CN207742665U - A kind of more handfeel of keys test devices of mouse - Google Patents

A kind of more handfeel of keys test devices of mouse Download PDF

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Publication number
CN207742665U
CN207742665U CN201721417178.1U CN201721417178U CN207742665U CN 207742665 U CN207742665 U CN 207742665U CN 201721417178 U CN201721417178 U CN 201721417178U CN 207742665 U CN207742665 U CN 207742665U
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CN
China
Prior art keywords
axis
mouse
straight line
handfeel
arc
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Expired - Fee Related
Application number
CN201721417178.1U
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Chinese (zh)
Inventor
邓勇
董忠衡
夏常胜
张良平
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Dongguan Primax Electronic & Telecommunication Products Co Ltd
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Dongguan Primax Electronic & Telecommunication Products Co Ltd
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Priority to CN201721417178.1U priority Critical patent/CN207742665U/en
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Publication of CN207742665U publication Critical patent/CN207742665U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a kind of more handfeel of keys test devices of mouse comprising:Multi-direction driving mobile mechanism,It is installed in multi-direction driving mobile mechanism and is used to load the testing cassete of mouse to be tested and be installed on multi-direction driving mobile mechanism's side and the mechanism for testing for carrying out handfeel of keys test to the mouse to be tested loaded in the testing cassete,The multi-direction driving mobile mechanism includes X-axis straight line driving mechanism,It is installed on X-axis straight line driving mechanism and the Y-axis straight line driving mechanism to be moved in X-direction is driven by the X-axis straight line driving mechanism,It is installed on Y-axis straight line driving mechanism and the first rotary drive mechanism to be moved in Y direction is driven by the Y-axis straight line driving mechanism,It installs on the first rotary drive mechanism and the second rotary drive mechanism to be rotated in Y direction is driven by first rotary drive mechanism,The testing cassete is installed on the second rotary drive mechanism and is driven by the second rotary drive mechanism to be rotated with X-direction.

Description

A kind of more handfeel of keys test devices of mouse
Technical field:
The utility model is related to the more handfeel of keys technical field of measurement and test of mouse, refer in particular to a kind of more handfeel of keys test dresses of mouse It sets.
Background technology:
Mouse, the indicator of a kind of input equipment and calculator display organization of computer coordinate setting in length and breadth, because of shape It gains the name like mouse.Its standard address should be " Genius mouse ", and the use of English name " Mouse ", mouse is to make computer It is quick that the operation is more convenient, to replace that cumbersome instruction of keyboard.
After the completion of mouse production, it is necessary to be detected to every mouse, to ensure product quality.Mouse is pressed now The detection mode of key feel test is all to be detected item by item by hand, and speed is slow, and labor intensity is big, and manual inspection quality standard It is difficult to unification, and testing efficiency is low, and larger puzzlement is caused to manufacturer.
In view of this, the present inventor proposes following technical scheme.
Utility model content:
The purpose of the utility model is to overcome the deficiencies in the prior art, provide a kind of more handfeel of keys test dresses of mouse It sets.
In order to solve the above-mentioned technical problem, the utility model uses following technical proposals:The more handfeel of keys of the mouse are surveyed Trial assembly set including:Multi-direction driving mobile mechanism is installed in multi-direction driving mobile mechanism and for loading mouse to be tested Testing cassete and be installed on multi-direction driving mobile mechanism's side and for the mouse to be tested that is loaded in the testing cassete into The mechanism for testing of row handfeel of keys test, the multi-direction driving mobile mechanism include X-axis straight line driving mechanism, are installed on X On axis straight line driving mechanism and by the X-axis straight line driving mechanism drive with moved in X-direction Y-axis straight line driving mechanism, peace Loaded on the first rotary driving machine on Y-axis straight line driving mechanism and by Y-axis straight line driving mechanism driving to be moved in Y direction The second rotation to be rotated in Y direction is driven on structure, the first rotary drive mechanism of installation and by first rotary drive mechanism Driving mechanism, the testing cassete are installed on the second rotary drive mechanism and are driven with X-direction by the second rotary drive mechanism Rotation.
Furthermore, in above-mentioned technical proposal, first rotary drive mechanism includes to be fixed on the Y-axis straight line Arc-shaped slide rail seat in driving mechanism and the arcuate guide seat being installed on arc-shaped slide rail seat and it is installed on the arc-shaped slide rail Seat outside and the hollow rotating motor for driving arcuate guide seat opposing arcuate slide track seat rotation, wherein the arc-shaped slide rail Arc-shaped concave is formed on seat, and forms arc female rail on the arc-shaped concave;Camber is arranged in arcuate guide seat lower end Convex surface, and it is provided with sliding slot on the arc convex, which is sheathed in arc female rail, and arc convex and arc-shaped concave pair It connects.
Furthermore, in above-mentioned technical proposal, the first rotation angle detector is provided on the outside of the arc-shaped slide rail seat; It is provided with the first sensing chip being adapted to first rotation angle detector on the outside of the arcuate guide seat.
Furthermore, in above-mentioned technical proposal, second rotary drive mechanism includes being fixed on the arcuate guide First pedestal of seat upper end, is installed on the first pedestal and for driving rotary shaft to revolve the rotary shaft being arranged on the first pedestal The electric rotating machine turned and the speed reducer being adapted to electric rotating machine and the rotary oscillation seat being installed in rotary shaft, the testing cassete It is fixed on the rotary oscillation seat.
Furthermore, in above-mentioned technical proposal, second rotary drive mechanism further includes being useful for detecting the rotation Second rotation angle of shaft rotation angle detects module.
Furthermore, in above-mentioned technical proposal, the second rotation angle detection module includes being installed on the first pedestal On the second rotation angle detector, the runner that is installed in the rotary shaft and be installed on runner and with the second rotation angle Spend the second sensing chip of detector adaptation.
Furthermore, in above-mentioned technical proposal, the testing cassete includes back box and is articulated in back box and can phase To the side lid of back box opening and closing, which has the cavity for housing mouse to be tested, and the back box periphery is provided with and is used for The window for appearing mouse side to be tested function key and being connected to cavity.
Furthermore, in above-mentioned technical proposal, the X-axis straight line driving mechanism include X-axis linear drives module with And it is installed on X-axis linear drives module and the X-axis Mobile base to be moved in X-direction is driven by the X-axis linear drives module; The Y-axis straight line driving mechanism is installed on X-axis Mobile base.
Furthermore, in above-mentioned technical proposal, the Y-axis straight line driving mechanism includes to be installed on the X-axis movement Y-axis linear drives module on seat and be installed on Y-axis linear drives module and by the Y-axis linear drives module drive with The Y-axis Mobile base of Y direction movement;First rotary drive mechanism is installed on Y-axis Mobile base.
Furthermore, in above-mentioned technical proposal, the mechanism for testing includes being installed on the multi-direction driving moving machine It the stand of structure side, the Z axis linear drives module being installed on stand and is installed on Z axis linear drives module and by the Z Axis linear drives module driving with the Z axis Mobile base that Z-direction moves, the pressure sensor being installed on Z axis Mobile base and It is installed on the test compression bar of pressure sensor lower end.
After adopting the above technical scheme, the utility model has the advantages that compared with prior art:This practicality It is novel testing cassete to be driven to move linearly, in X-direction rotation, Y in X-axis and Y direction by multi-direction driving mobile mechanism Axis direction rotates, so that the mouse to be tested loaded in controllable testing box needs face to be tested to be placed in below mechanism for testing, with This ensure the more buttons of mouse to be tested test surfaces can with mechanism for testing can vertical checkout, to realize that more handfeel of keys are tested, Therefore, the utility model tests the more handfeel of keys of mouse using automation, only needs one-time positioning, and test speed Soon, detection quality standard is unified, and testing efficiency is high, and the utility model is enabled to have the extremely strong market competitiveness.
Description of the drawings:
Fig. 1 is the stereogram of the utility model;
Fig. 2 is the stereogram of testing cassete in the utility model;
Fig. 3 is the installation diagram of the first, second rotary drive mechanism in the utility model;
Fig. 4 is the stereogram of the first rotary drive mechanism in the utility model;
Fig. 5 is the stereogram exploded view of the first rotary drive mechanism in the utility model.
Specific implementation mode:
The utility model is further illustrated with reference to specific embodiments and the drawings.
See shown in Fig. 1-5, be a kind of more handfeel of keys test devices of mouse comprising:Multi-direction driving mobile mechanism 100, it is installed in multi-direction driving mobile mechanism 100 and is used to load the testing cassete 5 of mouse to be tested and be installed on multi-party Survey to driving 100 side of mobile mechanism and for carrying out handfeel of keys test to the mouse to be tested loaded in the testing cassete 5 Test-run a machine structure 6.
The multi-direction driving mobile mechanism 100 includes X-axis straight line driving mechanism 1, is installed on X-axis straight line driving mechanism On 1 and by the X-axis straight line driving mechanism 1 drive with moved in X-direction Y-axis straight line driving mechanism 2, be installed on Y-axis straight line In driving mechanism 2 and by the Y-axis straight line driving mechanism 2 drive with moved in Y direction the first rotary drive mechanism 3, installation The second rotary driving machine to be rotated in Y direction is driven on first rotary drive mechanism 3 and by first rotary drive mechanism 3 Structure 4, the testing cassete 5 is installed on the second rotary drive mechanism 4 and is driven by the second rotary drive mechanism 4 to be revolved with X-direction Turn, to cause multi-direction driving mobile mechanism 100 that testing cassete 5 can be driven to be revolved in X-axis and Y direction linear movement, in X-direction Turn, Y direction rotation, so that the mouse to be tested loaded in controllable testing box 5 needs face to be tested to be placed under mechanism for testing 6 Side, with this ensure the more buttons of mouse to be tested test surfaces can with mechanism for testing 6 can vertical checkout, to realize more handfeel of keys Test, therefore, the utility model test the more handfeel of keys of mouse using automation, only need one-time positioning, and survey It is fast to try speed, detection quality standard is unified, and testing efficiency is high, and the utility model is enabled to have the extremely strong market competitiveness.
The X-axis straight line driving mechanism 1 includes X-axis linear drives module 11 and is installed on X-axis linear drives module The X-axis Mobile base 12 to be moved in X-direction is driven on 11 and by the X-axis linear drives module 11;The Y-axis straight line driving Structure 2 is installed on X-axis Mobile base 12.The Y-axis straight line driving mechanism 2 includes the Y-axis being installed on the X-axis Mobile base 12 Linear drives module 21 and be installed on Y-axis linear drives module 21 and by the Y-axis linear drives module 21 drive in Y-axis The Y-axis Mobile base 22 of direction movement;First rotary drive mechanism 3 is installed on Y-axis Mobile base 22.
First rotary drive mechanism 3 includes the arc-shaped slide rail seat 31 being fixed on the Y-axis straight line driving mechanism 2 And the arcuate guide seat 32 that is installed on arc-shaped slide rail seat 31 and it is installed on 31 outside of arc-shaped slide rail seat and for driving The hollow rotating motor 33 of the 32 opposing arcuate slide track seat 31 of arcuate guide seat rotation, wherein be molded on the arc-shaped slide rail seat 31 There is arc-shaped concave 311, and arc female rail 312 is formed on the arc-shaped concave 311;32 lower end of arcuate guide seat is arranged to arc Shape convex surface, and sliding slot 321 is provided on the arc convex, which is sheathed in arc female rail 312, and arc convex with Arc-shaped concave 311 docks, and the first rotary drive mechanism 3 driving rotation angle range of this structure is relatively small, ensures to revolve with this It changes a job the stability and smoothness of work.
31 outside of the arc-shaped slide rail seat is provided with the first rotation angle detector 34;32 outside of the arcuate guide seat is set It is equipped with the first sensing chip being adapted to first rotation angle detector 34, with this for detecting 32 opposing arcuate of arcuate guide seat The angle that slide track seat 31 rotates ensures the stability of control.
Second rotary drive mechanism 4 includes the first pedestal 41 for being fixed on 32 upper end of arcuate guide seat, wears In on the first pedestal 41 rotary shaft 42, be installed on the first pedestal 41 and for drive rotary shaft 42 rotate electric rotating machine 43 With the speed reducer 44 being adapted to electric rotating machine 43 and the rotary oscillation seat 45 being installed in rotary shaft 42, the testing cassete 5 is consolidated Due on the rotary oscillation seat 45, the second rotary drive mechanism driving rotation angle range of this structure is larger, to meet test It is required that.
Second rotary drive mechanism 4 further includes the second rotation angle for being useful for detecting 42 rotation angle of the rotary shaft Degree detection module 46.Specifically, the second rotation angle detection module 46 includes second be installed on the first pedestal 41 Rotation angle detector 461, the runner 462 being installed in the rotary shaft 42 and be installed on runner 462 and with second rotation The second sensing chip 463 that gyration detector 461 is adapted to.
The testing cassete 5 includes back box 51 and is articulated with the side that can be opened and closed in back box 51 and with respect to back box 51 Lid 52, which has the cavity 511 for housing mouse to be tested, and 51 periphery of back box is provided with for appearing mouse to be tested Mark side function key and the window 512 being connected to cavity, to cause the utility model that can be carried out to all buttons of mouse to be tested Feel is tested.
The mechanism for testing 6 includes the stand 61 for being installed on multi-direction driving mobile mechanism 100 side, it is vertical to be installed on It Z axis linear drives module 62 on seat 61 and is installed on Z axis linear drives module 62 and by the Z axis linear drives module 62 Driving is in the Z axis Mobile base 63 that Z-direction moves, the pressure sensor 64 being installed on Z axis Mobile base 63 and to be installed on pressure The test compression bar 65 of 64 lower end of force snesor, the pressure sensor 64 use precision for the pressure sensor of 0.005N, protect button Test process pressure is accurate.
The utility model can drive testing cassete 5 to be moved in X-axis and Y direction straight line by multi-direction driving mobile mechanism 100 It moves, in X-direction rotation, Y direction rotation, so that the mouse to be tested loaded in controllable testing box 5 needs face to be tested Be placed in the lower section of mechanism for testing 6, with this ensure the more buttons of mouse to be tested test surfaces can with mechanism for testing 6 can vertical checkout, To realize more handfeel of keys tests, therefore, the utility model tests the more handfeel of keys of mouse using automation, only needs one Secondary positioning, and test speed is fast, detection quality standard is unified, and testing efficiency is high, enables the utility model have extremely strong The market competitiveness.
Certainly, it is not to implement to limit the utility model the foregoing is merely specific embodiment of the utility model Range, it is all according to the equivalent change or modification that structure, feature and principle is done described in present utility model application the scope of the claims, it should all wrap It includes in present utility model application the scope of the claims.

Claims (10)

1. a kind of more handfeel of keys test devices of mouse comprising:Multi-direction driving mobile mechanism (100), be installed on it is multi-direction In driving mobile mechanism (100) and it is used to load the testing cassete (5) of mouse to be tested and is installed on multi-direction driving moving machine Structure (100) side and the mechanism for testing that handfeel of keys test is carried out for the mouse to be tested to the middle loading of the testing cassete (5) (6), it is characterised in that:The multi-direction driving mobile mechanism (100) includes X-axis straight line driving mechanism (1), is installed on X-axis The Y-axis straight line driving mechanism to be moved in X-direction is driven on straight line driving mechanism (1) and by the X-axis straight line driving mechanism (1) (2), be installed on Y-axis straight line driving mechanism (2) and driven by the Y-axis straight line driving mechanism (2) with moved in Y direction the It is driven in Y on one rotary drive mechanism (3), the first rotary drive mechanism of installation (3) and by first rotary drive mechanism (3) Axis direction rotation the second rotary drive mechanism (4), the testing cassete (5) be installed on the second rotary drive mechanism (4) and by Second rotary drive mechanism (4) driving is rotated with X-direction.
2. the more handfeel of keys test devices of a kind of mouse according to claim 1, it is characterised in that:First rotation is driven Motivation structure (3) include the arc-shaped slide rail seat (31) being fixed on the Y-axis straight line driving mechanism (2) and be installed on arc cunning It arcuate guide seat (32) on rail chair (31) and is installed on the outside of the arc-shaped slide rail seat (31) and for driving the arcuate guide The hollow rotating motor (33) that seat (32) opposing arcuate slide track seat (31) rotates, wherein formed on the arc-shaped slide rail seat (31) Arc-shaped concave (311), and form arc female rail (312) on the arc-shaped concave (311);Arcuate guide seat (32) lower end is set It is set to arc convex, and is provided with sliding slot (321) on the arc convex, which is sheathed in arc female rail (312), And arc convex is docked with arc-shaped concave (311).
3. the more handfeel of keys test devices of a kind of mouse according to claim 2, it is characterised in that:The arc-shaped slide rail seat (31) outside is provided with the first rotation angle detector (34);It is provided on the outside of the arcuate guide seat (32) and first rotation First sensing chip of angle detector (34) adaptation.
4. the more handfeel of keys test devices of a kind of mouse according to claim 2, it is characterised in that:Second rotation is driven Motivation structure (4) includes the first pedestal (41) for being fixed on arcuate guide seat (32) upper end, is arranged on the first pedestal (41) Rotary shaft (42), be installed on the first pedestal (41) and for drive rotary shaft (42) rotate electric rotating machine (43) and with rotation The speed reducer (44) of rotating motor (43) adaptation and the rotary oscillation seat (45) being installed in rotary shaft (42), the testing cassete (5) it is fixed on the rotary oscillation seat (45).
5. the more handfeel of keys test devices of a kind of mouse according to claim 4, it is characterised in that:Second rotation is driven Motivation structure (4) further includes being useful for detecting the second rotation angle detection module (46) of the rotary shaft (42) rotation angle.
6. the more handfeel of keys test devices of a kind of mouse according to claim 5, it is characterised in that:Second rotation angle Degree detection module (46) includes the second rotation angle detector (461) being installed on the first pedestal (41), is installed on the rotation Runner (462) in shaft (42) and be installed on runner (462) and be adapted to the second rotation angle detector (461) Two sensing chips (463).
7. the more handfeel of keys test devices of a kind of mouse according to claim 1, it is characterised in that:The testing cassete (5) Include back box (51) and is articulated with the side lid (52) that can be opened and closed in back box (51) and with respect to back box (51), the back box (51) there is the cavity (511) for housing mouse to be tested, and back box (51) periphery is provided with for appearing mouse side to be tested Side function key and the window (512) being connected to cavity.
8. the more handfeel of keys test devices of a kind of mouse according to claim 1, it is characterised in that:The X-axis straight line drives Motivation structure (1) includes X-axis linear drives module (11) and is installed on X-axis linear drives module (11) and straight by the X-axis Line drives module (11) to drive the X-axis Mobile base (12) to be moved in X-direction;The Y-axis straight line driving mechanism (2) is installed on On X-axis Mobile base (12).
9. the more handfeel of keys test devices of a kind of mouse according to claim 8, it is characterised in that:The Y-axis straight line drives Motivation structure (2) includes the Y-axis linear drives module (21) being installed on the X-axis Mobile base (12) and to be installed on Y-axis straight Line drives on module (21) and drives the Y-axis Mobile base (22) to be moved in Y direction by the Y-axis linear drives module (21); First rotary drive mechanism (3) is installed on Y-axis Mobile base (22).
10. according to a kind of more handfeel of keys test devices of mouse described in any one of claim 1-9, it is characterised in that:Institute Mechanism for testing (6) is stated to include the stand (61) for being installed on described multi-direction driving mobile mechanism (100) side, be installed on stand (61) it Z axis linear drives module (62) on and is installed on Z axis linear drives module (62) and by the Z axis linear drives mould Group (62) driving is in Z axis Mobile base (63) that Z-direction moves, the pressure sensor being installed on Z axis Mobile base (63) (64) and it is installed on the test compression bar (65) of pressure sensor (64) lower end.
CN201721417178.1U 2017-10-27 2017-10-27 A kind of more handfeel of keys test devices of mouse Expired - Fee Related CN207742665U (en)

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CN201721417178.1U CN207742665U (en) 2017-10-27 2017-10-27 A kind of more handfeel of keys test devices of mouse

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107748708A (en) * 2017-10-27 2018-03-02 东莞东聚电子电讯制品有限公司 A kind of more handfeel of keys test devices of mouse

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107748708A (en) * 2017-10-27 2018-03-02 东莞东聚电子电讯制品有限公司 A kind of more handfeel of keys test devices of mouse
CN107748708B (en) * 2017-10-27 2024-01-09 东莞东聚电子电讯制品有限公司 Mouse multi-key hand feeling testing device

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20180817

Termination date: 20211027