CN207557889U - Convenient for the different axis electronic touch controller of gripping - Google Patents
Convenient for the different axis electronic touch controller of gripping Download PDFInfo
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- CN207557889U CN207557889U CN201721291943.XU CN201721291943U CN207557889U CN 207557889 U CN207557889 U CN 207557889U CN 201721291943 U CN201721291943 U CN 201721291943U CN 207557889 U CN207557889 U CN 207557889U
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- touch
- holding
- holding rod
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- different axis
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Abstract
The utility model is about a kind of different axis electronic touch controller convenient for holding, include a holding rod, an assembly, a touch-control core, a sensor and an integrated circuit plate, the holding rod has a different axle portion, the assembly is connected to the different axle portion of the holding rod, the touch-control core penetrates the holding rod, the sensor and the integrated circuit plate are set in the holding rod, and be electrically connected, which corresponds to the sensor;The utility model when holding can finger easily rest on the support portion of holding rod, to mitigate the pressure of palm grip, and achieve the effect that easily to hold to use, and it is acted when passing through the touch-control core stress with the sensor, sense the integrated circuit plate to be driven to generate, to generate the effect of touch-control writing;The touch-control core can also be arranged on the electric current of the battery module of hollow lever one end, be transmitted to the conductive touch-control core of tool with integrated circuit plate or be incorporated in the conductive contact of touch-control core one end, touch-control core is allow to be used on capacitance type touch control screen.
Description
Technical field
This Shi Xin Xing Wataru and a kind of numerical digit touch-control tool, espespecially a kind of different axis electronic touch controller convenient for holding.
Background technology
Tradition for many years since the writing that holds a pen has been human development civilization with drawing reaches accurate with hand holding tool
The actions such as writing, drawing, engraving, be presentation the most ultimate attainment in people's class a operation hand execution, to modern age, due to electricity
The sudden growth of sub- touch technology, passing writing, draw tool have also been progressively transformed into numerical digit touch controller, and instead of
Writing, the drawing behavior of traditional type.
In order to which user to be allowed can swimmingly grasp, writing, drawing etc. are various fine to be moved existing numerical digit touch controller
To make, aforementioned tool usually can all copy existing tool design as direct rod shape, with sharp holding operation, so, everyone is in one's hands
When holding the tool of direct rod shape, a variety of different grips are also derived, to cater to everyone different habits.
However, it is when showing accurate action, just more excessively to exert a force, be easy to cause gripping appearance instead that hand, which is cured,
Gesture excessively to pressure at finger and tiger's jaw, is more under prolonged operation, is easy for causing the burden of hand, and then produce duty
Industry injures.
Further, since existing numerical digit touch controller receives the different limitation of numerical digit touch technology of use, it is therefore, existing
Numerical digit touch controller be directed in existing design and can not be shared using the touch screens of different touch technologies, if as replacing
Touch screen, it is necessary to the corresponding numerical digit touch controller of technology is replaced with, to consumer and comparable puzzlement.
Utility model content
It is designed in view of aforementioned existing numerical digit touch controller for direct rod shape, when gripping be easy to cause excessive force or even generates
Employment injuries and can not be on the general touch screen using different technologies, and the missing needed to constantly change, the utility model
Main purpose be to provide it is a kind of meet ergonomics, easily hold, easily-controllable button and can be general different axis electronic touch
Device.
The utility model with technological means be to provide a kind of different axis electronic touch controller convenient for holding, including:
One holding rod for the hollow lever in irregular shape and with both ends, is formed in wherein one end of the holding rod
One different axle portion of irregular curved shape, the holding rod then uprightly extend to form a bar portion along the different axle portion towards the other end, should
Different axle portion is set with the bar portion for different axis;
One assembly is incorporated into the different axle portion of the holding rod;
One touch-control core is arranged in the assembly and the holding rod, and forms a touch-control end in one end, and the other end is then formed
An elongated body of rod, the touch-control core penetrate the assembly with the body of rod, and the touch-control end of the touch-control core is made to stretch out in the assembly;
One sensor is set to the inside of the holding rod, the position of the sensor and the position of the body of rod of the touch-control core
It is corresponding, and the touch-control core abuts against the sensor with body of rod correspondence;
One integrated circuit plate, is set to the inside of the holding rod, and is electrically connected at the sensor, which passes through
Pressure signal collected by the touch-control core can be transmitted to the integrated circuit plate, make the integrated circuit plate reaction of formation, and
The touch-control end of the touch-control core generates touch-control message.
Preferably, the different axis electronic touch controller convenient for gripping, wherein, which is equipped with a button, this is pressed
Key is arranged on the holding rod in a pressing way and correspondence presses on the integrated circuit plate.
Preferably, the different axis electronic touch controller convenient for gripping, wherein, the one end of the rod of the holding rod is equipped with can
One battery module of charging, the electric current of the battery module are the touch-control core to be allow to exist to the touch-control core through integrated circuit plate
It is used on capacitance type touch control screen.
Preferably, the different axis electronic touch controller convenient for gripping, wherein, one end of the battery module is further set
There is a power supply base.
Preferably, the different axis electronic touch controller convenient for gripping, wherein, in hollow lever one end of a holding rod
Equipped with a modular plug, pluggable power input socket is provided power supply.
Preferably, the described different axis electronic touch controller convenient for holding, which is characterized in that one end of the battery module into
One step is equipped with a power supply base one end and is equipped with one for plug.
Preferably, the different axis electronic touch controller convenient for gripping, wherein, the touch-control core is further in the touch-control end
With reference to a conductive contact, the conductive contact is using plastic cement compound, rubber or rubber compound, animal origin or synthetic fibers
Material is made, and touch-control core is conductive herein.
Preferably, the different axis electronic touch controller convenient for gripping, wherein, which can be coniform, circle
Arcuation, cone-shaped or cylindric, flat etc..
Preferably, the different axis electronic touch controller convenient for gripping, wherein, further comprise there is a coil case, it should
Coil case is arranged between the holding rod and the assembly, and is conductively coupled to the sensor and the integrated circuit plate.
Preferably, the described different axis electronic touch controller convenient for holding, wherein, the coil case include a cylinder and
Be wound with a conductive coil in the periphery of the cylinder, which is arranged in the cylinder of the coil case, the cylinder use have with
The aitiogenic material of miscellaneous equipment (such as magnetism, graphite, electric conductor or special material) is formed.
Preferably, the described different axis electronic touch controller convenient for holding, wherein, the holding rod be further provided with one with
On support portion.
Preferably, the different axis electronic touch controller convenient for gripping, wherein, each support portion is section in curved arc shape
Thin plate is simultaneously obliquely extended the lateral wall for being formed in the different axle portion, and each support portion is formed with a groove.
Preferably, the different axis electronic touch controller convenient for gripping, wherein, radian of the button according to human finger
Form the recess to lower recess, convenient finger abdomen or the finger back of the body are against and by pressing in a manner of lever.
Preferably, the different axis electronic touch controller convenient for gripping, wherein, there are two symmetrical for holding rod tool
The support portion of setting.
Preferably, the different axis electronic touch controller convenient for gripping, wherein, it is opposite which is arranged on the holding rod
The position of different axle portion upward, to the left or to the right.
Preferably, the different axis electronic touch controller convenient for gripping, wherein, it is opposite which is arranged on the holding rod
The lower position of the different axle portion upward.
The utility model utilize provided convenient for the different axis electronic touch controller that holds, the effect of can obtaining, promotes packet
It includes:
1st, the utility model has the bar portion with different axle portion in the setting of different axis in holding rod, and the finger grip of user is allowed to exist
Between different axle portion and bar portion, finger nature pendulum can be made without in addition exerting a force, user's finger can be mitigated in gripping
Pressure, can significantly mitigate the pressure that finger is held, and be effectively prevented from injury of the Overexertion to finger, can also allow makes
The wrist of user, arm, shoulder nape are more comfortable and reduce tired.
2nd, the utility model can be allowed user that preferably viewing can be presented in touch-control and be regarded by the design of different axle portion
Open country, also, can also allow user that can make different axle portion and electronic plane shape no matter when electronic plane horizontal or vertically-arranged operate
Into subvertical state, be more conducive to sensor maintains sensitive touch-control effect.
3rd, the utility model has the setting of button on holding rod, and button can coordinate integrated electricity with multiple angles
Angular compliance of the road plate in holding rod, directly movably compresses integrated circuit plate, in addition to enabling button in a manner of lever
The position operated in ergonomics is met is designed, user can also be allowed enough to arrange in pairs or groups sensor to determine when to act on touch-control and not touch
The function of control is more flexible convenient in touch-control operation.
Description of the drawings
Fig. 1 is the three-dimensional exploded view of first preferred embodiment of the utility model.
Fig. 2 is the main view sectional view of first preferred embodiment of the utility model.
Fig. 3 is the first preferred embodiment holding rod of the utility model and the local main view sectional view of assembly.
Fig. 4 is the various implementation state diagrams of the first preferred embodiment touch-control core of the utility model.
Fig. 5 is the action schematic diagram that first preferred embodiment of the utility model operates on the electronic plane of horizontal.
Fig. 6 is the action schematic diagram that first preferred embodiment of the utility model operates on the electronic plane of vertically-arranged.
Fig. 7 is the three-dimensional exploded view of second preferred embodiment of the utility model.
Fig. 8 is the main view sectional view of second preferred embodiment of the utility model.
Fig. 9 is that the stereoscopic schematic diagram that button can be set on demand is presented in second preferred embodiment of the utility model.
Figure 10 is the side elevational cross-section schematic diagram of the second preferred embodiment key position of the utility model.
Figure 11 is the second preferably implementation of the utility model with right hand gripping and the use state diagram of operation button.
Figure 12 is the second preferably implementation of the utility model with right hand gripping and the use state diagram of operation button.
Figure 13 is second appearance diagram that preferably implementation button is set upward of the utility model.
Figure 14 be operation diagram 13 the second preferred embodiment in horizontal electronic plane use state diagram.
Figure 15 be operation diagram 13 the second preferred embodiment in vertically-arranged electronic plane use state diagram.
Figure 16 is the stereogram of the third preferred embodiment of the utility model.
Figure 17 is that the stereoscopic schematic diagram that button can be set on demand is presented in the third preferred embodiment of the utility model.
Figure 18 is the third preferred embodiment of the utility model with the use state diagram of left-handed.
Figure 19 is the use state diagram that the third preferred embodiment of the utility model is held with the right hand.
Figure 20 is the stereoscopic schematic diagram that the third preferred embodiment button of the utility model is set upward.
Figure 21 is the front view that the third preferred embodiment button of the utility model is set upward.
Figure 22 is the bottom view that the third preferred embodiment button of the utility model is set upward.
Figure 23 is the vertical view that the third preferred embodiment button of the utility model is set upward.
Figure 24 is with the use state diagram of the third preferred embodiment of right hand holding operation Figure 20.
Figure 25 is with the use state diagram of the third preferred embodiment of left-handed operation diagram 20.
Figure 26 is shows with the third preferred embodiment of right hand holding operation Figure 20 in the use state of the electronic plane of horizontal
It is intended to.
Figure 27 is shows with the third preferred embodiment of left-handed operation diagram 20 in the use state of the electronic plane of horizontal
It is intended to.
Specific embodiment
Coordinate the preferred embodiment of schema and the utility model below, it is predetermined real to reach that the utility model is expanded on further
The technological means taken with novel purpose.
A kind of different axis electronic touch controller convenient for holding provided by the utility model, please refers to Fig.1 to shown in Fig. 6
First embodiment, the different axis electronic touch controller A include a holding rod 10, an assembly 20, a touch-control core 30, a sensor
40th, an integrated circuit plate 50 and a protection cap 60.
As shown in Figures 1 and 2, which is in the hollow lever of irregular shape and has both ends, in the holding rod 10
Wherein one end form a different axle portion 11 of irregular curved shape, the holding rod 10 is then straight towards the other end along the different axle portion 11
It is vertical to extend to form a bar portion 12, wherein, which is set with the bar portion 12 for different axis, make the different axle portion 11 axle center and
Shape has angle between the axle center of the bar portion 12, and cricoid flange 121 is formed in the end of the bar portion 12.
As shown in Figures 1 and 2, which is the different axle portion 11 for detachably or being integrally incorporated into the holding rod 10,
The assembly 20 is irregular hollow housing, and one end of the assembly 20, which offers, is connected to an internal assembly hole 21,
11 profile of different axle portion that the holding rod 10 is then corresponded in the other end of the assembly 20 is convexly equipped with an installation edge 22, the assembly
20 are fastened on the different axle portion 11 of the holding rod 10 with the installation edge 22 correspondence.
Shown as shown in Figure 2, Figure 3 and Figure 4, which forms a touch-control end 31, the other end for long element and in one end
An elongated body of rod 32 is then formed, which is the assembly hole 21 by the assembly 20 with the body of rod 32, makes the touch-control end
31 stretch out in except the assembly 20, and the touch-control end 31 of the touch-control core 30 can be the appearance such as arc-shaped, cone-shaped, and the touch-control
Core 30 can be conductive material or permeability magnetic material, also further can be combined with a conductive contact 33, the conduction in the touch-control end 31
Contact 33, which can rub, intends the shape of traditional pencil for generating touch function and using such as plastic cement compound, rubber or rubber chemical combination
The materials such as object, animal origin or synthetic fibers enable the touch-control core 30 to reach conductive or magnetic conduction through conductive contact 33 is replaced
Effect, and then the feel rubbed when drawing up true writing on electronic touch screen, the conductive contact 33 also can as shown in figure 4, according to
The Demand Design of user is the configuration designs such as coniform, arc-shaped, cone-shaped or cylindric, flat, therefore, user's energy
Enough touch-control cores 30 by selecting with conduction or non-conductive material, it is various using such as resistance sense of different touch technologies to be applicable in
Should, the touch screen of capacitive sensing or electromagnetic induction or further collocation conductive contact 33 reaches and various touch screens sense
Effect.
As shown in Figures 1 and 2, the sensor 40 and the integrated circuit plate 50 are set to the inside of the holding rod 10, the biography
The position of sensor 40 is corresponding with the position of the body of rod 32 of the touch-control core 30, and the touch-control core 30 correspondence is made to abut against the sensor
40, when the touch-control core 30 is under pressure, pressure signal can be transmitted to the sensor 40, the sensor 40 and the integrated circuit
For plate 50 to be electrically connected, which, in the appropriate location of the integrated circuit plate 50, makes 40 institute of sensor with wire welding
The pressure signal being collected into can further be transmitted to the integrated circuit plate 50, make the integrated circuit plate 50 generation electric current or electricity
Magnetic, and the electronic touch screen interreaction contacted, and the effect of touch-control is generated at the touch-control end 31 of the touch-control core 30, the protection
Lid 60 then corresponds to the flange 121 for being covered on the holding rod 10, enters dirt to avoid the inside of the holding rod 10, and lid also can be used for close should
Assembly 20 protects the touch-control core 30.
As shown in 3 figures, which can be also designed to a chargeable battery module by the bar portion 12 of the holding rod 10
60A, and battery module 60A one end is equipped with a power supply base 60A1 or one for plug 60A2;The bar portion 12 1 of the holding rod
Cooperation is equipped with the socket 60A1 interworkings of a modular plug V1 and battery module 60A or will be designed to one in 12 one end of bar portion in end
Jack module V2, provides and is powered plug 60A2 insertion input powers, and the electric current by battery module 60A is through the collection
The conductive touch-control core 30 of tool is transmitted into circuit board 50, the touch-control core 30 is allow to be used on capacitance type touch control screen.
The occupation mode of the utility model first embodiment as shown in figures 2 and 5, user hold the holding rod 10 and
Touch-control is carried out on the electronic plane T of one horizontal, 11 top of different axle portion of the holding rod 10 is resisted against due to the use of the finger of person,
Conventional finger can be changed and hold the mode for preventing rubber sleeve, make finger slight and without contributing be resisted against the different axle portion 11, energy
It is enough significantly to mitigate the pressure that finger is held, and be effectively prevented from injury of the Overexertion to finger, it can also allow the hand of user
Wrist, arm, shoulder nape are more comfortable and reduce tired, contribute to that user is more wholwe-hearted, cosily works.
Further, since the bar portion 12 of the holding rod 10 is slightly inclined, and make the different axle portion 11 of the holding rod 10, the assembly
20 and the touch-control core 30 and electronic plane T close to vertical, the touch-control core 30 is contributed to react more sensitive with the sensor 40,
And designed by the different axle portion 11 of the holding rod 10, writing when can be in touch-control lower section (right of electronic plane T)
A viewing visual field S is presented, allows user at any time it can be seen that being tied caused by the touch-control core 30 and electronic plane T touch-controls at present
Fruit without elbow or stops pen confirmation, and work posture can be allowed more healthy, and working efficiency is also effectively promoted.
As shown in fig. 6, in a state that electronic touch screen T1 erects use, user can be by rotating the gripping
The angle S1 of bar 10, allow the different axle portion 11 position downward, and the viewing visual field S is allowed to be formed in the top of different axle portion 11
Position, due to being designed using different axis, so user can be held angle with the most comfortable and need slightly to rotate this practicality according to the visual field
Novel angle S1 can adjust the visual field that user watches screen T1, during basipetal touch-control, remain on energy
The touch-control core 30 is enough kept to form vertical state with electronic plane T, and persistently maintains sensitive touch-control effect.
The second embodiment of the utility model is please referred to shown in Fig. 7 to Figure 15, roughly the same with first embodiment, difference
It is, which further comprises thering is a coil case 70 and a button 80.
As shown in Figures 7 and 8, which is arranged between holding rod 10A and the assembly 20, and electrically connects
Be connected to the integrated circuit plate 50, which is arranged in inside the coil case 70, the coil case 70 include a cylinder 71 with
And a conductive coil 72 is wound in the periphery of the cylinder 71, the cylinder 71 use has and the aitiogenic material of miscellaneous equipment
Material is formed (such as magnetism, stone mill, electric conductor or special material).The touch-control core 30 is arranged in the cylinder 71 of the coil case 70, when
Coil case 70 can react when close to electronic plane T by coil case 70 and electronic plane T generation, then through touch-control core 30 and
The sensor 40 contacts, and generation message makes the reaction to electronic plane T to integrated circuit plate 50;Due to penetrating coil case 70
Can generate and react with electronic plane T, thus this implementations profit simultaneously need not other electric power drive;
Holding rod 10A further offers a key hole 13 in periphery, which is set to the gripping in a pressing way
In the key hole 13 of bar 10A, and the integrated circuit plate 50 can be accordingly pressed on, which is further provided with
One group be arranged in pairs be electrically connected at the sensor 40 by die block 51 and compressed in a manner of lever for the button 80, when this
When button 80 presses on one of them by die block 51, sensor 40 can be selected to receive this and touched according to the design of integrated circuit plate 50
Control the signal of core 30.
As shown in FIG. 9 and 10, the position of the button 80 is to be designed according to ergonomics in the finger gripping for being suitble to user
The button 80 can be arranged on the opposite positions of different axle portion 11 upward, to the left or to the right of holding rod 10A by the position held,
Different according to set position, corresponding user, which holds to take with left or right hand, its advantage.
As shown in figure 11, when the button 80 is arranged on the position to the left of holding rod 10A, when user's strong hand is the right hand
When, when holding with the right hand by holding rod 10A, the button 80 will be enveloped at the finger pulp of right hand thumb at this time, allows user's energy
Enough thumb is moved easily to stir above and below, with regard to the switching of the button 80 can be carried out, and when the strong hand of user is left hand,
It is then with the left index finger finger pulp button button 80.
Or as shown in figure 12, when the button 80 is arranged on the position to the right of holding rod 10A, according to the left and right of strong hand
Difference is then pressed using left hand thumb or right hand forefinger.
As shown in FIG. 13 to 15, it is no matter usual at this time when the button 80 is arranged on the upward position of holding rod 10A
Hand is left or right hand, is all to refer to the back of the body by forefinger finger pulp or middle finger to make to press in a manner of lever, therefore, is by the right hand of strong hand
Example, when electronic plane T is under horizontal state, in a manner of user refers to the back of the body as pressing using middle finger, and when using vertically-arranged state
Under electronic touch screen T1, user can rotate holding rod 10A and press the button 80 with forefinger finger pulp, to reach light
Pine pressing, the effect of laborsaving gripping.
The 3rd embodiment of the utility model is please referred to Fig.1 shown in 6 to Figure 27, with first, second embodiment substantially phase
Together, difference is, as shown in figure 16, which is further provided with more than one branch in holding rod 10B
Support part 14, it is preferred that holding rod 10B is set there are two left and right symmetrically arranged support portion 14, and each support portion 14 is in for section
The thin plate of curved arc shape is simultaneously obliquely extended the lateral wall for being formed in the different axle portion 11, and each support portion 14 is formed with a groove 141, each
The groove 141 of support part 14 is supplied to left index finger or right hand forefinger in addition also may be used to brace against when can be held for user
Held and be accustomed to according to the left hand and right hand of user, can also set only at corresponding position one support portion 14 confession finger against,
The utility model does not limit herein.
As shown in FIG. 16 and 17, button 80B forms recess 81 to lower recess according to the radian of human finger, when making
When user rests on button 80B with finger, finger pulp can be made to be attached in consistent manner on button 80B, when being contacted with being promoted
Feel, and the position of button 80B also can be arranged on the specific of holding rod 10A peripheries according to the position difference of strong hand
On position;For protection touch-control core 30 and beautiful therefore especially add one lid H of meter and be sleeved on outside assembly 20.
As shown in figure 18, when button 80B is arranged on the position that holding rod 10B keeps left, user's strong hand is the right hand,
It can be resisted against in the groove 141 of each support portion 14 with thumb, forefinger correspondence, user can be with the finger pulp of thumb easily
Button 80B is pinned to carry out the operation of touch-control, likewise, as shown in figure 19, when button 80B is arranged on holding rod 10B
During the position kept right, then it is applicable in the user that strong hand is left hand and is operated with left hand thumb.
Or to be arranged on holding rod 10A opposite as Figure 20 to Figure 23 is rendered as the button 80B of the different axis electronic touch controller A2
Each face view during the different axle portion 11 position upward, when button 80B is arranged on this position, then is not limited to use
The strong hand of person is the holding mode of left or right hand.
As shown in Figure 24 and Figure 25, in a state that electronic touch screen T1 erects use, either with left hand or the right side
When hand holds the different axis electronic touch controller A2, it can be carried on the back and be resisted against in the groove 141 of corresponding each support portion 14 with middle finger, allowed
The weight of the different axis electronic touch controller A2 can be held very steady, and easily carry out the button with forefinger by the support of middle finger
The pressing of 80B, to carry out the switching of touch-control and not touch-control.
As shown in Figure 26 and Figure 27, in the state of electronic plane T horizontal uses, either held with left or right hand
During the different axis electronic touch controller A2, can with middle finger carry on the back be resisted against at the recess 81 of button 80B, and by swing middle finger come
The operation of button 80B is carried out, forefinger is made to refer to hold on holding rod 10B in, for the stability of operation quite
It is also more laborsaving in gripping with help.
The above is only the preferred embodiment of the utility model, and not the utility model is done in any form
Limitation although the utility model has been disclosed with preferred embodiment as above, is not limited to the utility model, any to be familiar with
Professional and technical personnel, in the range of technical solutions of the utility model are not departed from, when in the technology using the disclosure above
Hold the equivalent embodiment made a little change or be modified to equivalent variations, as long as being without departing from technical solutions of the utility model
Hold, any simple modification, equivalent change and modification that foundation the technical essence of the utility model makees above example, still
Belong in the range of technical solutions of the utility model.
Claims (16)
1. a kind of different axis electronic touch controller convenient for holding, which is characterized in that including:
One holding rod for the hollow lever in irregular shape and with both ends, is formed in wherein one end of the holding rod and is not advised
Then forniciform one different axle portion, the holding rod then uprightly extend to form a bar portion along the different axle portion towards the other end, the different axis
Portion is set with the bar portion for different axis;
One assembly is incorporated into the different axle portion of the holding rod;
One touch-control core is arranged in the assembly and the holding rod, and forms a touch-control end in one end, and the other end then forms elongated
A body of rod, which penetrates the assembly with the body of rod, the touch-control end of the touch-control core is made to stretch out in the assembly;
One sensor, is set to the inside of the holding rod, and the position of the sensor is opposite with the position of the body of rod of the touch-control core
Should, and the touch-control core corresponds to the sensor with the body of rod;
One integrated circuit plate is set to the inside of the holding rod, and to be electrically connected at the sensor, which passes through this
Pressure signal collected by touch-control core can be transmitted to the integrated circuit plate, make the integrated circuit plate reaction of formation, and at this
The touch-control end of touch-control core generates touch-control message and transmits.
2. the different axis electronic touch controller according to claim 1 convenient for holding, which is characterized in that further in the holding rod
Equipped with a button, which is arranged on the holding rod in a pressing way and correspondence presses on the integrated circuit plate.
3. the different axis electronic touch controller according to claim 2 convenient for holding, which is characterized in that the button is according to human body hand
The radian of finger forms the recess to lower recess.
4. the different axis electronic touch controller according to claim 2 convenient for holding, which is characterized in that the button is arranged on this and holds
Bar is held with respect to the position of different axle portion upward, to the left or to the right.
5. the different axis electronic touch controller according to claim 1 convenient for holding, which is characterized in that the bar portion one of the holding rod
End is equipped with a chargeable battery module, and the electric current of the battery module is to make the touch-control to the touch-control core through integrated circuit plate
Core can use on capacitance type touch control screen.
6. the different axis electronic touch controller according to claim 5 convenient for holding, which is characterized in that one end of the battery module
It is further provided with a power supply base.
7. the different axis electronic touch controller according to claim 5 convenient for holding, which is characterized in that the hollow stem of a holding rod
A modular plug is equipped in body one end, pluggable power input socket is provided power supply.
8. the different axis electronic touch controller according to claim 5 convenient for holding, which is characterized in that one end of the battery module
A power supply base one end is further provided with equipped with one for plug.
9. the different axis electronic touch controller according to claim 5 convenient for holding, which is characterized in that the hollow stem of a holding rod
A jack module is equipped in body one end, provides and is inserted into input power.
10. the different axis electronic touch controller according to claim 1 convenient for holding, which is characterized in that the touch-control core is further
In the touch-control end combine a conductive contact, the conductive contact using plastic cement compound, rubber or rubber compound, animal origin or
The material of synthetic fibers is made.
11. the different axis electronic touch controller according to claim 10 convenient for holding, which is characterized in that the conductive contact can be
Coniform, arc-shaped, cone-shaped, cylindric or platypelloid type.
12. the different axis electronic touch controller according to claim 1 convenient for holding, which is characterized in that further comprise thering is one
Coil case, the coil case are arranged between the holding rod and the assembly, and to be conductively coupled to the sensor and the collection
Into circuit board.
13. the different axis electronic touch controller according to claim 12 convenient for holding, which is characterized in that the coil case includes
One cylinder and a conductive coil is wound in the periphery of the cylinder, which is arranged in the cylinder of the coil case.
14. the different axis electronic touch controller according to any one of claim 1 to 13 convenient for holding, which is characterized in that should
Holding rod is further provided with more than one support portion.
15. the different axis electronic touch controller according to claim 14 convenient for holding, which is characterized in that each support portion is section
The lateral wall of the different axle portion is formed in the thin plate and being obliquely extended of curved arc shape, each support portion is formed with a groove.
16. the different axis electronic touch controller according to claim 14 convenient for holding, which is characterized in that the holding rod has two
A support portion being symmetrical set.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201721291943.XU CN207557889U (en) | 2017-10-09 | 2017-10-09 | Convenient for the different axis electronic touch controller of gripping |
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CN201721291943.XU CN207557889U (en) | 2017-10-09 | 2017-10-09 | Convenient for the different axis electronic touch controller of gripping |
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CN201721291943.XU Expired - Fee Related CN207557889U (en) | 2017-10-09 | 2017-10-09 | Convenient for the different axis electronic touch controller of gripping |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN109634443A (en) * | 2017-10-09 | 2019-04-16 | 刘保伸 | Convenient for the different axis electronic touch controller of gripping |
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2017
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN109634443A (en) * | 2017-10-09 | 2019-04-16 | 刘保伸 | Convenient for the different axis electronic touch controller of gripping |
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