CN105224100A - One is sticked formula Fingers to control piece - Google Patents

One is sticked formula Fingers to control piece Download PDF

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Publication number
CN105224100A
CN105224100A CN201410225284.4A CN201410225284A CN105224100A CN 105224100 A CN105224100 A CN 105224100A CN 201410225284 A CN201410225284 A CN 201410225284A CN 105224100 A CN105224100 A CN 105224100A
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induction pieces
passive
control piece
knuckle
fingers
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CN201410225284.4A
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黄崑煌
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Individual
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Individual
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Abstract

The present invention is sticked formula Fingers to control piece about one, and it is for the sensing pointer of controlling calculation machine host; This sensing control piece utilizes singlehanded thumb and other the arbitrary fingers with hand, or thumb and palm thereof control this sensing index, this sensing control piece comprises: an active induction pieces, it is attached on thumb on the other hand, at least one passive induction pieces, they are single or multiple is attached on palm or other fingers, wherein this active induction pieces and this passive induction pieces surface contact carry out relative movement, to detect the telecommunications variable signal produced when this active induction pieces contacts this passive induction pieces and carries out relative movement, and then the sensing pointer of controlling calculation machine host; So, can effectively solve wrist carpal tunnel syndrome, and save hand and often come and go action between keyboard and mouse, and make operation more directly simple, thus promote and use computer efficiency.

Description

One is sticked formula Fingers to control piece
Technical field
The present invention is sticked formula Fingers to control piece about one, refer in particular to a kind of utilize finger and finger between mutual movement to the sensing control device of the displacement and vector that provide computing machine steering needle.
Background technology
The indicator device being applied in computing machine is at present popularized as mouse the most, its operation principles mainly utilizes track sensor to detect the displacement signal (displacement and vector) of self, then the picture pointer that machine host controls shown by it as calculated produces corresponding displacement and vector.And traditional mouse track sensor mainly can divide into mechanical type and optical profile type two kinds, mechanical type utilizes ball (rollingball) and desktop touch scrolling to carry out detecting position shifting signal, and optical mouse carrys out inductive displacement signal with optical sensor according to light reflection principle.
Above-mentioned mouse is designed primarily to sensing purposes, therefore action need control displacement and the vector of its reality with the wrist of user mostly, so that user all has wrist and shoulder neck the malaise symptoms such as to ache, when finding that user's hand is moved toward mouse from keyboard outwardly after deliberation, can unconsciously by hand abduction, shoulder is bending can outwards be overturn, except causing neck, shoulder, and outside the injury of arm, repeatedly towards a left side during user's wrist mouse beacon, when moving right, wrist ulna can produce deviation and present the stretching, extension of wide-angle, the stretching, extension of its wide-angle is as Fig. 1, dotted line 90 in Fig. 1 a, shown in 90 ', the canalis carpi of palm is caused to cause common carpal tunnel syndrome (or complication of wrist) because pressure is excessive, be commonly called as mouse hand.
The most basic treatment of general rehabilitation section doctor advised is exactly do not allow wrist produce improper posture mostly, is the impossible task of part for every day to operate for computing machine working clan for living.
Based on the demand, industry develops the various mouse moulding meeting ergonomics in recent years, wish the generation that at all can solve above-mentioned carpal tunnel syndrome, but this problem cannot all be improved, trace it to its cause and be: utilize the mode of operation of wrist mouse beacon all without any change, that is, no matter where mouse moulding is as changed, user needs repeatedly to use wrist to carry out mouse beacon, even if palm changes its posture slightly because of mouse moulding, but still needs during actual rolling mouse repeatedly to use its wrist to control.
How effectively the wrist of mouse beacon to be changed to be pointed by exquisiteness and produce displacement signal, for industry makes great efforts the direction developed; Aforementioned mechanical formula or optical mouse exterior design are a fingerstall moulding can dressed for finger by early stage industry mostly, make fingerstall on user's finger-stall can move at desktop and produce displacement signal (as: No. 443542nd, Taiwan Patent " finger control mouse ").
Then, industry develops one and is directly divided on multiple fingerstall by mouse roller and mouse function, as shown in: No. I259389th, Taiwan Patent and No. M279931st, Taiwan Patent, these differences quoting both cases as proof maximum are: the producing method of displacement signal is different.
No. I259389th, aforementioned Taiwan Patent " finger-worn type control device " its mainly utilize and be located at roller on forefinger to produce displacement signal, and left mouse button, right mouse button are divided on middle finger, during use, only need to utilize thumb to stir the roller of position on forefinger and can produce displacement signal, during for pressing left mouse button or right mouse button, only thumb need be used directly to press to be positioned at the mouse left-right key on middle finger.
No. M279931st, aforementioned Taiwan Patent " glove-type directive controller " its mainly utilize one the sender unit (as infrared transmitter) of sequential filming signal can produce displacement signal, this indicating needle controller is arranged with sender unit and two control pieces on a finger-stall, during use, this sender unit is to computing machine sequential filming signal on desktop, and then formation displacement signal, during for pressing left mouse button or right mouse button, thumb only need be used directly to press control piece on finger-stall.
So, along with the rise of Touch Screen, dealer develops one and " refers to Computer Control Unit " (as: No. I259389th, Taiwan Patent " finger-worn type control device "), it mainly has the fingerstall portion of Touch Screen in the installing of finger upper sleeve through one, in this fingerstall portion, to have entity function key graphic with virtual functions key for Touch Screen, user can thumb click virtual functions shown by this Touch Screen graphic or directly on this Touch Screen surface with the sensing pointer movement on touch control manner controlling calculation machine host screen.
Above-mentioned three patents mainly move at desktop, direct jog dial or produce displacement signal on mini Touch Screen, therefore cause outside each shift length deficiency that can provide, also easily produce misoperation (as false touch finger upper roller or Touch Screen) in typewriting process and cause the difficulty that user edits.
For this reason, finger how is effectively used to control and the situations such as misoperation can not be produced to be problem for the present invention studies intensively as pointing to.
Summary of the invention
Fundamental purpose of the present invention is sticked formula Fingers to control piece providing one, for the sensing pointer of effective controlling calculation machine host, and can not misoperation be produced, this sensing control piece utilizes singlehanded thumb and other arbitrary fingers, or thumb and palm thereof control this sensing index, the carpal tunnel syndrome of wrist can be solved at all, also save hand and often come and go action between keyboard and mouse and reduce bungle, make operation more directly simple, thus promote use computer efficiency.
This sensing control piece comprises: an active induction pieces, and it is attached on thumb on the other hand; At least one passive induction pieces, they are single or multiple is attached on palm or other fingers, wherein this active induction pieces and this passive induction pieces surface contact carry out relative movement, to detect the telecommunications variable signal that when this active induction pieces contacts this passive induction pieces, relative movement produces.
According to aforementioned principal character, wherein this sensing control piece comprises further: a circuit unit, it becomes electric signal to be connected with these induction pieces (active or passive induction pieces), and the telecommunications variable signal (as current potential or electrically conductive signal) relative movement between these induction pieces detected produced passes to this main frame, thus the sensing pointer on synchro control main frame.
According to aforesaid accidental quality, the telecommunications variable signal that wherein this induction pieces detects by this circuit unit compiles, and passes to this main frame, thus the sensing pointer on synchro control main frame.
According to aforesaid accidental quality, the telecommunications variable signal that wherein these induction pieces detect by this circuit unit is converted to digital signal, via the touch-control driver provided in advance in main frame, this digital signal is compiled as a displacement signal again, again this displacement signal is passed to a display chip, finally demonstrate sensing pointer by this display chip output screen signal at computer screen, this sensing index with this initiatively induction pieces and the relative movement of this passive induction pieces and movement.
According to aforesaid accidental quality, wherein do a signal between these induction pieces with this circuit unit in a wired or wireless fashion and be connected.
According to aforesaid accidental quality, wherein this circuit unit and main frame do a signal in a wired or wireless fashion and are connected.
According to aforesaid accidental quality, wherein this circuit unit is located on this passive induction pieces or this active induction pieces, or is directly fixed in wrist.
According to aforesaid accidental quality, wherein this passive induction pieces is provided with displacement induction zone, left button induction zone and right button induction zone.
According to aforesaid accidental quality, wherein these induction pieces are finger cot type, and these induction pieces are sheathed on finger.
According to aforesaid accidental quality, wherein these induction pieces are flexible lamellar body formula, and are attached on finger surface by these induction pieces.
According to aforesaid principal character, wherein this passive induction pieces is relative to be sticked finger, be provided with the first knuckle district corresponding with this finger first knuckle, second knuckle and third knuckle (starting at finger tip), second knuckle district and third knuckle district, and the surface of this first knuckle district side is located in this left button induction zone, and the surface of this third knuckle district side is located in this right button induction zone.
According to aforesaid accidental quality, wherein other positions of non-right button induction zone and non-left button induction zone are located in this displacement induction zone.
According to aforesaid accidental quality, wherein this active induction pieces and this passive induction pieces connect as one.
According to aforesaid accidental quality, wherein the plurality of passive induction pieces comprises: a first passive induction pieces, with displacement induction zone has the second passive induction pieces of left button induction zone, right button induction zone, and this sensing control piece also comprises a circuit unit be connected with this first passive induction pieces and this second passive induction pieces.
According to aforesaid accidental quality, wherein this second passive induction pieces is relative to be sticked finger, be provided with and this finger first knuckle, second knuckle, first knuckle district that third knuckle (starting at finger tip) is corresponding, second knuckle district, third knuckle district, and the surface of the first knuckle district side of this second passive induction pieces is located in this left button induction zone, and the surface of the surface of the second knuckle district side of this second passive induction pieces or the third knuckle district side of the second passive induction pieces is located in this right button induction zone.
According to aforementioned principal character, wherein this active induction pieces and passive induction pieces are made by the fabric being mixed with conductive fiber.
According to aforementioned principal character, wherein this active induction pieces and passive induction pieces are the flexible lamellar body being laid with conducting wire.
According to aforesaid principal character, wherein this active induction pieces or this passive induction pieces are the assembly of corresponding start, that is the actuator function of this active induction pieces or this passive induction pieces can be exchanged mutually.
Accompanying drawing explanation
Fig. 1 is the palm and the wrist posture figure that use conventional mouse;
Fig. 1 a is the palm and the wrist top view that use conventional mouse;
Fig. 2 is that first embodiment of the invention is sticked the schematic perspective view of formula Fingers to control piece, and forefinger and thumb are located in display initiatively induction pieces and passive induction pieces respectively;
Fig. 2 a is that many general fibers of first embodiment of the invention and metallic conductor mutual twisting of twisting thread is wound around the schematic diagram of composition conductive region;
Fig. 3 is that first embodiment of the invention is sticked the using state schematic perspective view of formula Fingers to control piece, and the thumb of initiatively induction pieces is worn in display, and in the left button induction zone of passive induction pieces, contact produces click action;
Fig. 4 is that first embodiment of the invention is sticked formula Fingers another using state schematic perspective view to control piece, and the thumb of initiatively induction pieces is worn in display, and in the right button induction zone of passive induction pieces, contact produces click action;
Fig. 5 is that first embodiment of the invention is sticked the again using state schematic perspective view of formula Fingers to control piece, and the thumb that initiatively induction pieces is worn in display contact movement on passive induction pieces;
Fig. 6 is that first embodiment of the invention is sticked the schematic perspective view of formula Fingers to another angle of control piece, and the thumb that initiatively induction pieces is worn in display contact movement on passive induction pieces;
Fig. 7 is that first embodiment of the invention is sticked the schematic perspective view of formula Fingers to control piece, and display is worn initiatively induction pieces and passive induction pieces and connected as one;
Fig. 8 is that second embodiment of the invention is sticked the schematic perspective view of formula Fingers to control piece, and initiatively induction pieces, the first passive induction pieces and the second passive induction pieces are worn respectively in forefinger, middle finger and thumb in display.
Description of reference numerals: initiatively induction pieces-10; Passive induction pieces-20; Left button induction zone-21; Right button induction zone-22; Displacement induction zone-23; Circuit unit-30; First passive induction pieces-40; Displacement induction zone-41; Second passive induction pieces-50; Left button induction zone-51; Right button induction zone-52; First knuckle district-61; Second knuckle district-62; Third knuckle district-63; First knuckle district-71; Second knuckle district-72; Third knuckle district-73; General fiber-81; Metallic conductor-82; Conductive region-A.
Embodiment
According to above-mentioned purpose, hereby lift preferred embodiment and coordinate diagram to be illustrated the technology used in the present invention means and effect thereof.
Refer to Fig. 2, Fig. 2 is that first embodiment of the invention is sticked the schematic perspective view of formula Fingers to control piece, and display initiatively induction pieces and passive induction pieces is attached at forefinger and thumb respectively.
A kind of first embodiment of formula Fingers to control piece that be sticked provided by the invention, it is for a fingerstall pattern when practical application (but also can be tool flexible strip build formula), be used for controlling the sensing pointer (not shown) of online main frame, this control device only needs to utilize singlehanded thumb and other the arbitrary fingers with hand, or thumb and with the palm of hand and the sensing pointer of controllable computer main frame, effective replacement conventional mouse, and then solve and use outside the carpal tunnel syndrome that produces of mouse, also hand be can save simultaneously and often keyboard typing and mouse beacon come and gone, effective enhancement work efficiency, this sensing control piece comprises: an active induction pieces 10, it is set on thumb on the other hand, at least one passive induction pieces 20, on the palm that they are single or multiple is set on this hand or other fingers, and a circuit unit 30, online (as shown in Figure 2), (this active induction pieces above-mentioned or this passive induction pieces were the assembly of corresponding start for itself and this passive induction pieces 20 (or active induction pieces 10), that is the actuator function of this active induction pieces or this passive induction pieces can be exchanged mutually).
Above-mentioned this active induction pieces 10 and the surface contact of this passive induction pieces 20 go forward side by side line displacement time, the telecommunications variable signals such as the current potential making this passive induction pieces 20 produce according to itself and initiatively induction pieces 10 or electrically conductive signal transfer to circuit unit 30, these telecommunications variable signals are also compiled as displacement signal (namely the telecommunications variable signal that passive induction pieces 20 detects compiles by this circuit unit 30) by this circuit unit 30, then by this circuit unit 30, this displacement signal are passed to this main frame synchro control sensing pointer (not shown), or this active induction pieces 10 and the surface contact of this passive induction pieces 20 go forward side by side line displacement time, the telecommunications variable signal that this passive induction pieces 20 surface has a simulation exports (as potential change signal, or resistance variations signal etc.), the telecommunications variable signal of this simulation is converted to by this circuit unit 30 digital signal that computing machine can receive again, via the touch-control driver provided in advance in main frame, this digital signal is compiled as a displacement signal again, again this displacement signal is passed to a display chip, finally demonstrate sensing pointer by this display chip output screen signal at computer screen, this sensing index with this initiatively induction pieces 10 and contact relative movement of this passive induction pieces 20 and mobile.
This active induction pieces 10 (or passive induction pieces 20) with do a signal between circuit unit 30 in a wired or wireless fashion and be connected, do not limited in the present invention.The signal of aforementioned wireless mode connects, (IEEE is writing a Chinese character in simplified form of InstituteElectricalandElectronicsEngineers to include bluetooth (Bluetooth), bee colony network (ZigBee), WiFi, 3G, 3.5G, 4G or standard IEEE 802.11 wireless transport module, Chinese is institute of electrical and electronic engineers) etc., do not limited in the present invention.
In above-mentioned formation, please refer to Fig. 2 a, this active induction pieces 10, passive induction pieces 20 are provided with conductive region A, and this conductive region A is wound around is formed by many general fibers 81 and metallic conductor 82 mutual twisting of twisting thread, or is attached on conductive region A by many conductor wires.
Please again consult Fig. 2 and Fig. 3, Fig. 3 is that first embodiment of the invention is sticked the using state schematic perspective view of formula Fingers to control piece, and the thumb of initiatively induction pieces is worn in display, and in the left button induction zone of passive induction pieces, contact produces click action.
As shown in these figure, active induction pieces 10 of the present invention and this passive induction pieces 20, in the present embodiment for conductive fiber (as shown in Figure 2 a), this conductive fiber composition also mutual induction contact area each other, use the effect reaching and control to point to index, wherein this passive induction pieces 20 surface is distinguished and is had at least three induction zones, is respectively the track sensor that left button induction zone 21, right button induction zone 22 and displacement induction zone 23 (as shown in Figure 2) replace conventional mouse left button, right mouse button and mouse respectively.
This passive induction pieces 20 is relative to worn finger, be provided with the first knuckle district 61 corresponding with this finger first knuckle (starting at finger tip), the second knuckle district 62 corresponding with this finger second knuckle, the third knuckle district 63 corresponding with this finger third knuckle, this left button induction zone 21 is used for responding to contact point number of times within the unit interval of initiatively induction pieces 10 and is compiled as single through circuit unit 30 and clicks or repeatedly click signal, because its frequency of utilization is higher, therefore, in the present embodiment, the surface of first knuckle district 61 side in this passive induction pieces 20 is worn in this left button induction zone 21.
Refer to Fig. 4, Fig. 4 is that first embodiment of the invention is sticked formula Fingers another using state schematic perspective view to control piece, and the thumb of initiatively induction pieces is worn in display, and in the right button induction zone of passive induction pieces, contact produces click action.
As shown in the figure, right button induction zone 22 of the present invention is used for responding to contact point number of times within the unit interval of initiatively induction pieces 10 and is compiled as single through circuit unit 30 and clicks or repeatedly click action, because its frequency of utilization is lower, therefore the surface of third knuckle district 63 side of this passive induction pieces 20 is located in this right button induction zone 22 in the present embodiment.
Refer to Fig. 5 and Fig. 6, Fig. 5 is that first embodiment of the invention is sticked the again using state schematic perspective view of formula Fingers to control piece, and the thumb that initiatively induction pieces is worn in display contact movement on passive induction pieces.Fig. 6 is that first embodiment of the invention is sticked the schematic perspective view of formula Fingers to another angle of control piece, and the thumb that initiatively induction pieces is worn in display contact movement on passive induction pieces.
The induction initiatively displacement that slides in its surface contact mouse of induction pieces 10 and vector is responsible in this displacement induction zone 23, region needed for it is larger, in the present embodiment, the surface of second knuckle district 62 side of this passive induction pieces 20 is located in this displacement induction zone 23, or other positions of non-right button induction zone 22 and non-left button induction zone 21 are located in this displacement induction zone 23.
Fig. 7 is that first embodiment of the invention is sticked the schematic perspective view of formula Fingers to control piece, and display is worn initiatively induction pieces and passive induction pieces and connected as one.
Circuit unit 30 of the present invention is not defined as its pattern, as long as be convenient to wear or use, this circuit unit 30 can be wristband type universal serial and is worn on wrist or is combined as a whole (not shown) with this passive induction pieces, and the present invention is not limited to.
In addition, the present invention initiatively induction pieces 10 and passive induction pieces 20 does not limit and must separately design, also active induction pieces 10 and passive induction pieces 20 can be connected as one, so that storage is dressed, as for, the actual formation material of aforesaid active induction pieces 10 or passive induction pieces 20, do not limited in the present invention, this active induction pieces 10 and passive induction pieces 20 can be conductive fiber, or this passive induction pieces 20 is made up of pliability touch pad, or this passive induction pieces 20 is made up of flexible touch-control screen panel, or this active induction pieces 10 is made up of flexible lamellar body with passive induction pieces 20, and many electric wires that are sticked on this lamellar body.
This pliability touch pad can divide into flexible capacitive touch pad or pliability resistive touch plate according to its principle of induction, when active induction pieces 10 touch one for the passive induction pieces of pliability touch pad time, the telecommunications variable signal that this passive induction pieces 20 surface has a simulation exports (as capacitance signal variable signal or resistance signal change), the telecommunications variable signal of this simulation is converted to by this circuit unit 30 digital signal that computing machine can receive again, via the touch-control driver in main frame, this digital signal is compiled as a displacement signal again, again this displacement signal is passed to a display chip, finally demonstrate sensing pointer by this display chip output screen signal at computer screen, this sensing index with this initiatively induction pieces 10 and contact relative movement of this passive induction pieces 20 and mobile.
This flexible touch-control screen panel can divide into flexible capacitive touch-screen panel or pliability resistance touch screen panel according to its principle of induction, when active induction pieces 10 touch one for the passive induction pieces of flexible touch-control screen panel time, the telecommunications variable signal that this passive induction pieces 20 surface has a simulation exports (as capacitance signal variable signal or resistance signal change), the telecommunications variable signal of this simulation is converted to by this circuit unit 30 digital signal that computing machine can receive again, via the touch-control driver in main frame, this digital signal is compiled as a displacement signal again, again this displacement signal is passed to a display chip, finally demonstrate sensing pointer by this display chip output screen signal at computer screen, this sensing index with this initiatively induction pieces 10 and contact relative movement of this passive induction pieces 20 and mobile.
Wherein, when this passive induction pieces 20 is a pliability resistance touch screen panel, the top layer of this passive induction pieces 20 is a polyester sheet, there is inside it conducting metal film, this passive induction pieces 20 bottom is liquid crystal display (LCD), the glass plate of coated with conductive material on this display, wherein have additional double-layer separate interlayer between this glass plate and polyester sheet, the separate layer arranged along X-axis is used for responding to X axis amount, the separate layer arranged along Y-axis is used for responding to Y-axis amount, two separate layers can be forced together when active induction pieces 10 touches passive induction pieces 20, X-axis and Y-axis coordinate can be responded to.
Wherein, when this passive induction pieces 20 is a flexible capacitive screen panel, this flexible capacitive screen panel can use by the soft display center (FlexibleDisplayCenter of State of Arizona, US state university, FDC) the Touch Screen active matrix displays (touchscreenactivematrixdisplay) developed, this screen is soft and the flexual capacitive screen panel of tool, and this is for using soft screen to be passive induction pieces 20.Realize the example of formula Fingers to control piece that be sticked of the present invention.
Please again consult Fig. 8, Fig. 8 is that second embodiment of the invention is sticked the schematic perspective view of formula Fingers to control piece, and initiatively induction pieces, the first passive induction pieces and the second passive induction pieces are worn respectively in forefinger, middle finger and thumb in display.
Being illustrated in figure 8 second embodiment of the invention provides one to be sticked formula Fingers to control piece, be used for controlling the sensing pointer (not shown) of online main frame, the present invention do not limit to two fingers control point to index, also can be three fingers or four fingers, therefore the present embodiment and the first embodiment maximum difference are: the second embodiment is by (the left button induction zone 21, three induction zones described in the first embodiment, right button induction zone 22 and displacement induction zone 23) be divided on two passive induction pieces, be respectively the first passive induction pieces 40 and the second passive induction pieces 50, in more detail: this sensing control piece at least comprises: one is located at the active induction pieces 10 on thumb, the one first passive induction pieces 40 with displacement induction zone 41, one has left button induction zone 51, the passive induction pieces 50 in right button induction zone 52 second, and one and this first passive induction pieces 40 and the online circuit unit 30 (as shown in Figure 8) of the second passive induction pieces 50, wherein this active induction pieces 10 at this first passive induction pieces 40 provide surface, displacement induction zone 41 to carry out contact displacement, make the current potential that this first passive induction pieces 40 produces with active induction pieces 10 according to it, electric capacity or electrically conductive signal transfer to circuit unit 30 to carry out being compiled as displacement signal, transfer to this main frame synchro control by this circuit unit 30 again and point to pointer (not shown).
As shown in the figure, the left button induction zone 51 on the second passive induction pieces 50 of the present invention and right button induction zone 52 are used for responding to contact point number of times within the unit interval of initiatively induction pieces 10 and are compiled as single through circuit unit 30 and click or repeatedly click action.
This second passive induction pieces 50 is relative to overlapped finger, be provided with the first knuckle district 71 corresponding with this finger first knuckle (starting at finger tip), the second knuckle district 72 corresponding with this finger second knuckle (starting at finger tip), the third knuckle district 73 corresponding with this finger third knuckle (starting at finger tip), this left button induction zone 51 is used for responding to contact point number of times within the unit interval of initiatively induction pieces 10 and is compiled as single through circuit unit 30 and clicks or repeatedly click signal, because its frequency of utilization is higher, therefore, in the present embodiment, the surface of first knuckle district 71 side of this second passive induction pieces 50 is located in this left button induction zone 51.And right button induction zone 52 due to its frequency of utilization lower, in the present embodiment, the surface of the surface of second knuckle district 72 side of this second passive induction pieces 50 or third knuckle district 73 side of this second passive induction pieces 50 is located in this right button induction zone 52.
In sum, one provided by the present invention is sticked formula Fingers to control piece, can effectively controlling calculation machine host sensing pointer and can not misoperation be produced, this sensing control piece utilizes singlehanded thumb and other arbitrary fingers, or thumb and palm thereof control this sensing index, the carpal tunnel syndrome of wrist can be solved at all, also save hand and often come and go action between keyboard and mouse and reduce bungle, make operation more directly simple, thus promote use computer efficiency.
The present invention is described in more detail by above-mentioned preferred embodiment; but the present invention is not limited to above-mentioned illustrated embodiment; within the scope of all technological thoughts disclosed in the present invention, these structures are made various changes and modified still belong to protection scope of the present invention.

Claims (16)

1. the formula that is sticked Fingers is to a control piece, and it, for effectively controlling the sensing pointer of a main frame, is characterized in that, this sensing control piece comprises:
One active induction pieces, it is attached on thumb on the other hand;
At least one passive induction pieces, on its palm being attached at this hand or other fingers, wherein this active induction pieces and this passive induction pieces surface contact carry out relative movement, with detect this passive induction pieces to contact with this active induction pieces and relative movement time the telecommunications variable signal that produces.
2. the formula Fingers that is sticked according to claim 1 is to control piece, and wherein this sensing control piece comprises further: a circuit unit be connected with this passive induction pieces or active induction pieces signal.
3. the formula Fingers that is sticked according to claim 2 is to control piece, wherein this circuit unit this detected passive induction pieces is contacted with this active induction pieces and relative movement time telecommunications variable signal carry out compiling and pass to this main frame, thus the sensing pointer on synchro control main frame.
4. the formula Fingers that is sticked according to claim 2 is to control piece, wherein detected telecommunications variable signal is converted to digital signal by this circuit unit, via the touch-control driver provided in advance in main frame, this digital signal is compiled as a displacement signal again, again this displacement signal is passed to a display chip, finally demonstrate sensing pointer by this display chip output screen signal at computer screen, this sensing index with this initiatively induction pieces and the relative movement of this passive induction pieces and movement.
5. the formula Fingers that is sticked according to claim 2 is to control piece, wherein this passive induction pieces or this initiatively induction pieces, and does a signal between circuit unit in a wired or wireless fashion and is connected.
6. the formula Fingers that is sticked according to claim 2 is to control piece, wherein does a signal between this circuit unit with main frame in a wired or wireless fashion and is connected.
7. the formula Fingers that is sticked according to claim 2 is to control piece, and wherein this circuit unit is located on a bracelet.
8. the formula Fingers that is sticked according to claim 1 is to control piece, and wherein this passive induction pieces is provided with displacement induction zone, left button induction zone and right button induction zone.
9. the formula Fingers that is sticked according to claim 8 is to control piece, wherein this passive induction pieces is relative to be sticked finger, be provided with the first knuckle district corresponding with the finger first knuckle of starting at finger tip, the second knuckle district corresponding with the finger second knuckle of starting at finger tip, the third knuckle district corresponding with the finger third knuckle of starting at finger tip, and the surface of the first knuckle district side of this passive induction pieces is located in this left button induction zone, and the surface of the third knuckle district side of this passive induction pieces is located in this right button induction zone, the surface of the second knuckle district side of this passive induction pieces is located in this displacement induction zone.
10. the formula Fingers that is sticked according to claim 8 is to control piece, and wherein other positions of non-right button induction zone and non-left button induction zone are located in this displacement induction zone.
The 11. formula Fingers that are sticked according to claim 1 are to control piece, and wherein this active induction pieces is sticked on the thumb of this hand.
The 12. formula Fingers that are sticked according to claim 1 are to control piece, and wherein this active induction pieces and this passive induction pieces connect as one.
The 13. formula Fingers that are sticked according to claim 1 are to control piece, wherein the plurality of passive induction pieces comprises: a first passive induction pieces, with displacement induction zone has the second passive induction pieces of left button induction zone, right button induction zone, and this sensing control piece also comprises a circuit unit be connected with this first passive induction pieces and this passive induction pieces or this active induction pieces.
The 14. formula Fingers that are sticked according to claim 13 are to control piece, wherein this second passive induction pieces is relative to overlapped finger, be provided with the first knuckle district corresponding with the finger first knuckle of starting at finger tip, the second knuckle district corresponding with this finger second knuckle, the third knuckle district corresponding with this finger third knuckle, and the surface of the first knuckle district side of this second passive induction pieces is located in this left button induction zone, and the surface of the surface of the second knuckle district side of this second passive induction pieces or the third knuckle district side of the second passive induction pieces is located in this right button induction zone.
The 15. formula Fingers that are sticked according to claim 1 are to control piece, and wherein this active induction pieces and passive induction pieces are made by conductive fiber.
The 16. formula Fingers that are sticked according to claim 1 are to control piece, and wherein this active induction pieces or passive induction pieces are fingerstall type.
CN201410225284.4A 2014-05-26 2014-05-26 One is sticked formula Fingers to control piece Pending CN105224100A (en)

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CN105224100A true CN105224100A (en) 2016-01-06

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109254648A (en) * 2017-07-13 2019-01-22 范博勋 The finger control device of Bluetooth function can be connected
CN110209265A (en) * 2019-04-04 2019-09-06 北京理工大学 A kind of input system based on finger touching detection
CN111657609A (en) * 2020-07-15 2020-09-15 宁波韧和科技有限公司 Intelligent touch glove, hand posture detection device, virtual keyboard and control terminal

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109254648A (en) * 2017-07-13 2019-01-22 范博勋 The finger control device of Bluetooth function can be connected
CN110209265A (en) * 2019-04-04 2019-09-06 北京理工大学 A kind of input system based on finger touching detection
CN111657609A (en) * 2020-07-15 2020-09-15 宁波韧和科技有限公司 Intelligent touch glove, hand posture detection device, virtual keyboard and control terminal

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