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公开(公告)号:US12081171B2
公开(公告)日:2024-09-03
申请号:US17923653
申请日:2021-05-07
发明人: Yuto Yakubo , Shoki Miyata , Akio Suzuki , Takayuki Ikeda
IPC分类号: H03D7/14 , H01L29/786
CPC分类号: H03D7/1458 , H01L29/78648 , H01L29/7869
摘要: A novel semiconductor device is provided. The semiconductor device includes a mixer circuit and a bias circuit. The mixer circuit includes a voltage-to-current conversion portion, a current switch portion, and a current-to-voltage conversion portion. The bias circuit includes a bias supply portion and a first transistor. The voltage-to-current conversion portion includes a second transistor and a third transistor. The bias supply portion has a function of outputting a bias voltage to be supplied to a gate of the second transistor and a gate of the third transistor. One of a source and a drain of the first transistor is electrically connected to the gate of the second transistor and the gate of the third transistor. The first transistor is turned off when the bias voltage is supplied, and the first transistor is turned on when the supply of the bias voltage is stopped.
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公开(公告)号:US12080720B2
公开(公告)日:2024-09-03
申请号:US18207175
申请日:2023-06-08
发明人: Shunpei Yamazaki , Jun Koyama , Hiroyuki Miyake
IPC分类号: H01L27/12 , G09G3/20 , G11C19/28 , H01L29/04 , H01L29/10 , H01L29/24 , H01L29/417 , H01L29/423 , H01L29/45 , H01L29/786 , H01L29/49 , H10K59/121
CPC分类号: H01L27/1229 , G09G3/20 , G11C19/28 , H01L27/1225 , H01L27/1251 , H01L29/045 , H01L29/1033 , H01L29/24 , H01L29/247 , H01L29/41733 , H01L29/42372 , H01L29/45 , H01L29/78648 , H01L29/7869 , H01L29/78693 , G09G2310/0267 , G09G2310/0275 , G09G2310/0286 , H01L27/12 , H01L27/1214 , H01L29/4908 , H01L29/78609 , H10K59/1213
摘要: An object of an embodiment of the present invention is to manufacture a semiconductor device with high display quality and high reliability, which includes a pixel portion and a driver circuit portion capable of high-speed operation over one substrate, using transistors having favorable electric characteristics and high reliability as switching elements. Two kinds of transistors, in each of which an oxide semiconductor layer including a crystalline region on one surface side is used as an active layer, are formed in a driver circuit portion and a pixel portion. Electric characteristics of the transistors can be selected by choosing the position of the gate electrode layer which determines the position of the channel. Thus, a semiconductor device including a driver circuit portion capable of high-speed operation and a pixel portion over one substrate can be manufactured.
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公开(公告)号:US12080377B2
公开(公告)日:2024-09-03
申请号:US17802281
申请日:2021-03-04
IPC分类号: G11C7/10 , G11C7/12 , G11C8/08 , H01L29/786 , H10B12/00
CPC分类号: G11C7/1096 , G11C7/12 , G11C8/08 , H01L29/7869 , H10B12/31 , H10B12/50
摘要: A semiconductor device with a novel structure is provided. The semiconductor device includes a plurality of arithmetic blocks each including an arithmetic circuit portion and a memory circuit portion. The arithmetic circuit portion and the memory circuit portion are electrically connected to each other. The arithmetic circuit portion and the memory circuit portion have an overlap region. The arithmetic circuit portion includes, for example, a Si transistor, and the memory circuit portion includes, for example, an OS transistor. The arithmetic circuit portion has a function of performing product-sum operation. The memory circuit portion has a function of retaining weight data. A first driver circuit has a function of writing the weight data to the memory circuit portion. The weight data is written to all the memory circuit portions included in the same column with the use of the first driver circuit.
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公开(公告)号:US12080254B2
公开(公告)日:2024-09-03
申请号:US18141029
申请日:2023-04-28
发明人: Hajime Kimura
CPC分类号: G09G3/3607 , G09G3/3406 , G09G3/36 , G09G3/3614 , G09G3/3685 , G09G5/10 , G09G3/3413 , G09G2300/0452 , G09G2320/0233 , H04N5/208
摘要: The resolution of a low-resolution image is made high and a stereoscopic image is displayed. Resolution is made high by super-resolution processing. In this case, the super-resolution processing is performed after edge enhancement processing is performed. Accordingly, a stereoscopic image with high resolution and high quality can be displayed. Alternatively, after image analysis processing is performed, edge enhancement processing and super-resolution processing are concurrently performed. Accordingly, processing time can be shortened.
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公开(公告)号:US12080104B2
公开(公告)日:2024-09-03
申请号:US17637563
申请日:2020-09-01
发明人: Teppei Oguni , Takahiro Fukutome
IPC分类号: G06V40/18 , G06T7/60 , G06V10/56 , G06V10/764 , G06V10/774
CPC分类号: G06V40/197 , G06T7/60 , G06V10/56 , G06V10/764 , G06V10/774 , G06V40/193 , G06T2207/10016 , G06T2207/20081 , G06T2207/30201
摘要: Person's conditions are classified according to his/her eye data. Person's conditions are classified according to his/her eye data using an imaging device, a feature extraction unit, and a classifier. The imaging device has a function of generating a group of images by continuous image capturing, and the group of images preferably includes an image of an eye area. The eye includes a black area and a white area. The method includes the steps in which the feature extraction unit extracts the eye area from the group of images, extracts a blinking amplitude, detects an image for determining start of eye blinking, stores an image for determining end of eye blinking as first data, and stores an image after a predetermined time elapsed from the first data as second data. The step in which the feature extraction unit extracts the white area from the first data and the second data is included. The classifier can use the white area as learning data.
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公开(公告)号:US12080095B2
公开(公告)日:2024-09-03
申请号:US17639632
申请日:2020-09-02
CPC分类号: G06V40/1365 , G06F3/0412 , G06V40/1318 , H04N25/75
摘要: To provide an imaging device having a function of biometric authentication and a function of a touch sensor or a near touch sensor. The imaging device includes pixels, current mirror circuits, and CDS circuits. The pixels, the current mirror circuits, and the CDS circuits are electrically connected to read lines. The current mirror circuit includes a first and a second transistor. One of a source and a drain of the first transistor is electrically connected to the read line, and a power supply potential is supplied to the other of a source and a drain of the second transistor. The imaging device outputs imaging data written to the pixel, as a first signal, to the read line in a first period, and then, resets the imaging data and outputs a second signal from the pixel to the read line in a second period. In the first period, a first potential is supplied to terminals, and in the second period, a second potential is supplied to terminals. A difference between the second potential and the power supply potential is greater than a difference between the first potential and the power supply potential.
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公开(公告)号:US20240292697A1
公开(公告)日:2024-08-29
申请号:US18689899
申请日:2022-09-05
发明人: Masahiro KATAYAMA , Yukinori SHIMA , Masataka NAKADA , Shingo EGUCHI , Daiki NAKAMURA , Koji KUSUNOKI
IPC分类号: H10K59/32 , G09G3/3233 , H10K59/131 , H10K59/38 , H10K59/80
CPC分类号: H10K59/32 , H10K59/131 , H10K59/38 , H10K59/805 , G09G3/3233 , G09G2300/0814 , G09G2300/0842 , G09G2320/0223
摘要: A display device in which a voltage drop is inhibited adequately is provided. The display device includes a first light-emitting device including a first light-emitting layer, a first charge-generation layer over the first light-emitting layer, and a second light-emitting layer over the first charge-generation layer; a first color filter overlapping with the first light-emitting device; a second light-emitting device including a third light-emitting layer, a second charge-generation layer over the third light-emitting layer, and a fourth light-emitting layer over the second charge-generation layer; a second color filter overlapping with the second light-emitting device; a common electrode included in the first light-emitting device and the second light-emitting device; and an auxiliary wiring electrically connected to the common electrode. The auxiliary wiring includes a first wiring layer and a second wiring layer, the second wiring layer is electrically connected to the first wiring layer through a contact hole of an insulating layer, and the second wiring layer has a lattice shape in a top view.
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公开(公告)号:US20240292669A1
公开(公告)日:2024-08-29
申请号:US18569769
申请日:2022-06-17
发明人: Shinya SASAGAWA , Ryota HODO , Kentaro SUGAYA , Yoshikazu HIURA , Takahiro FUJIE
IPC分类号: H10K59/122 , H10K59/12
CPC分类号: H10K59/122 , H10K59/1201
摘要: A display apparatus having high display quality is provided. The display apparatus includes a first pixel, a second pixel, a first insulating layer, and a second insulating layer over the first insulating layer; the first pixel includes a first pixel electrode, a first EL layer covering the first pixel electrode, a third insulating layer over the first EL layer, and a common electrode over the first EL layer and the third insulating layer; the second pixel includes a second pixel electrode, a second EL layer covering the second pixel electrode, a fourth insulating layer over the second EL layer, and the common electrode over the second EL layer and the fourth insulating layer; the first insulating layer and the third insulating layer each include a first protruding portion over the first pixel electrode; the first protruding portion is positioned outward from an end portion of the second insulating layer; the first insulating layer and the fourth insulating layer each include a second protruding portion over the second pixel electrode; the second protruding portion is positioned outward from an end portion of the second insulating layer; a side surface of the first protruding portion and a side surface of the second protruding portion each have a tapered shape in a cross-sectional view of the display apparatus.
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公开(公告)号:US20240292648A1
公开(公告)日:2024-08-29
申请号:US18645743
申请日:2024-04-25
发明人: Satoshi SEO , Hiromi SEO , Kunihiko SUZUKI , Kanta ABE , Yuji IWAKI , Naoaki HASHIMOTO , Tsunenori SUZUKI
IPC分类号: H10K50/16 , H10K50/11 , H10K50/15 , H10K50/17 , H10K50/81 , H10K50/82 , H10K59/00 , H10K85/30 , H10K101/40
CPC分类号: H10K50/16 , H10K50/11 , H10K50/15 , H10K50/171 , H10K50/81 , H10K50/82 , H10K59/00 , H10K85/321 , H10K2101/40
摘要: A novel light-emitting device is provided. A light-emitting device with high emission efficiency is provided. A light-emitting device with a long lifetime is provided. A light-emitting device with low driving voltage is provided. The light-emitting device includes an anode, a cathode, and an EL layer between the anode and the cathode. The EL layer includes a hole-injection layer, a light-emitting layer, and an electron-transport layer. The hole-injection layer is positioned between the anode and the light-emitting layer. The electron-transport layer is positioned between the light-emitting layer and the cathode. The hole-injection layer contains a first substance and a second substance. The first substance is an organic compound which has a hole-transport property and a HOMO level higher than or equal to −5.7 eV and lower than or equal to −5.4 eV. The second substance exhibits an electron-accepting property with respect to the first substance. The electron-transport layer contains a material whose resistance decreases with current flowing therethrough.
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公开(公告)号:US20240290252A1
公开(公告)日:2024-08-29
申请号:US18655975
申请日:2024-05-06
IPC分类号: G09G3/32 , H10K59/131
CPC分类号: G09G3/32 , H10K59/131 , G09G2300/0819 , G09G2300/0842 , G09G2310/02 , G09G2310/08 , G09G2330/021
摘要: A display apparatus having a wide range of threshold voltage compensation function is provided. In the display apparatus, a p-channel transistor is used as a driving transistor of the light-emitting device. Discharging is performed through a source-drain path while constant voltage is supplied to a gate so that Vth is extracted between the gate and the source. In addition, when a drain potential is set to the sum of forward voltage and a cathode potential of the light-emitting device or a potential sufficiently lower than the sum, it is possible to continue the discharging even when Vth is positive voltage. That is, compensation can be performed even in the case where Vth variation occurs from positive voltage to negative voltage.
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