WO2017206091A1 - Electronic device - Google Patents

Electronic device Download PDF

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Publication number
WO2017206091A1
WO2017206091A1 PCT/CN2016/084209 CN2016084209W WO2017206091A1 WO 2017206091 A1 WO2017206091 A1 WO 2017206091A1 CN 2016084209 W CN2016084209 W CN 2016084209W WO 2017206091 A1 WO2017206091 A1 WO 2017206091A1
Authority
WO
WIPO (PCT)
Prior art keywords
electronic device
chip
protective cover
touch
biometric
Prior art date
Application number
PCT/CN2016/084209
Other languages
French (fr)
Chinese (zh)
Inventor
王小明
Original Assignee
深圳信炜科技有限公司
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 深圳信炜科技有限公司 filed Critical 深圳信炜科技有限公司
Priority to CN201680000454.6A priority Critical patent/CN106062702A/en
Priority to PCT/CN2016/084209 priority patent/WO2017206091A1/en
Publication of WO2017206091A1 publication Critical patent/WO2017206091A1/en

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
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • 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
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • G06F3/04886Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures by partitioning the display area of the touch-screen or the surface of the digitising tablet into independently controllable areas, e.g. virtual keyboards or menus
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V40/00Recognition of biometric, human-related or animal-related patterns in image or video data
    • G06V40/10Human or animal bodies, e.g. vehicle occupants or pedestrians; Body parts, e.g. hands
    • G06V40/12Fingerprints or palmprints
    • G06V40/13Sensors therefor

Definitions

  • the present invention relates to the field of biometric information sensing technologies, and in particular, to an electronic device having a biometric information sensing function.
  • biosensor devices have gradually become standard equipment for electronic devices (e.g., mobile phones, etc.).
  • the biosensor device is currently mainly used for sensing biological information input by a user, and the main control circuit of the electronic device controls whether the electronic device performs a preset function according to the biological information sensed by the biosensor device.
  • the present invention provides an electronic device that uses a biometric chip to drive a touch button to perform a touch sensing function.
  • the present invention provides an electronic device, including:
  • a protective cover plate comprising a first surface and a second surface opposite to the first surface
  • a touch button disposed on the second surface of the protective cover
  • a biometric identification chip is disposed on the second surface of the protective cover by a flip chip technology and is connected to the touch button, and the biometric chip is configured to sense a user from the first cover of the protective cover The surface input biometric information is also used to drive the touch button to perform touch sensing.
  • the biometric chip when the protective cover is a glass cover or a sapphire cover, the biometric chip is bound to the second surface of the protective cover by a COG process; when the protective cover is a film cover The plaque, the biometric chip is bound to the second surface of the protective cover by a COF process.
  • the electronic device further includes a light shielding layer disposed on the second surface of the protective cover to define a light transmissive area and a non-transparent area on the protective cover; And the biometric chip is disposed in the non-transparent area.
  • the touch button and the biometric chip are both disposed in the same mountain of the electronic device.
  • the non-transparent area of the second surface of the protective cover is further formed with a wire for electrically connecting the biometric chip and the touch button.
  • the wire is located between the touch button and the biometric chip.
  • the wire is made of conductive silver paste or molybdenum lithium molybdenum.
  • the electronic device further includes a touch sensing layer disposed on a side of the second surface of the protective cover for sensing whether there is a light transmissive area on the protective cover User's touch operation
  • the electronic device further includes a display device, the display device is stacked with the touch sensing layer; or the display device and the touch sensing layer form an in-line type Touch the display device.
  • the touch button includes a sensing electrode that is either formed on a second surface of the second cover or formed on a flexible circuit board.
  • the touch electrode when the sensing electrode is formed on the second surface of the second cap plate, the touch electrode is made of conductive silver paste or molybdenum lithium molybdenum.
  • the biometric identification chip includes a sensing electrode array and a control circuit, the control circuit is configured to control the sensing electrode array to perform biometric information sensing, and is further configured to control the touch button to perform Touch sensing.
  • control circuit controls the sensing electrode array and the touch button to operate simultaneously or separately.
  • the biometric chip is one or more of a fingerprint recognition chip, a blood oxygen recognition chip, and a heartbeat recognition chip.
  • the biometric chip is a die.
  • the present invention also provides an electronic device, including:
  • a protective cover plate comprising a first surface and a second surface opposite to the first surface
  • a touch button is disposed on the second surface of the protective cover
  • a biometric chip disposed on the anisotropic conductive layer, through the anisotropic conductive layer and the guide The line is electrically connected to the touch button, the biometric chip is configured to sense biometric information input by a user from a first surface of the protective cover, and is further configured to drive the touch button to perform a touch sensing function.
  • the anisotropic conductive layer is an anisotropic conductive film or an anisotropic conductive paste.
  • the electronic device includes an in-cell touch display device, and the biometric identification chip, the touch button, the wire, and the anisotropic conductive layer are all disposed in an in-cell touch display device and protected. Between the covers.
  • the biometric chip, touch buttons, wires, and anisotropic conductive layers are all disposed at the same end of the electronic device.
  • biometric chip of the electronic device of the present invention is used to sense the biometric information input by the user, it is also used to drive the touch button to perform touch sensing, so that the function of the biometric identification chip is further expanded, and the biometric identification chip is improved. Utilization.
  • FIG. 1 is a partially exploded perspective view of an embodiment of a mobile phone according to the present invention.
  • FIG. 1a is a schematic cross-sectional view showing a partial structure of the mobile phone shown in FIG.
  • FIG. 1b is a schematic diagram showing a partial assembly structure of the mobile phone shown in FIG. 1.
  • FIG. 2 is a schematic diagram showing the structure of a modified embodiment of the touch button shown in FIG.
  • FIG. 3 is a circuit block diagram of the biometric chip shown in FIG.
  • FIG. 4 is a schematic block diagram showing a partial structure of a modified embodiment of the mobile phone of the present invention.
  • FIG. 5 is a schematic block diagram showing a partial structure of still another modified embodiment of the mobile phone of the present invention.
  • FIG. 6 is a schematic block diagram showing a partial structure of still another modified embodiment of the mobile phone of the present invention.
  • FIG. 7 is a schematic block diagram showing a partial structure of still another modified embodiment of the mobile phone of the present invention.
  • Example embodiments will now be described more fully with reference to the appended drawings. However, the example embodiments can be embodied in a variety of forms, and should not be construed as being limited to the embodiments set forth herein. To those skilled in the art.
  • the thickness and size of each layer shown in the drawings may be exaggerated, omitted or schematically shown, and the number of related elements may be schematically illustrated for convenience or clarity.
  • the size of the components does not fully reflect the actual size, and the number of related components does not fully reflect the actual number.
  • connection may be a plurality of embodiments such as an electrical connection, a mechanical connection, a coupling, a direct connection, and an indirect connection, and is not particularly limited unless the invention is specifically described below.
  • the orientation or positional relationship of the “bottom”, “inside”, “outside” and the like is based on the orientation or positional relationship shown in the drawings, and is merely for the convenience of describing the present invention and simplifying the description, rather than indicating or implying the indicated device. Or the components must have a particular orientation, are constructed and operated in a particular orientation, and are therefore not to be construed as limiting the invention.
  • FIG. 1 is a partially exploded perspective view of an embodiment of an electronic device according to the present invention.
  • Figure la is a schematic sectional view showing a part of the structure of the mobile phone shown in Figure 1.
  • Figure lb is a schematic diagram showing a partial assembly structure of the mobile phone shown in Figure 1.
  • the invention provides an electronic device, which can be a portable electronic product, a home-based electronic product or an in-vehicle electronic product.
  • the electronic device is not limited to the electronic products listed herein, but may be other suitable electronic products.
  • the portable electronic product is, for example, a mobile terminal, and the mobile terminal is, for example, a suitable mobile terminal such as the mobile phone, tablet computer, notebook computer, wearable product, or the like.
  • the home-based electronic product is, for example, a smart home lock, a television, a refrigerator, a desktop computer, etc. Home electronics.
  • the in-vehicle electronic products are, for example, suitable in-vehicle electronic products such as an in-vehicle display, a driving recorder, a navigator, and a car refrigerator.
  • the electronic device 100 is described by taking the commonly used mobile phone as an example.
  • the electronic device 100 includes a protective cover 10, a touch button 20, and a biometric chip 30.
  • the protective cover 10 includes a first surface 11 and a second surface 12 opposite the first surface 11.
  • the first surface 11 is a first surface 11 and a second surface 12 opposite the first surface 11.
  • the protective cover 10 is, for example, a transparent glass or sapphire cover.
  • the material of the protective cover 10 may also be other suitable materials, and is not limited to a glass or sapphire cover, for example, a film cover. board.
  • the protective cover 10 can also be a translucent or non-transparent cover.
  • the touch button 20 is disposed on the second surface 12 of the protective cover 10.
  • the biometric identification chip 30 is connected to the touch button 20 for sensing biological information input by the user from the first surface 11, and is also used to drive the touch button 20 to perform a touch sensing function.
  • the electronic device 100 performs a preset function or an application, for example: a screen unlocking function, Payment function, launch APP (App licatio, application), open folder, and more.
  • biometric chip 30 of the present invention is further used to drive the touch button 20 to perform touch sensing
  • the function of the biometric identification chip 30 is further expanded to improve the utilization rate of the biometric identification chip 30.
  • the biometric identification chip 30 is, for example, one or more of a fingerprint recognition chip, a blood oxygen recognition chip, a heartbeat recognition chip, a pressure recognition chip, a humidity recognition chip, a temperature recognition chip, and an iris recognition chip.
  • the biological information is, for example, one or more of fingerprint information, blood oxygen information, heartbeat information, pressure information, humidity information, temperature information, and iris information.
  • the present invention is not limited to the types of biometric chips 30 and biological information listed herein, but may be other suitable biometric chips 30 and types of biological information.
  • the biometric chip 30 is disposed on the second surface 12 side of the protective cover 10.
  • the biometric chip 30 can also be disposed at other suitable locations on the side of the electronic device 100, and is not limited to the front side of the electronic device 100.
  • the biometric identification chip 30 is provided.
  • the protective cover 10 can be disposed under the protective cover 10, and the through cover can also be disposed on the protective cover 10.
  • the biometric chip 30 is disposed in the through hole. Further, the biometric chip 30 can be combined with a physical button and disposed in the through hole.
  • the biometric chip 30 is disposed on the second surface 12 of the protective cover 10 by a flip chip (Flip-CWp) technology and is connected to the touch button 20.
  • the biometric chip 30 is a die.
  • the biometric chip 30 is bonded to the second cover 10 by a COG (CW on Glass) process.
  • the protective cover 10 is, for example, a film cover ⁇ , and correspondingly, the biometric chip 30 can be bound to the protective cover 10 by a COF (CWp On Film) process. Two surfaces 12 on top.
  • the electronic device 100 further includes a light shielding layer 40 disposed on the second surface 12 of the protective cover 10 to define the light transmitting region 101 and the non-light transmitting region 102 on the protective cover 10.
  • the touch button 20 may be disposed on the non-transmissive region 102 of the second surface 12 of the protective cover 10 or may be disposed on the transparent region 101 of the second surface 12.
  • the biometric chip 30 may be disposed on the second surface 12 of the protective cover 10 or the light transmissive region 101 of the second surface 12.
  • the touch button 20 and the biometric chip 30 may be located on the same side of the transparent area 101 of the protective cover 10 or on either side of the transparent area 101 of the protective cover 10.
  • the biometric identification chip 30 is disposed adjacent to the touch button 20, and is disposed at one end of the protective cover 10, that is, at the same end of the electronic device 100.
  • the non-transparent area 102 is provided with a touch mark 21.
  • the touch mark 21 is disposed corresponding to the touch button 20, and is used to mark the position of the touch button 20 or the function of the touch button 20.
  • a wire 50 is further formed on the non-transparent region 101 of the second surface 12 of the protective cover 10.
  • the wire 50 is used to electrically connect the biometric chip 30 with the touch button 20.
  • the wire 50 is located between the touch button 20 and the biometric chip 30.
  • the wires 50 are a plurality of wires.
  • the wire 50 is formed, for example, of a conductive silver paste or molybdenum lithium molybdenum.
  • a wire layer is formed on the light shielding layer 40 by coating or brushing silver paste or molybdenum lithium molybdenum, and then, on the wire The layer is formed by, for example, etching The wire 50.
  • the wire 50 may be directly formed on the light shielding layer 40, and the wire 50 may also be made of a conductive material such as metal or indium tin oxide.
  • an anisotropic conductive layer 60 is formed between the wire 50 and the biometric chip 30.
  • the biometric chip 30 is electrically connected to the touch button 20 via the anisotropic conductive layer 60 and the wire 50.
  • the anisotropic conductive layer 60 may be disposed in the non-transparent area 102 on the protective cover 10 together with the touch button 20, the wire 50, and the biometric chip 30.
  • the anisotropic conductive layer 60, the touch button 20, the wire 50, and a portion of the biometric chip 30 are disposed on the non-transparent region 102 of the protective cover 10, and another portion is disposed at the The light transmissive area 101 on the protective cover 10 is described.
  • the anisotropic conductive layer 60 is, for example, an anisotropic conductive film (Anisotropic)
  • anisotropic conductive layer 60 may also be other suitable materials capable of achieving an anisotropic conductive function, and is not limited to the ACF, ACA, ACP described in the present application.
  • the biometric identification chip 30 is bonded to the protective cover 10 by a flip chip process.
  • the biometric chip 30 can be formed on the protective cover 10 by other suitable processes or methods, and connected to the touch button 20 through the anisotropic conductive layer 60 and the wires 50.
  • the touch button 20 includes a sensing electrode 22 and a driving electrode 23, and a mutual capacitance is formed between the sensing electrode 22 and the driving electrode 23, and is sensed based on a mutual capacitance sensing principle. Is there a touch operation?
  • the drive electrode 23 surrounds the sensing electrode 22 and is formed on the second surface 12 of the protective cover 10 with the sensing electrode 22.
  • the positions of the drive electrodes 23 and the sensing electrodes 22 are also interchangeable.
  • the sensing electrode 22 and the driving electrode 23 may also be formed on other suitable components, for example, formed on a flexible circuit board, and then electrically connected to the biometric chip 30 through the flexible circuit board.
  • the flexible circuit board is attached to the protective cover 10.
  • the sensing electrode 22 and the driving electrode 23 may be made of conductive silver paste or molybdenum lithium. Made of molybdenum.
  • the sensing electrode 22 and the driving electrode 23 can also be made of other suitable materials.
  • FIG. 2 is a schematic diagram showing the structure of the touch button 20 shown in FIG.
  • the touch button 20 includes a sensing electrode 24 that detects whether there is a touch operation based on a self-capacitance sensing principle.
  • the sensing electrode 24 is, for example, a spiral electrode.
  • FIG. 3 is a circuit block diagram of the biometric identification chip 30 shown in FIG.
  • the biometric chip 30 includes a sensing electrode array 31 and a driving circuit 32.
  • the driving circuit 32 is connected to the sensing electrode array 31 and the touch button 20, respectively.
  • the driving circuit 32 drives the sensing electrode array 31 to perform biometric information sensing, and also drives the touch button 20 to perform touch sensing.
  • the driving circuit 32 supplies a touch driving signal to the driving electrode 23, and receives a touch sensing signal from the sensing electrode 22 to know whether the touch key 20 is touched according to the touch sensing signal.
  • the driving circuit 32 operates the sensing electrode array 31 and the touch button 20 while driving or bifurcated.
  • the electronic device 100 further includes a rear case 70, a main board 75, and a display device 80.
  • the display device 80 is used for screen display.
  • the main board 75 is connected to the display device 80 and the biometric chip 30 for communication with the display device 80 and the biometric chip 30.
  • the protective cover 10 cooperates with the rear case 70 to form a receiving space for receiving the biometric chip 30, the touch button 20, the display device 80, and the main board 75 in the receiving space.
  • the rear case 70 includes a side surface 72.
  • FIG. 4 is a schematic diagram showing a partial structure of a modified embodiment of the mobile phone of the present invention.
  • the biometric chip 30 is disposed on the side 72.
  • the biometric chip 30 is disposed adjacent to the touch button 20.
  • the biometric identification chip 30 is disposed at a lower end of the left side surface 72 of the rear case 70 to facilitate contact of a little finger in a user's finger, and the touch button 20 is disposed on the second surface 12 The lower end is adjacent to the biometric chip 30.
  • the biometric identification chip 30 and the touch button 20 of the present invention are not limited to the above-described setting manner, and may be other suitable setting manners.
  • FIG. 5 is a schematic diagram showing a partial structure of another modified embodiment of the mobile phone of the present invention.
  • the electronic device 100 still further includes a touch sensing layer 90.
  • the touch sensing layer 90 is disposed on the second surface 12 of the protective cover 10 for sensing a user touch operation on the protective cover 10 on an area not covered by the light shielding layer 40.
  • the touch sensing layer 90 may be stacked between the display device 80 and the protective cover 10, or may be embedded in the display device 80 to form an in-cell touch display device.
  • the in-cell touch display device may be an In-Cell touch display device or an On-Cell touch display device.
  • the display device 80 is, for example, a liquid crystal display device, an organic electroluminescence display device, or the like, of a suitable type of display device.
  • the touch sensing layer 90 can be an additional electrode layer or an electrode junction of the multiplexing display device 80 itself. Structure.
  • the touch sensing layer 90 can be a single layer structure or a two layer structure. Further, the sensing principle of the touch sensing layer 90 may be a mutual capacitance sensing principle or a self capacitance sensing principle.
  • the touch sensing layer 90 is disposed, for example, between a polarizer and a color filter to form an On-Cell touch display device.
  • the touch sensing layer 90 may be disposed, for example, between an color filter substrate and a thin film array substrate to form an In-Cdl touch display device, etc.
  • the touch sensing layer 90 As the touch sensing layer 90 is gradually integrated into the display device 80, an in-cell touch display device is formed, and the touch driving chip for driving the touch sensing layer 90 gradually becomes the display driving chip for driving the display device 80. Integrated in the same touch display driver chip.
  • an antenna is disposed in a lower end of the electronic device 100 (ie, near one end of the microphone).
  • the touch display driving chip is generally disposed at an upper end of the electronic device 100 (ie, near one end of the earpiece), that is, touching the display driving chip and touching Buttons 20 are located at both ends of the phone.
  • the touch display driver chip is further used to drive the touch button 20
  • a long wire needs to be disposed between the touch display driving chip and the touch button 20, thereby causing the connecting wire to occupy more internal space of the mobile phone, and
  • the arrangement of other components and the signal transmission have an effect.
  • the present invention proposes to further drive the touch button 20 to perform a touch operation by using the biometric chip 30, so that the driving path of the touch button 20 can be shortened, and material cost is saved.
  • the occupation of the internal space of the electronic device 100 is reduced, the arrangement of other components is facilitated, and the stability of signal transmission of the electronic device 100 is improved.
  • the biometric identification chip 30 when the biometric identification chip 30 is disposed on the front side of the electronic device 100 and is located at the same end of the electronic device 100 as the touch button 20, the wire 50 connecting the biometric identification chip 30 and the touch button 20 is further shortened, and Formed directly on the protective cover 10, it further saves space and reduces interference with other signals.
  • the electronic device 100 may further add elements not shown in the drawings or reduce some of the elements or components shown in the illustration, such as adding a motherboard for use according to the biometric identification.
  • the biometric information sensed by the chip 30 corresponds to the control electronics 100 performing the corresponding function.
  • the present invention is not limited to the addition of the motherboards listed herein.
  • the electronic device 100 of the present invention may select or increase or decrease components or components according to actual needs. Please refer to FIG. 6.
  • FIG. 6 is a schematic diagram showing a partially assembled structure of another embodiment of the mobile phone according to the present invention.
  • the biometric identification chip 30 is, for example, a packaged chip, which may be a chip including a single die, or a chip including a plurality of dies.
  • the biometric chip 30 is adhered to the second surface 12 of the protective cover 10, for example by an adhesive layer.
  • the biometric chip 30 is connected to the touch button 20 via a connector 50a.
  • the connecting member 50a is a flexible circuit board.
  • the connecting member 50a is not limited to the flexible circuit board 50a, and may be other suitable components.
  • the touch button 20 may be disposed on the protective cover 10 or may be disposed on the connecting member 50a.
  • the connector 50a is attached to the protective cover 10 corresponding to the position where the touch button 20 is disposed.
  • the biosensor chip 30 is further connected to the main board 75 (see FIG. 1) through the connecting member 50a, and performs data communication with the main board 75.
  • the main board 75 controls whether the electronic device 100 performs a corresponding function according to the information sensed by the biometric chip 30.
  • the biometric chip 30 can also be disposed on the second surface 12 by other suitable means such as imprinting. Still alternatively, the biometric chip 30 is disposed adjacent to the protective cover 30, and there is no intermediate connection medium between the protective cover 30 and the protective cover 30. In addition, the biometric chip 30 can also be assembled with a physical button. The protective cover 10 is correspondingly provided with a through hole for receiving the biometric chip and the physical button. The biometric identification chip 30 can also be formed at other suitable locations of the electronic device 100, and is not limited to the front side of the electronic device 100.
  • the biometric chip 30 and the touch button 20 are formed at the same end of the electronic device 100.
  • the biometric chip 30 is disposed on the front side of the electronic device 100. Further, for the electronic device 100 having the in-cell touch display device, the biometric chip 30 and the touch button 20 are formed between the in-cell touch display device and the protective cover 10.
  • the biometric chip 30 may also be formed on the side of the electronic device 100, and is not limited to being disposed on the front side of the electronic device 100.
  • FIG. 7 is a schematic structural diagram of another embodiment of a mobile phone according to the present invention.
  • the present embodiment
  • the circuit for driving the touch button 20 is further integrated into a driver chip 35, which is not integrated in the biometric chip 30 as shown in FIG.
  • the driving chip 35 is disposed on the flexible circuit board 50a and coupled with the biometric chip 30 is connected, a touch driving signal is outputted to the touch button 20 by the biometric chip 30, and a touch sensing signal output from the touch button 20 is received by the biometric chip 30.
  • the biometric identification chip 30 is, for example, a die formed on the protective cover 10 by a flip chip process.
  • the touch button 20 is formed, for example, on the second surface 12 of the protective cover 10.
  • the biometric chip 30 is connected to the touch button 20 via a wire 50.
  • the wire 50 is formed on the second surface 12 and is located between the touch button 20 and the biometric chip 30.
  • the touch button 20 can also be formed on other media (such as a flexible circuit board) and attached to the protective cover 10.

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  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Multimedia (AREA)
  • Push-Button Switches (AREA)
  • Telephone Set Structure (AREA)

Abstract

An electronic device (100). The electronic device (100) comprises a protective cover plate (10), a touch key (20), and a biometric identification chip (30). The protective cover plate (10) comprises a first surface (11) and a second surface (12) opposite to the first surface (11). The touch key (20) is provided on the second surface (12) of the protective cover plate (10). The biometric identification chip (30) is provided on the second surface (12) of the protective cover plate (10) by means of a flip chip process, and is connected to the touch key (20). The biometric identification chip (30) is used for sensing biological information input by a user from the first surface (11) of the protective cover plate (10), and is also used for driving the touch key (20) to execute touch sensing, thereby shortening a drive path of the touch key (20), reducing material costs, reducing occupation of the space of the electronic device, facilitating arrangement of other elements, and improving the stability for signal transmission of the electronic device.

Description

电子设备  Electronic equipment
[0001] 技术领域 [0001] Technical Field
[0002] 本发明涉及生物信息感测技术领域, 尤其涉及一种具有生物信息感测功能的电 子设备。  [0002] The present invention relates to the field of biometric information sensing technologies, and in particular, to an electronic device having a biometric information sensing function.
[0003] 背景技术 BACKGROUND
[0004] 目前, 生物传感器件已逐渐成为电子设备 (如, 手机等)的标配。 然, 生物传感 器件目前主要用于感测用户输入的生物信息, 电子设备的主控电路根据生物传 感器件所感测到的生物信息对应控制电子设备是否执行预设的功能。  [0004] Currently, biosensor devices have gradually become standard equipment for electronic devices (e.g., mobile phones, etc.). However, the biosensor device is currently mainly used for sensing biological information input by a user, and the main control circuit of the electronic device controls whether the electronic device performs a preset function according to the biological information sensed by the biosensor device.
[0005] 随着生物传感器件的集成度的逐渐提高, 扩展生物传感器件的功能成为趋势。  [0005] As the degree of integration of biosensor components has gradually increased, the function of expanding biosensor devices has become a trend.
[0006] 发明内容  SUMMARY OF THE INVENTION
[0007] 为解决上述技术问题, 本发明提供一种利用生物识别芯片驱动触摸按键执行触 摸感测功能的电子设备。  In order to solve the above technical problem, the present invention provides an electronic device that uses a biometric chip to drive a touch button to perform a touch sensing function.
[0008] 本发明提供一种电子设备, 包括: The present invention provides an electronic device, including:
[0009] 保护盖板, 包括第一表面和与第一表面相对的第二表面;  [0009] a protective cover plate comprising a first surface and a second surface opposite to the first surface;
[0010] 触摸按键, 设置在所述保护盖板的第二表面上; 和 [0010] a touch button disposed on the second surface of the protective cover; and
[0011] 生物识别芯片, 通过覆晶技术工艺设置在所述保护盖板的第二表面, 并与所述 触摸按键相连接, 所述生物识别芯片用于感测用户从保护盖板的第一表面输入 的生物信息, 还用于驱动所述触摸按键执行触摸感测。  [0011] a biometric identification chip is disposed on the second surface of the protective cover by a flip chip technology and is connected to the touch button, and the biometric chip is configured to sense a user from the first cover of the protective cover The surface input biometric information is also used to drive the touch button to perform touch sensing.
[0012] 在某些实施方式中, 当保护盖板为玻璃盖板或蓝宝石盖板吋, 所述生物识别芯 片通过 COG工艺绑定在保护盖板的第二表面; 当保护盖板为薄膜盖板吋, 所述 生物识别芯片通过 COF工艺绑定在保护盖板的第二表面。 [0012] In some embodiments, when the protective cover is a glass cover or a sapphire cover, the biometric chip is bound to the second surface of the protective cover by a COG process; when the protective cover is a film cover The plaque, the biometric chip is bound to the second surface of the protective cover by a COF process.
[0013] 在某些实施方式中, 所述电子设备进一步包括遮光层, 设置在保护盖板的第二 表面, 以限定出保护盖板上的透光区域与非透光区域; 所述触摸按键和所述生 物识别芯片设置在非透光区域。 [0013] In some embodiments, the electronic device further includes a light shielding layer disposed on the second surface of the protective cover to define a light transmissive area and a non-transparent area on the protective cover; And the biometric chip is disposed in the non-transparent area.
[0014] 在某些实施方式中, 所述触摸按键和所述生物识别芯片均设置在电子设备的同 山 [0014] In some embodiments, the touch button and the biometric chip are both disposed in the same mountain of the electronic device.
一¾° [0015] 在某些实施方式中, 所述保护盖板的第二表面的非透光区域上进一步形成有导 线, 所述导线用于电连接所述生物识别芯片与所述触摸按键。 One 3⁄4° [0015] In some embodiments, the non-transparent area of the second surface of the protective cover is further formed with a wire for electrically connecting the biometric chip and the touch button.
[0016] 在某些实施方式中, 所述导线位于所述触摸按键与所述生物识别芯片之间。 [0016] In some embodiments, the wire is located between the touch button and the biometric chip.
[0017] 在某些实施方式中, 所述导线由导电银浆或钼锂钼制成。 [0017] In some embodiments, the wire is made of conductive silver paste or molybdenum lithium molybdenum.
[0018] 在某些实施方式中, 所述电子设备进一步包括触摸传感层, 设置在所述保护盖 板的第二表面一侧, 用于感测保护盖板上的透光区域上是否有用户的触摸操作  [0018] In some embodiments, the electronic device further includes a touch sensing layer disposed on a side of the second surface of the protective cover for sensing whether there is a light transmissive area on the protective cover User's touch operation
[0019] 在某些实施方式中, 所述电子设备进一步包括显示装置, 所述显示装置与所述 触摸传感层层叠设置; 或者, 所述显示装置与所述触摸传感层形成内嵌式触摸 显示装置。 [0019] In some embodiments, the electronic device further includes a display device, the display device is stacked with the touch sensing layer; or the display device and the touch sensing layer form an in-line type Touch the display device.
[0020] 在某些实施方式中, 所述触摸按键包括感测电极, 所述感测电极或形成在第二 盖板的第二表面上, 或形成在软性电路板上。  [0020] In some embodiments, the touch button includes a sensing electrode that is either formed on a second surface of the second cover or formed on a flexible circuit board.
[0021] 在某些实施方式中, 当所述感测电极形成在第二盖板的第二表面上吋, 所述触 摸电极由导电银浆或钼锂钼制成。 [0021] In some embodiments, when the sensing electrode is formed on the second surface of the second cap plate, the touch electrode is made of conductive silver paste or molybdenum lithium molybdenum.
[0022] 在某些实施方式中, 所述生物识别芯片包括感测电极阵列和控制电路, 所述控 制电路用于控制感测电极阵列执行生物信息感测, 还用于控制所述触摸按键执 行触摸感测。 [0022] In some embodiments, the biometric identification chip includes a sensing electrode array and a control circuit, the control circuit is configured to control the sensing electrode array to perform biometric information sensing, and is further configured to control the touch button to perform Touch sensing.
[0023] 在某些实施方式中, 所述控制电路控制感测电极阵列和触摸按键同吋或分吋工 作。  [0023] In some embodiments, the control circuit controls the sensing electrode array and the touch button to operate simultaneously or separately.
[0024] 在某些实施方式中, 所述生物识别芯片为指纹识别芯片、 血氧识别芯片、 心跳 识别芯片中的一种或多种。  [0024] In some embodiments, the biometric chip is one or more of a fingerprint recognition chip, a blood oxygen recognition chip, and a heartbeat recognition chip.
[0025] 在某些实施方式中, 所述生物识别芯片为裸片。 [0025] In some embodiments, the biometric chip is a die.
[0026] 本发明还提供一种电子设备, 包括: The present invention also provides an electronic device, including:
[0027] 保护盖板, 包括第一表面和与第一表面相对的第二表面; [0027] a protective cover plate comprising a first surface and a second surface opposite to the first surface;
[0028] 触摸按键, 设置在保护盖板的第二表面上; [0028] a touch button is disposed on the second surface of the protective cover;
[0029] 导线, 设置在保护盖板的第二表面上, 并与所述触摸按键连接; [0029] a wire disposed on the second surface of the protective cover and connected to the touch button;
[0030] 异方性导电层, 设置在所述导线上; 和 [0030] an anisotropic conductive layer disposed on the wire; and
[0031] 生物识别芯片, 设置在所述异方性导电层上, 通过所述异方性导电层和所述导 线与所述触摸按键电连接, 所述生物识别芯片用于感测用户从保护盖板的第一 表面输入的生物信息, 还用于驱动所述触摸按键执行触摸感测功能。 [0031] a biometric chip disposed on the anisotropic conductive layer, through the anisotropic conductive layer and the guide The line is electrically connected to the touch button, the biometric chip is configured to sense biometric information input by a user from a first surface of the protective cover, and is further configured to drive the touch button to perform a touch sensing function.
[0032] 在某些实施方式中, 所述异方性导电层为异方性导电膜或异方性导电胶。  [0032] In some embodiments, the anisotropic conductive layer is an anisotropic conductive film or an anisotropic conductive paste.
[0033] 在某些实施方式中, 所述电子设备包括内嵌式触摸显示装置, 所述生物识别芯 片、 触摸按键、 导线、 和异方性导电层均设置在内嵌式触摸显示装置和保护盖 板之间。 [0033] In some embodiments, the electronic device includes an in-cell touch display device, and the biometric identification chip, the touch button, the wire, and the anisotropic conductive layer are all disposed in an in-cell touch display device and protected. Between the covers.
[0034] 在某些实施方式中, 所述生物识别芯片、 触摸按键、 导线、 和异方性导电层均 设置在电子设备的同一端。  [0034] In some embodiments, the biometric chip, touch buttons, wires, and anisotropic conductive layers are all disposed at the same end of the electronic device.
[0035] 由于本发明的电子设备的生物识别芯片除用于感测用户输入的生物信息, 还用 于驱动触摸按键执行触摸感测, 从而所述生物识别芯片的功能进一步扩展, 提 高生物识别芯片的利用率。 [0035] Since the biometric chip of the electronic device of the present invention is used to sense the biometric information input by the user, it is also used to drive the touch button to perform touch sensing, so that the function of the biometric identification chip is further expanded, and the biometric identification chip is improved. Utilization.
[0036] 尽管公幵了多个实施例, 包括其变化, 伹是通过示出并描述了本发明公幵的说 明性实施例的下列详细描述, 本发明公幵的其他实施例将对所属领域的技术人 员显而易见。 将认识到, 本发明公幵能够在各种显而易见的方面修改, 所有修 改都不会偏离本发明的精神和范围。 相应地, 附图和详细描述本质上应被视为 说明性的, 而不是限制性的。 [0036] While the invention has been described with respect to the embodiments of the present invention, The technicians are obvious. It will be appreciated that the invention may be modified in various obvious forms, and all modifications may be made without departing from the spirit and scope of the invention. The drawings and detailed description are to be regarded as illustrative rather
[0037] 附图说明 BRIEF DESCRIPTION OF THE DRAWINGS
[0038] 通过参照附图详细描述其示例实施方式, 本发明的特征及优点将变得更加明显  [0038] Features and advantages of the present invention will become more apparent from the detailed description of exemplary embodiments thereof
[0039] 图 1是本发明手机一实施例的部分分解结构示意图。 1 is a partially exploded perspective view of an embodiment of a mobile phone according to the present invention.
[0040] 图 la是图 1所示手机的部分结构截面示意简图。  [0040] FIG. 1a is a schematic cross-sectional view showing a partial structure of the mobile phone shown in FIG.
[0041] 图 lb是图 1所示手机的部分组装结构示意简图。  [0041] FIG. 1b is a schematic diagram showing a partial assembly structure of the mobile phone shown in FIG. 1.
[0042] 图 2是图 lb所示的触摸按键一变更实施例的结构示意简图。  2 is a schematic diagram showing the structure of a modified embodiment of the touch button shown in FIG.
[0043] 图 3是图 lb所示的生物识别芯片的电路框图。  3 is a circuit block diagram of the biometric chip shown in FIG.
[0044] 图 4是本发明手机一变更实施例的部分结构示意简图。  4 is a schematic block diagram showing a partial structure of a modified embodiment of the mobile phone of the present invention.
[0045] 图 5是本发明手机又一变更实施例的部分结构示意简图。  5 is a schematic block diagram showing a partial structure of still another modified embodiment of the mobile phone of the present invention.
[0046] 图 6是本发明手机又一变更实施例的部分结构示意简图。  6 is a schematic block diagram showing a partial structure of still another modified embodiment of the mobile phone of the present invention.
[0047] 图 7是本发明手机又一变更实施例的部分结构示意简图。 [0048] 具体实施方式 7 is a schematic block diagram showing a partial structure of still another modified embodiment of the mobile phone of the present invention. DETAILED DESCRIPTION
[0049] 现在将参考附图更全面地描述示例实施方式。 然而, 示例实施方式能够以多种 形式实施, 且不应被理解为限于在此阐述的实施方式; 相反, 提供这些实施方 式使得本发明将全面和完整, 并将示例实施方式的构思全面地传达给本领域的 技术人员。 为了方便或清楚, 可能夸大、 省略或示意地示出在附图中所示的每 层的厚度和大小、 以及示意地示出相关元件的数量。 另外, 元件的大小不完全 反映实际大小, 以及相关元件的数量不完全反应实际数量。  Example embodiments will now be described more fully with reference to the appended drawings. However, the example embodiments can be embodied in a variety of forms, and should not be construed as being limited to the embodiments set forth herein. To those skilled in the art. The thickness and size of each layer shown in the drawings may be exaggerated, omitted or schematically shown, and the number of related elements may be schematically illustrated for convenience or clarity. In addition, the size of the components does not fully reflect the actual size, and the number of related components does not fully reflect the actual number.
[0050] 在本发明的描述中, 需要理解的是: "多个 "定义为两个和两个以上, 除非另 有明确具体的限定, 对应地, 该定义适用于 "多种"、 "多条"、 "多颗 "等术语。 " 连接"可为电连接、 机械连接、 耦接、 直接连接以及间接连接等多种实施方式, 除非本发明下述特别说明, 否则并不做特别限制。  [0050] In the description of the present invention, it is to be understood that "a plurality" is defined as two or more, unless explicitly and specifically defined, correspondingly, the definition applies to "multiple", "multiple" Terms such as "," "multiple". The "connection" may be a plurality of embodiments such as an electrical connection, a mechanical connection, a coupling, a direct connection, and an indirect connection, and is not particularly limited unless the invention is specifically described below.
[0051] 在本发明中, 术语"厚度"、 "上"、 "下"、 "前"、 "后"、 "左"、 "右"、 "竖直"、 "水平"、 "顶"、 "底"、 "内"、 "外"等指示的方位或位置关系为基于附图所示的 方位或位置关系, 仅是为了便于描述本发明和简化描述, 而不是指示或暗示所 指的装置或元件必须具有特定的方位、 以特定的方位构造和操作, 因此不能理 解为对本发明的限制。  [0051] In the present invention, the terms "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", The orientation or positional relationship of the "bottom", "inside", "outside" and the like is based on the orientation or positional relationship shown in the drawings, and is merely for the convenience of describing the present invention and simplifying the description, rather than indicating or implying the indicated device. Or the components must have a particular orientation, are constructed and operated in a particular orientation, and are therefore not to be construed as limiting the invention.
[0052] 此外, 所描述的特征、 结构可以以任 1可合适的方式结合在一个或更多实施方 式中。 在下面的描述中, 提供许多具体细节从而给出对本发明的实施方式的充 分理解。 然而, 本领域技术人员应意识到, 没有所述特定细节中的一个或更多 , 或者采用其它的结构、 组元等, 也可以实践本发明的技术方案。 在其它情况 下, 不详细示出或描述公知结构或者操作以避免模糊本发明。  Furthermore, the described features, structures may be combined in any one or more embodiments in any suitable manner. In the following description, numerous specific details are set forth However, those skilled in the art will appreciate that the technical solution of the present invention may be practiced without one or more of the specific details or other structures, components, and the like. In other instances, well-known structures or operations are not shown or described in detail to avoid obscuring the invention.
[0053] 请一并参阅图 1-lb, 图 1是本发明电子设备一实施例的部分分解结构示意图。  Please refer to FIG. 1-lb. FIG. 1 is a partially exploded perspective view of an embodiment of an electronic device according to the present invention.
图 la是图 1所示手机的部分结构截面示意简图。 图 lb是图 1所示手机的部分组装 结构示意简图。 本发明提供一种电子设备, 其可以为可携式电子产品、 家居式 电子产品或车载电子产品。 然而, 所述电子设备不局限此处所列的电子产品, 还可以是其它合适的电子产品。 所述可携式电子产品例如为移动终端, 所述移 动终端例如为所述手机、 平板电脑、 笔记本电脑、 穿戴式产品等合适的移动终 端。 所述家居式电子产品例如为智能门锁、 电视、 冰箱、 台式电脑等合适的家 居式电子产品。 所述车载电子产品例如为车载显示器、 行车记录仪、 导航仪、 车载冰箱等合适的车载电子产品。 为方便理解和说明本发明的技术方案, 所述 电子设备 100以常用的所述手机为例进行阐述。 所述电子设备 100包括保护盖板 1 0、 触摸按键 20以及生物识别芯片 30。 Figure la is a schematic sectional view showing a part of the structure of the mobile phone shown in Figure 1. Figure lb is a schematic diagram showing a partial assembly structure of the mobile phone shown in Figure 1. The invention provides an electronic device, which can be a portable electronic product, a home-based electronic product or an in-vehicle electronic product. However, the electronic device is not limited to the electronic products listed herein, but may be other suitable electronic products. The portable electronic product is, for example, a mobile terminal, and the mobile terminal is, for example, a suitable mobile terminal such as the mobile phone, tablet computer, notebook computer, wearable product, or the like. The home-based electronic product is, for example, a smart home lock, a television, a refrigerator, a desktop computer, etc. Home electronics. The in-vehicle electronic products are, for example, suitable in-vehicle electronic products such as an in-vehicle display, a driving recorder, a navigator, and a car refrigerator. To facilitate understanding and description of the technical solution of the present invention, the electronic device 100 is described by taking the commonly used mobile phone as an example. The electronic device 100 includes a protective cover 10, a touch button 20, and a biometric chip 30.
[0054] 保护盖板 10包括第一表面 11和与第一表面 11相对的第二表面 12。 所述第一表面  [0054] The protective cover 10 includes a first surface 11 and a second surface 12 opposite the first surface 11. The first surface
11为电子设备 100的外表面, 即为用户可直接触碰的表面。 所述第二表面 12位于 所述电子设备 100的内部。 所述保护盖板 10例如为透明的玻璃或蓝宝石盖板, 然 而, 所述保护盖板 10的材料也可为其它合适的材料, 并不限制为玻璃或蓝宝石 盖板, 例如也可为薄膜盖板。 可变更地, 对于不同类型的电子设备 100, 所述保 护盖板 10也可为半透明或非透明的盖板。  11 is the outer surface of the electronic device 100, that is, the surface that the user can directly touch. The second surface 12 is located inside the electronic device 100. The protective cover 10 is, for example, a transparent glass or sapphire cover. However, the material of the protective cover 10 may also be other suitable materials, and is not limited to a glass or sapphire cover, for example, a film cover. board. Alternatively, for different types of electronic devices 100, the protective cover 10 can also be a translucent or non-transparent cover.
[0055] 所述触摸按键 20设置在保护盖板 10的第二表面 12上。 所述生物识别芯片 30与所 述触摸按键 20相连接, 用于感测用户从第一表面 11输入的生物信息, 还用于驱 动所述触摸按键 20执行触摸感测功能。 当所述生物识别芯片 30检测到输入的生 物信息与所述电子设备 100内预存的生物信息模版匹配吋, 则所述电子设备 100 对应执行预设的功能或应用程序, 例如: 解屏功能、 支付功能、 启动 APP (App licatio, 应用程序) 、 幵启文件夹等等。  [0055] The touch button 20 is disposed on the second surface 12 of the protective cover 10. The biometric identification chip 30 is connected to the touch button 20 for sensing biological information input by the user from the first surface 11, and is also used to drive the touch button 20 to perform a touch sensing function. When the biometric identification chip 30 detects that the input biometric information matches the biometric information template pre-stored in the electronic device 100, the electronic device 100 performs a preset function or an application, for example: a screen unlocking function, Payment function, launch APP (App licatio, application), open folder, and more.
[0056] 由于本发明的生物识别芯片 30进一步用于驱动触摸按键 20执行触摸感测, 因此  [0056] Since the biometric chip 30 of the present invention is further used to drive the touch button 20 to perform touch sensing,
, 所述生物识别芯片 30的功能得到进一步扩展, 提高生物识别芯片 30的利用率  The function of the biometric identification chip 30 is further expanded to improve the utilization rate of the biometric identification chip 30.
[0057] 所述生物识别芯片 30例如为指纹识别芯片、 血氧识别芯片、 心跳识别芯片、 压 力识别芯片、 湿度识别芯片、 温度识别芯片、 虹膜识别芯片中的一种或多种。 对应地, 所述生物信息例如为指纹信息、 血氧信息、 心跳信息、 压力信息、 湿 度信息、 温度信息、 虹膜信息中的一种或多种。 然而, 本发明不局限此处所列 举的生物识别芯片 30和生物信息的种类, 还可以是其它合适的生物识别芯片 30 和生物信息的种类。 [0057] The biometric identification chip 30 is, for example, one or more of a fingerprint recognition chip, a blood oxygen recognition chip, a heartbeat recognition chip, a pressure recognition chip, a humidity recognition chip, a temperature recognition chip, and an iris recognition chip. Correspondingly, the biological information is, for example, one or more of fingerprint information, blood oxygen information, heartbeat information, pressure information, humidity information, temperature information, and iris information. However, the present invention is not limited to the types of biometric chips 30 and biological information listed herein, but may be other suitable biometric chips 30 and types of biological information.
[0058] 在本实施方式中, 所述生物识别芯片 30设置在保护盖板 10的第二表面 12—侧。  In the present embodiment, the biometric chip 30 is disposed on the second surface 12 side of the protective cover 10.
然, 所述生物识别芯片 30也可设置在电子设备 100的侧面等其它合适的位置, 并 不局限在电子设备 100的正面。 另外, 在本实施方式中, 所述生物识别芯片 30设 置在保护盖板 10的下方, 然, 可变更地, 所述保护盖板 10上也可设置通孔, 所 述生物识别芯片 30设置在所述通孔中。 进一步地, 所述生物识别芯片 30可与实 体按键结合在一起, 并设置在所述通孔中。 The biometric chip 30 can also be disposed at other suitable locations on the side of the electronic device 100, and is not limited to the front side of the electronic device 100. In addition, in the embodiment, the biometric identification chip 30 is provided. The protective cover 10 can be disposed under the protective cover 10, and the through cover can also be disposed on the protective cover 10. The biometric chip 30 is disposed in the through hole. Further, the biometric chip 30 can be combined with a physical button and disposed in the through hole.
[0059] 在本实施方式中, 所述生物识别芯片 30通过覆晶 (Flip-CWp) 技术工艺设置在 保护盖板 10的第二表面 12, 并与所述触摸按键 20相连接。 较佳地, 所述生物识 别芯片 30为裸片。 In the present embodiment, the biometric chip 30 is disposed on the second surface 12 of the protective cover 10 by a flip chip (Flip-CWp) technology and is connected to the touch button 20. Preferably, the biometric chip 30 is a die.
[0060] 当保护盖板 10为玻璃盖板或蓝宝石盖板吋, 所述生物识别芯片 30通过 COG(CW p On Glass,玻璃覆晶)工艺绑定 (bonding)在保护盖板 10的第二表面 12上。 然而, 可变更地, 所述保护盖板 10例如为薄膜盖板吋, 相应地, 所述生物识别芯片 30 可通过 COF(CWp On Film,薄膜覆晶)工艺绑定在保护盖板 10的第二表面 12上。  [0060] When the protective cover 10 is a glass cover or a sapphire cover, the biometric chip 30 is bonded to the second cover 10 by a COG (CW on Glass) process. On the surface 12. However, the protective cover 10 is, for example, a film cover 吋, and correspondingly, the biometric chip 30 can be bound to the protective cover 10 by a COF (CWp On Film) process. Two surfaces 12 on top.
[0061] 所述电子设备 100进一步包括遮光层 40, 所述遮光层 40设置在保护盖板 10的第 二表面 12, 以限定出保护盖板 10上的透光区域 101与非透光区域 102。 所述触摸 按键 20可设置在保护盖板 10的第二表面 12上的非透光区域 102, 也可以设于第二 表面 12的透光区域 101。 同样地, 所述生物识别芯片 30可设置在保护盖板 10的第 二表面 12上的非透光区域 102, 也可以设于第二表面 12的透光区域 101。 所述触 摸按键 20和所述生物识别芯片 30可位于所述保护盖板 10的透光区域 101的同一侧 , 也可以位于所述保护盖板 10的透光区域 101的任意两侧。  The electronic device 100 further includes a light shielding layer 40 disposed on the second surface 12 of the protective cover 10 to define the light transmitting region 101 and the non-light transmitting region 102 on the protective cover 10. . The touch button 20 may be disposed on the non-transmissive region 102 of the second surface 12 of the protective cover 10 or may be disposed on the transparent region 101 of the second surface 12. Similarly, the biometric chip 30 may be disposed on the second surface 12 of the protective cover 10 or the light transmissive region 101 of the second surface 12. The touch button 20 and the biometric chip 30 may be located on the same side of the transparent area 101 of the protective cover 10 or on either side of the transparent area 101 of the protective cover 10.
[0062] 在本实施方式中, 所述生物识别芯片 30与所述触摸按键 20邻近设置, 且一并设 于所述保护盖板 10的一端, 即位于电子设备 100的同一端。  In the embodiment, the biometric identification chip 30 is disposed adjacent to the touch button 20, and is disposed at one end of the protective cover 10, that is, at the same end of the electronic device 100.
[0063] 进一步地, 如图 1和 lb所示, 所述非透光区域 102上设置触摸标志 21。 所述触摸 标志 21与所述触摸按键 20对应设置, 用于标志所述触摸按键 20的位置或所述触 摸按键 20的功能。  Further, as shown in FIGS. 1 and 1b, the non-transparent area 102 is provided with a touch mark 21. The touch mark 21 is disposed corresponding to the touch button 20, and is used to mark the position of the touch button 20 or the function of the touch button 20.
[0064] 所述保护盖板 10的第二表面 12的非透光区域 101上进一步形成有导线 50。 所述 导线 50用于电连接所述生物识别芯片 30与所述触摸按键 20。 所述导线 50位于所 述触摸按键 20与所述生物识别芯片 30之间。  [0064] A wire 50 is further formed on the non-transparent region 101 of the second surface 12 of the protective cover 10. The wire 50 is used to electrically connect the biometric chip 30 with the touch button 20. The wire 50 is located between the touch button 20 and the biometric chip 30.
[0065] 所述导线 50为多条。 所述导线 50例如由导电银浆或钼锂钼形成。 具体地, 当遮 光层 40形成在所述保护盖板 10的第二表面 12上之后, 通过涂布或刷银浆或钼锂 钼于所述遮光层 40上形成导线层, 然后, 在对导线层进行例如蚀刻等操作形成 所述导线 50。 可变更地, 在其它实施例中, 所述导线 50也可直接形成于所述遮 光层 40上, 所述导线 50也可由金属或氧化铟锡等导电材料制成。 [0065] The wires 50 are a plurality of wires. The wire 50 is formed, for example, of a conductive silver paste or molybdenum lithium molybdenum. Specifically, after the light shielding layer 40 is formed on the second surface 12 of the protective cover 10, a wire layer is formed on the light shielding layer 40 by coating or brushing silver paste or molybdenum lithium molybdenum, and then, on the wire The layer is formed by, for example, etching The wire 50. Alternatively, in other embodiments, the wire 50 may be directly formed on the light shielding layer 40, and the wire 50 may also be made of a conductive material such as metal or indium tin oxide.
[0066] 如图 la所示, 所述导线 50与所述生物识别芯片 30之间形成有异方性导电层 60。  As shown in FIG. la, an anisotropic conductive layer 60 is formed between the wire 50 and the biometric chip 30.
所述生物识别芯片 30通过所述异方性导电层 60和所述导线 50与所述触摸按键 20 电连接。 所述异方性导电层 60可以与所述触摸按键 20、 所述导线 50、 所述生物 识别芯片 30—同设于所述保护盖板 10上的非透光区域 102, 当然, 也可以将所述 异方性导电层 60、 所述触摸按键 20、 所述导线 50、 所述生物识别芯片 30中的一 部分设于所述保护盖板 10上的非透光区域 102, 另一部分设于所述保护盖板 10上 的透光区域 101。 所述异方性导电层 60例如为异方性导电膜 (Anisotropic  The biometric chip 30 is electrically connected to the touch button 20 via the anisotropic conductive layer 60 and the wire 50. The anisotropic conductive layer 60 may be disposed in the non-transparent area 102 on the protective cover 10 together with the touch button 20, the wire 50, and the biometric chip 30. The anisotropic conductive layer 60, the touch button 20, the wire 50, and a portion of the biometric chip 30 are disposed on the non-transparent region 102 of the protective cover 10, and another portion is disposed at the The light transmissive area 101 on the protective cover 10 is described. The anisotropic conductive layer 60 is, for example, an anisotropic conductive film (Anisotropic)
Conductive Film, ACF)14或异方性导电胶 (Anisotropic conductive adhesive/paste, ACA/ACP)。 然而, 所述异方性导电层 60也可为其它合适的能够实现各向异性导 电功能的物质, 并不局限于本申请所述的 ACF、 ACA、 ACP。  Conductive Film, ACF) 14 or Anisotropic conductive adhesive/paste (AACA/ACP). However, the anisotropic conductive layer 60 may also be other suitable materials capable of achieving an anisotropic conductive function, and is not limited to the ACF, ACA, ACP described in the present application.
[0067] 在本实施方式中, 所述生物识别芯片 30通过覆晶工艺绑定在所述保护盖板 10上 。 然, 可变更地, 所述生物识别芯片 30也可通过其它合适的工艺或方法形成在 保护盖板 10上, 并通过异方性导电层 60、 导线 50与触摸按键 20连接。  In the present embodiment, the biometric identification chip 30 is bonded to the protective cover 10 by a flip chip process. Alternatively, the biometric chip 30 can be formed on the protective cover 10 by other suitable processes or methods, and connected to the touch button 20 through the anisotropic conductive layer 60 and the wires 50.
[0068] 在本实施方式中, 所述触摸按键 20包括感测电极 22与驱动电极 23 , 所述感测电 极 22与所述驱动电极 23之间形成互电容, 基于互电容感测原理感测是否有触摸 操作。 所述驱动电极 23包围所述感测电极 22, 并与所述感测电极 22形成在保护 盖板 10的第二表面 12上。 然, 可变更地, 所述驱动电极 23与所述感测电极 22的 位置也可互换。 另外, 所述感测电极 22与所述驱动电极 23也可以形成在其它合 适的元件上, 例如形成在软性电路板上, 再通过该软性电路板与所述生物识别 芯片 30电连接, 所述软性电路板与保护盖板 10贴合。  In the present embodiment, the touch button 20 includes a sensing electrode 22 and a driving electrode 23, and a mutual capacitance is formed between the sensing electrode 22 and the driving electrode 23, and is sensed based on a mutual capacitance sensing principle. Is there a touch operation? The drive electrode 23 surrounds the sensing electrode 22 and is formed on the second surface 12 of the protective cover 10 with the sensing electrode 22. However, the positions of the drive electrodes 23 and the sensing electrodes 22 are also interchangeable. In addition, the sensing electrode 22 and the driving electrode 23 may also be formed on other suitable components, for example, formed on a flexible circuit board, and then electrically connected to the biometric chip 30 through the flexible circuit board. The flexible circuit board is attached to the protective cover 10.
[0069] 当所述感测电极 22和所述驱动电极 23形成在保护盖板 10的第二表面 12上吋, 所 述感测电极 22和所述驱动电极 23可以由导电银浆或钼锂钼制成。 当然, 所述感 测电极 22和所述驱动电极 23也可以由其它合适的材料制成。  [0069] When the sensing electrode 22 and the driving electrode 23 are formed on the second surface 12 of the protective cover 10, the sensing electrode 22 and the driving electrode 23 may be made of conductive silver paste or molybdenum lithium. Made of molybdenum. Of course, the sensing electrode 22 and the driving electrode 23 can also be made of other suitable materials.
[0070] 请参阅图 2, 图 2是图 lb所示的触摸按键 20—变更实施例的结构示意简图。 所述 触摸按键 20包括感测电极 24 , 所述感测电极 24基于自电容式感测原理检测是否 有触摸操作。 所述感测电极 24例如为螺旋式电极。 [0071] 请一并参阅图 lb与图 3, 图 3是图 lb所示的生物识别芯片 30的电路框图。 所述生 物识别芯片 30包括感测电极阵列 31和驱动电路 32。 所述驱动电路 32与所述感测 电极阵列 31和所述触摸按键 20分别连接。 所述驱动电路 32驱动所述感测电极阵 列 31执行生物信息感测, 还驱动所述触摸按键 20执行触摸感测。 Please refer to FIG. 2. FIG. 2 is a schematic diagram showing the structure of the touch button 20 shown in FIG. The touch button 20 includes a sensing electrode 24 that detects whether there is a touch operation based on a self-capacitance sensing principle. The sensing electrode 24 is, for example, a spiral electrode. [0071] Please refer to FIG. 1b and FIG. 3 together. FIG. 3 is a circuit block diagram of the biometric identification chip 30 shown in FIG. The biometric chip 30 includes a sensing electrode array 31 and a driving circuit 32. The driving circuit 32 is connected to the sensing electrode array 31 and the touch button 20, respectively. The driving circuit 32 drives the sensing electrode array 31 to perform biometric information sensing, and also drives the touch button 20 to perform touch sensing.
[0072] 所述驱动电路 32提供触摸驱动信号给驱动电极 23, 并接收来自感测电极 22的触 摸感测信号, 以根据所述触摸感测信号获知触摸按键 20是否有被触摸。  The driving circuit 32 supplies a touch driving signal to the driving electrode 23, and receives a touch sensing signal from the sensing electrode 22 to know whether the touch key 20 is touched according to the touch sensing signal.
[0073] 所述驱动电路 32同吋或分吋驱动所述感测电极阵列 31和所述触摸按键 20工作。  [0073] The driving circuit 32 operates the sensing electrode array 31 and the touch button 20 while driving or bifurcated.
[0074] 请继续参阅图 1与图 2, 所述电子设备 100进一步包括后壳 70、 主板 75、 和显示 装置 80。 所述显示装置 80用于画面显示。 所述主板 75与所述显示装置 80、 生物 识别芯片 30连接, 用于与所述显示装置 80、 生物识别芯片 30进行通信。 所述保 护盖板 10与所述后壳 70相配合形成收容空间, 以收容所述生物识别芯片 30、 触 摸按键 20、 所述显示装置 80、 主板 75于所述收容空间中。 所述后壳 70包括侧面 7 2。  [0074] With continued reference to FIGS. 1 and 2, the electronic device 100 further includes a rear case 70, a main board 75, and a display device 80. The display device 80 is used for screen display. The main board 75 is connected to the display device 80 and the biometric chip 30 for communication with the display device 80 and the biometric chip 30. The protective cover 10 cooperates with the rear case 70 to form a receiving space for receiving the biometric chip 30, the touch button 20, the display device 80, and the main board 75 in the receiving space. The rear case 70 includes a side surface 72.
[0075] 请参阅图 4, 图 4是本发明手机一变更实施例的部分结构示意简图。 所述生物识 别芯片 30设置在侧面 72。 较佳地, 所述生物识别芯片 30与所述触摸按键 20邻近 设置。 例如图 4所示, 所述生物识别芯片 30设于所述后壳 70的左侧面 72的下端以 方便用户的手指中的小指接触, 而所述触摸按键 20设于所述第二表面 12的下端 且邻近所述生物识别芯片 30。 本发明的所述生物识别芯片 30与所述触摸按键 20 不局限上述的设置方式, 还可以是其它的合适的设置方式。  Please refer to FIG. 4. FIG. 4 is a schematic diagram showing a partial structure of a modified embodiment of the mobile phone of the present invention. The biometric chip 30 is disposed on the side 72. Preferably, the biometric chip 30 is disposed adjacent to the touch button 20. For example, as shown in FIG. 4, the biometric identification chip 30 is disposed at a lower end of the left side surface 72 of the rear case 70 to facilitate contact of a little finger in a user's finger, and the touch button 20 is disposed on the second surface 12 The lower end is adjacent to the biometric chip 30. The biometric identification chip 30 and the touch button 20 of the present invention are not limited to the above-described setting manner, and may be other suitable setting manners.
[0076] 请一并参阅图 1、 图 2、 和图 5, 图 5是本发明手机另一变更实施例的部分结构示 意简图。 所述电子设备 100还进一步包括触摸传感层 90。 所述触摸传感层 90设置 在保护盖板 10的第二表面 12, 用于感测保护盖板 10上未被遮光层 40所遮挡的区 域上的用户触摸操作。  Referring to FIG. 1, FIG. 2, and FIG. 5 together, FIG. 5 is a schematic diagram showing a partial structure of another modified embodiment of the mobile phone of the present invention. The electronic device 100 still further includes a touch sensing layer 90. The touch sensing layer 90 is disposed on the second surface 12 of the protective cover 10 for sensing a user touch operation on the protective cover 10 on an area not covered by the light shielding layer 40.
[0077] 所述触摸传感层 90可层叠于所述显示装置 80与所述保护盖板 10之间, 还可以嵌 于所述显示装置 80中以形成内嵌式触摸显示装置。 所述内嵌式触摸显示装置可 为盒子内式 (In-Cell)触摸显示装置或盒子上式 (On-Cell)触摸显示装置。 所述显示 装置 80例如为液晶显示装置、 有机电致发光显示装置等等合适类型的显示装置 。 所述触摸传感层 90可为额外的电极层, 也可为复用显示装置 80本身的电极结 构。 所述触摸传感层 90可为单层结构, 也可为双层结构。 进一步地, 所述触摸 传感层 90的感测原理可以为互电容式感测原理, 也可为自电容式感测原理。 [0077] The touch sensing layer 90 may be stacked between the display device 80 and the protective cover 10, or may be embedded in the display device 80 to form an in-cell touch display device. The in-cell touch display device may be an In-Cell touch display device or an On-Cell touch display device. The display device 80 is, for example, a liquid crystal display device, an organic electroluminescence display device, or the like, of a suitable type of display device. The touch sensing layer 90 can be an additional electrode layer or an electrode junction of the multiplexing display device 80 itself. Structure. The touch sensing layer 90 can be a single layer structure or a two layer structure. Further, the sensing principle of the touch sensing layer 90 may be a mutual capacitance sensing principle or a self capacitance sensing principle.
[0078] 当显示装置 80为液晶显示装置吋, 所述触摸传感层 90例如设置在偏光片与彩色 滤光板之间, 形成 On-Cell触摸显示装置。 可变更地, 所述触摸传感层 90例如也 可设置在彩色滤光片基板与薄膜阵列基板之间形成 In-Cdl触摸显示装置, 等等 [0078] When the display device 80 is a liquid crystal display device, the touch sensing layer 90 is disposed, for example, between a polarizer and a color filter to form an On-Cell touch display device. Alternatively, the touch sensing layer 90 may be disposed, for example, between an color filter substrate and a thin film array substrate to form an In-Cdl touch display device, etc.
[0079] 随着触摸传感层 90逐渐集成到显示装置 80内, 形成内嵌式触摸显示装置, 用于 驱动触摸传感层 90的触摸驱动芯片逐渐与用于驱动显示装置 80的显示驱动芯片 集成在同一触摸显示驱动芯片中。 通常, 电子设备 100的下端 (即, 靠近话筒一端 )内设置天线, 为了利于散热, 触摸显示驱动芯片一般设置在电子设备 100的上 端 (即, 靠近听筒一端), 即, 触摸显示驱动芯片与触摸按键 20位于手机的两端。 若采用触摸显示驱动芯片进一步驱动触摸按键 20, 则在触摸显示驱动芯片与触 摸按键 20之间需要布设较长的导线, 由此造成连接导线占用手机较多的内部空 间, 另外, 如此对手机内部其它元件之间的安排布置以及信号传输存在一定影 响。 [0079] As the touch sensing layer 90 is gradually integrated into the display device 80, an in-cell touch display device is formed, and the touch driving chip for driving the touch sensing layer 90 gradually becomes the display driving chip for driving the display device 80. Integrated in the same touch display driver chip. Generally, an antenna is disposed in a lower end of the electronic device 100 (ie, near one end of the microphone). To facilitate heat dissipation, the touch display driving chip is generally disposed at an upper end of the electronic device 100 (ie, near one end of the earpiece), that is, touching the display driving chip and touching Buttons 20 are located at both ends of the phone. If the touch display driver chip is further used to drive the touch button 20, a long wire needs to be disposed between the touch display driving chip and the touch button 20, thereby causing the connecting wire to occupy more internal space of the mobile phone, and The arrangement of other components and the signal transmission have an effect.
[0080] 针对具有内嵌式触摸显示装置的电子设备 100, 本发明提出利用生物识别芯片 3 0进一步驱动触摸按键 20执行触摸操作, 从而可使得所述触摸按键 20的驱动路径 简短, 节约材料成本, 减少电子设备 100内部空间的占用, 方便其它元件安排布 置, 提高电子设备 100信号传输的稳定性。  [0080] For the electronic device 100 having the in-cell touch display device, the present invention proposes to further drive the touch button 20 to perform a touch operation by using the biometric chip 30, so that the driving path of the touch button 20 can be shortened, and material cost is saved. The occupation of the internal space of the electronic device 100 is reduced, the arrangement of other components is facilitated, and the stability of signal transmission of the electronic device 100 is improved.
[0081] 尤其地, 当生物识别芯片 30设置在电子设备 100的正面, 并与触摸按键 20位于 电子设备 100的同一端吋, 连接生物识别芯片 30与触摸按键 20的导线 50进一步缩 短, 并且可直接形成在保护盖板 10上, 进一步节省空间, 并减少对其它信号的 干扰。  [0081] In particular, when the biometric identification chip 30 is disposed on the front side of the electronic device 100 and is located at the same end of the electronic device 100 as the touch button 20, the wire 50 connecting the biometric identification chip 30 and the touch button 20 is further shortened, and Formed directly on the protective cover 10, it further saves space and reduces interference with other signals.
[0082] 进一步需要说明的是, 所述电子设备 100可进一步增加图示中未示出的元件或 减少图示中示出的某些元件或部件, 例如增加主板以用于根据所述生物识别芯 片 30所感测的生物信息对应控制电子设备 100执行相应的功能。 然而, 本发明不 局限增加此处所列举的主板, 本发明的电子设备 100可根据实际需要对应选择增 加或减少元件或部件即可。 [0083] 请参阅图 6, 图 6为本发明手机的又一实施例的部分组装结构示意简图。 在本实 施方式中, 所述生物识别芯片 30例如为经过封装后的芯片, 其可为包括单一裸 片的芯片, 也可为包括多颗裸片的芯片。 所述生物识别芯片 30例如通过粘着层 粘附在保护盖板 10的第二表面 12上。 所述生物识别芯片 30通过连接件 50a与所述 触摸按键 20连接。 较佳地, 所述连接件 50a为软性电路板。 然, 所述连接件 50a 并不局限于所述软性电路板 50a, 也可为其它合适的元件。 [0082] It should be further noted that the electronic device 100 may further add elements not shown in the drawings or reduce some of the elements or components shown in the illustration, such as adding a motherboard for use according to the biometric identification. The biometric information sensed by the chip 30 corresponds to the control electronics 100 performing the corresponding function. However, the present invention is not limited to the addition of the motherboards listed herein. The electronic device 100 of the present invention may select or increase or decrease components or components according to actual needs. Please refer to FIG. 6. FIG. 6 is a schematic diagram showing a partially assembled structure of another embodiment of the mobile phone according to the present invention. In this embodiment, the biometric identification chip 30 is, for example, a packaged chip, which may be a chip including a single die, or a chip including a plurality of dies. The biometric chip 30 is adhered to the second surface 12 of the protective cover 10, for example by an adhesive layer. The biometric chip 30 is connected to the touch button 20 via a connector 50a. Preferably, the connecting member 50a is a flexible circuit board. However, the connecting member 50a is not limited to the flexible circuit board 50a, and may be other suitable components.
[0084] 所述触摸按键 20可设置在保护盖板 10上, 也可设置在连接件 50a上。 当触摸按 键 20设置在连接件 50a上吋, 所述连接件 50a对应设置触摸按键 20的位置贴附在 保护盖板 10上。  [0084] The touch button 20 may be disposed on the protective cover 10 or may be disposed on the connecting member 50a. When the touch button 20 is set on the connector 50a, the connector 50a is attached to the protective cover 10 corresponding to the position where the touch button 20 is disposed.
[0085] 所述生物传感芯片 30进一步通过所述连接件 50a与所述主板 75(见图 1)连接, 与 所述主板 75进行数据通信。 所述主板 75根据所述生物识别芯片 30所述感测到的 信息对应控制电子设备 100是否执行相应的功能。  [0085] The biosensor chip 30 is further connected to the main board 75 (see FIG. 1) through the connecting member 50a, and performs data communication with the main board 75. The main board 75 controls whether the electronic device 100 performs a corresponding function according to the information sensed by the biometric chip 30.
[0086] 可变更地, 所述生物识别芯片 30也可通过压印等其它合适的方式设置在第二表 面 12上。 又或者, 所述生物识别芯片 30靠近保护盖板 30设置, 与保护盖板 30之 间并不存在中间连接介质。 另, 所述生物识别芯片 30也可与实体按键装配在一 起, 保护盖板 10上对应设置有收容生物识别芯片与实体按键的通孔。 所述生物 识别芯片 30也可形成在所述电子设备 100的其它合适位置, 并不局限在所述电子 设备 100的正面。  [0086] Alternatively, the biometric chip 30 can also be disposed on the second surface 12 by other suitable means such as imprinting. Still alternatively, the biometric chip 30 is disposed adjacent to the protective cover 30, and there is no intermediate connection medium between the protective cover 30 and the protective cover 30. In addition, the biometric chip 30 can also be assembled with a physical button. The protective cover 10 is correspondingly provided with a through hole for receiving the biometric chip and the physical button. The biometric identification chip 30 can also be formed at other suitable locations of the electronic device 100, and is not limited to the front side of the electronic device 100.
[0087] 较佳地, 所述生物识别芯片 30与所述触摸按键 20形成在电子设备 100的同一端  [0087] Preferably, the biometric chip 30 and the touch button 20 are formed at the same end of the electronic device 100.
, 所述生物识别芯片 30设置在电子设备 100的正面。 进一步地, 对于具有内嵌式 触摸显示装置的电子设备 100, 所述生物识别芯片 30与触摸按键 20形成在内嵌式 触摸显示装置与保护盖板 10之间。  The biometric chip 30 is disposed on the front side of the electronic device 100. Further, for the electronic device 100 having the in-cell touch display device, the biometric chip 30 and the touch button 20 are formed between the in-cell touch display device and the protective cover 10.
[0088] 然, 可变更地, 对于具有内嵌式触摸显示装置的电子设备 100, 所述生物识别 芯片 30也可形成在电子设备 100的侧面, 并不局限于设置在电子设备 100的正面  [0088] However, for the electronic device 100 having the in-cell touch display device, the biometric chip 30 may also be formed on the side of the electronic device 100, and is not limited to being disposed on the front side of the electronic device 100.
[0089] 请参阅图 7, 图 7为本发明手机的又一实施例的结构示意简图。 在本实施方式中 Please refer to FIG. 7, FIG. 7 is a schematic structural diagram of another embodiment of a mobile phone according to the present invention. In the present embodiment
, 用于驱动触摸按键 20的电路另集成为一驱动芯片 35 , 并非如图 3所示集成在生 物识别芯片 30中。 所述驱动芯片 35设置在软性电路板 50a上, 并与生物识别芯片 30连接, 通过所述生物识别芯片 30输出触摸驱动信号给触摸按键 20, 并通过所 述生物识别芯片 30接收来自触摸按键 20输出的触摸感测信号。 The circuit for driving the touch button 20 is further integrated into a driver chip 35, which is not integrated in the biometric chip 30 as shown in FIG. The driving chip 35 is disposed on the flexible circuit board 50a and coupled with the biometric chip 30 is connected, a touch driving signal is outputted to the touch button 20 by the biometric chip 30, and a touch sensing signal output from the touch button 20 is received by the biometric chip 30.
[0090] 所述生物识别芯片 30例如为裸片, 通过覆晶工艺形成在保护盖板 10上。 所述触 摸按键 20例如形成在保护盖板 10的第二表面 12上。 所述生物识别芯片 30通过导 线 50与触摸按键 20连接。 所述导线 50形成在第二表面 12上, 并位于所述触摸按 键 20与所述生物识别芯片 30之间。 然, 可变更地, 所述触摸按键 20也可形成在 其它介质 (如软性电路板)上, 并贴合在所述保护盖板 10上。  [0090] The biometric identification chip 30 is, for example, a die formed on the protective cover 10 by a flip chip process. The touch button 20 is formed, for example, on the second surface 12 of the protective cover 10. The biometric chip 30 is connected to the touch button 20 via a wire 50. The wire 50 is formed on the second surface 12 and is located between the touch button 20 and the biometric chip 30. However, the touch button 20 can also be formed on other media (such as a flexible circuit board) and attached to the protective cover 10.
[0091] 尽管是参考各实施例来描述本发明公幵, 伹是可以理解, 这些实施例是说明性 的, 并且本发明的范围不仅限于它们。 许多变化、 修改、 添加、 以及改进都是 可能的。 更一般而言, 根据本发明公幵的各实施例是在特定实施例的上下文中 描述的。 功能可以在本发明公幵的各实施例中在过程中以不同的方式分离或组 合, 或利用不同的术语来描述。 这些及其他变化、 修改、 添加、 以及改进可以 在如随后的权利要求书所定义的本发明公幵的范围内。  While the present invention has been described with reference to the embodiments, it is understood that these embodiments are illustrative and the scope of the invention is not limited thereto. Many changes, modifications, additions, and improvements are possible. More generally, embodiments of the present disclosure are described in the context of particular embodiments. The functions may be separated or combined in different ways in the various embodiments of the present disclosure, or may be described using different terms. These and other variations, modifications, additions, and improvements may be made within the scope of the present invention as defined by the following claims.
技术问题  technical problem
问题的解决方案  Problem solution
发明的有益效果  Advantageous effects of the invention

Claims

权利要求书 Claim
[权利要求 1] 一种电子设备, 包括:  [Claim 1] An electronic device comprising:
保护盖板, 包括第一表面和与第一表面相对的第二表面;  a protective cover comprising a first surface and a second surface opposite the first surface;
触摸按键, 设置在所述保护盖板的第二表面上; 和 生物识别芯片, 通过覆晶技术工艺设置在所述保护盖板的第二表面, 并与所述触摸按键相连接, 所述生物识别芯片用于感测用户从保护盖 板的第一表面输入的生物信息, 还用于驱动所述触摸按键执行触摸感 如权利要求 1所述的电子设备, 其特征在于: 当保护盖板为玻璃盖板 或蓝宝石盖板吋, 所述生物识别芯片通过 COG工艺绑定在保护盖板 的第二表面; 当保护盖板为薄膜盖板吋, 所述生物识别芯片通过 COF 工艺绑定在保护盖板的第二表面。  a touch button disposed on the second surface of the protective cover; and a biometric chip disposed on the second surface of the protective cover by a flip chip process and coupled to the touch button, the creature The identification chip is configured to sense biological information input by the user from the first surface of the protective cover, and is further configured to drive the touch key to perform a touch feeling. The electronic device according to claim 1, wherein: when the protective cover is a cover glass or a sapphire cover, the biometric chip is bound to the second surface of the protective cover by a COG process; when the cover is a film cover, the biometric chip is bound by a COF process The second surface of the cover.
如权利要求 1所述的电子设备, 其特征在于: 所述电子设备进一步包 括遮光层, 设置在保护盖板的第二表面, 以限定出保护盖板上的透光 区域与非透光区域; 所述触摸按键和所述生物识别芯片设置在非透光 区域。  The electronic device according to claim 1, wherein: the electronic device further comprises a light shielding layer disposed on the second surface of the protective cover to define a light transmissive area and a non-transparent area on the protective cover; The touch button and the biometric chip are disposed in a non-transparent area.
如权利要求 3所述的电子设备, 其特征在于: 所述触摸按键和所述生 物识别芯片均设置在电子设备的同一端。  The electronic device according to claim 3, wherein: the touch button and the biometric identification chip are both disposed at the same end of the electronic device.
如权利要求 3所述的电子设备, 其特征在于: 所述保护盖板的第二表 面的非透光区域上进一步形成有导线, 所述导线用于电连接所述生物 识别芯片与所述触摸按键。  The electronic device according to claim 3, wherein: a non-transparent area of the second surface of the protective cover is further formed with a wire for electrically connecting the biometric chip and the touch button.
如权利要求 5所述的电子设备, 其特征在于: 所述导线位于所述触摸 按键与所述生物识别芯片之间。  The electronic device according to claim 5, wherein: said wire is located between said touch button and said biometric chip.
如权利要求 5所述的电子设备, 其特征在于: 所述导线由导电银浆或 钼锂钼制成。  The electronic device according to claim 5, wherein: said wire is made of conductive silver paste or molybdenum lithium molybdenum.
如权利要求 3所述的电子设备, 其特征在于: 所述电子设备进一步包 括触摸传感层, 设置在所述保护盖板的第二表面一侧, 用于感测保护 盖板上的透光区域上是否有用户的触摸操作。 [权利要求 9] 如权利要求 8所述的电子设备, 其特征在于: 所述电子设备进一步包 括显示装置, 所述显示装置与所述触摸传感层层叠设置; 或者, 所述 显示装置与所述触摸传感层形成内嵌式触摸显示装置。 The electronic device according to claim 3, wherein the electronic device further comprises a touch sensing layer disposed on a side of the second surface of the protective cover for sensing light transmission on the protective cover Whether there is a user's touch operation on the area. [Claim 9] The electronic device according to claim 8, wherein: the electronic device further includes a display device, wherein the display device is stacked with the touch sensing layer; or the display device and the display device The touch sensing layer forms an in-cell touch display device.
[权利要求 10] 如权利要求 1所述的电子设备, 其特征在于: 所述触摸按键包括感测 电极, 所述感测电极或形成在保护盖板的第二表面上, 或形成在软性 电路板上。  [Claim 10] The electronic device according to claim 1, wherein: the touch button comprises a sensing electrode, the sensing electrode is formed on a second surface of the protective cover, or formed in a soft On the board.
[权利要求 11] 如权利要求 10所述的电子设备, 其特征在于: 当所述感测电极形成在 第二盖板的第二表面上吋, 所述感测电极由导电银浆或钼锂钼制成。  [Claim 11] The electronic device according to claim 10, wherein: when the sensing electrode is formed on the second surface of the second cover, the sensing electrode is made of conductive silver paste or molybdenum lithium Made of molybdenum.
[权利要求 12] 如权利要求 1所述的电子设备, 其特征在于: 所述生物识别芯片包括 感测电极阵列和驱动电路, 所述驱动电路用于驱动感测电极阵列执行 生物信息感测, 还用于驱动所述触摸按键执行触摸感测。  [Claim 12] The electronic device according to claim 1, wherein: the biometric identification chip includes a sensing electrode array and a driving circuit, and the driving circuit is configured to drive the sensing electrode array to perform biometric information sensing, It is also used to drive the touch button to perform touch sensing.
[权利要求 13] 如权利要求 12所述的电子设备, 其特征在于: 所述驱动电路驱动感测 电极阵列和触摸按键同吋或分吋工作。  [Claim 13] The electronic device according to claim 12, wherein: the driving circuit drives the sensing electrode array and the touch button to operate in the same or the same manner.
[权利要求 14] 如权利要求 1所述的电子设备, 其特征在于: 所述生物识别芯片为指 纹识别芯片、 血氧识别芯片、 心跳识别芯片中的一种或多种。  [Claim 14] The electronic device according to claim 1, wherein the biometric identification chip is one or more of a fingerprint recognition chip, a blood oxygen recognition chip, and a heartbeat recognition chip.
[权利要求 15] 如权利要求 1所述的电子设备, 其特征在于: 所述生物识别芯片为裸 片。  [Claim 15] The electronic device according to claim 1, wherein: the biometric chip is a bare chip.
[权利要求 16] —种电子设备, 包括:  [Claim 16] An electronic device comprising:
保护盖板, 包括第一表面和与第一表面相对的第二表面;  a protective cover comprising a first surface and a second surface opposite the first surface;
触摸按键, 设置在保护盖板的第二表面上;  Touching a button, disposed on the second surface of the protective cover;
导线, 设置在保护盖板的第二表面上, 并与所述触摸按键连接; 异方性导电层, 设置在所述导线上; 和  a wire disposed on the second surface of the protective cover and connected to the touch button; an anisotropic conductive layer disposed on the wire; and
生物识别芯片, 设置在所述异方性导电层上, 通过所述异方性导电层 和所述导线与所述触摸按键电连接, 所述生物识别芯片用于感测用户 从保护盖板的第一表面输入的生物信息, 还用于驱动所述触摸按键执 行触摸感测功能。  a biometric chip disposed on the anisotropic conductive layer, electrically connected to the touch button by the anisotropic conductive layer and the wire, wherein the biometric chip is used to sense a user from a protective cover The biological information input by the first surface is further used to drive the touch button to perform a touch sensing function.
[权利要求 17] 如权利要求 16所述的电子设备, 其特征在于: 所述异方性导电层为异 方性导电膜或异方性导电胶。 [权利要求 18] 如权利要求 16所述的电子设备, 其特征在于: 所述电子设备包括内嵌 式触摸显示装置, 所述生物识别芯片、 触摸按键、 导线、 和异方性导 电层均设置在内嵌式触摸显示装置和保护盖板之间。 [Claim 17] The electronic device according to claim 16, wherein the anisotropic conductive layer is an anisotropic conductive film or an anisotropic conductive paste. [Claim 18] The electronic device according to claim 16, wherein: the electronic device includes an in-cell touch display device, and the biometric chip, the touch button, the wire, and the anisotropic conductive layer are all disposed Between the in-cell touch display device and the protective cover.
[权利要求 19] 如权利要求 18所述的电子设备, 其特征在于: 所述生物识别芯片、 触 摸按键、 导线、 和异方性导电层均设置在电子设备的同一端。  [Claim 19] The electronic device according to claim 18, wherein: the biometric chip, the touch button, the wire, and the anisotropic conductive layer are disposed at the same end of the electronic device.
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