WO2020253132A1 - 电子装置 - Google Patents

电子装置 Download PDF

Info

Publication number
WO2020253132A1
WO2020253132A1 PCT/CN2019/122322 CN2019122322W WO2020253132A1 WO 2020253132 A1 WO2020253132 A1 WO 2020253132A1 CN 2019122322 W CN2019122322 W CN 2019122322W WO 2020253132 A1 WO2020253132 A1 WO 2020253132A1
Authority
WO
WIPO (PCT)
Prior art keywords
light
emitting
area
emitting element
finger
Prior art date
Application number
PCT/CN2019/122322
Other languages
English (en)
French (fr)
Inventor
曾俊钦
林冠仪
Original Assignee
神盾股份有限公司
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 神盾股份有限公司 filed Critical 神盾股份有限公司
Priority to KR1020217035429A priority Critical patent/KR20210144869A/ko
Priority to US17/601,442 priority patent/US20220198819A1/en
Publication of WO2020253132A1 publication Critical patent/WO2020253132A1/zh

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
    • G06V40/1318Sensors therefor using electro-optical elements or layers, e.g. electroluminescent 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
    • G06V40/1341Sensing with light passing through the finger
    • HELECTRICITY
    • H10SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
    • H10KORGANIC ELECTRIC SOLID-STATE DEVICES
    • H10K59/00Integrated devices, or assemblies of multiple devices, comprising at least one organic light-emitting element covered by group H10K50/00
    • H10K59/60OLEDs integrated with inorganic light-sensitive elements, e.g. with inorganic solar cells or inorganic photodiodes
    • H10K59/65OLEDs integrated with inorganic image sensors

Definitions

  • the invention relates to an electronic device, and more particularly to an electronic device capable of sensing fingerprints.
  • the light intensity sensed by the sensing pixels near the surroundings in the sensing module is often lower than the light intensity sensed by the sensing pixels near the center in the sensing module, so that the sensing
  • the intensity of the optical signal obtained by the module has a gap, which will affect the accuracy of fingerprint sensing. Therefore, in the current solution, the back-end software is often used to correct the signal strength, but the corrected image still has side effects, such as amplifying the noise and causing the loss of detail. Therefore, how to enable the fingerprint sensor module to sense a uniform optical signal intensity is a research effort by those skilled in the art.
  • the present invention is directed to an electronic device, which has a good fingerprint sensing effect.
  • An embodiment of the present invention provides an electronic device for sensing a fingerprint image of a finger, and includes a light-emitting element, a sensing module, and a controller.
  • the light-emitting element includes a plurality of light-emitting pixels arranged in an array, has a fingerprint sensing area, and is used to provide an irradiating light beam to the finger.
  • the sensing module is disposed under the fingerprint sensing area, and is used for receiving the irradiated light beam that reaches the sensing module after being reflected by the finger to generate a fingerprint image.
  • the controller is electrically connected to the light emitting element to control the light emission of the light emitting element, wherein the fingerprint sensing area is divided into at least a first area and a second area from its center to its periphery.
  • the controller controls the light-emitting time of the light-emitting pixel in the first area to be shorter than the light-emitting time of the light-emitting pixel in the second area.
  • the controller controls the light-emitting time of the light-emitting pixels from the center to the periphery in the fingerprint sensing area to show an increasing trend.
  • the light-emitting element is a transparent display panel.
  • the transparent display panel is an organic light emitting diode display panel.
  • the sensing module includes an image sensor.
  • the sensing module since the light-emitting time of the light-emitting pixels in the first area is controlled by the controller to be shorter than the light-emitting time of the light-emitting pixels in the second area, in the unit time, the sensing module The light energy sensed by the center of the sensor is close to the light energy sensed by the edge of the sensing module. In this way, the image sensed by the sensing module can have uniform brightness, and the situation that the middle bright edge is dark is suppressed.
  • FIG. 1A is a schematic cross-sectional view of an electronic device according to an embodiment of the invention.
  • FIG. 1B is a schematic top view of the fingerprint sensing area of the light-emitting element in FIG. 1A.
  • FIG. 2 is a light intensity distribution diagram of an irradiation beam emitted by a light-emitting element of the electronic device in FIG. 1A.
  • FIG. 3 is a diagram showing the light intensity distribution of the image detected by the sensing module if the light-emitting time of all the light-emitting pixels in the fingerprint sensing area is the same.
  • FIG. 4 is a diagram showing the light emission time distribution of light-emitting pixels at various positions in the fingerprint sensing area of the electronic device of FIG. 1A.
  • FIG. 5 is a distribution diagram of light energy detected by the sensing module of the electronic device in FIG. 1A per unit time.
  • FIG. 1A is a schematic cross-sectional view of an electronic device according to an embodiment of the present invention
  • FIG. 1B is a schematic top view of the fingerprint sensing area of the light-emitting element in FIG. 1A. Please refer to FIGS. 1A and 1B at the same time.
  • the electronic device 100 of this embodiment is used to sense a fingerprint image of a user's finger 10.
  • the electronic device 100 includes a light-emitting element 20, a sensing module 60 and a controller 80.
  • the light-emitting element 20 includes a plurality of light-emitting pixels arranged in an array, and has a fingerprint sensing area 22, and is used to provide a light beam to the user's finger 10, and the user can place the finger 10 on the fingerprint sensing area 22 to perform Fingerprint sensing.
  • the light-emitting element 20 is, for example, a display panel (for example, a transparent display panel), a touch display panel (for example, a transparent touch display panel), or a combination of the above and a finger pressure plate.
  • the light-emitting element 20 is, for example, an organic light-emitting diode display panel (OLED display panel), but the invention is not limited to this.
  • the light-emitting element 20 may be a touch display panel, such as an organic light emitting diode display panel with multiple touch electrodes.
  • the multiple touch electrodes can be formed on the outer surface of the organic light emitting diode display panel or embedded in the organic light emitting diode display panel, and the multiple touch electrodes can be touched by self-capacitance or mutual capacitance. Detection.
  • the light-emitting element 20 may be a combination of a finger pressure plate and a display panel or a combination of a finger pressure plate and a touch display panel.
  • the electronic device 100 may further include an optical module 40, which is disposed between the fingerprint sensing area 22 and the sensing module 60 to guide the irradiation light beam reflected by the finger 10 to the sensing module 60 to form a fingerprint image.
  • the optical module 40 is, for example, a lens group, has a collimator structure, and/or includes a micro-lens layer and/or pin-holes layer.
  • the optical module 40 is, for example, a lens group, including a combination of one or more optical lenses with refractive power, such as non-planar lenses such as bi-concave lenses, bi-convex lenses, meniscus lenses, convex-concave lenses, plano-convex lenses, and plano-concave lenses.
  • the present invention does not limit the type and type of the optical module 40.
  • the optical module 40 is composed of two lenses, but in other embodiments, it can also be composed of three lenses or four lenses, and the present invention is not limited thereto.
  • the sensing module 60 is disposed under the fingerprint sensing area 22 to receive the irradiated light beam that reaches the sensing module after being reflected by the finger 10 to generate a fingerprint image.
  • the sensing module 60 includes an image sensor, and the image sensor includes a plurality of sensing pixels, and the plurality of sensing pixels are arranged in a sensing array, wherein each sensing pixel may include at least one photodiode, but The present invention is not limited to this.
  • the user places the finger 10 close to or placed on the fingerprint sensing area 22 of the light-emitting element 20, and the light-emitting element 20 emits an illuminating beam to illuminate the finger 10, which is reflected by the finger and then sequentially passes through the light-emitting element.
  • the element 20 and the optical module 40 are transferred to the sensing module 60 for fingerprint sensing.
  • the electronic device 100 further includes a controller 80 electrically connected to the light emitting element 20 to control the light emission of the light emitting element 20.
  • the fingerprint sensing area 22 can be divided into at least a first area 222 and a second area 224 from its center to its periphery, and when the light emitting element 20 provides an illumination beam to illuminate the finger 10, the controller 80 controls the light emission in the first area 222
  • the light-emitting time of the pixel is shorter than the light-emitting time of the light-emitting pixel in the second area 224.
  • the light energy sensed by the center of the sensing module 60 is close to the light energy sensed by the edge of the sensing module 60, so that the sensing module
  • the sensed image can have relatively uniform brightness, and the situation that the middle bright edge of the sensed image in the prior art is dark is suppressed.
  • the controller 80 controls the light-emitting time of the light-emitting pixels from the center to the periphery in the fingerprint sensing area 22 to show an increasing trend, which can further enhance The brightness of the image sensed by the detection module 60 is uniform across the entire surface, so as to further improve the quality of the fingerprint image, thereby effectively improving the success rate and accuracy of fingerprint recognition.
  • FIG. 2 is a light intensity distribution diagram of an irradiation beam emitted by a light-emitting element of the electronic device in FIG. 1A. 1A, 1B and 2 at the same time, when the user places a finger 10 or an object on the fingerprint sensing area 22 of the light-emitting element 20 for fingerprint recognition and sensing, the fingerprint sensing area 22 of the light-emitting element 20 will The illumination beam is emitted to illuminate the finger 10 or the object. At this time, the light intensity in the fingerprint sensing area 22 is, for example, uniform. At this time, if all the light-emitting pixels in the fingerprint sensing area 22 have the same light-emitting time, the light intensity of the image detected by the sensing module 60 will be as shown in FIG.
  • the controller 80 controls the light-emitting time of the light-emitting pixels from the center to the periphery in the fingerprint sensing area 22 to show an increasing trend.
  • the sensing of each position on the sensing module 60 The light energy detected by the pixel per unit time is uniform, as shown in FIG. 5, and the light energy detected per unit time is reflected in the brightness of the image sensed by the sensing module 60.
  • the sensing module 60 can sense an image with uniform brightness.
  • the center line C1 in FIGS. 2 and 4 corresponds to the center position of the fingerprint sensing area 22, that is, the position in the figure is 0, while the center line C2 in FIGS. 3 and 5 corresponds to the sensor module 60
  • the center position, that is, the position in the figure is 0.
  • the electronic device 100 can be a handheld electronic device, such as a smart phone, a tablet computer, etc., and the light-emitting element 20 can be used as a display to show what the user wants to watch when fingerprint recognition is not performed.
  • the light emitting element 20 can emit light on the entire surface or only in the fingerprint sensing area 22 to generate an illumination beam for illuminating the finger 10.
  • the controller 80 is, for example, a central processing unit (CPU), a microprocessor (microprocessor), a digital signal processor (digital signal processor, DSP), a programmable controller, and a programmable controller.
  • CPU central processing unit
  • microprocessor microprocessor
  • DSP digital signal processor
  • programmable controller programmable controller
  • programmable controller programmable controller
  • programmable controller programmable controller
  • programmable controller 80 is, for example, a central processing unit (CPU), a microprocessor (microprocessor), a digital signal processor (digital signal processor, DSP), a programmable controller, and a programmable controller.
  • a logic device programmable logic device, PLD
  • the functions of the controller 80 can be implemented as multiple program codes. These program codes are stored in a memory, and the controller 80 executes the program codes.
  • each function of the controller 80 may be implemented as one or more circuits. The present invention does not limit the implementation of the functions of the controller 80 by means of software or
  • the controller 80 can also be electrically connected to the sensing module 60 to synchronize the light-emitting time of the light-emitting element 20 with the sensing time of the sensing module 60.
  • the light-emitting time of the light-emitting pixels in the first area is controlled by the controller to be shorter than the light-emitting time of the light-emitting pixels in the second area, the Among them, the light energy sensed by the center of the sensing module is close to the light energy sensed by the edge of the sensing module. In this way, the image sensed by the sensing module can have uniform brightness, and the situation that the middle bright edge is dark is suppressed.

Landscapes

  • Engineering & Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Multimedia (AREA)
  • Theoretical Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Inorganic Chemistry (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Image Input (AREA)
  • Measurement Of The Respiration, Hearing Ability, Form, And Blood Characteristics Of Living Organisms (AREA)

Abstract

本发明提供一种电子装置,用以感测手指的指纹图像,且包括发光元件、感测模块及控制器。发光元件包括多个排成阵列的发光像素,具有指纹感测区域,且用以提供照射光束至手指。感测模块配置于指纹感测区域的下方,用以接收经手指反射后到达感测模块的照射光束以产生指纹图像。控制器电性连接至发光元件,以控制发光元件的发光,其中指纹感测区域从其中心至其外围至少划分为第一区域及第二区域。当发光元件提供照射光束以照射手指时,控制器控制第一区域中的发光像素的发光时间短于第二区域中的发光像素的发光时间。

Description

电子装置 技术领域
本发明涉及一种电子装置,且特别是涉及一种可感测指纹的电子装置。
背景技术
随着电子科技与制造技术的不断演进与改良,资讯电子产品亦一直推陈出新。电脑、手机、摄相机等电子产品已经是现代人必备的工具。此外,现今的智能型行动装置中,亦需要整合指纹感测装置,以加强智能型行动装置的使用安全性并且支援更多智能型功能。
在目前,使用者可将手指按压于手机的显示器上以进行指纹感测。然而,在感测的过程中,感测模块中靠近周围的感测像素所感测到的光强度往往较低于感测模块中靠近中央的感测像素所感测到的光强度,以致于感测模块所得到的光信号强度具有落差,会影响指纹感测的正确性。所以在目前的解决方法中,常以后端的软件来修正信号强度,不过修正后的图像仍是有副作用,例如会将杂讯放大而造成细节损失等副作用。因此,如何让指纹感测模块可以感测到均匀的光信号强度,是本领域技术人员致力于研究的。
发明内容
本发明是针对一种电子装置,其具有良好的指纹感测效果。
本发明的实施例提出一种电子装置,用以感测手指的指纹图像,且包括发光元件、感测模块及控制器。发光元件包括多个排成阵列的发光像素,具有指纹感测区域,且用以提供照射光束至手指。感测模块配置于指纹感测区域的下方,用以接收经手指反射后到达感测模块的照射光束以产生指纹图像。控制器电性连接至发光元件,以控制发光元件的发光,其中指纹感测区域从其中心至其外围至少划分为第一区域及第二区域。当发光元件提供照射光束以照射手指时,控制器控制第一区域中的发光像素的发光时间短于第二区域中的发光像素的发光时间。
在根据本发明的实施例的电子装置中,当发光元件提供照射光束以照射手指时,控制器控制指纹感测区域中从中心至外围的发光像素的发光时间呈现递增的趋势。
在根据本发明的实施例的电子装置中,发光元件为透明显示面板。
在根据本发明的实施例的电子装置中,透明显示面板为有机发光二极管显示面板。
在根据本发明的实施例的电子装置中,感测模块包括图像传感器。
在本发明的实施例的电子装置中,由于藉由控制器来控制第一区域中的发光像素的发光时间短于第二区域中的发光像素的发光时间,因此在单位时间中,感测模块的中心所感测到的光能量接近于感测模块的边缘所感测到的光能量。如此一来,感测模块所感测到的图像便能够有均匀的亮度,而抑制了中间亮边缘暗的情形。
附图说明
包含附图以便进一步理解本发明,且附图并入本说明书中并构成本说明书的一部分。附图说明本发明的实施例,并与描述一起用于解释本发明的原理。
图1A为本发明的一实施例的电子装置的剖面示意图。
图1B为图1A中的发光元件的指纹感测区域的上视示意图。
图2为图1A的电子装置的发光元件所发出的照射光束的光强度分布图。
图3为若指纹感测区域中的所有发光像素的发光时间皆一样长时感测模块所侦测到的图像的光强度分布图。
图4为图1A的电子装置的指纹感测区域中各位置的发光像素的发光时间分布图。
图5为图1A的电子装置的感测模块在单位时间内所侦测到的光能量的分布图。
具体实施方式
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,相同元件符号在图式和描述中用来表示相同或相似部分。
图1A为本发明的一实施例的电子装置的剖面示意图,而图1B为图1A中的发光元件的指纹感测区域的上视示意图。请同时参考图1A及图1B,本实施例的电子装置100用以感测使用者的手指10的指纹图像,电子装置100包括发光元件20、感测模块60及控制器80。发光元件20包括多个排成阵列的发光像素,具有指纹感测区域22,且用以提供照射光束至使用者的手指10,而使用者可将手指10放置在指纹感测区域22上以进行指纹感测。
在本实施例中,发光元件20例如是显示面板(例如为透明显示面板)、触控显示面板(例如为透明触控显示面板)或上述与指压板的组合。举例而言,发光元件20例如为有机发光二极管显示面板(Organic Light-Emitting Diode display panel,OLED display panel),但本发明并不限于此。替代地,发光元件20可以是触控显示面板,如具有多个触控电极的有机发光二极管显示面板。所述多个触控电极可以形成在有机发光二极管显示面板的外表面上或是内嵌于有机发光二极管显示面板中,且多个触控电极可以藉由自容或互容的方式进行触控侦测。或者,发光元件20可以是指压板与显示面板的组合或指压板与触控显示面板的组合。
在本实施例中,电子装置100还可包括光学模块40,配置于指纹感测区域22与感测模块60之间,以将被手指10反射的照射光束导引至感测模块60以形成指纹图像。光学模块40例如是透镜组,具有准直器(collimator)结构,以及/或是包含有微透镜(micro-lens)层及/或微孔(pin-holes)层。在本实施例中,光学模块40例如为透镜组,包含具有屈光度的一或多个光学镜片的组合,例如包含双凹透镜、双凸透镜、凹凸透镜、凸凹透镜、平凸透镜以及平凹透镜等非平面镜片的各种组合,本发明对光学模块40的型态及其种类并不加以限制。举例而言,光学模块40由两片透镜所组成,但在其他实施例中,亦可以是三片透镜或四片透镜组成,本发明并不限于此。
在本实施例中,感测模块60配置于指纹感测区域22的下方,用以接收经手指10反射后到达感测模块的照射光束以产生指纹图像。感测模块60包括图像传感器,而图像传感器包括有多个感测像素,而多个感测像素是排列成一个感测阵列,其中每一个感测像素可以包含至少一个光电二极管 (photodiode),但本发明并不限于此。在进行指纹感测时,使用者将手指10靠近或放置于发光元件20的指纹感测区域22上,而发光元件20会发出照射光束照射至手指10,经手指反射后会依序传递通过发光元件20以及光学模块40,并且传递至感测模块60以进行指纹感测。
此外,电子装置100还包括控制器80,电性连接至发光元件20,以控制发光元件20的发光。指纹感测区域22从其中心至其外围可至少划分为第一区域222及第二区域224,且当发光元件20提供照射光束以照射手指10时,控制器80控制第一区域222中的发光像素的发光时间短于第二区域224中的发光像素的发光时间。如此一来,在单位时间(例如一次指纹感测的时间)中,感测模块60的中心所感测到的光能量接近于感测模块60的边缘所感测到的光能量,而使得感测模块所感测到的图像能够有较为均匀的亮度,而抑制了现有技术中感测到的图像的中间亮边缘暗的情形。在一实施例中,当发光元件20提供照射光束以照射手指10时,控制器80控制指纹感测区域22中从中心至外围的发光像素的发光时间呈现递增的趋势,如此能够进一步地使感测模块60所感测到的图像的亮度具有整面皆均匀的情形,以进一步提升指纹图像的质量,进而有效提升指纹识别的成功率与准确度。
图2为图1A的电子装置的发光元件所发出的照射光束的光强度分布图。请同时参考图1A、图1B及图2,当使用者将手指10或物体放置于发光元件20的指纹感测区域22上以进行指纹识别感测时,发光元件20的指纹感测区域22会发出照射光束,以照射手指10或物体,此时,指纹感测区域22中的光强度例如是均匀的。此时,若指纹感测区域22中的所有发光像素的发光时间皆一样长,则感测模块60所侦测到的图像的光强度则如图3所示,会有中间亮边缘暗的情形。然而,在本实施例中,控制器80控制指纹感测区域22中从中心至外围的发光像素的发光时间呈现递增的趋势,如图4所示,则感测模块60上各位置的感测像素在单位时间所侦测到的光能量则是均匀的,如图5所示,而单位时间侦测到的光能量则会反应在感测模块60所感测到的图像的亮度上。也就是说,通过控制器80作如上述的控制,感测模块60可以感测到亮度均匀的图像。在图2与图4中的中心线C1是对应到指纹感测区域22的中心位置,即图中位置为0处,而在图3与图5的中心线C2是对应到感测模块60的中心位置,即图中位置为0处。
在本实施例中,电子装置100可为手持电子装置,例如是智慧型手机、平板电脑等手持电子装置,而发光元件20在不作指纹识别的时候,可用以作为显示器以显示使用者所需观看的帧(frame)。在作指纹识别时,发光元件20可整面发光或仅在指纹感测区域22发光,以产生用以照明手指10的照射光束。
在一实施例中,控制器80例如为中央处理单元(central processing unit,CPU)、微处理器(microprocessor)、数字信号处理器(digital signal processor,DSP)、可程序化控制器、可程序化逻辑装置(programmable logic device,PLD)或其他类似装置或这些装置的组合,本发明并不加以限制。此外,在一实施例中,控制器80的各功能可被实作为多个程序码。这些程序码会被存储在一个存储器中,由控制器80来执行这些程序码。或者,在一实施例中,控制器80的各功能可被实作为一或多个电路。本发明并不限制用软件或硬件的方式来实作控制器80的各功能。
此外,在本实施例中,控制器80还可电性连接至感测模块60,以使发光元件20的发光时间与感测模块60的感测时间同步化。
综上所述,在本发明的实施例的电子装置中,由于藉由控制器来控制第一区域中的发光像素的发光时间短于第二区域中的发光像素的发光时间,因此在单位时间中,感测模块的中心所感测到的光能量接近于感测模块的边缘所感测到的光能量。如此一来,感测模块所感测到的图像便能够有均匀的亮度,而抑制了中间亮边缘暗的情形。
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。

Claims (5)

  1. 一种电子装置,其特征在于,用以感测手指的指纹图像,且包括:
    发光元件,包括多个排成阵列的发光像素,具有指纹感测区域,且用以提供照射光束至所述手指;
    感测模块,配置于所述指纹感测区域的下方,用以接收经所述手指反射后到达所述感测模块的所述照射光束以产生所述指纹图像;以及
    控制器,电性连接至所述发光元件,以控制所述发光元件的发光,其中所述指纹感测区域从其中心至其外围至少划分为第一区域及第二区域,且当所述发光元件提供所述照射光束以照射所述手指时,所述控制器控制所述第一区域中的发光像素的发光时间短于所述第二区域中的发光像素的发光时间。
  2. 根据权利要求1所述的电子装置,其特征在于,当所述发光元件提供所述照射光束以照射所述手指时,所述控制器控制所述指纹感测区域中从所述中心至所述外围的发光像素的发光时间呈现递增的趋势。
  3. 根据权利要求1所述的电子装置,其特征在于,所述发光元件为透明显示面板。
  4. 根据权利要求3所述的电子装置,其特征在于,所述透明显示面板为有机发光二极管显示面板。
  5. 根据权利要求1所述的电子装置,其特征在于,所述感测模块包括图像传感器。
PCT/CN2019/122322 2019-06-19 2019-12-02 电子装置 WO2020253132A1 (zh)

Priority Applications (2)

Application Number Priority Date Filing Date Title
KR1020217035429A KR20210144869A (ko) 2019-06-19 2019-12-02 전자 장치
US17/601,442 US20220198819A1 (en) 2019-06-19 2019-12-02 Electronic device

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US201962863270P 2019-06-19 2019-06-19
US62/863,270 2019-06-19

Publications (1)

Publication Number Publication Date
WO2020253132A1 true WO2020253132A1 (zh) 2020-12-24

Family

ID=69340576

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2019/122322 WO2020253132A1 (zh) 2019-06-19 2019-12-02 电子装置

Country Status (5)

Country Link
US (1) US20220198819A1 (zh)
KR (1) KR20210144869A (zh)
CN (2) CN210721505U (zh)
TW (2) TWM592540U (zh)
WO (1) WO2020253132A1 (zh)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20220082075A (ko) * 2020-03-02 2022-06-16 에지스 테크놀러지 인코포레이티드 지문 감지 시스템
TWI827371B (zh) * 2021-11-19 2023-12-21 金佶科技股份有限公司 光學指紋取像裝置

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050105785A1 (en) * 2003-11-18 2005-05-19 Canon Kabushiki Kaisha Image pick-up apparatus, fingerprint certification apparatus and image pick-up method
US20130127714A1 (en) * 2011-11-22 2013-05-23 Pixart Imaging Inc. User interface system and optical finger mouse system
CN107609532A (zh) * 2017-09-27 2018-01-19 敦捷光电股份有限公司 一种具有生医感测功能的光学指纹感测装置
CN108694368A (zh) * 2017-03-30 2018-10-23 神盾股份有限公司 影像感测装置及感测方法
CN109858434A (zh) * 2019-01-29 2019-06-07 上海天马微电子有限公司 显示面板及其指纹识别方法和显示装置

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107656665A (zh) * 2016-07-25 2018-02-02 印象认知(北京)科技有限公司 基于显示屏的指纹采集控制方法、装置及电子设备
KR102510916B1 (ko) * 2017-11-02 2023-03-17 삼성디스플레이 주식회사 표시장치 및 그의 구동 방법
US10984213B2 (en) * 2018-03-27 2021-04-20 Shenzhen GOODIX Technology Co., Ltd. 3-dimensional optical topographical sensing of fingerprints using under-screen optical sensor module
KR20200022077A (ko) * 2018-08-22 2020-03-03 (주)포인트엔지니어링 생체인식센서 및 이를 구비한 디스플레이 장치
CN109564631B (zh) * 2018-11-14 2022-11-25 深圳市汇顶科技股份有限公司 一种屏下光学指纹感测装置及感测方法

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050105785A1 (en) * 2003-11-18 2005-05-19 Canon Kabushiki Kaisha Image pick-up apparatus, fingerprint certification apparatus and image pick-up method
US20130127714A1 (en) * 2011-11-22 2013-05-23 Pixart Imaging Inc. User interface system and optical finger mouse system
CN108694368A (zh) * 2017-03-30 2018-10-23 神盾股份有限公司 影像感测装置及感测方法
CN107609532A (zh) * 2017-09-27 2018-01-19 敦捷光电股份有限公司 一种具有生医感测功能的光学指纹感测装置
CN109858434A (zh) * 2019-01-29 2019-06-07 上海天马微电子有限公司 显示面板及其指纹识别方法和显示装置

Also Published As

Publication number Publication date
US20220198819A1 (en) 2022-06-23
CN110765988A (zh) 2020-02-07
TWM592540U (zh) 2020-03-21
KR20210144869A (ko) 2021-11-30
TW202101285A (zh) 2021-01-01
CN210721505U (zh) 2020-06-09
TWI742477B (zh) 2021-10-11

Similar Documents

Publication Publication Date Title
US11232546B2 (en) Texture detection method, texture image compensation method and device, and electronic device
TWI658410B (zh) 可變光場的生物影像感測系統
US10339359B2 (en) Display panel and display device
CN108287634B (zh) 触控显示面板、显示装置和触控显示面板的驱动方法
TWI701483B (zh) 顯示元件的指紋感測區域與指紋感測模組的對齊方法
US20210326618A1 (en) Display apparatus and pattern identification method thereof
WO2017005147A1 (en) Array substrate, display panel and display apparatus having the same, and driving method thereof
WO2020077498A1 (zh) 发光装置、生物特征检测装置和电子设备
JP2018506806A (ja) 光学画像センサの上方にピンホールアレイマスクを備える電子デバイス及び関連する方法
US20100026453A1 (en) Biometrics authentication system
KR101303443B1 (ko) 액정표시장치
TWI742477B (zh) 電子裝置
US10558838B2 (en) Optimized scan sequence for biometric sensor
TW202023086A (zh) 光學指紋感測模組
WO2020073166A1 (zh) 指纹识别方法、装置和终端设备
CN112668388A (zh) 包含取代光电二极管的光圈以获得增加的光通过量的光学感测系统和装置
WO2020243928A1 (zh) 光学图像采集单元、光学图像采集系统、显示屏和电子设备
US20200117933A1 (en) Light-emitting signal intensity control method and electronic device
WO2020253190A1 (zh) 电子装置
US10055636B2 (en) Light homogenizing device and biometric identifying device
CN211124077U (zh) 一种电子设备
WO2020253250A1 (zh) 电子装置
CN206849036U (zh) 生物辨识装置
CN114282564A (zh) 一种电子设备
CN110543821A (zh) 纹路识别装置及其操作方法

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: 19933724

Country of ref document: EP

Kind code of ref document: A1

ENP Entry into the national phase

Ref document number: 20217035429

Country of ref document: KR

Kind code of ref document: A

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 19933724

Country of ref document: EP

Kind code of ref document: A1