Abstract:
An ultrasonic transducer and a manufacturing method thereof, an ultrasonic transducer array and a display device. The ultrasonic transducer includes a substrate, a first electrode on the substrate, an insulation layer on a side of the first electrode away from the substrate, and a second electrode on a side of the insulation layer away from the first electrode. The second electrode is disposed opposite to the first electrode, and the ultrasonic transducer further includes a through hole penetrating both the substrate and the first electrode and a chamber in the insulation layer. The chamber is opposite to the first electrode and the second electrode, respectively, the chamber is communicated with the through hole, and the second electrode is not in contact with the chamber.
Abstract:
The present disclosure provides a ray detection substrate, a manufacturing method thereof and a ray detection device, in the field of display technology. The ray detection substrate comprises: a basal substrate, wherein the basal substrate is provided with a photodiode, the photodiode includes two doped layers and an intrinsic layer located between the two doped layers, and an arrangement direction of the two doped layers is parallel with the basal substrate. The present disclosure solves the problems that the X-ray detection device is poor in performance and improves the performance of the X-ray detection device. The present disclosure is applied to a ray detection device.
Abstract:
The present disclosure provides a connector disengagement apparatus and an inspection system for a liquid crystal display module. The connector disengagement apparatus comprises a first member, a second member, a third member, a rotation axle and a stiffener carrying a part of a connector, one end of the first member being connected to one end of the second member, the other end of the first member being arranged towards the stiffener, the other end of the second member being connected to the third member, wherein the second member is rotatable about the rotation axle. The connector disengagement apparatus acts on the stiffener in a down-to-up direction to lift the stiffener to interrupt efficiently the connection of the connector. In the disengagement process, the pins of the connector will not be damaged as the force of the disengagement apparatus is not directly applied onto the connector.
Abstract:
A follow-up form management method applied to a health management system includes: in response to an operation instruction for opening a scale making tool interface, displaying the scale making tool interface, the scale making tool interface including a field display area and an editing area; in response to an operation instruction for making a follow-up form, making the follow-up form in the editing area; in response to an operation instruction for opening a follow-up creating interface, displaying the follow-up creating interface, the follow-up creating interface including an options menu, and the options menu including options corresponding to the generated follow-up form; and in response to an operation instruction for creating a follow-up task, creating a follow-up task, the follow-up form included in the follow-up task being a follow-up form corresponding to an option selected from the options menu under the operation instruction for creating the follow-up task.
Abstract:
Disclosed are a display panel and a displaying device. The display panel includes a plurality of first-color subpixels, and each first-color subpixel includes a base, the base including a first driving electrode and a second driving electrode; at least one first electrode, disposed at a side of the base and is connected to the first driving electrode; at least one second electrode, disposed at a same side of the base with the first electrode and is connected to the second driving electrode; an intermediate layer, disposed between the first electrode and the second electrode; wherein the first electrode and the second electrode divide the first-color subpixel into a plurality of secondary pixels, the first electrode and the second electrode are insulated with each other via the intermediate layer, and are respectively connected to the first driving electrode and the second driving electrode, and control the secondary pixels independently.
Abstract:
Disclosed are a preparation method of a display panel, a display panel and a displaying device. The display panel comprises a plurality of first-color subpixels, and each first-color subpixel comprises a base, the base comprising a first driving electrode and a second driving electrode; a flat layer disposed on the side, near the first driving electrode and the second driving electrode, of the base; a patterned passivation layer and at least one first electrode disposed on the side, away from the base, of the flat layer, the first electrode being connected with the first driving electrode through via holes penetrating the flat layer; and at least one second electrode disposed on the side, away from the base, of the passivation layer, the second electrode being connected with the second driving electrode through via holes penetrating the passivation layer and the flat layer.
Abstract:
A method of manufacturing a metal wire, a method of manufacturing a metal wire grid, a wire grid polarizer, and an electronic device are provided. The method of manufacturing a metal wire includes: forming a metal material layer on a base substrate; etching the metal material layer by using a composite gas including an etching gas and a coating reaction gas to form the metal wire and a protective coating layer on a surface of the metal wire.
Abstract:
A protective film of a conductive adhesive, a circuit board and a method for assembling a display device are provided. The protective film of conductive adhesive includes: a basic material layer; and a photoinduced peelable adhesive and a protective layer which are arranged on a first surface of the basic material layer in sequence, and the photoinduced peelable adhesive has a low adhesive force in the exposure of light with a first wavelength. The protective film further includes a light-shielding film located on a second surface of the basic material layer opposite to the first surface.
Abstract:
A photodiode and a method of manufacturing the same, and an X-ray detector and a method of manufacturing the same are provided. The PIN photodiode includes a first doped layer, a second doped layer and an intrinsic layer between the first and second doped layers, the first doped layer is provided on a source/drain electrode layer of a thin film transistor of the X-ray detector. A heavily-doped region is provided in the second doped layer, has a dosage concentration larger than that of the second doped layer, and is electrically connected with a cathode of the PIN photodiode.
Abstract:
A thin film transistor, a manufacturing method thereof, an array substrate and a display device are provided. The method for manufacturing the thin film transistor including: forming an active layer; forming an etch barrier layer on the active layer at a position for forming interlayer via holes subsequently; forming an insulating layer on the active layer and the etch barrier layer, and forming the interlayer via holes in the insulating layer to expose the etch barrier layer.