CN203178935U - Touch mouse - Google Patents

Touch mouse Download PDF

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Publication number
CN203178935U
CN203178935U CN 201320057889 CN201320057889U CN203178935U CN 203178935 U CN203178935 U CN 203178935U CN 201320057889 CN201320057889 CN 201320057889 CN 201320057889 U CN201320057889 U CN 201320057889U CN 203178935 U CN203178935 U CN 203178935U
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CN
China
Prior art keywords
touch
top cover
control
conductor layer
mouse
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 - Fee Related
Application number
CN 201320057889
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Chinese (zh)
Inventor
刘永隆
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.)
Sunrex Technology Corp
Original Assignee
Sunrex Technology 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 Sunrex Technology Corp filed Critical Sunrex Technology Corp
Priority to CN 201320057889 priority Critical patent/CN203178935U/en
Application granted granted Critical
Publication of CN203178935U publication Critical patent/CN203178935U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses a touch mouse which comprises a touch top cover, a capacitive sensing conductor layer, a circuit board and a base, wherein the touch top cover is roughly in a bent-arc curved-surface shape, the thin-film-shaped capacitive sensing conductor layer is sputtered on the bottom surface, in the bent-arc curved-surface shape, of the touch top cover, a plurality of first induction portions arrayed in matrixes and the second induction portions arrayed in matrixes are formed inside the capacitive sensing conductor layer, the first induction portions are arranged in an X-Y axis mode, the second induction portions are arranged in an X-Y axis mode, and positions, corresponding to touch operation areas of the touch top cover, of a plurality of induction portions arranged in the X-Y axis mode can induct potential change signals produced when a finger touches fixed points of the touch operation areas. The circuit board is correspondingly assembled and arranged between the touch top cover and the base, and the base is a base body which is used for bearing and assembling the touch top cover. Due to the fact that the capacitive sensing conductor layer is sputtered on the bottom surface of the touch top cover in a distributing mode, and the touch mouse has a rapid mouse assembling effect and a sensitive and smooth touch sensing effect.

Description

Contact control mouse
Technical field
The utility model relates to a kind of contact control mouse, relates in particular to a kind of mouse that capacitive sensing conductor layer sputter is laid in a touch-control top cover bottom surface.
Background technology
Known computing machine utilizes a mouse to control cursor position or the scrolling page on the computer screen more, and known mouse need be assembled left and right sides pressing key and roll wheel assembly, it is the integral assembling structure complexity not only, and it there is no the design of Trackpad operation, so that known mouse is using operation to be restricted, and can't reach the effect of multi-finger gesture contact control mouse, then known mouse structure there is no the design of touch-control numerical key or touch-control special function keys, and it also is short of input such as the button of printing virtual key district or numeric character sign in mouse surface, therefore, the user also can't be by known mouse to do the operation of the input of touch-control numeral or specific function.
The applicant's research and development and application have been got permission: TaiWan, China patent " contact control mouse improved device " (letters patent book number number: M383156 number) patent case and US Patent No. 8269723 patent cases, just case is laid in a flexible circuit board (FPC for the capacitive sensing conductor layer in its mouse structure before these patents, Flexible Printed Circuit) on, because the flexible phenomenon that its limit is arranged and have local folding bending stress to concentrate of the folding of this flexible circuit board, it not only obviously has the difficulty of contraposition when being assembled in the mouse negative camber, and can cause this flexible circuit board bending place to form the shortcoming that conducting is opened circuit and reduced sensing sensitivity, thereby cause mouse assembling inconvenience and use the upward not good drawback of smooth degree.
The utility model content
Fundamental purpose of the present utility model provides a kind of contact control mouse, the problem points that its desire solves is at known mouse assembling inconvenience and use the upward not good shortcoming of smooth degree, and the utility model is namely according to the problem of known mouse, broken through and research and develop improvement, the utlity model has the effect that increases mouse operation and control sensitivity and accuracy in the hope of making.
To achieve these goals, the utility model provides a kind of contact control mouse, comprises a touch-control top cover, a capacitive sensing conductor layer, a circuit board and a base, wherein:
This touch-control top cover, it is one to be the curved lamina tecti of curved arc, form a touch control operation district in its top surface, form a capacitive sensing conductor layer in its basal surface sputter, and have second induction part that first induction part that a plurality of matrixes of X-Y axle arrange and a plurality of matrix are arranged between this capacitive sensing conductor layer, and the position in a plurality of first induction parts of arranging of its X-Y axle matrix and second induction part touch control operation district that corresponds to this touch-control top cover is touching the signal that produces the capacitive sensing potential change when this touch control operation district by finger;
This circuit board, its correspondence is arranged at position between this touch-control top cover and this base, this circuit board comprises an Electronic Control Unit and an optics sensing component, wherein this Electronic Control Unit is for the treatment of reaching the transmission touch sense signals, and this optics sensing component is used for emission and receives the optical signalling that reflects; And
This base, it is the base body of accepting this touch-control top cover of assembling, is assembled with a leaded light component on this base.
As preferably, but convex with a plurality of salient points or the guiding fin of touch-control identification in this touch-control top cover surface, this salient point distribution design is that oblique line or curvilinear figure are to constitute the touch-control guiding structure.
As preferably, in distolateral a junction that is electrically connected with of this capacitive sensing conductor layer, and this capacitive sensing conductor layer by a winding displacement to be electrically connected with this circuit board.
As preferably, this optics sensing component includes a led light source generating unit and a signal receiving part can launch and receive the optical signalling of reflection.
As preferred further, be equipped with an open-work corresponding to this leaded light component place so that the light that this led light source generating unit produces is able to via this leaded light component and this open-work being directed to desktop in this base, and its light that will be reflected by desktop via this leaded light component to transfer to the signal receiving part of this optics sensing component.
As preferably, be printed with a plurality of virtual keys district or numeric character in this touch-control top cover top surface, this virtual key district is up and down corresponding to this first induction part and second induction part; This virtual key district or numeric character are light-transmitting materials, and this capacitive sensing conductor layer also belongs to the sputtering thin film electricity conductive construction of light-transmitting materials.
Compared with prior art, contact control mouse of the present utility model has following beneficial effect:
(1) the utility model is laid with a capacitive sensing conductor layer in the touch-control top cover bottom surface of mouse sputter, and it has the convenient and sensitive effect smoothly of touch-control sensing of mouse assembling;
(2) the utility model can reach touch-control simulation right and left key or roller function, and it also can reach the effect of induction multi-finger gesture touch-control;
(3) the utility model is printed with virtual key district or numeric character in the mouse surface hollow out, so that the application of indicating of function key and numerical key can be provided;
(4) but the utility model convexes with a plurality of salient points or the guiding fin of touch-control identification in mouse surface, to reach the effect of assisting the user to be positioned specific keys with identification and guiding finger by sense of touch;
(5) mouse surface of the present utility model has vision backlight and distinguishes effect, so the utility model device is applicable to the Briefing Room that the light is dusky or poor sight personage and the elderly user are provided.
Description of drawings
Fig. 1 is the assembling stereogram of the utility model contact control mouse first embodiment.
Fig. 2 is the three-dimensional exploded view of contact control mouse shown in Figure 1.
Fig. 3 is the local enlarged diagram in the touch-control top cover bottom surface of contact control mouse shown in Figure 2, and it shows first induction part and second induction part of capacitive sensing conductor layer.
Fig. 4 is the side cutaway view of contact control mouse shown in Figure 1.
Fig. 5 is the assembling stereogram of the utility model contact control mouse second embodiment, and it shows that touch-control top cover surface is provided with salient point and guiding fin.
Fig. 6 is the assembling stereogram of the utility model contact control mouse the 3rd embodiment, and it shows that touch-control top cover surface is provided with the virtual key district.
Main description of reference numerals
10,10A, 10B.... touch-control top cover
11.............. capacitive sensing conductor layer
111............. first induction part
112............. second induction part
113............. connecting portion
12.............. touch control operation district
121............. salient point
122............. guiding fin
123............. virtual key district
20.............. circuit board
21.............. Electronic Control Unit
22.............. optics sensing component
23.............. winding displacement
30.............. base
31.............. leaded light component
32.............. open-work
Embodiment
Below in conjunction with accompanying drawing specific embodiment of the utility model is elaborated.
As shown in Figures 1 to 4, it is first embodiment of contact control mouse of the present utility model, and it comprises a touch-control top cover 10, a capacitive sensing conductor layer 11, a circuit board 20 and a base 30, wherein:
This touch-control top cover 10, it is one probably to be the curved lamina tecti of curved arc, be that a touch control operation district 12 and its meet ergonomic designs in its top cover surface, utilize sputter process (sputtering) to form the capacitive sensing conductor layer 11 of film sputter in the curved basal surface of these touch-control top cover 10 curved arcs, and its plated film conductive film layer relends by laser carved processing procedure and forms second induction part 112 that first induction part 111 that a plurality of matrixes of X-Y axle arrange and a plurality of matrix are arranged in 11 of this capacitive sensing conductor layers, and its a plurality of X-Y axle induction parts correspond to 12 positions, touch control operation district of this touch-control top cover 10, when can touch fixed position in this touch control operation district 12 by finger, and then the signal of generation capacitive sensing potential change, make the utility model can reach touch-control emulation right and left key, button or roller function, and it also can reach the effect of induction multi-finger gesture touch-control; Then, distolateral a junction 113 that is electrically connected with in this capacitive sensing conductor layer 11, and this capacitive sensing conductor layer 11 by a winding displacement 23 to be electrically connected with this circuit board 20, whereby, and can be positively the touch sense signals of this capacitive sensing conductor layer 11 being transmitted in this circuit board 20, signal is handled and the transmission operation to carry out;
This circuit board 20, its correspondence is arranged at position between this touch-control top cover 10 and this base 30, it includes an Electronic Control Unit 21 and an optics sensing component 22, wherein this Electronic Control Unit 21 is handled and the transmission touch sense signals, and this optics sensing component 22 includes a led light source generating unit and a signal receiving part (belonging to known technology so do not give unnecessary details because of it), can launch and receive the optical signalling of reflection;
This base 30, it is the base body of accepting this touch-control top cover 10 of assembling, on this base 30, be assembled with a leaded light component 31, this leaded light component 31 has the effect of leaded light and optically focused, and this base 30 is equipped with an open-work 32 corresponding to these leaded light component 31 places, so that the light that this led light source generating unit produces is able to via this leaded light component 31 and this open-work 32 to be directed to desktop, and its light that will be reflected by desktop via this leaded light component 31 to transfer to the signal receiving part of this optics sensing component 22, this optics sensing component 22 then in the unit interval acquisition or sensing by move the reflected light signal that produces relative to desktop, and and then by a signal evaluation circuit accurately calculating mouse moving direction and distance, with can the cursor position of synchro control on computer screen;
As shown in Figure 5, it is second embodiment of the present utility model, but the main difference place of itself and first embodiment is a plurality of salient points 121 or the guiding fin 122 that convexes with the touch-control identification in touch-control top cover 10A top surface, and but these a plurality of salient point 121 distribution design are oblique line or curve figures, to constitute the touch-control guiding structure, and these a plurality of guiding fins 122 point to respectively and are directed to specific position of touch place, and it has the button touch controllable function that triggers signal specific;
Relevant the 3rd embodiment of the present utility model, please refer to shown in Figure 6, the main difference place of itself and first embodiment is printed with virtual key district 123 or numeric character in touch-control top cover 10B top surface, and this virtual key district about in the of 123 corresponding to the specific position of touch of this first induction part 111 and second induction part 112, so that clearly sign and the application of function key and numerical key to be provided aspire to mouse surface; Moreover, for mouse of the present utility model is convenient to dim indoor use, this virtual key district 123 or numeric character are light-transmitting materials, and this capacitive sensing conductor layer 11 also belongs to the sputtering thin film electricity conductive construction of light-transmitting materials, be with, just can distinguish effect so that this touch-control top cover 10B has vision backlight by directing light by the light source that is assembled on this circuit board 20, be beneficial to the keypress function that the user distinguishes the operation trigger pip;
Major technique feature of the present utility model has following practical effect: (1) the utility model is laid with a capacitive sensing conductor layer in the touch-control top cover bottom surface of mouse sputter, and it has the convenient and sensitive effect smoothly of touch-control sensing of mouse assembling; (2) the utility model can reach touch-control simulation right and left key or roller function, and it also can reach the effect of induction multi-finger gesture touch-control; (3) the utility model is printed with virtual key district or numeric character in the mouse surface hollow out, so that the application of indicating of function key and numerical key can be provided; (4) but the utility model convexes with a plurality of salient points or the guiding fin of touch-control identification in mouse surface, to reach the effect of assisting the user to be positioned specific keys with identification and guiding finger by sense of touch; (5) mouse surface of the present utility model has vision backlight and distinguishes effect, so the utility model device is applicable to the Briefing Room that the light is dusky or poor sight personage and the elderly user are provided.
Above embodiment is exemplary embodiment of the present utility model only, is not used in restriction the utility model, and protection domain of the present utility model is defined by the claims.Those skilled in the art can make various modifications or be equal to replacement the utility model in essence of the present utility model and protection domain, this modification or be equal to replacement and also should be considered as dropping in the protection domain of the present utility model.

Claims (6)

1. a contact control mouse is characterized in that, comprises a touch-control top cover, a capacitive sensing conductor layer, a circuit board and a base, wherein:
This touch-control top cover, it is one to be the curved lamina tecti of curved arc, form a touch control operation district in its top surface, form a capacitive sensing conductor layer in its basal surface sputter, and have second induction part that first induction part that a plurality of matrixes of X-Y axle arrange and a plurality of matrix are arranged between this capacitive sensing conductor layer, and the position in a plurality of first induction parts of arranging of its X-Y axle matrix and second induction part touch control operation district that corresponds to this touch-control top cover is touching the signal that produces the capacitive sensing potential change when this touch control operation district by finger;
This circuit board, its correspondence is arranged at position between this touch-control top cover and this base, this circuit board comprises an Electronic Control Unit and an optics sensing component, wherein this Electronic Control Unit is for the treatment of reaching the transmission touch sense signals, and this optics sensing component is used for emission and receives the optical signalling that reflects; And
This base, it is the base body of accepting this touch-control top cover of assembling, is assembled with a leaded light component on this base.
2. contact control mouse as claimed in claim 1 is characterized in that, but convexes with a plurality of salient points or the guiding fin of touch-control identification in this touch-control top cover surface, and this salient point distribution design is that oblique line or curvilinear figure are to constitute the touch-control guiding structure.
3. contact control mouse as claimed in claim 1 is characterized in that, in distolateral a junction that is electrically connected with of this capacitive sensing conductor layer, and this capacitive sensing conductor layer by a winding displacement to be electrically connected with this circuit board.
4. contact control mouse as claimed in claim 1 is characterized in that, this optics sensing component includes a led light source generating unit and a signal receiving part can launch and receive the optical signalling of reflection.
5. contact control mouse as claimed in claim 4, it is characterized in that, be equipped with an open-work corresponding to this leaded light component place so that the light that this led light source generating unit produces is able to via this leaded light component and this open-work being directed to desktop in this base, and its light that will be reflected by desktop via this leaded light component to transfer to the signal receiving part of this optics sensing component.
6. contact control mouse as claimed in claim 1 is characterized in that, is printed with a plurality of virtual keys district or numeric character in this touch-control top cover top surface, and this virtual key district is up and down corresponding to this first induction part and second induction part; This virtual key district or numeric character are light-transmitting materials, and this capacitive sensing conductor layer also belongs to the sputtering thin film electricity conductive construction of light-transmitting materials.
CN 201320057889 2013-01-31 2013-01-31 Touch mouse Expired - Fee Related CN203178935U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201320057889 CN203178935U (en) 2013-01-31 2013-01-31 Touch mouse

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201320057889 CN203178935U (en) 2013-01-31 2013-01-31 Touch mouse

Publications (1)

Publication Number Publication Date
CN203178935U true CN203178935U (en) 2013-09-04

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201320057889 Expired - Fee Related CN203178935U (en) 2013-01-31 2013-01-31 Touch mouse

Country Status (1)

Country Link
CN (1) CN203178935U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI492105B (en) * 2013-10-25 2015-07-11 致伸科技股份有限公司 Touch mouse and touch printed circuit board thereof
CN108108041A (en) * 2014-11-25 2018-06-01 原相科技股份有限公司 Obj State determination methods and touch device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI492105B (en) * 2013-10-25 2015-07-11 致伸科技股份有限公司 Touch mouse and touch printed circuit board thereof
CN108108041A (en) * 2014-11-25 2018-06-01 原相科技股份有限公司 Obj State determination methods and touch device

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130904

Termination date: 20150131

EXPY Termination of patent right or utility model