WO2019025878A1 - 一种多点触控应用裝置 - Google Patents

一种多点触控应用裝置 Download PDF

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Publication number
WO2019025878A1
WO2019025878A1 PCT/IB2018/054493 IB2018054493W WO2019025878A1 WO 2019025878 A1 WO2019025878 A1 WO 2019025878A1 IB 2018054493 W IB2018054493 W IB 2018054493W WO 2019025878 A1 WO2019025878 A1 WO 2019025878A1
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WO
WIPO (PCT)
Prior art keywords
touch
contact points
conductive contact
application device
group
Prior art date
Application number
PCT/IB2018/054493
Other languages
English (en)
French (fr)
Inventor
黄丽华
Original Assignee
黄丽华
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 黄丽华 filed Critical 黄丽华
Priority to US16/624,238 priority Critical patent/US20200117332A1/en
Priority to CN201880007172.8A priority patent/CN110249295A/zh
Priority to AU2018310872A priority patent/AU2018310872B2/en
Publication of WO2019025878A1 publication Critical patent/WO2019025878A1/zh

Links

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/033Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
    • G06F3/0354Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor with detection of 2D relative movements between the device, or an operating part thereof, and a plane or surface, e.g. 2D mice, trackballs, pens or pucks
    • G06F3/03545Pens or stylus
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/033Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
    • G06F3/038Control and interface arrangements therefor, e.g. drivers or device-embedded control circuitry
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/033Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
    • G06F3/039Accessories therefor, e.g. mouse pads
    • G06F3/0393Accessories for touch pads or touch screens, e.g. mechanical guides added to touch screens for drawing straight lines, hard keys overlaying touch screens or touch pads
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0416Control or interface arrangements specially adapted for digitisers
    • G06F3/04162Control or interface arrangements specially adapted for digitisers for exchanging data with external devices, e.g. smart pens, via the digitiser sensing hardware
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/044Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means by capacitive means

Definitions

  • the present invention relates to the field of multi-touch technology, and more particularly to a multi-touch application device for a multi-touch screen, a multi-touch panel, or the like.
  • Multi-touch applications or accessories such as stylus currently used in multi-touch screens, multi-touch panels, etc.
  • different multi-touch applications or accessories are required to be implemented, which is very inconvenient to use and cannot meet the user's needs.
  • the object of the present invention is to overcome the deficiencies of the above technologies and provide a multi-touch application device capable of implementing touch operations of a plurality of different functions.
  • the present invention provides a multi-touch application device, including a body, the body includes at least one touch group, each touch group includes a plurality of contact points, and at least one of the plurality of contact points of each touch group One is a conductive contact point; the number of the conductive contact points of each touch group is different from each other. Further, the top ends of the plurality of contact points of each touch group are in the same plane.
  • the surface of the body is a conductive material.
  • the body has at least one surface provided with a groove, the contact point being detachably mounted to the groove. Further, a groove is disposed in the groove, and the contact point is provided with a card matching the card Slot.
  • the conductive contact and the non-conductive contact point have the same structure.
  • the number of the contact points of each touch group is the same.
  • the surface is provided with a recess for placing a fingertip.
  • the surface is provided with a receiving hole.
  • the receiving hole is a through hole.
  • the recess is provided with a prompting member for prompting the number of conductive contact points on the surface of the recess.
  • the prompting member is a protrusion
  • the number of the protrusions is the same as the number of conductive contact points of the touch group on the corresponding surface.
  • the prompting component is an Arabic numeral, and the Arabic numeral corresponds to the number of conductive contact points of the touch group on the corresponding surface.
  • the prompting component is a second recess, and the number of the second recesses is the same as the number of conductive contact points of the touch group on the corresponding surface.
  • the body is a cylinder, and each touch group is respectively disposed on different surfaces of the cylinder.
  • the cylinder is a cube; the cube includes four touch groups, and the four touch groups are respectively disposed on two opposite faces of the cube.
  • the cylinder is a triangular cylinder; the triangular cylinder includes three touch groups, and the three touch groups are respectively disposed on three adjacent sides of the triangular cylinder.
  • the cylinder is a cylinder; the cylinder includes two touch groups, and the two touch groups are respectively disposed on the top surface and the bottom surface of the cylinder.
  • the body is a sphere, and each touch group is disposed on a surface of the sphere.
  • the invention provides a plurality of touch groups on the body and a different number of conductive contact points for each touch group, and each touch group touches a multi-touch screen, a multi-touch panel, etc.
  • the conductive contact points of the touch group can transmit different signals to the multi-touch screen, the multi-touch panel, etc., thereby realizing the touch operation of a plurality of different functions, and solving the existing multi-touch application device or accessory device.
  • the function achieved is relatively simple, and the invention has the advantages of simple structure, convenient operation and satisfying the user's use requirement.
  • FIG. 1 is a schematic structural view of a multi-touch application device according to a first embodiment of the present invention
  • FIG. 2 is a schematic plan view of the multi-touch application device of FIG. 1
  • FIG. 4 is a schematic view of the multi-touch application device of FIG. 1 after the through hole is inserted into the pen;
  • FIG. 5 is a schematic view of the multi-touch application device of FIG. 1 inserted into the pen as a pen holder;
  • FIG. 7 is a schematic view showing a groove and a recessed position of the multi-touch application device shown in FIG. 1.
  • FIG. 7 is a schematic view showing a card slot in the groove shown in FIG.
  • FIG. 9 is a schematic diagram of a protrusion disposed in a recessed position of the multi-touch application device shown in FIG. 6;
  • FIG. 10 is a schematic structural diagram of a multi-touch application device according to a second embodiment of the present invention;
  • FIG. 12 is a schematic diagram of a through hole of the multi-touch application device shown in FIG. 11;
  • FIG. 13 is a schematic structural diagram of a multi-touch application device according to a fourth embodiment of the present invention;
  • FIG. 14 is a schematic structural diagram of a multi-touch application device according to a fifth embodiment of the present invention.
  • the present invention provides a multi-touch application device, which is applicable to multi-touch products such as multi-touch screens and multi-touch panels, such as tablet computers and smart phones. , to achieve a variety of touch operations.
  • the device includes a body 10, and the body includes at least one touch group 101.
  • Each touch group includes a plurality of contact points, at least one of which is a conductive contact point 17, and the number of conductive contact points 17 of each touch group 101 is mutually Not the same.
  • the body 10 is specifically a cube.
  • the six faces of the cube are the opposite front face 11 and rear face 12, the opposite left face 13 and right face 14, and the opposite top face 15 and bottom face 16.
  • the surface of the body 10 is a conductive material, such as an aluminum alloy material, to achieve a touch operation function.
  • the particular type of electrically conductive material selected does not constitute a limitation of the invention.
  • the body 10 may be integrally formed of a conductive material, or the inside of the body 10 may be integrally formed of a plastic material, and the outer surface thereof is provided with a layer of electrically conductive material.
  • the body 10 includes four touch groups 101.
  • the four touch groups 101 are respectively disposed on the front surface 11, the rear surface 12, the top surface 15, and the bottom surface 16 of the cube 10.
  • At least one of the contact points of each touch group 101 is a conductive contact point 17, and the number of conductive contact points 17 of each touch group 101 is different from each other.
  • the material of the conductive contact 17 is specifically an aluminum alloy material. Understandably, the conductive contact 17 The material can also be a plastic material with a conductive layer on the surface, which can also achieve the effect of conducting and transmitting signals.
  • all the contact points of the touch group 101 of the bottom surface 16 are all conductive contact points 17, and the contact points of the touch group 101 of the front surface 11, the rear surface 12 and the top surface 15 are except for the conductive contact points 17 It is a non-conductive contact point 18.
  • the top ends of the plurality of contact points of each touch group are in the same plane, and the cube 10 can be balancedly placed on the multi-touch screen, the multi-touch panel, etc. for the touch operation without tilting or dumping.
  • the top ends of several contact points of each touch group are in the same plane, which means that the planes of the top ends of the contact points of different touch groups are different.
  • the conductive contact 17 and the non-conductive contact 18 have the same structure.
  • the conductive contact point 17 and the non-conductive contact point 18 are columnar structures, and the touch ends of the conductive contact point 17 and the non-conductive contact point 18 are hemispherical for easy touch.
  • the arrangement of the non-conductive contact points 18 is such that the cube 10 can be balancedly placed on a multi-touch screen, a multi-touch panel, etc. for touch operation without tilting or tipping.
  • the conductive contact point ⁇ and the non-conductive contact point 18 can be set to different colors, which are convenient for distinction, convenient for the user's touch operation, and beautiful in appearance.
  • the touch screen can recognize the number of conductive contact points 17, thereby implementing a variety of different functions of the touch operation.
  • the distance between two adjacent conductive contact points 17 of each touch group 101 is not less than 1 cm, which facilitates the identification of the conductive contact points 17 by a multi-touch screen, a multi-touch panel, etc., in order to make a relative reaction. .
  • each touch group 101 is 4 contact points.
  • the specific number of the contact points of each touch group does not constitute a limitation of the present invention.
  • each touch group 101 may include five contact points.
  • the arrangement of the contact points of each touch group also does not constitute a limitation of the present invention.
  • the four contact points are respectively located at the four corners of the corresponding faces of the cube 10.
  • the four contact points of the bottom surface 16 of the cube 10 are all conductive contact points 17, front of the cube Among the four contact points of the surface 11, the top surface 15, and the rear surface 12, the number of the conductive contact points 17 is one, two, and three, and the number of the non-conductive contact points 18 is three, two, and one, respectively.
  • the two electrically conductive contact points 17 of the top surface 15 of the cube 10 are arranged in parallel, which form a linear lattice.
  • the three conductive contacts 17 of the rear face 12 of the cube 10 form an isosceles triangular lattice.
  • the four conductive contacts 17 of the bottom surface 16 of the cube 10 form a rectangular lattice.
  • each of the front face 11, rear face 12, top face 15, and bottom face 16 of the cube 10 can perform a functional touch operation. Since the front face 11, the rear face 12, the top face 15 and the bottom face 16 of the cube 10 have four contact points, the balanced placement of the cube 10 can be ensured regardless of which face is placed on the multi-touch screen, the multi-touch panel or the like. .
  • the left side 13 and the right side 14 of the cube 10 serve as grip faces for the hand, and no contact points are provided for operating the cube 10.
  • the left side 13 and the right side 14 of the cube 10 are provided with receiving holes 21.
  • the pen 80 can be inserted into the accommodating hole 21, with the pen 80 as the axis of rotation, and the rotating cube 10 is manipulated by turning the pen 80.
  • the pen 80 can also be used as a gyro after being inserted into the accommodating hole 21, which can be used for pressure reduction for added fun.
  • the pen 80 can also be inserted into the receiving hole 21 of the cube 10, and the cube 10 can be used as a pen holder or a small pendulum for convenient use.
  • the receiving hole 21 is a through hole. It is also possible to provide a chamfer at both ends of the through hole 21, which makes the user's control more comfortable and more convenient.
  • the front face 11 and the rear face 12 of the cube 10 are respectively provided with grooves 19 at positions corresponding to the four contact points of the touch group 101.
  • the contact points are detachably mounted in the corresponding recesses 19.
  • the number of contact points per surface mount can vary with user preference.
  • the front face 11, the rear face 12, the top face 15 and the bottom face 16 are provided with four recesses 19, and the user can install up to four contacts at the front face 11, the back face 12, the top face 15 and the bottom face 16 respectively. Points form four contact groups.
  • the user can also install a contact point on the front 11 to form the first contact group, two contact points on the back 12 to form the second contact group, and three contact points on the top surface 15 to install the third contact group on the bottom surface. 16 Install four contact points to form the fourth contact group.
  • the table of cube 10 The face can be provided with six grooves 19, and the user can arbitrarily select the number of his or her own needs, such as two or four.
  • the groove 19 is provided with a latch 23, and the contact point is provided with a card slot 24, and the card slot 24 cooperates with the latch 23 to detachably mount the contact point into the corresponding groove 19.
  • the shape of the cassette 23 does not constitute a limitation of the present invention, and may be, for example, a flat cassette as shown in Fig. 7, or a cross cassette or the like.
  • the conductive contact 17 when the conductive contact 17 is detachably mounted to the pen 80, the pen 80 can be used as a capacitive pen, or when the conductive contact 17 is detachably mounted to the sheath 100, the conductive contact 17 can be used as an eraser. use.
  • the front face 11 and the rear face of the cube 10, the top face 15 and the bottom face 16 are provided with a recess 20 for placing the fingertip for better manipulation of the cube 10, making the user more comfortable to use.
  • the recess 20 is placed at an intermediate position of each surface.
  • the recess 20 is provided with a prompting member 20 for prompting the number of conductive contact points 17 on the surface of the recess to better manipulate the cube 10, so that the user can easily know by hand contact.
  • the prompting member 20 can be a protrusion 22. Referring to Fig. 9, protrusions 22 are respectively provided in the recesses 20 of the front face 11 and the rear face 12 of the cube 10, the top face 15 and the bottom face 16, and the number of the projections 22 is the same as the number of the conductive contact points 17 on the corresponding faces.
  • the number of the conductive contact points 17 on the surface can be known according to the number of the protrusions 22 in the recess 20, which can indicate the user's touch operation, and is easy to operate, and is intuitive and clear. Easy to use.
  • the prompting component 20 can also be a raised Arabic numeral or a printed Arabic numeral. The Arabic numerals are identical to the number of conductive contacts 17 on the corresponding surface. Similarly, the Arabic numerals in the recess 20 can be used to know the surface.
  • the prompting component 20 can also be a second recess 25 disposed in the recess 20. As shown in FIG.
  • the number of the second recesses 25 is the same as the number of the conductive contact points 17 on the corresponding surface. Play the same effect.
  • the front face 11 of the cube 10 can be brought into contact with the screen 51 of the tablet computer 50, assuming that the eraser function is selected to implement the erase function.
  • the screen 51 recognizes that the touch group 101 has only one conductive contact point 17, similar to the fact that only one finger or capacitive pen touches the screen 51 at this time, the conductive contact point 17 transmits a signal representing the eraser, moving the cube 10, The erase function can be implemented.
  • the touch group 101 of the top surface 15 of the cube 10 can be touched to the screen 51 of the tablet computer 50.
  • the screen 51 recognizes two conductive contact points 17 and simultaneously touches the tablet computer 50.
  • the two conductive contacts 17 convey a signal indicating the ruler.
  • a ruler appears on the screen of the tablet computer 50. If the cube 10 is moved or the cube 10 is rotated, the ruler on the screen of the tablet computer will move or rotate.
  • the application principle of the present invention under other applications is similar.
  • the touch group 101 of the back 12 of the cube 10 can be in contact with the screen 51 of the tablet computer 50, and the three conductive contacts 17 simultaneously touch the tablet computer 50.
  • Screen 51, the three conductive contacts 17 pass the signal for displaying the menu, and at this time, a menu such as copying, saving, sharing, etc. is displayed on the screen of the tablet computer, and the cube 10 is rotated, and the tablet computer screen can also be The file is enlarged or reduced.
  • the touch group 101 of the bottom surface 16 of the cube 10 can be in contact with the screen 51 of the tablet computer 50, and the four conductive contact points 17 simultaneously touch the screen of the tablet computer 50.
  • the four conductive contacts 17 transmit a signal for displaying a color wheel or a palette.
  • a color wheel or a palette is displayed on the screen of the tablet computer, and the cube 10 is rotated left and right, and the color wheel on the screen of the tablet computer. Or the palette will rotate with it.
  • the cube 10 is rotated up and down, so that the conductive contact point 17 of the touch group 101 of each surface touches the screen of the electronic game machine, and the signal of switching the player character or equipment can be transmitted. , thus changing the player's character or equipment.
  • Rotating the cube 10 to the left and right so that the conductive contact point 17 of the touch group 101 of each surface touches the screen of the electronic game machine, and can transmit the signal of the direction of the attacking attack, thereby Now turn the attack direction.
  • Second embodiment Second embodiment
  • the difference between the present embodiment and the first embodiment is that the four contact points of the touch group 101 of the front face 11 and the rear face 12 of the cube 10 are not located at the four corners of the front face 11 and the rear face 12, respectively. Located around the front 11, the back 12 and close to the center of the face. And four contact points are respectively connected to the front face 11 of the cube 10 and the recess 20 of the rear face 12. It will be understood that the four contact points may also not be connected to the recesses 20 of the front face 11 and the rear face 12 of the cube 10.
  • the present embodiment differs from the first embodiment in that the cylinder is a triangular cylinder 10.
  • the triangular cylinder 10 includes three touch groups 101.
  • the triangular cylinder 10 has five faces.
  • the five faces are the top face 11, the bottom face 12, and three sides.
  • Three touch groups 101 are respectively disposed on the three sides of the triangular cylinder 10.
  • the three sides are designated as a first side 13, a second side 14, and a third side 15, respectively.
  • each touch group 101 includes six contact points. Of the six contact points, three of them are arranged in a row above the corresponding face, and the other three are arranged in a row below the corresponding face, and the contact points of the two rows are symmetrical about the center of the corresponding face.
  • the six contact points of the third side 15 are all electrically conductive contacts 17.
  • the number of the conductive contact points 17 in the contact points of the first side surface 13 and the second side surface 14 is two or four, respectively, and the number of the non-conductive contact points 18 is four or two.
  • the electrically conductive contact points 17 of the first side 13 form a linear lattice.
  • the electrically conductive contact points 17 of the second side 14 form a rectangular lattice.
  • the electrically conductive contact points 17 of the third side 15 form a larger rectangular lattice.
  • each of the first side 13, the second side 14, and the third side 15 of the triangular cylinder 10 can achieve a functional touch operation. Since the first side 13 , the second side 14 , and the third side 15 of the triangular cylinder 10 have six contact points, the triangular cylinder can be ensured when placed on a multi-touch screen, a multi-touch panel, or the like. 10 balanced placement.
  • the ruler is used in the drawing interface, and the two conductive contact points 17 of the touch group 101 of the first side 13 of the triangular cylinder 10 can be simultaneously Touching the screen 51 of the tablet computer 50, the two conductive contacts 17 transmit a signal for displaying the ruler. At this time, a ruler appears on the screen of the tablet computer. If the triangular cylinder 10 is moved or the triangular cylinder 10 is rotated, the tablet computer screen The upper ruler will move or rotate with it.
  • the four conductive contacts 17 of the touch group 101 of the second side 14 of the triangular cylinder 10 can simultaneously touch the screen 51 of the tablet computer 50.
  • the conductive contact points 17 convey the signal of the display color wheel or palette.
  • the color wheel or palette is displayed on the screen of the tablet computer, and the triangle cylinder 10 is rotated left and right, the color wheel or the color on the tablet computer screen.
  • the board will rotate with it.
  • the drawing toolbar needs to be displayed under the drawing program, such as a line, a curve, a circle, an ellipse, etc.
  • the six conductive contacts 17 of the touch group 101 of the third side 15 of the triangular cylinder 10 can simultaneously touch the tablet computer.
  • the screen, the six conductive contacts 17 pass the signal that displays the drawing toolbar, and the drawing toolbar is displayed on the tablet screen.
  • the top surface 11 and the bottom surface 12 of the triangular cylinder 10 are provided with through holes 21 for facilitating the placement of the fingertips for manipulating the triangular cylinder 10.
  • the present embodiment is different from the first embodiment in that the cylinder is a cylinder 10.
  • the cylinder 10 includes two touch groups 101.
  • the cylinder 10 has three faces, which are the top face 11, the bottom face 12 and the side face 13, respectively, for convenience of explanation.
  • the two touch groups 101 are respectively disposed on the top surface 11 and the bottom surface of the cylinder 10 12.
  • each touch group 101 includes three contact points that are evenly distributed along the center of the corresponding surface.
  • the three contact points of the touch group 101 of the bottom surface 12 of the cylinder 10 are all the conductive contact points 17 , and the number of the conductive contact points 17 among the three contact points of the touch group 101 of the top surface 11 of the cylinder 10 For one, the number of non-conductive contact points 18 is two.
  • the conductive contact points 17 of the bottom surface 12 of the cylinder 10 form an equilateral triangular lattice.
  • each of the top surface 11 and the bottom surface 12 of the cylinder 10 can realize a functional touch operation. Since the top surface 11 and the bottom surface 12 of the cylinder 10 have three contact points, the balance of the cylinder 10 can be ensured regardless of which surface is placed on the multi-touch screen, the multi-touch panel or the like.
  • a conductive contact point 17 of the touch group 101 of the top surface 11 of the cylinder 10 can be touched, assuming that the eraser function is selected to implement the erase function.
  • the screen 51 of the tablet computer 50 is controlled, and the one conductive contact point 17 transmits a signal representing the rubber, and the cylinder 10 is moved to realize the erasing function.
  • the menu needs to be displayed under the drawing program or the notepad program, the three conductive contact points 17 of the touch group 101 of the bottom surface 12 of the cylinder 10 can simultaneously touch the screen 51 of the tablet computer 50, the three conductive The contact point 17 transmits a signal for displaying the menu.
  • a menu is displayed on the screen of the tablet computer, such as copying, saving, sharing, etc., and rotating the cylinder 10 can also enlarge or reduce the file on the screen of the tablet computer.
  • the side surface 13 of the cylinder 10 is provided with a through hole 21 for easy placement of the fingertip for manipulating the cylinder
  • a touch group 101 may be disposed on each surface according to actual conditions, as long as the number of conductive contact points 17 of the touch group 101 on each surface is different from each other. Yes, so that more touch functions can be realized, which greatly facilitates people's use.
  • this embodiment differs from the first embodiment in that the body is not a cylinder but a sphere 10.
  • Each touch group 101 is disposed on the surface of the sphere 10.
  • the sphere 10 includes two touch groups 101, and the two touch groups 101 are disposed opposite each other.
  • One of the touch groups 101 is disposed on the upper portion of the sphere 10, and the other touch resistor 101 is disposed on the lower portion of the sphere 10.
  • the upper surface and the lower surface of the sphere 10 are respectively provided with a recess 19 at a position corresponding to a plurality of contact points of the touch group 101, and the contact points are detachably mounted in the corresponding recesses 19.
  • the recess 19 is provided with a slot 23, and the contact point is provided with a card slot (not shown), and the card slot cooperates with the latch 23 to detachably mount the contact point into the corresponding recess 19, Easy to disassemble.
  • each touch group 101 includes three contact points.
  • the three contact points of 101 are all conductive contact points 17.
  • the three conductive contacts 17 of the touch group 101 at the lower portion of the sphere 10 can be used alone or in combination of two or three.
  • the finger can be held in the middle of the sphere 10 to perform a touch operation.
  • an electrically conductive contact point 17 of the touch group 101 at the upper portion of the sphere 10 can be touched on the screen 51 of the tablet computer 50.
  • a conductive contact 17 transmits a signal representative of the eraser, and the ball 10 is moved to perform the erasing function. It is also possible to touch one of the conductive contact points 17 of the touch group 101 at the lower portion of the sphere 10 to touch the screen of the tablet computer, and the erasing function can also be realized.
  • the three conductive contact points 17 of the touch group 101 at the lower part of the sphere 10 can simultaneously touch the screen 51 of the tablet computer 50, and the three conductive contact points 17 Passing the signal that displays the menu, the menu will be displayed on the screen of the tablet, such as copying, saving, sharing, etc.
  • the sphere 10 can also enlarge or reduce the file on the tablet screen. Assuming that a ruler is needed in the drawing interface, two of the conductive contact points 17 of the touch group 101 at the lower portion of the ball 10 can simultaneously touch the screen 51 of the tablet computer 50, and the two conductive contact points 17 transmit the display ruler. The signal, the ruler appears on the screen of the tablet.
  • the body of the present invention is a sphere 10
  • more touch groups 101 may be disposed on the surface of the sphere 10 according to actual conditions, as long as the number of conductive contact points 17 of each touch group 101 is different from each other. Thereby, more functions of the touch operation can be realized, which greatly facilitates the use of people.
  • the above embodiments are merely illustrative of the preferred embodiments of the present invention, and the description thereof is more specific and detailed, but is not to be construed as limiting the scope of the invention. It should be noted that a number of variations and modifications may be made by those skilled in the art without departing from the inventive concept, such as combining different features in the various embodiments. The scope of protection of the present invention.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Position Input By Displaying (AREA)

Abstract

本发明涉及一种多点触控应用装置,包括本体,所述本体包括至少一个触控组,每个触控组包括若干接触点,且每个触控组的所述若干接触点中至少一个为导电接触点;每个触控组的所述导电接触点的个数互不相同。本发明通过在本体上设置多个触控组以及每个触控组设置不同个数的导电接触点,在每个触控组接触多点触控屏幕、多点触摸板等时,每个触控组的导电接触点可传递不同的信号到多点触控屏幕、多点触摸板等,从而可实现多种不同功能的触控操作。

Description

一种多点触控应用裝置
【技术领域】
本发明涉及多点触控技术领域, 尤其是涉及一种用于多点触控屏幕、 多点 触摸板等上的多点触控应用装置。
【背景技术】
随着触控技术的持续发展, 多点触控技术已成为发展趋势。 目前应用于多 点触控屏幕、 多点触摸板等上的多点触控应用装置或配件例如触控笔, 只能实 现单一的一种功能的触控操作 , 当要进行多种功能的触控操作时, 需要使用不 同的多点触控应用装置或配件才能实现,使用非常的不方便, 无法满足用户的 使用需求。
【发明内容】
本发明的目的在于克服上述技术的不足,提供一种可实现多种不同功能的 触控操作的多点触控应用装置。 本发明提供的一种多点触控应用装置, 包括本体,所述本体包括至少一个 触控組,每个触控組包括若干接触点,且每个触控組的所述若干接触点中至少 一个为导电接触点;每个触控組的所述导电接触点的个数互不相同 。 进一步地,每个触控組的所述若干接触点的顶端处于同一平面。 进一步地,所述本体的表面为可导电材料。 进一步地,所述本体具有至少一个表面 ,所述表面设有凹槽,所述接触点 可拆卸地安装到所述凹槽。 进一步地,所述凹槽内设有卡坱,所述接触点设有与所述卡坱相匹配的卡 槽。
进一步地, 当所述若干接触点中有至少一个不导电接触点时,所述导电接 触点和不导电接触点为相同的结构。
进一 •步地 ,每个触控組的所述接触点个数相同 。
进一 •步地,所述表面设有用于放置指尖的凹位。
进一 •步地,所述表面设有容纳孔。
进一 •步地,所述容纳孔为通孔。
进一 •步地,所述凹位内设有提示部件,所述提示部件用于提示所述凹位所 在表面的导电接触点的个数。
进一步地,所所述提示部件为凸起,所述凸起的个数与对应面上的所述触 控組的导电接触点的个数相同 。
进一步地,所述提示部件为阿拉伯数字 ,所述阿拉伯数字与对应面上的所 述触控組的导电接触点的个数对应。
进一步地,所述提示部件为第二凹槽,所述第二凹槽的个数与对应面上的 所述触控組的导电接触点的个数相同 。
进一步地,所述本体为一柱体,每个触控組分别设置在柱体的不同表面上。 进一步地,所述柱体为一立方体;所述立方体包括四个所述触控組,所述 四个触控組分别设置在立方体的其中两組相对面上。
进一步地,所述柱体为三角柱体;所述三角柱体包括三个所述触控組,所 述三个触控組分别设置在三角柱体的三个相邻侧面上。
进一步地,所述柱体为一圆柱体;所述圆柱体包括两个所述触控組,所述 两个触控組分别设置在圆柱体的顶面和底面上。
进一步地,所述本体为一球体,每个触控組设置在所述球体的表面上。 本发明通过在本体上设置多个触控組以及每个触控組设置不同个数的导电 接触点 ,在每个触控組触控多点触控屏幕、 多点触摸板等时,每个触控組的导 电接触点可传递不同的信号到多点触控屏幕、 多点触摸板等,从而实现多种不 同功能的触控操作 ,解决了现有的多点触控应用装置或配件所实现的功能相对 单一的问题,且本发明结构简单,操控方便, 满足了用户的使用需求。
【附图说明】
图 1为本发明第一实施例提供的一种多点触控应用装置的结构示意图 ; 图 2是图 1所示多点触控应用装置的展开后的平面示意图 ; 图 3是图 1所示多点触控应用装置应用到平板计算机的触控屏幕上的示意 图 ;
图 4是图 1所示多点触控应用装置的通孔插入笔后的示意图 ; 图 5是图 1所示多点触控应用装置的通孔插入笔后作为笔座使用的示意图 ; 图 6是图 1所示多点触控应用装置的凹槽、凹位的示意图 ; 图 7是图 6所示凹槽内设有卡坱、接触点设有卡槽的示意图 ; 图 8是图 1所示多点触控应用装置的导电的接触点拆下来后安装到触控笔 和导电杆后作为电容笔和橡皮使用的示意图 ;
图 9是图 6所示多点触控应用装置的凹位内设置的凸起的示意图 ; 图 10为本发明第二实施例提供的一种多点触控应用装置的结构示意图 ; 图 11为本发明第三实施例提供的一种多点触控应用装置的展开后的平面示 意图 ;
图 12是图 11所示多点触控应用装置的通孔的示意图 ; 图 13为本发明第四实施例提供的一种多点触控应用装置的结构示意图 ; 图 14为本发明第五实施例提供的一种多点触控应用装置的结构示意图
【具体实施方式】
下面结合附图和实施例对本发明作进一步的描述。 第一实施例 参考图 1和图 2,本发明提供的一种多点触控应用装置,适用于多点触控屏 幕、 多点触摸板等多点触控产品 ,例如平板计算机、智能手机等 , 实现多种功 能的触控操作。该装置包括本体 10,本体包括至少一个触控組 101 ,每个触控 組包括若干接触点,其中至少一个为导电接触点 17, 而且每个触控組 101 的导 电接触点 17的个数互不相同 。通过在本体上设置多个触控組以及每个触控組设 置不同个数的导电接触点,在每个触控組接触多点触控屏幕、多点触摸板等时, 每个触控組的导电接触点可传递不同的信号到多点触控屏幕、 多点触摸板等 , 从而可实现多种不同功能的触控操作。 本实施例中 ,本体 10具体为立方体。为方便说明 ,立方体的六个面分别为 相对的前面 11和后面 12、相对的左面 13和右面 14、相对的顶面 15和底面 16。 本体 10的表面为可导电材料,譬如铝合金材料,以实现触控操作功能。具 体选用的可导电材料种类不构成本发明的限制。具体的 ,本体 10可以是可导电 材料一体化制成,或者本体 10的内部由塑料材料一体化制成,其外表面设有一 层可导电材料。
本实施例中 ,本体 10包括四个触控組 101。四个触控組 101分别对应设置 在立方体 10的前面 11、后面 12、顶面 15和底面 16上。每个触控組 101的接 触点中至少一个为导电接触点 17,且每个触控組 101的导电接触点 17的个数互 不相同 。导电接触点 17的材料具体为铝合金材料。可以理解地,导电接触点 17 的材料也可以为塑料材料, 其表面设有一层导电层 , 同样可达到导电、传递信 号的效果。具体地,底面 16的触控組 101的若干接触点全部为导电接触点 17, 前面 11、后面 12和顶面 15的触控組 101的若干接触点中除了导电接触点 17之 外,剩下的为不导电接触点 18。每个触控組的若干接触点的顶端处于同一平面 , 则立方体 10能够平衡放置到多点触控屏幕、多点触摸板等以进行触控操作, 而 不会出现倾斜或倾倒等情况。每个触控組的若干接触点的顶端处于同一平面 , 亦意味着不同触控組的接触点顶端所在平面各不相同 。 当若干接触点中有至少 一个不导电接触点 18时,导电接触点 17和不导电接触点 18为相同的结构。具 体地,导电接触点 17和不导电接触点 18为柱状结构 ,且导电接触点 17和不导 电接触点 18 的触控端为半球形,便于触控。不导电接触点 18 的设置,从而立 方体 10能够平衡放置到多点触控屏幕、多点触摸板等以进行触控操作 , 而不会 出现倾斜或倾倒等情况。优选地,可将导电接触点 Π和不导电接触点 18设置 为不同的颜色,便于区别 , 方便用户的触控操作, 而且外观美观。 当立方体 10 的触控組 101 放置在触控屏幕、 多点触摸板等的表面时, 由于每个触控組 101 的导电接触点 17个数不同 , 当某个触控組 101与触控屏幕接触时,触控屏幕可 识别出导电接触点 17的个数,从而实现多种不同功能的触控操作。每个触控組 101的相邻两个导电接触点 17之间的距离不小于 1厘米 ,便于多点触控屏幕、 多点触摸板等对导电接触点 17的识别 , 以便做出相对的反应。
优选地,每个触控組的接触点个数相同 ,本实施例中每个触控組 101都是 4 个接触点。每个触控組的接触点的具体个数不构成本发明的限制,譬如在其他 实施方式中 , 亦可以是每个触控組 101 包括 5个接触点。每个触控組的接触点 的排列方式亦不构成本发明的限制。四个接触点分别位于立方体 10的对应面的 四个角上。立方体 10的底面 16的四个接触点全部为导电接触点 17, 立方体前 面 11、顶面 15、后面 12的四个接触点中 , 导电接触点 17的个数分别一个、 两 个、三个,不导电接触点 18 的个数分别为三个、 两个、一个。立方体 10的顶 面 15的两个导电接触点 17呈平行设置,其构成一个直线点阵。立方体 10的后 面 12的三个导电接触点 17构成一个等腰三角形点阵。立方体 10的底面 16的 四个导电接触点 17构成一个矩形点阵。从而立方体 10的前面 11、后面 12、顶 面 15和底面 16每一个面可实现一种功能的触控操作。由于立方体 10的前面 11、 后面 12、顶面 15和底面 16都有四个接触点, 因而不论哪面放置到多点触控屏 幕、 多点触摸板等时,都能保证立方体 10的平衡放置。
立方体 10的左面 13、右面 14作为手的握持面 , 没有设置接触点, 用于操 控立方体 10。立方体 10的左面 13、右面 14设有容纳孔 21。结合图 4所示 ,可 以将笔 80穿入到容纳孔 21 中 , 以笔 80为转动轴心 ,通过转动笔 80从而操控 转动立方体 10。也可将笔 80穿入到容纳孔 21 中后作为陀螺使用 ,可以用于减 压,以增添乐趣。结合图 5所示 ,还可将笔 80插入到立方体 10的容纳孔 21 中 , 此时立方体 10可作为笔座或小摆设使用 , 方便使用 。优选地, 容纳孔 21 为通 孔。还可在通孔 21的两端设置倒角 ,可使用户操控更加的舒适, 更加的方便。
参考图 6, 立方体 10的前面 11和后面 12、顶面 15和底面 16在对应触控 組 101 的四个接触点的位置分别设有凹槽 19。接触点可拆卸地安装到对应的凹 槽 19中 。 实际使用时,每个表面安装的接触点的个数可以随用户喜好而变化。 譬如本实施例中 ,前面 11、后面 12、顶面 15和底面 16都是设置了四个凹槽 19, 则用户最多可以在前面 11、后面 12、顶面 15和底面 16各安装四个接触点組成 四个接触組。用户亦可以在前面 11安装一个接触点組成第一个接触組,在后面 12安装两个接触点組成第二个接触組,在顶面 15安装三个接触点安装第三个接 触組,在底面 16安装四个接触点組成第四个接触組。 又譬如 , 立方体 10的表 面可以各设置六个凹槽 19, 用户可以随自身喜好而任意选用自己需要的个数, 譬如两个、四个等。
具体的 ,参考图 7, 凹槽 19内设有卡坱 23,接触点设有卡槽 24,卡槽 24 与卡坱 23相配合从而将接触点可拆卸地安装到对应的凹槽 19 中 ,拆装方便。 卡坱 23的形状不构成本发明的限制 ,譬如可以是图 7所示的平板卡坱,或者是 十字卡坱等。结合图 8所示 , 当导电的接触点 17拆卸安装到笔 80后 , 笔 80则 可作为电容笔使用 ,或者当导电的接触点 17拆卸安装到笔杆 100后 ,导电的接 触点 17可作为橡皮使用 。
立方体 10前面 11和后面 12、顶面 15和底面 16的设有凹位 20, 用于放置 指尖,以便更好地操控立方体 10,令用户使用起来更舒适。优选地,凹位 20设 置于各表面的中间位置。
优选地,凹位 20设有提示部件 20,用于提示所述凹位所在表面的导电接触 点 17的个数,以便更好地操控立方体 10,则用户只需手部接触亦可以轻松地知 道当面表面的导电接触点的个数。提示部件 20可以是凸起 22。参考图 9,立方 体 10前面 11和后面 12、顶面 15和底面 16的凹位 20内分别设有凸起 22, 凸 起 22的个数与对应面上的导电接触点 17 的个数相同 。在具体使用时,就可根 据凹位 20内的凸起 22个数即可知晓该面上的导电接触点 17的个数,对用户的 触控操作起到指示作用 ,便于操控, 直观明了 ,使用方便。提示部件 20亦可以 是凸起的阿拉伯数字或者印刷阿拉伯数字 , 阿拉伯数字与对应面上的导电接触 点 17 的个数一致, 同样可以根据凹位 20 内的阿拉伯数字即可知晓该面上的导 电接触点 17的个数。又例如提示部件 20还可以是凹位 20内设置的第二凹槽 25, 如图 7所示,使第二凹槽 25的个数与对应面上的导电接触点 17的个数相同 , 可起到同样的效果。 结合图 3所示,在实际应用时,例如在平板计算机 50上的绘图程序下,假 定选中了橡皮工具需要实现擦除功能,则可将立方体 10的前面 11接触平板计 算机 50的屏幕 51,此时屏幕 51识别出触控組 101只有一个导电接触点 17,类 似于此时识别出只有一个手指或电容笔接触屏幕 51,则该导电接触点 17传递的 是代表橡皮的信号,移动立方体 10,即可实现擦除功能。假定在绘图接口需要 使用到尺子,则可将立方体 10的顶面 15的触控組 101接触平板计算机 50的屏 幕 51,此时屏幕 51识别出两个导电接触点 17同时触控平板计算机 50,该两个 导电接触点 17传递的是显示尺子的信号,此时在平板计算机 50的屏幕上会出 现尺子,若移动立方体 10或转动立方体 10,平板计算机屏幕上的尺子会随之移 动或转动。本发明在其他应用程序下的应用原理类似。若在绘图程序下或记事 本程序下需要显示菜单时,则可将立方体 10的后面 12的触控組 101接触平板 计算机 50的屏幕 51 ,则三个导电接触点 17同时触控平板计算机 50的屏幕 51, 该三个导电接触点 17传递的是显示菜单的信号,此时在平板计算机的屏幕上会 显示菜单,例如拷贝 、存盘、分享等功能,转动立方体 10,还可使平板计算机 屏幕上的文件放大或缩小。若在绘图程序下需要用到色轮或调色板,则可将立 方体 10的底面 16的触控組 101接触平板计算机 50的屏幕 51 ,四个导电接触点 17同时触控平板计算机 50的屏幕 51 ,该四个导电接触点 17传递的是显示色轮 或调色板的信号,此时平板计算机的屏幕上会显示色轮或调色板,左右转动立 方体 10,平板计算机屏幕上的色轮或调色板会随之转动。又譬如应用到电子游 戏机时,在游戏界面,上下转动立方体 10,使每个表面的触控組 101的导电接 触点 17触控一次电子游戏机的屏幕,可以传递切换玩家角色或装备的信号,从 而改变玩家角色或装备。左右转动立方体 10,使每个表面的触控組 101的导电 接触点 17触控一次电子游戏机的屏幕,可以传递转动攻打方向的信号,从而实 现转动攻打方向。 第二实施例
参考图 10,本实施例与第一实施例不同的是,立方体 10前面 11和后面 12 的触控組 101的四个接触点不是分别位于前面 11、后面 12的四个角上,而是分 别位于前面 11、后面 12的四周并紧靠该面的中心。并且四个接触点分别与立方 体 10的前面 11、后面 12的凹位 20连接。可以理解地,四个接触点也可以不与 立方体 10的前面 11、后面 12的凹位 20连接。 第三实施例
参考图 11和图 12,本实施例与第一实施例不同的是,柱体为三角柱体 10。 三角柱体 10包括三个触控組 101。三角柱体 10具有五个面 ,为方便说明 ,五个 面分别为顶面 11、底面 12以及三个侧面。三个触控組 101分别设置到三角柱体 10的三个侧面上。将三个侧面分别命名为第一侧面 13、 第二侧面 14和第三侧 面 15。
本实施例中 ,每个触控組 101 包括六个接触点。六个接触点中 ,其中三个 排成一排位于对应面的上方, 另外三个排成一排位于对应面的下方, 两排的接 触点关于对应面的中心对称。其中第三侧面 15的六个接触点全部为导电接触点 17。 第一侧面 13、第二侧面 14的接触点中导电接触点 17的个数分别为两个、 四个, 不导电接触点 18的个数分别为四个、 两个。 第一侧面 13 的导电接触点 17构成一条直线点阵。 第二侧面 14的导电接触点 17构成一个矩形点阵。 第三 侧面 15的导电接触点 17构成一个更大一点的矩形点阵。从而三角柱体 10的第 一侧面 13、第二侧面 14和第三侧面 15每一个面可实现一种功能的触控操作。 由于三角柱体 10的第一侧面 13、第二侧面 14、第三侧面 15都有六个接触点, 因而不论哪面放置到多点触控屏幕、多点触摸板等时,都能保证三角柱体 10的 平衡放置。
在实际应用时 ,例如应用在平板计算机上的绘图程序下时,假定在绘图界 面需要使用到尺子,则可将三角柱体 10的第一侧面 13的触控組 101 的两个导 电接触点 17同时触控平板计算机 50的屏幕 51 ,该两个导电接触点 17传递的是 显示尺子的信号, 此时在平板计算机的屏幕上会出现尺子,若移动三角柱体 10 或转动三角柱体 10,平板计算机屏幕上的尺子会随之移动或转动。若在绘图程 序下需要用到色轮或调色板,则可将三角柱体 10的第二侧面 14的触控組 101 的四个导电接触点 17同时触控平板计算机 50的屏幕 51 ,该四个导电接触点 17 传递的是显示色轮或调色板的信号 , 此时平板计算机的屏幕上会显示色轮或调 色板,左右转动三角柱体 10,平板计算机屏幕上的色轮或调色板会随之转动。 若在绘图程序下需要显示绘图工具栏, 比如直线、 曲线、 圆形、椭圆等 ,则可 将三角柱体 10的第三侧面 15的触控組 101的六个导电接触点 17同时触控平板 计算机的屏幕,该六个导电接触点 17传递的是显示绘图工具栏的信号 ,此时在 平板计算机屏幕上会显示绘图工具栏。
三角柱体 10的顶面 11和底面 12设有贯穿的通孔 21 ,便于放置指尖,以便 操控三角柱体 10。 第四实施例
参考图 13,本实施例与第一实施例不同的是,柱体为一圆柱体 10。 圆柱体 10包括两个触控組 101。 圆柱体 10具有三个面 , 为方便说明 , 分别为顶面 11 、 底面 12和侧面 13。两个触控組 101分别对应设置到圆柱体 10的顶面 11和底面 12。
本实施例中 ,每个触控組 101 包括三个接触点, 沿对应面的中心呈均匀分 布。其中圆柱体 10的底面 12的触控組 101的三个接触点全部为导电接触点 17 , 圆柱体 10的顶面 11的触控組 101的三个接触点中 ,导电接触点 17的个数为一 个,不导电接触点 18的个数为两个。 圆柱体 10的底面 12的导电接触点 17构 成一个等边三角形点阵。从而圆柱体 10的顶面 11、底面 12每一个面可实现一 种功能的触控操作。 由于圆柱体 10的顶面 11和底面 12都有三个接触点, 因而 不论哪面放置到多点触控屏幕、多点触摸板等时,都能保证圆柱体 10的平衡放 置 °
在实际使用时 ,例如应用在平板计算机上的绘图程序下时,假定选中了橡 皮工具需要实现擦除功能,则可将圆柱体 10的顶面 11 的触控組 101 的一个导 电接触点 17触控平板计算机 50的屏幕 51 ,该一个导电接触点 17传递的是代表 橡皮的信号,移动圆柱体 10, 即可实现擦除功能。若在绘图程序下或记事本程 序下需要显示菜单时,则可将圆柱体 10的底面 12的触控組 101 的三个导电接 触点 17同时触控平板计算机 50的屏幕 51 ,该三个导电接触点 17传递的是显示 菜单的信号 , 此时在平板计算机的屏幕上会显示菜单 ,例如拷贝 、存盘、分享 等功能,转动圆柱体 10,还可使平板计算机屏幕上的文件放大或缩小。
圆柱体 10的侧面 13设有贯穿的通孔 21 ,便于放置指尖, 以便操控圆柱体
10。
本发明的本体为柱体时, 还可根据实际情况在每一个面上都设置一个触控 組 101 , 只要保证每一个面上的触控組 101的导电接触点 17的个数互不相同即 可,从而可实现更多功能的触控操作,极大的方便了人们的使用 。 第五实施例
参考图 14,本实施例与第一实施例不同的是,本体不是柱体,而是球体 10。 每个触控組 101设置在球体 10的表面上。球体 10包括两个触控組 101 ,两个触 控組 101呈相对设置。其中一个触控組 101设置在球体 10的上部 ,另一个触控 阻 101设置在球体 10的下部。
球体 10的上部表面和下部表面在对应触控組 101的若干接触点的位置分别 设有一凹槽 19,接触点可拆卸地安装到对应的凹槽 19 中 。具体的 , 凹槽 19内 设有 ^坱 23,接触点设有卡槽 (图上未显示),卡槽与卡坱 23相配合从而使 接触点可拆卸地安装到对应的凹槽 19中 ,拆装方便。
本实施例中 ,每个触控組 101 包括三个接触点。其中球体 10上部的触控組
101 的三个接触点中 , 导电接触点 17 为一个,不导电接触点 18 为两个。球体 10下部的触控組 101 的三个接触点全部为导电接触点 17。球体 10下部的触控 組 101的三个导电接触点 17可单独使用 ,也可两两組合使用 ,也可三个一起使 用 °
在具体使用时,可将手指握于球体 10的中间部位来进行触控操作。例如应 用在平板计算机上的绘图程序下时,假定选中了橡皮工具需要实现擦除功能, 则可将球体 10上部的触控組 101的一个导电接触点 17触控平板计算机 50的屏 幕 51 ,该一个导电接触点 17传递的是代表橡皮的信号,移动球体 10, 即可实 现擦除功能。也可将球体 10下部的触控組 101 的其中一个导电接触点 17触控 平板计算机的屏幕, 同样可实现擦除功能。若在绘图程序下或记事本程序下需 要显示菜单时,则可将球体 10下部的触控組 101 的三个导电接触点 17 同时触 控平板计算机 50的屏幕 51 ,该三个导电接触点 17传递的是显示菜单的信号, 此时在平板计算机的屏幕上会显示菜单,例如拷贝 、存盘、分享等功能, 转动 球体 10,还可使平板计算机屏幕上的文件放大或缩小。假定在绘图接口需要使 用到尺子,则可将球体 10下部的触控組 101 的其中两个导电接触点 17 同时触 控平板计算机 50的屏幕 51 ,该两个导电接触点 17传递的是显示尺子的信号, 此时在平板计算机的屏幕上会出现尺子。
本发明的本体为球体 10时,还可根据实际情况在球体 10表面上设置更多 的触控組 101 ,只要保证每个触控組 101的导电接触点 17的个数互不相同即可, 从而可实现更多功能的触控操作,极大的方便了人们的使用 。 以上实施例仅表达了本发明的优选实施方式, 其描述较为具体和详细 ,但 并不能因此而理解为对本发明专利范围的限制。应当指出的是,对于本领域的 普通技术人员来说,在不脱离本发明构思的前提下 ,还可以做出若干变形和改 进,如对各个实施例中的不同特征进行組合等 ,这些都属于本发明的保护范围 。

Claims

权 利 要 求 书
1. 一种多点触控应用装置,其特征在于: 包括本体,所述本体包括至少一个触 控組,每个触控組包括若干接触点,且每个触控組的所述若干接触点中至少 一个为导电接触点;每个触控組的所述导电接触点的个数互不相同。
2. 根据杈利要求 1所述的多点触控应用裝置,其特征在于:每个触控组的所述 若干接触点的顶端处于同一平面。
3. 根据杈利要求 2所述的多点触控应用装置,其特征在于:所述本体的表面为 可导电材料。
4. 根据权利要求 3所述的多点触控应用装置,其特征在于:所述本体具有至少 一个表面,所述表面设有凹槽,所述接触点可拆卸地安裝到所述凹槽。
5. 根据权利要求 4所述的多点触控应用装置,其特征在于:所述凹槽内设有卡 块,所述接触点设有与所述卡块相匹配的卡槽。
6. 根据权利要求 5所述的多点触控应用装置,其特征在于: 当所述若干接触点 中有至少一个不导电接触点时,所述导电接触点和不导电接触点为相同的结 构 °
7. 根据权利要求 6所述的多点触控应用装置,其特征在于:每个触控组的所述 接触点个数相同。
8. 根据权利要求 7所述的多点触控应用装置,其特征在于:所述表面设有用于 放置指尖的凹位。
9. 根据权利要求 8所述的多点触控应用装置,其特征在于:所述表面设有容纳 孔。
10.根据权利要求 9所述的多点触控应用装置,其特征在于:所述容纳孔为通孔。
11.根据权利要求 9所述的多点触控应用装置,其特征在于:所述凹位内设有提 示部件,所述提示部件用于提示所述凹位所在表面的导电接触点的个数。 据权利要求 11 所述的多点触控应用装置,其特征在于:每个触控組的相 邻两个导电接触点之间的距离不小于 1厘米 。
据权利要求 11 所述的多点触控应用装置,其特征在于:所述提示部件为 凸起,所述凸起的个数与对应面上的所述触控組的导电接触点的个数相同 。 据权利要求 11 所述的多点触控应用装置,其特征在于:所述提示部件为 阿拉伯数字,所述阿拉伯数字与对应面上的所述触控組的导电接触点的个数 对应。
据权利要求 11 所述的多点触控应用装置,其特征在于:所述提示部件为 第二凹槽,所述第二凹槽的个数与对应面上的所述触控組的导电接触点的个 数相同 。
据权利要求 11 所述的多点触控应用装置,其特征在于:所述本体为一柱 体,每个触控組分别设置在柱体的不同表面上。
据权利要求 16 所述的多点触控应用装置,其特征在于:所述柱体为一立 方体;所述立方体包括四个所述触控組,所述四个触控組分别设置在立方体 的其中两組相对面上。
据权利要求 16 所述的多点触控应用装置,其特征在于:所述柱体为三角 柱体;所述三角柱体包括三个所述触控組,所述三个触控組分别设置在三角 柱体的三个相邻侧面上。
据权利要求 16 所述的多点触控应用装置,其特征在于:所述柱体为一圆 柱体;所述圆柱体包括两个所述触控組,所述两个触控組分别设置在圆柱体 的顶面和底面上。
据权利要求 16 所述的多点触控应用装置,其特征在于:所述本体为一球 体,每个触控組设置在所述球体的表面上。
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Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10928960B1 (en) * 2020-02-21 2021-02-23 Mobilizar Technologies Pvt Ltd System and method to track movement of an interactive figurine on a touch screen interface

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102467283A (zh) * 2010-11-19 2012-05-23 纬创资通股份有限公司 具有多点触控功能的触控装置以及触控操作方法
CN102591509A (zh) * 2011-01-05 2012-07-18 瑞鼎科技股份有限公司 多点触控配件
CN104903901A (zh) * 2013-10-08 2015-09-09 12Cm株式会社 电容式触控认证方法

Family Cites Families (27)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1804942B1 (en) * 2004-09-21 2013-05-08 Koninklijke Philips Electronics N.V. Game board, pawn, sticker and system for detecting pawns on a game board
JP5009814B2 (ja) * 2005-02-02 2012-08-22 コーニンクレッカ フィリップス エレクトロニクス エヌ ヴィ 起動可能サブパーツを備えた駒
KR100991082B1 (ko) * 2005-09-14 2010-10-29 비스테온 글로벌 테크놀로지스, 인크. 조작용 다이얼
US20080280682A1 (en) * 2007-05-08 2008-11-13 Brunner Kevin P Gaming system having a set of modular game units
JP5161690B2 (ja) * 2008-07-31 2013-03-13 キヤノン株式会社 情報処理装置及びその制御方法
US8599162B2 (en) * 2010-03-18 2013-12-03 Chris Argiro Actionable-object controller and data-entry attachment for touchscreen-based electronics
KR101892266B1 (ko) * 2011-10-06 2018-08-28 삼성전자주식회사 입력 판단 방법 및 그 장치
KR101305412B1 (ko) * 2012-01-09 2013-09-06 최영우 터치스크린이 채용된 휴대 단말기용 터치스탬프 및 이를 이용한 인증시스템 및 방법
TWI475438B (zh) * 2012-08-13 2015-03-01 Wistron Corp 旋鈕控制裝置與觸控面板的操作方法
US20140062895A1 (en) * 2012-08-30 2014-03-06 Al Chakra Fingertip multi-touch input device
EP2724761A1 (de) * 2012-10-26 2014-04-30 printechnologics GmbH Modulares Objekt zur Identifizierung durch Berührungsbildschirme
US20140210748A1 (en) * 2013-01-30 2014-07-31 Panasonic Corporation Information processing apparatus, system and method
WO2014139092A1 (en) * 2013-03-12 2014-09-18 Zheng Shi System and method for interactive board
US9229548B2 (en) * 2013-03-14 2016-01-05 Goldilocks Consulting, Llc Reconfigurable objects for touch panel interaction
US9555320B2 (en) * 2013-05-17 2017-01-31 Castar, Inc. System and method to identify and track objects on a surface
WO2015050979A1 (en) * 2013-10-01 2015-04-09 The Cleveland Clinic Foundation Object recognition by touch screen
US8803844B1 (en) * 2013-10-02 2014-08-12 DigiPuppets LLC Capacitive finger puppet for use on touchscreen devices
KR102161565B1 (ko) * 2013-12-18 2020-10-05 삼성전자주식회사 보조 입력 장치를 이용한 전자 장치 및 그 운용 방법
CN105765512A (zh) * 2014-01-30 2016-07-13 施政 在交互面上用物理物体进行计算机编程的系统及方法
JP2015185173A (ja) * 2014-03-24 2015-10-22 株式会社 ハイヂィープ タッチ圧力及びタッチ面積による動作対象の臨時操作方法及び端末機
US20150277593A1 (en) * 2014-04-01 2015-10-01 Ryan Martin Thumb Stylus for Capacitive Touch Screens
KR101598185B1 (ko) * 2014-05-15 2016-02-29 에스케이텔레콤 주식회사 스탬퍼, 그리고 단말 및 그 동작 방법
DE102014218493A1 (de) * 2014-09-16 2016-03-17 Bayerische Motoren Werke Aktiengesellschaft Anzeige- und Bedienvorrichtung, insbesondere für ein Kraftfahrzeug, Bedienelement und Kraftfahrzeug
KR102407623B1 (ko) * 2014-09-29 2022-06-10 삼성전자주식회사 사용자 단말 장치 및 이의 제어 방법
KR101755455B1 (ko) * 2014-11-28 2017-07-07 현대자동차 주식회사 노브 어셈블리 및 이를 포함하는 차량용 제어장치
JP5908158B1 (ja) * 2015-10-16 2016-04-26 株式会社コト プログラム、及びスタンプシステム
CN206075244U (zh) * 2016-07-12 2017-04-05 汕头超声显示器技术有限公司 一种带有力学感应功能的触控装置

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102467283A (zh) * 2010-11-19 2012-05-23 纬创资通股份有限公司 具有多点触控功能的触控装置以及触控操作方法
CN102591509A (zh) * 2011-01-05 2012-07-18 瑞鼎科技股份有限公司 多点触控配件
CN104903901A (zh) * 2013-10-08 2015-09-09 12Cm株式会社 电容式触控认证方法

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