WO2020248809A1 - Under-display fingerprint sensing module and electronic apparatus - Google Patents

Under-display fingerprint sensing module and electronic apparatus Download PDF

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Publication number
WO2020248809A1
WO2020248809A1 PCT/CN2020/092150 CN2020092150W WO2020248809A1 WO 2020248809 A1 WO2020248809 A1 WO 2020248809A1 CN 2020092150 W CN2020092150 W CN 2020092150W WO 2020248809 A1 WO2020248809 A1 WO 2020248809A1
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display panel
under
field lens
image sensor
electronic device
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PCT/CN2020/092150
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French (fr)
Chinese (zh)
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黄郁湘
傅同龙
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神盾股份有限公司
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Publication of WO2020248809A1 publication Critical patent/WO2020248809A1/en

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    • 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
    • G06V40/1318Sensors therefor using electro-optical elements or layers, e.g. electroluminescent sensing

Definitions

  • the invention relates to a fingerprint sensing module and an electronic device, in particular to an under-screen fingerprint sensing module and an electronic device.
  • Under-screen fingerprint sensors can be divided into ultrasonic sensors and optical sensors. Ultrasonic sensors are more expensive, while optical sensors have the advantages of lower cost and high accuracy.
  • An existing optical sensor is to set up a camera under a transparent display panel (such as an organic light-emitting diode display panel) to capture fingerprints pressed on the transparent display panel, and the light source to illuminate the fingerprint is emitted by the transparent display panel Light.
  • a transparent display panel such as an organic light-emitting diode display panel
  • the general organic light-emitting diode light source is a Lambertian source, and its luminous intensity is in a cosine ratio with the light exit angle, that is, the more inclined the light is emitted, the weaker the intensity of the light.
  • the present invention is directed to an under-screen fingerprint sensing module, which can sense fingerprint images with uniform brightness.
  • the present invention is directed to an electronic device whose under-screen fingerprint sensing module can sense fingerprint images with uniform brightness.
  • An embodiment of the present invention provides an under-screen fingerprint sensor module, which is configured under a display panel to sense the fingerprint of a finger on the display panel.
  • the under-screen fingerprint sensor module includes an image sensor, an imaging lens and a field mirror.
  • the image sensor is arranged under the display panel, and the imaging lens is arranged between the display panel and the image sensor.
  • the field lens is arranged between the display panel and the imaging lens.
  • An embodiment of the present invention provides an electronic device including a display panel and the above-mentioned under-screen fingerprint sensing module, wherein the under-screen fingerprint sensing module is disposed under the display panel.
  • the electronic device and the under-screen fingerprint sensing module of the embodiment of the present invention since the field lens is used to make the light emitted from the finger in the direction approximately perpendicular to the display panel converge on the image sensor, the finger sensed by the image sensor The images in the edge area and the central area of the finger are all contributed by the light emitted in a direction approximately perpendicular to the display panel, and the brightness of the image will not decrease because only oblique light is sensed. In this way, the electronic device and the under-screen fingerprint sensing module of the embodiment of the present invention can sense a fingerprint image with uniform brightness, thereby improving the accuracy and success rate of fingerprint recognition.
  • FIG. 1 is a schematic partial cross-sectional view of an electronic device according to an embodiment of the invention.
  • FIG. 1 is a schematic partial cross-sectional view of an electronic device according to an embodiment of the invention.
  • the electronic device 100 of this embodiment includes a display panel 110 and an under-screen fingerprint sensing module 200, wherein the under-screen fingerprint sensing module 200 is disposed under the display panel 110 to sense the display panel 110 Fingerprint 52 on a finger 50.
  • the under-screen fingerprint sensor module 200 includes an image sensor 210, an imaging lens 220, and a field lens 230.
  • the imaging lens 220 is disposed between the display panel 110 and the image sensor 210
  • the field lens 230 is disposed between the display panel 110 and the imaging lens 220.
  • the display panel 110 is a transparent display panel, for example, an organic light emitting diode display panel.
  • the display panel 110 may also be a liquid crystal display panel.
  • the image sensor 210 is, for example, a complementary metal oxide semiconductor image sensor (complementary metal oxide semiconductor image sensor, CMOS image sensor, CIS).
  • the image sensor 210 may also be a charge coupled device (CCD).
  • the electronic device 100 is, for example, a smart phone, a tablet computer, a notebook computer, or various other electronic devices.
  • the light 113 emitted by the pixel 112 of the display panel 110 illuminates the finger 50 upward, and the finger 50 reflects the light 113 into the light 115 that carries the information of the fingerprint 52.
  • the field lens 230 is used to make the light 115 emitted from the finger 50 in a direction approximately perpendicular to the display panel 110 converge on the image sensor 210, that is, the light emitted from the finger 50 in a direction approximately perpendicular to the display panel 110 115 is focused on the imaging lens 220 by the field lens 230, and then transferred to the sensing area of the image sensor 210 by the imaging lens 220 to form an image.
  • the images of the edge area of the finger 50 and the central area of the finger 50 sensed by the image sensor 210 are all contributed by the light 115 emitted in a direction approximately perpendicular to the display panel 110, and it will not only sense the oblique direction.
  • Light causes the image brightness to decrease.
  • the electronic device 100 and the under-screen fingerprint sensing module 200 of this embodiment can sense fingerprint images with uniform brightness, thereby improving the accuracy and success rate of fingerprint recognition.
  • the maximum outer diameter D1 of the field lens 230 falls within the range of 30 mm to 50 mm, depending on the area of the finger to be measured.
  • the ratio of the maximum outer diameter D1 of the field lens 230 to the diagonal length D2 of the sensing area of the image sensor 210 falls within a range from 4 to 10.
  • the angle ⁇ between the chief ray 117 collected by the field lens 230 from the upper surface 114 of the display panel 110 and transmitted to the image sensor 210 and the optical axis A of the imaging lens 220 is less than 15 degrees.
  • the area of the field lens 230 is close to the area of the entire fingerprint sensing area (that is, the area on the upper surface 114 where the finger can be pressed and the fingerprint can be sensed), so that the field lens 230 can collect almost vertically downward
  • the light 115 is transmitted to the image sensor 210 to form a fingerprint image with uniform brightness.
  • the imaging lens 220 and the field lens 230 form a telecentric lens.
  • a field lens 230 is added under the display panel 110 to make the chief ray of the object space nearly parallel, and because of the telecentric design, light 115 with different object heights in the object space is collected by the field lens 230.
  • the light receiving angles are similar. In this way, the brightness of the edge area and the central area of the fingerprint image can be aligned.
  • the refractive index of the colloid 240 is 1.3, for example.
  • the electronic device 100 further includes a middle frame 250 with a light-transmitting opening 252, wherein the image sensor 210 is disposed under the light-transmitting opening 252, and the field lens 230 rests on the middle frame 250 and is disposed in the transparent opening 252. Between the light opening 252 and the display panel 110.
  • the electronic device and the under-screen fingerprint sensing module of the embodiment of the present invention since the field lens is used to condense the light emitted from the finger in the direction approximately perpendicular to the display panel on the image sensor, the image sensor The sensed images of the edge area of the finger and the central area of the finger are all contributed by the light emitted in a direction approximately perpendicular to the display panel, and the brightness of the image will not decrease because only oblique light is sensed. In this way, the electronic device and the under-screen fingerprint sensing module of the embodiment of the present invention can sense a fingerprint image with uniform brightness, thereby improving the accuracy and success rate of fingerprint recognition.

Abstract

Provided are an under-display fingerprint sensing module and an electronic apparatus. The under-display fingerprint sensing module is used for being configured below a display panel so as to sense a fingerprint of a finger on the display panel. The under-display fingerprint sensing module comprises an image sensor, an imaging lens, and a field lens, wherein the image sensor is configured below the display panel, the imaging lens is configured between the display panel and the image sensor, and the field lens is configured between the display panel and the imaging lens.

Description

屏下式指纹感测模块与电子装置Under-screen fingerprint sensing module and electronic device 技术领域Technical field
本发明涉及一种指纹感测模块与电子装置,尤其涉及一种屏下式指纹感测模块与电子装置。The invention relates to a fingerprint sensing module and an electronic device, in particular to an under-screen fingerprint sensing module and an electronic device.
背景技术Background technique
随着手持式电子装置(例如智能手机、平板计算机等)朝向高屏幕占比发展,于电子装置的正面便没有足够的面积来设置传统的电容式指纹传感器。为解决此问题,侧面指纹传感器、背面指纹传感器甚至是其他生物特征传感器(如人脸感测)便被发展出来。然而,侧面指纹传感器的感测面积较小,背面指纹传感器会有当电子装置置于桌面时无法使用的情形,而人脸传感器有价格昂贵、易因受潮而受损及戴口罩时无法使用的问题。With the development of handheld electronic devices (such as smart phones, tablet computers, etc.) toward a high screen-to-body ratio, there is not enough area on the front of the electronic device to install a traditional capacitive fingerprint sensor. To solve this problem, side fingerprint sensors, back fingerprint sensors and even other biometric sensors (such as face sensing) have been developed. However, the side fingerprint sensor has a small sensing area, and the back fingerprint sensor may not be used when the electronic device is placed on the desktop. The face sensor is expensive, easily damaged by moisture, and cannot be used when wearing a mask. problem.
而有一种解决的方案是将指纹传感器放置于屏幕的下方,并以穿透屏幕的方式来感测指纹,这就是屏下式指纹传感器方案。屏下式指纹传感器可分为超声波式传感器与光学式传感器。超声波式传感器较为昂贵,而光学式传感器则具有成本较低且正确率高的优点。One solution is to place the fingerprint sensor under the screen and sense the fingerprint by penetrating the screen. This is the under-screen fingerprint sensor solution. Under-screen fingerprint sensors can be divided into ultrasonic sensors and optical sensors. Ultrasonic sensors are more expensive, while optical sensors have the advantages of lower cost and high accuracy.
一种现有的光学式传感器是在透明显示面板(例如有机发光二极管显示面板)下方设置相机,以拍摄按压在透明显示面板上的指纹,而照亮指纹的光源则是透明显示面板所发出的光。然而,一般的有机发光二极管光源为朗伯光源(Lambertian source),其发光强度与光线出射角度呈余弦比例关系,也就是说,越倾斜出射的光的强度越弱。因此,当相机拍摄指纹图像时,越靠近手指边缘的指纹所反射且入射相机镜头的光越是倾斜入射镜头,越是由有机发光二极管光源所发出的倾斜的光所贡献,如此会导致图像传感器所感测到的手指边缘指纹图像的亮度越弱,进而影响了指纹识别的正确率与成功率。An existing optical sensor is to set up a camera under a transparent display panel (such as an organic light-emitting diode display panel) to capture fingerprints pressed on the transparent display panel, and the light source to illuminate the fingerprint is emitted by the transparent display panel Light. However, the general organic light-emitting diode light source is a Lambertian source, and its luminous intensity is in a cosine ratio with the light exit angle, that is, the more inclined the light is emitted, the weaker the intensity of the light. Therefore, when the camera captures a fingerprint image, the closer the fingerprint is to the edge of the finger and the light that enters the camera lens is obliquely incident on the lens, the more it is contributed by the oblique light emitted by the organic light-emitting diode light source, which will cause the image sensor The weaker the brightness of the fingerprint image at the edge of the finger is sensed, which affects the accuracy and success rate of fingerprint recognition.
发明内容Summary of the invention
本发明是针对一种屏下式指纹感测模块,其可感测到亮度均匀的指纹图 像。The present invention is directed to an under-screen fingerprint sensing module, which can sense fingerprint images with uniform brightness.
本发明是针对一种电子装置,其屏下式指纹感测模块可以感测到亮度均匀的指纹图像。The present invention is directed to an electronic device whose under-screen fingerprint sensing module can sense fingerprint images with uniform brightness.
本发明的一实施例提出一种屏下式指纹感测模块,用以配置于一显示面板下方,以感测显示面板上的一手指的指纹。屏下式指纹感测模块包括一图像传感器、一成像镜头及一场镜。图像传感器配置于显示面板下方,而成像镜头配置于显示面板与图像传感器之间。场镜配置于显示面板与成像镜头之间。An embodiment of the present invention provides an under-screen fingerprint sensor module, which is configured under a display panel to sense the fingerprint of a finger on the display panel. The under-screen fingerprint sensor module includes an image sensor, an imaging lens and a field mirror. The image sensor is arranged under the display panel, and the imaging lens is arranged between the display panel and the image sensor. The field lens is arranged between the display panel and the imaging lens.
本发明的一实施例提出一种电子装置,包括一显示面板以及上述屏下式指纹感测模块,其中屏下式指纹感测模块配置于显示面板下方。An embodiment of the present invention provides an electronic device including a display panel and the above-mentioned under-screen fingerprint sensing module, wherein the under-screen fingerprint sensing module is disposed under the display panel.
在本发明的实施例的电子装置与屏下式指纹感测模块中,由于采用场镜使从手指往约略垂直于显示面板的方向发出的光会聚于图像传感器,因此图像传感器所感测到的手指边缘区域与手指中央区域的图像都是由往约略垂直于显示面板的方向发出的光所贡献,并不会因为只感测到斜向光而导致图像亮度降低。如此一来,本发明的实施例的电子装置与屏下式指纹感测模块便可以感测到亮度均匀的指纹图像,进而提升了指纹识别的正确率与成功率。In the electronic device and the under-screen fingerprint sensing module of the embodiment of the present invention, since the field lens is used to make the light emitted from the finger in the direction approximately perpendicular to the display panel converge on the image sensor, the finger sensed by the image sensor The images in the edge area and the central area of the finger are all contributed by the light emitted in a direction approximately perpendicular to the display panel, and the brightness of the image will not decrease because only oblique light is sensed. In this way, the electronic device and the under-screen fingerprint sensing module of the embodiment of the present invention can sense a fingerprint image with uniform brightness, thereby improving the accuracy and success rate of fingerprint recognition.
附图说明Description of the drawings
图1为本发明的一实施例的电子装置的局部剖面示意图。FIG. 1 is a schematic partial cross-sectional view of an electronic device according to an embodiment of the invention.
附图标记说明Description of reference signs
50:手指50: finger
52:指纹52: Fingerprint
100:电子装置100: electronic device
110:显示面板110: display panel
112:像素112: pixels
113、115:光113, 115: light
114:上表面114: upper surface
117:主光线117: Chief Ray
200:屏下式指纹感测模块200: Under-screen fingerprint sensor module
210:图像传感器210: Image sensor
220:成像镜头220: imaging lens
230:场镜230: field lens
240:透明胶体240: transparent colloid
250:中框250: middle frame
252:透光开口252: light opening
A:光轴A: Optical axis
D1:最大外径D1: Maximum outer diameter
D2:对角线长度D2: Diagonal length
T1:间距T1: pitch
θ:夹角θ: included angle
具体实施方式Detailed ways
现将详细地参考本发明的示范性实施例,示范性实施例的实例说明于附图中。只要有可能,相同元件符号在附图和描述中用来表示相同或相似部分。Reference will now be made in detail to the exemplary embodiments of the present invention, and examples of the exemplary embodiments are illustrated in the accompanying drawings. Whenever possible, the same reference symbols are used in the drawings and the description to indicate the same or similar parts.
图1为本发明的一实施例的电子装置的局部剖面示意图。请参照图1,本实施例的电子装置100包括一显示面板110及一屏下式指纹感测模块200,其中屏下式指纹感测模块200配置于显示面板110下方,以感测显示面板110上的一手指50的指纹52。屏下式指纹感测模块200包括一图像传感器210、一成像镜头220及一场镜230。其中,成像镜头220配置于显示面板110与图像传感器210之间,且场镜230配置于显示面板110与成像镜头220之间。FIG. 1 is a schematic partial cross-sectional view of an electronic device according to an embodiment of the invention. 1, the electronic device 100 of this embodiment includes a display panel 110 and an under-screen fingerprint sensing module 200, wherein the under-screen fingerprint sensing module 200 is disposed under the display panel 110 to sense the display panel 110 Fingerprint 52 on a finger 50. The under-screen fingerprint sensor module 200 includes an image sensor 210, an imaging lens 220, and a field lens 230. The imaging lens 220 is disposed between the display panel 110 and the image sensor 210, and the field lens 230 is disposed between the display panel 110 and the imaging lens 220.
在本实施例中,显示面板110为透明显示面板,例如为有机发光二极管显示面板。或者,在其他实施例中,显示面板110也可以是液晶显示面板。图像传感器210例如是互补式金氧半导体图像传感器(complementary metal oxide semiconductor image sensor,CMOS image sensor,CIS)。然而,在其他实施例中,图像传感器210也可以是电荷耦合组件(charge coupled device,CCD)。电子装置100例如为智能手机、平板计算机、笔记本电脑或其他各种电子装置。In this embodiment, the display panel 110 is a transparent display panel, for example, an organic light emitting diode display panel. Alternatively, in other embodiments, the display panel 110 may also be a liquid crystal display panel. The image sensor 210 is, for example, a complementary metal oxide semiconductor image sensor (complementary metal oxide semiconductor image sensor, CMOS image sensor, CIS). However, in other embodiments, the image sensor 210 may also be a charge coupled device (CCD). The electronic device 100 is, for example, a smart phone, a tablet computer, a notebook computer, or various other electronic devices.
在本实施例中,显示面板110的像素112所发出的光113往上照亮了手指50,而手指50将光113反射成携带了指纹52信息的光115。在本实施例中,采用场镜230使从手指50往约略垂直于显示面板110的方向发出的光115 会聚于图像传感器210,也就是从手指50往约略垂直于显示面板110的方向发出的光115先被场镜230会聚于成像镜头220,然后再被成像镜头220传递至图像传感器210的感测区,进而形成图像。因此图像传感器210所感测到的手指50的边缘区域与手指50的中央区域的图像都是由往约略垂直于显示面板110的方向发出的光115所贡献,并不会因为只感测到斜向光而导致图像亮度降低。如此一来,本实施例的电子装置100与屏下式指纹感测模块200便可以感测到亮度均匀的指纹图像,进而提升了指纹识别的正确率与成功率。In this embodiment, the light 113 emitted by the pixel 112 of the display panel 110 illuminates the finger 50 upward, and the finger 50 reflects the light 113 into the light 115 that carries the information of the fingerprint 52. In this embodiment, the field lens 230 is used to make the light 115 emitted from the finger 50 in a direction approximately perpendicular to the display panel 110 converge on the image sensor 210, that is, the light emitted from the finger 50 in a direction approximately perpendicular to the display panel 110 115 is focused on the imaging lens 220 by the field lens 230, and then transferred to the sensing area of the image sensor 210 by the imaging lens 220 to form an image. Therefore, the images of the edge area of the finger 50 and the central area of the finger 50 sensed by the image sensor 210 are all contributed by the light 115 emitted in a direction approximately perpendicular to the display panel 110, and it will not only sense the oblique direction. Light causes the image brightness to decrease. In this way, the electronic device 100 and the under-screen fingerprint sensing module 200 of this embodiment can sense fingerprint images with uniform brightness, thereby improving the accuracy and success rate of fingerprint recognition.
在本实施例中,场镜230的最大外径D1是落在30毫米至50毫米的范围内,取决于待测手指面积。场镜230的最大外径D1与图像传感器210的感测区的对角线长度D2的比值是落在从4至10的范围内。此外,场镜230所收集的来自显示面板110的上表面114且传递至图像传感器210的主光线117与成像镜头220的光轴A的夹角θ小于15度。换言之,场镜230的面积接近于整个指纹感测区(也就是上表面114上供手指按压且可感测到指纹的区域)的面积,以使场镜230可以收集几乎是铅直向下的光115,并使这样的光115传递至图像传感器210而形成亮度均匀的指纹图像。也就是说,成像镜头220与场镜230形成一远心镜头。In this embodiment, the maximum outer diameter D1 of the field lens 230 falls within the range of 30 mm to 50 mm, depending on the area of the finger to be measured. The ratio of the maximum outer diameter D1 of the field lens 230 to the diagonal length D2 of the sensing area of the image sensor 210 falls within a range from 4 to 10. In addition, the angle θ between the chief ray 117 collected by the field lens 230 from the upper surface 114 of the display panel 110 and transmitted to the image sensor 210 and the optical axis A of the imaging lens 220 is less than 15 degrees. In other words, the area of the field lens 230 is close to the area of the entire fingerprint sensing area (that is, the area on the upper surface 114 where the finger can be pressed and the fingerprint can be sensed), so that the field lens 230 can collect almost vertically downward The light 115 is transmitted to the image sensor 210 to form a fingerprint image with uniform brightness. In other words, the imaging lens 220 and the field lens 230 form a telecentric lens.
也就是说,本实施例在显示面板110下方增加一片场镜230,将物空间的主光线变成接近平行,且因为远心设计,对于物空间不同物高的光115,被场镜230收集的收光角度都相近。如此一来,便可使指纹图像的边缘区域与中央区域的亮度趋于一致。That is to say, in this embodiment, a field lens 230 is added under the display panel 110 to make the chief ray of the object space nearly parallel, and because of the telecentric design, light 115 with different object heights in the object space is collected by the field lens 230. The light receiving angles are similar. In this way, the brightness of the edge area and the central area of the fingerprint image can be aligned.
在一实施例中,场镜230与显示面板110之间存在空气间隙。然而,在另一实施例中,场镜230与显示面板110之间存在透明胶体240,以使场镜230附着于显示面板110上,其中透明胶体240的折射率小于场镜的折射率,透明胶体240的折射率例如为1.3。In an embodiment, there is an air gap between the field lens 230 and the display panel 110. However, in another embodiment, there is a transparent colloid 240 between the field lens 230 and the display panel 110 so that the field lens 230 is attached to the display panel 110, wherein the refractive index of the transparent colloid 240 is smaller than that of the field lens, and is transparent. The refractive index of the colloid 240 is 1.3, for example.
在本实施例中,电子装置100还包括一中框250,具有一透光开口252,其中图像传感器210配置于透光开口252下方,场镜230承靠于中框250上,且配置于透光开口252与显示面板110之间。In this embodiment, the electronic device 100 further includes a middle frame 250 with a light-transmitting opening 252, wherein the image sensor 210 is disposed under the light-transmitting opening 252, and the field lens 230 rests on the middle frame 250 and is disposed in the transparent opening 252. Between the light opening 252 and the display panel 110.
综上所述,在本发明的实施例的电子装置与屏下式指纹感测模块中,由于采用场镜来从手指往约略垂直于显示面板的方向发出的光会聚于图像传感 器,因此图像传感器所感测到的手指边缘区域与手指中央区域的图像都是由往约略垂直于显示面板的方向发出的光所贡献,并不会因为只感测到斜向光而导致图像亮度降低。如此一来,本发明的实施例的电子装置与屏下式指纹感测模块便可以感测到亮度均匀的指纹图像,进而提升了指纹识别的正确率与成功率。To sum up, in the electronic device and the under-screen fingerprint sensing module of the embodiment of the present invention, since the field lens is used to condense the light emitted from the finger in the direction approximately perpendicular to the display panel on the image sensor, the image sensor The sensed images of the edge area of the finger and the central area of the finger are all contributed by the light emitted in a direction approximately perpendicular to the display panel, and the brightness of the image will not decrease because only oblique light is sensed. In this way, the electronic device and the under-screen fingerprint sensing module of the embodiment of the present invention can sense a fingerprint image with uniform brightness, thereby improving the accuracy and success rate of fingerprint recognition.
最后应说明的是:以上各实施例仅用以说明本发明的技术方案,而非对其限制;尽管参照前述各实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分或者全部技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本发明各实施例技术方案的范围。Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, but not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand: It is still possible to modify the technical solutions described in the foregoing embodiments, or equivalently replace some or all of the technical features; these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the technical solutions of the embodiments of the present invention range.

Claims (18)

  1. 一种屏下式指纹感测模块,其特征在于,配置于显示面板下方,以感测所述显示面板上的手指的指纹,所述屏下式指纹感测模块包括:An under-screen fingerprint sensing module, characterized in that it is disposed under a display panel to sense fingerprints of a finger on the display panel, and the under-screen fingerprint sensing module includes:
    图像传感器;Image Sensor;
    成像镜头,配置于所述显示面板与所述图像传感器之间;以及An imaging lens arranged between the display panel and the image sensor; and
    场镜,配置于所述显示面板与所述成像镜头之间。The field lens is arranged between the display panel and the imaging lens.
  2. 根据权利要求1所述的屏下式指纹感测模块,其特征在于,所述场镜的最大外径与所述图像传感器的感测区的对角线长度的比值是落在从4至10的范围内。The under-screen fingerprint sensing module according to claim 1, wherein the ratio of the maximum outer diameter of the field lens to the diagonal length of the sensing area of the image sensor is from 4 to 10 In the range.
  3. 根据权利要求1所述的屏下式指纹感测模块,其特征在于,所述场镜所收集的来自所述显示面板的上表面且传递至所述图像传感器的主光线与所述成像镜头的光轴的夹角小于15度。The under-screen fingerprint sensing module of claim 1, wherein the chief ray collected by the field lens from the upper surface of the display panel and transmitted to the image sensor and the main ray of the imaging lens The angle of the optical axis is less than 15 degrees.
  4. 根据权利要求1所述的屏下式指纹感测模块,其特征在于,所述成像镜头与所述场镜形成远心镜头。The under-screen fingerprint sensing module of claim 1, wherein the imaging lens and the field lens form a telecentric lens.
  5. 根据权利要求1所述的屏下式指纹感测模块,其特征在于,所述图像传感器配置于中框的透光开口下方,所述场镜承靠于所述中框上,且配置于所述透光开口与所述显示面板之间。The under-screen fingerprint sensor module according to claim 1, wherein the image sensor is disposed under the transparent opening of the middle frame, and the field lens is supported on the middle frame and is disposed on the middle frame. Between the transparent opening and the display panel.
  6. 根据权利要求1所述的屏下式指纹感测模块,其特征在于,所述场镜的最大外径是落在30毫米至50毫米的范围内。The under-screen fingerprint sensor module according to claim 1, wherein the maximum outer diameter of the field lens falls within a range of 30 mm to 50 mm.
  7. 根据权利要求1所述的屏下式指纹感测模块,其特征在于,所述场镜与所述显示面板之间存在空气间隙。The under-screen fingerprint sensor module of claim 1, wherein there is an air gap between the field lens and the display panel.
  8. 根据权利要求1所述的屏下式指纹感测模块,其特征在于,所述场镜与所述显示面板之间存在透明胶体,以使所述场镜附着于所述显示面板上,其中所述透明胶体的折射率小于所述场镜的折射率。The under-screen fingerprint sensing module according to claim 1, wherein there is a transparent colloid between the field lens and the display panel, so that the field lens is attached to the display panel, wherein The refractive index of the transparent colloid is smaller than the refractive index of the field lens.
  9. 一种电子装置,其特征在于,包括:An electronic device, characterized in that it comprises:
    显示面板;以及Display panel; and
    屏下式指纹感测模块,配置于所述显示面板下方,以感测所述显示面板上的手指的指纹,所述屏下式指纹感测模块包括:The under-screen fingerprint sensing module is configured under the display panel to sense the fingerprint of a finger on the display panel, and the under-screen fingerprint sensing module includes:
    图像传感器,配置于所述显示面板下方;The image sensor is arranged under the display panel;
    成像镜头,配置于所述显示面板与所述图像传感器之间;以及An imaging lens arranged between the display panel and the image sensor; and
    场镜,配置于所述显示面板与所述成像镜头之间。The field lens is arranged between the display panel and the imaging lens.
  10. 根据权利要求9所述的电子装置,其特征在于,所述场镜的最大外径与所述图像传感器的感测区的对角线长度的比值是落在从4至10的范围内。9. The electronic device according to claim 9, wherein the ratio of the maximum outer diameter of the field lens to the diagonal length of the sensing area of the image sensor falls within a range from 4 to 10.
  11. 根据权利要求9所述的电子装置,其特征在于,所述场镜所收集的来自所述显示面板的上表面且传递至所述图像传感器的主光线与所述成像镜头的光轴的夹角小于15度。8. The electronic device of claim 9, wherein the angle between the chief ray collected by the field lens from the upper surface of the display panel and transmitted to the image sensor and the optical axis of the imaging lens Less than 15 degrees.
  12. 根据权利要求9所述的电子装置,其特征在于,所述成像镜头与所述场镜形成远心镜头。9. The electronic device according to claim 9, wherein the imaging lens and the field lens form a telecentric lens.
  13. 根据权利要求9所述的电子装置,其特征在于,还包括中框,具有透光开口,所述图像传感器配置于所述透光开口下方,所述场镜承靠于所述中框上,且配置于所述透光开口与所述显示面板之间。9. The electronic device according to claim 9, further comprising a middle frame having a light-transmitting opening, the image sensor is disposed under the light-transmitting opening, and the field lens is supported on the middle frame, And is arranged between the transparent opening and the display panel.
  14. 根据权利要求9所述的电子装置,其特征在于,所述场镜的最大外径是落在30毫米至50毫米的范围内。9. The electronic device according to claim 9, wherein the maximum outer diameter of the field lens falls within a range of 30 mm to 50 mm.
  15. 根据权利要求9所述的电子装置,其特征在于,所述场镜与所述显示面板之间存在空气间隙。9. The electronic device of claim 9, wherein there is an air gap between the field lens and the display panel.
  16. 根据权利要求9所述的电子装置,其特征在于,所述场镜与所述显示面板之间存在透明胶体,以使所述场镜附着于所述显示面板上,其中所述透明胶体的折射率小于所述场镜的折射率。8. The electronic device of claim 9, wherein a transparent colloid is present between the field lens and the display panel, so that the field lens is attached to the display panel, wherein the refraction of the transparent colloid The rate is less than the refractive index of the field lens.
  17. 根据权利要求9所述的电子装置,其特征在于,所述显示面板为透明显示面板。9. The electronic device according to claim 9, wherein the display panel is a transparent display panel.
  18. 根据权利要求17所述的电子装置,其特征在于,所述显示面板为有机发光二极管显示面板。18. The electronic device of claim 17, wherein the display panel is an organic light emitting diode display panel.
PCT/CN2020/092150 2019-06-13 2020-05-25 Under-display fingerprint sensing module and electronic apparatus WO2020248809A1 (en)

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