CN210666714U - Novel wireless mouse - Google Patents

Novel wireless mouse Download PDF

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Publication number
CN210666714U
CN210666714U CN201922249073.5U CN201922249073U CN210666714U CN 210666714 U CN210666714 U CN 210666714U CN 201922249073 U CN201922249073 U CN 201922249073U CN 210666714 U CN210666714 U CN 210666714U
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CN
China
Prior art keywords
arc
groove
battery cover
battery
shaped
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Active
Application number
CN201922249073.5U
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Chinese (zh)
Inventor
朱怀照
蒋艳青
李斌斌
刘凯
赵栋
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Dongguan Newmen Electronic Technology Co ltd
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Dongguan Newmen Electronic Technology Co ltd
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Priority to CN201922249073.5U priority Critical patent/CN210666714U/en
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Abstract

The utility model relates to a novel wireless mouse, which comprises a mouse body, wherein the lower end surface of the mouse body is provided with a battery jar, a notch of the battery jar is provided with a matched battery cover, one side of the battery cover, which is close to the bottom of the battery jar, is provided with a first slide block, the position of the mouse body, which corresponds to the first slide groove, is provided with a first arc-shaped slide groove, and the first slide block is slidably arranged on the first arc-shaped slide groove; be equipped with in the first arc spout and be used for carrying out spacing main setting element to the battery cover, main setting element includes: integrated into one piece is close to in first arc boss and the integrated into one piece of first arc spout lateral wall in first slider the second arc boss of first arc boss one side, one side that first arc boss deviates from first arc spout is equipped with the groove of keeping away that supplies first arc boss to take place deformation. The utility model discloses have the effect that reduces the equipment step.

Description

Novel wireless mouse
Technical Field
The utility model belongs to the technical field of electronic equipment's technique and specifically relates to a novel wireless mouse is related to.
Background
The wireless mouse is designed at present, and is different from a wired mouse, the wireless mouse is powered by a battery placed in a battery jar, and when the electric quantity of the battery is consumed, the battery cover needs to be taken out firstly, and then the battery needs to be replaced.
The wireless mouse comprises a mouse body, wherein a battery jar for placing a battery is arranged on the lower end face of the mouse body, a battery cover matched with the notch is arranged at the notch of the battery jar, an arc-shaped boss is arranged on one side of the battery cover close to the bottom of the battery jar, a mounting groove is arranged at the position of the mouse body corresponding to the arc-shaped boss, a resisting elastic sheet is arranged in the mounting groove, the resisting elastic sheet is made of metal, and the arc-shaped boss is slidably mounted in the mounting groove; a sliding block is arranged on one side, provided with an arc-shaped boss, of the battery cover, an arc-shaped sliding chute which is coaxially arranged with the battery cover is arranged in the mouse specimen body at a position corresponding to the sliding block, a clamping block is arranged at one end, far away from the battery cover, of the sliding block, and a butting block is arranged on one side of the edge of a notch of the arc-shaped sliding chute; after the arc-shaped boss and the sliding block are clamped into the corresponding mounting groove and the arc-shaped sliding groove respectively, the battery cover is rotated, the arc-shaped boss abuts against the abutting elastic piece, and the clamping block abuts against one side of the groove bottom, far away from the arc-shaped sliding groove, of the abutting block.
The above prior art solutions have the following drawbacks: the clamping block of the battery cover is stably clamped in the arc-shaped sliding groove by mutually abutting the abutting elastic sheet and the arc-shaped boss, so that a force towards the outside of the battery groove is applied to the battery cover, and the clamping block abuts against one side, far away from the arc-shaped sliding groove, of the abutting block; however, the elastic holding sheet needs to be assembled after the mouse body is manufactured, so that the assembling steps of the mouse need to be increased.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art exists, the utility model provides a novel wireless mouse, it has the effect that reduces the equipment step.
The above utility model discloses an above-mentioned utility model purpose can realize through following technical scheme:
a novel wireless mouse comprises a mouse body, wherein a battery groove is formed in the lower end face of the mouse body, a battery cover matched with the battery groove is arranged at the notch of the battery groove, a first sliding block is arranged on one side, close to the bottom of the battery groove, of the battery cover, a first arc-shaped sliding groove is formed in the position, corresponding to the first sliding groove, of the mouse body, and the first sliding block is installed in the first arc-shaped sliding groove in a sliding mode; be equipped with in the first arc spout and be used for carrying out spacing main setting element to the battery cover, main setting element includes: the first arc-shaped boss is integrally formed on the side wall of the first arc-shaped sliding groove, the second arc-shaped boss is integrally formed on one side, close to the first arc-shaped boss, of the first sliding block, and a position avoiding groove for the first arc-shaped boss to deform is formed in one side, away from the first arc-shaped sliding groove, of the first arc-shaped boss; when the battery cover is rotated until the first arc-shaped boss is abutted against the second arc-shaped boss, the battery cover is clamped at the notch of the battery jar; when the battery cover is rotated until the first arc-shaped boss leaves the second arc-shaped boss, the battery cover can be taken away from the notch of the battery jar; one side of the battery cover close to the battery jar is provided with a plurality of second sliding blocks at intervals along the circumferential direction, a second arc-shaped sliding groove is formed in the position, corresponding to the second sliding blocks, of the mouse body, the second sliding blocks are installed in the second arc-shaped sliding groove in a sliding mode, and an auxiliary positioning piece used for assisting positioning of the battery cover is arranged in the second arc-shaped sliding groove.
By adopting the technical scheme, the first arc-shaped boss has elasticity by arranging the position avoiding groove, and the battery cover is rotated after the first sliding block with the second arc-shaped boss is inserted into the first arc-shaped sliding groove, so that the first arc-shaped boss and the second arc-shaped boss are mutually abutted, and the first sliding block is stably abutted to the corresponding position in the first arc-shaped sliding groove; the battery cover is more stably installed by arranging the auxiliary positioning piece; because first arc boss and second arc boss all are integrated into one piece and set up respectively at first arc spout and first slider, consequently need not to carry out the equipment to other parts after with mouse body and battery cover shaping, reduced the equipment step.
The utility model discloses further set up to: the auxiliary positioning piece comprises: the clamping block is arranged on one side, away from the battery cover, of the second sliding block, and the abutting block is arranged on one side of the edge of the notch of the second arc-shaped sliding groove; the second arc-shaped sliding groove is provided with a placing groove for the second sliding block to be clamped in; when the first arc-shaped boss is abutted against the second arc-shaped boss, the fixture block is abutted against one side of the abutting block close to the bottom of the second arc-shaped sliding groove; when the first arc-shaped boss leaves the second arc-shaped boss, the clamping block is positioned at the position of the groove.
By adopting the technical scheme, when the first sliding block is clamped into the first arc-shaped sliding groove, the second sliding block is clamped into the placing groove; when the battery cover is rotated to abut against the first arc-shaped boss and the second arc-shaped boss, the second sliding block abuts against the abutting block, so that the battery cover is prevented from sliding out of the battery groove, and the mounting stability of the battery cover is improved.
The utility model discloses further set up to: the edge of battery cover is equipped with the butt ring along circumference, the thickness of butt ring is less than the thickness of battery cover, the butt ring is close to the lateral wall butt of notch with the battery jar.
By adopting the technical scheme, the abutting ring is arranged, and the thickness of the abutting ring is smaller than that of the battery cover, so that the contact area between the side wall of the battery cover and the side wall of the battery groove is reduced, and the friction between the side wall of the battery cover and the side wall of the battery groove is reduced; when the battery cover is rotated, the second sliding block slides into the groove, and then the battery cover is taken out more easily.
The utility model discloses further set up to: the battery cover is provided with a convex block at the position corresponding to the battery.
Through adopting above-mentioned technical scheme, make when the notch department with battery cover lock at the battery jar through being provided with the lug, the lug can be installed the battery in the battery jar steadily.
The utility model discloses further set up to: and a buckle groove is formed in one side, away from the battery groove, of the battery cover.
Through adopting above-mentioned technical scheme, be provided with the purpose of catching groove and increase the impetus for it is more smooth and easy and convenient to rotate the battery cover.
The utility model discloses further set up to: the battery cover is characterized in that an installation block is arranged on one side, away from the battery tank, of the battery cover along the edge, a first fixing groove is formed in one side, away from the battery cover, of the installation block, the first fixing groove is consistent in extending direction of the installation block, a first anti-skid pad is attached to the inside of the first fixing groove, and the first fixing groove extends out of one side, away from the bottom of the first fixing groove, of the first anti-skid pad.
By adopting the technical scheme, the first anti-slip pad is arranged to improve the friction between the mouse and the desktop, so that the phenomenon that the mouse cannot slide when a hand leaves the mouse is avoided; the installation block is arranged on the surface of the battery cover, and the first anti-slip mat is arranged in the first fixing groove of the installation block, so that the first anti-slip mat can be stably attached to the battery cover, and the overall strength of the battery cover can be ensured on the premise that the battery cover is not prone to falling off.
The utility model discloses further set up to: the outer arc face of first arc boss is equipped with the joint groove, the lateral wall butt in second arc boss and joint groove.
Through adopting above-mentioned technical scheme, be provided with the joint groove and make and can avoid the second arc boss after with first arc boss butt, the battery cover can take place pivoted phenomenon easily.
The utility model discloses further set up to: the maximum distance between one side of the first arc-shaped boss close to the first arc-shaped sliding groove and one side of the first arc-shaped boss close to the avoiding groove is 1.5mm-2 mm.
Through adopting above-mentioned technical scheme for first arc boss can guarantee to have better elasticity, and can guarantee the difficult cracked condition that takes place of first arc boss.
To sum up, the utility model discloses a following at least one useful technological effect:
1. the first arc-shaped boss has elasticity due to the arrangement of the position avoiding groove, and the battery cover is rotated after the first sliding block with the second arc-shaped boss is inserted into the first arc-shaped sliding groove, so that the first arc-shaped boss and the second arc-shaped boss are mutually abutted, and the first sliding block is stably abutted against the corresponding position in the first arc-shaped sliding groove; the battery cover is more stably installed by arranging the auxiliary positioning piece; because the first arc-shaped boss and the second arc-shaped boss are integrally formed and are respectively arranged on the first arc-shaped sliding groove and the first sliding block, the assembly of other parts is not needed after the mouse body and the battery cover are formed, and the assembly steps are reduced;
2. when the first sliding block is clamped into the first arc-shaped sliding groove, the second sliding block is clamped into the placing groove; when the battery cover is rotated until the first arc-shaped boss and the second arc-shaped boss are mutually abutted, the second sliding block is abutted with the abutting block, so that the battery cover is prevented from sliding out of the battery groove, and the mounting stability of the battery cover is improved;
3. by arranging the abutting ring, the thickness of the abutting ring is smaller than that of the battery cover, so that the contact area between the side wall of the battery cover and the side wall of the battery jar is reduced, and the friction between the side wall of the battery cover and the side wall of the battery jar is reduced; when the battery cover is rotated to enable the second sliding block to slide into the groove, the battery cover is more easily taken out;
4. make through being provided with the joint groove and can avoid the second arc boss after with first arc boss butt, the battery cover can take place pivoted phenomenon easily.
Drawings
Fig. 1 is a schematic structural view of the whole.
Fig. 2 is a partially enlarged schematic view of a portion a in fig. 1.
Fig. 3 is a schematic structural diagram of the mouse body.
Fig. 4 is a partially enlarged schematic view of a portion B in fig. 3.
Fig. 5 is a structural schematic diagram of the battery cover.
In the figure, 1, a mouse body; 11. a battery case; 12. a first arc-shaped chute; 121. an insertion section; 122. a clamping part; 123. a first arc-shaped boss; 124. a clamping groove; 13. a second arc-shaped chute; 131. putting the glass into a groove; 132. a butting block; 14. a second fixing groove; 15. a second non-slip mat; 16. a position avoiding groove; 2. a battery cover; 21. a first slider; 211. a second arc-shaped boss; 22. a second slider; 221. a clamping block; 23. a bump; 24. buckling grooves; 25. mounting blocks; 251. a first fixing groove; 252. a first non-slip mat; 26. an abutment ring.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
As shown in fig. 1 and fig. 2, for the novel wireless mouse disclosed by the present invention, comprising a mouse body 1 and a battery cover 2, a battery jar 11 is arranged on one side of the bottom of the mouse body 1, the notch of the battery jar 11 is circular, and the battery cover 2 is placed at the notch of the battery jar 11;
the battery cover 2 is provided with a mounting block 25 integrally formed along the edge of the bottom side of the battery groove 11, the mounting block 25 is provided with a first fixing groove 251 on the side away from the battery cover 2, the extending direction of the first fixing groove 251 is consistent with the extending direction of the mounting block 25, a first anti-skid pad 252 is attached to the first fixing groove 251, and the bottom side of the first anti-skid pad 252 away from the first fixing groove 251 extends out of the first fixing groove 251, so that the friction force between the mouse and the desktop can be increased;
one side that battery jar 11 was kept away from to mouse body 1's bottom is equipped with second fixed slot 14 along mouse body 1 bottom edge, and the subsides are equipped with second slipmat 15 in the second fixed slot 14, and second slipmat 15 is kept away from one side of second fixed slot 14 and is stretched out second fixed slot 14 to guarantee that mouse places the bottom of guaranteeing mouse body 1 behind the desktop and levels.
The battery cover 2 is provided with a buckle groove 24 at one side far away from the battery groove 11, and the buckle groove 24 is in a strip shape.
As shown in fig. 3 and 5, a first slider 21 is disposed at a position close to an edge of one side of the bottom of the battery cover 2 close to the battery jar 11, a first arc-shaped chute 12 is disposed at a position corresponding to the first slider 21 of the mouse body 1, one side of the first arc-shaped chute 12 is a placing portion 121, and the other side is a clamping portion 122, when the battery cover 2 is placed at a notch of the battery jar 11, the first slider 21 is clamped from the placing portion 121, the first slider 21 is slidably mounted in the first arc-shaped chute 12, a first arc-shaped boss 123 is integrally formed on a side of the clamping portion 122, a avoiding groove 16 is disposed at a side of the first arc-shaped boss 123 away from the first arc-shaped chute 12, a side wall of the bottom of the avoiding groove 16 is communicated with the first arc-shaped chute 12, so that the first arc-shaped boss 123 has elasticity, and a second arc-shaped boss 211 is integrally formed at a side; the outer cambered surface intermediate position of first arc boss 123 is equipped with joint groove 124, and second arc boss 211 and the relative both sides wall butt of joint groove 124, when the lateral wall butt of second arc boss 211 and joint groove 124, one side that first slider 21 kept away from second arc boss 211 supports tightly with one side that first arc spout 12 kept away from first arc boss 123, has accomplished the notch position of battery cover 2 location at battery jar 11 promptly.
The maximum distance between one side of the first arc-shaped boss 123 close to the first arc-shaped sliding groove 12 and one side of the first arc-shaped boss 123 close to the avoiding groove 16 is 1.5mm-2mm, and is 1.5mm in this embodiment, so that the elasticity of the first arc-shaped boss 123 can be ensured while the strength of the first arc-shaped boss 123 is ensured.
As shown in fig. 4 and 5, a second sliding block 22 is fixed at an interval along an edge on one side of the battery cover 2 close to the bottom of the battery slot 11, a second arc-shaped sliding slot 13 is arranged at a position of the mouse body 1 corresponding to the second sliding block 22, the second arc-shaped sliding slot 13 is coaxial with the first arc-shaped sliding slot 12, one side of the second arc-shaped sliding slot 13 is a slot 131, a butt block 132 is arranged at a notch on the other side, and a clamping block 221 is arranged on one side of the second sliding block 22 away from the battery cover 2; when the first slider 21 is snapped into the input portion 121, the second slider 22 is positioned in the input slot 131; when the outer side wall of the second arc-shaped boss 211 abuts against the two opposite side walls of the clamping groove 124, the fixture block 221 abuts against one side of the abutting block 132, which is far away from the groove bottom of the second arc-shaped sliding groove 13;
the battery cover 2 is provided with an abutting ring 26 extending along the circumferential direction of the outer side wall, the abutting ring 26 is positioned on one side, which is close to the battery cover 2 and far away from the bottom of the battery jar 11, the abutting ring 26 abuts against the edge of the notch of the battery jar 11, and the thickness of the abutting ring 26 is smaller than that of the battery cover 2, so that the friction force between the battery cover 2 and the side wall of the battery jar 11 is reduced.
The battery cover 2 is provided with a bump 23 at a position close to one side of the bottom of the battery slot 11 and corresponding to the placed battery, so that the battery can be more stably installed.
The implementation principle of the embodiment is as follows: after the battery is inserted into the battery slot 11, the first slider 21 of the battery cover 2 is clamped into the placing part 121, the second slider 22 is clamped into the placing slot 131, the battery cover 2 is rotated along the slot opening of the battery slot 11 through the fastening slot 24, so that the first arc-shaped boss 123 arranged on the first slider 21 is clamped into the clamping slot, and meanwhile, the clamping block 221 is abutted against one side of the abutting block 132, which is far away from the bottom of the second arc-shaped sliding slot 13, so that the positioning of the battery cover 2 is completed; when the battery cover 2 needs to be taken out, the battery cover 2 is rotated in the opposite direction, the first slider 21 is returned to the putting-in part 121, the second slider 22 is returned to the putting-in groove 131, and then the battery cover 2 is vertically downward, so that the battery cover 2 can be dropped out, thereby completing the disassembly of the battery cover 2.
The embodiment of this specific implementation mode is the preferred embodiment of the present invention, not limit according to this the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.

Claims (8)

1. The utility model provides a novel wireless mouse, includes mouse body (1), the lower terminal surface of mouse body (1) is equipped with battery jar (11), the notch department of battery jar (11) is equipped with battery cover (2) of looks adaptation, its characterized in that: a first sliding block (21) is arranged on one side, close to the bottom of the battery groove (11), of the battery cover (2), a first arc-shaped sliding groove (12) is arranged at a position, corresponding to the first sliding groove, of the mouse body (1), and the first sliding block (21) is installed on the first arc-shaped sliding groove (12) in a sliding mode; be equipped with in first arc spout (12) and be used for carrying out spacing main setting element to battery cover (2), main setting element includes: the slide block structure comprises a first arc-shaped boss (123) integrally formed on the side wall of a first arc-shaped sliding groove (12) and a second arc-shaped boss (211) integrally formed on one side, close to the first arc-shaped boss (123), of a first slide block (21), wherein a position avoiding groove (16) for the first arc-shaped boss (123) to deform is formed in one side, away from the first arc-shaped sliding groove (12), of the first arc-shaped boss (123); when the battery cover (2) is rotated until the first arc-shaped boss (123) is abutted against the second arc-shaped boss (211), the battery cover (2) is clamped at the notch of the battery groove (11); when the battery cover (2) is rotated until the first arc-shaped boss (123) leaves the second arc-shaped boss (211), the battery cover (2) can be taken away from the notch of the battery groove (11); one side of the battery cover (2) close to the battery groove (11) is provided with a plurality of second sliding blocks (22) at intervals along the circumferential direction, the position of the mouse body (1) corresponding to the second sliding blocks (22) is provided with a second arc-shaped sliding groove (13), the second sliding blocks (22) are slidably installed on the second arc-shaped sliding groove (13), and an auxiliary positioning part for assisting the battery cover (2) in positioning is arranged in the second arc-shaped sliding groove (13).
2. The novel wireless mouse of claim 1, wherein: the auxiliary positioning piece comprises: a clamping block (221) arranged on one side of the second sliding block (22) far away from the battery cover (2), and an abutting block (132) arranged on one side of the notch edge of the second arc-shaped sliding chute (13); the second arc-shaped sliding groove (13) is provided with a placing groove (131) for the second sliding block (22) to be clamped in; when the first arc-shaped boss (123) is abutted against the second arc-shaped boss (211), the clamping block (221) is abutted against one side, close to the second arc-shaped sliding groove (13), of the abutting block (132); when the first arc-shaped boss (123) leaves the second arc-shaped boss (211), the fixture block (221) is located in the position of the placing groove (131).
3. The novel wireless mouse of claim 2, wherein: the edge of the battery cover (2) is provided with a butt joint ring (26) along the circumferential direction, the thickness of the butt joint ring (26) is smaller than that of the battery cover (2), and the butt joint ring (26) is abutted against the side wall, close to the notch, of the battery jar (11).
4. The novel wireless mouse of claim 1, wherein: and a convex block (23) is arranged at the position of the battery cover (2) corresponding to the battery.
5. The novel wireless mouse of claim 1, wherein: and a buckle groove (24) is arranged on one side of the battery cover (2) far away from the battery groove (11).
6. The novel wireless mouse of claim 1, wherein: the battery cover is characterized in that an installation block (25) is arranged on one side, away from the battery groove (11), of the battery cover (2) along the edge, a first fixing groove (251) is arranged on one side, away from the battery cover (2), of the installation block (25), the extending direction of the installation block (25) is consistent with that of the first fixing groove (251), a first anti-skid pad (252) is attached to the inside of the first fixing groove (251), and the first fixing groove (251) extends out of one side, away from the bottom of the first fixing groove (251), of the first anti-skid pad (252).
7. The novel wireless mouse of claim 1, wherein: the extrados of first arc boss (123) is equipped with joint groove (124), the lateral wall butt of second arc boss (211) and joint groove (124).
8. The novel wireless mouse of claim 7, wherein: the maximum distance between one side of the first arc-shaped boss (123) close to the first arc-shaped sliding groove (12) and one side of the first arc-shaped boss (123) close to the avoiding groove (16) is 1.5mm-2 mm.
CN201922249073.5U 2019-12-13 2019-12-13 Novel wireless mouse Active CN210666714U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922249073.5U CN210666714U (en) 2019-12-13 2019-12-13 Novel wireless mouse

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922249073.5U CN210666714U (en) 2019-12-13 2019-12-13 Novel wireless mouse

Publications (1)

Publication Number Publication Date
CN210666714U true CN210666714U (en) 2020-06-02

Family

ID=70812445

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922249073.5U Active CN210666714U (en) 2019-12-13 2019-12-13 Novel wireless mouse

Country Status (1)

Country Link
CN (1) CN210666714U (en)

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