessible by touch finger; Single-arrow dashed straight line - Push trajectory of various possible positions of attached modules; F1 - Normal force on wiping surface; F2 - Normal force on connecting component; 50 - Other functional attachment parts. Detailed Implementation
[0024] To make the objectives, technical solutions, and beneficial effects of the embodiments of this disclosure clearer, the technical solutions of the embodiments of this disclosure will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this disclosure, not all of them. Based on the embodiments of this disclosure, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this disclosure. Therefore, the following detailed description of the embodiments of this disclosure provided in the accompanying drawings is not intended to limit the scope of the claimed disclosure, but merely represents selected embodiments of this disclosure.
[0025] The present disclosure will now be described in detail with reference to the accompanying drawings and embodiments. Unless otherwise specified, various aspects, embodiments, and features of the present disclosure can be combined with each other.
[0026] Please refer to this. Figure 1Schematic diagrams illustrating various target devices of this application, their orientation sides, and usage scenarios are shown. See sub-figure (a1) for a portable device (example mobile phone), and sub-figure (a2) for a quick-connect peripheral device (example multi-functional housing) for a portable device. Each orientation side (e.g., the front side) represents the relative orientation side when the portable device (example mobile phone) is used horizontally. Furthermore, when the multi-functional housing is fitted onto the mobile phone, the orientation sides of both can be identical, forming a new target device. For example, the multi-functional housing may be located outside the portable device, such as a mobile phone, and an attached accessory module may be configured onto the surface of the multi-functional housing.
[0027] Target devices, such as portable terminals, include but are not limited to mobile phones, tablets, handheld consoles (e.g., game consoles), or touchscreen displays (e.g., cloud-based information display screens). For example, quick-connect peripherals for portable terminals include, but are not limited to, add-on auxiliary devices or peripherals that move with the screen.
[0028] Preferably, the screen is incorporated into a portable terminal. The target device can be a quick-connect peripheral device of the portable device, which can move with the screen and thus dynamically enhance the screen's fingertip touch capability. The quick-connect peripheral device is not limited to, for example, a multi-functional housing (e.g., a protective case), screen auxiliary buttons (e.g., a clip-on mechanical auxiliary button device or a quick-connect shoulder button device), a power bank, a magnetic sheet, an auxiliary grip handle, a stand, or a heat sink (e.g., a heat-dissipating back clip, a heat sink plate, or a heat-dissipating film), etc. In some embodiments, the connecting member is configured to engage the attached accompanying module with the quick-connect peripheral device.
[0029] The portable terminal includes, but is not limited to, mobile phones, tablets, handheld consoles, or touch screen displays; and / or, the quick-connect peripheral devices include, but are not limited to, multi-functional housings, auxiliary grip handles, screen auxiliary button devices, power banks, magnetic sheets, stands, or heat sinks.
[0030] Please refer to this. Figure 1 The following diagrams also illustrate various usage scenarios of the target device (mobile phone example) and its side views. See sub-figure (b1) for the portrait mode usage scenario and sub-figure (b2) for the landscape mode usage scenario. In this application, side views such as the front side are relative to the usage state, and the top surface is the screen surface of the target device (mobile phone example). Furthermore, touch operations include one-handed operation or two-handed operation.
[0031] Please refer to this. Figure 2This diagram illustrates an attachment module of this application and its application scenario adapted to a target device. Referring to the embodiment adapted to the rear side in sub-figure (a1) and another embodiment adapted to the front side in sub-figure (a2), the advantage of these two different usage methods is that they cater to different user preferences or the positional differences of the touch hotspot in different applications. For quick-connect methods that are detachable and have adjustable spatial positions, such as adhesive, magnetic, or suction cup connections, users can freely switch between the two usage methods shown in sub-figures (a1) and (a2).
[0032] For example, the location differences of the touch hotspots for different applications may be located in the left rear area and / or right rear area of the screen, or the right center area or left center area, or the right front area or left front area, or the front side area or bottom side area, etc.
[0033] Depend on Figure 2 The sub-diagram (a1), which is the portion of the attached accompanying module located at the rear of the rear side, can have its left-right length or other dimensional dimensions adjusted based on presets. Similarly, by Figure 2 The sub-diagram (a2) shows the portion of the attached module located on the front side, whose left-right length or other dimensions can be adapted and adjusted based on presets. The quick-connect methods for the connecting member 10 include, but are not limited to, adhesive, magnetic attraction, suction cup, clip, insertion, or fitting.
[0034] For example, such as Figure 2 In sub-figure (a1), the connecting member 10 and the wiping part 30 may be disposed on the front part of the front side of the target device (e.g., adhesive layer, magnetic layer, suction cup layer, clip, plug, or sleeve), and the connecting member 10 may be connected to the front side of the target device; or, the wiping part 30 may be disposed on the front part of the front side (e.g., adhesive layer, magnetic layer, suction cup layer, clip, plug, or sleeve), and the connecting member 10 may be connected to the bottom surface of the target device (not shown due to obstruction by the target device, but will be explained in detail in other embodiments below).
[0035] Optionally, by Figure 2 Sub-figure (a1) also shows that the carrier member further includes other functional attachments 50, which include a cleaning portion configured to attach to the carrier member and for cleaning the user's touch fingers. In some examples, the cleaning portion has a cleaning surface configured in a location accessible to the user's touch fingers. This provides benefits such as the ability to achieve cleanliness after the user's touch fingers have rubbed against a functional load and / or after the user perceives and accumulates sweat that affects the amount of hand sweat on their hands.
[0036] For example, the wiping surface can be contained within a sheet (e.g., an easy-tear attachment module with a functional load attached to the top layer), or a plate (e.g., a slotted attachment module that holds the functional load). Among these, the easy-tear attachment module with a functional load attached to the top layer offers the advantage of quick and convenient replacement after the functional load is worn out.
[0037] The wiping part may include, but is not limited to, functionalized structures, such as, but not limited to, physical adsorption structures, chemical adsorption structures, mechanical fixation structures, or functional materials. Among these, functional materials may include smart responsive materials or magnetic materials; surface functionalization may include physical structure design, chemical functionalization modification, electrostatic flocking, and / or wettability control.
[0038] For example, the wiping section may be a peel-off adhesive top (or front) attachment structure for an attached module, or a sump structure for holding a functional load, wherein the shape and depth of either are not limited. For example, the top surface of the peel-off adhesive may be a rectangular, square, elliptical, or circular sheet, or a sheet (or plate) of similar shape. For example, the top surface of the easy-tear adhesive label, when viewed from above, is a linear, mesh-like, or perforated sheet. The linear portion, for example, is designed to adhere to the top surface of the target device (e.g., the bezel and / or screen), which has the advantage of occupying a smaller area of the target device's top surface. This minimizes interference with screen display content and allows for appropriate linear surface coupling with the touch fingertip area for wiping. The mesh-like or perforated sheet can minimize screen display content on the target device's top surface through perforations. In particular, the perforated sheet can also be used to obtain elements such as logos for touch applications, hero character shapes for touch games, hero icons, attribute icons (e.g., strength, agility, water, or fire elements), hero totems, or hero skill icons, such as the seven icons in Genshin Impact (fire, water, wind, lightning, ice, grass, or rock). These perforations are configured, for example, by stamping or cutting, and are either internally closed or externally connected on the facing plane of the sheet. Optionally, the wiping surface is located on the top surface (or front side) of the top layer (or front layer). In some examples, the top surface of the easy-tear sticker is circular when viewed from above and is configured to be removably attached to a desired area on the top surface of the target device, such as a screen, particularly a non-touch hot area; for example, the diameter of the circle does not exceed 1 cm or 0.5 cm. In other examples, the top surface of the easy-tear sticker is a rectangular strip when viewed from above, and its width does not exceed the width of a target side of the target device (e.g., 1 cm), and its length does not exceed the length of a target side of the target device, thus obtaining a simple attachment module and its use cases.
[0039] For example, adhesive bonding, such as using an adhesive layer or nano-adhesive materials, can quickly attach sheets or plates. Optionally, the attachment module can be fabricated as a rectangular strip of flexible sheet, with an adhesive layer on the bottom and a layer of functional load material on the top (located in a groove, for example). This is advantageous because it creates an easy-tear attachment module, facilitating easy and large-scale manufacturing and easy and quick removal and replacement. The width of the flexible sheet can preferably not exceed the side width of the target device. Similarly, the attachment module can be fabricated as a strip of plate, with an adhesive layer on the bottom and a layer of functional load material on the top (located in a groove, for example). The width of the strip of plate can preferably not exceed the side width of the target device. Therefore, adhesive bonding can fully and advantageously utilize, for example, the bottom surface of the target device, especially when the bottom surface of the target device has a flat surface with a larger area than the sides, making it easier to obtain better adhesion.
[0040] Magnetic fastening, such as quick-connect structures, includes a magnetic body for magnetically attaching a magnet (or magnetic strip) to a target device. Preferably, some target devices, such as mobile phones, already have a built-in magnetic strip, typically located on the bottom surface, providing convenient access to this magnetic fastening method. For target devices without a built-in magnetic strip, the provided magnetic strip or magnet can be configured onto the target device for easy, quick, and detachable attachment. Magnetic fastening fully and advantageously utilizes, for example, the bottom surface of the target device, especially when the bottom surface has a larger flat area than the sides, resulting in better attachment strength.
[0041] Suction cups, such as quick-connect structures, include large suction cups or arrays of micro suction cups, used to easily, quickly, and detachably attach the attached module to the target device. Suction cups can fully and advantageously utilize, for example, the bottom surface of the target device, especially when the bottom surface has a larger flat area than the sides, thus easily achieving better attachment strength. In some preferred examples, the suction cups in quick-connect methods are configured as multiple suction cups, such as multiple suction cups arranged in an array, to achieve better adhesion. This is biomimetic to the suction cup array on an octopus's tentacles. These suction cups can be preferably configured as micro suction cups, which have the advantage of occupying less thickness space while achieving better adhesion effects such as a more uniform distribution of adhesive force.
[0042] Some preferred quick-connection methods in this application enable easy, quick, and detachable attachment of the accompanying module to a user-touchable location on the surface of the target device. It should also be noted that other quick-connection methods may be preferred based on the above-disclosed technical solutions of this application, but all such quick-connection methods are within the scope of protection of this application.
[0043] In some embodiments, the non-wiping part is configured to be movably connected between the connecting member and the wiping part. This movable connection can be selected from quick-connect methods such as adhesive, clips, magnetic, suction cup, or plug-in connections. Alternatively, the movable connection can also be used to achieve a movable or deflectable connection between the connecting member and the wiping part, or between the connecting member and the carrier member. For example, in a preferred embodiment, the connecting member and the carrier member are connected magnetically or by plugging, thereby enabling morphological changes between them (such as orthogonal connections for multi-dimensional unfolding and stacking after unloading), to achieve benefits such as easier storage and reduced space occupancy in shipping packaging.
[0044] In some embodiments, the non-wiping portion also has a variable geometry, which includes length extension, area increase or decrease, or thickness variation, or the non-wiping portion is constructed with a specific graphic, pattern, or relief structure.
[0045] In some embodiments, the functional payload is configured to enhance fingertip touch control of a touchscreen on a target device, including the portable terminal. Optionally, the attachment module is snapped to a target side of the portable terminal, such as the front, rear, left, right, bottom, or top side (i.e., the screen). It should also be noted that in scenarios where the portable terminal has a snap-on peripheral device, for example, the portable terminal is fitted with a protective housing, and the attachment module is snapped to any target side of the protective housing. This allows for adaptable design of the connection members between the snap-on portion of the protective housing and the target side of the attachment module, thereby achieving the integrity of the attachment module within the protective housing and its structural and aesthetic design. Furthermore, the attachment module can also be fixedly connected to any side of the snap-on peripheral device, such as the protective housing, thus forming part of the snap-on peripheral device, such as the protective housing; the attachment module can also be fixedly connected to any side of a portable device, such as a mobile phone, tablet, or handheld game console, thus forming part of the portable device.
[0046] In other embodiments, the attachment-as-a-feature module further includes a functional load stored in the carrier member and capable of being quickly swiped onto a user's finger to enhance the touch experience on the screen. Optionally, the functional load includes a lubricant to enhance the touch experience on the screen. For example, the touch experience (e.g., touch operation experience) includes, but is not limited to, smoothness and / or stability. In some embodiments, the smoothness or accuracy of operation can be considered part of stability. The enhanced fingertip touch of this application is designed to address unstable touch, allowing the user to use the attachment-as-a-feature module when they perceive unstable touch. For example, enhanced stability can be an enhancement of resistance to adverse user experiences. In some embodiments, smoothness can be considered as fluidity. Fluidity enables enhanced touch stability. In some embodiments, a lubricant is used to enhance the stability of fingertip touch on the screen.
[0047] It should be noted that lubrication or smoothness is used to achieve smooth screen touch. In some embodiments, the lubricant also has the effect of absorbing sweat, preventing moisture and oil from sweat from adhering to the screen and causing a decrease in smoothness. This overcomes pain points such as the continuous decrease in smoothness during continuous high-frequency touch operations, especially in games and input, and the continuous accumulation of hand sweat on the screen. In other embodiments, a functional load or multiple functional loads of different types and functions may be optionally configured on the attached accompanying module. Wiping surface, or wiping surface. In still other embodiments, smoothness is used to enhance the fingertip touch experience, including but not limited to reducing touch dropouts, reducing the slipperiness caused by sweat during swiping, reducing sweat resistance during tapping, improving operational sensitivity and / or enhancing operational stability, etc.
[0048] It should be noted that the carrier component has a wiping part and a non-wiping part. The wiping part can be understood as a load-bearing part, used to support functional loads.
[0049] It should be noted that the attached module of this application can be used not only for bare touch fingertips, but also for non-bare touch fingertips (such as touch fingertips wearing finger sleeves or finger stickers), thereby enabling touch fingertips wearing finger sleeves or finger stickers to achieve sliding maintenance or enhancement, avoiding the frictional loss of surface function of traditional touch fingertips wearing finger sleeves or finger stickers after prolonged use.
[0050] It should be noted that the accompanying drawings in this application are all structural schematic diagrams. In this application, the first extension segment is also referred to as the first extension segment, and the second extension segment is also referred to as the second extension segment.
[0051] It should be noted that, in this application, attachment refers to connecting one object, component, or part to another object, component, or part. This connection can be temporary, detachable, or permanent. Attachment, for example, is the assembly of mechanical parts or the integration of multiple parts, thereby achieving stability and reliability between components with a certain degree of robustness. It should also be noted that, in this application, when the attachment module is engaged using the quick-connect method, the attachment module can also be called a quick-connect module.
[0052] Please refer to this. Figure 2 Another attached module of this application is shown, along with schematic diagrams of its sides and orientation. See the embodiment adapted to the left and right sides in sub-figure (b1) and another embodiment adapted to the left and right sides and having a first bending structure in sub-figure (b2).
[0053] like Figure 2 In sub-figure (b1), there is one wiping surface 41 on each of the left and right sides. Optionally, each wiping surface 41 can be attached to an attachment module. Thus, the position of either attachment module on the left or right side can be adjusted in the front-back direction, enabling adaptation to different positions such as parallel or staggered placement of the left and right touch zones. In sub-figure (b2), the two wiping surfaces 41 on the left and right sides can be connected to a first extension segment 21 extending in the left-right direction (functioning as a connector). The first extension segment 21 and the second extension segment 22 can be obtained by a first bending structure. The first extension segment 21 can be attached to the bottom surface of the target device using a quick-connect method such as magnetic attraction. This is advantageous if the area of the bottom surface of the target device is larger than the area of the sides, and if the bottom surface of the target device has a larger flatness, then the bottom surface of the target device can obtain favorable conditions and a foundation for attaching connecting components. For example, a large adhesive force on a large adhesive area, or a large magnetic attraction force on a large adhesive area, etc.
[0054] Please refer to this. Figure 3This illustration shows another attachment module of this application and its application scenario adapted to a target device. See sub-figure (a1) for an embodiment adapted to the front side and having a first bending structure (achieving an adjustable first usage state), and sub-figures (b1) and (b2) for the front and side views of the attachment module, respectively. It is evident that the first bending structure includes a first extension segment 21 and a second extension segment 22, wherein the first extension segment 21 has a first plate body and is capable of being attached (e.g., magnetically attracted) to the bottom surface of the target device 100, and the second extension segment 22 has a second plate body and is attached to the front side of the target device 100. Therefore, if the bottom surface of the target device 100 already has sufficient attachment (e.g., magnetic attraction) force, the second extension segment 22 does not need to provide attachment force to the front side of the target device 100. It is advantageous that the bottom surface of the target device 100, with its large area and flatness, provides the necessary foundation and conditions for obtaining the large attachment (e.g., adhesive or magnetic attraction) force. Furthermore, it can be flexibly and conveniently adapted to the magnetic strip (or body) that comes with the target device 100. If the target device does not come with a magnetic strip (or body), a magnetic strip (or body) can be attached first.
[0055] In addition, by Figure 3 The wiping surface 41 is disposed on the top surface of the second extension section 22. The height of the wiping surface 41 can be equal to or higher than the top surface of the target device 100, etc. The surface of the wiping surface 41 can be inclined in the rearward direction, etc. The surface of the wiping surface 41 can be flat, curved (such as convex or concave), or continuously undulating, etc.
[0056] Depend on Figure 3 Sub-figure (b2) also shows a possible normal force F1 on the wiping surface 41 and a normal force F2 on the connecting member 10, both in opposite directions; and when the normal force F2 on the connecting member 10 needs to be large (i.e., to provide the necessary attachment strength), the second extension segment 22 may no longer provide attachment force to the front side of the target device 100. It is known that the bottom surface of the target device 100, such as a portable device, has a larger flat surface area than the sides, making it relatively easy to achieve the necessary large normal force F2 on the connecting member 10. For example, when the density of attachment force per unit surface is constant, the total attachment force can be significantly increased by expanding the attachment area, thereby achieving overall attachment strength of the attachment module. Its advantages include, in addition to the benefits of functional and ergonomic design, the ability to achieve product diversity, eye-catching unique shapes, fun and aesthetic design, and to imbue the product with emotional elements. In addition, the wiping surface 41 may be subjected to shear force perpendicular to F1 during use, and the connecting member 10 is subjected to resistance perpendicular to F2, with the two forces in opposite directions.
[0057] Please refer to this. Figure 3Another attached module of this application is shown, along with schematic diagrams of its side and orientation. See the embodiment in sub-figure (a2) that is adapted to the front of the rear side and has a first bending structure (based on adjusting the connecting member about an axis so that the second extension section moves from a first use state to a second use state to meet user preferences or different application differences in touch hot zones); and the embodiment in sub-figure (a3) that is adapted to the front of the front side and has a first bending structure (based on sub-figure (a2) that the connecting member is moved forward so that the second extension section is suspended at the front of the front side of the target device to obtain an adjustable third use state).
[0058] It should also be noted that in Scheme C of this application, the non-wiping part of the attached accompanying module has a first bending structure. The advantage of this structural design is that it allows the quick-connect component and the wiping part to be separated from each other and configured on different sides of the target device. This enables the full integration and utilization of the different features of different sides of the target device, thereby avoiding the difficulty of meeting the functional strength and spatial design requirements of each component on a single target side with flexibility and decoupling.
[0059] For example, portable devices such as mobile phones have multiple sides, with a large bottom surface better suited for quick-connect methods such as magnetic attachment, suction cups, or adhesive. This is especially true when the first extension section is configured as a plate (such as a thin plastic sheet), allowing it to conform to and adhere to the bottom surface of the target device. Benefits include the ability to easily configure the first extension section as a plate with an area larger than any side of the target device (e.g., a large plate with the frontal outline shape of a cat's head), or a plate with an area close to the entire area of any side of the target device (e.g., a small plate with the frontal outline shape of a cat's head). Furthermore, a more compliant attachment surface and a larger attachment area also mean better adhesion strength or uniformity of adhesion force. For example, nano-attachment surfaces can be more secure, or micro-suction cup arrays can be better compatible and achieve a thinner profile compared to a single large suction cup, or magnetic materials can be better adapted to the magnetic sheet attached to the bottom surface of the target device (such as a mobile phone) or directly utilize existing magnetic sheets within the target device (such as a mobile phone). The magnetic material can be disposed within the groove or hollow cavity of the first extension section, or on the inner or outer surface. It should also be noted that the magnetic material can be mounted on the target device while the magnetic sheet is mounted on the first extension section. Therefore, scheme C provides a favorable foundation for fully integrating and utilizing the different features of different sides of the target device.
[0060] In some embodiments of sub-scheme C1, in the first bending structure, a connecting member connected to the first plate is used to quickly attach the attached module to the bottom of the bottom surface of the portable terminal surface or the quick-connect peripheral device surface of the portable terminal; and, during operation, the second plate is positioned on the side of a target side of the portable terminal surface or the quick-connect peripheral device surface. The target side can be one or more of the front, rear, left, and right sides of the target device. The quick-connect member connected to the first plate (e.g., a magnetic or adhesive quick-connect method) allows the first plate to deflect about an axis or allows the first plate to be unloaded and then repositioned, thereby enabling the second plate to be adjustablely positioned on any side of the target device as needed by the user. The user can adjust the orientation of the first plate as needed, such as adjusting the second plate from the front side to the right or rear side of the target device, and the wiping part adjusts its position accordingly.
[0061] As can be seen, the configuration flexibility of sub-solution C1 is conducive to adapting to the differences in operation buttons or sliding touch areas of different applications, such as games. For example, one or more touch hot areas of some games are configured to be located in the lower right (or left) corner of the screen, in the center area of the right (or left) side of the screen, and / or in the upper right (or left) corner area of the screen.
[0062] Some implementations of sub-scheme C2 also possess this configuration flexibility. Furthermore, the quick-connect method is configured to allow the position of the connecting member at the bottom of the bottom surface to be adjustable (e.g., a magnetic or adhesive quick-connect method), thereby enabling the spatial position of the connected second plate, including its height from the target side, to be adjustable (e.g., the second plate can be adjusted from a mating position to a suspended position, or from a suspended position to a mating position, etc.).
[0063] Some implementations of sub-solution C3 also possess this configuration flexibility. Furthermore, the wiping surface of the wiping unit is configured to project onto the top surface of the portable terminal surface or the quick-connect peripheral device surface of the portable terminal during operation. This allows the wiping surface of the wiping unit to extend partially or completely to the top of the target device's top surface (e.g., the top edge of the device or the screen area). For example, the second extension segment could have a second bending structure to extend the wiping surface of the wiping unit past a target side of the target device to a suspended position on the edge area of the screen, rather than necessarily being located entirely on the side of the target device. This also offers advantages such as further reducing the travel distance and / or enriching usage scenarios.
[0064] Some implementations of sub-scheme C4 also possess this configuration flexibility. Furthermore, the first extension section is attached to the bottom surface of the target device in a quick-connect manner during operation (e.g., as a plate with a magnetic or adhesive quick-connect method); and the second extension section is configured to have projections on the front, rear, left, or right side of the target device surface during operation. This attachment, such as a plate attachment with a magnetic or adhesive quick-connect method, can better conform to a target surface of the target device without excessively occupying thickness on that surface. For example, attaching a thin plate to the bottom surface of a portable device (such as a mobile phone) will have minimal impact on single or double-handed grip. In addition, portions of the attached plate (such as the main portion) can be designed with a certain shape (e.g., a circular outline or the outline of a cat's head) and patterns (e.g., the color and / or texture of a cat's head image), thereby achieving not only functional and ergonomic benefits but also product diversity, fun and aesthetic design, and imbuing the product with emotional elements.
[0065] Alternatively, in some embodiments of sub-scheme C4, the first extension segment is configured to be attached to the bottom surface of the target device, and the shape of the first extension segment is configured to resemble the shape of an animal or human; while the second extension segment, configured as a bent section, is joined with a wiping part (e.g., resembling a non-living object such as wood); wherein the first extension segment is shaped like the animal or human in a supporting, head-supporting, or hand-holding manner, and the connected second extension segment is then positioned high to be placed on a target side of the target device, such as the front side. Furthermore, the head-supporting feature can be replaced with an ear-supporting feature. Thus, it offers an eye-catching, unique shape, fun, and companionship.
[0066] Alternatively, in some embodiments of sub-scheme C4, the first extension segment is configured to be attached to the bottom surface of the target device, and the shape of the first extension segment is configured to resemble an animal or human and a weapon (or other inanimate object besides a weapon), such as a double stick or double sword held on the back in a crossed X shape; while the second extension segment, configured as a bent section, is joined with a wiping part (e.g., a non-animal object resembling wood); wherein the first extension segment is made in the shape of the animal or human in a supporting, head-supporting, or hand-holding manner, and then the connected second extension segment is raised to be positioned on a target side of the target device, such as the front side. Furthermore, the head-supporting feature can be replaced by an ear-supporting feature. Thus, it possesses an eye-catching unique shape, is fun, and offers companionship.
[0067] Alternatively, in some embodiments of sub-scheme C4, the first extension segment is configured to be attached to the bottom surface of the target device, and the shape of the first extension segment is configured to resemble an animal or human, as well as another extension segment with an animal or human shape, both connected together or separated to perform actions. For example, multiple animals are stacked on top of each other to elevate the second extension segment with a wiping part (e.g., imitation wood or other inanimate object). This also demonstrates the eye-catching unique shape, fun, and companionship.
[0068] Please refer to this. Figure 4 This illustration shows a contoured and forked extension attachment module of this application, and its application scenario adapted to a target device. See sub-figure (a1) for an embodiment adapted to the front side and having a first bending structure (cat-shaped example, with its two front paws positioned in a crouching position on the front side of the target device, and each of the two front paws having a wiping surface on its top surface), and sub-figures (b1) and (b2) for a front view and a side view of the attachment module, respectively.
[0069] Depend on Figure 4 Sub-figure (b2) also shows a possible normal force F1 on the wiping surface and a normal force F2 on the connecting member during use. Figure 4 In some embodiments, F1 and F2 of subgraph (b2) are for use with Figure 3 F1 and F2 in the subgraph (b2) are consistent.
[0070] For example, in the implementation of sub-scheme 5, the "forked extension" is, for example, a "Y-shaped extension," wherein the forked portion can mimic the shape of the ears of an animal's head, and the remaining portion mimics the shape of an animal's face, etc.; or the forked portion can also mimic the two upper limbs, two lower limbs, claws, or multiple claws of an animal, thereby obtaining, for example, two cat paw shapes with wiping parts respectively, or, for example, a frog (or panda) shape with one or two front paws attaching a wiping part in a sign-holding manner, or, for example, at least two tentacles of an octopus with wiping parts respectively; or the forked portion can also mimic the branching of plants; or the forked portion can also be a branching structure of a non-living organism. It should also be noted and explained that the bent second extension section is constructed as the tip of the ears, because it can be preferably configured on a target side of the target device, and these target sides, such as the side of a mobile phone in a portable device, are usually thinner, so the constructed tip of the ears can also be preferably smaller in size. When viewed from the bottom of the target device in the working state, the "Y-shaped extension" presented by the first extension section can be preferably seen, in other words, most of the shape mimicking the shape of a two-eared animal head can be preferably seen. Therefore, the first bending structure can be used to achieve the head shape of animals with two ears, such as the outline of a cat, dog, rabbit, tiger, sheep, cow, or horse, or a multi-clawed animal like an octopus, or a human body such as the upper body, head, and forearms, or a complete human body, or a human body with clothing, or a human body with non-living things (such as a basketball), or a human body with living things (such as a cow, horse, or cat). This allows the attached module (especially the first bending structure) to have a uniquely distinctive structure and appearance, as well as product fun and product line richness. Preferably, the outline of the two-eared animal head has a cartoonish design. Furthermore, the surfaces of the first and second extensions in the first bending structure can have biomimetic patterns, colors, and / or textures of the two-eared animal head. Preferably, the first extension segment is plate-shaped, that is, the "branching extension" extends along the plate shape, and the plate shape extension can better "attach" (such as magnetic attraction, adhesion or suction cup adsorption) to the bottom surface of the portable terminal (such as mobile phone or tablet) or the quick-connect peripheral device of the portable terminal (such as multi-functional shell).
[0071] In some other embodiments of sub-scheme 5, the first extension segment constitutes a plate, and the outline shape of the top surface of the plate can correspond to the outline of a natural object as seen from various perspectives such as top view, side view, front view, eye view, or oblique view. The top view outline shape of the top surface of the plate can also be the outline of a natural object, such as an animal body, a plant shape, or the shape of an inanimate object. The outline can be a part or the whole of a natural object, such as the whole animal body, or a cartoon-style outline of a part of an animal body (such as the whole or part of an animal head). The part of the animal head can be, for example, the part excluding the top of the ears.
[0072] Furthermore, in other embodiments, the two extensions in the "branching extension" such as the "Y-shaped extension" do not necessarily have to be biomimetic to two body parts of an animal or human, but can be derived from one body part of each of two animals or humans, and the two animal or human shapes forming the plate can be configured to be integrated or separate.
[0073] "Bifurcation extension," such as the two extensions in a "Y-shaped extension," in some embodiments resembles the front end portion (e.g., claw or hand) of a myriapod's foreleg, and this front end portion is positioned in a grasping manner (e.g., gripping a wall). When in operation, this front end portion is positioned on the side of a target device, and a wiping part is attached to the outer side of this front end portion. Further optionally, its head is positioned on the side of a target device, similar to the front end portion, for example, in the shape of a cartoon cat. The cat's one or two paws grip the front of the target device, such as a mobile phone, and the cat's head is also exposed and located at the front of the front of the target device, such as a mobile phone, thereby achieving fun and companionship when using the touchscreen.
[0074] In some embodiments, the "branched extension," such as the two extensions in a "Y-shaped extension," involves a first extension segment (e.g., plate-like) configured to attach to the bottom surface of the target device. The first extension segment is shaped to resemble an animal or human and includes a weapon (or other inanimate object). The weapon could be, for example, a panda or turtle carrying a weapon on its back, or a pair of crossed X-shaped sticks or swords carried on its back. Alternatively, the weapon, such as the crossed X-shaped sticks or swords, may have a second extension segment connected to its tip, thereby elevating the wiping portion connected to the second extension segment.
[0075] It should also be noted that the above-mentioned biomimetic wiping parts (e.g., claws) and the biomimetic non-wiping parts (e.g., forelimb trunks) can be fixedly connected (e.g., integrally molded or non-removable); or they can be movable connected (e.g., magnetic, detachable adhesive, detachable insert, or detachable plug-in). The advantage of this is that they can be separated and stored, and / or the wiping parts can be quickly replaced directly after the functional load is worn out, etc.
[0076] Optionally, when the first bending structure is in operation, the surface of the first extended section, viewed from the bottom of the target device, presents an image or graphic and color of the back of a morphological object (such as an animal or a person), or an image or graphic and color of the front, or an image or graphic and color of the side, or an image or graphic and color of the oblique view.
[0077] Optionally, in some embodiments, an animal-like shape, such as two feet or their front end portions, is disposed on the rear side of the target device during operation, and a wiping portion is attached to the top surface of the two feet or their front end portions; and, a head or a head and two claws (or the front end portions of the two claws) is disposed on the front part of the front side of the target device during operation; a first extension serves as a connector (e.g., a connecting plate) for the above two and as a body shape portion, and is configured to be quick-connected (e.g., magnetically attached) to the bottom surface of the target device.
[0078] In some embodiments of sub-scheme 6, the target device, such as a mobile phone, has a charging and data transmission cable socket or port (e.g., Type-C or USB); and the connecting member is configured to have a plug, which is configured to mate with the socket (e.g., Type-C or USB). It is evident that after the socket and plug are connected, they work together to achieve power supply and / or data communication. This provides the possibility and basis for attaching other functions or components requiring power supply and data communication to the first bent structure, which is beneficial to this embodiment.
[0079] In some other embodiments of sub-scheme 6, the target device, such as a mobile phone, has a charging and data transmission cable socket or port, such as Type-C or USB, including but not limited to these types. The plug is configured to be able to be connected correctly and / or reversed. The connecting member is configured to have a plug, which is configured to mate with the socket, but is not used for power supply or / or data transmission; it is merely for the adaptation of the connection method and structure. It is evident that after the socket and plug are connected, they work together to provide a relatively stable quick-connect method.
[0080] Furthermore, in either of the two embodiments of sub-scheme 6 above, in a preferred embodiment, the plug is configured to be both orthogonally and inverted. The orthogonal configuration is used to position the first extension section to the front of the front side of the target device; the inverted configuration is used to position the first bent section to the rear of the rear side of the target device. This allows for multiple usage methods and scenarios, meeting the needs of different applications with different touch hot zones. In addition, the first bent structure also provides the possibility and basis for attaching other components, such as those requiring power supply and data communication.
[0081] In another preferred embodiment of either of the two embodiments of sub-scheme 6 above, the first bending structure includes a first extension segment and two second extension segments; the two second extension segments are located at both ends of the first extension segment (i.e., at two points in the left-right relationship) and together form a U-shaped extension. Advantageously, during operation, one first extension segment is positioned on the right side of the target device, and the two second extension segments are positioned at the front of the front side and the rear of the rear side of the target device. Thus, the two second extension segments can be located at the front and rear of the target device respectively, allowing one to be attached to a wiping part and the other to be attached to other functional components (e.g., auxiliary touch buttons).
[0082] It needs to be explained and clarified that, in the case of a bent structure, for example, when a plate is bent along a bend, the two opposing sides at both ends of the bend can be called the inner sides, and the remaining sides can be called the outer sides. In some embodiments, the wiping surface of the wiping part faces the outer direction of the first bent structure, and the wiping surface orientation is configured to be consistent with the orientation of the outer sides.
[0083] It should be noted that, without conflict, in some embodiments, any one or more of sub-solutions A1, A2, A3, or A4 are included in solution A. Without conflict, in some embodiments, any one or more of sub-solutions B1, B2, B3, B4, B5, or B6 are included in solution B.
[0084] Please refer to this. Figure 4 Another example of a contoured and branched extension of this application is shown, along with a schematic diagram of its application scenario adapted to a target device (dog-shaped example). As another possible example of "branched extension," see sub-figure (a2) where the top surface of each of the dog's ears is configured with a wiping surface 41, and sub-figure (a3) where the top surface of each of the upper bodies of two dogs is configured with a wiping surface 41. In sub-figure (a3), both dogs can be exposed at the front of the front side of the target device, including their heads, thus achieving beneficial effects such as companionship during play. This satisfies the needs for individual preferences, product diversity, eye-catching unique shapes, fun and aesthetic design, and imbues the product with emotional elements. Optionally, in this application, the contoured form is, for example, a dog shape, with a cartoon dog pattern on one side of the plate. This side includes the top and / or bottom surface of the plate; the cartoon pattern can be placed on the top (or bottom) surface or simultaneously on both surfaces. Optionally, one of the two dogs in subgraph (a3) can be replaced with other mimicry, such as a cat, to obtain various different animal representations, such as a cat and a dog.
[0085] It should also be noted that "branching extension" provides the basis and conditions for attaching two wiping parts, but the wiping part can also be a single part and configured at any point in the "branch".
[0086] Please refer to this. Figure 5Schematic diagrams of various possible implementations of the attachment-as-a-module of this application are shown. Refer to sub-figures (a11) or (a12) for an example of a possible sheet or plate to understand embodiment A, wherein the attachment-as-a-module in sub-figure (a11) may include three layers: front, middle, and rear, with the front layer containing a functional load and the rear layer containing connecting members (e.g., an adhesive or magnetic layer); and in sub-figure (a12), the attachment-as-a-module may include three layers: front, middle, and rear, with the front layer containing a functional load in a groove (or the middle layer being removable while retaining the front and rear layers), and the rear layer containing connecting members (e.g., an adhesive or magnetic layer). And an example of a possible hinge structure in sub-figure (b11) or sub-figure (b12) (with dashed arrows indicating the folding direction) to facilitate understanding of scheme B, wherein the inner side of the left plate in sub-figure (b11) has a wiping surface and the right plate does not have a functional load, and the inner sides of both the left and right plates in sub-figure (b12) have wiping surfaces, and the two plates can be switched between unfolding and folding, which is partially achieved by a hinge structure (e.g., flexible hinge, flexible belt or pivot hinge) between the two plates, and can further maintain the folded state based on the two plates, for example, magnetic attraction, so that the folded state can achieve a protective cover (or protective cover) for the wiping surface. And a possible plate example in sub-figure (c11) or sub-figure (c12) to facilitate understanding of scheme A, wherein either sub-figure (c11) or (c12) may include front and rear layers, and the rear layer includes connecting members (e.g., adhesive or magnetic layers), and the two sub-figures (c11) and (c12) differ in that the wiping surface of the former is located on the front side, while the wiping surface of the latter is located on the top surface; and a possible first bending structure example in sub-figure (c13) to facilitate understanding of scheme C, wherein the wiping surface is located on the top surface of the second extension, and the connecting member may be attached to the first extension, thereby enabling the connecting member and the wiping part to be located on different target sides of the target device based on the first bending structure.
[0087] It should be noted that the descriptions of front and rear orientations are relative and can be interchanged in different embodiments or under different viewing orientations. For example, in sub-scheme A2, the first base is configured to be located at the rear of the rear side of the target device during operation. An equivalent scheme of sub-scheme A2 could be: the non-wiping part is constructed to have a first base, and the first base has a front side and a top surface, wherein the first base is configured to be located at the front of the front side of the target device during operation, and the top surface or front side of the first base is connected to a wiping part such that the wiping surface of the wiping part faces outward from the first base.
[0088] Please refer to this. Figure 5Schematic diagrams of several other possible attachment modules of this application are also shown. See sub-figure (a21) or sub-figure (a22) for an example of a possible circular sheet or plate to facilitate understanding of embodiment A, wherein the attachment module in sub-figure (a21) may include three layers: top, middle, and bottom, with the top layer containing a functional load and the bottom layer containing connecting members (e.g., an adhesive layer or a magnetic layer); and sub-figure (a22) may include three layers: top, middle, and bottom, with the top layer containing a functional load in a groove (or the middle layer being removable while retaining the top and bottom layers), and the bottom layer... Includes connecting components (e.g., adhesive layer or magnetic layer); each of the sub-graphs (b21) to (b25) is attached with an accompanying module, the main difference from sub-graph (a21) or sub-graph (a22) being that the wiping part is attached to the top surface of the target device (e.g., frame and / or screen) and the sub-part is attached to the side surface of the target device (e.g., left side and / or right side) during operation, thereby forming a bending structure during operation, and the inner side of the sub-part is attached to the side surface of the target device, thus making the wiping part more stable. The device is fixedly attached to the top surface of the target device; and in sub-figure (b26), a possible structural example of a device configured to be attached to a finger in a wrapping manner as a worn ring includes a middle portion and two end portions carrying a wiping surface 41, wherein the two end portions are configured to be flexible and bendable and are parallel to the middle portion before operation, or the two end portions are configured to be flexible and bendable and are obliquely or orthogonal to the middle portion before operation; and in sub-figures (c21) to (c25), an icon example of a possible sheet (or plate) is shown, namely, the Sharingan icon from the anime Naruto, the Sharingan icon partially carrying the wiping surface 41, the Sharingan icon fully carrying the wiping surface 41, the Chariot and Sword icon partially carrying the wiping surface 41, and the Chariot and Sword icon fully carrying the wiping surface 41; and in sub-figure (d21) or sub-figure (d22), an icon example of a possible sheet (or plate) is shown, namely, the ice element icon from the game Genshin Impact, and an icon containing a rock element graphic in the middle.
[0089] In some embodiments, the sheet is configured to display an icon. The icon may have graphics, patterns, and / or colors. Exemplarily, the sheet is configured to include three layers: outer, middle, and inner. These layers may be front, middle, and rear (e.g., configured on the front and / or rear sides of the target device during operation), left, middle, and right layers (e.g., configured on the left or right side of the target device during operation), or top, middle, and bottom layers (e.g., configured to be attached to the top surface of the target device, such as a screen, during operation). Further optionally, the outer layer of the sheet is configured as a functional load layer and displays the icon, for example, the seven selectable icons in the game Genshin Impact are presented in an embossed form (or may also have color), or for example, the ninja village icons (or clan totems or ninjutsu icons) in the game or anime Naruto are presented in an embossed form (or may also have color). Alternatively, the middle layer of the sheet is configured to display the icon, and the outer layer is configured to have a certain degree of transparency or semi-transparency so that the icon can be seen through the outer layer. Alternatively, the entire sheet is configured to display the icon, for example, obtained through cutting or other methods.
[0090] Optionally, Figure 5 In this context, sub-images (a11) or (a12), or sub-images (a21) or (a22), or any part of sub-images (b21) to (b25) excluding the secondary portion, or any of sub-images (c21) to (c25), or (d21) or (d22), may be of a certain degree of transparency or translucency to allow light to pass through the screen, thereby maximizing the impact on the image displayed on the screen. Alternatively, the front layer (or top layer) may be of a certain degree of transparency or translucency, while the middle layer displays a pattern and / or color, so that the pattern and / or color can be seen through the front layer (or top layer). These patterns and / or colors can be like game icons, such as game characters or their portraits, like the seven icons in Genshin Impact (fire, water, wind, lightning, ice, grass, or rock); they can also be anime icons, such as anime characters or their portraits, like the ninja village icons (or clan totems or ninjutsu icons) in Naruto; they can also be weapon icons in games or anime, such as the tailed beasts or kunai in Naruto, with kunai including rod-shaped shuriken and chariot swords, where rod-shaped shuriken include single-pointed needles and double-pointed senbon, and chariot swords include disc-shaped meteor darts with 3-8 points.
[0091] In some embodiments, the sheet is configured to include three layers: an outer layer, a middle layer, and an inner layer, with the inner layer configured as an adhesive layer. Optionally, the area of the adhesive layer is smaller than that of the middle layer and / or the outer layer. Optionally, the adhesive layer, such as an adhesive layer, is attached to the surface of a textured base layer included in the middle layer. Optionally, the adhesive layer is cross-shaped. This results in an adhesive layer with an area smaller than that of the middle layer and / or the outer layer, forming an adjustable area for attachment and adjustable adhesive force.
[0092] In other embodiments, the sheet is configured to include three layers: an outer, a middle, and an inner layer, wherein the inner layer is configured as an adhesive layer; the middle layer is configured to include a textured base layer, which is configured to embed a functional load contained in the outer layer to enhance retention of the functional load, and / or to have color and / or shape constituting the above-described icon.
[0093] Optionally, Figure 5 In the figures, any one of sub-figures (a12), (b11), (b12), (c11) to (c13), or sub-figures (a22), (b22), (b23), (b25), (c22), or (c24) has a groove located on one side. A first region of this side, excluding the groove port, can optionally be configured as, for example, a cleaning section, and / or a second region of this side, excluding the groove port, can optionally be configured as, for example, a hand-moisturizing section. The cleaning section is, for example, a cleaning cloth. The hand-moisturizing section contains, for example, a hand-moisturizing ingredient.
[0094] In some implementations, for example Figure 5 The preparation method of the sub-figure (a11) or sub-figure (a21) includes: preparing a base layer with an adhesive layer bonded to its bottom surface, and an easy-tear film layer bonded to the bottom surface of the adhesive layer; loading a functional load layer on the top surface of the base layer; and cutting to obtain the substrate. Optionally, the cutting includes, but is not limited to, roll cutting or laser cutting.
[0095] In other implementations, for example Figure 5 Sub-figure (a12) or sub-figure (a22) shows a method for preparing a substrate, comprising: preparing a substrate having an array of grooves on its top surface and an adhesive layer bonded to its bottom surface, the adhesive layer having an easy-tear film layer bonded to its bottom surface; loading a functional load layer within the grooves on the top surface of the substrate; and cutting along the periphery of the grooves. Alternatively, the method comprises: preparing a first substrate and a second substrate, the second substrate having a perforated array, wherein an adhesive layer is bonded to the bottom surface of the first substrate, the adhesive layer having an easy-tear film layer bonded to its bottom surface; attaching the second substrate to the top surface of the first substrate to obtain an array of grooves corresponding to the perforated array; loading a functional load layer within the grooves; and cutting along the periphery of the grooves. Optionally, the configuration may be, for example, rolled or stamped. Optionally, the cutting may be, for example, rolled cutting or laser cutting.
[0096] In other implementations, for example Figure 5 Sub-figure (a12) or sub-figure (a22) illustrates a method for preparing a substrate, wherein an adhesive layer is bonded to the bottom surface of the substrate, and an easy-tear film layer is bonded to the bottom surface of the adhesive layer; a functional load is die-cast by applying pressure to the top surface of the substrate and simultaneously forming a groove to accommodate the functional load; and the load is obtained by cutting along the periphery of the groove. Optionally, the cutting may be, for example, roller cutting or laser cutting.
[0097] In some other implementations, for example Figure 5 Sub-figures (a12) or (a22) may be used to describe a first preparation method comprising: preparing a base layer, the base layer having adhesive properties, its bottom surface configured as an attachment surface, and its top surface configured as an attachment surface for a functional load; or, a second preparation method comprising: preparing a base layer, the bottom surface of which includes a bottom groove configured as a suction cup, and the top surface configured as an attachment surface for a functional load. Further, the method may include cutting, such as roll cutting or laser cutting, for example, cutting along a predetermined area or around the top groove. The top surface configured as an attachment surface for a functional load may include, but is not limited to: a top surface configured as an attachment surface for a functional load layer, or a top surface configured as an attachment surface for an island-shaped protrusion layer, or a top surface including a top groove containing a functional load. For example, the top groove may be integrally formed, press-formed, or thermoformed, or the groove may be pressed out while the functional load is attached using a press-forming configuration. Another example is that the bottom groove may be configured as a suction cup (e.g., one or more). Optionally, the inner layer is a single layer, such as an adhesive layer or a nano-adhesive material. Optionally, the inner single layer is a transparent silicone double-sided adhesive sheet or a single-sided adhesive sheet.
[0098] In some other implementations, for example Figure 5 The sub-image (a11) or sub-image (a21), etc., are prepared by a method comprising: step one, preparing a substrate having an adhesive bottom surface; step two, loading a functional load layer onto the top surface of the substrate. Optionally, for example... Figure 5 As shown in sub-figure (a12) or sub-figure (a22), step one may include having one or more grooves on the top surface of the substrate for accommodating and shaping a functional load layer. Optionally, step one may include: the top surface having an adhesive and attached wiping portion, the wiping portion being sheet-like to load the functional load layer on the top surface, the wiping portion, for example, having a porous material, fibrous structure, fabric structure, surface rough structure, or mesh on the top surface, etc. Optionally, a release protective film is bonded to the bottom surface. Optionally, an intermediate step may be included between steps one and two, namely, attaching an annular sheet to the top surface of the substrate to obtain a groove located in the middle of the substrate, the groove for accommodating and shaping the functional load layer.
[0099] In some other implementations, for example Figure 5 The sub-image (c21), prepared by a method comprising: preparing a first transparent substrate having a preset pattern array, wherein an adhesive layer is bonded to its bottom surface, and an easy-tear film layer is bonded to the bottom surface of the adhesive layer; loading a functional load layer of second transparency onto the top surface of the substrate; and cutting along the periphery of the preset pattern. Optionally, the cutting includes, but is not limited to, roll cutting or laser cutting. Optionally, the preset image is, for example, screen printing or UV printing.
[0100] In some other implementations, for example Figure 5Sub-image (c22), the method for preparing it includes: preparing a first transparent base layer with a pattern, the top surface of which is provided with an array of grooves of a predetermined shape, and the bottom surface of which is bonded with an adhesive layer, the bottom surface of which is bonded with an easy-tear film layer; loading a functional load layer in the grooves on the top surface of the base layer; and cutting along the periphery of the grooves to obtain the substrate. Optionally, the configuration is performed by, for example, rolling or stamping. Optionally, the cutting is performed by, for example, rolling cut or laser cut.
[0101] In some other implementations, for example Figure 5 The sub-image (c23), prepared by means of: preparing a base layer having a first transparency, wherein an adhesive layer is bonded to the bottom surface of the base layer, and an easy-tear film layer is bonded to the bottom surface of the adhesive layer; loading a functional load layer onto the top surface of the base layer to obtain a second base layer; printing an icon on the top surface of the second base layer, the icon including a preset pattern and / or color; and cutting along the periphery of the icon. Optionally, the cutting is performed by, for example, roll cutting or laser cutting.
[0102] In some embodiments, the sheet is configured to include three layers (outer, middle, and inner), two layers (outer and inner), or a single inner layer. Optionally, the outer layer is configured as the top layer and carries a functional load, the functional load forming a wiping surface covered with a release protective film, and the inner layer is configured as the bottom layer. Optionally, the inner layer is a single layer (i.e., one layer) with adhesive properties; furthermore, its bottom surface is configured as an attachment surface; the top surface is configured as an attachment layer for the functional load (or the top surface is configured as an island-shaped protrusion layer for attaching the functional load, or the top surface includes a groove and the functional load is contained within the groove), wherein, for example, the groove on the top surface can be pre-formed, or the groove can be pressed out while the functional load is attached in a press-forming configuration. Alternatively, the inner layer is a single layer with grooves on its inner surface (e.g., the bottom surface), the grooves being configured as suction cups (e.g., one or more), and a functional load layer (or an island-shaped protrusion layer for attaching a functional load, or a top surface including grooves and containing a functional load within the grooves) on the top surface, for example, the plurality of suction cups forming a micro-suction cup array. Alternatively, the inner layer is a single layer, for example, an adhesive layer, or a nano-adhesive material. Alternatively, the inner layer is a transparent silicone double-sided adhesive sheet, or a single-sided adhesive sheet.
[0103] Optionally, Figure 5 Sub-figures (a11) or (a12), or sub-figures (a21) or (a22), the outer functional load layer can be distributed in an island-like manner and loaded in the central area of the middle layer surface. This island can be a single island; it can also be arranged in an array on the middle layer surface (or the base layer surface of the previous layer), thereby forming a synaptic array or a line array (such as lines in the form of straight lines, wavy curves, arcs or loops); it can also be cross-shaped, etc., thereby reducing the obstruction of the display content of the attachment area on the top surface of the target device, such as the screen, and increasing the wiping contact area when the touch fingertip slides and wipes in multiple directions.
[0104] Optionally, Figure 5 Sub-figures (a11) or (a12), or sub-figures (a21) or (a22), or any of sub-figures (b21) to (b25), excluding the secondary portion, may have a grooved bottom layer. The groove can reduce the adhesion area, thus allowing for easy movement on the screen to adjust the attachment position, or, when the groove is circumferentially closed, it can form a certain suction cup adsorption (thus replacing the adhesion method of the adhesive layer). Optionally, the inner layer of the top, middle, and bottom layers may have a suction cup, which can generate adsorption under pressure to negatively attract the attached module (e.g., a circular or square sheet or plate) to a surface such as the screen.
[0105] Optionally, the adhesive layer, such as a bonding layer, may be attached to the surface of the textured base layer included in the middle layer. Optionally, the adhesive layer is cross-shaped. This results in an adhesive layer area smaller than the middle and / or outer layers, forming an adjustable attachment area and adjustable adhesion force.
[0106] In some embodiments, the sheet is configured to include three layers: outer, middle, and inner, with the inner layer being an adhesive layer. Optionally, the inner layer is configured as an adhesive layer. Further, the inner layer includes a central region and an edge region, wherein the edge region is configured as a non-adhesive layer, i.e., it does not have an adhesive or adhesive function, thus facilitating easy removal of the entire sheet from the edge region after use. Optionally, there is a cutout between the edge region and the central region.
[0107] Optionally, Figure 5 Sub-images (a11) or (a12), or sub-images (a21) or (a22), can also be configured to have shapes that mimic animal forms (such as a cartoon full-body shape) or specific parts of an animal (such as a cartoon head, like a cartoon cat head) to add a certain degree of interest. Optionally, Figure 5 Sub-figure (a11) or (a12), the surface of the front layer may have a pattern and / or color and / or undulation, for example, the wiping surface of the front layer may have a pattern and / or color and / or undulation.
[0108] Please refer to this. Figure 6This diagram illustrates various possible application scenarios for the attachment modules of this application. See sub-figure (a11) for examples of various possible circular or semi-circular sheets (or plates) attached to the top surface of a mobile phone. A circular attachment module is attached to the left edge of the top surface of the phone; its position can be adjusted by the user, for example, in a game. Preferably, the attachment position is a non-touch hotspot or a position desired by the user. A semi-circular attachment module is attached to the right edge of the top surface of the phone, which has the advantage of reducing screen obstruction and providing the necessary wiping surface or ensuring the necessary contact diameter for wiping. Furthermore, the arrows in sub-figure (a11) show two alternative ways to change the attachment position of the quick-connect module on the left, preferably both located in non-touch hotspots. Preferably, the quick-connect module has a certain adhesion force and can be pushed to change the attachment position. And sub-figure (a12) shows various possible applications... An example of a structure in which the wiping part is attached to the top surface of the target device and the sub-part is attached to the side surface of the target device during operation. The part other than the sub-part can be called the main part. The main part is attached to the top surface of the phone. The main part is a one-piece attachment module attached to the left edge of the top surface of the phone. The main part may include three layers (top, middle and bottom) or two sides (top, bottom and sides). The attachment module is attached to the left edge of the top surface of the phone and its top layer is entirely loaded with a functional load layer. The attachment module is also attached to the right edge of the top surface of the phone and its top layer has a groove (or the top surface is in an island shape) loaded with a functional load layer. The advantage of the added sub-part is that it can be located on the side of the phone during use and can provide adhesion (or insertion force) to the side of the phone, thereby enhancing the overall attachment firmness or helping to reduce the attachment firmness requirements of the main part.
[0109] Please refer to this. Figure 5The following diagrams illustrate various possible application scenarios of the attached modules with icons according to this application. See sub-figure (a21) for examples of various possible circular or semi-circular sheets (or plates) attached to the top surface of a mobile phone, including a sheet attached to the left edge of the top surface of the phone, comprising three layers (top, middle, and bottom) or two sides, and featuring the Sharingan icon from the anime Naruto; and a sheet attached to the right edge of the top surface of the phone, comprising three layers (top, middle, and bottom) or two sides, and featuring the sword and wheel icon from the anime Naruto; and sub-figure (a22) for examples of various possible circular or irregularly shaped sheets (or plates) attached to the top surface of a tablet computer, including a sheet attached to the left edge of the top surface of the phone. A single attached module is affixed to the side edge, comprising three layers (top, middle, and bottom) or two sides (top, bottom, and sides), and features either the Sharingan icon from the anime Naruto or an ice element icon from the game Genshin Impact in another location. A single attached module is also affixed to the right edge of the top surface of the phone, comprising three layers (top, middle, and bottom) or two sides (top, bottom, and sides), and features either the sword icon from the anime Naruto or a rock element icon from the game Genshin Impact in another location. The rock element icon is mounted on the wiping part, and the wiping part has four strips around its perimeter. Each strip has a cutout with the wiping part, and the bottom surface of each strip is non-adhesive, serving as a convenient handle for tearing off the attached module.
[0110] In other embodiments, multiple sheet-shaped attachment modules are pre-attached to a carrier substrate. Each attachment module can be easily peeled off the carrier substrate, and the bottom surface (or inner surface) of each peeled attachment module is the adhesive surface. Optionally, the multiple sheet-shaped attachment modules are configured to be arranged in an array on the carrier substrate. The carrier substrate then serves as a uniform protective layer for the adhesive surface. Optionally, the multiple sheet-shaped attachment modules are configured to be pre-included in a substrate before being pre-attached to a carrier substrate, and the multiple sheet-shaped attachment modules are obtained by cutting the substrate at preset positions. Optionally, the preset position cut is a cut through a preset position. For example, the bottom layer (or inner layer) of each peeled attachment module is an adhesive layer. Optionally, the sheet is configured to include three layers (outer, middle, and inner) or two layers (outer and inner). Optionally, the outer layer is configured as the top layer and loads a functional load, the functional load forming a wiping surface, and the surface of the wiping surface is covered with a release protective film.
[0111] In some embodiments, in scheme B, the non-wiping portion includes a first part, a second part, and a hinge structure between the first and second parts, wherein the hinge structure is used to switch the first and second parts between a folded state and an unfolded state. Scheme B is applicable to devices with flat screens or foldable screens; for example, it is applicable to flat screens when the bottom surface of the first part is provided with the connecting member, and it is applicable to foldable screens when the side surface of the second part is provided with the connecting member.
[0112] Optionally, the connecting member of the attached module is used to allow the attached module to be quickly attached to a user-touchable position on the surface of a target device. Preferably, the quick-attachment method includes adhesive, magnetic attraction, suction cup, clip, insertion, or sleeve. In some preferred embodiments, such as any of claims A, B, and C of this application, the connecting member of the attached module is used to allow the attached module to be quickly attached to a user-touchable position on the surface of a target device. For example, the attached module is quickly attached to the surface of a target device (such as a mobile phone or a quick-attach peripheral device for a mobile phone case) to obtain a novel first device with the function of the attached module. The advantage of this quick-attachment method is that it allows for modular and flexible implementation of both attached and detached states, resulting in two structural forms for the target device before and after attachment. Especially for users who already own a target device, only one attached module is needed for attachment, eliminating the need for another target device.
[0113] In some embodiments, the quick-connect configuration of the connecting member included in the attachment module can optionally include a snap-fit, slot, hook and loop fastener, negative suction cup, magnetic snap, or bearing, and one end of the connecting member is coupled to the multifunctional housing of the target device and the other end is coupled to the carrier member; or, the bottom surface of the target device is coupled with a first magnetic attractor (e.g., a magnetic sheet) to magnetically attract a second magnetic attractor further provided on the attachment module; or, the connecting member included in the attachment module is used to quickly connect the attachment module to a user-accessible location on the surface of the target device, and the user-accessible location includes, but is not limited to, any one or more of the front, rear, left, right, top, or bottom surfaces of the target device, or includes, but is not limited to, the space above or to the side of any one of the front, rear, left, right, top, or bottom surfaces of the target device; or, the quick-connect configuration of the connecting member included in the attachment module can also be replaced by an integral molding or fixed connection method.
[0114] Optionally, the connecting member for the attached module is used to configure the attached module integrally or fixedly onto a user-touchable finger-accessible position on the surface of a target device. The fixed connection configuration includes a non-detachable connection or a non-quick-release connection. In some preferred embodiments, such as any of embodiments A, B, and C of this application, the connecting member for the attached module is used to configure the attached module integrally or fixedly onto a user-touchable finger-accessible position on the surface of a target device. For example, by integrally molding or fixing the attached module to the surface of a target device (such as a mobile phone or a quick-connect peripheral device for a mobile phone case), a second novel device with attached module functionality is obtained. The advantage of this quick-connect integrated molding or fixed connection method is that, for example, a mobile phone case with an attached module already fixedly connected to its surface (in this case, the mobile phone case with the attached module fixedly connected can also be regarded as a quick-connect module, such as a composite quick-connect module), which makes it more convenient to obtain the attached module and its functions directly when using the mobile phone case without having to manually attach it after the mobile phone case is fitted to the phone.
[0115] Optionally, the carrier component attached to the accompanying module may also include, but is not limited to: the non-wiping part being configured with a material including one or more combinations of rigid, flexible, elastic, or plastic materials; and / or, the top of the wiping part being provided with a protective cover for protecting the functional load in the non-use state, or, the top of the wiping part being provided with a protective cover for protecting the functional load in the non-use state, and the protective cover having a flip-top, sliding rail, magnetic, adhesive, easy-tear, clip-on, or plug-in opening and closing design; and / or, the number of wiping parts includes one or more, or the number of wiping parts is multiple and two of them are configured in a left-right relationship to the front or rear of the target device. It is also configured to be coupled to the user's left-hand touch finger and right-hand touch finger respectively, or there are multiple wiping parts, two of which are configured in a left-right relationship on the left side or right side of the target device during operation, and the two are also configured to be coupled to the user's left-hand touch finger and right-hand touch finger respectively; and / or, the functional load is configured to support external addition to replenish it after being reduced by the wiping, or to support the removal and replacement of the wiping part along with the functional load therein, and the wiping part can be connected to the non-wiping part in a quick-connect manner; and / or, the non-wiping part has a support structure, the support structure being configured to cause the wiping surface of the wiping part to rub against the screen to transfer the functional load under the action of the user's touch finger or non-touch finger.
[0116] It should be noted that, in this application, the top surface of the plate (or sheet) can be of any shape when viewed from above. From a top-view perspective, the plate (or sheet) may or may not have perforations. From a top-view perspective, the plate (or sheet) may or may not have grooves, raised or recessed textures, reliefs, or patterns, etc. Grooves (or recesses) are considered an optional mechanical fixing structure. From a top-view perspective, the plate (or sheet) can have undulations, such as gradual or abrupt undulations. Furthermore, the plate (or sheet) can be flexible, such as flexible membrane material, soft plastic layer material, or foam board; or it can be rigid, such as hard plastic sheet material or aluminum alloy sheet material. These optional features are not limited unless specifically indicated.
[0117] In some embodiments, the outer or top layer or groove (or trough) is configured to hold a type of solid mobile game powder, which is a type of functional load. This solid mobile game powder is commonly in the form of a white powder, a transparent gel, or a solid paste, and is usually contained in a container larger than a matchbox. It is applied by rubbing it on the fingertips after the protective cap is removed. Its main function is to increase the coefficient of friction between the touch finger and the screen, preventing slippage due to sweaty hands. Common parameters include being able to remain non-melting and non-dripping at room temperature, being non-toxic and non-irritating, and being made of skin-friendly materials (e.g., suitable for sensitive skin). A balance needs to be struck between "too sticky and causing buttons to get stuck" and "too slippery and useless" to find a "just enough grip" balance. This helps reduce accidental touches and disconnections (or disconnections), improves hand speed, stabilizes the feel, and improves operational accuracy. This allows for stable skill release, aiming, and movement even in intense battles, preventing embarrassing situations such as "a slip of the fingertip and the enemy hero has already escaped with low health."
[0118] For example, solid mobile game powder may include a polymer base, commonly made of materials such as silicone or acrylate polymers. Its core function is to form the main body of the product, providing adsorption and basic structure, and to adhere to the skin, such as the fingertips. It can achieve "passive anti-slip rather than sticking" through physical adsorption and may contain microporous structures, forming "a light and strong contact layer". Especially in summer when hands are sweaty, it can quickly absorb and lock in sweat and keep the surface dry. At the same time, it increases the static friction between the screen and the screen by increasing the contact area (for example, some products have a nominal coefficient of friction of not less than 0.8), thereby making the screen touch more sensitive. It also includes functional powder additives, such as special polyamide powder, acrylate micronized wax, graphite or molybdenum disulfide, whose core function is to finely adjust the surface coefficient of friction and feel. Different powders can bring different tactile sensations such as smooth, frosted or anti-slip. It also includes auxiliary ingredients, such as magnesium carbonate, whose core function is to help absorb sweat and keep fingertips dry.
[0119] Compared to traditional hand-applied powder (such as talcum powder), some available solid paste-like mobile game powders are less likely to stain the screen or cause static electricity interference, resulting in a cleaner, more efficient, and longer-lasting finish. Users can choose related products based on personal preferences, screen characteristics, or environmental differences such as temperature, perhaps preferring smooth operation or requiring strong anti-slip properties.
[0120] It should also be noted that in this application, the cross-section of the plate can be rectangular or its approximate shape, or it can be square, circular, or any of these approximate shapes, or it can be irregular in shape. As long as its circumferential surface can be configured with multiple side surfaces, all of which can be connected to the wiping part, it should be understood as a plate. For example, a circular or its approximate shape can also have its circumferential surface divided into multiple side surface regions. The cross-section of the sheet is thin-layered, which can be understood as only two side surface regions being able to better connect the wiping part or connecting member. It is also easy to understand that when the thickness of the sheet increases, more than two side surfaces can be obtained so that they can all be better connected to the wiping part or connecting member. In this case, the sheet can be understood as a plate. In addition, the base (or substrate) that is not part of the wiping part in this application can be used as a main body (e.g., a cylinder or square column) in some embodiments, and as a type of plate (e.g., a substrate) in other embodiments.
[0121] This application also discloses an attachable module for enhanced fingertip touch that can move with the screen. The carrier component further includes a second wiping portion and / or a third wiping portion. The second wiping portion is configured to carry a cleaning portion, wherein the cleaning portion is configured to include cleaning ingredients or cleaning materials and is used to attach to the carrier component for cleaning the user's touch fingers and / or non-touch fingers. The third wiping portion is configured to carry a hand-moisturizing portion, wherein the hand-moisturizing portion is configured to include hand-moisturizing ingredients and is used to attach to the carrier component for moisturizing the user's touch fingers and / or non-touch fingers.
[0122] This application also discloses an attachable module that enhances fingertip touch control and can move with the screen. The screen is included in a portable terminal. The attachable module includes: a connecting member for engaging the attachable module to a user's finger-accessible position on a target device surface, the target device surface including the portable terminal surface or a quick-connect peripheral device surface of the portable terminal; and a carrier member having a wiping portion and a non-wiping portion; wherein the wiping portion is configured to carry a functional load, the functional load being configured to allow the user to swipe it onto the touch finger, the functional load being used to enhance the fingertip touch experience on the screen; and the non-wiping portion is configured to be fixedly or movably connected between the connecting member and the wiping portion. Optionally, the functional load includes a lubricant, the lubricant being used to enhance the fingertip touch experience on the screen, such as smoothness and stability. Optionally, the target device can be a wearable device not positioned on the fingertip for touch. The wearable device has a carrier component, including a wiping portion and a non-wiping portion. The wiping portion is configured to carry a functional load, including a lubricant. The carrier component may include, for example, a wearable device, such as a finger-wearing device, a hand patch, or a hand clamping plate. A finger-wearing device may be a ring. A hand clamping plate may be held between the fingers or the thumb and forefinger. A ring may be worn on the index finger so that the thumb can directly and quickly access the wiping surface of the functional load on the carrier component of the ring when used as a touch fingertip. The wiping surface is preferably positioned on the right side of the index finger during operation, allowing the thumb to quickly and easily access the load. A patch may be a connecting member with an adhesive layer that can be directly attached to the hand, such as the index finger or the web of the hand. Alternatively, the target device can also be the hand itself, such as the index finger or the web of the hand. For example, when the attached module is configured as a patch with a functional load, the connecting member based on the adhesive layer can be directly attached to the hand, such as the index finger or the web of the thumb, thereby achieving a replacement effect for a ring, such as when attached to the right side of the index finger, achieving a similar reach effect to a ring.
[0123] Please refer to this. Figure 6 The illustrations also show various possible application scenarios of the attached modules with icons, including examples of rectangular or square pieces attached to the index finger near the thumb in sub-figure (a31), and examples of rectangular or square pieces attached to the index finger near the thumb in sub-figure (a32) forming a ring. The advantage is that the fingertip can easily reach the ring. Preferably, the left thumb acts as the first touch finger and rubs the rubbing surface 41 attached to the left index finger, and / or the right thumb acts as the second touch finger and rubs the rubbing surface 41 attached to the right index finger.
[0124] It should also be noted that, optionally, the aforementioned Figure 5Sub-figures (a11), (a12), or (b11), or sub-figures (a21) or (a22), or any of sub-figures (b21) to (b26), or any of sub-figures (c21) to (c25), or any of sub-figures (d21) to (d22), may be, for example, flexible sheets, to be attached as patches to the hand, such as the surface of the index finger or the web between the thumb and forefinger, with the wiping surface facing upwards and preferably located on the side near the thumb for easy access and wiping by the user. In particular, such as Figure 5 Subgraph (b11), or any of subgraphs (b21) to (b26), has an adhesive layer as its bottom layer, which can be attached to form a ring structure (or a ring-like structure) by wrapping around the finger.
[0125] In some embodiments, the ring is configured to have an icon, such as a logo containing text or a pattern. Optionally, the icon is located on the outer layer and is in an embossed form, and is composed of a functional load-bearing element; or, the icon is located on the middle layer and is in a patterned form, and the outer layer is composed of a functional load-bearing element with a certain degree of transparency or translucency. For example, the ring could be configured as the ring worn by members of the Akatsuki organization in the Naruto anime. For example, Pain (Tendo) wears a ring with the character "zero" written on it; Itachi Uchiha wears a ring with the character "vermilion" written on it, representing the Vermilion Bird, which corresponds to Itachi's expertise in fire-style ninjutsu and also symbolizes rebirth from the ashes; Deidara wears a ring with the character "blue" written on it, and so on. These rings are not only symbols of membership but also key mediums for activating the sealing technique "Phantom Dragon Nine Seals" to seal the tailed beasts, thus giving the attached module in the form of a ring both fun and functionality. Please refer to this. Figure 7 A schematic diagram illustrating another attachment module of this application and its application to a first quick-connect peripheral device (example of a clip-on mechanical auxiliary button device) adapted to a portable device is shown, see sub-figure (b11). Therefore, in addition to obtaining an attachment module, a novel clip-on mechanical auxiliary button device with the added functionality of the attachment module of this application is also obtained (as one of the devices disclosed in this application). Thus, in some embodiments, a first quick-connect peripheral device connected to an attachment module can be understood or configured as a composite attachment module (or can be understood or configured as a device).
[0126] Depend on Figure 7As shown in sub-figure (a11), a conventional clip-on mechanical auxiliary button device is described; and in sub-figure (b11), the attached accompanying module (e.g., a peel-off adhesive) is adapted to the top surface of the clip-on mechanical auxiliary button device, such as the top surface of the screen touch head 109 or the auxiliary button operation transmission structure 108, which may then form a projection on the top surface of the target device. For example, the projection may be located on the edge of the top surface of the target device or the edge of the screen, resulting in some obstruction of the screen display interface. If the obstructed area is not within the user's required field of vision, the impact on the user's task processing is limited, and the obstructed area can be adjusted by moving the clamp in the left-right direction.
[0127] Optionally, Figure 7 In sub-diagram (b11), the attached accessory module (e.g., easy-tear adhesive) is adapted to the top surface of the back clip mechanical auxiliary button device, which can be the top surface of the front clamping end 105 or the top surface of the rear clamping end 106.
[0128] Furthermore, it should be compared and supplemented that, similar to this projection and its effects, in some other embodiments, the attached accompanying module is configured to include sub-scheme A4: the non-wiping part is constructed to have a third base, the third base having a bottom surface and a top surface, and the third base is configured such that, during operation, the bottom surface of the third base is attached to the top surface of the target device, and the area of the bottom surface of the third base is smaller than that of the top surface of the target device, and the top surface of the third base is provided with a wiping part such that the wiping surface of the wiping part faces outward from the third base. In some examples, the maximum diameter of the bottom surface of the third base does not exceed 1 cm, for example, the third base is a cylinder with a top surface and a bottom surface or a quasi-cylinder with a top surface and a bottom surface and the area of the top surface is smaller than that of the bottom surface, etc. It can be seen that sub-scheme A4 will form a projection on the top surface of the target device, and similarly, this projection can be located on the border or edge of the screen of the top surface of the target device, resulting in a certain degree of obstruction of the screen display interface. If the obscured area is not within the user's necessary field of vision, its impact on the user's task processing is limited, and the obscured area can be adjusted flexibly and instantly by moving the attachment point in four directions: front, back, left, and right.
[0129] It should be noted that, in this application, the wiping surface of the wiping part is the portion of the wiping part that exposes the functional load, corresponding to the top end face obtained after the functional load is supported by the wiping part. In some embodiments, the wiping surface of the wiping part is the top port of the groove. In other embodiments, the wiping surface of the wiping part is formed by the top end face of the functional load after the wiping part supports the functional load.
[0130] It should be noted that in this application, the term "a" in expressions such as "a second base" or "a target side" does not necessarily indicate a quantity of one. It should also be noted that, without departing from the technical principles of this invention, several improvements and modifications can be made based on this disclosure, and these improvements and modifications should also be considered within the scope of protection of this invention. Where there is no conflict, features of the attachment module and its embodiments can be combined with each other, and features of the attachment module and its usage can be combined with each other. Devices (or quick-connect peripheral devices) can be coupled with features of the attachment module and its embodiments.
[0131] In one embodiment of the device disclosed herein, the device is configured to include a multi-functional housing, which may include a bottom surface and multiple sides (such as front and rear sides and / or left and right sides). The bottom or sides of the multi-functional housing may include quick-connect attachment modules; alternatively, they may include fixedly connected attachment modules, thereby providing an enhanced multi-functional housing. In some examples, the multi-functional housing also has a top surface, for example, the top of at least one of its edges (i.e., side edges) having a certain width (e.g., widened) to obtain the top surface, allowing attachment modules to be connected to the top surface via quick-connect or fixed connection. Thus, the device constitutes an improved multi-functional housing.
[0132] In another embodiment of the device disclosed herein, the device is configured to include an improved auxiliary grip handle for enhancing touch control of electronic devices. Existing auxiliary grip handles typically attach a handle portion to a portable device, such as a mobile phone or tablet, using a mounting bracket. During use, the handle portion is located at the bottom or side of the portable device. The device of this application, wherein the improved auxiliary grip handle is configured to be attached to a portable device via a quick-connect mechanism; and when in operation, it has a first portion extending to a target side of the target device (such as a mobile phone or tablet), or a first portion extending to a target side of the target device (such as a mobile phone or tablet) with a projection on the target side; wherein the top or front side of the first portion is configured for quick-connect engagement with an attachment module, or configured to have a wiping portion for carrying a functional load. Thus, an auxiliary grip handle with an attachment module is obtained, thereby constituting the improved auxiliary grip handle; or an auxiliary grip handle with a wiping portion for carrying a functional load is obtained, thereby constituting the improved auxiliary grip handle.
[0133] Regarding the preparation method disclosed herein, this application also discloses a method for preparing an attachment-on-demand module, which includes, but is not limited to: prefabricating a first base body; bending the first base body along a predetermined bend to obtain a first extension segment and a second extension segment at both ends of the bend, wherein the first extension segment is used for quick-connect coupling and the second extension segment is used for coupling a functional load; Alternatively, a second base and a second base are prefabricated; the two are joined together, such that the second base and the second base respectively constitute a first extension segment and a second extension segment, the first extension segment and the second extension segment together constitute a bending structure, wherein the first extension segment is used for quick connection and the second extension segment is used for connecting functional loads.
[0134] Optionally, the preparation method further includes: a first base body constituting a plate. Optionally, the preparation method further includes: a second base body constituting a first plate, and a second base body constituting a second plate. Preferably, the prefabrication includes, but is not limited to, being configured as a mold. Optionally, the preparation method further includes, but is not limited to: a first extension section for joining quick-connect methods, including, but not limited to: quick-connect methods including magnetic attraction, adhesion, or suction cups. Optionally, a second extension section for joining functional loads, including, but not limited to: the functional load being joined to an easy-tear adhesive base layer. Optionally, the easy-tear adhesive base layer has a carrier for the functional load. Optionally, the easy-tear adhesive base layer may or may not have grooves or concave lines for supporting the functional load. Advantageously, after the functional load is worn out, it is easy to remove and replace it.
[0135] Fourthly, this disclosure also discloses another second quick-connect peripheral device for enhancing touch control in electronic devices. The second quick-connect peripheral device includes a first bent structure, a quick-connect structure coupled to the bottom surface of the electronic device, an auxiliary button structure, and an auxiliary button operation transmission structure. The first bent structure includes a bent portion and first and second extension sections extending from both ends of the bent portion. The first extension section includes a first plate, the first plate being connected to a quick-connect structure, the quick-connect structure being used to configure the second quick-connect peripheral device onto the surface of the electronic device in a quick-connect manner, the quick-connect manner including magnetic attraction, suction cup, or adhesion, the magnetic attraction, suction cup, or adhesion being configured to attach the first plate to the bottom surface of the electronic device. The second extension section includes a second plate, and the second plate is connected to a mechanical auxiliary button structure; The mechanical auxiliary button structure includes a pressing part, a force transmitting part, and a touch screen part. The pressing part is configured to receive a button action, the force transmitting part is configured to transmit the mechanical force generated by the button action to the touch screen part, and the touch screen part includes a touch head and the touch head is configured to receive the mechanical force and then press the screen touch button on the electronic device screen.
[0136] Optionally, the mechanical force may be, for example, a mechanical traction force.
[0137] Compared to the second quick-connect peripheral device for enhancing touch control in electronic devices disclosed herein, the prior art includes known clip-on mechanical auxiliary button devices, such as... Figure 7 As shown in sub-figure (a11), the existing back clip type mechanical auxiliary button device includes a front clamping end 105, a rear clamping end 106 and a connecting rod 107 between them; and, the mechanically pressable auxiliary button 104 is disposed on the front side of the front clamping end 105, and the auxiliary button operation transmission structure 108 is disposed on the front clamping end 105 and connected between the auxiliary button 104 and the screen touch head 109. When the auxiliary button 104 is pressed in a front-back direction, it generates mechanical force, which is then transmitted to the screen touch head 109 through the auxiliary button operation transmission structure 108, and then the screen touch head 109 performs a touch action on a target button on the screen.
[0138] However, these clip-on mechanical auxiliary button devices need to be clamped between the front and back sides of a phone, and at least the clamping end that doesn't connect to the mechanical button doesn't need to be present. This not only abruptly affects the overall visual effect of the screen, but also results in the two clamping ends being too long and extending above the edge of the screen in pursuit of a more secure clamping effect. This somewhat affects the aesthetic shape of the electronic device and the screen visual experience, and also requires molding four components, including the clamping ends, and is relatively bulky to carry.
[0139] Therefore, the second quick-connect peripheral device technology for enhancing touch control of electronic devices disclosed herein has the following beneficial effects: through the bending structure (to separate the quick-connect part from the auxiliary button), the quick-connect structure (which enables magnetic suction, suction cups or adhesion to obtain a larger area and a smoother mounting surface, and can even directly utilize the magnetic sheet set in some mobile phones to make the overall structure thinner), the auxiliary button structure, and an auxiliary button operation transmission structure, it ultimately organically utilizes multiple different sides of mobile phones and other electronic devices, especially the bottom surface of the electronic device, and finally eliminates the need for four clamping ends and abandons the clamping method without the necessary structure and force strength required for the clamping ends and clamping rods, thus realizing a bending structure that fully adapts to the shape of electronic devices, as well as the synergy between quick-connect methods with different experiences.
[0140] Please refer to this. Figure 7 Another attachment module of this application and a second quick-connect peripheral device adapted to a portable device are also shown, see sub-figures (a21) and (a22).
[0141] Depend on Figure 7Sub-figures (a21) and (a22) illustrate the attachment module, which includes a connecting member 10 for attaching to the bottom surface of the target device, a first bending structure (including a first extension segment 21 and a second extension segment 22), an auxiliary button or auxiliary button structure 104, an auxiliary button operation transmission structure 108, and a screen touch head 109. The finger-pressing surface of the auxiliary button or auxiliary button structure 104 may be located on the front side. The first extension segment 21 is attached to the bottom surface of the target device in a quick-connect manner. The second extension segment 22 has a projection on the front side of the target device. The auxiliary button operation transmission structure 108 transmits the mechanical force generated by the auxiliary button or auxiliary button structure 104 to the screen touch head 109. The screen touch head 109 receives the mechanical force and performs a touch action on a target button on the target device screen. As can be seen, the improved non-back clip mechanical auxiliary button device of this application includes the absence of the front and rear back clips and connecting rods present in the original design, thereby at least avoiding the projection and influence of at least two back clips on the top surface of the target device. The improved device also adds a quick-connect connection component (e.g., adhesive, magnetic, or suction cup) coupled to the bottom surface of the target device. Thus, as shown in sub-figure (a22), a novel attachment module is obtained, which is more convenient to use than the prior art and includes a mechanical auxiliary button. (This can be understood as one of the devices disclosed in this application or a quick-connect module disclosed in this application.)
[0142] Please refer to this. Figure 7 The application also discloses a second quick-connect peripheral device for enhancing touch control in electronic devices, and a schematic diagram of its application scenario adapted to a target device, as shown in sub-figures (a31) and (a32), which does not include any attached side-by-side modules. Figure 7 Sub-figure (a32) discloses a second quick-connect peripheral device for enhancing touch control of an electronic device without an attached module; sub-figure (a31) shows an application scenario of the second quick-connect peripheral device adapted to a target device. The finger surface of the auxiliary button or auxiliary button structure 104 can be located on the front side. Thus, as shown in sub-figure (a31), a second quick-connect peripheral device is obtained that does not include an attached module and includes a mechanical auxiliary button, and is more convenient to use than the prior art.
[0143] It can also be pointed out and compared that when the second quick-connect peripheral device includes an attached on-demand module and is used to enhance the touch of an electronic device, it constitutes another device protected by this application or another quick-connect on-demand module protected by this application.
[0144] Fifthly, this disclosure also discloses a third quick-connect peripheral device for enhancing touch control in electronic devices. The third quick-connect peripheral device includes a first bending structure, a quick-connect structure, an auxiliary button structure, and an auxiliary button operation transmission structure. The first bending structure includes a bend and first and second extensions extending from both ends of the bend. The first extension section includes a first plate, which is connected to a quick-connect structure. The quick-connect structure is used to configure the third quick-connect peripheral device onto the surface of the electronic device in a quick-connect manner. The quick-connect manner includes magnetic attraction, adhesion, or plugging. The magnetic attraction or adhesion is configured to attach the first plate to the bottom surface of the electronic device, and the plugging is configured to attach a plug on the first plate to a socket on one side of the electronic device. The second extension segment includes a second plate, which is connected to an auxiliary button structure. The auxiliary button structure has an auxiliary button configured to correspond to a target element within the electronic device. The target element includes a target touch button on the screen of the electronic device or a target instruction of a target application in the electronic device. The auxiliary button structure includes an auxiliary button configured to acquire an auxiliary button operation signal, and the auxiliary button includes a touch button or a mechanical button. The auxiliary button operation transmission structure is configured to include the plug, and the auxiliary button operation transmission structure is further configured to transmit the auxiliary button operation signal to the electronic device, thereby enabling the target element on the electronic device to receive a response.
[0145] Compared to the third quick-connect peripheral device for enhancing touch control in electronic devices disclosed herein, existing technologies include known features such as two shoulder buttons on some gaming phones. These shoulder buttons serve as additional physical buttons to provide more touch locations. These shoulder buttons, together with the on-screen touch buttons, constitute the touch area. Their structure is typically mechanical and similar to the built-in volume up and down buttons on a mobile phone, and their usage is the same. However, most mobile phones do not have built-in shoulder buttons. Therefore, the purpose of the third quick-connect peripheral device for enhancing touch control in electronic devices disclosed herein is to quickly and efficiently compensate for the shortcomings of mobile phones and other electronic devices that do not have built-in shoulder buttons.
[0146] Therefore, the third quick-connect peripheral device technical solution for enhancing touch control of electronic devices disclosed herein has the following beneficial effects: through the bending structure (to separate the quick-connect part from the auxiliary button), the quick-connect structure (including the quick-connect, power supply and communication functions of the plug), the auxiliary button structure, and an auxiliary button operation transmission structure (to realize the rapid transmission of auxiliary button signals), it ultimately organically utilizes multiple different aspects of electronic devices such as mobile phones, and organically coordinates with the data interface of electronic devices to achieve a bending structure that adapts to the shape of electronic devices, a quick-connect method that utilizes the interface, and coordination between the power supply and rapid communication requirements for enhanced touch control.
[0147] Furthermore, the third quick-connect peripheral device for enhancing touch control of the electronic device includes auxiliary buttons configured to be located on the front side of the electronic device during operation. Further, the auxiliary buttons are configured to include a first auxiliary button and a second auxiliary button, wherein the first auxiliary button and the second auxiliary button are located on the front side of the electronic device in a left-right relationship during operation, and are respectively used to couple the user's left index finger and right index finger.
[0148] Further, the third quick-connect peripheral device for enhancing touch control of the electronic device includes auxiliary buttons configured as shoulder buttons of the quick-connect peripheral device of the electronic device. Further, the third quick-connect peripheral device for enhancing touch control of the electronic device includes the attached accompanying module described above in this application. Preferably, the electronic device includes a portable device. Optionally, the portable device includes a mobile phone, tablet computer, or handheld device. Optionally, the type of the socket is a Type-C socket, and the plug is a Type-C plug. Optionally, the type of socket and plug is not limited to Type-C; unless otherwise specified, no limitation is made, provided that the socket and plug can transmit power and / or communication data after connection. Preferably, the plug is configured to be either correctly or incorrectly connected. The correctly connected configuration allows the first extension section to be positioned at the front of the front side of the target device, while the incorrectly connected configuration allows the first bent section to be positioned at the rear of the rear side of the target device. This achieves the organic utilization and combination of multiple different sides of the target device, particularly the socket, the side with the socket, and the front (or rear) side, thereby achieving a variety of user experiences.
[0149] Optionally, the connector is used for mechanical insertion into the socket, and the two may or may not have power supply and / or data communication functions after insertion; furthermore, the third quick-connect peripheral device also has a wireless communication module, which is used to transmit the acquired auxiliary button operation signal to the electronic device, thereby enabling the electronic device to execute the target touch button or target command bound to the auxiliary button's auxiliary button operation signal. The target command is included within a target application installed on the electronic device.
[0150] Optionally, the first bending structure includes a first extension segment and two second extension segments; the two second extension segments are located at both ends of the first extension segment and together form a U-shaped extension. Advantageously, during operation, one first extension segment is positioned on the right side of the target device, and the two second extension segments are positioned at the front of the front side and the rear of the rear side of the target device. This positions the two second extension segments at the front and rear of the target device, respectively, allowing one to be attached to a wiping section and the other to be attached to other functional components (e.g., auxiliary touch buttons).
[0151] Please refer to this. Figure 8 In the figures (a11) and (a12), sub-figures show another attachment module of this application and a third quick-connect peripheral device adapted to a portable device (an improved quick-connect shoulder key device having a first bent structure and a pluggable connection port). For details regarding this third quick-connect peripheral device, please refer to and incorporate the relevant descriptions below.
[0152] like Figure 8 As shown, sub-figure (a11) is an application scenario of a third quick-connect peripheral device including an attachment module adapted to the target device; sub-figure (a12) is a third quick-connect peripheral device including a first attachment module, constituting a second attachment module (or a device protected by this application) protected by this application.
[0153] It should be noted that, as Figure 8 In this configuration, the first extension segment 21 and the second extension segment 22 can have a uniform cross-section or a uniform diameter along the axial direction, or they can have a variable cross-section or a variable diameter along the axial direction, unless otherwise specified. The axes of the first extension segment 21 and the second extension segment 22 do not necessarily have to be straight lines; they can also be partially curved lines, unless otherwise specified. The auxiliary button or auxiliary button structure 104 can be considered as being included in the second extension segment 22. The first section of the second extension segment 22 with the auxiliary button or auxiliary button structure 104 and the second section without the auxiliary button or auxiliary button structure 104 can have a uniform cross-section or a uniform diameter along the axial direction, or they can have a variable cross-section or a variable diameter along the axial direction, unless otherwise specified. The data communication line 110 can be located inside the first extension segment 21 and the second extension segment 22 or inside the channel, or it can be located outside the first extension segment 21 and the second extension segment 22, unless otherwise specified.
[0154] Please refer to this. Figure 8 In the figure, sub-figures (b21) and (b22) further illustrate a third quick-connect peripheral device (an improved quick-connect shoulder button device with a first bent structure and pluggable) for enhancing touch control of electronic devices disclosed in this application, and its application scenario adapted to a target device, which may or may not include an attached accompanying module.
[0155] like Figure 8 As shown, sub-figure (b22) discloses a third quick-connect peripheral device for enhancing touch control of an electronic device without an attached module; sub-figure (b21) shows the application scenario of this third quick-connect peripheral device adapted to the target device. Thus, as shown in sub-figure (b22), a quick-connect shoulder button device is obtained that includes auxiliary buttons and can be easily attached compared to existing electronic devices without built-in shoulder buttons (which can also be understood as one of the optional devices disclosed in this application).
[0156] It can also be pointed out and compared that when the third quick-connect peripheral device includes an attached on-demand module and is used to enhance the touch of an electronic device, it constitutes another device protected by this application or another quick-connect on-demand module protected by this application.
[0157] Sixthly, this disclosure also discloses another fourth quick-connect peripheral device for enhancing touch control of electronic devices. The fourth quick-connect peripheral device includes a first bent structure, which includes a first extension section and a second extension section. A plug is connected to the left side of the first extension section. The plug is configured to be inserted into a socket on a target device, thereby enabling the fourth quick-connect peripheral device to be attached to the target device via a plug-in connection. The first extension section is positioned on the right side of the target device during operation. The second extension section is positioned on the front side of the target device during operation. The disclosure also includes an auxiliary button or auxiliary button structure, an auxiliary button operation transmission structure, and a screen touch head. The finger surface of the auxiliary button or auxiliary button structure may be located on the front side. The auxiliary button operation transmission structure transmits the mechanical force generated by the auxiliary button or auxiliary button structure to the screen touch head, which receives the mechanical force and performs a touch action on a target button on the target device screen. As can be seen, the improved non-back clip mechanical auxiliary button device of this application includes the absence of the front and rear back clips and connecting rods present in the original device, thereby at least avoiding the projection of at least two back clips on the top surface of the target device and their influence, and the addition of a connecting member (i.e., a plug) coupled to the target device's socket. It is evident that this fourth quick-connect peripheral device allows the second extension section to not necessarily have a connecting member attached to the front side of the target device, and allows the first extension section to not necessarily have a connecting member other than the socket attached to the front side of the target device.
[0158] In a seventh aspect, this disclosure also discloses a quick-connect shoulder button device for enhancing touch control of an electronic device, the quick-connect shoulder button device including a second quick-connect peripheral device for enhancing touch control of an electronic device as described above, or a third quick-connect peripheral device for enhancing touch control of an electronic device as described above, or a fourth quick-connect peripheral device for enhancing touch control of an electronic device as described above; the auxiliary buttons included in the second quick-connect peripheral device, the third quick-connect peripheral device, or the fourth quick-connect peripheral device are configured as shoulder buttons of the quick-connect shoulder button device.
[0159] It should be noted that in the specification and claims of this invention, the term "above" means two or more. The terms "comprising," "including," and "having," and any variations thereof, are intended to cover non-exclusive inclusion.
[0160] It should be understood that the orientation descriptions, such as up, down, front, back, top, bottom, inside, outside, side, high, low, etc. (if present), are only for the convenience and simplification of describing the present invention, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and should not be construed as a limitation of the present invention.
[0161] The above description is only a preferred embodiment of the present invention. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention. In the absence of conflict, the embodiments of the present invention and the features in the embodiments can be combined with each other.
Claims
1. A gain-enhancing fingertip touch attachment module that moves with a screen, the screen being incorporated into a portable terminal, characterized in that, The attachment module includes: a connecting member for attaching the attachment module to a user-touch finger-accessible location on a target device surface, the target device surface including the surface of the portable terminal or a quick-connect peripheral device of the portable terminal; a carrier member having a wiping portion and a non-wiping portion, the wiping portion being configured to attach a functional load, the functional load being configured to allow the user to swipe onto the touch finger, the functional load being used to enhance fingertip touch on the screen; the non-wiping portion being configured to be fixedly or movably connected between the connecting member and the wiping portion.
2. The attachment module according to claim 1, characterized in that, The attachment module further includes: the joining method includes a quick-connect method, a one-piece molding method, or a fixed connection method; and / or, the wiping part has a functional structure or surface functionalization structure that can fix or adsorb powder, paste, or liquid; and / or, the attachment module further includes a functional load, which is stored in the carrier component and enables the user to quickly wipe it onto the touch finger, the functional load being used to enhance the fingertip touch on the screen.
3. The attachment module according to claim 2, characterized in that, The attachment module further includes: the quick-connect method includes adhesive, magnetic, suction cup, clip, insertion, or fitting; or, The wiping section further includes: the functionalized structure includes a physical adsorption structure, a chemical adsorption structure, a mechanical fixation structure, or a functional material, wherein the functional material includes a smart responsive material or a magnetic material; the surface functionalization includes surface physical structure design, surface chemical functionalization modification, electrostatic adsorption, electrostatic flocking, and / or wettability control; or, The functional loading material further includes: in powder, paste, or solid form; or, The functional loading materials also include: solid mobile game powder, liquid anti-slip powder / paste, talc, magnesium carbonate, or fingerprint-resistant oil.
4. The attachment module according to claim 3, characterized in that, The wiping unit also includes: The functionalized structure further includes: the physical adsorption structure comprising porous materials, fiber structures, fabric structures, or surface-roughened structures; the chemical adsorption structure comprising polymeric gels, adhesives, or ion exchange materials; and the mechanical fixation structure comprising containers, meshes, or sandwich structures. The surface functionalization structure further includes: the surface physical structure design including porous structure, micro / nano rough structure, fiber structure or network structure; or, the surface chemical functionalization modification including polymer brush, gel layer, superphilic / hydrophobic surface or anion / cation exchange coating; or, the electrostatic flocking structure is a functionalization process that uses an electrostatic field to vertically or obliquely oriented and fix short fibers to the surface of the substrate included in the non-wiping part; or, the wettability control structure is to reduce the surface energy of the load by controlling the surface wettability of the load, thereby reducing the aggregation of the load and improving its dispersibility and adsorption efficiency.
5. The attachment module according to any one of claims 1-4, characterized in that, The carrier component further includes: Option A: The non-wiping part is constructed as a single piece, with the wiping part and the connecting member respectively located on the top and bottom surfaces of the single piece; or, the non-wiping part is constructed as a plate, with the wiping part and the connecting member respectively located on the top and bottom surfaces of the plate, or the wiping part and the connecting member respectively located on the side and bottom surfaces of the plate; or Option B: The non-wiping part is constructed as a first part, a second part, and a hinge structure between the first and second parts. The hinge structure allows the first and second parts to switch between a folded state and an unfolded state. In the folded state, the top surfaces of both the first and second parts are located within the inner perimeter. The wiping part is located on the top surface of the first part and / or the top surface of the second part, and the connecting member is located on the bottom surface of the first part or the side surface of the second part. Option C: The non-wiping part is constructed to have a first connector, the first connector having a first bending structure, one end of the first bending structure being provided with the wiping part and used to allow the wiping part to extend in a different direction and / or extend further, and the first bending structure including a first bend and a first extension section and a second extension section at both ends of the first bend, wherein the first extension section is connected to the connecting member, and the second extension section is connected to the wiping part such that the wiping surface of the wiping part faces outward of the first bending structure, and the first bend is configured as a fixed connection or a movable connection.
6. The attachment module according to claim 5, characterized in that, The carrier component further includes: Scheme A further includes: Sub-scheme A1: The sheet or plate is configured as a strip, and the connecting member is used to configure the attached accompanying module to a target side of the surface of the portable terminal or the surface of the quick-connect peripheral device of the portable terminal in the quick-connect manner, and the length direction of the strip follows the length direction of the target side, or... Sub-scheme A2: The non-wiping part is constructed having a first base, and the first base having a rear side surface and a top surface, wherein the first base is disposed at the rear of the rear side surface of the target device during operation, and the wiping part is disposed on the top surface or rear side surface of the first base such that the wiping surface of the wiping part faces outward from the first base, or... Sub-scheme A3: The non-wiping part is constructed to have a second base, and the second base has a bottom surface and a top surface, and the second base is configured such that when working, the bottom surface is attached to the top surface of the target device, and the area of the bottom surface of the second base is smaller than the top surface of the target device, and the wiping part is disposed on the top surface of the second base such that the wiping surface of the wiping part faces the outward direction of the second base; Sub-scheme A4: The non-wiping part is constructed to have a third base and a connected sub-part, the third base having a bottom surface and a top surface, and the third base being configured such that the bottom surface is attached to the top surface of the target device during operation, and the area of the bottom surface of the third base being smaller than the top surface of the target device, and the wiping part being disposed on the top surface of the third base such that the wiping surface of the wiping part faces outward from the third base, and the sub-part being configured to be located on the left side of the target device during operation, and the right side of the sub-part being attached to the left side of the target device during operation; Scheme B further includes: Sub-scheme B1: The first part and the second part both constitute a plate and are configured as strips, and the connecting member is used to configure the attached module to a side of a target side of the portable terminal surface or the portable terminal's quick-connect peripheral device surface in the quick-connect manner, and the length direction of the strip is in line with the length direction of the target side. Scheme C further includes: Sub-scheme C1: The first extension segment and the second extension segment in the first bending structure respectively include a first plate and a second plate, wherein the connecting member connected to the first plate is used to configure the attached module to the bottom of the bottom surface of the portable terminal surface or the quick-connect peripheral device surface of the portable terminal in the quick-connect manner, and the second plate is configured to a side portion of a target side surface of the portable terminal surface or the quick-connect peripheral device surface of the portable terminal during operation, and the wiping surface of the wiping part connected to the second plate is configured to the top surface or side surface of the second plate, or... Sub-scheme C2: The first extension segment and the second extension segment in the first bending structure respectively include a first plate and a second plate. The first plate is connected to a connecting member for quickly attaching the attached module to the bottom of the bottom surface of the portable terminal surface or the quick-connect peripheral device surface of the portable terminal. The second plate, during operation, is positioned on the side of a target side of the portable terminal surface or the quick-connect peripheral device surface. The wiping surface of the wiping part connected to the second plate is positioned on the top or side surface of the second plate. The quick-connect configuration allows the position of the connecting member at the bottom of the bottom surface to be adjustable, thereby enabling the spatial position of the connected second plate to be adjustable in height from the target side surface. Sub-scheme C3: The first extension segment and the second extension segment in the first bending structure respectively include a first plate and a second plate. The first plate is connected to a connecting member for quickly attaching the attached module to the bottom of the bottom surface of the portable terminal surface or the quick-connect peripheral device surface of the portable terminal. The second plate is positioned on the side of a target side of the portable terminal surface or the quick-connect peripheral device surface during operation. The wiping surface of the wiping part connected to the second plate is positioned on the top or side surface of the second plate. The wiping surface of the wiping part is configured to have a projection onto the top surface of the portable terminal surface or the quick-connect peripheral device surface during operation. Sub-scheme C4: The connecting member is configured to allow the first extension segment to be attached to the bottom surface of the target device in the quick-connect manner during operation, and the second extension segment is configured to have a projection on the front, rear, left, or right side of the target device surface during operation, or... Sub-scheme C5: The connecting member is configured to allow the first extension segment to be attached to the bottom surface of the target device in the quick-connect manner during operation. The first extension segment includes a main portion and at least two secondary portions connected to the main portion and extending in a forked manner. The second extension segment is configured to have a projection onto the front or rear side of the target device surface during operation. The number of second extension segments includes two, which are sequentially arranged in a left-right relationship to the front of the front side or the rear of the rear side of the target device, and are also configured to be coupled to the user's left-hand touch finger and right-hand touch finger, respectively. Sub-scheme C6: The connecting member is constructed to have a plug, and the plug is used to allow the first extension to be inserted into a right side of the target device with a socket during operation, and the second extension is configured to have a projection on the front or rear side of the surface of the target device during operation.
7. The attachment module according to any one of claims 1-6, characterized in that, The carrier component further includes: The non-wiping part is configured to be made of one or more combinations of rigid materials, flexible materials, elastic materials, plastic materials, or metallic materials, and / or the wiping part is configured to be made of one or more combinations of rigid materials, flexible materials, elastic materials, plastic materials, or metallic materials; and / or, The top of the wiping section is provided with a protective cover to protect the functional load when not in use; or, the top of the wiping section is provided with a protective cover to protect the functional load when not in use, and the protective cover has a flip-top, sliding rail, magnetic, adhesive, easy-tear, clip-on, or plug-in opening and closing design; and / or, The number of wiping parts includes one or more, or the number of wiping parts is greater than two of which are configured in a left-right relationship to the front of the front side or the rear of the rear side of the target device during operation, and the two are further configured to be coupled to the user's left-hand touch finger and right-hand touch finger respectively; or the number of wiping parts is greater than two of which are configured in a left-right relationship to the left side of the left side or the right side of the target device during operation, and the two are further configured to be coupled to the user's left-hand touch finger and right-hand touch finger respectively; and / or, The functional load is configured to form a wiping surface after being loaded onto the wiping portion, and the surface of the wiping surface is covered with a release protective film; and / or, The functional load is configured to support external addition for replenishment after being reduced by the wiping action, or to support removal and replacement of the wiping section along with the functional load therein, and the wiping section can be quickly connected to the non-wiping section; and / or, The non-wiping portion has a support structure configured such that, under the action of a user's touch finger or non-touch finger, the wiping surface of the wiping portion rubs against the screen to transfer the functional load; and / or, The carrier component also includes a cleaning part configured to be attached to the carrier component and used to clean the user's touch finger.
8. A device for enhanced fingertip touch control that moves with the screen, characterized in that, The device includes an attachment module as described in any one of claims 1 to 7; the product type of the device includes a portable terminal or a quick-connect peripheral device for a portable terminal.
9. The device according to claim 8, characterized in that, The device also includes: The portable terminal includes a mobile phone, tablet computer, handheld game console, or touch screen display; and / or, the quick-connect peripheral device includes a multi-functional housing, an auxiliary grip handle, a screen auxiliary button device, a power bank, a magnetic sheet, a stand, or a heat sink.
10. A method of using an attached, on-demand module for gain-enhanced fingertip touch that moves with the screen, characterized in that: The usage includes: For use as an attachment module as described in any one of claims 1 to 7, the usage further includes: when a user uses a portable terminal with a touch screen, according to the user's touch gain requirements for the screen, quickly connecting the attachment module to a user-touch finger-accessible location on the surface of the portable terminal or on the surface of a quick-connect peripheral device of the portable terminal; or... For use as an attachment module as described in any one of claims 1 to 7, the usage further includes: when a user uses a portable terminal with a touch screen, according to the user's touch gain requirements for the screen, quickly connecting the attachment module to a user-touch finger-accessible location on the surface of the portable terminal or the surface of a quick-connect peripheral device of the portable terminal, and the attachment module is configured as a sheet and attached to a non-touch hot area of the target device during operation, or... For use as an attachment module as described in any one of claims 1 to 7, the usage further includes: when a user uses a portable terminal with a touch screen, according to the user's touch gain requirements for the screen, quickly connecting the attachment module to a user-accessible location on the surface of the portable terminal or the surface of a quick-connect peripheral device of the portable terminal, thereby allowing the user's touch finger to quickly reach the attachment module and contact and acquire the functional load of the attachment module onto the touch finger on the carrier component included in the attachment module. This action process can be repeated rapidly and frequently during use according to dynamic needs, or... When a user uses a portable terminal with a touchscreen, based on the user's enhanced touch requirements, the attached module is quickly connected to a user-accessible location on the surface of the portable terminal or the quick-connect peripheral device, within the user's reach. The surface of the portable terminal or the quick-connect peripheral device includes one or more of its sides. The user touches the front and rear halves of the screen with both hands respectively, allowing both hands to remain on the surface of the portable terminal or the quick-connect peripheral device during use. This satisfies the user's dynamic need for rapid and frequent repetition based on smooth touch input. When a user uses a portable terminal with a touch screen, according to the user's need for enhanced touch control, the attached accessory module is connected to a user-accessible location on the surface of the portable terminal or on the surface of a quick-connect peripheral device of the portable terminal via a quick-connect method. Then, the user's touch finger or non-touch finger acts on the support structure of the non-wiping part included in the attached accessory module, so that the wiping part rubs against the device to transfer the functional load included in the attached accessory module, and the functional load is used to enhance fingertip smoothness. or, For use in the device as described in claim 8 or 9, wherein the device is quick-connected to the attachment modules included in the device, the usage further includes: when a user uses a portable terminal with a touch screen, according to the user's need for enhanced touch control of the screen, quick-connecting one or more of the attachment modules to one or more sides of the surface of a target device, so that the attachment modules are accessible when the user holds the target device, allowing the touch finger to pick up a functional load included in the attachment modules, the functional load being used to enhance fingertip smoothness, or... When a user uses a portable terminal with a touch screen, according to the enhanced touch requirements of the screen, one or more connecting members included in the attached accessory module are quickly connected to the front, rear, left, right, top, or bottom surface of the surface of the portable terminal or the quick-connect peripheral device of the portable terminal, so that when the user holds the surface of the portable terminal or the quick-connect peripheral device of the portable terminal, the touch finger can reach the attached accessory module, so that the touch finger can pick up the functional load included in the attached accessory module, the functional load being used to enhance the smoothness of the fingertip; or, For use in the device as described in claim 8 or 9, wherein the device is integrally formed or fixedly connected to the attachment module included in the device, the usage further includes: when a user uses a portable terminal with a touch screen, according to the user's need for enhanced touch on the screen, the user holds the target device and the touch finger directly touches the attachment module so that the touch finger dips into the functional load included in the attachment module, the functional load being used to enhance fingertip smoothness.