CN217060938U - Touch pen and touch interaction device - Google Patents
Touch pen and touch interaction device Download PDFInfo
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- CN217060938U CN217060938U CN202123074076.3U CN202123074076U CN217060938U CN 217060938 U CN217060938 U CN 217060938U CN 202123074076 U CN202123074076 U CN 202123074076U CN 217060938 U CN217060938 U CN 217060938U
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Abstract
The utility model provides a touch-control pen and touch-control interactive installation, wherein the touch-control pen contains a pen-holder, an apron and a circuit control subassembly. The pen holder is provided with a pen point, a holder wall and an accommodating space, the holder wall is further provided with an embedding groove communicated with the accommodating space, and the pen point is arranged at one end of the pen holder. The cover plate corresponds to and covers the caulking groove. The circuit control assembly is accommodated in the accommodating space. The circuit control module comprises a mainboard and a touch sensing module connected with the mainboard, wherein the touch sensing module is attached to a first inner wall of the pole wall or the cover plate to form a touch sensing area. The touch sensing module is used for receiving and sensing at least one touch instruction of the finger on the touch sensing area.
Description
Technical Field
The utility model relates to an electronic equipment field, in particular to touch-control pen and touch-control interactive installation.
Background
With the popularization of touch electronic devices, touch technologies are gradually integrated into the daily lives of people, and especially, the application of a touch pen becomes a combination relationship between users and touch devices, but the function of the touch pen in the prior art is too single, which only can satisfy simple operations of the contact between mass users and the touch devices, but as a portable electronic device for communication or operation between users and electronic devices, only the touch function is not too single, and the interaction function between the electronic device with the touch function and the users is also single, so that the expansion of the function of the touch pen becomes the development direction of designers and manufacturers, and further the interaction relationship between the users and the electronic devices is enriched.
Therefore, in order to generate more interactive functions with the touch device, the touch pen has been introduced in the market, and a plurality of physical keys are fabricated on the pen body of the touch pen, however, the functions of the physical keys are also limited by the pen body space and the limited number of keys, and the touch function and the control mode of the touch pen cannot meet the market and consumer demands.
SUMMERY OF THE UTILITY MODEL
An object of the present invention is to provide a touch pen and a touch interaction device, which increase the touch function through the pen holder, so as to increase the interactivity and functionality between the touch pen and the electronic device.
To achieve the above objective, the present invention discloses a touch pen, which provides a plurality of fingers of a hand to operate, and the touch pen comprises a pen holder, a cover plate and a circuit control assembly. The pen holder is provided with a pen point, a holder wall and an accommodating space, the holder wall is further provided with an embedding groove communicated with the accommodating space, and the pen point is arranged at one end of the pen holder. The cover plate corresponds to and shields the caulking groove. The circuit control assembly is accommodated in the accommodating space. The circuit control module comprises a mainboard and a touch sensing module connected with the mainboard, and the touch sensing module is attached to a first inner wall of the pole wall or the cover plate to form a touch sensing area. The touch sensing module is used for receiving and sensing at least one touch instruction of the finger on the touch sensing area.
In one embodiment, the touch sensing module includes a touch chip, a touch conductive film and a flexible printed circuit board, wherein the touch chip is electrically connected to the touch conductive film and is connected to the motherboard by the flexible printed circuit board.
In an embodiment, the touch sensing module further includes an adhesive layer disposed between the touch conductive film and the rod wall or the first inner wall to tightly attach the touch sensing module to the rod wall or the first inner wall.
In an embodiment, one end of the flexible circuit board of the touch sensing module further includes a connector, and the main board includes a socket, and the connector is electrically connected to the socket.
In an embodiment, the pen holder further includes a groove, the touch sensing module is correspondingly positioned in the groove and attached to a second inner wall of the groove, and the pen head includes a pen core and a positioning block for fixing the pen core.
In one embodiment, the wall thickness of the second inner wall is less than the wall thickness of the first inner wall.
Moreover, the present creation also provides a touch interactive device, which comprises a touch pen and an electronic device, wherein the touch pen provides a plurality of fingers of a hand for controlling. The touch pen comprises a pen holder, a cover plate and a circuit control assembly. The pen holder is provided with a pen head, a holder wall and an accommodating space, the holder wall is further provided with an embedding groove communicated with the accommodating space, and the pen head is arranged at one end of the pen holder. The cover plate corresponds to and shields the caulking groove. The circuit control assembly is accommodated in the accommodating space. The circuit control module comprises a mainboard and a touch sensing module connected with the mainboard, and the touch sensing module is attached to a first inner wall of the pole wall or the cover plate to form a touch sensing area. The touch sensing module is used for receiving and sensing at least one touch instruction of the finger on the touch sensing area. The electronic device receives the at least one touch instruction and executes corresponding at least one interactive operation.
In one embodiment, the at least one touch command includes one or a combination of sliding, rotating, and hitting on the touch sensing area, and the at least one interactive operation includes one or a combination of moving a cursor, selecting an object, moving an object, and positioning an object.
In one embodiment, the size of the touch sensing area is the same as the area of the touch sensing module.
In an embodiment, the electronic device further includes a pen slot for the stylus to be stored therein.
This creation adopts touch-control wafer (IC) and touch-control conductive film (sensor) that have touch-control function to constitute, and the touch-control conductive film combines with the slot or the apron of pen-holder, promotes the competitiveness and the added value of touch-control pen product to reach easy and simple to handle, easy, satisfy the demand of user and market, realize the diversified control desire of user.
Drawings
In order to illustrate the embodiments or the technical solutions in the prior art more clearly, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present disclosure, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.
Fig. 1 is a partial perspective view of a stylus according to the present invention (a first embodiment);
fig. 2 is a schematic perspective view of the circuit control module of the present invention;
fig. 3 is another schematic perspective view (a second embodiment) of the stylus of the present invention; and
fig. 4 is a diagram of an embodiment of the touch interaction device of the present invention.
Detailed Description
Reference in the detailed description to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the present writing. The appearances of the same phrases in various places in the specification are not necessarily limited to the same embodiment, but are to be construed as independent or alternative embodiments to other embodiments. In light of the disclosure of embodiments provided by the present disclosure, those skilled in the art will appreciate that the embodiments described in the present disclosure can be combined or modified with other embodiments consistent with the present inventive concept.
As shown in fig. 1 and 2, the present disclosure provides a stylus 100 for manipulating a plurality of fingers of a hand of a person to write, draw or perform other operations on a touch-sensitive device, such as an electronic device like a smart phone, a tablet, a touch screen, etc. The specific touch operation is the prior art, and is not described herein in detail.
In the first embodiment as shown in fig. 1 and 2, the stylus 100 includes a shaft 110, a cover 150 and a circuit control element 200. The pen shaft 110 has a pen tip 120, a shaft wall 112 and an accommodating space 130, and the shaft wall 112 further has an insertion groove 114 communicating with the accommodating space 130. The nib 120 is disposed at one end, e.g., a tip, of the barrel 110. In the embodiment shown in fig. 1, the pen tip 120 preferably further comprises a pen core 122 made of a conductive material and a positioning block 124 for fixing the pen core 122, wherein the positioning block 124 can fix the pen core 122 in the pen barrel 110.
It should be noted that the conductive material includes, for example, metal, conductive alloy, conductive plastic, and conductive rubber. Metals and alloys thereof, such as silver, copper, gold, aluminum or alloys thereof, and the like. The conductive plastic and the conductive rubber are characterized in that conductive particles such as silver-plated glass, silver-plated aluminum, silver and the like are uniformly distributed in the plastic or silicon rubber, and the conductive particles are contacted by pressure to achieve a good conductive effect. The various conductive materials described above are not limited in this embodiment.
Referring to fig. 3, in the second embodiment, the cover plate 150 corresponds to and covers the caulking groove 114 to cover the entire accommodating space 130. The circuit control assembly 200 is received in the receiving space 130. The circuit control module 200 includes a main board 210 and a touch sensing module 220 connected to the main board 210, wherein the touch sensing module 220 is attached to the rod wall 112 or a first inner wall 152 of the cover plate 150 to form a touch sensing area 230 (see fig. 3). The touch sensing module 220 is disposed on the touch sensing area 230 for receiving and sensing at least one touch command (not shown) of the finger (not shown).
In the embodiment shown in fig. 2, the touch sensing module 220 further includes a touch chip 222, a touch conductive film 224 and a flexible circuit board 228. The touch chip 222 is electrically connected to the touch conductive film 224 and connected to the motherboard 210 by extending the flexible circuit board 228, wherein one end of the flexible circuit board 228 of the touch sensing module 220 further includes a connector 226, the motherboard 210 includes a socket 212, and the connector 226 is electrically connected to the socket 212, so that the touch command is transmitted to a control chip (not shown) of the motherboard 210 through the flexible circuit board 228.
In the embodiment shown in fig. 3, the barrel 110 further includes a groove 116. The touch sensing module 220 is correspondingly positioned in the groove 116 and attached to a second inner wall 118 of the groove 116, wherein the wall thickness of the second inner wall 118 is smaller than that of the first inner wall 152, so as to increase the touch sensing effect and sensitivity of the finger.
It should be noted that the touch sensing module 220 uses a capacitive sensing method to activate a switch, when the touch sensing area 230 is lightly touched by a finger, the charges on the human body will induce a capacitance value in the touch sensing area 230, and the switch or signal is activated through circuit conversion to complete various touch commands. Specifically, the at least one touch command includes one or a combination of sliding, rotating, and hitting times on the touch sensing area 230, wherein the size of the touch sensing area 230 is preferably the same as the area of the touch sensing module 220.
In addition, it should be noted that the main board 210 in the embodiment further includes a control module (not shown) and a power module (not shown), but is not limited thereto. In other embodiments, the main board 210 may also include a bluetooth module, a local wireless network module, or a microphone module, and the design is added as required and not limited. When the charging module is taken as an example, the connector (not shown) conforming to the interface specification of Micro-USB, USB Type-C or Lightning can be externally connected to the pen holder 110, and the connector can be plugged into a charging socket (not shown) of the touch electronic device in a wired charging manner, so that the charging module can supply the electric energy transmitted by the charging socket to the power module through the interface for charging the touch pen 100. Moreover, the charging module may also be built with a receiving coil and a rectifying circuit (not shown), and the receiving coil receives the electromagnetic wave energy transmitted by the external power supply equipment, and the rectifying circuit rectifies the received electric energy and supplies the rectified electric energy to the power module through the interface to charge the stylus pen 100 in a wireless charging manner.
Referring to fig. 4, the present disclosure also provides a touch interactive device 300, which includes a stylus 100 and an electronic device 300. The stylus 100 provides for finger manipulation of a human hand. The stylus 100 includes a shaft 110, a cover 150, and a circuit control device 200. The pen barrel 110 has a pen tip 120, a barrel wall 112 and a receiving space 130. The shaft wall 112 further defines a recessed groove 114 communicating with the accommodating space 130, and the pen tip 120 is disposed at one end of the pen shaft 110. The cover plate 150 corresponds to and shields the insertion groove 114. The circuit control assembly 200 is received in the receiving space 130. The circuit control module 200 includes a main board 210 and a touch sensing module 220 connected to the main board 210. The touch sensing module 220 is attached to the rod wall 112 or a first inner wall 152 of the cover plate 150 to form a touch sensing area 230. The touch sensing module 220 is disposed on the touch sensing area 230 for receiving and sensing at least one touch command of the finger, wherein the size of the touch sensing area 230 is the same as the area of the touch sensing module 220. The electronic device 300 receives the at least one touch command and executes at least one corresponding interactive operation.
In the present embodiment, the structure and the operation manner of the stylus 100 are as described in the above embodiments, and are not described herein again. The electronic device 300 includes a touch-enabled electronic device, such as a smart phone, a tablet, a touch screen, and the like, but is not limited in the embodiment. The electronic device 300 further includes a pen slot 310 for the stylus 100 to store therein. The pen groove 310 may be a buckle/clamp groove, or an accommodating groove, and is not limited.
In the embodiment shown in fig. 4, the at least one touch command includes one or a combination of sliding, rotating, and hitting times on the touch sensing area 230, and the at least one interactive operation includes one or a combination of moving a cursor, selecting an object, moving an object, and positioning an object. However, in other different embodiments, the touch command may also facilitate the functions of a general touch key, such as zooming and multi-touch functions, so that the human-machine interface is more suitable for people's needs.
Therefore, the touch control chip 222(IC) with touch control function and the touch control conductive film 224(sensor) are adopted in the creation, and the touch control conductive film 224 is combined with the groove 116 or the cover plate 150 of the pen holder 110, so that the competitiveness and the added value of the touch control pen 100 product are improved, the operation is simple and convenient, the market demand of a user is met, and the diversified control desire of the user is realized.
Although examples of the present invention have been described with respect to specific embodiments, they are merely examples, and the present invention is not limited thereto, and should be construed as having the broadest scope within the technical spirit disclosed in the present specification. Those skilled in the art can implement the present invention in a form not described in the embodiments of the present invention by combining or replacing the disclosed embodiments, and those skilled in the art can change or modify the disclosed embodiments based on the present specification, and thus, such changes or modifications fall within the scope of the present invention.
Claims (10)
1. A stylus providing finger manipulation of a hand of a person, the stylus comprising:
the pen holder is provided with a pen point, a holder wall and an accommodating space, the holder wall is also provided with a caulking groove communicated with the accommodating space, and the pen point is arranged at one end of the pen holder;
a cover plate corresponding to and covering the caulking groove; and
the circuit control module is contained in the containing space and comprises a main board and a touch sensing module connected with the main board, the touch sensing module is attached to the rod wall or a first inner wall of the cover plate to form a touch sensing area, and the touch sensing module is used for receiving and sensing at least one touch instruction of the finger on the touch sensing area.
2. The touch pen as claimed in claim 1, wherein the touch sensing module comprises a touch chip, a touch conductive film and a flexible printed circuit board, the touch chip is electrically connected to the touch conductive film and the flexible printed circuit board is connected to the main board.
3. The touch pen of claim 2, further comprising an adhesive layer disposed between the touch conductive film and the shaft wall or the first inner wall for tightly adhering the touch sensing module to the shaft wall or the first inner wall.
4. The touch pen of claim 2, wherein one end of the flexible circuit board of the touch sensing module further comprises a connector, and the main board comprises a socket, and the connector is electrically connected to the socket.
5. The touch pen of claim 1, wherein the shaft further comprises a groove, the touch sensing module is correspondingly positioned in the groove and attached to a second inner wall of the groove, and the pen head comprises a pen core and a positioning block for fixing the pen core.
6. The stylus of claim 5, wherein a wall thickness of the second inner wall is less than a wall thickness of the first inner wall.
7. A touch interaction device, comprising:
a stylus providing finger manipulation of a hand of a person, the stylus comprising:
the pen holder is provided with a pen point, a holder wall and an accommodating space, the holder wall is also provided with a caulking groove communicated with the accommodating space, and the pen point is arranged at one end of the pen holder;
a cover plate corresponding to and covering the caulking groove; and
the circuit control module is arranged in the accommodating space and comprises a main board and a touch sensing module connected with the main board, the touch sensing module is attached to the rod wall or the inner wall of the cover plate to form a touch sensing area, and the touch sensing module is used for receiving and sensing at least one touch instruction of the finger on the touch sensing area; and
and the electronic device receives the at least one touch instruction and executes corresponding at least one interactive operation.
8. The touch interactive device of claim 7, wherein the at least one touch command comprises one or a combination of sliding, rotating, and hitting on the touch sensing area, and the at least one interactive operation comprises one or a combination of moving a cursor, selecting an object, moving an object, and positioning an object.
9. The touch interaction device of claim 7, wherein the size of the touch sensing area is the same as the area of the touch sensing module.
10. The touch interaction device of claim 7, wherein the electronic device further comprises a pen slot for the stylus to be stored therein.
Priority Applications (1)
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CN202123074076.3U CN217060938U (en) | 2021-12-08 | 2021-12-08 | Touch pen and touch interaction device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202123074076.3U CN217060938U (en) | 2021-12-08 | 2021-12-08 | Touch pen and touch interaction device |
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CN217060938U true CN217060938U (en) | 2022-07-26 |
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CN202123074076.3U Active CN217060938U (en) | 2021-12-08 | 2021-12-08 | Touch pen and touch interaction device |
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