A console mouse device with embedded storage cavity
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGGUAN JIANTE ELECTRONICS CO LTD
- Filing Date
- 2025-08-25
- Publication Date
- 2026-08-07
AI Technical Summary
但是仍存在对轨迹球鼠标、鼠标触控板作为光标输入操作上的不习惯的问题,因此,本方案旨在提出鼠标装置的创新方案,采用传统的有线鼠标且同时满足鼠标不使用时保持操控台简洁,及鼠标的抗振收纳
[0013] The beneficial effects of the present utility model are as follows: The storage cavity body of the mouse device designed by this solution is embedded in the console. When the mouse needs to be used, the mouse is taken out from the storage cavity body, and the data connection wire of the mouse passes through the wire passing notch. The surface of the cover plate serves as a mouse pad. When the mouse is not in use, the mouse is placed into the storage cavity body, and the cover plate and the storage cavity body are locked through a locking member, which is beneficial to keeping the upper surface of the console simple. In addition, by arranging a foam base in the storage cavity body and a foam cover plate on the bottom surface of the cover plate, when the mouse is not in use, it is placed in the profiling slot of the foam base. When the cover plate is closed on the storage cavity body, the foam cover plate presses on the upper surface of the mouse, so as to achieve the anti-vibration storage effect when the mouse is placed in the storage cavity body, and the mouse will not vibrate or shift and collide to generate noise due to the vibration and shaking of the console.
Smart Images

Figure CN224609476U_ABST
Abstract
Description
Technical Field
[0001] This disclosure relates to the field of mouse device technology, and more particularly to a mouse device with an embedded storage cavity on the control panel. Background Technology
[0002] With the rapid development of computer technology, many devices in industries such as industry, medicine, and science and technology often integrate computer function modules, working with displays and control consoles to achieve corresponding interactions and operations. In this process, keyboards and mice are indispensable input devices. Due to the requirements for simplicity and vibration resistance of the display consoles in these fields, existing technologies typically use embedded, fixed keyboard units, often incorporating trackball mice or touchpads, thus forming a fixed-position mouse unit. However, there is still the issue of unfamiliarity with using trackball mice and touchpads as cursor input. Therefore, this solution aims to propose an innovative mouse device that utilizes a traditional wired mouse while simultaneously maintaining a simple control console when the mouse is not in use and providing vibration-resistant storage for the mouse. Utility Model Content
[0003] To achieve the above objectives, this disclosure proposes a mouse device with an embedded storage cavity on the control panel. The embedded storage cavity is set in the control panel, and the mouse is taken out from the storage cavity when in use and put back into the storage cavity when not in use, thus keeping the control panel simple.
[0004] The technical solution of this utility model is a mouse device with an embedded storage cavity on a control panel, including a storage cavity body and a cover plate covering the upper end of the storage cavity body. The storage cavity body has a cavity for placing the mouse, and the upper end of the storage cavity body is the opening end of the cavity. The edge of the opening end is a convex edge extending vertically to the periphery of the cavity. One side of the cover plate is pivotally connected to one side of the opening end, and the other side of the cover plate opposite to the pivotally connected side has a mounting hole for mounting a locking component. The inner wall of the cavity has a limiting plate for locking with the locking component. The edge of the cover plate has a wire-passing notch, and the inner wall of the cavity has a wire-passing through hole. The cavity of the storage cavity body has a foam base with a contoured groove for placing the mouse. The bottom surface of the cover plate has a foam cover plate. When the cover plate is closed on the storage cavity body, the foam cover plate presses against the upper surface of the mouse.
[0005] As a pivotal connection scheme between the cover plate and the storage cavity body, a hinge is provided on one side of the cover plate and one side of the opening end to realize the pivotal connection between the cover plate and the opening end.
[0006] As another pivoting solution for the cover plate and the storage cavity body, one side of the cover plate is provided with a first pivoting portion and a second pivoting portion that protrude towards the bottom surface of the cover plate. The first pivoting portion and the second pivoting portion are distributed near the left and right ends on one side of the cover plate. Both the first pivoting portion and the second pivoting portion are provided with pivoting through holes A. One side of the open end is provided with a first pivoting groove and a second pivoting groove that are respectively pivotally connected to the first pivoting portion and the second pivoting portion. The outer convex edges corresponding to the outer sides of the first pivoting groove and the second pivoting groove are both provided with pivoting through holes B, and the inner convex edges corresponding to the inner sides of the first pivoting groove and the second pivoting groove are both provided with pivoting blind holes. The two ends of the pivoting through hole A are respectively connected to the pivoting through hole B and the pivoting blind hole. A cylindrical pin is inserted from the outside of the pivoting through hole B. The cylindrical pin passes through the pivoting through hole A and the front end is inserted into the pivoting blind hole.
[0007] Further, after the cylindrical pin is inserted into the pivoting through hole B, a plugging blind hole position is formed between the rear end of the cylindrical pin and the pivoting through hole B. A T-shaped plug is plugged into the plugging blind hole position, or a machine screw is provided to block the plugging blind hole position.
[0008] Preferably, the locking member adopts a rotary tongue lock or a push lock. The limiting plate includes a metal plate body. One side edge of the metal plate body is provided with a bent side wall. The metal plate body is fixed to the inner wall of the cavity by screws. The locking tongue of the rotary tongue lock or the push lock is movably abutted against the lower side of the bent side wall to lock the locking member and the limiting plate.
[0009] Further, the push lock includes an inverted "Ji" - shaped bottom shell, a locking tongue, a second compression spring, an upper mounting plate, a first compression spring, and a pressing member. The locking tongue is arranged in the groove of the inverted "Ji" - shaped bottom shell. The front end of the locking tongue is provided with a tongue inclined surface towards the bottom. The rear end of the locking tongue is provided with a second compression spring. The rear end of the inverted "Ji" - shaped bottom shell is provided with a baffle for resisting the second compression spring. The upper end of the locking tongue is provided with an inclined surface notch that slopes from the rear side to the front lower side. The upper mounting plate covers the inverted "Ji" - shaped bottom shell. The upper mounting plate is provided with a notch at each of the left and right sides corresponding to the locking tongue. A first compression spring is vertically arranged between the notches of the upper mounting plate. The pressing member is an inverted U - shaped plate. The two side walls of the inverted U - shaped plate are inserted into the notches. The two side walls of the inverted U - shaped plate are provided with opposite shaft holes. A round shaft rod is connected to the shaft holes. The round shaft rod presses against the inclined surface notch by pressing the inverted U - shaped plate, driving the locking tongue to move backward. The first compression spring is used for the pressing member to reset and bounce up, and the second compression spring is used for the locking tongue to reset and move forward.
[0010] Further, the two ends of the round shaft rod extend outside the shaft holes of the inverted U - shaped plate. The two groove side walls of the groove of the inverted "Ji" - shaped bottom shell are provided with opposite and vertically downward guide grooves. The two ends of the round shaft rod enter the guide grooves. By pressing the inverted U - shaped plate, the round shaft rod moves downward along the guide grooves.
[0011] Further, a hole-position convex edge is provided on the bottom surface of the cover plate corresponding to the installation hole position. The hole-position convex edge is provided with an internal-thread blind hole. The inverted "ji"-shaped bottom shell and the upper mounting plate are provided with screw holes, and are connected to the internal-thread blind hole of the hole-position convex edge through screws. The upper end of the inverted U-shaped plate passes through the installation hole position, and a key cap is sleeved on the upper end of the inverted U-shaped plate.
[0012] Preferably, a aviation plug connector is provided in the wire passing through-hole. The inner side of the aviation plug connector is connected to the mouse through a data connection wire. The data connection wire is provided with a scroll spring wire winder, and the scroll spring wire winder is fixedly arranged inside the storage cavity body.
[0013] The beneficial effects of the present utility model are as follows: The storage cavity body of the mouse device designed by this solution is embedded in the console. When the mouse needs to be used, the mouse is taken out from the storage cavity body, and the data connection wire of the mouse passes through the wire passing notch. The surface of the cover plate serves as a mouse pad. When the mouse is not in use, the mouse is placed into the storage cavity body, and the cover plate and the storage cavity body are locked through a locking member, which is beneficial to keeping the upper surface of the console simple. In addition, by arranging a foam base in the storage cavity body and a foam cover plate on the bottom surface of the cover plate, when the mouse is not in use, it is placed in the profiling slot of the foam base. When the cover plate is closed on the storage cavity body, the foam cover plate presses on the upper surface of the mouse, so as to achieve the anti-vibration storage effect when the mouse is placed in the storage cavity body, and the mouse will not vibrate or shift and collide to generate noise due to the vibration and shaking of the console. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] The drawings included in the specification and constituting a part of the specification show the exemplary embodiments, features and aspects of the present disclosure together with the specification, and are used to explain the principles of the present disclosure.
[0015] Figure 1 It is a schematic diagram of the overall structure decomposition of the mouse device disclosed in the embodiment of the present utility model.
[0016] Figure 2 It is a schematic diagram of the cover plate and the pressing lock structure disclosed in the embodiment of the present utility model.
[0017] Figure 3 It is a schematic diagram of the structure of the mouse device cover plate in the open state disclosed in the embodiment of the present utility model.
[0018] Figure 4 It is a sectional view of the structure in which the cover plate and the storage cavity body of the mouse device disclosed in the embodiment of the present utility model are pivotally connected.
[0019] Figure 5 It is a schematic diagram of the overall structure decomposition of the pressing lock disclosed in the embodiment of the present utility model.
[0020] Figure 6This is a cross-sectional view of the overall structure of the press lock and the limiting plate in the locked state as disclosed in the embodiment of this utility model.
[0021] Figure 7 This is a schematic diagram of a mouse placed on a cover plate according to an embodiment of the present invention.
[0022] Figure 8 This is a schematic diagram of another embodiment of the present invention, in which a hinge is used to pivotally connect the cover plate and the storage cavity body.
[0023] The following are explanations of the reference numerals in the attached figures: 1. Receiving cavity body; 101. First pivot groove; 102. Second pivot groove; 103. Pivot through hole B; 104. Pivot blind hole; 2. Cover plate; 201. Mounting hole; 2011. Hole protrusion; 202. Cable guide notch; 203. First pivot part; 204. Second pivot part; 205. Pivot through hole A; 3. Mouse; 4. Press lock; 41. Inverted "V"-shaped bottom shell; 411. Baffle plate; 412. 42. Guide groove; 421. Locking tongue; 422. Tongue bevel; 423. Bevel notch; 44. Second compression spring; 45. Upper mounting plate; 46. Groove; 47. First compression spring; 48. Inverted U-shaped plate; 49. Shaft hole; 50. Round shaft; 6. Limiting plate; 70. Bending side wall; 8. Foam base; 9. Foam cover plate; 10. Cylindrical pin; 11. Machine screw; 12. Aviation connector; 13. Scroll spring take-up; 14. Button cap. Detailed Implementation
[0024] The technical solutions in the embodiments of this disclosure will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this disclosure, and not all embodiments. Based on the embodiments of this disclosure, all other embodiments obtained by those skilled in the art without creative effort are also within the scope of protection of this disclosure.
[0025] Please refer to Figures 1 to 7This is a specific embodiment of a mouse device with an embedded storage cavity on a control panel disclosed in this technical solution. In this embodiment, the mouse device includes a storage cavity body 1 and a cover plate 2 covering the upper end of the storage cavity body 1. The storage cavity body 1 has a cavity for placing a mouse 3. The upper end of the storage cavity body 1 is the opening end of the cavity. The edge of the opening end is a convex edge that extends vertically to the periphery of the cavity. One side of the cover plate 2 is pivotally connected to one side of the opening end. The other side of the cover plate 2 opposite to the pivotally connected side has a mounting hole 201. A locking member is installed in the mounting hole 201. The inner wall of the cavity has a limiting plate 5 that locks with the locking member. The edge of the cover plate 2 has a wire passage notch 202. The inner wall of the cavity has a wire passage hole. The storage cavity body 1 is provided with a foam base 6, and the foam base 6 is provided with a contoured groove for placing the mouse 3. The bottom surface of the cover plate 2 is provided with a foam cover plate 7. When the cover plate 2 is closed on the storage cavity body 1, the foam cover plate 7 presses on the upper surface of the mouse 3.
[0026] In this design, the storage cavity body 1 is embedded in the control panel. When the mouse 3 is needed, it is removed from the storage cavity body 1, and the data connection cable of the mouse 3 passes through the cable notch 202. The surface of the cover plate 2 acts as a pad for the mouse 3. When the mouse 3 is not in use, it is placed back into the storage cavity body 1. The cover plate 2 and the storage cavity body 1 are locked together by a locking mechanism, which helps to keep the upper surface of the control panel clean. In addition, by setting a foam base 6 inside the storage cavity body 1 and a foam cover plate 7 on the bottom surface of the cover plate 2, the mouse 3 can be placed in the contoured slot of the foam base 6 when not in use. When the cover plate 2 is closed on the storage cavity body 1, the foam cover plate 7 presses down on the upper surface of the mouse 3, thus providing anti-vibration storage for the mouse 3 when placed in the storage cavity body 1. This prevents the mouse 3 from vibrating or shifting and causing noise due to vibration or shaking of the control panel.
[0027] Please refer to Figure 8 As a pivotal connection scheme between the cover plate 2 and the storage cavity body 1, a hinge is provided on one side of the cover plate 2 and one side of the opening end to realize the pivotal connection between the cover plate 2 and the opening end.
[0028] Please refer to Figures 1 to 4As another pivotal connection scheme between the cover plate 2 and the storage cavity body 1, one side of the cover plate 2 is provided with a first pivot portion 203 and a second pivot portion 204 protruding towards the bottom surface of the cover plate 2. The first pivot portion 203 and the second pivot portion 204 are distributed on one side of the cover plate 2 near the left and right ends. Both the first pivot portion 203 and the second pivot portion 204 are provided with pivot through holes A205. One side of the open end is provided with a first pivot groove 10 that is pivotally connected to the first pivot portion 203 and the second pivot portion 204 respectively. 1. The second pivot groove 102, the first pivot groove 101 and the second pivot groove 102 are provided with pivot through holes B103 on the outer convex edges corresponding to the outer sides, and the first pivot groove 101 and the second pivot groove 102 are provided with pivot blind holes 104 on the inner convex edges corresponding to the outer sides. The two ends of the pivot through hole A205 are respectively connected to the pivot through hole B103 and the pivot blind hole 104. A cylindrical pin 8 is inserted from the outside of the pivot through hole B103. The cylindrical pin 8 passes through the pivot through hole A205 and its front end is inserted into the pivot blind hole 104.
[0029] Please refer to Figure 4 Furthermore, after the cylindrical pin 8 is inserted into the pivot hole B103, the rear end of the cylindrical pin 8 and the pivot hole B103 form a blind insertion hole position, and a T-shaped plug is inserted into the blind insertion hole position, or a screw 9 is provided to seal the blind insertion hole position.
[0030] Preferably, the locking component is a rotary lock or a push-button lock 4, and the limiting plate 5 includes a metal plate body with a bent side wall 501 on one side. The metal plate body is fixed to the inner wall of the cavity by screws. The locking tongue of the rotary lock or push-button lock 4 moves to abut against the lower part of the bent side wall 501 to lock the locking component with the limiting plate 5.
[0031] Please refer to Figures 1 to 3 , Figure 5 and Figure 6, in this embodiment, the specific structural solution of the push lock 4 is elaborated in detail. The push lock 4 includes an inverted "ji" - shaped bottom housing 41, a locking tongue 42, a second compression spring 43, an upper mounting plate 44, a first compression spring 45, and a pressing member. The locking tongue 42 is arranged in the groove of the inverted "ji" - shaped bottom housing 41. The front end of the locking tongue 42 is provided with a tongue inclined surface 421 towards the bottom. A second compression spring 43 is arranged at the rear end of the locking tongue 42. At the rear end of the inverted "ji" - shaped bottom housing 41, there is a baffle plate 411 that resists the second compression spring 43. At the upper end of the locking tongue 42, there is an inclined surface notch 422 that slopes forward and downward from the rear side. The upper mounting plate 44 covers the inverted "ji" - shaped bottom housing 41. At the positions corresponding to the left and right sides of the locking tongue 42 on the upper mounting plate 44, there is a notch 441 each. A first compression spring 45 is vertically arranged between the notches 441 of the upper mounting plate 44. The pressing member is an inverted U - shaped plate 46. The two side walls of the inverted U - shaped plate 46 are inserted into the notches 441. Opposite shaft holes 461 are provided on the two side walls of the inverted U - shaped plate 46. A round shaft rod 47 is connected to the shaft holes 461. The round shaft rod 47 presses against the inclined surface notch 422 by pressing the inverted U - shaped plate 46, driving the locking tongue 42 to move backward. The first compression spring 45 is used for the pressing member to reset and bounce up, and the second compression spring 43 is used for the locking tongue 42 to reset and move forward. When using the push lock 4, as Figure 3 shown, after the cover plate 2 is in the open state and is directly closed, when the tongue inclined surface 421 of the locking tongue 42 abuts against the bent side wall 501 of the limiting plate 5, the locking tongue 42 moves backward through the tongue inclined surface �21, so that the front end of the locking tongue 42 enters below the bent side wall 501. Through the rebound of the second compression spring 43, the locking tongue 42 is locked with the limiting plate 5. For a rotary tongue lock, it is necessary to rotate the rotary tongue to below the bent side wall 501 of the limiting plate 5 through a key to achieve locking, and the operation is not as convenient as that of the push lock 4.
[0032] Please refer to Figure 5 , further, both ends of the round shaft rod 47 extend outside the shaft holes 461 of the inverted U - shaped plate 46. On the two side walls of the groove of the inverted "ji" - shaped bottom housing 41, there are opposite and vertically downward guide grooves 412. Both ends of the round shaft rod 47 enter the guide grooves 412. When pressing the inverted U - shaped plate 46, the round shaft rod 47 moves downward along the guide grooves 412. By setting the guide grooves 412, pressing the inverted U - shaped plate 46 is made more stable and smooth. For the fixation of the first compression spring 45, on the one hand, spot welding can be carried out at its lower end. On the other hand, as Figure 5 Further, a hole position convex edge 2011 is provided on the bottom surface of the cover plate 2 corresponding to the mounting hole position 201. An internal threaded blind hole is provided on the hole position convex edge 2011. The inverted "ji"-shaped bottom housing 41 and the upper mounting plate 44 are provided with screw holes, and are connected to the internal threaded blind hole of the hole position convex edge 2011 through screws. The upper end of the inverted U-shaped plate 46 passes through the mounting hole position 201, and a key cap 12 is sleeved on the upper end of the inverted U-shaped plate 46.
[0034] Preferably, a rectangular connector 10 is provided in the wire passing through hole. The inner side of the rectangular connector 10 is connected to the mouse 3 through a data connection wire. The data connection wire is provided with a scroll spring wire winder 11. The scroll spring wire winder 11 is fixed in the accommodation cavity body 1. The scroll spring wire winder 11 realizes the telescopic accommodation of the data connection wire of the mouse 3 in the scroll spring wire winder 11, making the accommodation cavity body 1 more concise.
[0035] The parts not described in detail in the description of this technical solution are obvious to those skilled in the art and can be supplemented and perfected according to the existing technical knowledge. At the same time, those skilled in the art should understand that the above-mentioned embodiments are only the preferred embodiments of the present invention. For those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present invention.
Claims
1. A mouse device with an embedded storage cavity on a control panel, comprising a storage cavity body and a cover plate disposed on the upper end of the storage cavity body, wherein the storage cavity body has a cavity for placing the mouse, and the upper end of the storage cavity body is the opening end of the cavity, characterized in that, The edge of the opening is designed as an outwardly convex edge extending vertically to the periphery of the cavity. One side of the cover plate is pivotally connected to one side of the opening. On the other side of the cover plate opposite to the pivot, there is a mounting hole. A locking device is installed in the mounting hole. The inner wall of the cavity is provided with a limiting plate that locks with the locking device. The edge of the cover plate is provided with a wire passage notch. The inner wall of the cavity is provided with a wire passage through hole. The storage cavity body is provided with a foam base, and the foam base is provided with a contoured groove for placing the mouse. The bottom surface of the cover plate is provided with a foam cover plate. When the cover plate is closed on the storage cavity body, the foam cover plate presses on the upper surface of the mouse.
2. The mouse device with an embedded storage cavity on the control panel according to claim 1, characterized in that, A hinge is provided on one side of the cover plate and one side of the opening end to achieve a pivot connection between the cover plate and the opening end.
3. The mouse device with an embedded storage cavity on the control panel according to claim 1, characterized in that, One side of the cover plate is provided with a first pivot portion and a second pivot portion protruding towards the bottom surface of the cover plate. The first pivot portion and the second pivot portion are distributed on one side of the cover plate near the left and right ends. Both the first pivot portion and the second pivot portion are provided with pivot through holes A. One side of the open end is provided with a first pivot groove and a second pivot groove that are respectively positioned and pivotally connected to the first pivot portion and the second pivot portion. The outer convex edges of the first pivot groove and the second pivot groove are respectively provided with pivot through holes B. The outer convex edges of the first pivot groove and the second pivot groove are respectively provided with pivot blind holes. The two ends of the pivot through hole A are respectively connected to the pivot through hole B and the pivot blind hole. A cylindrical pin is inserted from the outside of the pivot through hole B. The cylindrical pin passes through the pivot through hole A and its front end is inserted into the pivot blind hole.
4. The mouse device with an embedded storage cavity on the control panel according to claim 3, characterized in that, After the cylindrical pin is inserted into the pivot hole B, the rear end of the cylindrical pin and the pivot hole B form a blind insertion hole. A T-shaped plug is inserted into the blind insertion hole, or a nut screw is provided to seal the blind insertion hole.
5. The mouse device with an embedded storage cavity on the control panel according to claim 1, characterized in that, The locking mechanism is a rotary latch lock or a push-button lock. The limiting plate consists of a metal plate with a bent sidewall on one side. The metal plate is fixed to the inner wall of the cavity by screws. The latch of the rotary latch lock or push-button lock moves to abut against the lower part of the bent sidewall to lock the locking mechanism with the limiting plate.
6. The mouse device with an embedded storage cavity on the control panel according to claim 5, characterized in that, The pressing lock includes an inverted "ji" - shaped bottom housing, a locking tongue, a second compression spring, an upper mounting plate, a first compression spring, and a pressing member. The locking tongue is disposed in the groove of the inverted "ji" - shaped bottom housing. The front end of the locking tongue is provided with a tongue inclined surface towards the bottom, and the rear end of the locking tongue is provided with a second compression spring. The rear end of the inverted "ji" - shaped bottom housing is provided with a baffle for resisting the second compression spring. The upper end of the locking tongue is provided with an inclined surface notch that slopes from the rear side to the front lower side. The upper mounting plate covers the inverted "ji" - shaped bottom housing. The upper mounting plate is provided with a notch on each of the left and right sides corresponding to the locking tongue. A first compression spring is vertically arranged at the position between the notches of the upper mounting plate. The pressing member is an inverted U - shaped plate. The two side walls of the inverted U - shaped plate are inserted into the notches. The two side walls of the inverted U - shaped plate are provided with opposite shaft holes, and a round shaft rod is connected to the shaft holes. The round shaft rod presses against the inclined surface notch by pressing the inverted U - shaped plate, driving the locking tongue to move backward. The first compression spring is used for the pressing member to reset and bounce up, and the second compression spring is used for the locking tongue to reset and move forward.
7. The mouse device with an embedded storage cavity on the control panel according to claim 6, characterized in that, Both ends of the round shaft rod extend outside the shaft holes of the inverted U - shaped plate. The two side walls of the groove of the inverted "ji" - shaped bottom housing are provided with opposite and vertically downward guide grooves. Both ends of the round shaft rod enter the guide grooves. When pressing the inverted U - shaped plate, the round shaft rod moves downward along the guide grooves.
8. The mouse device with an embedded storage cavity on the control panel according to claim 6, characterized in that, The bottom surface of the cover plate corresponding to the mounting hole position is provided with a hole position convex edge, and the hole position convex edge is provided with an internal thread blind hole. The inverted "ji" - shaped bottom housing and the upper mounting plate are provided with screw holes and are connected to the internal thread blind hole of the hole position convex edge through screws. The upper end of the inverted U - shaped plate passes through the mounting hole position, and a button cap is sleeved on the upper end of the inverted U - shaped plate.
9. The mouse device with an embedded storage cavity on the control panel according to claim 1, characterized in that, The through - wire through - hole is provided with a航插接头 (the specific Chinese term needs to be replaced with the accurate English name, such as a航插接头 (if it's a specific aviation plug connector)). The inner side of the航插接头 is connected to the mouse through a data connection wire, and the data connection wire is provided with a scroll spring wire winder, and the scroll spring wire winder is fixedly arranged inside the storage cavity body.