Input device and electronic equipment
By installing photovoltaic modules on the input device, making the light-receiving surface of the photovoltaic panel protrude from the edge and equipping it with a concentrator, the problem of low conversion efficiency of photovoltaic modules is solved, achieving efficient power supply and aesthetic design.
Patent Information
- Application Number
- CN202423320050.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-31
AI Technical Summary
The photovoltaic modules on existing input devices have low conversion efficiency and cannot meet electricity demand.
Photovoltaic modules are installed on the main body of the input device, so that the light-receiving surface of the photovoltaic panel protrudes from one side edge of the input device, thereby increasing the light-receiving area. Concentrating elements and supporting structures can be optionally added to improve photoelectric conversion efficiency.
Without increasing the size of the input device, the photoelectric conversion efficiency of the photovoltaic module is improved, the power demand of the input device is met, and the visual effect is enhanced.
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Figure CN223692731U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the technical field of input devices, and particularly relates to an input device and an electronic device. BACKGROUND
[0002] An input device (such as a keyboard, a part of a notebook computer having an input area, etc.) is used to deliver information and instructions into a processing system to realize input of information.
[0003] In the related art, a photovoltaic assembly is arranged on an input device to be able to supply power to the input device. However, the conversion efficiency of the photovoltaic assembly is low, and thus cannot meet the power demand of the input device. CONTENT OF THE UTILITY MODEL
[0004] The present disclosure provides an input device and an electronic device, and the technical solutions are as follows:
[0005] In a first aspect, the present disclosure provides an input device, which can include: an input device body and a photovoltaic assembly, the input device body is provided with an input area; the photovoltaic assembly is arranged on the input device body and is electrically connected with an electricity storage device and / or an electricity consumption device of the input device body, the photovoltaic assembly includes: a photovoltaic panel, a light-receiving surface of the photovoltaic panel is on the same side of the input area in the input device body, and at least part of the light-receiving surface protrudes from a side edge of the input device body.
[0006] In some embodiments, a thickness surface of the input device body is recessed with a connecting recess; a thickness surface of the photovoltaic panel at least includes: a first side surface, a second side surface, a third side surface and a fourth side surface which are connected in sequence and connected with the light-receiving surface, the first side surface is opposite to the third side surface, the second side surface and the fourth side surface are opposite to each other and are respectively arc-shaped protruded in directions away from the first side surface and the third side surface, a part of the photovoltaic panel corresponding to the first side surface is arranged in the connecting recess, and a part corresponding to the third side surface is located outside the connecting recess.
[0007] In some embodiments, the input device can further include: a cladding structure connected with the input device body and cladding the thickness surface of the photovoltaic assembly protruding from the connecting recess and a side of the photovoltaic assembly opposite to the light-receiving surface; the cladding structure is connected with the input device body through a connecting piece; or the cladding structure is integrally formed with the input device body.
[0008] In some embodiments, the photovoltaic assembly further includes: at least one light collector arranged on the light-receiving surface side of the photovoltaic panel and focusing light on the light-receiving surface of the photovoltaic panel.
[0009] In some embodiments, a normal projection of the light collecting member onto the light receiving surface covers the light receiving surface; a surface of the light collecting member opposite to the light receiving surface is arc-shaped and protrudes away from the photovoltaic panel; or, a surface of the light collecting member opposite to the light receiving surface is planar, or, a surface of the light collecting member opposite to the light receiving surface is arc-shaped and protrudes towards the photovoltaic panel.
[0010] In some embodiments, the photovoltaic assembly further comprises a first support, a second support, and a plurality of first elastic members; the photovoltaic panel is disposed on one side of the first support, and the light receiving surface is located on a side of the photovoltaic panel opposite to the first support; the second support is disposed on the other side of the first support; the plurality of first elastic members are uniformly arranged between the first support and the second support, and the plurality of first elastic members can elastically deform to shorten the distance between the first support and the second support.
[0011] In some embodiments, the photovoltaic assembly further comprises an inductive member, a first magnetic member, and a second magnetic member; the inductive member is used to induct the gravitational acceleration of the photovoltaic assembly; the first magnetic member is disposed on the first support; the second magnetic member is disposed on the second support; one of the first magnetic member and the second magnetic member is an electromagnet; in a case where the inductive member inducts the gravitational acceleration of the photovoltaic assembly to be greater than a target value, the electromagnet is powered on and attracts the other magnetic member.
[0012] In some embodiments, one side of the first support is recessed with a receiving groove to accommodate the photovoltaic panel; the photovoltaic assembly further comprises a second elastic member, the second elastic member is disposed between the photovoltaic panel and at least one side wall of the receiving groove, and / or the second elastic member is disposed between the photovoltaic panel and an inner bottom wall of the receiving groove.
[0013] In some embodiments, the second elastic member comprises a first elastic body, a second elastic body, and a third elastic body; the first elastic body is bonded between the photovoltaic panel and a first side wall of the receiving groove; the second elastic body is bonded between the photovoltaic panel and a second side wall of the receiving groove, the first side wall and the second side wall are opposite to each other; the third elastic body is clamped between the photovoltaic panel and an inner bottom wall of the receiving groove; wherein a local position of the first side wall connected to the first elastic body is recessed away from the second side wall; and / or a local position of the second side wall connected to the second elastic body is recessed away from the first side wall.
[0014] In a second aspect, the present disclosure provides an electronic device, which can include: an input device and a processing device, the input device including: an input device body and a photovoltaic assembly; the input device body being provided with an input area; the photovoltaic assembly being arranged on the input device body and electrically connected with an electricity storage device and / or an electricity consumption device of the input device body, the photovoltaic assembly including: a photovoltaic panel, a light-receiving surface of the photovoltaic panel being on the same side of the input area on the input device body, and at least part of the light-receiving surface being protruded from a side edge of the input device body; the processing device being connected with at least the input device body to process information input by the input area.
[0015] The above description is only a summary of the technical solutions of the present disclosure. In order to more clearly understand the technical means of the present disclosure and to implement the content of the description, the following will describe the preferred embodiments of the present disclosure in detail with reference to the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the present disclosure or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present disclosure, and for those skilled in the art, other drawings can also be obtained without creative labor.
[0017] Figure 1 A structural schematic diagram of an input device provided by an embodiment of the present disclosure is shown in the figure.
[0018] Figure 2 A partial structural schematic diagram of an input device provided by another embodiment of the present disclosure is shown in the figure.
[0019] Figure 3 A partial structural schematic diagram of an input device provided by another embodiment of the present disclosure is shown in the figure.
[0020] Explanation of reference signs:
[0021] 10, input device; 11, input device body; 111, input area; 112, connecting recess; 12, photovoltaic assembly; 121, photovoltaic panel; 1211, light-receiving surface; 1212, first side surface; 1213, second side surface; 1214, third side surface; 1215, fourth side surface; 122, light-concentrating member; 123, first support member; 1231, accommodating groove; 1232, first side wall; 1233, second side wall; 124, second support member; 125, first elastic member; 126, inductive member; 127, first magnetic member; 128, second magnetic member; 129, second elastic member; 1291, first elastic body; 1292, second elastic body; 1293, third elastic body; 13, cladding structure. DETAILED DESCRIPTION
[0022] The embodiments of the present disclosure will be described in further detail below with reference to the accompanying drawings and examples. The following detailed description and examples are provided as illustrative examples of the principles of the present disclosure and should not be used to limit the scope of the present disclosure, which can be realized in many different forms, not limited to the specific embodiments disclosed herein, but include all technical solutions falling within the scope of the claims.
[0023] The present disclosure provides these embodiments in order to make the present disclosure thorough and complete, and to fully convey the scope of the present disclosure to those skilled in the art. It should be noted that: unless otherwise specified, the relative arrangement of components and steps, the composition of materials, numerical expressions and values set forth in these embodiments should be interpreted as merely exemplary, and not as a limitation.
[0024] It should be noted that, in the description of the present disclosure, unless otherwise specified, the meaning of "a plurality of" is greater than or equal to two; the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer" and the like is only for the purpose of facilitating the description of the present disclosure and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation to the present disclosure. When the absolute position of the described object changes, the relative positional relationship may also change accordingly.
[0025] In addition, "first", "second", and similar words used in the present disclosure do not indicate any order, number, or importance, but are only used to distinguish different parts. "Vertical" is not strictly vertical, but within the allowable range of error. "Parallel" is not strictly parallel, but within the allowable range of error. "Include" or "contain" and similar words mean that the elements before the word cover the elements listed after the word, and do not exclude the possibility of also covering other elements.
[0026] It should also be noted that, in the description of the present disclosure, unless otherwise specified and limited, the terms "mounting", "connecting", "connection" should be interpreted broadly, for example, it can be a fixed connection, or a detachable connection, or an integral connection; it can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present disclosure can be understood according to the specific circumstances. When it is described that a specific device is located between a first device and a second device, there can be an intermediate device between the specific device and the first device or the second device, or there can be no intermediate device.
[0027] All terms used in the present disclosure have the same meaning as understood by those of ordinary skill in the art to which the present disclosure belongs, unless otherwise specifically defined. It should also be understood that terms defined in general dictionaries should be interpreted to have meanings consistent with their meanings in the context of the relevant art, and should not be interpreted in an idealized or overly formalized sense, unless specifically defined herein.
[0028] Techniques, methods, and devices known to those of ordinary skill in the relevant art can not be discussed in detail, but should be considered part of the specification where appropriate.
[0029] Input devices (such as keyboards, parts of laptops with input areas, etc.) are used to deliver information and instructions into processing systems to achieve information input.
[0030] In the related art, photovoltaic components are provided on input devices to be able to supply power to the input devices. However, the conversion efficiency of the photovoltaic components is low, which cannot meet the power demand of the input devices.
[0031] In view of the above technical problems, the present disclosure provides an input device 10, at least part of the light-receiving surface 1211 of the photovoltaic component 12 provided on the input device 10 protrudes from one side edge of the input device body 11, so as to increase the area of the light-receiving surface 1211 without changing the spatial size of the input device body 11, thereby realizing the improvement of the conversion efficiency, so as to meet the power demand of the input device 10.
[0032] First aspect
[0033] Referring to Figures 1 to 3 As shown, the input device 10 can include an input device body 11 and a photovoltaic component 12, the input device body 11 is provided with an input area 111; the photovoltaic component 12 is provided on the input device body 11 and electrically connected with the power storage device and / or power consumption device of the input device body 11, the photovoltaic component 12 includes a photovoltaic panel 121, the light-receiving surface 1211 of the photovoltaic panel 121 is on the same side of the input area 111 on the input device body 11, and at least part of the light-receiving surface 1211 protrudes from one side edge of the input device body 11.
[0034] The input device 10 is used to deliver information and instructions into processing systems (such as processing systems of all-in-one machines, processing systems of desktop computers, processing systems of laptops) to achieve information input. The input device 10 can be a wired / wireless keyboard, or a keyboard part on a laptop, or other devices capable of information input. The input area 111 of the input device 10 can be provided with multiple rows of physical keys, touch keys, or other input operation settings.
[0035] The photovoltaic assembly 12 is used to convert light energy into electric energy. The photovoltaic assembly 12 can be connected with the power storage device (such as a battery or the like) of the input device body 11 to store the converted electric energy in the power storage device, and then the converted electric energy is used by other power consuming devices on the input device body 11 or another device (such as a mobile phone or the like) connected to the input device body 11. The photovoltaic assembly 12 can also be connected with the power consuming devices provided on the input device body 11 to directly supply power to the power consuming devices provided on the input device body 11. The photovoltaic assembly 12 can also be connected with the power storage device and the power consuming devices of the input device body 11 to supply power to the power storage device and the power consuming devices synchronously or according to the priority order. The light receiving surface 1211 of the photovoltaic panel 121 receives sunlight and converts the sunlight into electric energy. Therefore, the larger the size of the light receiving surface 1211 is, the more electric energy is converted. In order to avoid expanding the size of the input device body 11, in the embodiment, part or all of the light receiving surface 1211 is protruded from the edge of the input device body 11. The photovoltaic assembly 12 can be fixedly connected with the input device body 11 or detachably connected with the input device body 11.
[0036] In an embodiment, the input device 10 is a keyboard. The input device 10 can be connected with an electronic device having a processing system (such as a desktop computer, an all-in-one computer, a notebook computer, a tablet computer or the like) through a wired connection, a Bluetooth connection or the like. Then, when the input device 10 is operated, information can be input to the processing system of the connected electronic device. The processing system can process the information and display the processed information on the display screen of the electronic device. Figure 1 As shown in FIG. 1, the input device 10 can include an input device body 11 and a photovoltaic assembly 12. The input device body 11 is provided with an input area 111 having a plurality of physical keys. The photovoltaic assembly 12 is arranged on the input device body 11 and electrically connected with the power storage device and / or the power consuming devices of the input device body 11. The photovoltaic assembly 12 includes a photovoltaic panel 121. The light receiving surface 1211 of the photovoltaic panel 121 is on the same side of the input area 111 in the input device body 11, and part of the light receiving surface 1211 is protruded from one side edge of the input device body 11. Meanwhile, the input device body 11 is also provided with a power supply interface to be connected with a power supply. In the case that the light intensity does not meet the requirement of photoelectric conversion, the power supply interface is connected with the power supply to supply power to the power storage device and / or the power consuming devices of the input device body 11.
[0037] In the embodiment, the input device 10 can include an input device body 11 having an input area 111 to enable input of information, and a photovoltaic assembly 12 disposed on the input device body 11 to enable conversion of light energy into electrical energy to power an electrical storage device and / or an electrical device on the input device body 11. Since at least part of the light receiving surface 1211 protrudes from the side edge of the input device body 11, the area of the light receiving surface 1211 can be increased without increasing the size of the input device 10, thereby improving the conversion efficiency to meet the power requirements of the input device 10.
[0038] In some embodiments, referring to Figure 1 As shown, the thickness surface of the input device body 11 is recessed with a connecting recess 112; the thickness surface of the photovoltaic panel 121 includes at least a first side surface 1212, a second side surface 1213, a third side surface 1214, and a fourth side surface 1215 connected in sequence and connected to the light receiving surface 1211, the first side surface 1212 is opposite to the third side surface 1214, the second side surface 1213 is opposite to the fourth side surface 1215 and is arc-shaped protruding away from the first side surface 1212 and the third side surface 1214, respectively, the part of the photovoltaic panel 121 corresponding to the first side surface 1212 is disposed in the connecting recess 112, and the part corresponding to the third side surface 1214 is located outside the connecting recess 112.
[0039] That is, one side of the input device body 11 is recessed with a connecting recess 112, one side (the first side surface 1212 side) of the photovoltaic panel 121 in the shape of a racetrack is located in the connecting recess 112 and is fixed relative to the connecting recess 112, and the other side (the third side surface 1214 side) of the photovoltaic panel 121 is located outside the connecting recess 112, so that part of the photovoltaic panel 121 is located outside the connecting recess 112, and the photovoltaic panel 121 located outside the connecting recess 112 also has a light receiving surface 1211. The photovoltaic assembly 12 can be connected in the connecting recess 112 by clamping, bonding, screw connection, etc. to be fixed relative to the connecting recess 112, and when connected in the connecting recess 112 by clamping, screw connection, etc., the photovoltaic assembly 12 and the input device body 11 can be detached by removing the clamping part or the screw, so that the photovoltaic assembly 12 can be thoroughly cleaned and fully maintained. Here, the shape of the connecting recess 112 can be adapted to the shape of the part of the photovoltaic assembly 12 located in the connecting recess 112, so that the visual effect of the connection of the connecting recess 112 and the photovoltaic assembly 12 is better, for example, referring to Figure 1 As shown, the photovoltaic assembly 12 is in the shape of a racetrack, and the connecting recess 112 is in the shape of half of a racetrack, so that half of the photovoltaic assembly 12 is located in the connecting recess 112 and fits the inner wall of the connecting recess 112, and the other half is located outside the connecting recess 112.
[0040] In the embodiment, the photovoltaic assembly 12 is mainly provided with the photovoltaic panel 121, and the photovoltaic panel 121 is in a track shape, so that the photovoltaic assembly 12 is also in a track shape, thereby improving the visual effect of the photovoltaic assembly 12, and further improving the visual effect of the input device 10 provided with the photovoltaic assembly 12.
[0041] In other embodiments, referring to Figure 2 In the case that the photovoltaic assembly 12 further includes other structures, such as the light collecting member 122, the first support member 123, the second support member 124 and the like, as shown below, the photovoltaic assembly 12 as a whole can be in a track shape, and the photovoltaic panel 121 arranged in the photovoltaic assembly 12 can or can not be in a track shape, so that the visual effect of the photovoltaic assembly 12 can still be improved, and further the visual effect of the input device 10 provided with the photovoltaic assembly 12 can be improved.
[0042] In some embodiments, referring to Figure 1 and Figure 2 The input device 10 can further include a cladding structure 13, the cladding structure 13 is connected with the input device body 11 and clads the thickness surface of the photovoltaic assembly 12 protruding from the connecting recess 112 and the side of the photovoltaic assembly 12 opposite to the light-receiving surface 1211; the cladding structure 13 is connected with the input device body 11 through a connecting member; or the cladding structure 13 is integrally formed with the input device body 11.
[0043] That is, the input device body 11 and the cladding structure 13 cooperate to clad the other surfaces of the photovoltaic assembly 12 except the side of the light-receiving surface 1211, so as to comprehensively protect the photovoltaic assembly 12. The cladding structure 13 is connected with the input device body 11 through a connecting member, which can be a detachable connection mode, such as clamping connection, screw connection, or a non-detachable connection mode, such as fusion connection. The cladding structure 13 is integrally formed with the input device body 11 (as shown in Figure 2 for example, integrally injection molding, and the like. The integral molding can not only reduce the manufacturing process, but also improve the connection strength between the input device body 11 and the cladding structure 13.
[0044] In some embodiments, referring to Figure 2 and Figure 3As shown, the photovoltaic assembly 12 can further include at least one light collecting member 122 disposed on the light receiving surface 1211 of the photovoltaic panel 121 and focusing light on the light receiving surface 1211 of the photovoltaic panel 121. In this way, the light receiving surface 1211 can receive more light for photoelectric conversion without changing the size of the light receiving surface 1211, thereby further improving the photoelectric conversion efficiency and meeting the power demand of the input device 10. In addition, the light collecting member 122 can also protect the light receiving surface 1211 of the photovoltaic panel 121.
[0045] In some embodiments, referring to Figure 2 and Figure 3 As shown, the photovoltaic assembly 12 can further include at least one light collecting member 122 disposed on the light receiving surface 1211 of the photovoltaic panel 121 and focusing light on the light receiving surface 1211 of the photovoltaic panel 121. In this way, the light receiving surface 1211 can receive more light for photoelectric conversion without changing the size of the light receiving surface 1211, thereby further improving the photoelectric conversion efficiency and meeting the power demand of the input device 10. In addition, the light collecting member 122 can also protect the light receiving surface 1211 of the photovoltaic panel 121.
[0046] In some embodiments, referring to and
[0047] As shown, the photovoltaic assembly 12 can further include at least one light collecting member 122 disposed on the light receiving surface 1211 of the photovoltaic panel 121 and focusing light on the light receiving surface 1211 of the photovoltaic panel 121. In this way, the light receiving surface 1211 can receive more light for photoelectric conversion without changing the size of the light receiving surface 1211, thereby further improving the photoelectric conversion efficiency and meeting the power demand of the input device 10. In addition, the light collecting member 122 can also protect the light receiving surface 1211 of the photovoltaic panel 121.
[0048] In some embodiments, referring to Figure 2 and Figure 3 As shown, the photovoltaic assembly 12 can further include at least one light collecting member 122 disposed on the light receiving surface 1211 of the photovoltaic panel 121 and focusing light on the light receiving surface 1211 of the photovoltaic panel 121. In this way, the light receiving surface 1211 can receive more light for photoelectric conversion without changing the size of the light receiving surface 1211, thereby further improving the photoelectric conversion efficiency and meeting the power demand of the input device 10. In addition, the light collecting member 122 can also protect the light receiving surface 1211 of the photovoltaic panel 121.
[0049] The first support 123 and the second support 124 can each be a plate structure, a plurality of first elastic members 125 are located between the first support 123 and the second support 124, and the photovoltaic panel 121 is located on a side of the first support 123 away from the second support 124, and a light-receiving surface 1211 of the photovoltaic panel 121 faces away from the first support 123. In this way, the light-receiving surface 1211 can receive light, and in the case of shaking, impact, or the like of the photovoltaic assembly 12, the first support 123 can compress the first elastic member 125 with the photovoltaic panel 121 to achieve buffering of the photovoltaic panel 121 against shaking, impact, or the like, thereby reducing the probability of damage such as cracking of the photovoltaic panel 121.
[0050] The first elastic member 125 can be a structure in the form of a spring, a silica gel column, a rubber column, or the like, as shown in Figure 2 and Figure 3 The first elastic member 125 is a spring, and six springs are evenly distributed in two groups. At least one of the first support 123 and the second support 124 can be provided with a guide column, so that the first elastic member 125 can be compressed along the guide column during compression of the first elastic member 125 in the direction from the first support 123 to the second support 124, thereby forming a smooth buffer for the photovoltaic panel 121.
[0051] In some embodiments, as shown in Figure 2 and Figure 3 The photovoltaic assembly 12 can further include an inductor 126, a first magnetic member 127, and a second magnetic member 128. The inductor 126 is used to induct the gravitational acceleration of the photovoltaic assembly 12. The first magnetic member 127 is provided on the first support 123, and the second magnetic member 128 is provided on the second support 124. One of the first magnetic member 127 and the second magnetic member 128 is an electromagnet. In the case where the inductor 126 inducts that the gravitational acceleration of the photovoltaic assembly 12 is greater than a target value, the electromagnet is energized and attracts the other magnetic member.
[0052] In the case where the inductor 126 inducts that the gravitational acceleration of the photovoltaic assembly 12 is greater than a target value, during rapid falling, collision, or the like of the photovoltaic assembly 12, the electromagnet is energized and attracts the other magnetic member, so that the first magnetic member 127 of the first support 123 and the second magnetic member 128 of the second support 124 attract each other to compress the first elastic member 125. In this way, the photovoltaic panel 121 can be buffered to better protect the photovoltaic panel 121, and the inductor 126 can accurately and timely react in the first time to compress the first elastic member 125 and buffer the photovoltaic panel 121 to better protect the photovoltaic panel 121. Here, the inductor 126 can be a capacitive gravitational accelerometer, a piezoelectric accelerometer, a thermal accelerometer, or the like.
[0053] The first magnetic member 127 can be arranged inside the first support member 123 or outside the first support member 123; the second magnetic member 128 can be arranged inside the second support member 124 or outside the second support member 124; in order to reduce weakening of the magnetism of the first magnetic member 127 and the second magnetic member 128 by the first support member 123 and the second support member 124, the first magnetic member 127 and the second magnetic member 128 can be directly corresponding by being arranged in the form of avoiding holes. For example, referring to Figure 3 As shown in FIG. 13, the first magnetic member 127 is arranged outside the first support member 123 and on the side of the first support member 123 facing the second support member 124; the second support member 124 is provided with a via hole opposite the position of the first magnetic member 127, and the second magnetic member 128 is arranged on the side of the second support member 124 away from the first support member 123 and opposite the position of the via hole. The number of the first magnetic member 127 and the second magnetic member 128 can be arranged according to actual conditions. For example, referring to Figure 2 and Figure 3 As shown in FIG. 13 and FIG. 14, the number of the first magnetic member 127 and the second magnetic member 128 is two and one-to-one corresponding.
[0054] In some embodiments, referring to Figure 2 As shown in FIG. 13, one side of the first support member 123 is recessed with a containing groove 1231 to contain the photovoltaic panel 121; the photovoltaic assembly 12 can further include a second elastic member 129, the second elastic member 129 being arranged between the photovoltaic panel 121 and at least one side wall of the containing groove 1231, and / or the second elastic member 129 being arranged between the photovoltaic panel 121 and the inner bottom wall of the containing groove 1231.
[0055] That is, the photovoltaic panel 121 can be contained in the containing groove 1231 recessed on the side of the first support member 123 away from the second support member 124, and the second elastic member 129 can be arranged in at least part of the space between the photovoltaic panel 121 and the containing groove 1231 to buffer the photovoltaic panel 121 on the basis of the first elastic member 125, so as to better protect the photovoltaic panel 121.
[0056] The first elastic member 125 can buffer the photovoltaic panel 121 in a direction perpendicular to the light-receiving surface 1211. When the second elastic member 129 is arranged between the photovoltaic panel 121 and at least one side wall of the accommodating groove 1231, the second elastic member 129 can buffer the photovoltaic panel 121 in a direction parallel to the light-receiving surface 1211. When the first elastic member 125 is arranged between the photovoltaic panel 121 and the inner bottom wall of the accommodating groove 1231, the second elastic member 129 can buffer the photovoltaic panel 121 in a direction perpendicular to the light-receiving surface 1211. The buffering of the first elastic member 125 and the second elastic member 129 can be superimposed in the direction perpendicular to the light-receiving surface 1211, so as to achieve greater buffering and better protect the photovoltaic panel 121.
[0057] The second elastic member 129 can be an elastic structure layer such as a rubber layer, a silica gel layer, or a foam layer.
[0058] In some embodiments, as shown in Figure 2 The second elastic member 129 can include a first elastic body 1291, a second elastic body 1292, and a third elastic body 1293. The first elastic body 1291 is bonded between the photovoltaic panel 121 and a first side wall 1232 of the accommodating groove 1231. The second elastic body 1292 is bonded between the photovoltaic panel 121 and a second side wall 1233 of the accommodating groove 1231, and the first side wall 1232 and the second side wall 1233 are opposite to each other. The third elastic body 1293 is sandwiched between the photovoltaic panel 121 and an inner bottom wall of the accommodating groove 1231. The first side wall 1232 is recessed in a direction away from the second side wall 1233 at a local position A connected to the first elastic body 1291. The second side wall 1233 is recessed in a direction away from the first side wall 1232 at a local position B connected to the second elastic body 1292.
[0059] The first and second elastic bodies 1291 and 1292 correspond to the two sides of the photovoltaic panel 121 opposite to each other in the first direction perpendicular to the light-receiving surface 1211, so that the first and second elastic bodies 1291 and 1292 can buffer the two sides of the photovoltaic panel 121 opposite to each other in the first direction; of course, the first and second elastic bodies 1291 and 1292 can also be respectively arranged on the two sides of the photovoltaic panel 121 opposite to each other in the second direction perpendicular to the first direction, so that the first and second elastic bodies 1291 and 1292 can buffer the two sides of the photovoltaic panel 121 opposite to each other in the second direction; the third elastic body 1293 is clamped between the photovoltaic panel 121 and the inner bottom wall of the accommodating groove 1231, so as to buffer the photovoltaic panel 121 in the third direction perpendicular to the first direction. The first and second elastic bodies 1291 and 1292 can be elastic bodies with adhesive, so as to reduce the probability of displacement of the photovoltaic panel 121 relative to the accommodating groove 1231 while providing a buffering force, thereby reducing the loss of buffering performance; the photovoltaic panel 121 is fixed relative to the accommodating groove 1231 through the adhesion of the first and second elastic bodies 1291 and 1292, and therefore, the third elastic body 1293 is clamped between the photovoltaic panel 121 and the inner bottom wall of the accommodating groove 1231, so as to reduce the setting of adhesive on the third elastic body 1293, thereby reducing the manufacturing cost of the third elastic body 1293, and reducing the process of applying a force to press the photovoltaic panel 121 so as to firmly bond the photovoltaic panel 121, the third elastic body 1293 and the inner bottom wall of the accommodating groove 1231, thereby reducing the assembly workload.
[0060] The first side wall 1232 is recessed in a direction away from the second side wall 1233 at a local region in the region of the first elastic body 1291 (for example, three A regions shown in FIG. 13B), so that the first elastic body 1291 has a larger buffering space corresponding to the recessed region of the first side wall 1232, so as to provide a larger buffering force to the photovoltaic panel 121. The second side wall 1233 is recessed in a direction away from the first side wall 1232 at a local region in the region of the second elastic body 1292 (for example, three B regions shown in FIG. 13B), so that the second elastic body 1292 has a larger buffering space corresponding to the recessed region of the second side wall 1233, so as to provide a larger buffering force to the photovoltaic panel 121. Figure 2 Figure 2 The first side wall 1232 is recessed in a direction away from the second side wall 1233 at a local region in the region of the first elastic body 1291 (for example, three A regions shown in FIG. 13B), so that the first elastic body 1291 has a larger buffering space corresponding to the recessed region of the first side wall 1232, so as to provide a larger buffering force to the photovoltaic panel 121. The second side wall 1233 is recessed in a direction away from the first side wall 1232 at a local region in the region of the second elastic body 1292 (for example, three B regions shown in FIG. 13B), so that the second elastic body 1292 has a larger buffering space corresponding to the recessed region of the second side wall 1233, so as to provide a larger buffering force to the photovoltaic panel 121.
[0061] In an example, the first side 1212 and the third side 1214 of the photovoltaic panel 121 are respectively bonded with the first elastic body 1291 and the second elastic body 1292, and the second side 1213 and the fourth side 1215 of the photovoltaic panel 121 are respectively bonded with the first elastic body 1291 and the second elastic body 1292, so as to firmly bond the photovoltaic panel 121 on the side wall of the accommodating groove 1231, and to buffer and protect the circumferential side of the photovoltaic panel 121 in the thickness direction; the third elastic body 1293 is arranged between the photovoltaic panel 121 and the inner bottom wall of the accommodating groove 1231, so as to buffer and protect the photovoltaic panel 121 in the direction perpendicular to the thickness direction. Meanwhile, the first side wall 1232 is recessed in the direction away from the second side wall 1233 at the local position connected with the first elastic body 1291, and the second side wall 1233 is recessed in the direction away from the first side wall 1232 at the local position connected with the second elastic body 1292, so as to provide greater buffer protection to the circumferential side of the photovoltaic panel 121 in the thickness direction.
[0062] Second aspect
[0063] The electronic device can be a system end of a notebook computer, the system end having a processing device (such as a central processing unit), and can also be a notebook computer, or other device having the input device 10. The processing device can be a processing system including a central processing unit in the system end, the notebook computer, or other electronic device, and the processing system can process information input by the input area 111 of the input device 10, and then output the information to a display screen / mechanical device connected to the system end, or a display screen on the notebook computer.
[0064] The electronic device can be a system end of a notebook computer, the system end having a processing device (such as a central processing unit), and can also be a notebook computer, or other device having the input device 10. The processing device can be a processing system including a central processing unit in the system end, the notebook computer, or other electronic device, and the processing system can process information input by the input area 111 of the input device 10, and then output the information to a display screen / mechanical device connected to the system end, or a display screen on the notebook computer.
[0065] It should be noted that the input device in the electronic device provided by the present disclosure is similar to the description of the input device embodiments described above, and has similar beneficial effects as the input device embodiments described above. For technical details not disclosed in the electronic device embodiments of the present disclosure, please refer to the description of the input device embodiments in the present disclosure, which will not be described here.
[0066] So far, the embodiments of the present disclosure have been described in detail. In order to avoid obscuring the concept of the present disclosure, some details known in the art are not described. Those skilled in the art can fully understand how to implement the technical solutions disclosed herein according to the above description.
[0067] Although some specific embodiments of the present disclosure have been described in detail through examples, those skilled in the art should understand that the above examples are only for illustration, not for limiting the scope of the present disclosure. Those skilled in the art should understand that the above embodiments can be modified or some technical features can be replaced equivalently without departing from the scope and spirit of the present disclosure. In particular, as long as there is no structural conflict, the technical features mentioned in each embodiment can be combined in any way.
Claims
1. An input device, characterized by The input device comprises: an input device body provided with an input area; a photovoltaic assembly arranged on the input device body and electrically connected with the power storage device and / or the power consumption device of the input device body, the photovoltaic assembly comprising a photovoltaic panel, a light-receiving surface of the photovoltaic panel being on the same side of the input area in the input device body, and at least part of the light-receiving surface being protruded from a side edge of the input device body.
2. The input device according to claim 1, wherein: a connecting recess is recessed on a thickness surface of the input device body; a thickness surface of the photovoltaic panel comprises at least a first side, a second side, a third side and a fourth side connected with the light-receiving surface in sequence, the first side is opposite to the third side, the second side is opposite to the fourth side and is arc-shaped protruded away from the first side and the third side respectively, a portion of the photovoltaic panel corresponding to the first side is arranged in the connecting recess, and a portion corresponding to the third side is located outside the connecting recess.
3. The input device of claim 2, wherein, Further comprising: a cladding structure connected with the input device body and cladding a thickness surface of the photovoltaic assembly protruded from the connecting recess and a side of the photovoltaic assembly opposite to the light-receiving surface; the cladding structure is connected with the input device body through a connecting piece; or the cladding structure is integrally formed with the input device body.
4. The input device according to claim 1, wherein: the photovoltaic assembly further comprises at least one light collecting piece arranged on the light-receiving surface side of the photovoltaic panel and focusing light on the light-receiving surface of the photovoltaic panel.
5. The input device according to claim 4, wherein: a normal projection of one of the light collecting pieces on the light-receiving surface covers the light-receiving surface; a surface of the light collecting piece opposite to the light-receiving surface is arc-shaped protruded away from the photovoltaic panel; a surface of the light collecting piece opposite to the light-receiving surface is a plane, or a surface of the light collecting piece opposite to the light-receiving surface is arc-shaped protruded towards the photovoltaic panel.
6. The input device according to claim 1, wherein: the photovoltaic assembly further comprises a first support, a second support and a plurality of first elastic pieces; one side of the first support is provided with the photovoltaic panel, and the light-receiving surface is located on a side of the photovoltaic panel opposite to the first support; the second support is arranged on the other side of the first support; the plurality of first elastic pieces are uniformly arranged between the first support and the second support, and the plurality of first elastic pieces can be elastically deformed to shorten the distance between the first support and the second support.
7. The input device according to claim 6, wherein: the photovoltaic assembly further comprises an inductive piece, a first magnetic piece and a second magnetic piece; the inductive piece is used for inducting the gravitational acceleration of the photovoltaic assembly; the first magnetic piece is arranged on the first support; the second magnetic piece is arranged on the second support; one of the first magnetic piece and the second magnetic piece is an electromagnet. In a case where the inductor senses that the gravitational acceleration of the photovoltaic assembly is greater than a target value, the electromagnet is energized and attracts another magnetic member.
8. The input device according to claim 6, wherein One side of the first support member is recessed with a receiving groove to accommodate the photovoltaic panel; The photovoltaic assembly further comprises a second elastic member, which is arranged between the photovoltaic panel and at least one side wall of the receiving groove, and / or arranged between the photovoltaic panel and an inner bottom wall of the receiving groove.
9. The input device according to claim 8, wherein The second elastic member comprises a first elastic body, a second elastic body and a third elastic body; The first elastic body is bonded between the photovoltaic panel and a first side wall of the receiving groove; The second elastic body is bonded between the photovoltaic panel and a second side wall of the receiving groove, the first side wall and the second side wall being opposite to each other; The third elastic body is sandwiched between the photovoltaic panel and an inner bottom wall of the receiving groove; The first side wall is recessed in a direction away from the second side wall at a local position connected to the first elastic body; and / or the second side wall is recessed in a direction away from the first side wall at a local position connected to the second elastic body.
10. An electronic device, comprising: Comprising: An input device comprising an input device body and a photovoltaic assembly; The input device body is provided with an input area; The photovoltaic assembly is arranged on the input device body and electrically connected with an electricity storage device and / or an electricity consumption device of the input device body, the photovoltaic assembly comprising a photovoltaic panel, a light-receiving surface of the photovoltaic panel being on the same side of the input area as the input device body, and at least part of the light-receiving surface protruding from a side edge of the input device body; A processing device connected at least with the input device body to process information inputted by the input area.