WO2020082380A1 - Appareil de reconnaissance d'empreinte digitale et dispositif électronique - Google Patents

Appareil de reconnaissance d'empreinte digitale et dispositif électronique Download PDF

Info

Publication number
WO2020082380A1
WO2020082380A1 PCT/CN2018/112231 CN2018112231W WO2020082380A1 WO 2020082380 A1 WO2020082380 A1 WO 2020082380A1 CN 2018112231 W CN2018112231 W CN 2018112231W WO 2020082380 A1 WO2020082380 A1 WO 2020082380A1
Authority
WO
WIPO (PCT)
Prior art keywords
optical
fingerprint
display screen
area
fingerprint sensor
Prior art date
Application number
PCT/CN2018/112231
Other languages
English (en)
Chinese (zh)
Inventor
杜灿鸿
Original Assignee
深圳市汇顶科技股份有限公司
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 深圳市汇顶科技股份有限公司 filed Critical 深圳市汇顶科技股份有限公司
Priority to CN201880002083.4A priority Critical patent/CN109496313B/zh
Priority to PCT/CN2018/112231 priority patent/WO2020082380A1/fr
Publication of WO2020082380A1 publication Critical patent/WO2020082380A1/fr

Links

Images

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
    • G06V40/1324Sensors therefor by using geometrical optics, e.g. using prisms

Definitions

  • Embodiments of the present application relate to the field of fingerprint identification technology, and more specifically, to a fingerprint identification device and electronic equipment.
  • Under-screen fingerprint recognition technology is to collect the reflected light formed by the light emitted from the light source by the optical fingerprint sensor and reflected by the finger.
  • the reflected light carries the fingerprint information of the finger, thereby realizing the under-screen fingerprint recognition.
  • the fingerprint recognition device usually includes an optical path modulator. The reflected light needs to be modulated by the optical path modulator to reach the optical fingerprint sensor.
  • the embodiments of the present application provide a fingerprint identification device and an electronic device, which can collect more fingerprint information without increasing the thickness of the fingerprint identification device.
  • a fingerprint identification device which is applied to an electronic device with a display screen.
  • the fingerprint identification device includes:
  • An optical fingerprint sensor is arranged below the display screen so that its fingerprint collection area is at least partially within the display area of the display screen. To detect the reflected light signal it receives from above the fingerprint collection area;
  • At least two optical lenses for setting between the display screen and the optical fingerprint sensor the at least two optical lenses respectively corresponding to the at least two effective photosensitive regions, wherein each optical lens is used for The light signal is directed to its corresponding effective photosensitive area.
  • the optical fingerprint sensor includes an optical fingerprint sensor chip, and the at least two effective photosensitive regions are located on the optical fingerprint sensor chip.
  • the optical fingerprint sensor includes a plurality of optical fingerprint sensor chips, and the at least two effective photosensitive regions are respectively located on different optical fingerprint sensor chips.
  • the optical fingerprint sensor includes a plurality of optical fingerprint sensor chips, and part of the at least two effective photosensitive regions are located on different optical fingerprint sensor chips.
  • each optical lens is used to guide the optical signal from one sub-region in the fingerprint collection region to its corresponding effective photosensitive region, wherein the part between the sub-regions corresponding to different optical lenses is overlapping.
  • each optical lens is used to guide the optical signal from a sub-region in the fingerprint collection region to its corresponding effective photosensitive region, wherein the sub-regions corresponding to different optical lenses are mutually Does not overlap.
  • the at least two optical lenses are arranged linearly.
  • the at least two optical lenses include three optical lenses, and the three optical lenses are arranged in a triangle.
  • the fingerprint identification device further includes a filter unit, the filter unit is disposed between the display screen and the optical fingerprint sensor, and the filter unit is used to make a light signal of a specific wavelength Transmission to the optical fingerprint sensor.
  • an electronic device including: a display screen and the fingerprint recognition device in the first aspect or any possible implementation manner of the first aspect.
  • the display screen is a liquid crystal display LCD.
  • the display screen is an organic light-emitting diode display OLED, and the light-emitting layer of the display screen includes a plurality of organic light-emitting diode light sources, wherein the fingerprint recognition device uses at least part of the organic light-emitting diode light sources Excitation light source for fingerprint identification.
  • the fingerprint recognition device includes at least two optical lenses corresponding to at least two effective photosensitive regions of the optical fingerprint sensor, wherein each optical lens is used to guide the optical signal reflected by the finger to The corresponding effective photosensitive area, because two or more optical lenses can guide the light signal reflected by more fingerprint images on the finger to the corresponding effective photosensitive area, the fingerprint recognition device can collect more fingerprints Information, thereby improving the accuracy of fingerprint recognition, and does not increase the thickness of the fingerprint recognition device.
  • FIG. 1 is a schematic plan view of an electronic device to which this application can be applied.
  • Fig. 2 is a schematic partial cross-sectional view of the electronic device shown in Fig. 1 along A-A '.
  • FIG. 3 is a schematic plan view of another electronic device to which this application can be applied.
  • FIG. 4 is a schematic cross-sectional view of another electronic device shown in FIG. 1 along A-A '.
  • FIG. 5 is a schematic diagram of a fingerprint recognition device including only one optical lens.
  • FIG. 6 is a schematic block diagram of a fingerprint identification device according to an embodiment of the present application.
  • FIG. 7 is a schematic diagram of a possible fingerprint identification device according to an embodiment of the present application.
  • FIG. 8 is a schematic diagram of another possible fingerprint identification device according to an embodiment of the present application.
  • FIG. 9 is a schematic diagram of the positional relationship between sub-regions corresponding to different optical lenses according to an embodiment of the present application.
  • FIG. 10 is a schematic diagram of the positional relationship between sub-regions corresponding to different optical lenses according to an embodiment of the present application.
  • FIG. 11 is a schematic diagram of a positional relationship between sub-regions corresponding to different optical lenses according to an embodiment of the present application.
  • FIG. 12 is a schematic diagram of an effective photosensitive region corresponding to a plurality of optical lenses arranged linearly according to an embodiment of the present application.
  • FIG. 13 is an effective photosensitive area corresponding to three optical lenses arranged in a triangle according to an embodiment of the present application.
  • Under-display Under-display or Under-screen fingerprint recognition technology
  • Under-screen fingerprint recognition technology refers to the installation of a fingerprint recognition device (such as an optical fingerprint recognition device) under the display screen, so as to realize the fingerprint recognition operation in the display area of the display screen, without the need for an area other than the display area on the front of the electronic device Set the fingerprint collection area.
  • the fingerprint recognition technology under the optical screen uses the light returned from the top surface of the display component of the device to perform fingerprint sensing and other sensing operations.
  • the returned light carries information of an object (such as a finger) that is in contact with the top surface.
  • a specific optical sensor module located below the display screen is realized.
  • the design of the optical sensor module may be to achieve the desired optical imaging by appropriately configuring the optical elements for collecting and detecting the returned light.
  • FIG. 1 and 2 show a schematic diagram of an electronic device 100 to which the fingerprint identification device according to an embodiment of the present application can be applied, wherein FIG. 1 is a schematic front view of the electronic device 100, and FIG. 2 is along the electronic device 100 shown in FIG. AA 'partial cross-sectional structure diagram.
  • the electronic device 100 includes a display screen 120 and an optical fingerprint recognition device (hereinafter simply referred to as a fingerprint recognition device) 130, wherein the optical fingerprint recognition device 130 has one or more sensors An array, the sensing array is at least disposed in a partial area below the display screen 120, so that the fingerprint collection area (or sensing area) 103 of the optical fingerprint recognition device 130 is at least partially located in the display area 102 of the display screen 120 .
  • a fingerprint recognition device 130 hereinafter simply referred to as a fingerprint recognition device 130
  • the optical fingerprint recognition device 130 has one or more sensors An array, the sensing array is at least disposed in a partial area below the display screen 120, so that the fingerprint collection area (or sensing area) 103 of the optical fingerprint recognition device 130 is at least partially located in the display area 102 of the display screen 120 .
  • the area of the fingerprint collection area 103 may be different from the area of the sensing array of the optical fingerprint recognition device 130, for example, through optical path design such as lens imaging, reflective folding optical path design, or other optical path design such as light gathering or reflection ,
  • the area of the fingerprint collection area 103 of the optical fingerprint identification device 130 may be larger than the area of the sensing array of the optical fingerprint identification device 130.
  • the fingerprint collection area 103 of the optical fingerprint identification device 130 may also be designed to be consistent with the area of the sensing array of the optical fingerprint identification device 130.
  • the fingerprint collection area 103 is located in the display area 102 of the display screen 120, therefore, when the user needs to unlock the electronic device or other fingerprint verification, he only needs to press his finger In the fingerprint collection area 103 located in the display screen 120, fingerprint input can be realized. Since fingerprint detection can be implemented within the screen, the electronic device 100 adopting the above structure does not require a special reserved space on the front to set fingerprint keys (such as the Home key), so that a full-screen solution can be adopted, that is, the display area of the display screen 120 102 can be basically extended to the front of the entire electronic device 100.
  • the display screen 120 may be a self-luminous display screen that uses a self-luminous display unit as a display pixel, such as an organic light-emitting diode (Organic Light-Emitting Diode, OLED) display screen or a micro light-emitting diode (Micro -LED) display screen.
  • a self-luminous display unit such as an organic light-emitting diode (Organic Light-Emitting Diode, OLED) display screen or a micro light-emitting diode (Micro -LED) display screen.
  • OLED Organic Light-Emitting Diode
  • Micro -LED micro light-emitting diode
  • the optical fingerprint recognition device 130 may also use an internal light source or an external light source to provide an optical signal for fingerprint detection.
  • the optical fingerprint recognition device 130 may be applicable to non-self-luminous display screens, such as liquid crystal display screens or other passive light-emitting display screens.
  • the optical fingerprint system of the electronic device 100 may further include an excitation light source for optical fingerprint detection.
  • the excitation light source may specifically be an infrared light source or a light source of a non-visible light of a specific wavelength, which may be provided under the backlight module of the liquid crystal display or the edge area under the protective cover of the electronic device 100, and the The optical fingerprint recognition device 130 may be disposed under the edge area of the liquid crystal panel or the protective cover and guided by the optical path so that the fingerprint detection light can reach the optical fingerprint recognition device 130; or, the optical fingerprint recognition device 130 may also be disposed at the The backlight module is below, and the backlight module allows the fingerprint detection light to pass through the liquid crystal panel and the backlight module and reach the optics through openings or other optical design of the film layers such as the diffusion sheet, the brightness enhancement sheet, the reflection sheet, etc. Fingerprint recognition device 130.
  • the sensing array of the optical fingerprint recognition device 130 is specifically a photodetector array, which includes a plurality of photodetectors distributed in an array, and the photodetectors can be used as the optical sensing unit as described above .
  • touch a finger touches, presses, or approaches (for ease of description, this application is collectively referred to as touch) on the fingerprint recognition area 103
  • the light emitted by the display unit of the fingerprint recognition area 103 is reflected on the fingerprint on the finger surface and forms reflected light
  • the reflected light of the ridges and valleys of the finger fingerprint is different.
  • the reflected light is received from the display screen 120 and received by the photodetector array and converted into a corresponding electrical signal, that is, a fingerprint detection signal.
  • fingerprint image data can be obtained, and fingerprint matching verification can be further performed, thereby implementing an optical fingerprint recognition function in the electronic device 100.
  • the electronic device 100 further includes a transparent protective cover 110, and the cover 110 may be specifically a transparent cover, such as a glass cover or a sapphire cover, which is located on the display screen 120 above and covering the front of the electronic device 100. Therefore, in the embodiments of the present application, the so-called finger touch, pressing or approaching on the display screen 120 actually refers to the finger touching, pressing or approaching the cover plate 110 above the display screen 120 or covering the cover plate 110 Surface of the protective layer.
  • the electronic device 100 may further include a touch sensor, and the touch sensor may be specifically a touch panel, which may be provided on the surface of the display screen 120, or may be partially or wholly integrated into the display screen 120, namely The display screen 120 is specifically a touch display screen.
  • the touch sensor may be specifically a touch panel, which may be provided on the surface of the display screen 120, or may be partially or wholly integrated into the display screen 120, namely The display screen 120 is specifically a touch display screen.
  • the optical fingerprint recognition device 130 includes an optical detection unit 134 and an optical component 132.
  • the optical detection unit 134 includes the sensor array and the sensor array.
  • the reading circuit and other auxiliary circuits that are sexually connected can be fabricated on a chip through a semiconductor process; that is, the optical detection unit 134 can be fabricated on an optical imaging chip or an image sensor chip.
  • the optical component 132 may be disposed above the sensing array of the optical detection unit 134, which may specifically include an optical filter or a filter, an optical path guiding structure, and other optical elements.
  • the filter may be It is used to filter out the ambient light penetrating the finger, and the light path guiding structure is mainly used to guide the light path such as collimating, modulating or converging the downward propagating light to guide the reflected light reflected from the finger surface to
  • the sensing array performs optical detection.
  • the optical component 132 may be packaged with the optical detection unit 134 in the same optical fingerprint chip, or the optical component 132 may be disposed outside the chip where the optical detection unit 134 is located, such as The optical component 132 is attached to the chip, or a part of the optical component 132 is integrated into the chip.
  • the optical path guiding structure of the optical component 132 has various implementation solutions, for example, it may be specifically an optical path modulator or an optical path collimator made of a semiconductor silicon chip or other substrate, which has multiple optical path modulation units or A collimating unit, the optical path modulation unit or the collimating unit may be specifically a micro-hole array.
  • the light guide layer may also be an optical lens (Lens) layer, which has one or more lens units, such as a lens group composed of one or more aspheric lenses.
  • the sensing array can detect the fingerprint image of the finger .
  • a circuit board 140 such as a flexible printed circuit (FPC) may also be provided under the optical fingerprint recognition device 130, and the optical fingerprint recognition device 130 may be soldered to the circuit board 140 through pads, for example.
  • the circuit board 140 realizes electrical interconnection and signal transmission with other peripheral circuits or other elements of the electronic device 100.
  • the optical fingerprint recognition device 130 may receive the control signal of the processing unit of the electronic device 100 through the circuit board 140, and may also output the fingerprint detection signal to the electronic device through the circuit board 140 100 processing unit or control unit.
  • the optical fingerprint recognition device 130 shown in FIGS. 1 and 2 is a single sensor chip.
  • the fingerprint recognition device of the embodiment of the present application can be applied to the scenario of a single sensor chip as shown in FIGS. 1 and 2, that is, it can also be It is used in the scenario of multi-sensor stitching as shown in Figures 3 and 4.
  • FIG. 3 and 4 are schematic diagrams of another electronic device 200 to which the fingerprint identification device according to an embodiment of the present application can be applied.
  • FIG. 3 is a schematic front view of the electronic device 200
  • FIG. 4 is the electronic device 200 shown in FIG. A schematic view of a partial cross-sectional structure along AA '.
  • the electronic device 200 may include a display screen 220 and an optical fingerprint recognition device 240, wherein the display screen 220 has a display area 202, and the optical fingerprint recognition device 240 is disposed on the display screen 220 Below.
  • the optical fingerprint recognition device 240 may specifically include one or more optical fingerprint sensors 242 (hereinafter also referred to as sensor chips) with an optical sensing array; the multiple optical fingerprint sensors 242 may be arranged side by side Below the display screen 220.
  • Each optical sensing array includes a plurality of optical sensing units, and the area where the optical sensing array is located or its optical sensing area corresponds to the sensing area 203 of the optical fingerprint sensor 242 where it is located.
  • the sensing areas of together constitute the fingerprint collection area 230 of the optical fingerprint recognition device 240.
  • the fingerprint collection area 230 of the optical fingerprint recognition device 240 may include a plurality of sub-areas, and each sub-area corresponds to a sensing area of one of the optical fingerprint sensor or the optical sensing array. As shown in FIG. 3, the fingerprint collection area 230 is located in the display area 202 of the display screen 220. Since multiple optical fingerprint sensors are arranged side by side, the fingerprint collection area 230 of the fingerprint recognition device 240 can be expanded The main area to the lower half of the display area 202, which is extended to the area where the finger is normally pressed, to realize the blind-press fingerprint input operation. In other alternative embodiments, when the number of the optical fingerprint sensors is sufficient, the fingerprint collection area 230 may also be extended to half a display area or even the entire display area, thereby realizing half-screen or full-screen fingerprint detection.
  • the multiple optical fingerprint sensors 242 of the optical fingerprint recognition device 240 may be individually packaged sensor chips, or may be fabricated as multiple chips (Die) and then packaged in the same chip package It can also be produced in different areas of the same chip through semiconductor processes.
  • an optical path modulator 244 may also be provided above the optical fingerprint sensor 242. Taking the optical path modulator 244 as an example, it can be attached to the sensing array of the optical fingerprint sensor 242 as an independent optical component, or it can be integrated within the chip of the optical fingerprint sensor 242 through a semiconductor process, thereby achieving Ultra-thin fingerprint recognition device 240.
  • the optical path modulator 244 may be an optical collimator using a through-hole array with a high aspect ratio, which is mainly used for collimating, modulating, and imaging fingerprint detection light propagating downward, so as to realize The reflected light reflected from the surface is guided to the sensing array for optical detection to obtain fingerprint image information.
  • each optical path modulator 244 corresponds to an optical fingerprint sensor, respectively, and are respectively attached It is disposed above its corresponding optical fingerprint sensor 242.
  • the plurality of optical fingerprint sensors 242 may also share a whole optical path modulator 244, that is, the optical path modulator 244 has a sufficiently large area to cover the sensing array of the plurality of optical fingerprint sensors 242.
  • optical path modulator 244 and the optical fingerprint sensor 242 or between the display screen 220 and the optical path modulator 244, other optical elements, such as a filter or Other optical diaphragms are mainly used to isolate the influence of external interference light on optical fingerprint detection.
  • the filter can be used to filter out ambient light penetrating the finger and entering the image recognition sensor 230 through the display screen 220, similar to the optical path modulator 244, the filter can be Each optical fingerprint sensor 242 is separately configured to filter out interference light, or a large-area filter may be used to cover the multiple optical fingerprint sensors 242 at the same time.
  • the optical path modulator 244 may also use an optical lens (Lens) instead of the above-mentioned optical collimator.
  • An optical lens Lis
  • a small hole may be formed above the optical lens through a light-shielding material to cooperate with the optical lens to converge fingerprint detection light to the lower side Optical fingerprint sensor 242 to achieve fingerprint imaging.
  • each optical fingerprint sensor 242 may be configured with an optical lens to perform fingerprint imaging, or the multiple optical fingerprint sensors 242 may also use the same optical lens to achieve light convergence and fingerprint imaging.
  • each optical fingerprint sensor 242 may even have two sensing arrays (Dual Array) or multiple sensing arrays (Multi-Array), and two or more optical lenses are simultaneously configured to cooperate with the two One or more sensing arrays perform optical imaging, thereby reducing the imaging distance and enhancing the imaging effect.
  • a circuit board 250 such as a flexible printed circuit (FPC) may also be provided under the optical fingerprint recognition device 240, and a plurality of optical fingerprint sensors 242 of the optical fingerprint recognition device 240 may pass The pad is soldered to the circuit board 250, and the circuit board 250 is used to realize electrical interconnection and signal transmission with other peripheral circuits or other elements of the electronic device 200.
  • FPC flexible printed circuit
  • the fingerprint identification device includes only one optical lens.
  • the optical lens can guide the optical signal in the field of view (FOV) range to the effective photosensitive area of the optical fingerprint sensor.
  • the area of the fingerprint collection area of the display screen is S
  • the optical lens is disposed between the display screen and the optical fingerprint sensor
  • the object distance of the optical lens from the display screen is P
  • the image distance of the optical lens from the optical fingerprint sensor is Q
  • adjusting the object distance P can adjust the field of view of the optical lens
  • adjusting the image distance Q can adjust the sharpness of the image formed on the effective photosensitive area of the optical fingerprint sensor.
  • a filter unit is also arranged above the optical fingerprint sensor to filter out the stray light of interference to select the required light wavelength.
  • the light emitted by the display screen is incident on the finger above the fingerprint collection area of the display screen, and the light reflected by the finger is collected by the optical lens and transmitted to the effective photosensitive area of the optical fingerprint sensor through the filter unit, or called the effective area (Active Array) , AA), photosensitive area, etc., to complete the detection of fingerprint images.
  • an embodiment of the present application proposes an off-screen fingerprint recognition technology, which can enable the fingerprint recognition device to collect more fingerprint information without increasing the thickness of the fingerprint recognition device.
  • the fingerprint recognition device of the embodiment of the present application will be described in detail below with reference to FIGS. 6 to 13.
  • FIG. 6 shows a schematic diagram of a fingerprint identification device 600 according to an embodiment of the present application.
  • the fingerprint recognition device 600 can be applied to an electronic device having a display screen.
  • the fingerprint recognition device 600 includes an optical fingerprint sensor 610 and at least two optical lenses 620. among them:
  • An optical fingerprint sensor 610 is arranged below the display screen so that its fingerprint collection area is at least partially located within the display area of the display screen, and the optical fingerprint sensor 610 includes at least two effective photosensitive areas, each of which is effectively sensitive Each area is correspondingly provided with an optical sensor array for detecting the reflected light signal it receives from above the fingerprint collection area.
  • At least two optical lenses 620 configured to be disposed between the display screen and the optical fingerprint sensor 610, the at least two optical lenses respectively corresponding to the at least two effective photosensitive regions, wherein each optical lens is used In order to guide the light signal to its corresponding effective photosensitive area.
  • the fingerprint recognition device includes at least two optical lenses, the at least two optical lenses respectively correspond to at least two effective photosensitive regions of the optical fingerprint sensor, wherein each optical lens is used to guide the optical signal reflected by the finger to its corresponding effective Photosensitive area, so that two or more optical lenses can guide the light signal reflected by the fingerprint image on the finger to the corresponding effective photosensitive area, so the fingerprint recognition device can increase the thickness of the fingerprint recognition device without increasing the thickness Collect more fingerprint information, thereby improving the accuracy of fingerprint recognition, or reduce the thickness of the fingerprint recognition device under the condition of collecting the same fingerprint information.
  • FIG. 7 is a schematic diagram of a possible fingerprint recognition device according to an embodiment of the present application.
  • two optical lenses optical lens 1 and optical lens 2 are used as examples, but fingerprint recognition in the embodiment of the present application
  • the device may also include more optical lenses.
  • the optical fingerprint sensor includes two effective photosensitive regions, and the optical lens 1 and the optical lens 2 are disposed between the display screen and the optical fingerprint sensor, wherein the object distance of the optical lens 1 and the optical lens 2 from the display screen is approximately P, and the optical lens 1 and The image distance of the optical lens 2 from the optical fingerprint sensor is approximately Q.
  • the light emitted by the display screen is incident on the finger above the fingerprint collection area of the display screen, and the light reflected by the fingerprint patterns at different positions of the finger is collected by the optical lens 1 and the optical lens 2 respectively, and guided by the optical lens 1 and the optical lens 2 respectively To each corresponding effective photosensitive area, to complete the detection of fingerprint images.
  • the thickness of the fingerprint recognition device in FIG. 7 is the same as the thickness of the fingerprint recognition device in FIG. 5, but the fingerprint collection area of the fingerprint recognition device in FIG. 7 is significantly larger than that shown in FIG. 5 including only one optical lens The fingerprint collection area of the fingerprint recognition device.
  • the area of the fingerprint collection area in FIG. 7 can be twice the area of the fingerprint collection area shown in FIG. Obtain more fingerprint information when the thickness of the fingerprint recognition device is increased.
  • FIG. 8 Another example is a schematic diagram of another possible fingerprint identification device of the embodiment of the present application shown in FIG. 8.
  • two optical lenses optical lens 1 and optical lens 2 are still taken as an example, in which optical lens 1 and optical
  • the object distance of lens 2 from the display screen is P ', where P' is less than P, and the image distance of optical lens 1 and optical lens 2 from the optical fingerprint sensor is Q.
  • the optical fingerprint sensor includes two effective photosensitive areas, the light emitted by the display screen is incident on the finger above the fingerprint collection area of the display screen, and the light reflected by the fingerprint patterns at different positions of the finger is collected by the optical lens 1 and the optical lens 2 respectively, and The optical lens 1 and the optical lens 2 are respectively guided to their corresponding effective photosensitive areas, thereby completing the detection of the fingerprint image.
  • the area of the fingerprint collection area that can be detected by the effective photosensitive area corresponding to each optical lens becomes smaller
  • the total area of the fingerprint collection area that can be detected by the effective photosensitive area corresponding to the optical lens 1 and the optical lens 2 can be the same as the area of the fingerprint collection area shown in FIG. 5, and in some cases, it can even be larger than that shown in FIG. 5.
  • the area of the fingerprint collection area shown. Compared with the fingerprint identification device shown in FIG. 5, when the area of the fingerprint collection area has not changed, the thickness of the fingerprint identification device has been significantly reduced, which can further reduce the thickness of the electronic device to which the fingerprint identification device is applied.
  • the optical fingerprint sensor may include one or more optical fingerprint sensor chips.
  • the optical fingerprint sensor includes an optical fingerprint sensor chip, and the at least two effective photosensitive regions are located on the optical fingerprint sensor chip.
  • the optical fingerprint sensor includes a plurality of optical fingerprint sensor chips, and the at least two effective photosensitive regions are respectively located on different optical fingerprint sensor chips.
  • the optical fingerprint sensor includes a plurality of optical fingerprint sensor chips, and part of the effective photosensitive areas of the at least two effective photosensitive areas are located on different optical fingerprint sensor chips.
  • the fingerprint recognition device includes four optical lenses, and the optical fingerprint sensor includes two optical fingerprint sensor chips, where each optical fingerprint sensor chip has two effective photosensitive regions, so the optical fingerprint sensor includes four effective photosensitive regions, And each effective photosensitive area corresponds to an optical lens.
  • each effective photosensitive area of the optical fingerprint sensor may include an optical sensing array having a plurality of optical sensing units (or photosensitive pixels), and the area of the optical sensing array corresponds to the sensing area of the optical fingerprint sensor Multiple sensing areas together constitute the fingerprint collection area of the fingerprint recognition device.
  • the optical lens may be packaged with its corresponding optical fingerprint sensor chip; or, the optical lens may be installed inside the fingerprint recognition device as a relatively independent component from the optical fingerprint sensor.
  • Each optical lens in the fingerprint identification device is used to guide the optical signal from a sub-region in the fingerprint collection area of the display screen to its corresponding effective photosensitive area, that is, the at least two optical lenses are directed to their respective
  • the optical signal of the effective photosensitive area carries fingerprint image information of different sub-areas.
  • the sub-regions corresponding to different optical lenses may not overlap each other, or may partially overlap.
  • the positional relationship between any two sub-regions may exist in the following three cases, which will be specifically described below with reference to FIGS. 9 to 11.
  • the circular area represents the field of view of the optical lens
  • the square area represents the sub-area corresponding to the optical lens, that is, the actual detection area, and the fingerprint image in the actual detection area can be matched by The effective photosensitive area is detected.
  • the sub-regions do not overlap with each other.
  • the optical lens 1 corresponds to the sub-region 1 in the fingerprint collection area, and can reflect the optical signal reflected by the fingerprint pattern above the sub-region 1 Guide to its corresponding effective photosensitive area 1.
  • the optical lens 2 corresponds to the sub-region 2 in the fingerprint collection region, and can guide the optical signal reflected by the fingerprint pattern above the sub-region 2 to its corresponding effective photosensitive region 2.
  • the sub-region 1 and the sub-region 2 may not overlap each other. In this way, the effective photosensitive area 1 and the effective photosensitive area 2 can each acquire fingerprint images of independent areas, and the utilization rate of the field of view of the optical lens is large.
  • the subregions partially overlap.
  • optical lens 1 corresponds to sub-region 1 in the fingerprint collection area, and can guide the optical signal reflected by the fingerprint pattern above sub-region 1 to its corresponding Effective photosensitive area 1.
  • the optical lens 2 corresponds to the sub-region 2 in the fingerprint collection region, and can guide the optical signal reflected by the fingerprint pattern above the sub-region 2 to its corresponding effective photosensitive region 2.
  • the sub-region 1 and the sub-region 2 partially overlap. This will result in poor utilization of the field of view of the optical lens.
  • the effective photosensitive area 1 and the effective photosensitive area 2 in the optical fingerprint sensor detect the reflected light signals from the fingerprint patterns of the sub-area 1 and the sub-area 2, respectively, they can
  • the image stitching technology is used to process the detected fingerprint patterns on the two sub-regions, so that a large-area fingerprint image can be acquired at once.
  • optical lens 1 corresponds to sub-region 1 in the fingerprint collection area, and can guide the optical signal reflected by the fingerprint pattern above sub-region 1 to its corresponding Effective photosensitive area 1.
  • the optical lens 2 corresponds to the sub-region 2 in the fingerprint collection region, and can guide the optical signal reflected by the fingerprint pattern above the sub-region 2 to its corresponding effective photosensitive region 2.
  • the adjacent sides of the sub-region 1 and the sub-region 2 coincide. In this case, the utilization rate of the field of view of the optical lens is not wasted, and a large area fingerprint image can be acquired based on the image stitching technology.
  • the spacing relationship between the sub-regions corresponding to the at least two optical lenses can be satisfied by setting the spacing between the at least two optical lenses.
  • the embodiment of the present application does not make any limitation on the positional relationship between at least two optical lenses in the fingerprint identification device.
  • the at least two optical lenses may be arranged in a straight line, for example, at equal intervals on a horizontal line, for example, the effective photosensitive area corresponding to the at least two optical lenses arranged in a straight line as shown in FIG. 12; or the at least two optical lenses
  • the lenses can also be arranged in a specific pattern.
  • the optical fingerprint device includes three optical lenses
  • the three optical lenses can be arranged in a triangle.
  • the three optical lenses in the triangular arrangement shown in FIG. 13 correspond to the effective Photosensitive area.
  • the fingerprint identification device further includes a filter unit disposed between the display screen and the optical fingerprint sensor, and the filter unit is configured to transmit an optical signal of a specific wavelength to the optical Fingerprint sensor.
  • the filtering unit may be disposed between the display screen and at least two optical lenses, or between the at least two optical lenses and the fingerprint recognition device.
  • the wavelength of the optical signal selected by the filtering unit may be, for example, a wavelength of visible light (370 nm-780 nm) or a wavelength of near infrared light (800 nm-1500 nm).
  • Optical signals outside the wavelength corresponding to the filter unit will not pass through the filter unit to reach the optical sensing array of the optical fingerprint sensor, so it can be used to filter out stray light to obtain an effective optical signal.
  • the fingerprint identification device may include multiple filter units, wherein each optical fingerprint sensor chip uses one filter unit, or several optical fingerprint sensor chips use one common The filter unit, or all the optical fingerprint sensor chips share a filter unit.
  • the filter unit may be packaged with its corresponding optical fingerprint sensor chip (for example, by coating with the sensor chip); or, the filter unit may be packaged with its corresponding optical lens above the sensor chip; Or, the filter unit is packaged with its corresponding sensor chip and optical lens; or, the filter unit is installed inside the fingerprint identification device as a relatively independent component from the optical fingerprint sensor and the optical lens.
  • At least two optical lenses are used to modulate the light from the fingerprint collection area.
  • other types of optical path modulators may be used to The light in the collection area is modulated, such as microlens array, collimator, fiber array (with or without core).
  • FIGS. 5, 6 to 8, 12 and 13 the parts filled with the same pattern may indicate that they have the same function, and for the sake of brevity, they are not described again.
  • the embodiment of the present application does not make any limitation on the connection mode between the components in the fingerprint recognition device 600.
  • An embodiment of the present application also provides an electronic device.
  • the electronic device may include a display screen and the fingerprint identification apparatus in the various embodiments of the present application described above.
  • the electronic device may be any electronic device with a display screen, which uses the technical solution of the embodiments of the present application to realize off-screen fingerprint recognition.
  • the display screen may use the display screen described above, such as an LCD display screen or an OLED display screen.
  • the display screen is an OLED display screen
  • the light-emitting layer of the display screen includes a plurality of organic light-emitting diode light sources, wherein the fingerprint identification device uses at least part of the organic light-emitting diode light sources as an excitation light source for fingerprint identification.
  • the disclosed system and device may be implemented in other ways.
  • the device embodiments described above are only schematic.
  • the division of the units is only a division of logical functions.
  • there may be other divisions for example, multiple units or components may be combined or Can be integrated into another system, or some features can be ignored, or not implemented.
  • the displayed or discussed mutual couplings or direct couplings or communication connections may be indirect couplings or communication connections through some interfaces, devices, or units, and may also be electrical, mechanical, or other forms of connection.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they may be located in one place, or may be distributed on multiple network units. Some or all of the units may be selected according to actual needs to achieve the objectives of the solutions of the embodiments of the present application.
  • each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist alone physically, or two or more units are integrated into one unit.
  • the above integrated unit can be implemented in the form of hardware or software function unit.
  • the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it may be stored in a computer-readable storage medium.
  • the technical solution of the present application essentially or part of the contribution to the existing technology, or all or part of the technical solution can be embodied in the form of a software product
  • the computer software product is stored in a storage medium
  • several instructions are included to enable a computer device (which may be a personal computer, server, or network device, etc.) to perform all or part of the steps of the methods described in the embodiments of the present application.
  • the aforementioned storage media include: U disk, mobile hard disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), magnetic disk or optical disk and other media that can store program code .

Landscapes

  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Human Computer Interaction (AREA)
  • General Physics & Mathematics (AREA)
  • Multimedia (AREA)
  • Theoretical Computer Science (AREA)
  • Image Input (AREA)
  • Measurement Of The Respiration, Hearing Ability, Form, And Blood Characteristics Of Living Organisms (AREA)

Abstract

La présente invention porte, dans des modes de réalisation, sur un appareil de reconnaissance d'empreinte digitale et sur un dispositif électronique. L'appareil d'identification d'empreinte digitale peut être utilisé avec un dispositif électronique ayant un écran de visualisation. L'appareil de reconnaissance d'empreinte digitale comprend : un capteur d'empreinte digitale optique qui est disposé sous un écran de visualisation de telle sorte que la zone de collecte d'empreinte digitale dudit capteur soit au moins partiellement située à l'intérieur de la zone d'affichage de l'écran de visualisation, le capteur d'empreinte digitale optique comprenant au moins deux zones de détection de lumière efficaces et les deux, ou plus, zones de détection de lumière efficaces étant utilisées pour détecter un signal optique émanant depuis le dessus de la zone de collecte d'empreinte digitale ; et au moins deux lentilles optiques qui sont disposées entre l'écran de visualisation et le capteur d'empreinte digitale optique, la pluralité de lentilles optiques correspondant respectivement à la pluralité de zones de détection de lumière effectives, chaque lentille optique étant utilisée pour guider un signal optique vers la zone de détection de lumière efficace de cette dernière. L'appareil de reconnaissance d'empreinte digitale permet de collecter encore plus d'informations d'empreinte digitale sans que l'épaisseur de l'appareil de reconnaissance d'empreinte digitale ne soit pas augmentée, et permet une précision de reconnaissance d'empreinte digitale accrue.
PCT/CN2018/112231 2018-10-26 2018-10-26 Appareil de reconnaissance d'empreinte digitale et dispositif électronique WO2020082380A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN201880002083.4A CN109496313B (zh) 2018-10-26 2018-10-26 指纹识别装置和电子设备
PCT/CN2018/112231 WO2020082380A1 (fr) 2018-10-26 2018-10-26 Appareil de reconnaissance d'empreinte digitale et dispositif électronique

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2018/112231 WO2020082380A1 (fr) 2018-10-26 2018-10-26 Appareil de reconnaissance d'empreinte digitale et dispositif électronique

Publications (1)

Publication Number Publication Date
WO2020082380A1 true WO2020082380A1 (fr) 2020-04-30

Family

ID=65713865

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2018/112231 WO2020082380A1 (fr) 2018-10-26 2018-10-26 Appareil de reconnaissance d'empreinte digitale et dispositif électronique

Country Status (2)

Country Link
CN (1) CN109496313B (fr)
WO (1) WO2020082380A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111723689A (zh) * 2020-06-02 2020-09-29 深圳阜时科技有限公司 屏下光学检测系统及电子设备
CN111832683A (zh) * 2020-08-14 2020-10-27 京东方科技集团股份有限公司 一种智能卡、信息处理方法和智能卡应用系统

Families Citing this family (21)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102393910B1 (ko) * 2019-03-22 2022-05-03 아크소프트 코포레이션 리미티드 타일형 이미지 센서
CN110799988B (zh) * 2019-04-30 2023-09-12 深圳市汇顶科技股份有限公司 指纹识别的装置和电子设备
CN111860065A (zh) * 2019-04-30 2020-10-30 深圳市隆利科技股份有限公司 一种指纹识别模组
CN110730968A (zh) * 2019-05-06 2020-01-24 深圳市汇顶科技股份有限公司 指纹识别装置和电子设备
CN110291531B (zh) * 2019-05-15 2023-06-16 深圳市汇顶科技股份有限公司 指纹识别的方法、装置和电子设备
CN111247524B (zh) * 2019-06-05 2023-08-22 深圳市汇顶科技股份有限公司 光学指纹装置、制作方法和电子设备
CN111052138B (zh) * 2019-06-05 2021-12-10 深圳市汇顶科技股份有限公司 光学指纹识别的方法、装置和电子设备
CN111108510B (zh) * 2019-07-12 2021-04-16 深圳市汇顶科技股份有限公司 指纹检测装置和电子设备
WO2021007730A1 (fr) * 2019-07-12 2021-01-21 深圳市汇顶科技股份有限公司 Appareil de détection d'empreintes digitales et dispositif électronique
KR20220012360A (ko) 2019-08-02 2022-02-03 선전 구딕스 테크놀로지 컴퍼니, 리미티드 지문 감지 장치 및 전자 디바이스
US11176348B2 (en) 2019-08-06 2021-11-16 Shenzhen GOODIX Technology Co., Ltd. Optical fingerprint apparatus and electronic device
CN111414901A (zh) * 2019-08-26 2020-07-14 神盾股份有限公司 指纹感测模块与电子装置
CN111095275B (zh) * 2019-08-29 2023-09-05 深圳市汇顶科技股份有限公司 指纹识别的装置、方法和电子设备
CN111133444B (zh) * 2019-10-21 2023-10-13 深圳市汇顶科技股份有限公司 指纹识别装置和电子设备
CN110738193B (zh) * 2019-10-31 2024-01-12 维沃移动通信有限公司 电子设备
WO2021081891A1 (fr) * 2019-10-31 2021-05-06 深圳市汇顶科技股份有限公司 Procédé de reconnaissance d'empreintes digitales, appareil de reconnaissance d'empreintes digitales, et dispositif électronique
CN110796123A (zh) * 2019-11-22 2020-02-14 深圳阜时科技有限公司 光学式指纹感测装置和电子设备
CN111709330B (zh) * 2020-06-02 2023-11-28 深圳阜时科技有限公司 光学检测系统及电子设备
CN111984064B (zh) * 2020-08-14 2021-12-14 Oppo(重庆)智能科技有限公司 显示屏组件及电子设备
WO2022099562A1 (fr) * 2020-11-12 2022-05-19 深圳市汇顶科技股份有限公司 Appareil de reconnaissance d'empreintes digitales et dispositif électronique
CN113780103A (zh) * 2021-08-23 2021-12-10 北京极豪科技有限公司 生物信息识别模组及电子设备

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104036230A (zh) * 2014-03-21 2014-09-10 中山微盾信息科技有限公司 一种超薄手指静脉识别系统
CN106526944A (zh) * 2017-01-24 2017-03-22 京东方科技集团股份有限公司 显示基板及显示装置
CN107580709A (zh) * 2015-06-18 2018-01-12 深圳市汇顶科技股份有限公司 具有光学感应能力的多功能指纹传感器
CN107590425A (zh) * 2016-07-08 2018-01-16 北京日立北工大信息系統有限公司 静脉认证装置及其静脉认证方法

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7274808B2 (en) * 2003-04-18 2007-09-25 Avago Technologies Ecbu Ip (Singapore)Pte Ltd Imaging system and apparatus for combining finger recognition and finger navigation
CN107004130B (zh) * 2015-06-18 2020-08-28 深圳市汇顶科技股份有限公司 用于屏幕上指纹感应的屏幕下光学传感器模块
CN105678255B (zh) * 2016-01-04 2019-01-08 京东方科技集团股份有限公司 一种光学式指纹识别显示屏及显示装置
CN208888842U (zh) * 2018-10-26 2019-05-21 深圳市汇顶科技股份有限公司 指纹识别装置和电子设备

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104036230A (zh) * 2014-03-21 2014-09-10 中山微盾信息科技有限公司 一种超薄手指静脉识别系统
CN107580709A (zh) * 2015-06-18 2018-01-12 深圳市汇顶科技股份有限公司 具有光学感应能力的多功能指纹传感器
CN107590425A (zh) * 2016-07-08 2018-01-16 北京日立北工大信息系統有限公司 静脉认证装置及其静脉认证方法
CN106526944A (zh) * 2017-01-24 2017-03-22 京东方科技集团股份有限公司 显示基板及显示装置

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111723689A (zh) * 2020-06-02 2020-09-29 深圳阜时科技有限公司 屏下光学检测系统及电子设备
CN111723689B (zh) * 2020-06-02 2023-09-12 深圳阜时科技有限公司 屏下光学检测系统及电子设备
CN111832683A (zh) * 2020-08-14 2020-10-27 京东方科技集团股份有限公司 一种智能卡、信息处理方法和智能卡应用系统

Also Published As

Publication number Publication date
CN109496313B (zh) 2022-05-17
CN109496313A (zh) 2019-03-19

Similar Documents

Publication Publication Date Title
WO2020082380A1 (fr) Appareil de reconnaissance d'empreinte digitale et dispositif électronique
US11455823B2 (en) Under-screen fingerprint identification apparatus and electronic device
WO2020056771A1 (fr) Appareil d'identification d'empreintes digitales et dispositif électronique
CN209962265U (zh) 指纹识别装置和电子设备
US11275922B2 (en) Fingerprint identification apparatus and electronic device
EP3396588B1 (fr) Écran d'affichage, dispositif d'affichage et terminal mobile
WO2019237872A1 (fr) Appareil d'identification d'empreintes digitales et dispositif électronique
WO2020102949A1 (fr) Appareil d'identification d'empreintes digitales et dispositif électronique
WO2020220305A1 (fr) Appareil d'identification d'empreintes digitales sous-écran et dispositif électronique
CN208888842U (zh) 指纹识别装置和电子设备
WO2020082375A1 (fr) Structure de lentille composée, appareil de reconnaissance d'empreintes digitales et dispositif électronique
KR102374723B1 (ko) 광학 지문 장치 및 전자 기기
WO2019178793A1 (fr) Dispositif d'identification biométrique dans l'affichage et dispositif électronique
WO2020093251A1 (fr) Procédé d'identification d'empreinte digitale basée sur la superficie à double de détection, système d'identification d'empreinte digitale et dispositif électronique
CN211319247U (zh) 指纹识别装置、背光模组、液晶显示屏和电子设备
WO2020168495A1 (fr) Procédé et dispositif de reconnaissance d'empreinte digitale et dispositif terminal
WO2021189478A1 (fr) Appareil de détection d'empreintes digitales et dispositif électronique
CN210534801U (zh) 指纹识别装置和电子设备
WO2021007953A1 (fr) Appareil de détection d'empreintes digitales et dispositif électronique
WO2020243936A1 (fr) Appareil d'identification de caractéristique biométrique sous écran et dispositif électronique
WO2021174423A1 (fr) Appareil de reconnaissance d'empreintes digitales, écran d'affichage et dispositif électronique
WO2021056318A1 (fr) Procédé et appareil de reconnaissance d'empreinte digitale, et dispositif électronique
CN213751108U (zh) 指纹识别的装置和电子设备
WO2021138781A1 (fr) Dispositif de détection d'empreintes digitales et dispositif électronique
WO2021051412A1 (fr) Dispositif de détection d'empreintes digitales, écran d'affichage et appareil électronique

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 18937788

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 18937788

Country of ref document: EP

Kind code of ref document: A1