CN103123540A - Extensible mouse - Google Patents
Extensible mouse Download PDFInfo
- Publication number
- CN103123540A CN103123540A CN2011103674089A CN201110367408A CN103123540A CN 103123540 A CN103123540 A CN 103123540A CN 2011103674089 A CN2011103674089 A CN 2011103674089A CN 201110367408 A CN201110367408 A CN 201110367408A CN 103123540 A CN103123540 A CN 103123540A
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- side plate
- mouse
- telescopic
- guide rail
- rail brackets
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Abstract
The invention discloses an extensible mouse which comprises a mouse shell body and an extensible device arranged inside the mouse shell body, wherein the mouse shell body comprises a side plate available for dock of a thumb, and the side plate is connected with the extensible device and capable of extending in the horizontal direction relative to the mouse shell body. According to the extensible mouse, the side plate available for the dock of the thumb is driven to move relative to the mouse shell body through a built-in extensible device, accordingly not only is the size of the mouse adjusted to adapt to users with different hands, but also the thumb is enabled to be put in a naturally stretched mode when the user use the extensible mouse, so that discomfort caused by long-time bending of the thumb is avoid.
Description
Technical field
The present invention relates to the mouse technical field, relate more specifically to the Telescopic mouse that a kind of side thumb position place can adjust.
Background technology
Along with the development of society, the progress of science and technology, people's the level of cultural life improves constantly.Also make rapid progress with the core technology of the closely bound up electronic product of people's daily life, wherein, computing machine becomes the requirement of modern's life already, and it brings huge facility and amusement for live and work of people.And mouse is controlled the signal input apparatus of computer equipment also along with the development of computer level is maked rapid progress as the user.Develop into wireless optical mouse of today from traditional mechanical wire mouse, the function of mouse is very significantly improved.
Yet, no matter be mechanical mouse or optical mouse, wire mouse or wireless mouse, mouse its profile when putting goods on the market sale has all been fixed, the user can't adjust to adapt to different users's big or small hand according to the hand-type feature of oneself to mouse profile size, and user's a plurality of fingers when operating mouse all need little song gently to hold mouse, and the long crooked of its middle finger can bring very big discomfort to hand.
Therefore, be necessary to provide a kind of side thumb position telescopic mouse that the place can adjust to address the aforementioned drawbacks.
Summary of the invention
The purpose of this invention is to provide the Telescopic mouse that a kind of side thumb position place can adjust adapting to the needs of different user, and bring larger use comfort for the user.
To achieve these goals, Telescopic mouse provided by the invention comprises on and is placed in the interior telescopic mounting of described on, described on comprises can be for the side plate of thumb stop, and described side plate is connected and can stretches in the horizontal direction with respect to described on described telescopic mounting.
in a preferred embodiment of the present invention, described telescopic mounting comprises rail brackets, guide rail, guide pillar, the first flexible member and the second flexible member, described rail brackets is fixed in described on, described guide rail is placed in described rail brackets and can slides by relatively described rail brackets along continuous straight runs, the outer end of described guide rail is fixedly connected with described side plate, its the inner connects by described the first flexible member and described on, described guide pillar runs through described guide rail and rail brackets and can slide in vertical direction with respect to described guide rail and rail brackets, the upper end of described guide rail is fixed with a pressing plate, be provided with upper rack on described pressing plate, be provided with lower tooth bar on described guide rail, described upper rack can be meshed with described lower tooth bar, described the second flexible member is placed between the lower end and described rail brackets of described guide pillar.
Preferably, also comprise a button, the lower end of described button and described guide pillar connects, and it is outer for operation that described button is exposed to described on.
Preferably, be formed with convex platform on described rail brackets, the inner upper channel that forms of described convex platform, described upper channel is connected with the cavity of described rail brackets, and described pressing plate can slide in described upper channel.
Preferably, be formed with lower convex platform on described rail brackets, the inside of described lower convex platform forms lower channel, and described the second flexible member is spring, and described spring is placed in the lower end of described guide pillar and part and stretches in described lower convex platform and can stretch in described lower channel.
Preferably, described on comprises upper cover, middle cover and base, and described middle cover comprises a baffle plate, is provided with a grade wall in described guide rail, and described shelves wall and described baffle plate almost parallel, described the first flexible member are placed between described shelves wall and described baffle plate.
Preferably, be formed with pilot hole on described baffle plate, be fixed with reference column on described shelves wall, described the first flexible member is spring, and described spring is placed on described reference column, and described reference column passes described pilot hole.
Preferably, be provided with a pair of described lower tooth bar that is parallel to each other on described guide rail, correspondingly, be provided with a pair of described upper rack that is parallel to each other on described pressing plate, two described upper racks are meshed with two described lower tooth bars respectively.
Preferably, described lower tooth bar includes some tooth pieces, and described upper rack includes draw-in groove, and when described draw-in groove was stuck in different tooth pieces, described side plate was in different positions with respect to described on.
Preferably, described different position comprises primary importance, the second place, the 3rd position and the 4th position, when described side plate is in primary importance, described side plate is equal with the side of described on, and when described side plate was in the second place, described side plate protruded from described side 3.2mm, when described side plate is in the 3rd position, described side plate protrudes from described side 6.4mm, and when described side plate was in the 4th position, described side plate protruded from described side 9.6mm.
Compared with prior art, Telescopic mouse provided by the invention can move with respect on for the side plate that thumb is stopped to drive by built-in telescopic mounting, thereby the adjustment that has not only realized whole mouse size has the not user of homochirality to adapt to, put but also user's thumb when using this mouse can be opened by natural way, thereby avoided long bending and bring discomfort.
By following description also by reference to the accompanying drawings, it is more clear that the present invention will become, and these accompanying drawings are used for explaining embodiments of the invention.
Description of drawings
Fig. 1 is the stereographic map of Telescopic mouse one embodiment of the present invention.
Fig. 2 is the part-structure schematic diagram of Telescopic mouse shown in Figure 1.
Fig. 3 is another schematic diagram of the part-structure of Telescopic mouse shown in Figure 1.
Fig. 4 is the schematic diagram of having showed telescopic mounting in Telescopic mouse shown in Figure 1.
Fig. 5 is another schematic diagram of having showed telescopic mounting in Telescopic mouse shown in Figure 1.
Fig. 6 is the diagrammatic cross-section of Telescopic mouse shown in Figure 1.
Fig. 7 to Figure 10 is the view that Telescopic mouse latus inframedium shown in Figure 1 is in different telescopic locations.
In figure, each description of reference numerals is as follows:
On 100 bases 110
Rail brackets 210 bodies 211
The wing 212 convex platforms 213 are installed
Lower convex platform 214 guide rails 220
Retaining wall 221 reference columns 222
The first flexible member 240 second flexible members 250
Embodiment
Below in conjunction with the accompanying drawing in the embodiment of the present invention, the technical scheme in embodiment is clearly and completely described, in accompanying drawing, similar assembly label represents similar assembly.Obviously, below be only the present invention's part embodiment with the embodiment that describes, rather than whole embodiment.Based on the embodiment in the present invention, those of ordinary skills belong to the scope of protection of the invention not making the every other embodiment that obtains under the creative work prerequisite.
At first please refer to Fig. 1, Fig. 1 has showed the stereographic map of Telescopic mouse one embodiment of the present invention.as shown in Figure 1, Telescopic mouse 10 of the present invention comprises on 100, the telescopic mounting 200 that is placed in described on 100 reaches the button 300 that is used for controlling described telescopic mounting 200, described on 100 comprises the base 110 that is installed together successively, middle cover 120 and upper cover 130, the side 121 of described middle cover 120 is provided with can be for the side plate 122 of thumb stop, described side plate 122 is connected with described telescopic mounting 200, described button 300 is positioned on described base 110 and is exposed outside for operation, when pressing described button 300, described side plate 122 can stretch in the horizontal direction with respect to described on 100, to realize change in location, as extremely shown in Figure 10 in Fig. 7.
Describe concrete structure and the principle of telescopic mounting 200 in the present invention in detail below with reference to each accompanying drawing.
With reference to Fig. 2 to Fig. 6, in this preferred embodiment, described telescopic mounting 200 comprises rail brackets 210, guide rail 220, guide pillar 230, the first flexible member 240 and the second flexible member 250.Described rail brackets 210 is fixed in described on 100, described guide rail 220 is placed in described rail brackets 210 and can slides by relatively described rail brackets 210 along continuous straight runs, the outer end of described guide rail 220 is fixedly connected with described side plate 122, its the inner connects with described on 100 by described the first flexible member 240, and described guide pillar 230 runs through described guide rail 220 and rail brackets 210 and can slide in vertical direction with respect to described guide rail 220 and rail brackets 210.The upper end of described guide rail 220 is fixed with a pressing plate 260, be provided with a pair of upper rack 261 on described pressing plate 260, be provided with a pair of lower tooth bar 223 on described guide rail 220, two described upper racks 261 can be meshed with two described lower tooth bars 223 respectively, and described the second flexible member 250 is placed between the lower end and described rail brackets 210 of described guide pillar 230.
Preferably, described rail brackets 210 comprises body 211 with cavity, two convex platform 213 and the lower convex platforms 214 of the wings 212 being installed and being protruded out out from upside and the downside of described body 211 respectively that extend out from described body 211 both sides, the inside of described convex platform 213 forms upper channel, this upper channel is connected with described cavity, described rail brackets 210 is fixedly installed on the middle cover 120 of described on 100, as shown in Figure 6 by the two described installation wings 212.
Preferably, described guide rail 220 is placed in the cavity of described rail brackets 210, described guide rail 220 is formed with groove so that guide rail 220 can move left and right with respect to described guide pillar 230 on hollow structure and its, and the setting of described groove also can limit the moving range of guide rail 220.in addition, be provided with grade wall 221 in described guide rail 220, described middle cover 120 comprises a baffle plate 123, described shelves wall 221 and described baffle plate 123 almost parallels, be formed with pilot hole 124 on described baffle plate 123, be fixed with reference column 222 on described shelves wall 221, described the first flexible member 240 is spring, described spring 240 is placed on described reference column 222 and part is placed in the hollow structure of described guide rail 220, described reference column 222 passes described pilot hole 124, thereby can further guide described guide rail 220 stably to move left and right along described rail brackets 210, facilitate the user to control the shift position of guide rail 220 and side plate 122.
Preferably, described guide pillar 230 is bolt, described the second flexible member 250 is spring, this spring is placed on described bolt 230 and connects with the nut 231 of described bolt 230 lower ends, described spring 250 parts stretch in described lower convex platform 214 and can stretch up and down along described lower channel, be fixed with to interference fit nut 232 on described pressing plate 260, described pressing plate 260 is fixed on the upper end (the threaded end of tool) of described bolt by described nut 232, described pressing plate 260 is placed in described convex platform 213 and can moves up and down along described upper channel.The design of said structure is ease of assembly but also make structure more compact not only, and the stretching motion of telescopic mounting 200 is more stable.Wherein, due to the structure that adopts bolt 230 and nut 232 to cooperatively interact, ease of assembly process greatly; Moving up and down of guide pillar 230 can be further stablized in the design of upper lower convex platform 214; And spring can make pressing plate 260 realize automatically reseting.
Preferably, the lower tooth bar 223 of described guide rail 220 comprises some tooth pieces, comprise in the present embodiment four tooth pieces, the upper rack 261 of described pressing plate 260 includes draw-in groove, when described draw-in groove is stuck in different tooth pieces, described side plate 122 is in four different positions with respect to described on 100, and at this moment, side plate 122 is different with respect to the value of the distance H of the side 121 of on 100.In this specific embodiment, described different position comprises primary importance shown in Figure 7, the second place shown in Figure 8, the 3rd position shown in Figure 9 and the 4th position shown in Figure 10, when described side plate 122 is in primary importance, described side plate 122 is equal with the side 121 of described on 100, and namely described distance H is 0mm; When described side plate 122 was in the second place, the distance H that described side plate 122 protrudes from described side 121 was 3.2mm; When described side plate 122 was in the 3rd position, the distance H that described side plate 122 protrudes from described side 121 was 6.4mm, and when described side plate 122 was in the 4th position, the distance H that described side plate 122 protrudes from described side 121 was 9.6mm.
The motion principle of the present embodiment Telescopic mouse 10 is described below with reference to Fig. 1 to Figure 10.
when the user pushes button 300 the time with hand, button 300 promotes guide pillar 230 and moves upward, pressing plate 260 was lifted and made its upper rack 261 and the lower tooth bar 223 of guide rail 220 be separated this moment, guide rail 220 is promoted by outside (outside on 100) under the effect of spring 240 together with side plate 122, at this moment, do not live side plate 122 if do not use the light finger flicking, can to be pulled to outermost position be also above-mentioned the 4th position (this of side plate 122 ejects farthest distance and limited by the groove H structure on guide rail 220) to side plate 122, unclamp button 300 this moment, 230 of guide pillars can be realized resetting together with pressing plate 260 moves down under the effect of spring 250, the lower tooth bar of the upper rack of pressing plate 260 and guide rail 220 meshes together again, thereby side plate 122 is fixed in the 4th position.After the user is being familiar with operation, pushing button 300 o'clock, the side plate 122 that press...withes one's finger simultaneously can be positioned at the second place or these two interfixes place of the 3rd position to side plate 122, unclamp again button 300, thereby side plate 122 is fixed on the corresponding second or the 3rd position.
As mentioned above, Telescopic mouse 10 provided by the invention can move with respect on 100 for the side plate 122 that thumb is stopped to drive by built-in telescopic mounting 200, thereby the adjustment that has not only realized whole mouse size has the not user of homochirality to adapt to, put but also user's thumb when using this mouse can be opened by natural way, thereby avoided long bending and bring discomfort.
Need to prove, the change location of latus inframedium 122 of the present invention is not restricted to four and its and also is not restricted to above-mentioned situation with respect to the distance of mouse side 121, and tooth number of blocks and tooth block size that concrete position number of handovers can be adjusted lower tooth bar according to actual needs change.In addition, telescopic mounting 200 both can be arranged on the limit, left side of mouse, right edge or the left and right sides that also can be arranged on mouse arrange simultaneously, and correspondingly, described side plate 122 can be arranged on the leftward position, right positions of mouse or left and right sides position and arrange simultaneously for large little finger and stop.
Above invention has been described in conjunction with most preferred embodiment, but the present invention is not limited to the embodiment of above announcement, and should contain various modification, equivalent combinations of carrying out according to essence of the present invention.
Claims (10)
1. Telescopic mouse, it is characterized in that: comprise on and be placed in the interior telescopic mounting of described on, described on comprises can be for the side plate of thumb stop, and described side plate is connected and can stretches in the horizontal direction with respect to described on described telescopic mounting.
2. Telescopic mouse as claimed in claim 1, it is characterized in that: described telescopic mounting comprises rail brackets, guide rail, guide pillar, the first flexible member and the second flexible member, described rail brackets is fixed in described on, described guide rail is placed in described rail brackets and can slides by relatively described rail brackets along continuous straight runs, the outer end of described guide rail is fixedly connected with described side plate, its the inner connects by described the first flexible member and described on, described guide pillar runs through described guide rail and rail brackets and can slide in vertical direction with respect to described guide rail and rail brackets, the upper end of described guide rail is fixed with a pressing plate, be provided with upper rack on described pressing plate, be provided with lower tooth bar on described guide rail, described upper rack can be meshed with described lower tooth bar, described the second flexible member is placed between the lower end and described rail brackets of described guide pillar.
3. Telescopic mouse as claimed in claim 2, it is characterized in that: also comprise a button, the lower end of described button and described guide pillar connects, and it is outer for operation that described button is exposed to described on.
4. Telescopic mouse as claimed in claim 2, it is characterized in that: be formed with convex platform on described rail brackets, the inner upper channel that forms of described convex platform, described upper channel is connected with the cavity of described rail brackets, and described pressing plate can slide in described upper channel.
5. Telescopic mouse as claimed in claim 2, it is characterized in that: be formed with lower convex platform on described rail brackets, the inside of described lower convex platform forms lower channel, described the second flexible member is spring, and described spring is placed in the lower end of described guide pillar and part and stretches in described lower convex platform and can stretch in described lower channel.
6. Telescopic mouse as claimed in claim 2, it is characterized in that: described on comprises upper cover, middle cover and base, described middle cover comprises a baffle plate, be provided with a grade wall in described guide rail, described shelves wall and described baffle plate almost parallel, described the first flexible member are placed between described shelves wall and described baffle plate.
7. Telescopic mouse as claimed in claim 6, it is characterized in that: be formed with pilot hole on described baffle plate, be fixed with reference column on described shelves wall, described the first flexible member is spring, described spring is placed on described reference column, and described reference column passes described pilot hole.
8. Telescopic mouse as claimed in claim 2, it is characterized in that: be provided with a pair of described lower tooth bar that is parallel to each other on described guide rail, correspondingly, be provided with a pair of described upper rack that is parallel to each other on described pressing plate, two described upper racks are meshed with two described lower tooth bars respectively.
9. Telescopic mouse as claimed in claim 2, it is characterized in that: described lower tooth bar comprises some tooth pieces, and described upper rack includes draw-in groove, when described draw-in groove was stuck in different tooth pieces, described side plate was in different positions with respect to described on.
10. Telescopic mouse as claimed in claim 9, it is characterized in that: described different position comprises primary importance, the second place, the 3rd position and the 4th position, when described side plate is in primary importance, described side plate is equal with the side of described on, when described side plate is in the second place, described side plate protrudes from described side 3.2mm, when described side plate is in the 3rd position, described side plate protrudes from described side 6.4mm, and when described side plate was in the 4th position, described side plate protruded from described side 9.6mm.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN2011103674089A CN103123540A (en) | 2011-11-18 | 2011-11-18 | Extensible mouse |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN2011103674089A CN103123540A (en) | 2011-11-18 | 2011-11-18 | Extensible mouse |
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CN103123540A true CN103123540A (en) | 2013-05-29 |
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CN2011103674089A Pending CN103123540A (en) | 2011-11-18 | 2011-11-18 | Extensible mouse |
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Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105653072A (en) * | 2016-03-24 | 2016-06-08 | 苏州天擎电子通讯有限公司 | Mouse with hand warming as well as wrist massage and support functions |
CN107066120A (en) * | 2014-12-02 | 2017-08-18 | 康杜尔设计公司 | Adjustable mouse |
CN112631440A (en) * | 2020-12-18 | 2021-04-09 | 安徽工程大学 | Mouse capable of relieving hand fatigue |
CN112965620A (en) * | 2021-03-10 | 2021-06-15 | 维沃移动通信有限公司 | Mouse (Saggar) |
WO2022104561A1 (en) * | 2020-11-18 | 2022-05-27 | 杭州迪喾软件科技有限公司 | Mouse apparatus capable of smart height adjustment used for software development |
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CN2638137Y (en) * | 2003-08-08 | 2004-09-01 | 郭明波 | Telescopic mouse |
CN2824136Y (en) * | 2005-09-26 | 2006-10-04 | 李伟高 | Size adjustable mouse |
CN202331390U (en) * | 2011-11-18 | 2012-07-11 | 深圳市多彩实业有限公司 | Telescopic mouse |
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2011
- 2011-11-18 CN CN2011103674089A patent/CN103123540A/en active Pending
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
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CN2638137Y (en) * | 2003-08-08 | 2004-09-01 | 郭明波 | Telescopic mouse |
CN2824136Y (en) * | 2005-09-26 | 2006-10-04 | 李伟高 | Size adjustable mouse |
CN202331390U (en) * | 2011-11-18 | 2012-07-11 | 深圳市多彩实业有限公司 | Telescopic mouse |
Cited By (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107066120A (en) * | 2014-12-02 | 2017-08-18 | 康杜尔设计公司 | Adjustable mouse |
US10401979B2 (en) | 2014-12-02 | 2019-09-03 | Contour Design, Inc. | Adjustable mouse |
CN107066120B (en) * | 2014-12-02 | 2020-03-27 | 康杜尔设计公司 | Adjustable mouse |
CN105653072A (en) * | 2016-03-24 | 2016-06-08 | 苏州天擎电子通讯有限公司 | Mouse with hand warming as well as wrist massage and support functions |
WO2022104561A1 (en) * | 2020-11-18 | 2022-05-27 | 杭州迪喾软件科技有限公司 | Mouse apparatus capable of smart height adjustment used for software development |
CN112631440A (en) * | 2020-12-18 | 2021-04-09 | 安徽工程大学 | Mouse capable of relieving hand fatigue |
CN112631440B (en) * | 2020-12-18 | 2023-02-28 | 安徽工程大学 | Mouse capable of relieving hand fatigue |
CN112965620A (en) * | 2021-03-10 | 2021-06-15 | 维沃移动通信有限公司 | Mouse (Saggar) |
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Application publication date: 20130529 |