Abstract:
The disclosure provides an electromagnetic wave adjustment apparatus includes a control circuit, a transistor circuit die and an electronic assembly. The transistor circuit die receives a control signal from the control circuit and drives the electronic assembly.
Abstract:
A driving circuit includes a first transistor, a second transistor and a third transistor. The first transistor has a first terminal connected to a first voltage level, a second terminal, and a third terminal. The second transistor has a first terminal connected to the second terminal of the first transistor, a second terminal connected to a second voltage level, and a third terminal connected to the third terminal of the first transistor. The third transistor has a first terminal connected to the first terminal of the second transistor. The first transistor and the second transistor are low temperature poly-silicon transistors, and the third transistor is an oxide semiconductor transistor.
Abstract:
The disclosure provides an electronic apparatus and a manufacturing method thereof. The electronic apparatus includes a first insulating layer, a first metal layer, a second metal layer, and an electronic assembly. The first insulating layer includes a first surface and a second surface opposite to the first surface. The first metal layer has an opening and is formed on the first surface. The second metal layer is formed on the second surface and a projection of the opening on the second surface is overlapped with a projection of the second metal layer on the second surface. The electronic assembly is electrically connected with the first metal layer and the second metal layer.
Abstract:
A foldable display device includes a first panel having a first flat portion and a first bending portion at one side of the first flat portion. The first bending portion has a first bending axis around which the first bending portion rotates. The foldable display device also includes a second panel having a second flat portion and a second bending portion at one side of the second flat portion. The second bending portion has a second bending axis around which the second bending portion rotates. The first bending portion and the second bending portion are arranged adjacent to each other.
Abstract:
The disclosure provides an electronic apparatus and a manufacturing method thereof. The electronic apparatus includes a first insulating layer, a first metal layer, a second metal layer, a PN junction assembly, and a transistor circuit. The first insulating layer includes a first surface and a second surface opposite to the first surface. The first metal layer is formed above the second surface. The second metal layer is formed on the second surface. The PN junction assembly is disposed on the first surface and electrically connected with the first metal layer and the second metal layer. The PN junction assembly includes a variable capacitor. The transistor circuit is electrically connecting with the second metal layer.
Abstract:
A light-emitting display panel is provided. The light-emitting display panel includes a substrate. The substrate includes a display area and a peripheral area surrounding the display area. A light-emitting display structure is disposed on the display area. A first section wall is disposed on the peripheral area. The first section wall surrounds the light-emitting display structure. An enclosed wall is disposed on the peripheral area. The enclosed wall surrounds the first section wall. The enclosed wall is positioned outside the first section wall. A first inorganic material layer covers the light-emitting display structure. The first inorganic material layer covers the top surface of the array substrate outside the enclosed wall.
Abstract:
A display panel includes a first substrate, a second substrate and a display medium layer disposed between the first and second substrates. The first substrate includes a plurality of first conducive lines, a plurality of second conducive lines, and a plurality of transistors to define pixel regions. At least one of the transistors includes a gate electrode, a first insulating layer on the gate electrode, an active layer on the first insulating layer, a first electrode and a second electrode on the active layer. The first electrode includes a first transparent conductive material layer and a second transparent conductive material layer formed on the first transparent conductive material layer. The second conducive line connected to the first electrode includes the first and second transparent conductive material layers and a metal layer disposed between the first and second transparent conductive material layers.
Abstract:
The disclosure provides an organic light-emitting device. The organic light-emitting device includes a substrate, and an organic light-emitting pixel array disposed on the substrate. The organic light-emitting pixel array includes a plurality of pixels. Each pixel includes a first sub-pixel and a second sub-pixel. Each sub-pixel includes a first electrode, an organic light-emitting element, a second electrode, and an optical path adjustment layer. The optical path adjustment layer is disposed between the first electrode and the second electrode. Particularly, the thickness of the optical path adjustment layer of the first sub-pixel is substantially equal to the thickness of the optical path adjustment layer of the second sub-pixel.
Abstract:
This disclosure provides a display apparatus which includes a substrate, first TFTs, scan lines and data lines connected to the first TFTs, and second TFTs for controlling inspection-use display signals; wherein each of the second TFTs includes: a first gate electrode disposed on the substrate; a first insulation layer disposed on the first gate electrode; an active unit disposed on the first insulation layer and having a source electrode electrically connected to one of the data lines, an active layer including an oxide semiconductor, and a drain electrode; a second insulation layer disposed on the active unit; and a second gate electrode disposed on the second insulation layer; wherein the first TFTs, the scan lines, and the data lines are disposed in a display area on the substrate, and the second TFTs are disposed in an area other than the display area on the substrate.
Abstract:
An electronic device including a substrate and an electronic element is provided. The electronic element is disposed on the substrate and includes a first gate electrode, a semiconductor pattern, a source electrode, a drain electrode and a second gate electrode. The semiconductor pattern includes an overlapping region, a first side region and a second side region. A portion of the semiconductor pattern overlapped with the first gate electrode is defined as the overlapping region. The first side region and the second side region are respectively connected to two opposite sides of the overlapping region in a first direction and respectively include two opposite first edges of the semiconductor pattern. The source electrode and the drain electrode are respectively electrically connected to the first side region and the second side region. At least a portion of the second gate electrode is overlapped with the second side region of the semiconductor pattern.