Key mouse interactive sensing recognition auxiliary device
Patent Information
- Application Number
- CN202521987398.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-16
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-09-16
AI Technical Summary
但是此类设备因为其分开连接主机的特性,两者的信息并不交互,分开响应,信息分散,因此,各家厂家多是利用当前设备上的使用信息(用户的使用情况,比如按下某个按键为信号),开发某种自定义宏功能(如快速连点/宏压枪)等软功能,从而提高产品的功能性效果,但是所开发的功能都是简单的单向功能,无法进行有效智能化的操作,去更好的辅助用户
该主控装置将键盘鼠标连接一体,结合装置上的主副两组传感组,实现信息交互控制和干涉控制。
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Figure CN224816720U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of sensor recognition and interaction technology, specifically to a keyboard and mouse interactive sensor recognition auxiliary device. Background Technology
[0002] In the current context, various console and PC games are flourishing, leading to a proliferation of corresponding peripherals on the market. However, the mainstream peripherals—mice and keyboards—are limited by their inherent design, restricting functional upgrades and development, even reaching a bottleneck. Most manufacturers can only improve the functionality and performance of existing devices by upgrading the hardware, such as using better chips or optimizing hardware technologies like wireless mice and magnetic / optical keyboards, to enhance gameplay and responsiveness. However, because these devices are connected separately to the host, information doesn't interact or respond independently, resulting in fragmented data. Therefore, manufacturers often utilize usage information (user activity, such as key presses) to develop custom macro functions (like rapid clicking / macro recoil control) to improve functionality. However, these developed functions are simple, one-way operations, lacking effective intelligent operation to better assist users. For example, on a mouse, a design might trigger a quick-click assist function simply by pressing the left button. However, this quick-click function is not intelligent because in gaming, the mouse and keyboard are often used simultaneously. In some scenarios, pressing the left button does not necessarily mean quick-clicking; instead, it can lead to unnecessary or incorrect operations. The same applies to keyboards. Some dedicated gaming keyboards with magnetic / optical switches have optimized hardware technology and developed assistive functions specifically for FPS shooting games, such as "quick stop" or other assistive functions. However, these are still one-way assistive functions developed based on the user's one-way usage signals on the current device, which has certain limitations. This is because current devices (mouse / keyboard) cannot obtain information from each other or from other dimensions, making it impossible to develop more effective functional assistive technologies to help users achieve more functional effects. (For example, peeling an apple mainly requires the interaction and coordination of information from the brain and both hands to complete such a complex operation; a single hand cannot effectively complete such a complex task.) Utility Model Content
[0003] The purpose of this invention is to provide a keyboard and mouse interactive sensing and recognition auxiliary device to solve the problems mentioned in the background art.
[0004] To achieve the above objectives, this utility model provides the following technical solution: a keyboard and mouse interactive sensing and recognition auxiliary device, including a main control sensing group, wherein the main control sensing group is embedded through a square through hole and a ribbon cable groove, the lower section of the main control movable rod is embedded in the sliding groove of the upper section of the main control movable rod, and the main control front cover assembly includes a main control front cover, a face cover, a metal spring pin and a V-shaped metal part, wherein the metal spring pin passes through the circular through hole of the front cover, one end of the metal spring pin is abutted against a conductive connection point, and the other end is abutted against the V-shaped metal part; The V-shaped metal part is embedded in the V-shaped through hole and is fixed to the front cover by the main control front shell and the face cover. The upper section of the main control movable rod is embedded in the slide groove of the main front shell by the main control movable rod limiting block. The main control circuit board is provided with a type C interface to connect to the host, a USB interface to connect to the keyboard and mouse, a main sensor connector to connect to the main control sensor group, and a secondary control connector on the main control circuit board. The secondary control connector is connected to the secondary control sensor group through a P connection line. The main control circuit board is also provided with a circular through hole, and the circular through hole is fixed to the assembly.
[0005] Specifically, the main control frame is provided with a groove, and the function button is embedded in the groove. The main control frame is pinned and fixed to the main control front cover assembly.
[0006] Specifically, the main control frame is provided with a main nut port, and the screw handle and USB interface are embedded by a matching screw.
[0007] Specifically, the front end of the main control frame is provided with a notch anti-slip pad, which is firmly attached to the screen. The spiral adjustment handle assembly is composed of a triangular cover, a screw handle, a universal round chuck and a round anti-slip pad. The triangular cover is fixed to the screw handle, the screw handle is pinned to the universal round chuck, and a round anti-slip pad is connected to the universal round chuck.
[0008] Specifically, the top of the secondary control sensor group is provided with a secondary control movable limit block, which is embedded in the secondary front shell slide groove inside the secondary control front shell for up-and-down sliding and rotation adjustment.
[0009] Specifically, the secondary control main frame is equipped with a front anti-slip pad, which is screwed into the screw handle. The secondary control main frame and the secondary control front shell are connected by a cylindrical pin.
[0010] Compared with the prior art, the beneficial effects of this utility model are: The main control device integrates the keyboard and mouse, and combines the main and auxiliary sensor groups on the device to realize information interaction control and interference control.
[0011] The mouse and keyboard are first connected to the main control device via a USB data cable, and the main control device is then connected to the computer host via a USB data cable. The main control device centralizes the interaction of information from the user's use of the keyboard and mouse, thus transforming the original one-way transmission interaction into an integrated transmission interaction.
[0012] The main / secondary control unit has two sets of sensor groups, each consisting of multiple sensors. Through a structure designed on the main / secondary unit, the sensor groups can be adjusted, extended, and rotated to ensure they fit perfectly against the monitor screen. They read and identify information about the current display, such as brightness and color, acquiring more multi-dimensional information. This information is converted into digital signals by an algorithm and fed back to the main control circuit board. The main control chip then performs triangular correlation and integration of information from the keyboard, mouse, and sensors, enabling three-way interactive transmission and control. Finally, driven by a built-in program, it assists users in implementing various customized, stable, and fast automated operation functions on the computer.
[0013] Key technical points: Breaking away from the traditional design concept of peripherals in the market, it innovatively combines sensing technology and adds and develops a keyboard, mouse and sensor group recognition and interaction technology. The sensor group can acquire information such as light intensity and color and feed it back to the main control center to realize centralized information interaction and verification between the mouse / keyboard / sensor group. After the information is processed by the algorithm, the interaction and interference control between them are realized. Then, the built-in specially developed driver helps users to realize a variety of automated and fast operations on the computer.
[0014] Through the central control unit, once the mouse, keyboard, and sensor group can acquire each other's information, they can interact and control each other. For example, the mouse can control the sensor group's working state, such as sensitivity, color recognition range, and on / off status, by pressing a button when needed. Conversely, the same applies. For instance, the sensor group can be programmed to send information back to the central control unit when it detects blue, and the mouse and keyboard will receive this information and perform pre-set automated operations, such as continuously clicking a button, to achieve a specific functional effect and meet user needs. Attached Figure Description
[0015] Figure 1 This is a front view of the overall device of this utility model; Figure 2 This is a three-dimensional structural component view of the present invention; Figure 3 Rear view of the three-dimensional structure of this utility model; Figure 4 View of the main control frame and shell cover assembly of this utility model; Figure 5 This is a view of the front shell structure of the main frame of the secondary control component of this utility model; Figure 6 This is a schematic diagram of the main and auxiliary moving rods and the sensor assembly of this utility model; Figure 7 This is a schematic diagram illustrating the up-and-down adjustment of the movable rod of this utility model; Figure 8This is a schematic diagram of the rotation of the movable rod of this utility model; Figure 9 The side view is used for this utility model.
[0016] In the diagram: 1. Main control sensor group; 2. Main control movable rod assembly; 201. Square through hole; 202. Lower section of main control movable rod; 203. Ribbon cable groove; 204. Upper section of main control movable rod; 205. Limiting block of main control movable rod; 3. Main control front cover assembly; 301. Main control front cover; 302. Circular through hole in front cover; 303. Face cover; 304. V-shaped through hole; 305. Metal spring pin; 306. V-shaped metal part; 307. Main front cover slide groove; 4. Main control circuit board; 401. Type-C interface; 402. USB interface; 403. Main sensor connector; 404. Secondary control connector; 405. Conductive connection point; 406. Circular through hole; 5. Main control frame; 501. Function button; 502. Anti-slip pad; 503. Cylindrical part; 504. Main nut opening; 6. Secondary control front shell; 601. Secondary front shell slide groove; 7. Secondary control frame; 701. Front anti-slip pad; 702. Secondary nut opening; 8. Screw adjustment handle assembly; 801. Triangular cover; 802. Screw handle; 803. Universal round chuck; 804. Circular anti-slip pad; 9. Secondary control sensor group; 901. Secondary control movable limit block; 902. 2P connection cable. Detailed Implementation
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0018] Please see Figure 1-9This utility model provides a technical solution: a keyboard and mouse interactive sensing and recognition auxiliary device. The main control sensor group 1 is embedded in the square through hole 201 and the ribbon cable groove 203 of the lower section 202 of the main control movable rod. The root of the end of the lower section 202 of the main control movable rod is embedded in the sliding groove of the upper section 204 of the main control movable rod. The main control front cover assembly 3 is composed of a main control front cover 301, a face cover 303, a metal spring pin 305, and a V-shaped metal part 306. The metal spring pin 305 passes through the front cover. A circular through-hole 302 abuts against a conductive connection point 405 at one end and abuts against a V-shaped metal piece 306 at the other end, enabling the main control circuit board 4 to conduct electricity and serve as an external touch switch. The V-shaped metal piece 306 is embedded in the V-shaped through-hole 304 of the face cover and is connected to the face cover 303 via a cylindrical pin, fixed between the two. The upper section 204 of the main control movable rod can be fitted into the slide groove 307 of the main front cover via the main control movable rod limiting block 205 at the head position, realizing double-section sliding and rotation adjustment (e.g. Figure 7 , Figure 8 The main control circuit board 4 has a Type-C interface 401 for connecting to the host computer, a USB interface 402 for connecting to the keyboard and mouse, a main sensor connector 403 for connecting to the main control sensor group 1 via a ribbon cable, and a secondary control connector 404 for connecting to the secondary control sensor group 9 via a 2P connection cable 902. The main control circuit board 4 has a circular through hole 406 for fitting into the corresponding cylinder 503 of the main control frame 5. The corresponding shaped groove of the main control frame 5 is fitted into the function button 501. The main control frame 5 is connected to the main control front cover assembly 3 via a cylindrical pin, forming a single unit (e.g., ...). Figure 1 The main control frame 5 is provided with a main nut opening 504. A screw handle 802 and a USB interface 402 are embedded via a matching screw. The front end of the main control frame 5 is provided with a notch anti-slip pad 502, which can securely fit against the screen. The screw adjustment handle assembly 8 is connected to the screw handle 802 via a pin to a triangular cover 801. The screw handle 802 is connected to a universal round chuck 803 via a designed circular recessed pin. The universal round chuck 803 is connected to a circular anti-slip pad 804, which can securely fit against the contact surface. The top of the secondary control sensor group 9 has a secondary control movable limit block 901, which can fit into the secondary control front shell 6's inner secondary front shell slide groove 601, realizing up-and-down sliding and rotation adjustment (e.g., ...). Figure 7 . Figure 8 The secondary control main frame 7 is provided with a threaded female opening 701, which can be screwed into by a screw handle 802. The secondary control main frame 7 and the secondary control front shell 6 are connected by a cylindrical pin 503 to form an integral unit (e.g., Figure 1 ).
[0019] The device mainly consists of a main control unit and a secondary control unit, comprising two main / secondary control components. The main frame of the main / secondary control unit features a spiral adjustment handle assembly. Adjusting the clamps securely fixes the main / secondary control unit above the monitor. The inner sliding groove of the front cover of the main / secondary control unit, combined with a movable rod assembly, enables a sliding and rotatable adjustment structure. Each movable rod assembly carries a main / secondary control sensor group. By adjusting the up-and-down sliding or rotation of the rod, the sensor group can be vertically aligned with the monitor screen and its position can be freely changed within a certain range. Each main / secondary control sensor group consists of multiple sensors, which can be connected to the main control circuit board via extended wires. The main control unit carries the main control circuit board and has a main / secondary connector for connecting to the main control sensor group wires. The secondary control unit carries the secondary control sensor group, connected via a 2P connecting cable. The secondary connector, connected to the main control, is integrated with the main control, receiving power and signal transmission from the main control, as well as command scheduling, forming a complete device collectively referred to as the main control device. The main control is equipped with a USB interface and a Type-C interface. The main control connects to the computer host via a USB data cable, receiving power and interacting with the host. The mouse and keyboard are connected to the main control via the USB data cable. Combined with the main / secondary control sensor group on the device, information such as light intensity and color is acquired from the sensor group and fed back to the main control circuit board, realizing information interaction and interference control between the mouse, keyboard, and sensor group. The main control circuit board centralizes the information, processes it through algorithms, and then uses a specially developed built-in driver to help users achieve various automated and rapid operations on the computer, greatly improving and expanding the functionality and possibilities of keyboard and mouse peripherals.
[0020] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A keyboard and mouse interactive sensing and recognition auxiliary device, characterized in that: The system includes a main control sensor group (1), which is embedded in a square through hole (201) and a ribbon cable groove (203). The lower section (202) of the main control movable rod is embedded in the sliding channel of the upper section (204) of the main control movable rod. The main control front cover assembly (3) includes a main control front cover (301), a face cover (303), a metal spring pin (305), and a V-shaped metal piece (306). The metal spring pin (305) passes through the circular through hole (302) of the front cover. One end of the metal spring pin (305) abuts against the conductive connection point (405), and the other end abuts against the V-shaped metal piece (306). The V-shaped metal part (306) is embedded in the V-shaped through hole (304) and is fixed to the front cover (303) by the main control front shell (301). The upper section (204) of the main control rod is embedded in the slide groove (307) of the main front shell by the main control rod limiting block (205). The main control circuit board (4) is provided with a type C interface (401) for connection to the host, a USB interface (402) for connection to the keyboard and mouse, a main sensor connector (403) for connection to the main control sensor group (1), a secondary control connector (404) for connection to the main control circuit board (4), and a secondary control connector (404) for connection to the secondary control sensor group (9) by a 2P connection line (902). The main control circuit board (4) is also provided with a circular through hole (406), and the circular through hole (406) is assembled and fixed with (530).
2. The keyboard and mouse interactive sensing and recognition auxiliary device according to claim 1, characterized in that: The main control frame (5) is provided with a groove, and the function button (501) is embedded in the groove. The main control frame (5) is pinned to the main control front cover assembly (3).
3. The keyboard and mouse interactive sensing and recognition auxiliary device according to claim 2, characterized in that: The main control frame (5) is provided with a main nut port (504), and the screw handle (802) and USB interface (402) are embedded by a matching screw.
4. The keyboard and mouse interactive sensing and recognition auxiliary device according to claim 3, characterized in that: The main control frame (5) is provided with a bang anti-slip pad (502) at the front end. The bang anti-slip pad (502) is tightly attached to the screen. The spiral adjustment handle assembly (8) is combined by a triangular cover (801), a screw handle (802), a universal round chuck (803) and a round anti-slip pad (804). The triangular cover (801) is fixed to the screw handle (802). The screw handle (802) is pinned to the universal round chuck (803). The universal round chuck (803) is connected to the round anti-slip pad (804).
5. The keyboard and mouse interactive sensing and recognition auxiliary device according to claim 4, characterized in that: The top of the sub-control sensor group (9) is provided with a sub-control movable limit block (901). The sub-control movable limit block (901) is embedded in the sub-control front shell slide groove (601) inside the sub-control front shell (6) for up-and-down sliding and rotation adjustment.
6. The keyboard and mouse interactive sensing and recognition auxiliary device according to claim 5, characterized in that: The secondary control main frame (7) is provided with a front bangs anti-slip pad (701), and the front bangs anti-slip pad (701) and the screw handle (802) are spirally embedded. The secondary control main frame (7) and the secondary control front shell (6) are connected by a cylinder (503).