KVM mouse storage device

By designing a KVM mouse storage device, the problem of insufficient space on the KVM control platform is solved, providing convenient mouse storage and expanding the operating area, thereby improving operational stability and efficiency.

CN116048291BActive Publication Date: 2026-01-09KINAN TECH CO LTD
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Patent Information

Application Number
CN202211444195.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-18
Publication Date
2026-01-09
Estimated Expiration
2042-11-18

AI Technical Summary

Technical Problem

The KVM control platform is cramped with installation space and lacks dedicated space for storing external mice, making operation inconvenient.

Method used

Design a KVM mouse storage device, comprising a KVM unit and a storage mechanism. The storage mechanism in the receiving slot is slidable to provide storage space. There is an operating surface on the keyboard table. The supporting base plate and side baffles are slidable to expand the operating area, and stability is ensured by locking and elastic components.

Benefits of technology

It enables convenient storage and retrieval of external mice, expands the operating area, improves operational stability, and enhances the work efficiency of computer room managers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a KVM mouse storage device, belonging to the technical field of KVM equipment, which comprises a KVM body and a storage mechanism, the KVM body is provided with a containing groove on the side, the storage mechanism is arranged in the containing groove and is in sliding connection with the KVM body, the sliding direction of the storage mechanism is along the opening direction of the containing groove; the storage mechanism is provided with a containing space for containing an external mouse; an operation plane for operating the external mouse is arranged on the keyboard table surface of the KVM body. The application has the effect that the KVM control platform can store the external mouse.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of KVM devices, in particular to a KVM mouse storage device. BACKGROUND

[0002] Keyboard Video Mouse, referred to as KVM. That is, using a set of keyboard, display or mouse to realize the control of multiple devices, which plays an important role in remote dispatching monitoring. KVM technology can send dispatching information to each data in the network, providing convenience for the next level of dispatching agency, so that even if the lower level dispatching agency does not establish a dispatching data network, information sharing can be realized.

[0003] In the related art, the KVM control platform usually uses an integrated touch panel on the keyboard table surface for operation, which saves space, but the experience and control sensitivity are poorer than external mouse. Therefore, in some cases, the operator needs to use an external mouse for operation. Since various terminal devices are installed near the KVM control platform, the installation space is crowded and small, and there is usually no reserved space for storing and operating the external mouse. The operator needs to temporarily prepare an external mouse when using it, which is inconvenient in actual use. SUMMARY

[0004] In order to facilitate the KVM control platform to store the external mouse, the present application provides a KVM mouse storage device, which adopts the following technical scheme:

[0005] A KVM mouse storage device, comprising a KVM body and a storage mechanism, the KVM body is provided with a containing groove on the side surface, the storage mechanism is arranged in the containing groove and is in sliding connection with the KVM body, and the sliding direction of the storage mechanism is along the opening direction of the containing groove; the storage mechanism is provided with a containing space for containing an external mouse; and the keyboard table surface of the KVM body is provided with an operation plane for operating the external mouse.

[0006] By adopting the above technical scheme, the mouse is placed in the containing space of the storage mechanism, and when not in use, the storage mechanism is pushed into the containing groove of the KVM body to hide the mouse in the KVM body. When the external mouse is needed, the storage mechanism is pulled out of the KVM body, and the mouse can be taken out and used on the operation plane, which can significantly improve the work efficiency of the computer room manager.

[0007] Optionally, the receiving mechanism comprises a support base in sliding connection with the KVM machine body, a bearing bottom plate arranged on the support base, and a side limiting assembly; the support base is provided with two limiting baffle plates, one of which is located at one end of the support base to block the slot of the receiving slot, and the other is located at the other end of the support base; the bearing bottom plate is located between the two limiting baffle plates, and the side limiting assembly is provided with two groups, which are located on the two sides of the bearing bottom plate away from each other, and both groups of the side limiting assembly are arranged adjacent to the two limiting baffle plates; the bearing bottom plate, the two limiting baffle plates and the two groups of side limiting assemblies enclose the containing space.

[0008] Further, the bearing bottom plate is parallel to the operation plane, and the bearing bottom plate is vertically slidingly arranged on the support base, and a locking member is arranged between the bearing bottom plate and the support base, which is used to limit the movement of the bearing bottom plate when the bearing bottom plate is slidingly connected to and coplanar with the operation plane.

[0009] By adopting the above technical scheme, after the mouse is taken out of the containing space, the bearing bottom plate is slid in the direction close to the operation plane, and when the bearing bottom plate is slidingly connected to and coplanar with the operation plane, the locking member limits the movement of the bearing bottom plate, the bearing plate and the operation plane together provide an operation plane for the mouse, and the bearing plate expands the area of the operation plane, making it more convenient to operate the external mouse.

[0010] Optionally, the side limiting assembly comprises a guide mounting plate fixedly arranged on the support base, a connecting plate rotatably connected to one end of the guide mounting plate, and a side baffle fixedly connected to the other end of the connecting plate, the rotating plane of the connecting plate is vertically arranged, and two side baffles in the two groups of side limiting assemblies are located on the two sides of the containing space; the guide mounting plate is provided with a first limiting surface, and the connecting plate is provided with a second limiting surface; when the side baffle is rotated to be parallel to the operation plane, the side baffle is connected to and coplanar with the operation plane, and the first limiting surface abuts against the second limiting surface.

[0011] By adopting the above technical scheme, after the mouse is taken out of the containing space, the two side baffles in the two groups of side limiting assemblies are rotated around the rotating connection points of the connecting plate and the guide mounting plate in the direction away from each other until the side baffle is connected to and coplanar with the operation plane, the first abutting surface and the second abutting surface abut against each other, limiting the continuous rotation of the side baffle, so that the two side baffles and the operation plane together provide an operation plane for the mouse, expanding the area of the operation plane, making it more convenient to operate the external mouse.

[0012] Optionally, the surface of the bearing bottom plate close to the operation plane is provided with a first limiting gap at two ends close to the two groups of side face limiting components, and the surface of the side baffle away from the accommodating space is provided with a second limiting gap at one end close to the bearing bottom plate, and when the bearing bottom plate and the side baffle simultaneously move to the position connected with and coplanar with the operation plane, the first limiting gap and the second limiting gap are used for mutually embedding.

[0013] By adopting the above technical scheme, when the bearing bottom plate and the side baffle simultaneously move to the position connected with and coplanar with the operation plane, the mutual embedding of the first limiting gap and the second limiting gap makes the bearing bottom plate and the side baffle connected as a whole, and the bearing bottom plate and the side baffle jointly provide additional operation area for the operation plane, so that the external mouse operation is more convenient.

[0014] Optionally, the groove wall of the accommodating groove is provided with a side plate limiting groove, the limiting groove is used for accommodating the side baffle, and the side baffle is slidingly arranged in the side plate limiting groove; the first elastic member is arranged between the bearing bottom plate and the support base, and the first elastic member has elastic potential energy for driving the bearing bottom plate to move close to the operation plane; when the side baffle is located in the side plate limiting groove, one end of the side baffle away from the operation plane abuts against the bearing bottom plate.

[0015] By adopting the above technical scheme, when the receiving mechanism is located in the accommodating groove, the side baffle is located in the side plate limiting groove, and the side plate limiting groove has the following effects: on the one hand, during the sliding process of the receiving mechanism in the accommodating groove, the side baffle and the side plate limiting groove are matched with each other to guide the sliding of the receiving mechanism; on the other hand, the side plate limiting groove limits the rotation of the side baffle when the receiving mechanism is located in the accommodating groove, and the side baffle abuts against the bearing bottom plate at the same time, thereby limiting the movement of the bearing bottom plate in the direction close to the operation plane under the action of the first elastic member; when the receiving mechanism is pulled out of the limiting groove and the side baffle slides out of the side plate limiting groove, the first elastic member releases the elastic potential energy and drives the bearing bottom plate to move in the direction close to the operation plane, the bearing bottom plate drives the side baffle to rotate to the position that the bearing bottom plate and the side baffle are coplanar with the operation plane, the first abutting surface and the second abutting surface abut against each other to limit the rotation of the side baffle, and the first limiting gap and the second limiting gap are mutually embedded, so that the two side baffles simultaneously limit the continuous movement of the bearing bottom plate, and then the bearing bottom plate and the two side baffles are in a stable connection state, thereby improving the stability of the external mouse when operating on the operation plane, the bearing bottom plate and the two side baffles.

[0016] Optionally, the second elastic member is arranged between the support base and the KVM body, and the second elastic member has elastic potential energy for limiting the sliding of the support base out of the accommodating groove.

[0017] By adopting the technical scheme, when the accommodation mechanism is extracted from the accommodation groove and the bearing bottom plate and the two side plates are moved to the position coplanar with the operation plane, the elastic potential energy stored in the second elastic member abuts the bearing bottom plate and the side plates against the KVM machine body, and the stability of the external mouse when operating on the operation plane, the bearing bottom plate and the two side plates is further improved.

[0018] Optionally, the KVM machine body is provided with a positioning groove on one side of the operation plane close to the accommodation groove, and the end of the bearing bottom plate adjacent to the operation plane is provided with a positioning protrusion for being inserted into the positioning groove.

[0019] By adopting the technical scheme, when the accommodation mechanism is extracted from the accommodation groove and the bearing bottom plate and the two side plates are moved to the position coplanar with the operation plane, the positioning protrusion on the bearing bottom plate is inserted into the positioning groove, and the cooperation of the positioning protrusion and the positioning groove limits the downward movement of the bearing bottom plate due to pressure when the external mouse is used thereon, and the limited bearing bottom plate limits the rotation of the side plates, and the stability of the external mouse when operating on the operation plane, the bearing bottom plate and the two side plates is improved.

[0020] Optionally, the bottom of the accommodation groove is provided with a click lock, and the end of the supporting base close to the bottom of the accommodation groove is provided with a lock tongue matched with the click lock.

[0021] By adopting the technical scheme, when the accommodation mechanism is accommodated into the accommodation groove, the supporting base can be locked in the accommodation groove by pressing, and the accommodation mechanism can be extracted by pressing again.

[0022] In summary, the present application has at least one of the following beneficial technical effects:

[0023] 1. The external mouse is conveniently accommodated, and the mouse can be taken out for direct use on the operation plane when needed;

[0024] 2. The bearing bottom plate and the side plates together provide additional operation area for the operation plane for the external mouse to operate, and the area of the operation plane makes the operation of the external mouse more convenient;

[0025] 3. The stability of the external mouse when operating on the operation plane, the bearing bottom plate and the two side plates is improved. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 is a structural schematic view of a KVM mouse accommodation device of the present application.

[0027] Figure 2 is a structural schematic view of a KVM mouse accommodation device of the present application. is a structural schematic view of a KVM mouse accommodation device of the present application.

[0028] Figure 3 is the Figure 2 The cross-sectional structure schematic diagram of the storage mechanism at the connecting plate in the state.

[0029] Figure 4 is the A partial enlarged view of the KVM mouse storage device.

[0030] Figure 5 is the structure schematic diagram of the storage mechanism in the KVM mouse storage device when the side baffle slides out of the side plate limiting groove.

[0031] Figure 6 is the structure schematic diagram of the KVM mouse storage device showing the cooperation of the abutting block and the second elastic member.

[0032] Figure 7 is the structure schematic diagram of the storage mechanism in the KVM mouse storage device.

[0033] Figure legend: 1, KVM machine body; 11, containing groove; 12, operation plane; 13, side plate limiting groove; 14, positioning groove; 15, guide groove; 16, second elastic member; 2, storage mechanism; 21, containing space; 22, support base, 221, limiting baffle; 2211, guide notch; 222, groove; 23, bearing bottom plate; 231, guide protrusion; 232, first limiting notch; 233, positioning protrusion; 24, side limiting assembly; 241, guide mounting plate; 2411, first limiting surface; 2412, abutting block; 242, connecting plate; 2421, second limiting surface; 243, side baffle; 2431, second limiting notch; 25, first elastic member; 26, lock tongue. DETAILED DESCRIPTION

[0034] The application will be further described in detail below with reference to the accompanying drawings.

[0035] The application discloses a KVM mouse storage device. Referring to Figure 1The KVM mouse storage device comprises a KVM body 1 and a storage mechanism 2. The KVM body 1 is provided with a containing groove 11 on the side surface. The storage mechanism 2 is slidably arranged in the containing groove 11 and slides along the opening direction of the containing groove 11. The storage mechanism 2 is provided with a containing space 21 for containing an external mouse. The KVM body 1 is provided with an operation plane 12 on the keyboard table surface for operating the external mouse. The operation plane 12 is located on the right side of the KVM body 1 table surface and below the keyboard area. The containing groove 11 is arranged on the front side surface of the KVM body 1. The mouse is placed in the containing space 21 of the storage mechanism 2. When not in use, the storage mechanism 2 is pushed into the containing groove 11 of the KVM body 1 to hide the mouse in the KVM body 1. When the external mouse is needed, the storage mechanism 2 is pulled out of the KVM body 1 to take out the mouse and use it on the operation plane 12, which can significantly improve the work efficiency of the computer room managers.

[0036] With reference to Figure 1 and Figure 2 The storage mechanism 2 comprises a support base 22 slidably arranged in the guide groove 11, a bearing bottom plate 23 arranged on the support base 22, and a side limiting assembly 24. The support base 22 is provided with a limiting baffle 221 at each end close to and away from the slot of the guide groove 11. One limiting baffle 221 close to the slot of the guide groove 11 is used to seal the slot of the containing groove 11. The bearing bottom plate 23 is located between the two limiting baffles 221. The side limiting assembly 24 is provided with two groups. The two groups of side limiting assemblies 24 are symmetrically arranged on the two sides of the bearing bottom plate 23 away from each other. The two groups of side limiting assemblies 24 are arranged adjacent to the two limiting baffles 221 at the same time. The bearing bottom plate 23, the two limiting baffles 221, and the two groups of side limiting assemblies 24 enclose the containing space 21.

[0037] With reference to Figure 2 and Figure 3The support base 22 is provided with two recesses 222 with circular cross-section, and a first elastic member 25 is embedded in each recess 222. The first elastic member 25 is a tower spring, and the tower spring is fixedly embedded in the recess 222 at the end with a larger diameter, and the end with a smaller diameter of the tower spring is fixedly connected with the bearing bottom plate 23. The bearing bottom plate 23 is parallel to the operation plane 12, and two guide protrusions 231 are integrally arranged on the side of the bearing bottom plate 23 close to the limiting baffle 221. The limiting baffle 221 is provided with two guide notches 2211 parallel to each other and arranged vertically on the side surface close to the bearing bottom plate 23. The two guide protrusions 231 are correspondingly inserted into the two guide notches 2211. The bearing bottom plate 23 is slidingly connected between the two limiting baffles 221 in the vertical direction. The tower spring drives the bearing bottom plate 23 to move upward. Through the cooperation of the limiting notches and the guide protrusions 231, the bearing bottom plate 23 is slidingly guided and limited from moving laterally.

[0038] With reference to Figure 3 and Figure 4 The side limiting assembly 24 comprises a guide mounting plate 241 fixedly arranged on the support base 22, a connecting plate 242 rotatably connected with the guide mounting plate 241, and a side baffle 243 fixedly connected with the other end of the connecting plate 242. The side of the guide mounting plate 241 away from the bearing bottom plate 23 is used for slidingly abutting against one side wall of the guide groove 11. The rotating plane of the connecting plate 242 is vertically arranged. The initial positions of the two side baffles 243 of the two groups of side limiting assemblies 24 are respectively located on the two sides of the accommodating space 21 and are perpendicular to the bearing bottom plate 23. The two side baffles 243 are parallel to and oppositely arranged to each other, and the two side baffles 243 simultaneously abut against the bearing plate. The guide mounting plate 241 is provided with a first limiting surface 2411, and the connecting plate 242 is provided with a second limiting surface 2421. When the side baffle 243 is rotated to a parallel state with the operation plane 12, the side baffle 243 is connected with and coplanar to the operation plane 12, the first limiting surface 2411 abuts against the second limiting surface 2421, and the rotation of the side baffle 243 is limited.

[0039] With reference to Figure 3 and Figure 4 The guide groove 11 is provided with two side plate limiting grooves 13. When the storage mechanism 2 is in a state of sliding in the guide groove 11, the two side baffles 243 are located in the side plate limiting grooves 13 and slide in the limiting grooves in the opening direction of the guide groove 11. The side plate limiting grooves 13 are arranged in the following two aspects. On the one hand, through the cooperation of the side baffle 243 and the side plate limiting groove 13, the side plate limiting groove 13 plays a role in slidingly guiding the storage mechanism 2 during the sliding process of the storage mechanism 2 in the accommodating groove 11. On the other hand, the side plate limiting groove 13 limits the rotation of the side baffle 243, and the side baffle 243 simultaneously abuts against the bearing bottom plate 23 to limit the upward movement of the bearing bottom plate 23.

[0040] With reference to Figure 3 And Figure 4 , the first limiting gap 232 is arranged on the upper surface of the bearing base plate 23 near the two ends of the two sets of side limiting assemblies 24, and the second limiting gap 2431 is arranged on the side surface of the side baffle 243 away from the accommodation space 21 near one end of the bearing base plate 23. When the storage mechanism 2 is pulled out of the limiting groove, and the side baffle 243 slides out of the side plate limiting groove 13, the first elastic member 25 releases the elastic potential energy, pushes the bearing base plate 23 to move towards the operating plane 12, and the bearing base plate 23 pushes the side baffle 243 to rotate. When the bearing base plate 23 and the side baffle 243 move to the position connected with the operating plane 12, the first limiting gap 232 and the second limiting gap 2431 are embedded with each other, and the upper surfaces of the bearing base plate 23 and the side baffle 243 and the bearing surface are in the same plane. Since the side baffle 243 cannot continue to rotate at this time, the side baffle 243 simultaneously plays a role in limiting the bearing base plate 23 from continuing to move upward. Through the mutual embedding of the first limiting gap 232 and the second limiting gap 2431, the bearing base plate 23 and the side baffle 243 are connected as a whole, and the bearing base plate 23 and the side baffle 243 together provide the operating plane 12 with additional operating area for external mouse operation, making external mouse operation more convenient

[0041] With reference to Figure 4 And Figure 5 , the KVM body 1 is provided with a positioning groove 14 on the side of the operating plane 12 close to the accommodation groove 11, and the bearing base plate 23 is provided with a positioning protrusion 233 at one end adjacent to the operating plane 12. When the storage mechanism 2 is pulled out of the accommodation groove 11 and the bearing base plate 23 and the two side baffles 243 move to the position coplanar with the operating plane 12, the positioning protrusion 233 on the bearing base plate 23 is inserted into the positioning groove 14 correspondingly. Through the cooperation of the positioning protrusion 233 and the positioning groove 14, the downward movement of the bearing base plate 23 due to pressure when using an external mouse thereon is limited. The limited bearing base plate 23 simultaneously limits the rotation of the side baffle 243, improving the stability of the external mouse when operating on the operating plane 12, the bearing base plate 23 and the two side baffles 243. In summary, the cooperation structure of the first limiting gap 232 and the second limiting gap 2431 and the mutual cooperation structure of the positioning groove 14 and the positioning protrusion 233 together constitute the locking member that limits the upward and downward movement of the bearing base plate 23.

[0042] With reference to Figure 5 And Figure 6The side wall of the accommodating groove 11 that is in sliding abutment with the two guide mounting plates 241 is provided with a guide groove 15, the length direction of the guide groove 15 is parallel to the sliding direction of the accommodating mechanism 2, one end of the guide mounting plate 241 close to the guide groove 15 is integrally provided with an abutment block 2412, the abutment block 2412 is slidingly inserted into the guide groove 15, the guide groove 15 is fixedly provided with a second elastic element 16 on the side wall close to the slot of the guide groove 11, the second elastic element 16 is a spring, when the abutment block 2412 slides to the position in abutment with the second elastic element 16, the side baffle 243 has not yet but will soon be pulled out from the side plate limiting groove 13, the second elastic element 16 is compressed and stores elastic potential energy, plays a role of prompting the operator that the bearing bottom plate 23 will soon be popped out according to the resistance when pulling, and the mouse in the accommodating space 21 is taken out in advance, so as to avoid the mouse from being popped out and falling as far as possible.

[0043] With reference to Figure 6 And Figure 7 The bottom of the guide groove 11 is provided with a click lock (not shown due to shielding), and the limiting baffle 221 of the support base 22 close to one end of the bottom of the guide groove 11 is provided with a lock tongue 26 matched with the click lock. When the accommodating mechanism 2 is accommodated into the accommodating groove 11, the support base 22 can be locked in the accommodating groove 11 by pressing, and the accommodating mechanism 2 can be unlocked and pulled out by pressing again.

[0044] The implementation principle of the KVM mouse storage device in the embodiment of the application is as follows: after the accommodating mechanism 2 is unlocked by pressing, the accommodating mechanism 2 is pulled out, the side baffle 243 is pulled out from the side plate limiting groove 13, the first elastic element 25 releases the elastic potential energy, the movable bearing bottom plate 23 is popped out, the positioning protrusion 233 on the bearing bottom plate 23 is correspondingly inserted into the positioning groove 14, the bearing bottom plate 23 is tightly pressed on the KVM body 1 by the second elastic element 16 releasing the elastic potential energy, so as to avoid the sliding of the accommodating mechanism 2 as far as possible when the external mouse is used, and the stability of the external mouse when operating on the operation plane 12, the bearing bottom plate 23 and the two side baffles 243 is improved; when it is needed to be stored, the accommodating mechanism 2 is pulled out to make the positioning protrusion 233 pulled out from the positioning groove 14, the bearing bottom plate 23 is pressed down, the side baffle 243 is rotated to the initial position, the accommodating mechanism 2 is pushed to make the side baffle 243 inserted into the side plate limiting groove 13, the external mouse is placed into the accommodating space 21, the accommodating mechanism 2 is pushed into the guide groove 11, and the accommodating mechanism 2 is locked in the guide groove 11 by the click lock.

[0045] The above are the preferred embodiments of the application, which do not limit the protection scope of the application, therefore: any equivalent changes made on the structure, shape and principle of the application should be covered within the protection scope of the application.

Claims

1. A KVM mouse storage device, characterized in that: The KVM machine body (1) is provided with a containing groove (11) on the side, the containing mechanism (2) is arranged in the containing groove (11) and is in sliding connection with the KVM machine body (1), the sliding direction of the containing mechanism (2) is along the opening direction of the containing groove (11); the containing mechanism (2) is provided with a containing space (21) for containing an external mouse; the KVM machine body (1) is provided with an operation plane (12) for external mouse operation on the keyboard table top; The containing mechanism (2) comprises a supporting base (22) in sliding connection with the KVM machine body (1), a bearing bottom plate (23) arranged on the supporting base (22) and a side limiting assembly (24); the supporting base (22) is provided with two limiting baffle plates (221), one limiting baffle plate (221) is located at one end of the supporting base (22) and is used for blocking the slot opening of the containing groove (11), and the other limiting baffle plate (221) is located at the other end of the supporting base (22); the bearing bottom plate (23) is located between the two limiting baffle plates (221), the side limiting assembly (24) is provided in two groups, the two groups of side limiting assemblies (24) are located on the two sides of the bearing bottom plate (23) away from each other, and the two groups of side limiting assemblies (24) are arranged adjacent to the two limiting baffle plates (221) at the same time; the bearing bottom plate (23), the two limiting baffle plates (221) and the two groups of side limiting assemblies (24) enclose the containing space (21); The bearing bottom plate (23) is parallel to the operation plane (12), the bearing bottom plate (23) is vertically slidably arranged on the supporting base (22), and a locking piece is arranged between the bearing bottom plate (23) and the supporting base (22), the locking piece is used for limiting the movement of the bearing bottom plate (23) when the bearing bottom plate (23) is slid to be connected with and coplanar with the operation plane (12); The side limiting assembly (24) comprises a guide mounting plate (241) fixedly arranged on the supporting base (22), a connecting plate (242) rotatably connected with one end of the guide mounting plate (241) and a side baffle (243) fixedly connected with the other end of the connecting plate (242), the rotating plane of the connecting plate (242) is vertically arranged, and the two side baffles (243) in the two groups of side limiting assemblies (24) are located on the two sides of the containing space (21) respectively; the guide mounting plate (241) is provided with a first limiting surface (2411), and the connecting plate (242) is provided with a second limiting surface (2421); when the side baffle (243) is rotated to be parallel to the operation plane (12), the side baffle (243) is connected with and coplanar with the operation plane (12), and the first limiting surface (2411) and the second limiting surface (2421) abut.

2. The KVM mouse storage device of claim 1, wherein: The surface of the bearing bottom plate (23) close to the operation plane (12) is provided with a first limiting notch (232) at both ends close to the two groups of side limiting assemblies (24), and the side baffle (243) is provided with a second limiting notch (2431) at one end close to the bearing bottom plate (23) on the side surface away from the containing space (21), and the first limiting notch (232) and the second limiting notch (2431) are used for mutual embedding when the bearing bottom plate (23) and the side baffle (243) simultaneously move to the position connected and coplanar with the operation plane (12).

3. The KVM mouse storage device of claim 2, wherein: The groove wall of the containing groove (11) is provided with a side plate limiting groove (13) for accommodating the side baffle (243), and the side baffle (243) is slidingly arranged in the side plate limiting groove (13); the bearing bottom plate (23) and the support base (22) are provided with a first elastic member (25), and the first elastic member (25) has elastic potential energy for driving the bearing bottom plate (23) to move close to the operation plane (12); when the side baffle (243) is located in the side plate limiting groove (13), one end of the side baffle (243) away from the operation plane (12) abuts against the bearing bottom plate (23).

4. The KVM mouse storage device of claim 3, wherein: The support base (22) and the KVM machine body (1) are provided with a second elastic member (16), and the second elastic member (16) has elastic potential energy for limiting the support base (22) from sliding out of the containing groove (11).

5. The KVM mouse storage device of claim 4, wherein: The KVM machine body (1) is provided with a positioning groove (14) on the side of the operation plane (12) close to the containing groove (11), and the side baffle (243) is provided with a positioning protrusion (233) at one end adjacent to the operation plane (12), and the positioning protrusion (233) is used for inserting into the positioning groove (14).

6. The KVM mouse storage device of claim 5, wherein: The bottom of the containing groove (11) is provided with a click lock, and the support base (22) is provided with a lock tongue (26) matched with the click lock at one end close to the bottom of the containing groove (11).

Citation Information

Patent Citations

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