Intelligent screen mechanical keyboard
By introducing adjustment and conduction components into the mechanical keyboard of the smart screen, the problem of inconvenient viewing of the smart screen is solved, and stable display and convenient adjustment of the smart screen in different positions are achieved, thus improving the user experience.
Patent Information
- Application Number
- CN202510770101.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-10
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2045-06-10
AI Technical Summary
In existing smart screen mechanical keyboards, the smart screen is inconvenient to observe, especially in different users and environments where it is difficult to observe the displayed content conveniently and intuitively, which affects the user experience.
A mechanical keyboard for a smart screen was designed, comprising an adjustment component and a conduction component. The adjustment component is slidably mounted on the outer shell to adjust the displacement of the smart screen. The conduction component maintains the conductivity between the smart screen and the circuit board during the displacement process, ensuring that the smart screen can work stably in different positions.
It enables the viewing angle of the smart screen to be adjusted according to different user needs, maintains stable display of the smart screen during the adjustment process, and improves the user experience.
Smart Images

Figure CN120491838B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of computer input devices, and more particularly to a smart screen mechanical keyboard. Background Technology
[0002] The keyboard is an important external device for computers, mainly used to transform the data to be processed into a form that the computer can process. With the development of technology, keyboards have made great progress in functionality and convenience, and will continue to receive key attention from consumers in the future.
[0003] Currently, mechanical keyboards are favored by consumers due to their excellent tactile feedback and long lifespan. Structurally, a mechanical keyboard mainly consists of a shell, circuit board, mounting plate, key switches, and keycaps. The circuit board and mounting plate are mounted on the shell, while the key switches are mounted on the mounting plate. The mounting plate provides stable support and positioning for the key switches, which are connected to the circuit board. The keycaps are mounted on the key switches, and pressing the keyboard triggers the key switches, generating an output signal. In addition, some mechanical keyboards are also equipped with a smart screen. The smart screen is usually located on the shell and connected to the circuit board. The smart screen can display information such as lighting rate, time, lighting effects, or connection methods. The display content of the smart screen can also be controlled using driver software, greatly improving the user's operating experience.
[0004] However, current smart screen mechanical keyboards still have shortcomings. For example, because different users have different usage habits and the keyboard is placed in various different environments, the fixed settings of the smart screen may prevent users from conveniently and intuitively observing the content displayed on the smart screen, thus affecting the user experience. Therefore, existing technologies need to be improved.
[0005] The above information is provided as background information only to aid in understanding this disclosure and does not constitute an assertion or admission that any of the above content can be used as prior art relative to this disclosure. Summary of the Invention
[0006] This invention provides a smart screen mechanical keyboard to solve the problem of inconvenient viewing of smart screens in the prior art, thereby improving the user experience.
[0007] To achieve the above objectives, the present invention provides the following technical solution:
[0008] A smart screen mechanical keyboard includes a keyboard body, which includes a circuit board and a housing, and further includes:
[0009] The adjustment component is slidably mounted on the housing;
[0010] A smart screen is disposed on the adjustment component, and the adjustment component is used to drive the smart screen to adjust its displacement.
[0011] A conductive component is provided on the adjustment component and the housing, respectively, for connecting the smart screen to the circuit board during displacement adjustment.
[0012] Preferably, the adjustment component includes:
[0013] The base is slidably mounted on the outer casing;
[0014] A connector is movably mounted on the base, and the connector can be closer to or farther away from the outer shell. The smart screen is mounted on the connector, and the conductive components are respectively mounted on the connector and the outer shell.
[0015] A locking component is disposed on the base for movably locking the connecting seat. When the locking component locks the connecting seat, the connecting seat is close to the housing and the conducting component is in a conducting state.
[0016] When the locking component unlocks the connector, the connector moves away from the housing and the conductive component is in an open circuit state.
[0017] Preferably, the housing is provided with a sliding groove that extends along the side of the housing, and the base has a sliding part that slides in conjunction with the sliding groove.
[0018] Preferably, the locking component includes:
[0019] The pressing block is movably disposed on the base and has a through-hole. The base has a plug-in hole for the connector to be movably inserted and removed. The pressing block is perpendicular to the moving direction of the connector. The connector is sequentially inserted and engaged with the through-hole and the plug-in hole.
[0020] A first spring is connected to the pressing block and the base respectively. The connecting base is provided with a slot. When the connecting base is locked, the first spring is used to push the pressing block so that the snap hole is offset relative to the insertion hole and the edge is embedded in the slot.
[0021] Preferably, the conducting component includes:
[0022] The first conductive element is connected to the circuit board on one side and extends to the side of the housing on the other side, and is provided with a plurality of first contacts. The plurality of first contacts are arranged at intervals along the moving direction of the adjusting component.
[0023] A second conductive element is disposed in the adjustment assembly, with one end connected to the smart screen and the other end used to conduct to multiple first conductive elements respectively.
[0024] Preferably, the first conductive element includes:
[0025] A busbar is fixedly mounted on the housing, and a plurality of first contacts are disposed on the busbar;
[0026] And a conductive strip, with its two ends connected to the busbar and the circuit board, respectively.
[0027] Preferably, the second conductive element is a double-ended spring pin, and the two ends of the double-ended spring pin are respectively connected to the smart screen and the first conductive element.
[0028] Preferably, the smart screen is detachably connected to the adjustment component, and the smart screen is provided with a second contact point for connecting to the second conductive element. The adjustment component is provided with two elastic grippers that are close to or far apart from each other, and the two elastic grippers are used to movably clamp the two sides of the smart screen.
[0029] Preferably, the housing is provided with a plurality of positioning grooves, the plurality of positioning grooves corresponding to a plurality of contacts, and the adjustment component further includes:
[0030] The limiting block is movably mounted on the base;
[0031] The second spring is connected to the limiting block and the base respectively, and is used to drive the limiting block to move and engage with the plurality of positioning slots respectively.
[0032] Preferably, the connector includes:
[0033] The first connecting part is movably connected to the base;
[0034] A damping shaft is disposed at the first connecting portion;
[0035] The first connecting part is connected to the damping shaft, and the smart screen is disposed on the second connecting part. The damping shaft is used to adjust the relative rotation angle between the first connecting part and the second connecting part.
[0036] Compared with the prior art, the present invention has the following beneficial effects:
[0037] The intelligent screen mechanical keyboard provided by this invention has an adjustment component that slides on the outer shell. This component can adjust the position of the intelligent screen during the sliding process, thereby meeting the viewing angle needs of different users. In addition, the conductive component can maintain the conductivity between the intelligent screen and the circuit board during this process, so that the intelligent screen can maintain the contact display state before and after adjustment. This ensures that the intelligent screen can work stably and solves the problem of inconvenient observation of the intelligent screen.
[0038] The present invention has other features and advantages, which will be apparent from or will be set forth in detail in the accompanying drawings and the following detailed description, which together serve to explain the particular principles of the invention. Attached Figure Description
[0039] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0040] Figure 1 This is a structural schematic diagram of the intelligent screen mechanical keyboard provided in an embodiment of the present invention;
[0041] Figure 2 This is a schematic diagram of the structure of the power board, regulating component, and conducting component provided in an embodiment of the present invention;
[0042] Figure 3 This is a partial structural schematic diagram of the outer shell provided in an embodiment of the present invention;
[0043] Figure 4 This is a schematic diagram showing the assembly relationship between the adjustment component and the smart screen provided in an embodiment of the present invention;
[0044] Figure 5 This is a schematic diagram of the adjustment component and smart screen provided in another embodiment of the present invention.
[0045] Figure label:
[0046] 1. Circuit board; 2. Housing; 21. Slide groove; 22. Positioning groove; 3. Keycap; 4. Smart screen; 41. Second contact point; 5. Adjustment component; 51. Base; 511. Mounting hole; 512. Cover plate; 513. Insertion hole; 52. Connector; 521. Slot; 522. First connecting part; 523. Second connecting part; 524. Damping shaft; 53. Locking component; 531. Pressing block; 5311. Snap-fit hole; 532. First spring; 54. Elastic gripper; 56. Limiting block; 57. Second spring; 6. Conducting component; 61. First conductive element; 611. Busbar; 6111. First contact point; 612. Conductive strip; 62. Second conductive element. Detailed Implementation
[0047] To make the objectives, features, and advantages of this invention more apparent and understandable, the technical solutions of the embodiments of this invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described below are only some embodiments of this invention, and not all embodiments. Based on the embodiments of this invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this invention.
[0048] In the description of this invention, it should be understood that when a component is considered to be "connected" to another component, it can be directly connected to the other component or there may be an intermediate component present simultaneously. When a component is considered to be "set" on another component, it can be directly set on the other component or there may be an intermediate component present simultaneously.
[0049] Furthermore, terms such as “long,” “short,” “inner,” and “outer” indicate orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings. They are used only for the purpose of describing the present invention and are not intended to indicate or imply that the device or component referred to must have this specific orientation or operate in a specific orientational configuration. Therefore, they should not be construed as limitations of the present invention.
[0050] The following is in conjunction with the appendix Figure 1-5 The technical solution of the present invention will be further illustrated through specific embodiments.
[0051] Please refer to Figure 1 and Figure 2 This invention provides a smart screen mechanical keyboard, including a keyboard body, which includes a circuit board 1, a shell 2, key switches (not shown in the figure), and keycaps 3, etc.
[0052] The circuit board 1 is fixedly installed inside the outer casing 2. The circuit board 1 is equipped with a main control module, a key matrix module, a lighting module, and an interface module. The main control module usually uses a main control chip, which is a microcontroller (MCU). The general working principle of the circuit board 1 is as follows: The key matrix module usually consists of multiple keys, each key including a key shaft and a keycap 3 mounted on the key shaft. They are connected to the main control module through the intersection of rows and columns. When a key is pressed, the key matrix module identifies the key press status. At this time, the main control chip receives the press signal from the main control module, and then realizes the conversion of electrical signals, which can ultimately input instructions to the computer device. In addition, the lighting module is electrically connected to the main control module and is usually used to control the RGB bulbs on the keyboard. The interface module is used to connect to the cable and realize interactive connection with the computer device through the cable.
[0053] Based on this, the key switches are usually fixedly installed on the housing 2 and connected to the circuit board 1. The keycaps 3 are installed on the key switches. By pressing the keycaps 3, the key switches are triggered, and then the signal input is realized through the various modules on the circuit board 1. The basic principle of the keyboard will not be elaborated on here.
[0054] In addition, in order to display the keyboard input status, the implementation method provided in this embodiment also includes a smart screen 4, an adjustment component 5, and a conduction component 6. It can be understood that a display module is also provided on the circuit board 1. The display module is usually electrically connected to the smart screen 4 and can control the smart screen 4 to display in real time.
[0055] Therefore, the conventional smart screen 4 is usually fixed in the corner of the mechanical keyboard. This makes it difficult to observe the smart screen 4 when using the keyboard. For example, some keyboards are placed in narrow work areas, causing the smart screen 4 to be blocked. In addition, some keycaps 3 are too high, which will also block the smart screen 4.
[0056] Continue to refer to Figure 1 and Figure 2 To overcome the aforementioned technical obstacles, in the embodiments provided in this application, the adjustment component 5 is slidably disposed on the housing 2, and the smart screen 4 is disposed on the adjustment component 5. When the adjustment component 5 slides on the housing 2, it can be used to drive the smart screen 4 to adjust its displacement, thereby changing the stopping position of the smart screen 4. The conduction component 6 is disposed on the adjustment component 5 and the housing 2 respectively, and is used to conduct electricity between the smart screen 4 and the power board. More specifically, the conduction component 6 needs to conduct electricity between the smart screen 4 and the circuit board 1 during the displacement adjustment of the smart screen 4, so as to ensure that the smart screen 4 can maintain a stable working state before and after adjustment.
[0057] By adopting the above solution, the adjustment component 5 can adjust the position of the smart screen 4, thereby meeting the different viewing angle needs of different users. In this process, the conduction component 6 can connect the smart screen 4 to the circuit board 1 at multiple adjustment positions, thereby enabling the smart screen 4 to maintain a connected display state at multiple adjustment positions, thus solving the problem of inconvenient viewing of the smart screen 4.
[0058] Reference Figure 3 and Figure 4 To enable the position adjustment function of the smart screen 4, the adjustment component 5 includes a base 51, a connecting seat 52, and a locking component 53. The base 51 is slidably disposed on the outer shell 2. In this embodiment, the outer shell 2 has a rectangular outline and has a long side and a wide side. The base 51 is slidably disposed on the long side of the outer shell 2 away from the user. This provides a larger movement space for the adjustment of the smart screen 4 and also facilitates the user's observation of the display screen.
[0059] Based on this, the connecting seat 52 is movably disposed on the base 51, and the connecting seat 52 can move closer to or further away from the outer shell 2. In this embodiment, the connecting seat 52 moves in a straight line along or horizontally, and the moving direction of the connecting seat 52 is perpendicular to the sliding direction of the base 51 on the outer shell 2. At the same time, the smart screen 4 is disposed on the connecting seat 52, and the conductive component 6 is disposed on the connecting seat 52 and the outer shell 2 respectively. Under the action of the moving displacement of the connecting seat 52, the conductive component 6 is used to connect the smart screen 4 and the circuit board 1, which acts as a switch. When the user operates the connecting seat 52 closer to the outer shell 2, the conductive component 6 can achieve conduction through its own contact. When the user operates the connecting seat 52 away from the outer shell 2, the conductive component 6 can disconnect itself, forming an open circuit. At this time, it can provide space for the displacement adjustment of the base 51. When the connecting seat 52 moves to a suitable position, and then the connecting seat 52 is moved closer to the outer shell 2, the conductive component 6 is connected again, and the position of the smart screen 4 is adjusted.
[0060] To ensure that the smart screen 4 can maintain a stable conductive state, the locking component 53 is disposed on the base 51 and is used to lock the connector 52. When the locking component 53 locks the connector 52, the connector 52 is close to the housing 2 and the conductive component 6 is in a conductive state. In addition, when the locking component 53 unlocks the connector 52, the connector 52 can move away from the housing 2 and the conductive component 6 is in an open circuit state.
[0061] Based on the above scheme, during the adjustment of the display screen position, the connecting seat 52 can be pulled first, so that the connecting seat 52 moves on the base 51 and away from the outer shell 2. At this time, the conductive component 6 can be disconnected, thus providing the base 51 with a degree of freedom of movement. Then, the base 51 is pushed to a suitable position, and the connecting seat 52 is pulled again to make the connecting seat 52 close to the outer shell 2 and reset, thereby making the conductive component 6 conductive again, and the smart screen 4 can work again. During this process, the locking component 53 can keep the conductive component 6 in a disconnected or conductive state, which is stable and convenient to operate. The position adjustment of the smart screen 4 is quick, efficient and stable.
[0062] Continue to refer to Figure 3 and Figure 4 In the embodiment provided in this example, in order to enable the base 51 to slide stably on the outer shell 2, the outer shell 2 is provided with a sliding groove 21. The sliding groove 21 extends along the side of the outer shell 2. Specifically, the sliding groove 21 is recessed from the outside to the inside on the side of the long side of the outer shell 2 and extends from one end to the other end along the long side of the outer shell 2. At the same time, the base 51 has a sliding part that slides and engages with the sliding groove 21. In this example, the groove opening of the sliding groove 21 is T-shaped. Correspondingly, the shape of the sliding part is also T-shaped and its size is adapted to the groove opening of the sliding groove 21. At this time, the sliding part can be embedded in the sliding groove 21. Under the action of the groove wall of the sliding groove 21 and the sliding part sliding and abutting against each other, the base 51 can be moved and adjusted along the long side of the outer shell 2.
[0063] Reference Figure 4 The locking component 53 includes a pressing block 531 and a first spring 532.
[0064] The pressing block 531 is movably mounted on the base 51. Specifically, a mounting hole 511 is vertically provided on the base 51. The mounting hole 511 is a blind hole structure, and one end of the mounting hole 511 is open at the top of the base 51. A cover plate 512 is also provided at the opening of the mounting hole 511. The cover plate 512 can be fixed to the outer shell 2 by a snap fastener or threaded fastener, thereby sealing the mounting hole 511. An avoidance hole is provided through the cover plate 512. At this time, the pressing block 531 is slidably mounted in the mounting hole 511 and can move up and down under the guidance of the mounting hole 511. In addition, the top of the pressing block 531 has a pressing part, which extends through the avoidance hole, allowing the user to press down the pressing block 531 through the pressing part.
[0065] Meanwhile, a snap-fit hole 5311 is horizontally provided in the middle of the pressing block 531, and a plug-in hole 513 is provided on the base 51 for the connector 52 to be inserted and removed. The plug-in hole 513 extends horizontally from the side of the base 51 away from the outer shell 2 to the side of the base 51 closer to the outer shell 2. The snap-fit hole 5311 and the plug-in hole 513 extend in the same direction, and the snap-fit hole 5311 is located inside the plug-in hole 513. The size of the snap-fit hole 5311 is adapted to the size of the plug-in hole 513.
[0066] Based on this, the external dimensions of the connector 52 are adapted to the insertion hole 513. When the connector 52 is inserted into the insertion hole 513, it can be guided by sliding cooperation with the groove wall of the insertion hole 513. In the above configuration, the pressing block 531 is perpendicular to the movement direction of the connector 52, and the connector 52 can be inserted and cooperated with the snap-fit hole 5311 and the insertion hole 513 in sequence.
[0067] Meanwhile, the first spring 532 is located inside the mounting hole 511, and both ends of the first spring 532 are connected to the pressing block 531 and the base 51 respectively. The first spring 532 is used to apply a reset force to the pressing block 531. When the user presses down the pressing part, the pressing block 531 will squeeze the first spring 532 to compress it. When the user releases the pressing part, the first spring 532 pushes the pressing block 531 to reset. In the above process, when the first spring 532 is in its natural state, that is, when the user releases the pressing part, the insertion hole 513 and the snap-fit hole 5311 are staggered. Only when the pressing block 531 is pressed down do they overlap. Based on this, the connecting seat 52 is provided with a slot 521. The slot 521 is recessed along the circumferential direction of the connecting seat 52, and the edge of the snap-fit hole 5311 is movably engaged with the slot 521.
[0068] Based on the above settings, when the connector 52 is locked, it is inserted into the insertion hole 513, and the conductive component 6 is in a conductive state. At this time, the user releases the pressing part, causing the first spring 532 to push the pressing block 531, thereby causing the locking hole 5311 to shift relative to the insertion hole 513, and the edge to be embedded in the slot 521, thus locking and fixing the connector 52. When it is necessary to adjust the position of the smart screen 4, simply press down the pressing part to make the locking hole 5311 coincide with the insertion hole 513. At this time, the edge of the locking hole 5311 is released from the slot 521, and the connector 52 can be pulled out. The base 51 can be moved, thereby adjusting the position of the smart screen 4. In the above process, the connector 52 is installed stably, the conductive component 6 is not easy to disconnect, and the operation is convenient.
[0069] Furthermore, the inner wall of the snap-fit hole 5311 has a flared conical guide surface. The conical guide surface slides and engages with the connector 52. During the insertion of the connector 52 into the insertion hole 513, the connector 52 can push the pressing block 531 to avoid it through the conical guide surface until the slot 521 moves into the connector 52. At this time, the first spring 532 pushes the pressing block 531 to reset and locks the connector 52 by itself, making the installation faster. In addition, a conical guide surface can also be provided at the end of the connector 52, which can reduce the installation difficulty of the connector 52 and further optimize and improve the ease of installation of the connector 52.
[0070] Reference Figure 2 , 3 as well as Figure 4 In order to enable the smart screen 4 to conduct and open circuit during displacement adjustment, the conduction component 6 includes a first conductive element 61 and a second conductive element 62. Both the first conductive element 61 and the second conductive element 62 are metal conductors to meet the conductivity requirements.
[0071] The first conductive element 61 is disposed on the housing 2. One side of the first conductive element 61 is connected to the circuit board 1, and the other side extends to the side of the housing 2 and is provided with a plurality of first contacts 6111. The plurality of first contacts 6111 are arranged sequentially at intervals along the moving direction of the adjusting component 5, that is, the plurality of first contacts 6111 are arranged at intervals along the length direction of the slide groove 21. It can be understood that the specific number of first contacts 6111 can be ten, twenty or thirty, etc. The number of first contacts 6111 can be adjusted according to the size of the housing 2. The specific number of first contacts 6111 is not limited here.
[0072] Meanwhile, a second conductive element 62 is disposed on the adjustment assembly 5. Specifically, the second conductive element 62 is disposed on the connector 52, one end of the second conductive element 62 is connected to the smart screen 4, and the other end is used to conduct electricity to multiple first conductive elements 61 respectively.
[0073] Based on the above settings, by sequentially contacting or separating the second conductive element 62 with multiple contacts, the smart screen 4 can obtain electrical energy and signals at multiple locations, which is also conducive to conforming to the displacement adjustment action of the smart screen 4 and meeting actual functional requirements.
[0074] Furthermore, the first conductive element 61 includes a busbar 611 and a conductive strip 612. In this embodiment, a busbar 611 is fixedly mounted on the housing 2, and multiple first contacts 6111 are disposed on the busbar 611. The busbar 611 extends along the length of the groove 21 and is fixedly installed on the inner wall of the housing 2. Meanwhile, an exposure hole is provided through the housing 2. The number and arrangement of the exposure holes are adapted to the first contacts 6111. The multiple first contacts 6111 extend to the outside of the housing 2 through the exposure holes, thereby being able to contact the second conductive element 62. On this basis, the two ends of the conductive strip 612 are respectively connected to the busbar 611 and the circuit board 1. Specifically, one end of the conductive strip 612 is connected to the display module on the circuit board 1, and the other end is directly fixedly connected to the busbar 611. At this time, when the first contact 6111 contacts the second conductive element 62, the signal and current are converged through the busbar 611 to the conductive strip 612, and interact with the circuit board 1 through the conductive strip 612.
[0075] Furthermore, the second conductive element 62 is a double-ended spring needle, which mainly includes a needle tube, a spring, and two needle tips. The needle tips can extend and retract under the support of the spring, thus allowing them to fit tightly against the first contact point 6111 upon contact. Based on this, the two ends of the double-ended spring needle are respectively connected to the smart screen 4 and the first conductive element 61. By setting the second conductive element 62 as a double-ended spring needle, under the action of the double-ended spring needle, the elastic needle tips can be tightly connected to the first conductive element 61 and the smart screen 4 respectively, making the structure more stable.
[0076] Furthermore, combined Figure 4 The smart screen 4 is detachably connected to the adjustment component 5, and the smart screen 4 is provided with a second contact 41. The second contact 41 is used to connect with the second conductive element 62. The second contact 41 can be movably connected with the second conductive element 62 during the replacement of the smart screen 4, so as to facilitate the replacement of the smart screen 4, and thus can replace smart screens 4 of different sizes or with different functions. It can be understood that the smart screen 4 mainly includes a shell, a display module and a control circuit. The display module and the control circuit are respectively set in the shell. The control circuit is connected to the display module and the second contact 41 respectively. The control circuit obtains electrical energy and signals through the second contact 41, and controls the display module through the control circuit. The display principle of the smart screen will not be described in detail here.
[0077] Specifically, to enable the disassembly and replacement of the smart screen 4, the adjustment component 5 is provided with two elastic grippers 54 that are close to or far apart from each other. In this embodiment, the elastic gripper 54 includes a gripper body and a tension spring. The gripper body is slidably installed on the housing. In addition, the two ends of the tension spring are respectively connected to the base 51 and the gripper body. The tension spring provides clamping force to the gripper body, so that the two elastic grippers 54 can be used to clamp the two sides of the smart screen 4. When it is necessary to disassemble the smart screen 4, it is only necessary to separate the gripping bodies, which makes the replacement convenient and quick.
[0078] Furthermore, the outer side of the smart screen 4 and the gripper body are respectively provided with inclined reinforcing surfaces. When the gripper body is fastened to the smart screen 4, the two reinforcing surfaces abut against each other and can provide pressure to the smart screen 4 through the two reinforcing surfaces. Under the action of pressure, the connection between the second contact 41 and the second conductive element 62 is tighter and more reliable.
[0079] Furthermore, referring to Figure 3 and Figure 4 In the process of adjusting the position of the smart screen 4, in order to improve the connection accuracy between the first contact 6111 and the second conductive element 62, the outer shell 2 is provided with a plurality of positioning slots 22. The number of positioning slots 22 is adapted to the number of the plurality of first contacts 6111, and the positioning slots 22 correspond to the plurality of first contacts 6111. It can be understood that a single positioning slot 22 is arranged adjacent to a single first contact 6111 and corresponds to each other.
[0080] Based on this, the adjusting component 5 also includes a limiting block 56 and a second spring 57. The limiting block 56 is movably disposed on the base 51, wherein the base 51 is provided with a mounting groove, the limiting block 56 is slidably disposed in the mounting groove, and one end of the limiting block 56 can extend out of the base 51, the end extending out of the base 51 having a spherical surface; at the same time, both ends of the second spring 57 are connected to the limiting block 56 and the base 51 respectively, the second spring 57 is used to provide elastic force to the limiting block 56, so that the limiting block 56 can remain in the extended state when not subjected to external force. The positioning block 56 can slide against the outer shell 2 through the spherical surface. During the displacement adjustment of the base 51, the positioning block 56 can be moved and engaged into multiple different positioning slots 22, thereby generating vibration and a passing touch. Since the position of the positioning slot corresponds to the position of the first contact point 6111, the user can identify the position where the base 51 stops. When the user obtains the passing touch, the user stops moving the base 51, so that the first contact point 6111 can accurately correspond to the second conductive element 62, and a precise conduction effect can be achieved.
[0081] Reference Figure 5In another embodiment, the connecting base 52 includes a first connecting part 522, a second connecting part 523, and a damping shaft 524. The first connecting part 522 is movably connected to the base 51, and a slot 521 is also provided on the first connecting part 522. Furthermore, the damping shaft 524 is mounted on the first connecting part 522, and the second connecting part 523 is connected to the damping shaft 524. In this case, the smart screen 4 is positioned on the second connecting part 523. The damping shaft 524 is used to adjust the relative rotation angle between the first connecting part 522 and the second connecting part 523, thereby enabling adjustment of the tilt angle of the smart screen 4 so that the user can observe the smart screen 4 from more angles.
[0082] Understandably, when the connector 52 is tilt-adjustable, the number of second conductive elements 62 is set to two, and the two second conductive elements 62 are respectively disposed on the first connecting part 522 and the second connecting part 523. At the same time, the two conductive elements are interconnected through connectors and wires. The second conductive element 62 located on the first connecting part 522 is used to abut against the first conductive element 61, and the second conductive element 62 located on the second connecting part 523 is used to abut against the second contact 41. This can meet the signal and power requirements of the smart screen 4 during tilt adjustment. On this basis, the elastic gripper 54 is disposed on the second connecting part 523. Under the action of the connector and wires, on the one hand, the display screen and the circuit board 1 can be interconnected, and on the other hand, the smart screen 4 can be detached, and the ease of use is further optimized and improved.
[0083] Therefore, the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A smart screen mechanical keyboard, characterized in that, The keyboard body includes a circuit board (1) and a housing (2), and further includes: Adjustment component (5) is slidably disposed on the outer casing (2); A smart screen (4) is disposed on the adjustment component (5), and the adjustment component (5) is used to drive the smart screen (4) to adjust its displacement; And a conducting component (6), respectively disposed on the adjusting component (5) and the outer shell (2), for connecting the smart screen (4) with the circuit board (1) during displacement adjustment; The adjustment component (5) includes: The base (51) is slidably disposed on the outer casing (2); A connector (52) is movably disposed on the base (51). The connector (52) can be closer to or further away from the outer shell (2). The smart screen (4) is disposed on the connector (52). The conductive component (6) is disposed on the connector (52) and the outer shell (2) respectively. A locking component (53) is disposed on the base (51) for movably locking the connecting seat (52). When the locking component (53) locks the connecting seat (52), the connecting seat (52) is close to the outer shell (2) and the conducting component (6) is in a conducting state. When the locking component (53) unlocks the connector (52), the connector (52) moves away from the housing (2) and the conductive component (6) is in an open circuit state.
2. The intelligent screen mechanical keyboard according to claim 1, characterized in that, The outer casing (2) is provided with a groove (21) that extends along the side of the outer casing (2), and the base (51) has a sliding part that slides in cooperation with the groove (21).
3. The intelligent screen mechanical keyboard according to claim 1, characterized in that, The locking component (53) includes: A pressing block (531) is movably disposed on the base (51) and has a through-hole (5311). The base (51) has a plug-in hole (513) for the connector (52) to be movably inserted and removed. The pressing block (531) is perpendicular to the moving direction of the connector (52). The connector (52) is sequentially inserted and engaged with the through-hole (5311) and the plug-in hole (513). A first spring (532) is connected to the pressing block (531) and the base (51) respectively. The connecting seat (52) is provided with a slot (521). When the connecting seat (52) is locked, the first spring (532) is used to push the pressing block (531) so that the snap hole (5311) is offset relative to the insertion hole (513) and the edge is embedded in the slot (521).
4. The intelligent screen mechanical keyboard according to claim 2 or 3, characterized in that, The conducting component (6) includes: The first conductive element (61) is connected to the circuit board (1) on one side and extends to the side of the housing (2) on the other side and is provided with a plurality of first contacts (6111). The plurality of first contacts (6111) are arranged in sequence at intervals along the moving direction of the adjusting component (5). And a second conductive element (62) is disposed in the adjustment component (5), one end of which is connected to the smart screen (4), and the other end is used to conduct to multiple first conductive elements (61) respectively.
5. The intelligent screen mechanical keyboard according to claim 4, characterized in that, The first conductive element (61) includes: A busbar (611) is fixedly disposed on the housing (2), and a plurality of first contacts (6111) are disposed on the busbar (611); And a conductive strip (612), the two ends of which are connected to the busbar (611) and the circuit board (1) respectively.
6. The intelligent screen mechanical keyboard according to claim 4, characterized in that, The second conductive element (62) is a double-ended spring pin, and the two ends of the double-ended spring pin are respectively connected to the smart screen (4) and the first conductive element (61).
7. The intelligent screen mechanical keyboard according to claim 6, characterized in that, The smart screen (4) is detachably connected to the adjustment component (5), and the smart screen (4) is provided with a second contact (41), which is used to connect with the second conductive element (62). The adjustment component (5) is provided with two elastic grippers (54) that are close to or far apart from each other, and the two elastic grippers (54) are used to flexibly clamp the two sides of the smart screen (4).
8. The intelligent screen mechanical keyboard according to claim 4, characterized in that, The outer casing (2) is provided with a plurality of positioning grooves (22), which correspond to a plurality of first contacts (6111). The adjustment assembly (5) further includes: A limiting block (56) is movably mounted on the base (51); And a second spring (57), which is connected to the limiting block (56) and the base (51) respectively, to drive the limiting block (56) to move and engage with the multiple positioning slots (22).
9. The intelligent screen mechanical keyboard according to claim 1, characterized in that, The connector (52) includes: The first connecting part (522) is movably connected to the base (51); A damping shaft (524) is disposed at the first connecting portion (522); The second connecting part (523) is connected to the damping shaft (524). The smart screen (4) is disposed on the second connecting part (523). The damping shaft (524) is used to adjust the relative rotation angle of the first connecting part (522) and the second connecting part (523).
Citation Information
Patent Citations
Method for displaying virtual keyboard, virtual keyboard and touch screen terminal
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