Abstract:
A display device includes a first substrate and an insulating layer over the first substrate. The display device further includes a semiconductor layer over the insulating layer and a dielectric layer over the semiconductor layer, having an opening partially exposing the semiconductor layer and the insulating layer, wherein the opening has a first width along a first direction. In addition, the display device further includes a conductive line extending over the dielectric layer along a second direction that is different from the first direction and filling the opening to electrically connect to the semiconductor layer exposed by the opening. The conductive line includes a first portion over a top surface of the dielectric layer and a second portion in the opening. The first portion of the conductive line has a second width along the first direction. The first width is greater than the second width.
Abstract:
An electronic device is provided. The electronic device includes an optical sensing module that includes an optical sensor array. The optical sensor array includes at least one optical sensor, at least one transparent layer disposed on the optical sensor array, and a microlens array. The microlens array includes at least one microlens and is disposed on the transparent layer.
Abstract:
An optical sensing device including a substrate, a light-sensing element, a light-shielding layer, an insulating layer and a light-collecting element is disclosed. The light-sensing element is disposed on the substrate. The light-shielding layer is disposed on the light-sensing element and includes a first opening overlapping the light-sensing element. The insulating layer is disposed on the light-shielding layer and includes a second opening overlapping the first opening. The light-collecting element is disposed on the insulating layer and overlaps the second opening and includes a focus distance F and a first refractive index N1. A second refractive index N3 of an external medium, the first refractive index N1, the focus distance F, and a radius R′ of curvature of the light-collecting element meet the following equation: N1/N3=F/(F−R′).
Abstract:
A sensing device including a substrate, a circuit layer, and a plurality of sensing units is provided. The circuit layer is disposed on the substrate and includes a plurality of driving circuits. The plurality of sensing units are disposed on the circuit layer, and each of the sensing units includes a supporting part and a sensing part. The supporting part is electrically connected to one of the plurality of driving circuits. The sensing part is electrically connected to the supporting part, and the sensing part is separated from a first cavity by the supporting part and the circuit layer. In a normal direction of the substrate, at least a portion of the supporting part is disposed between the circuit layer and the sensing part.
Abstract:
A sensing device includes a substrate, a first circuit, a second circuit, a first photodetector, and a second photodetector. The first circuit is disposed on the substrate, and configured to sense a fingerprint. The second circuit is disposed on the substrate, and configured to detect a data of a living body. The first photodetector is electrically connected to the first circuit. The second photodetector is electrically connected to the second circuit. The area of the second photodetector is larger than the area of the first photodetector.
Abstract:
An electronic device including a substrate, a thin film transistor, a micro pump, and a micro fluid platform is provided. The thin film transistor is disposed on the substrate. The micro pump is disposed on the substrate and electrically connected to the thin film transistor. The micro fluid platform is disposed on the substrate and coupled to the micro pump. The micro pump is configured to travel a to-be-test sample to the micro fluid platform.
Abstract:
The display device includes a first substrate; an active layer disposed on the first substrate; a first insulation layer disposed on the active layer; a first electrode layer disposed on the first insulation layer including a gate electrode line extending along a first direction and a protruding portion extending along a second direction; a second insulation layer disposed on the first electrode layer; and a second electrode layer disposed on the second insulation layer. The second electrode layer includes a date line extending along the second direction and a conductive layer. The conductive layer includes a first conductive portion and a second conductive portion, wherein the first conductive portion has a first maximum width A along the first direction, and the second conductive portion has a second maximum width B along the first direction. The first maximum width A is less than the second maximum width B.
Abstract:
An electronic device is provided. The electronic device includes a first substrate, including a non-peripheral area and a peripheral area; a first reset unit, disposed in the peripheral area; and a first integration unit, disposed in the non-peripheral area. The first integration unit includes a first sensing unit, coupled to the first reset unit; and a first pixel unit, coupled to the first sensing unit.
Abstract:
An electronic device and a manufacturing method for the electronic device are provided. The electronic device includes a display structure layer and a light sensing panel. The light sensing panel includes a first substrate; a second substrate, wherein the second substrate is disposed between the first substrate and the display structure layer; a plurality of sensing units, disposed on the first substrate and between the first substrate and the second substrate; and an optical structure layer, disposed on the second substrate and between the second substrate and the display structure layer.
Abstract:
The display device includes a first substrate; an active layer disposed on the first substrate; a first insulation layer disposed on the active layer; a first electrode layer disposed on the first insulation layer including a gate electrode line extending along a first direction and a protruding portion extending along a second direction; a second insulation layer disposed on the first electrode layer; and a second electrode layer disposed on the second insulation layer. The second electrode layer includes a date line extending along the second direction and a conductive layer. The conductive layer includes a first conductive portion and a second conductive portion, wherein the first conductive portion has a first maximum width A along the first direction, and the second conductive portion has a second maximum width B along the first direction. The first maximum width A is less than the second maximum width B.