Abstract:
A photosensitive device including a microlens substrate, a photosensitive element substrate, and an optical glue is provided. The microlens substrate includes a first substrate and microlenses. The first substrate has a first side and a second side opposite to the first side. The microlenses are located on the first side of the first substrate. The photosensitive element substrate includes a second substrate, active components, first electrodes, a second electrode, and an organic photosensitive material layer. The second substrate has a third side and a fourth side opposite to the third side. The second side of the first substrate faces the third side of the second substrate. The active components are located on the fourth side of the second substrate. The first electrodes are respectively electrically connected to the active components. The organic photosensitive material layer is located between the first electrodes and the second electrode.
Abstract:
A display apparatus includes a first substrate, a second substrate, a display medium, first signal lines, second signal lines, read-out lines and a repeating unit. The repeating unit includes a color pixel, a white pixel and a photosensitive structure. The color pixel is electrically connected to one first signal line and one second signal line. The white pixel is electrically connected to another first signal line and the same second signal line. The photosensitive structure is electrically connected to a read-out line and the second signal line. The photosensitive structure has a first electrode, a photoelectric conversion layer and a second electrode which are sequentially stacked on the inner surface of the first substrate. The first electrode is a transparent electrode, and an outer surface of the first substrate is a display surface.
Abstract:
A photo-sensing unit including a first electrode, a first insulation layer, a photo-sensing structure and a second electrode is provided. The first insulation layer covers the first electrode and has an opening exposing the first electrode. The photo-sensing structure is located on the first electrode and disposed in the opening of the first insulation layer. The photo-sensing structure includes a first photo-sensing layer and a second photo-sensing layer stacked with each other. A material of the first photo-sensing layer is SixGeyOz. A material of the second photo-sensing layer is SivOw. The second electrode covers the photo-sensing structure. A photo-sensing apparatus including the photo-sensing unit and a fabricating method of a photo-sensing unit are also provided.
Abstract:
A touch panel and fabricating method thereof are provided. The patterned transparent conductive layer, disposed on the substrate, includes first electrodes. The photo-sensing layers are disposed on the first electrodes. The first patterned conductive layer includes gate electrodes, scan lines and second electrodes. The gate electrodes and the scan lines are disposed on the substrate. The second electrodes are disposed on the photo-sensing layers. The first electrodes, the photo-sensing layers and the second electrodes constitute photo-sensors. The second patterned conductive layer includes source electrodes and drain electrodes, wherein the gate electrodes, the channel layers, the source electrodes and the drain electrodes constitute read-out transistors and each of the read-out transistors is electrically connected to the corresponding photo-sensor respectively.
Abstract:
A photosensitive device including a microlens substrate, a photosensitive element substrate, and an optical glue is provided. The microlens substrate includes a first substrate and microlenses. The first substrate has a first side and a second side opposite to the first side. The microlenses are located on the first side of the first substrate. The photosensitive element substrate includes a second substrate, active components, first electrodes, a second electrode, and an organic photosensitive material layer. The second substrate has a third side and a fourth side opposite to the third side. The second side of the first substrate faces the third side of the second substrate. The active components are located on the fourth side of the second substrate. The first electrodes are respectively electrically connected to the active components. The organic photosensitive material layer is located between the first electrodes and the second electrode.
Abstract:
A blood vessel scanning system and method are provided, which are adapted for user identification. The blood vessel scanning system is implemented for a head-mounted image viewing device. The blood vessel scanning method comprises the following steps: determining whether a user is authorized or not according to the blood vessel scanning image of the user; if the user is an authorized user, the blood vessel scanning system adjusts lens degree of the head-mounted image viewing device according to the pre-stored visual information of the user.
Abstract:
A touch panel and fabricating method thereof are provided. The patterned transparent conductive layer, disposed on the substrate, includes first electrodes. The photo-sensing layers are disposed on the first electrodes. The first patterned conductive layer includes gate electrodes, scan lines and second electrodes. The gate electrodes and the scan lines are disposed on the substrate. The second electrodes are disposed on the photo-sensing layers. The first electrodes, the photo-sensing layers and the second electrodes constitute photo-sensors. The second patterned conductive layer includes source electrodes and drain electrodes, wherein the gate electrodes, the channel layers, the source electrodes and the drain electrodes constitute read-out transistors and each of the read-out transistors is electrically connected to the corresponding photo-sensor respectively.
Abstract:
A blood vessel scanning system and method are provided, which are adapted for user identification. The blood vessel scanning system is implemented for a head-mounted image viewing device. The blood vessel scanning method comprises the following steps: determining whether a user is authorized or not according to the blood vessel scanning image of the user; if the user is an authorized user, the blood vessel scanning system adjusts lens degree of the head-mounted image viewing device according to the pre-stored visual information of the user.
Abstract:
A fingerprint sensing device includes a plurality of sensing units. Each sensing unit includes: a readout element, a photosensitive element, a light emitting element and a diode. The photosensitive element is electrically connected to the readout element. The light emitting element is disposed corresponding to the photosensitive element, and includes a first anode, a first cathode, and a light emitting layer located between the first anode and the first cathode. The diode includes a second anode and a second cathode, and a semiconductor layer located between the second anode and the second cathode. The second anode is electrically connected to the first cathode of the light emitting element, and the second cathode is electrically connected to the first anode of the light emitting element.