CN2828923Y - Adjustable mouse - Google Patents

Adjustable mouse Download PDF

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Publication number
CN2828923Y
CN2828923Y CNU2005201051596U CN200520105159U CN2828923Y CN 2828923 Y CN2828923 Y CN 2828923Y CN U2005201051596 U CNU2005201051596 U CN U2005201051596U CN 200520105159 U CN200520105159 U CN 200520105159U CN 2828923 Y CN2828923 Y CN 2828923Y
Authority
CN
China
Prior art keywords
housing
groove
protruding axle
connecting portion
slide
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
CNU2005201051596U
Other languages
Chinese (zh)
Inventor
许建士
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Darfon Electronics Corp
Original Assignee
Darfon Electronics Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Darfon Electronics Corp filed Critical Darfon Electronics Corp
Priority to CNU2005201051596U priority Critical patent/CN2828923Y/en
Application granted granted Critical
Publication of CN2828923Y publication Critical patent/CN2828923Y/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model provides an adjustable mouse which comprises a first housing and a second housing, wherein the first housing and the second housing are connected in a movable mode by a connecting device and can do relative motion. While the length of the adjustable mouse is changed, the height of the adjustable mouse is also changed at the same time.

Description

Adjustable mouse
Technical field
The utility model is about a kind of mouse, particularly about the mouse of variable-size.
Background technology
Mouse is with regard to the computing machine user, it is considerable input tool, conventional mouse can't corresponding each user metacarpus do to meet the design of ergonomics, because everyone hand size is inequality, cause the user when gripping mouse, can only yield to mouse with palm, and good gripping comfort level can't be provided, how to make mouse can have input function simultaneously concurrently in use and comfort level when gripping is provided, the importance that for computed consumer, has certain degree, the important topic of mouse manufacturer desire solution especially.
The utility model content
The purpose of this utility model is to provide a kind of mouse that overcomes above shortcoming.
The purpose of this utility model is achieved in that promptly provides a kind of adjustable mouse, and it comprises:
One first housing has one first groove and one second groove, and this first groove and this second groove are non-parallel to each other, and this first groove has one first end and one second end, and this second groove has one the 3rd end and one the 4th end; And
One second housing has one first protruding axle and one second protruding axle, and this first protruding axle can slide between this first end of this first groove and this second end, and this second protruding axle can slide between the 3rd end of this second groove and the 4th end;
Wherein, this first housing has a relative close position and relatively away from the position with this second housing, when this first protruding direction slip that is positioned at this second end and desires past this first end, and this second protruding axle is positioned at the 4th end and when desiring to slide toward the direction of the 3rd end, this first housing is positioned at this relative close position with this second housing; Slide toward the direction of this second end when this first protruding axle is positioned at this first end and desires, and this second protruding axle is positioned at the 3rd end and when desiring to slide toward the direction of the 4th end, this first housing and this second housing are positioned at that this is relative to the position.
Adjustable mouse of the present invention, comprise one first housing and one second housing, this first housing utilizes a coupling arrangement to be connected with this second housing, first housing with can do relative motion with this second housing, when this adjustable mouse length changed, the height of this adjustable mouse also changed simultaneously.
The embodiment of above-mentioned coupling arrangement for example is provided with one first groove and one second groove on first housing, this first groove has one first end and second end, second groove has the 3rd end and the 4th end, and second housing is provided with one first protruding axle and one second protruding axle, this first protruding axle can move between first and second end in first groove, and the second protruding axle can move between third and fourth end of this second groove, with obtain one relatively near position and relatively away from the position, and make the size of mouse can obtain adjusting.When this first housing moved with respect to this second housing, the angle between this first housing and this second housing was also along with change.
It should be noted that more include a sensor in the mouse, this sensor can be located at the bottom of this first housing or this second housing.
In addition, this first and second groove more is provided with the anti-slip section, to prevent the undesired slip of first and second protruding axle.
Another embodiment of the present utility model more includes first connecting rod, second connecting rod and elastic component, first connecting rod has first connecting portion and second connecting portion, and first connecting portion is articulated in first housing, second connecting rod has the 3rd connecting portion and the 4th connecting portion, second connecting portion of the 3rd connecting portion and first connecting rod articulates, the 4th connecting portion and second housing articulate, elastic component has the 5th connecting portion and the 6th connecting portion, the 5th connecting portion connects second connecting rod, the 6th connecting portion connects second housing, when the user when mouse is varying sized, can feel comparatively laborsaving and have paragraph sense.
The advantage of the utility model device is, can make mouse change size as required, and the comfort level when gripping is provided.
For above-mentioned and other purpose, feature and advantage of the present utility model can be become apparent, hereinafter enumerate preferred embodiment especially, and conjunction with figs., be described in detail below.
Description of drawings:
Fig. 1 is the decomposing schematic representation of mouse first embodiment of the present utility model;
Fig. 2 A~Fig. 2 B is that cardon is made in the side-looking of mouse first embodiment of the present utility model;
Fig. 3 is the decomposing schematic representation of mouse second embodiment of the present utility model;
Fig. 4 A~Fig. 4 C is that cardon is made in the side-looking of mouse first embodiment of the present utility model.
Symbol description:
10 mouses
11 first housings
111 first grooves
112 second grooves
113 first ends
114 second ends
115 the 3rd ends
116 the 4th ends
117,118 anti-slip sections
119 ends
12 second housings
121 first protruding axles
122 second protruding axles
123 bottom surfaces
126 tops
13 sensors
16 first connecting rods
161 first connecting portions
162 second connecting portions
17 second connecting rods
171 the 3rd connecting portions
172 the 4th connecting portions
173 axis parts
175 grooves
18 elastic components
181 the 5th connecting portions
182 the 6th connecting portions
124,125,174,19 holes
θ 1, θ 2 angles
L1, L2 length
H1, H2 height
X, y axle
Embodiment
See also Fig. 1, Fig. 2 A, Fig. 2 B, adjustable mouse 10 of the present utility model comprises first housing 11 and second housing 12.First housing 11 utilizes a coupling arrangement to be connected with this second housing 12, this first housing 11 can be done relative motion with this second housing 12, this coupling arrangement comprises first groove 111, second groove, 112, first protruding the axle 121 and second protruding axle 122, first housing 11 has non-first groove 111 parallel to each other and second groove 112, first groove 111 has first end 113 and second end 114, second groove 112 has the 3rd end 115 and the 4th end 116, and first groove 111 and second groove 112 are provided with in non-parallel mode.And second housing 12 has first protruding the axle 121 and second protruding axle 122, because the first protruding axle 121 can slide between first end 113 of first groove 111 and second end 114, and the second protruding axle 122 can slide between the 3rd end 115 of second groove 112 and the 4th end 116, so first housing 11 has relative near position (as the position of Fig. 2 A) and relatively away from position (as the position of Fig. 2 B) with second housing 12, when the first protruding axle 121 is positioned at second end 114 and the direction slip of past first end 113 of desire, and the second protruding axle 122 is positioned at the 4th end 116 and when desiring to slide toward the direction of the 3rd end 115, first housing 11 and second housing 12 by relative near the position toward relative to moving away from the position, when the first protruding axle 121 is positioned at first end 113 and the direction slip of past second end 114 of desire, and the second protruding axle 122 is positioned at the 3rd end 115 and when desiring to slide toward the direction of the 4th end 116, first housing 11 and second housing 12 by relative to away from the position toward moving relative to close position.
First housing 11 in the mouse 10 of the present utility model can (be horizontal direction in present embodiment in first direction with respect to second housing 12; + x axle) and second direction (be vertical direction in present embodiment; + y axle) reciprocating between, and, first direction and second direction are orthogonal, when first housing 11 moves between first direction (+x axle) and second direction (+y axle) with respect to second housing 12, first housing 11 is positioned at relative to the position with second housing 12, on the contrary, when first housing 11 moved between the reverse direction (y axle) of the reverse direction (x axle) of first direction and second party with respect to second housing 12, first housing 11 was positioned at relative to the position with second housing 12.
In addition, first housing 11 of the present utility model more comprises terminal 119, second housing 12 more comprises a bottom surface 123 and a top 126, when first housing 11 and second housing 12 are positioned at relative when the position, the end 119 of first housing 11 has one first angle θ 1 with the online of top 126 of this second housing 12 with respect to bottom surface 123, and be positioned at relative during when first housing 11 and second housing 12 away from the position, the end 119 of first housing 11 has one second angle θ 2 with the online of top 126 of this second housing 12 with respect to bottom surface 123, and wherein the second angle θ 2 is greater than this first angle θ 1.And when first housing 11 and second housing 12 are positioned at relative when the position, mouse has first length L 1 and first height H 1, when first housing 11 and second housing 12 are positioned at relative during away from the position, mouse has second length L 2 and second height H 2, and this second length L 2 is greater than this first length L 1, and this second height H 2 is greater than this first height H 1.
It should be noted; mouse 10 more includes sensor 13; sensor 13 can be located at first housing 11 or the bottom of second housing 12; moreover; first groove 112 and second groove 111 are provided with anti-slip section 117,118; this anti-slip section 117,118 is in order to clamping first protruding the axle 121 and second protruding axle 122, to avoid its undesired slip.In addition; shown in Fig. 2 B; this second groove 112 be shaped as arc; arc second groove 112 near the 4th end 116 has one first slope; arc second groove 112 near the 3rd end 115 has one second slope; wherein second slope is greater than first slope; that is to say the closer to the part of the 4th end 116 smooth more; the design of this arc second groove is to provide second protruding 122 in the support effect of vertical direction; when preventing that the second protruding axle 122 is subjected to vertical (Y-axis) application of force, by the undesired slip of the 4th end 116 past the 3rd ends 115.
See also Fig. 3, adjustable mouse 10 of the present utility model comprises first housing 11, second housing 12, first connecting rod 16, second connecting rod 17 and elastic component 18.First housing 11 has non-first groove 111 parallel to each other and second groove 112, first groove 111 has first end 113 and second end 114, second groove 112 has the 3rd end 115 and the 4th end 116, and first groove 111 and second groove 112 are provided with in non-parallel mode, second housing 12 has first protruding the axle 121 and second protruding axle 122, first connecting rod 16 roughly is ㄇ shape and has first connecting portion 161 and second connecting portion 162, first connecting portion 161 is articulated in the hole 19 of first housing 11, second connecting rod 17 has the 3rd connecting portion 171 and the 4th connecting portion 172, be provided with second connecting portion 162 of groove 175 in the 3rd connecting portion 171 with ccontaining first connecting rod 16, first and second connecting rod 16 is provided, 17 articulate each other, and the 4th connecting portion 172 is provided with hole 124 location of the axis part 173 and second housing 12, provide the second connecting rod 17 and second housing 12 to articulate, and elastic component 18 has the 5th connecting portion 181 and the 6th connecting portion 182, the 5th connecting portion 181 is inserted in hole 174 on the 4th connecting portion 172 in rotating mode, and the 6th connecting portion 182 is inserted in hole 125 on second housing 12 in rotating mode, makes tumbler 18, second housing 12 and second connecting rod 17 are connected to each other each other in a movable manner.It should be noted that in present embodiment, elastic component 18 roughly is in the shape of the letter V.In addition, by the continuous action relation of second connecting rod 17 and elastic component 18 and the sliding relation of first protruding axle 121 and first groove 111, elastic component 18 provides the elastic pulling force of a horizontal direction (+-X-axis), the strength of this horizontal resiliency pulling force and direction are to change along with the rotation of second connecting rod 17, with helping adjustable mouse 10 towards relative to moving away from the position or towards moving relative to close position.
See also Fig. 4 A~Fig. 4 C, the first protruding axle 121 can slide between first end 113 of first groove 111 and second end 114, and the second protruding axle 122 can slide between the 3rd end 115 of second groove 112 and the 4th end 116, so first housing 11 and second housing 12 have relative close position (as the position of Fig. 4 A), a critical localisation (as the position of 4B figure) and relatively away from position (as the position of Fig. 4 C).When the first protruding axle 121 is positioned at second end 114 and the direction slip of past first end 113 of desire, and the second protruding axle 122 is positioned at the 4th end 116 and when desiring to slide toward the direction of the 3rd end 115, first housing 11 is past relative to moving away from the position by beginning relative to close position with second housing 12, this moment, first connecting rod 16 was subjected to the traction of first housing 11, meeting interlock second connecting rod 17 and elastic component 18 rotate, when the 5th connecting portion 181 of the position of the axis part 173 of second connecting rod 17 and elastic component 18 and the 6th connecting portion 182 are positioned at same straight line A in fact and go up, second housing 12 has a critical localisation with respect to first housing 11, and, during by this critical localisation, the elastic pulling force that elastic component 18 is provided can quicken first protruding axle 121 and second protruding axle 122 directions towards second end 114 and the 4th end 116 and slide into relatively away from the position.In like manner, when mouse 10 by relatively away from the position when the critical localisation, the elastic pulling force that elastic component 18 is provided can quicken first protruding axle 121 and second protruding axle 122 directions towards first end 113 and the 3rd end 115 and slide into relatively near the position.The design that utilizes elastic pulling force to quicken first protruding axle 121 past first ends 113 or move and utilize critical localisation toward second end, 114 directions can allow the user feel more laborsaving and experience paragraph sense in the process of adjusting size.It should be noted that the elastic component 18 of present embodiment also can be spring, its principle is the same, repeats no more.
The utility model provides a kind of adjustable spring, can be on demand the size of mouse 10 be changed, and sees through elastic component 18 collocation mechanism design, makes mouse 10 reach the labour-saving effect when varying sized.
Though the utility model discloses as above with preferred embodiment; right its is not in order to limit the utility model; any insider; in not breaking away from spirit and scope of the present utility model; when doing a little change and retouching, therefore protection domain of the present utility model is as the criterion when looking claims person of defining.

Claims (21)

1. an adjustable mouse is characterized in that, comprising:
One first housing has one first groove and one second groove, and this first groove and this second groove are non-parallel to each other, and this first groove has one first end and one second end, and this second groove has one the 3rd end and one the 4th end; And
One second housing has one first protruding axle and one second protruding axle, and this first protruding axle can slide between this first end of this first groove and this second end, and this second protruding axle can slide between the 3rd end of this second groove and the 4th end;
Wherein, this first housing has a relative close position and relatively away from the position with this second housing, when this first protruding direction slip that is positioned at this second end and desires past this first end, and this second protruding axle is positioned at the 4th end and when desiring to slide toward the direction of the 3rd end, this first housing is positioned at this relative close position with this second housing; Slide toward the direction of this second end when this first protruding axle is positioned at this first end and desires, and this second protruding axle is positioned at the 3rd end and when desiring to slide toward the direction of the 4th end, this first housing and this second housing are positioned at that this is relative to the position.
2. adjustable mouse according to claim 1 is characterized in that, this first groove more comprises an anti-slip section, but this first protruding axle of this anti-slip section clamping.
3. adjustable mouse according to claim 1 is characterized in that, this second groove has more and comprises an anti-slip section, but this second protruding axle of this anti-slip section clamping.
4. adjustable mouse according to claim 1 is characterized in that, this second groove is an arc, and the part the closer to the 4th end of this arc is smooth more.
5. an adjustable mouse is characterized in that, comprising:
One first housing;
One second housing; And
One coupling arrangement, this coupling arrangement connects this first housing and this second housing, make this first housing optionally with respect to this second housing towards the motion of a first direction and a second direction or with respect to this second housing towards the reverse direction of this first direction and the reverse direction motion of this second direction, vertical this second direction of this first direction;
Wherein, this first housing has a relative close position and relatively away from the position with this second housing, when this first housing moved between this first direction and this second direction with respect to this second housing, this first housing and this second housing were positioned at that this is relative to the position; When this first housing moved between the reverse direction of the reverse direction of this first direction and this second party with respect to this second housing, this first housing and this second housing were positioned at that this is relative to the position.
6. adjustable mouse according to claim 5, it is characterized in that, this coupling arrangement comprises one first groove, one second groove, one first protruding axle and one second protruding axle, wherein this first groove and this second groove are non-parallel to each other, this first chute and this second chute are arranged at this first housing or second housing, this first protruding axle and this second protruding axle are arranged at this first housing or second housing, and this first protruding axle can slide in this first groove, and this second protruding axle can slide in this second groove.
7. adjustable mouse according to claim 6, it is characterized in that, this second groove is an arc, when this mouse be positioned at this relatively away from the position time, the contact portion of this second groove and this second protruding axle has one first slope, when this mouse was positioned at this close relatively position, the contact portion of this second groove and this second protruding axle had one second slope, and this second slope is greater than this first slope.
8. an adjustable mouse is characterized in that, comprising:
One first housing comprises an end;
One second housing comprises a bottom surface and a top; And
One coupling arrangement, this coupling arrangement connect this first housing and this second housing;
Wherein, this first housing and this second housing have one relative near position and relatively away from the position, when first housing and this second housing were positioned at this relative close position, the online of this end and this top had one first angle with respect to this bottom surface; This is relative during away from the position when this first housing and this second housing are positioned at, and the online of this end and this top has one second angle with respect to this bottom surface, and wherein this second angle is greater than this first angle.
9. adjustable mouse according to claim 8, it is characterized in that, this coupling arrangement comprises one first groove, one second groove, one first protruding axle and one second protruding axle, wherein this first groove and this second groove are non-parallel to each other, this first groove and this second groove are arranged at this first housing or second housing, this first protruding axle and this second protruding axle are arranged at this first housing or this second housing, and this first protruding axle can slide in this first groove, and this second protruding axle can slide in this second groove.
10. adjustable mouse according to claim 9, it is characterized in that, this second groove is an arc, when this mouse be positioned at this relatively away from the position time, the contact portion of this second groove and this second protruding axle has one first slope, when this mouse was positioned at this close relatively position, the contact portion of this second groove and this second protruding axle had one second slope, and this second slope is greater than this first slope.
11. an adjustable mouse is characterized in that, includes:
One first housing has one first groove, and this first groove has one first end and one second end;
One second housing, has one first protruding axle, this first protruding axle can slide between this first end and this second end, when this first protruding axle is positioned at this second end, this mouse has one first length, when this first protruding axle was positioned at this first end, this mouse had one second length, and wherein this second length is greater than this first length;
One first connecting rod has one first connecting portion and one second connecting portion, and this first connecting portion is articulated in this first housing;
One second connecting rod has one the 3rd connecting portion and the 4th connecting portion, and this second connecting portion of the 3rd connecting portion and this first connecting rod articulates, and the 4th connecting portion and this second housing articulate;
One elastic component has one the 5th connecting portion and one the 6th connecting portion, and the 5th connecting portion connects this second connecting rod, and the 6th connecting portion connects this second housing;
Wherein, the elastic pulling force that this elastic component provided optionally makes this first protruding axle slide or slide towards this second extreme direction towards this first extreme direction.
12. adjustable mouse according to claim 11, it is characterized in that, when the 5th connecting portion and the 6th connecting portion and the 4th connecting portion are positioned in fact when online always, this first protruding axle has a critical localisation in this first chute, wherein, when this first protruding axle is slided toward the direction of this first end by this second end, and the elastic pulling force that this elastic component is provided during by this critical localisation makes this first protruding axle slide towards this first extreme direction; When this first protruding axle is slided toward the direction of this second end by this first end, and during by this critical localisation, this elastic component provides the elastic force pulling force that this first protruding axle is slided towards this second extreme direction.
13. adjustable mouse according to claim 11, it is characterized in that, this first housing more comprises one second groove, this second housing more comprises one second protruding axle, this second protruding axle can slide in this second groove, wherein this second groove and this first groove are non-parallel to each other, this second groove has one the 3rd end and the 4th end, when this second protruding axle is positioned at the 4th end, this mouse has one first height, when this second protruding axle was positioned at the 3rd end, this mouse had one second height, and this second height is greater than this first height.
14. adjustable mouse according to claim 13 is characterized in that, this second groove is an arc, and the part the closer to the 4th end of this arc is smooth more.
15. adjustable mouse according to claim 11 is characterized in that, wherein this elastic component is in the shape of the letter V.
16. adjustable mouse according to claim 13 is characterized in that, wherein this elastic component is a spring.
17. an adjustable mouse is characterized in that, comprising:
One first housing;
One second housing, be connected with this first housing by a coupling arrangement, this second housing relatively this first housing can slidably reciprocate on axially in one, and optionally is positioned at a primary importance and a second place, wherein when this second housing was positioned at this primary importance, this mouse had one first length; When second housing was positioned at this second place, this mouse had one second length, and wherein this second length is greater than this first length;
One first connecting rod has one first connecting portion and one second connecting portion, and this first connecting portion is articulated in this first housing;
One second connecting rod has one the 3rd connecting portion and the 4th connecting portion, and this second end of the 3rd connecting portion and this first connecting rod articulates, and the 4th connecting portion and this second housing articulate;
One elastic component has one the 5th connecting portion and one the 6th connecting portion, and the 5th connecting portion connects this second connecting rod, and the 6th connecting portion connects this second housing;
Wherein, the elastic pulling force that this elastic component provided optionally makes this second housing slide or this second housing is slided toward this second place towards this primary importance.
18. adjustable mouse according to claim 17 is characterized in that, the 5th connecting portion and the 6th connecting portion and the 4th connecting portion are positioned in fact when online always, and this second housing has a critical localisation with respect to this first housing; Wherein, when this first housing is slided toward the direction of this primary importance by this second place, and during by this critical localisation, the elasticity of this elastic component makes this second housing slide towards this primary importance; When this housing is slided toward the direction of this second place by this primary importance, and during by this critical localisation, the elastic force of this elastic component makes this second housing slide toward this second place direction.
19. adjustable mouse according to claim 18, it is characterized in that this coupling arrangement comprises a chute and a protruding axle, this chute is arranged at this first housing or this second housing, this protruding axle is arranged at this first housing or this second housing, and this protruding axle can slide in this chute.
20. adjustable mouse according to claim 17 is characterized in that, wherein this elastic component is in the shape of the letter V.
21. adjustable mouse according to claim 17 is characterized in that, wherein this elastic component is a spring.
CNU2005201051596U 2005-08-22 2005-08-22 Adjustable mouse Expired - Lifetime CN2828923Y (en)

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Application Number Priority Date Filing Date Title
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CNU2005201051596U CN2828923Y (en) 2005-08-22 2005-08-22 Adjustable mouse

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100424621C (en) * 2005-08-22 2008-10-08 达方电子股份有限公司 Adjustable mouse
WO2016086854A1 (en) * 2014-12-02 2016-06-09 Contour Design, Inc. Adjustable mouse
USD834576S1 (en) 2017-04-20 2018-11-27 Contour Design, Inc. Adjustable computer mouse
US10664067B2 (en) 2017-08-21 2020-05-26 Contour Design, Inc. Adjustable mouse
WO2023220705A3 (en) * 2022-05-12 2023-12-21 Voyetra Turtle Beach, Inc. Translational mouse key structure and mouse device having the same

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100424621C (en) * 2005-08-22 2008-10-08 达方电子股份有限公司 Adjustable mouse
WO2016086854A1 (en) * 2014-12-02 2016-06-09 Contour Design, Inc. Adjustable mouse
US10401979B2 (en) 2014-12-02 2019-09-03 Contour Design, Inc. Adjustable mouse
USD834576S1 (en) 2017-04-20 2018-11-27 Contour Design, Inc. Adjustable computer mouse
USD851642S1 (en) 2017-04-20 2019-06-18 Contour Design, Inc. Adjustable computer mouse
US10664067B2 (en) 2017-08-21 2020-05-26 Contour Design, Inc. Adjustable mouse
WO2023220705A3 (en) * 2022-05-12 2023-12-21 Voyetra Turtle Beach, Inc. Translational mouse key structure and mouse device having the same

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AV01 Patent right actively abandoned

Effective date of abandoning: 20081008

C25 Abandonment of patent right or utility model to avoid double patenting