CN109492458A - Display module and its manufacturing method and electronic device - Google Patents

Display module and its manufacturing method and electronic device Download PDF

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Publication number
CN109492458A
CN109492458A CN201710818363.XA CN201710818363A CN109492458A CN 109492458 A CN109492458 A CN 109492458A CN 201710818363 A CN201710818363 A CN 201710818363A CN 109492458 A CN109492458 A CN 109492458A
Authority
CN
China
Prior art keywords
ultrasonic sensor
metallized film
display screen
display module
foam
Prior art date
Legal status (The legal status 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 status listed.)
Withdrawn
Application number
CN201710818363.XA
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Chinese (zh)
Inventor
陈真
骆剑锋
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nanchang OFilm Biometric Identification Technology Co Ltd
Original Assignee
Nanchang OFilm Biometric Identification Technology Co Ltd
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 Nanchang OFilm Biometric Identification Technology Co Ltd filed Critical Nanchang OFilm Biometric Identification Technology Co Ltd
Priority to CN201710818363.XA priority Critical patent/CN109492458A/en
Publication of CN109492458A publication Critical patent/CN109492458A/en
Withdrawn legal-status Critical Current

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Classifications

    • 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
    • G06V40/1306Sensors therefor non-optical, e.g. ultrasonic or capacitive sensing
    • 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
    • G06V40/1329Protecting the fingerprint sensor against damage caused by the finger
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • H04M1/0266Details of the structure or mounting of specific components for a display module assembly

Abstract

The invention discloses a kind of manufacturing methods of display module.Manufacturing method includes: to form foam far from the side of display screen light-emitting surface in display screen;Accommodating space is formed on foam;And metallized film and ultrasonic sensor are arranged in accommodating space, metallized film is between display screen and ultrasonic sensor.The manufacturing method of embodiment of the present invention forms foam on a display screen; and metallized film and ultrasonic sensor are arranged in the accommodating space of foam; it can prevent from causing display screen Indentation Damage, and can play the role of protecting ultrasonic sensor, and the thinner thickness of display module.In addition, the invention also discloses a kind of display module and electronic devices.

Description

Display module and its manufacturing method and electronic device
Technical field
The present invention relates to fingerprint identification technology field, in particular to a kind of manufacturing method of display module, display module and Electronic device.
Background technique
Currently, the ultrasonic sensor applied in mobile phone is set up directly on the display screen of mobile phone, ultrasonic sensor holds Indentation Damage easily is caused to display screen, and ultrasonic sensor is also easy to be damaged, to influence fingerprint recognition effect.
Summary of the invention
Embodiment of the present invention provides the manufacturing method, display module and electronic device of a kind of display module.
The manufacturing method of embodiments of the present invention display module, comprising:
Foam is formed far from the side of the display screen light-emitting surface in display screen;
Accommodating space is formed on the foam;And
Metallized film and ultrasonic sensor are arranged in the accommodating space, the metallized film is located at described Between display screen and the ultrasonic sensor.
The manufacturing method of embodiment of the present invention forms foam on a display screen, and by metallized film and supersonic sensing Device is arranged in the accommodating space of foam, and metallized film is between display screen and ultrasonic sensor, in this way, metallization is thin Film can prevent under the effect of external force, and ultrasonic sensor causes Indentation Damage, and the accommodating space energy of foam to display screen Play the role of protecting ultrasonic sensor, to ensure that the fingerprint recognition effect of ultrasonic sensor.Further, due to Metallized film and ultrasonic sensor are arranged in the accommodating space of foam, the thinner thickness of display module entirety, and gold Categoryization film a no setting is required whole face is conducive to save cost so that display screen is completely covered.
In some embodiments, described that metallized film and ultrasonic sensor are arranged in the accommodating space Step includes:
The metallized film is arranged in the accommodating space;And
Side of the metallized film far from the light-emitting surface is arranged in the ultrasonic sensor.
In this way, metallized film can prevent under the effect of external force, ultrasonic sensor causes impression to damage display screen Wound.
In some embodiments, described that metallized film and ultrasonic sensor are arranged in the accommodating space Step includes:
The ultrasonic sensor is arranged on the metallized film to form ultrasonic wave mould group;And
The ultrasonic wave mould group is arranged in the accommodating space, the metallized film is located at the display screen and institute It states between ultrasonic sensor.
In this way, convenient for manufacture display module.
In some embodiments, the manufacturing method further include:
Shielded layer is formed between the metallized film and the ultrasonic sensor, the shielding layer grounding is to shield Electromagnetic signal.
Be arranged in the shielded layer between display screen and ultrasonic sensor can be effectively prevented display screen generation electric field, Or magnetic field or electromagnetic field interfere ultrasonic sensor, to ensure the accuracy of ultrasonic sensor fingerprint recognition and sensitive Degree, to promote user experience.
In some embodiments, the manufacturing method further include:
Viscose is formed far from the surface of the display screen in the foam, the viscose is around the ultrasonic sensor.
In this way, the display module of embodiment of the present invention can be removably disposed in other structures (example by viscose Such as, the shell of electronic device).
The display module of embodiment of the present invention, including display screen, foam, metallized film and ultrasonic sensor.Institute Stating display screen includes light-emitting surface.Side of the display screen far from the light-emitting surface is arranged in the foam.The foam opens up There is accommodating space, the metallized film and the ultrasonic sensor are arranged in the accommodating space.The metallization is thin Film is between the display screen and the ultrasonic sensor.
The display module of embodiment of the present invention is provided with foam on a display screen, and metallized film and ultrasonic wave are passed Sensor is arranged in the accommodating space of foam, and metallized film is between display screen and ultrasonic sensor, in this way, metallization Film can prevent under the effect of external force, and ultrasonic sensor causes Indentation Damage, and the accommodating space of foam to display screen It can play the role of protecting ultrasonic sensor, to ensure that the fingerprint recognition effect of ultrasonic sensor.Further, by In in the accommodating space that metallized film and ultrasonic sensor are arranged at foam, the thinner thickness of display module entirety, and Metallized film a no setting is required whole face is conducive to save cost so that display screen is completely covered.
In some embodiments, the ultrasonic wave mould group that the ultrasonic sensor and the metallized film are integrated. In this way, convenient for manufacture display module.
In some embodiments, the display screen includes Organic Light Emitting Diode (Organic Light-Emitting Diode, OLED) display screen.In this way, OLED display screen stable luminescence, thickness are thin, display effect is good, help to promote user's body It tests.
In some embodiments, the metallized film includes metallized polyester (Polyethylene Terephthalate, PET) film or metallized polyimide (Polyimide, PI) film.The PET film that metallizes and metal Buffering can be played the role of by changing PI film, be prevented under the effect of external force, ultrasonic sensor causes impression to damage display screen Wound.
In some embodiments, the display module further includes shielded layer, and the shielded layer is arranged in the metallization Between film and the ultrasonic sensor, the shielding layer grounding is to shield electromagnetic signal.It is arranged in display screen and ultrasonic wave Shielded layer between sensor can be effectively prevented the electric field that display screen generates or magnetic field or electromagnetic field to ultrasonic sensor It interferes, to ensure the accuracy and sensitivity of ultrasonic sensor fingerprint recognition, to promote user experience.
In some embodiments, the display module further includes viscose, and the viscose is arranged in the foam far from institute The surface of display screen is stated, the viscose is around the ultrasonic sensor.In this way, the display module of embodiment of the present invention can be with (for example, shell of electronic device) is removably disposed in other structures by viscose.
In some embodiments, the thickness of the thickness of the foam and the metallized film and the ultrasonic sensor The sum of degree is equal.In this way, display module is formed by the side of foam and the light-emitting surface of the separate display screen of ultrasonic sensor Surface it is more smooth, convenient for display module be applied to electronic device.
In some embodiments, the ultrasonic sensor includes substrate, multiple pixel electrodes, piezoelectric element, conduction Electrode, the processing chip being connect with multiple pixel electrodes.Multiple pixel electrode production are on the substrate and in battle array Column distribution.The piezoelectric element is arranged on the substrate and covers multiple pixel electrodes.The piezoelectric element is for sending out It penetrates ultrasonic wave and generates electric signal after the ultrasonic wave for receiving object reflection to be detected.Multiple pixel electrodes are for receiving institute State electric signal.The conductive electrode is arranged on the piezoelectric element.The piezoelectric element be located at the pixel electrode with it is described Between conductive electrode.The processing chip is for handling the electric signal to form the ultrasonograph of the object to be detected.This Each pixel electrode of the ultrasonic sensor of invention embodiment can determine that object to be detected is pressed based on the received electrical signal The electric signal that the position and piezoelectric element being pressed on ultrasonic sensor generate on the position, so that reducing processing chip needs Data volume to be processed improves the recognition efficiency of ultrasonic sensor.
In some embodiments, the membrane structure that the ultrasonic sensor is integrated.In this way, convenient for manufacture display mould Group.
The electronic device of embodiment of the present invention, including display module described in shell and any of the above-described embodiment.Institute State display module setting on the housing.
The electronic device of embodiment of the present invention is provided with foam on a display screen, and metallized film and ultrasonic wave are passed Sensor is arranged in the accommodating space of foam, and metallized film is between display screen and ultrasonic sensor, in this way, metallization Film can prevent under the effect of external force, and ultrasonic sensor causes Indentation Damage, and the accommodating space of foam to display screen It can play the role of protecting ultrasonic sensor, to ensure that the fingerprint recognition effect of ultrasonic sensor.Further, by In in the accommodating space that metallized film and ultrasonic sensor are arranged at foam, the thinner thickness of display module entirety, and Metallized film a no setting is required whole face is conducive to save cost so that display screen is completely covered.
The additional aspect and advantage of embodiments of the present invention will be set forth in part in the description, partially will be from following Description in become obvious, or the practice of embodiment through the invention is recognized.
Detailed description of the invention
Above-mentioned and/or additional aspect and advantage of the invention is from combining in description of the following accompanying drawings to embodiment by change It obtains obviously and is readily appreciated that, in which:
Fig. 1 is the flow diagram of the manufacturing method of certain embodiments of the present invention;
Fig. 2 is the cross-sectional view of the display module of certain embodiments of the present invention;
Fig. 3 is the cross-sectional view of the display module of certain embodiments of the present invention;
Fig. 4 is the flow diagram of the manufacturing method of certain embodiments of the present invention;
Fig. 5 is the process schematic representation of the manufacturing method of certain embodiments of the present invention;
Fig. 6 is the flow diagram of the manufacturing method of certain embodiments of the present invention;
Fig. 7 is the process schematic representation of the manufacturing method of certain embodiments of the present invention;
Fig. 8 is the cross-sectional view of the display module of certain embodiments of the present invention;
Fig. 9 is the flow diagram of the manufacturing method of certain embodiments of the present invention;
Figure 10 is the structural schematic diagram of the shielded layer of certain embodiments of the present invention;
Figure 11 is the flow diagram of the manufacturing method of certain embodiments of the present invention;
Figure 12 is the floor map of the electronic device of certain embodiments of the present invention;
Figure 13 is the cross-sectional view of the ultrasonic sensor of certain embodiments of the present invention;
Figure 14 is the decomposition diagram of the ultrasonic sensor of certain embodiments of the present invention;
Figure 15 is the cross-sectional view of the ultrasonic sensor of certain embodiments of the present invention;
Figure 16 is the decomposition diagram of the ultrasonic sensor of certain embodiments of the present invention;
Figure 17 is the decomposition diagram of the ultrasonic sensor of certain embodiments of the present invention;
Figure 18 is the cross-sectional view of the ultrasonic sensor of certain embodiments of the present invention;
Figure 19 is the cross-sectional view of the ultrasonic sensor of certain embodiments of the present invention;
Figure 20 is the cross-sectional view of the ultrasonic sensor of certain embodiments of the present invention;
Figure 21 is the decomposition diagram of the ultrasonic sensor of certain embodiments of the present invention;
Figure 22 is the cross-sectional view of the ultrasonic sensor of certain embodiments of the present invention.
Specific embodiment
Embodiments of the present invention are described below in detail, the example of the embodiment is shown in the accompanying drawings, wherein from beginning Same or similar element or element with the same or similar functions are indicated to same or similar label eventually.Below by ginseng The embodiment for examining attached drawing description is exemplary, and for explaining only the invention, and is not considered as limiting the invention.
In the description of the present invention, it is to be understood that, term " center ", " longitudinal direction ", " transverse direction ", " length ", " width ", " thickness ", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outside", " up time The orientation or positional relationship of the instructions such as needle ", " counterclockwise " is to be based on the orientation or positional relationship shown in the drawings, and is merely for convenience of The description present invention and simplified description, rather than the device or element of indication or suggestion meaning must have a particular orientation, with spy Fixed orientation construction and operation, therefore be not considered as limiting the invention.In addition, term " first ", " second " are only used for Purpose is described, relative importance is not understood to indicate or imply or implicitly indicates the quantity of indicated technical characteristic. " first " is defined as a result, the feature of " second " can explicitly or implicitly include one or more feature.? In description of the invention, the meaning of " plurality " is two or more, unless otherwise specifically defined.
In the description of the present invention, it should be noted that unless otherwise clearly defined and limited, term " installation ", " phase Even ", " connection " shall be understood in a broad sense, for example, it may be being fixedly connected, may be a detachable connection, or be integrally connected;It can To be mechanical connection, it is also possible to be electrically connected or can mutually communicate;It can be directly connected, it can also be by between intermediary It connects connected, can be the connection inside two elements or the interaction relationship of two elements.For the ordinary skill of this field For personnel, the specific meanings of the above terms in the present invention can be understood according to specific conditions.
In the present invention unless specifically defined or limited otherwise, fisrt feature second feature "upper" or "lower" It may include that the first and second features directly contact, also may include that the first and second features are not direct contacts but pass through it Between other characterisation contact.Moreover, fisrt feature includes the first spy above the second feature " above ", " above " and " above " Sign is right above second feature and oblique upper, or is merely representative of first feature horizontal height higher than second feature.Fisrt feature exists Second feature " under ", " lower section " and " following " include that fisrt feature is directly below and diagonally below the second feature, or is merely representative of First feature horizontal height is less than second feature.
Following disclosure provides many different embodiments or example is used to realize different structure of the invention.In order to Simplify disclosure of the invention, hereinafter the component of specific examples and setting are described.Certainly, they are merely examples, and And it is not intended to limit the present invention.In addition, the present invention can in different examples repeat reference numerals and/or reference letter, This repetition is for purposes of simplicity and clarity, itself not indicate between discussed various embodiments and/or setting Relationship.In addition, the present invention provides various specific techniques and material example, but those of ordinary skill in the art can be with Recognize the application of other techniques and/or the use of other materials.
Fig. 1 and Fig. 2 are please referred to, the manufacturing method of the display module 200 of embodiment of the present invention includes:
S10: foam 230 is formed far from the side of 210 light-emitting surface 210a of display screen in display screen 210;
S20: accommodating space 232 is formed on foam 230;And
S30: metallized film 220 and ultrasonic sensor 100 are arranged in accommodating space 232, metallized film 220 Between display screen 210 and ultrasonic sensor 100.
Referring to Fig. 2, the manufacturing method of embodiment of the present invention can be used for manufacturing the display module of embodiment of the present invention 200.The display module 200 of embodiment of the present invention includes that display screen 210, foam 230, metallized film 220 and ultrasonic wave pass Sensor 100.Display screen 210 includes light-emitting surface 210a.Foam 230 is arranged in display screen 210 far from the side light-emitting surface 210a.Foam 230 offer accommodating space 232, and metallized film 220 and ultrasonic sensor 100 are arranged in accommodating space 232.Metallization Film 220 is between display screen 210 and ultrasonic sensor 100.
The manufacturing method and display module 200 of embodiment of the present invention form foam 230 on the display screen 210, and will be golden Categoryization film 220 and ultrasonic sensor 100 are arranged in the accommodating space 232 of foam 230, and metallized film 220 is located at aobvious Between display screen 210 and ultrasonic sensor 100, in this way, metallized film 220 can prevent under the effect of external force, ultrasonic wave Sensor 100 causes Indentation Damage to display screen 210, and the accommodating space 232 of foam 230 can play protection ultrasonic sensor 100 effect, to ensure that the fingerprint recognition effect of ultrasonic sensor 100.Further, due to metallized film 220 It is arranged in the accommodating space 232 of foam 230 with ultrasonic sensor 100, the whole thinner thickness of display module 200, and No setting is required the whole face of metallized film 220 is conducive to save cost so that display screen 210 is completely covered.
In the embodiment shown in figure 2, when object to be detected (including finger, test template etc.) is placed on display module When on 200, the ultrasonic wave that ultrasonic sensor 100 emits sequentially passes through metallized film 220 and display screen 210, and through finger After reflection, again passes through display screen 210 and metallized film 220 is passed back to ultrasonic sensor 100.Ultrasonic sensor 100 According to the finger print information of the signal acquisition received object to be detected.The display module 200 of embodiment of the present invention can be applied to but It is not limited to the application scenarios such as unlock, file encryption, payment verification, authentication.
In some embodiments, metallized film 220 includes metallization PET film or metallization PI film.Metallization PET film and metallization PI film can play the role of buffering, prevent under the effect of external force, ultrasonic sensor 100 is right Display screen 210 causes Indentation Damage.In the display module 200 of embodiment of the present invention, led due to being made mistakes processing procedure etc. When cause needs rework, it is only necessary to metallized film 220 be torn, heavy industry is facilitated.
Foam 230 can play cushioning and protection, hit when display module 200 or ultrasonic sensor 100 or When the unexpected external force of person, foam 230 can protect ultrasonic sensor 100, so that the not rapid wear of ultrasonic sensor 100 It is bad, it ensure that the service life of display module 200 and ultrasonic sensor 100.The accommodating space 232 formed on foam 230 is used In receiving and protection ultrasonic sensor 100.It, can be in addition, foam 230 wraps the opposite end of metallized film 220 Play the role of protecting metallized film 220.
Referring to Fig. 2, the accommodating space 232 formed on foam 230 can be through-hole.The close of metallized film 220 shows The side of the light-emitting surface 210a of display screen 210 connects with display screen 210.In this way, smaller (the thickness of foam 230 of the thickness of foam 230 Equal or approximately equal to the sum of the thickness of ultrasonic sensor 100 and metallized film 220), and then convenient for that will show mould Group 200 is made thinner.Referring to Fig. 3, the accommodating space 232 formed on foam 230 can be slot.Foam 230 surrounds ultrasonic wave The one of the light-emitting surface 210a of the close display screen 210 of the surrounding and metallized film 220 of sensor 100 and metallized film 220 Side.In this way, foam 230 can better play protection ultrasonic sensor 100 effect, and foam 230 be completely covered it is aobvious Display screen 210 can play the role of protecting display screen 210.
Fig. 2, Fig. 4 and Fig. 5 are please referred to, in some embodiments, by metallized film 220 and ultrasonic sensor 100 It is arranged in accommodating space 232 can include:
S31: metallized film 220 is arranged in accommodating space 232;And
S32: side of the metallized film 220 far from light-emitting surface 210a is arranged in ultrasonic sensor 100.
In other words, for ultrasonic sensor 100, metallized film 220 is located at close in accommodating space 232 The side of the light-emitting surface 210a of display screen 210, metallized film 220 is between display screen 210 and ultrasonic sensor 100. In this way, metallized film 220 can prevent under the effect of external force, ultrasonic sensor 100 causes impression to damage display screen 210 Wound.
Fig. 2, Fig. 6 and Fig. 7 are please referred to, in some embodiments, by metallized film 220 and ultrasonic sensor 100 It is arranged in accommodating space 232 can include:
S33: ultrasonic sensor 100 is arranged on metallized film 220 to form ultrasonic wave mould group 100a;And
S34: by ultrasonic wave mould group 100a be arranged in accommodating space 232, metallized film 220 be located at display screen 210 and Between ultrasonic sensor 100.
Referring to Fig. 2, in some embodiments, the ultrasound that ultrasonic sensor 100 and metallized film 220 are integrated Wave mould group 100a.
In this way, convenient for manufacture display module 200.
In some embodiments, display screen 210 includes OLED display screen.
Specifically, OLED display screen includes active-matrix Organic Light Emitting Diode (Active Matrix Organic Light Emitting Diode, AMOLED) display screen and passive-matrix Organic Light Emitting Diode (Passive Matrix Organic Light Emitting Diode, PMOLED) display screen.Preferably, display screen 210 is AMOLED display screen. AMOLED display screen has installed thin film transistor (TFT) and capacitor layers additional on each light emitting diode to control Organic Light Emitting Diode Brightness, to realize that more rapidly and more accurately pixel light emission controls, and AMOLED display screen stable luminescence, thickness are thin, aobvious Show that effect is good, helps to promote user experience.
In some embodiments, display screen 210 includes flexible OLED display.Flexible OLED display is flexible, function Consume it is low, in this way, helping to promote user experience convenient for display module 200 is made thinner.
Referring to Fig. 8, in some embodiments, display module 200 further includes cover board 260.The setting of cover board 260 is being shown The side of the light-emitting surface 210a of screen 210.In other words, display screen 210 is fitted in the lower surface of cover board 260.In this way, cover board 260 It can play the role of protection to display screen 210.The material of cover board 260 can be glass, sapphire, polyvinyl chloride Any one in (Polyvinyl chloride, PVC).The shape of cover board 260 can be with the shape phase of display screen 210 Match.
In embodiment shown in Fig. 8, when object to be detected (including finger, test template etc.) is placed on display module When on 200, the ultrasonic wave that ultrasonic sensor 100 emits sequentially passes through metallized film 220, display screen 210 and cover board 260, And after handling digital reflex, again passes through cover board 260, display screen 210 and metallized film 220 and be passed back to ultrasonic sensor 100. Ultrasonic sensor 100 is according to the finger print information of the signal acquisition received object to be detected.
Fig. 2 and Fig. 9 are please referred to, in some embodiments, manufacturing method may also include that
S40: between metallized film 220 and ultrasonic sensor 100 formed shielded layer 240, shielded layer 240 ground connection with Shield electromagnetic signal.
Referring to Fig. 2, in some embodiments, display module 200 further includes shielded layer 240.The setting of shielded layer 240 exists Between metallized film 220 and ultrasonic sensor 100.Shielded layer 240 is grounded to shield electromagnetic signal.
Specifically, manufacturing method forms the side of shielded layer 240 between metallized film 220 and ultrasonic sensor 100 Formula can there are two types of, a kind of mode is: first metallized film 220 being arranged in accommodating space 232, then in metallized film Shielded layer 240 is formed on the side of the light-emitting surface 210a of 220 separate display screen 210, then the setting of ultrasonic sensor 100 is existed The side of the separate light-emitting surface 210a of shielded layer 240, so that shielded layer 240 is located at metallized film 220 and ultrasonic sensor Between 100;Another way is: the first shape on the side of the light-emitting surface 210a of the close display screen 210 of ultrasonic sensor 100 At shielded layer 240, the ultrasonic sensor 100 for being formed with shielded layer 240 is then formed in the separate aobvious of metallized film 220 The side of the light-emitting surface 210a of display screen 210 so that shielded layer 240 be located at metallized film 220 and ultrasonic sensor 100 it Between, metallized film 220, shielded layer 240 and ultrasonic sensor 100 form integrated ultrasonic wave mould group 100a.
Sheet or layered, transparent metal oxide materials can be selected in shielded layer 240, are fitted in gold using attaching process Between categoryization film 220 and ultrasonic sensor 100.Transparent metal oxide material can be tin indium oxide (Indium tin Oxide, ITO), transparent polymer material, at least one of graphene or carbon nanotube.Shielded layer 240 also can be selected by not Conductive grid is made in transparent conductive metal or alloy.For example, shielded layer 240 can be gold, silver, copper, aluminium, zinc, plating gold and silver or extremely Conductive grid made of the nano material of any one in both few alloy.The line width of conductive grid can be tens microns To tens nanometers.Referring to Fig. 10, in the present embodiment, shielded layer 240 using the conductive grid being made of copper, with reduce at This.In some embodiments, shielded layer 240 can be the circuit board made of copper and PI.Circuit board ground is to shield electromagnetism Signal.
It should be pointed out that shielding electromagnetic signal mentioned here includes in shielding electric signal, magnetic signal or electromagnetic signal At least one.The shielded layer 240 being arranged between display screen 210 and ultrasonic sensor 100 can be effectively prevented display The electric field or magnetic field or electromagnetic field that screen 210 generates interfere ultrasonic sensor 100, to ensure ultrasonic sensor 100 The accuracy and sensitivity of fingerprint recognition, to promote user experience.
Fig. 2 and Figure 11 are please referred to, in some embodiments, manufacturing method may also include that
S50: viscose 250 is formed far from the surface of display screen 210 in foam 230, viscose 250 is around ultrasonic sensor 100。
In some embodiments, display module 200 further includes viscose 250.The setting of viscose 250 is in foam 230 far from aobvious The surface of display screen 210.Viscose 250 is around ultrasonic sensor 100.
In embodiments of the present invention, viscose 250 is arranged around ultrasonic sensor 100, passes without covering ultrasonic wave The surface of the separate metallized film 220 of sensor 100, at this point, the sum of thickness of viscose 250 and foam 230 equal or approximate to etc. In the sum of the thickness of ultrasonic sensor 100 and metallized film 220.In this way, can reduce the thickness of display module 200 compared with It is small, it is thinner convenient for doing display module 200.
Specifically, viscose 250 can be double-sided adhesive.The display module 200 of embodiment of the present invention can pass through double-sided adhesive It is removably disposed in other structures the shell 301 of electronic device 300 (for example, in Figure 12), is convenient for heavy industry, and double-sided adhesive Fixed form is relatively simple, easy to operate.
Fig. 5 and Fig. 7 are please referred to, in some embodiments, the thickness and metallized film 220 and ultrasonic wave of foam 230 The sum of the thickness of sensor 100 is equal.In this way, separate display of the display module 200 by foam 230 and ultrasonic sensor 100 It is more smooth that the side of the light-emitting surface 210a of screen 210 is formed by surface, is applied to electronic device 300 convenient for display module 200. Display module 200 will not be greater than the sum of metallized film 220 and the thickness of ultrasonic sensor 100 due to the thickness of foam 230 And the thickness of display module 200 is increased, cause to be unfavorable for the lightening of display module 200;It will not be due to the thickness of foam 230 Degree is less than the sum of thickness of metallized film 220 and ultrasonic sensor 100 and prevents foam 230 from preferably accommodating and protecting Protect ultrasonic sensor 100 and metallized film 220.
In some embodiments, the size of the accommodating space 232 formed on foam 230 and ultrasonic sensor 100 and The size of metallized film 220 matches, and (size of accommodating space 232 is equal or slightly larger than ultrasonic sensor 100 and metal Change the total size of film 220).In this way, ultrasonic sensor 100 and metallized film 220 will not when being located in accommodating space 232 It moves left and right, the foam 230 positioned at 220 side of ultrasonic sensor 100 and metallized film can be by supersonic sensing Device 100 and metallized film 220 are better secured in accommodating space 232.The shape of accommodating space 232 can be circle, three Angular, rectangle, square or other irregular shapes, here with no restriction.
Figure 12 is please referred to, the display module 200 of embodiment of the present invention can be applied to the electronics of embodiment of the present invention Device 300.Electronic device 300 includes the display module 200 of shell 301 and any of the above-described embodiment.Display module 200 is arranged On shell 301.
Specifically, electronic device 300 include but is not limited to mobile phone, tablet computer, E-book reader, wearable device, The electronic device 300 of the usable ultrasonic fingerprint identification function such as remote controler, entrance guard device, ATM machine, automatic navigator.
For example, display module 200 can be used for unlocking, file encryption, payment verification, body when electronic device 300 is mobile phone The application scenarios such as part verifying.
Figure 13 and Figure 14 is please referred to, the ultrasonic sensor 100 of embodiment of the present invention includes substrate 10, multiple pixels electricity Pole 20, piezoelectric element 30, conductive electrode 40 and processing chip 50.Multiple pixel electrodes 20 are produced on substrate 10 and in arrays point Cloth.Piezoelectric element 30 is arranged on substrate 10 and covers multiple pixel electrodes 20, piezoelectric element 30 for emit ultrasonic wave and Electric signal is generated after receiving the ultrasonic wave of object reflection to be detected, multiple pixel electrodes 20 are for receiving the electric signal.Conductive electricity Pole 40 is arranged on piezoelectric element 30, and piezoelectric element 30 is between pixel electrode 20 and conductive electrode 40.Handle chip 50 with Multiple pixel electrodes 20 connect, and processing chip 50 is for handling the electric signal to form the ultrasonograph of object to be detected.Ultrasound The membrane structure that wave sensor 100 can be integrated.
It should be noted that the production in " multiple pixel electrodes 20 are produced on substrate 10 " mentioned in the present invention includes Pixel electrode 20 is directly produced on base by techniques such as plated film, light blockage coating/development/exposure, etching, removal photoresist, annealing On material 10." layer structure " mentioned in the present invention is whole piece structure, alternatively referred to as " laminated structure ".
Object to be detected can be finger, test template etc..When processing chip 50 controls conductive electrode 40 and pixel electrode 20 When being powered so as to be applied with high frequency voltage (such as: frequency is greater than the voltage of 20KHZ) on conductive electrode 40 and pixel electrode 20, pressure Electric device 30 generates ultrasonic wave under the action of high frequency voltage and launches outward ultrasonic wave;If finger is placed on display module 200 On, then finger can reflect the ultrasonic wave of the transmitting of piezoelectric element 30 and transmit back to piezoelectric element 30, due on finger there are fingerprint, The finger that thus each position receives on piezoelectric element 30 reflect ultrasonic wave it is not exactly the same, thus each position of piezoelectric element 30 It is also not exactly the same to set the electric signal (or piezoelectric signal) generated under ultrasonic wave effect, each position generation on piezoelectric element 30 Electric signal the fingerprint pattern of finger can be collectively formed;Processing chip 50 controls multiple pixel electrodes 20 and receives piezoelectric element 30 Each position on the electric signal that generates, which is transmitted on processing chip 50 by multiple pixel electrodes 20, handles core Piece 50 handles the electric signal to form the fingerprint pattern of finger.
Each pixel electrode 20 of the ultrasonic sensor 100 of embodiment of the present invention can be based on the received electrical signal Determine the electric signal that position and piezoelectric element 30 of the finger pressing on ultrasonic sensor 100 generate on the position, thus Reduce the processing data volume to be treated of chip 50, improve the recognition efficiency of ultrasonic sensor 100.
The material of substrate 10 is glass or Kapton.The substrate 10 made of glass or polyimide film material Cost is relatively low, translucency is preferable, therefore, cost is relatively low for the ultrasonic sensor 100 made of the substrate 10, translucency compared with It is good.The integral color that ultrasonic sensor 100 is able to maintain display screen 210 unanimously keeps display screen 210 more beautiful.
Multiple pixel electrodes 20 are produced on substrate 10 and in array distributions, that is to say, that multiple pixel electrodes 20 include The pixel electrode 20 and the spaced pixel electrode 20 of multiple row of higher order interlace setting.The material of pixel electrode 20 is tin indium oxide (Indium tin oxide, ITO), nano-silver thread (Agnanowire), metal grill (metal mesh), carbon nanotubes and Any one in graphene (Graphene), the pixel electrode 20 made of above-mentioned material have preferable toughness and light transmission Property, so that the ultrasonic sensor 100 made of the pixel electrode 20 has preferable toughness and translucency.Pixel electrode 20 Light transmittance is greater than 90%, so that ultrasonic sensor 100 made of the pixel electrode 20 is had preferable translucency, thus ultrasonic wave Sensor 100 will not influence the display of display screen 210, and ultrasonic sensor 100 is able to maintain the integral color one of display screen 210 It causes and keeps display screen 210 more beautiful.Pixel electrode 20 can be used for receiving electric signal, and each pixel electrode 20 can be according to reception To electric signal determine a position of display module 200 (or ultrasonic sensor 100), pixel electrode 20 is on substrate 10 The acquisition precision of density and ultrasonic sensor 100 is positively correlated, and the density of pixel electrode 20 of the invention can be such that ultrasonic wave passes Sensor 100 detects the fingermark image of object to be detected.
Piezoelectric element 30 is arranged on substrate 10 and covers multiple pixel electrodes 20.Piezoelectric element 30 is made of piezoelectric material Whole laminated structure, the shape of piezoelectric element 30 and the shape of substrate 10 match.The material of piezoelectric element 30 is poly- inclined Vinyl fluoride (Polyvinylidene fluoride, PVDF) makes since Kynoar has preferable toughness and translucency Piezoelectric element 30 has preferable flexibility and translucency, and the flexibility and translucency of ultrasonic sensor 100 are also preferable at this time. Piezoelectric element 30 can generate under high frequency voltage (such as: frequency is greater than the voltage of 20KHZ) effect and to the hair of display screen 210 Light direction emits ultrasonic wave.After piezoelectric element 30 receives the ultrasonic wave of object reflection to be detected, piezoelectric element 30 is in ultrasonic wave It can be generated electric signal (or piezoelectric signal) under effect, object to be detected can be finger, test template etc..
The side of the separate pixel electrode 20 of piezoelectric element 30 is arranged in conductive electrode 40, that is to say, that piezoelectric element 30 Between pixel electrode 20 and conductive electrode 40.Conductive electrode 40 is layer structure (i.e. piece whole made of conductive material Shape structure), the shape of conductive electrode 40 and the shape of piezoelectric element 30 match.The material of conductive electrode 40 be tin indium oxide, Any one in nano-silver thread, metal grill, carbon nanotubes and graphene.The light transmittance of conductive electrode 40 is greater than 90%. Conductive electrode 40 and pixel electrode 20 can apply high frequency voltage to piezoelectric element 30 after leading to high frequency voltage, to make piezoelectric element 30 generate ultrasonic wave.Conductive electrode 40 and pixel electrode 20 can also receive the electric signal of the generation of piezoelectric element 30.
Processing chip 50 is all connected with multiple pixel electrodes 20 and conductive electrode 40.Processing chip 50, which can be used for controlling, leads The energization of electrode 40 and pixel electrode 20.It is connected to high frequency voltage for example, processing chip 50 can control conductive electrode 40 and controls Pixel electrode 20 processed is grounded, so that piezoelectric element 30 is applied high frequency voltage, to make piezoelectric element 30 generate and launch outward Ultrasonic wave.Processing chip 50 piezoelectric signal that also controllable pixels electrode 20 and conductive electrode 40 generate piezoelectric element 30 transmits Onto processing chip 50.Processing chip 50 is also used to handle the electric signal of the generation of piezoelectric element 30 to form the ultrasound of object to be detected Wave image.Processing chip 50 can be set also can be set outside substrate 10 on substrate 10.
When processing chip 50 controls conductive electrode 40 and the energization of pixel electrode 20 so that conductive electrode 40 and pixel electrode 20 On be applied with high frequency voltage (such as: frequency be greater than 20KHZ voltage) when, piezoelectric element 30 generates under the action of high frequency voltage Ultrasonic wave simultaneously launches outward ultrasonic wave;If finger is placed in display module 200, finger can reflect the transmitting of piezoelectric element 30 Ultrasonic wave is simultaneously transmitted back to piezoelectric element 30, and since there are fingerprints on finger, thus each position receives on piezoelectric element 30 Finger reflect ultrasonic wave it is not exactly the same, thus each position of piezoelectric element 30 electric signal for generating under ultrasonic wave effect (or piezoelectric signal) is also not exactly the same, and the finger of finger can be collectively formed in the electric signal that each position generates on piezoelectric element 30 Line pattern;Processing chip 50 controls multiple pixel electrodes 20 and receives the electric signal generated on each positions of piezoelectric elements 30, The electric signal is transmitted on processing chip 50 by multiple pixel electrodes 20, and processing chip 50 handles the electric signal to form finger Fingerprint pattern.
The electronic device 300 and display module 200 of embodiment of the present invention also have the advantages that first, ultrasound The membrane structure that wave sensor 100 is integrated, convenient for manufacture display module 200.
Second, multiple pixel electrodes 20 are produced on substrate 10, convenient for the production higher pixel electrode 20 of precision, to mention Rise the precision that ultrasonic sensor 100 identifies fingerprint.
Second, the light transmittance of pixel electrode 20 and conductive electrode 40 is all larger than 90%, makes to surpass made of the pixel electrode 20 Sonic sensor 100 has preferable translucency, so that ultrasonic sensor 100 will not influence the display of display screen 210, ultrasound The integral color that wave sensor 100 is able to maintain display screen 210 unanimously keeps display screen 210 more beautiful.
Third, conductive electrode 40 control the energization of conductive electrode 40 convenient for processing chip 50, together in whole laminated structure When make that conductive electrode 40 is easy to manufacture and cost of manufacture is lower.
4th, the material of pixel electrode 20 and conductive electrode 40 is tin indium oxide, nano-silver thread, metal grill, nanometer Any one in carbon pipe and graphene, pixel electrode 20 and conductive electrode 40 made of above-mentioned material all have preferably Toughness and translucency, so that the ultrasonic sensor 100 made of the pixel electrode 20 and conductive electrode 40 is with preferable tough Property and translucency;The integral color that ultrasonic sensor 100 is able to maintain display screen 210 unanimously keeps display screen 210 more beautiful It sees.
5th, piezoelectric element 30 is convenient for the manufacture of piezoelectric element 30 in whole layer structure and manufacturing cost is lower.
Figure 15 and Figure 16 is please referred to, in some embodiments, the piezoelectric element 30 of above embodiment includes multiple pressures Electric column 32 and the insulating layer 34 being filled between multiple piezo columns 32.Multiple piezo columns 32 are arranged on substrate 10 and in arrays point Cloth, multiple piezo columns 32 are corresponding with multiple pixel electrodes 20, and each piezo column 32 covers corresponding pixel electrode 20.Due to piezoelectricity 32 array of multiple piezo columns setting on element 30, therefore the electrical property that each piezo column 32 is generated by adjacent piezo column 32 is dry It disturbs and vibration interference is smaller, thus compared to the whole laminated structure being made out of a piezoelectric material, the piezoelectricity member of present embodiment The electric signal that part 30 generates under ultrasonic wave effect is more acurrate, and then handles chip 50 and handle the ultrasonic wave shadow that the electric signal is formed As more acurrate.The material of piezo column 32 is Kynoar.The material of insulating layer 34 can be epoxy resin.Due to epoxy resin There is excellent adhesive strength to the surface of metal and nonmetallic materials, dielectric properties are good, and deformation retract rate is small, product size Stability is good, and hardness is high, and flexibility is preferable, the features such as to alkali and most of solvent-stable.Therefore, insulating layer 34 uses asphalt mixtures modified by epoxy resin Rouge convenient for encapsulation piezo column 32 and makes the structure of piezoelectric element 30 more stable as filled media.
Figure 17 is please referred to, in some embodiments, multiple pixel circuits 12 in array distribution are formed on substrate 10 And a plurality of conducting wire 14 corresponding with multiple pixel circuits 12, multiple pixel circuits 12 are corresponding with multiple pixel electrodes 20, each picture Plain circuit 12 is connected with corresponding pixel electrode 20, and every conducting wire 14 is for connecting corresponding pixel circuit 12 and processing chip 50.Pixel circuit 12 is arranged between substrate 10 and pixel electrode 20, and in substrate 10 and pixel circuit can be set in conducting wire 14 On 12 the same side.In this way, convenient for the production of pixel circuit 12 and conducting wire 14, and connect convenient for pixel electrode 20 and processing chip 50 It connects.In other embodiments, conducting wire 14 also can be set on the opposite side with pixel circuit 12 of substrate 10.
Figure 18 is please referred to, in some embodiments, the ultrasonic sensor 100 of above embodiment further includes connection electricity Pole 60 and lead 70.Connection electrode 60 is arranged in the side far from multiple pixel electrodes 20 of substrate 10 and connects with processing chip 50 It connects.Pixel electrode 20 is connected to connection electrode 60 by lead 70, and conductive electrode 40 is connected to connection electrode 60 by lead 70. Lead 70 includes a plurality of pixel electrode lead 72 connecting with pixel electrode 20, every pixel electrode lead 72 respectively with a picture Plain electrode 20 connects.Lead 70 further includes the conductive electrode lead 74 being correspondingly connected with conductive electrode 40, when conductive electrode 40 is When the layer structure of entirety, conductive electrode lead 74 is one;When conductive electrode 40 is a plurality of spaced strip structure When conductive electrode 40, the quantity of conductive electrode lead 74 and the quantity of conductive electrode 40 of strip structure are consistent.Present embodiment By setting lead 70 and connection electrode 60, it is electrically connected respectively with processing chip 50 convenient for pixel electrode 20 with conductive electrode 40.
Please refer to Figure 19, in some embodiments, the conductive electrode 40 of above embodiment include layer structure 42 and The extended structure 44 each extended over from the both ends of layer structure 42, layer structure 42 and extended structure 44 wrap piezoelectricity member jointly Part 30.Extended structure 44 can integrally extend outward to form for the edge of layer structure 42, and extended structure 44 can be stratiform knot The a part at the edge of structure 42 extends outward to form.Processing chip 50 is electrically connected by extended structure 44 with conductive electrode 40.Such as This, is electrically connected convenient for processing chip 50 with conductive electrode 40 by setting extended structure 44.
Figure 20 and Figure 21 is please referred to, in some embodiments, the conductive electrode 40 of above embodiment includes multiple Every the conductive electrode 40 of the strip structure of setting, the conductive electrode 40 of each strip structure and the pixel electrode 20 in same row are right It answers.In other embodiments, the conductive electrode 40 of each strip structure is corresponding with the pixel electrode 20 in same a line.Pixel electricity Pole 20 is corresponding with the conductive electrode 40 of strip structure to apply height convenient for pixel electrode 20 and conductive electrode 40 on piezoelectric element 30 Frequency voltage (such as: frequency is greater than the voltage of 20KHZ), while being used for convenient for pixel electrode 20 and conductive electrode 40 by piezoelectric element 30 electric signals generated under piezoelectric effect are transmitted in other elements.Relative to the conductive electrode 40 of layer structure, strip knot The conductive electrode 40 of structure is more convenient for handling signal input and output that chip 50 controls conductive electrode 40, to improve ultrasonic wave The precision of the identification fingerprint of sensor 100.
Figure 22 is please referred to, in some embodiments, the ultrasonic sensor 100 of above embodiment further includes circuit board 80, multiple pixel electrodes 20, conductive electrode 40 and processing chip 50 are electrically connected with circuit board 80.Handling chip 50 can be with It is arranged on circuit board 80.Specifically, circuit board 80 can be flexible circuit board, and circuit board 80 can be set in the remote of substrate 10 On side from pixel electrode 20.Circuit board 80 is provided with connector in order to which ultrasonic sensor 100 passes through on circuit board 80 Connector be electrically connected with other electronic components.
In the description of this specification, reference term " certain embodiments ", " embodiment ", " some embodiment party The description of formula ", " exemplary embodiment ", " example ", " specific example " or " some examples " etc. means in conjunction with the embodiment party Formula or example particular features, structures, materials, or characteristics described are contained at least one embodiment or example of the invention In.In the present specification, schematic expression of the above terms are not necessarily referring to identical embodiment or example.Moreover, Particular features, structures, materials, or characteristics described can be in any one or more embodiments or example with suitable Mode combine.
In addition, term " first ", " second " are used for descriptive purposes only and cannot be understood as indicating or suggesting relative importance Or implicitly indicate the quantity of indicated technical characteristic.Define " first " as a result, the feature of " second " can be expressed or Implicitly include at least one described feature.In the description of the present invention, the meaning of " plurality " is at least two, such as two, Three etc., unless otherwise specifically defined.
Although embodiments of the present invention have been shown and described above, it is to be understood that above embodiment is Illustratively, it is not considered as limiting the invention, those skilled in the art within the scope of the invention can be right Above embodiment is changed, modifies, replacement and variant, and the scope of the present invention is defined by the claims and their equivalents.

Claims (15)

1. a kind of manufacturing method of display module, which is characterized in that the manufacturing method includes:
Foam is formed far from the side of the display screen light-emitting surface in display screen;
Accommodating space is formed on the foam;And
Metallized film and ultrasonic sensor are arranged in the accommodating space, the metallized film is located at the display Between screen and the ultrasonic sensor.
2. the manufacturing method according to claim 1, which is characterized in that described to set metallized film and ultrasonic sensor The step set in the accommodating space includes:
The metallized film is arranged in the accommodating space;And
Side of the metallized film far from the light-emitting surface is arranged in the ultrasonic sensor.
3. the manufacturing method according to claim 1, which is characterized in that described to set metallized film and ultrasonic sensor The step set in the accommodating space includes:
The ultrasonic sensor is arranged on the metallized film to form ultrasonic wave mould group;And
The ultrasonic wave mould group is arranged in the accommodating space, the metallized film is located at the display screen and surpasses with described Between sonic sensor.
4. the manufacturing method according to claim 1, which is characterized in that the manufacturing method further include:
Shielded layer is formed between the metallized film and the ultrasonic sensor, the shielding layer grounding is to shield electromagnetism Signal.
5. the manufacturing method according to claim 1, which is characterized in that the manufacturing method further include:
Viscose is formed far from the surface of the display screen in the foam, the viscose is around the ultrasonic sensor.
6. a kind of display module characterized by comprising
Display screen, the display screen include light-emitting surface;
Side of the display screen far from the light-emitting surface is arranged in foam, the foam, and the foam offers accommodating space; And
Metallized film and ultrasonic sensor, the metallized film and ultrasonic sensor setting are empty in the receiving In, the metallized film is between the display screen and the ultrasonic sensor.
7. display module according to claim 6, which is characterized in that the ultrasonic sensor and the metallized film The ultrasonic wave mould group being integrated.
8. display module according to claim 6, which is characterized in that the display screen includes organic light-emitting diode display Screen.
9. display module according to claim 6, which is characterized in that the metallized film includes metallized polyester film Or metallized polyimide film.
10. display module according to claim 6, which is characterized in that the display module further includes shielded layer, the screen It covers layer to be arranged between the metallized film and the ultrasonic sensor, the shielding layer grounding is to shield electromagnetic signal.
11. display module according to claim 6, which is characterized in that the display module further includes viscose, the viscose Surface of the foam far from the display screen is set, and the viscose is around the ultrasonic sensor.
12. display module according to claim 6, which is characterized in that the thickness of the foam and the metallized film It is equal with the sum of the thickness of the ultrasonic sensor.
13. display module according to claim 6, which is characterized in that the ultrasonic sensor includes:
Substrate;
Multiple pixel electrodes, multiple pixel electrode production are on the substrate and in array distribution;
Piezoelectric element, the piezoelectric element are arranged on the substrate and cover multiple pixel electrodes, the piezoelectric element For emitting ultrasonic wave and generating electric signal after the ultrasonic wave for receiving object reflection to be detected, multiple pixel electrodes are used for Receive the electric signal;
Conductive electrode, the conductive electrode are arranged on the piezoelectric element, the piezoelectric element be located at the pixel electrode and Between the conductive electrode;And
The processing chip connecting with multiple pixel electrodes, the processing chip form described for handling the electric signal The ultrasonograph of object to be detected.
14. display module according to claim 6, which is characterized in that the film knot that the ultrasonic sensor is integrated Structure.
15. a kind of electronic device characterized by comprising
Shell;And
Display module described in claim 6-14 any one, the display module setting is on the housing.
CN201710818363.XA 2017-09-12 2017-09-12 Display module and its manufacturing method and electronic device Withdrawn CN109492458A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201710818363.XA CN109492458A (en) 2017-09-12 2017-09-12 Display module and its manufacturing method and electronic device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201710818363.XA CN109492458A (en) 2017-09-12 2017-09-12 Display module and its manufacturing method and electronic device

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Publication Number Publication Date
CN109492458A true CN109492458A (en) 2019-03-19

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Family Applications (1)

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Country Link
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113270326A (en) * 2021-07-19 2021-08-17 江苏华昶熠电子科技有限公司 Fingerprint identification packaging component and preparation method thereof
WO2021175138A1 (en) * 2020-03-06 2021-09-10 欧菲光集团股份有限公司 Display module and electronic device
WO2022067479A1 (en) * 2020-09-29 2022-04-07 京东方科技集团股份有限公司 Fingerprint recognition method and apparatus, device, display apparatus, and storage medium

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021175138A1 (en) * 2020-03-06 2021-09-10 欧菲光集团股份有限公司 Display module and electronic device
WO2022067479A1 (en) * 2020-09-29 2022-04-07 京东方科技集团股份有限公司 Fingerprint recognition method and apparatus, device, display apparatus, and storage medium
CN113270326A (en) * 2021-07-19 2021-08-17 江苏华昶熠电子科技有限公司 Fingerprint identification packaging component and preparation method thereof
CN113270326B (en) * 2021-07-19 2021-09-14 江苏华昶熠电子科技有限公司 Fingerprint identification packaging component and preparation method thereof

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Application publication date: 20190319