Abstract:
A voltage tester, particularly for relatively low voltage A.C., comprises a device having a contact for electrical connection to an electrical component, and a contact that may be touched by an operator through whom capacitive connection may be made to earth. The device includes liquid crystal displays powered by the voltage under test via a voltage multiplier.
Abstract:
A display device includes a substrate having a display portion and a peripheral portion surrounding the display portion, and a plurality of pixels formed in the display portion. The plurality of pixels have a switching element, a pixel electrode connected to the switching element, a counter electrode, and a light emitting material layer arranged between the pixel electrode and the counter electrode, respectively, and the counter electrode is arranged in common for the display portion. A bank layer of organic material is arranged between the pixel electrode and the counter electrode and is formed in the display portion and the peripheral portion, with each pixel being divided by the bank layer in the display portion, and the bank layer having at least one opening in the peripheral portion.
Abstract:
A display device includes a substrate having a display portion and a peripheral portion surrounding the display portion, and a plurality of pixels formed in the display portion. The plurality of pixels have a switching element, a pixel electrode connected to the switching element, a counter electrode, and a light emitting material layer arranged between the pixel electrode and the counter electrode, respectively, and the counter electrode is arranged in common for the display portion. A bank layer of organic material is arranged between the pixel electrode and the counter electrode and is formed in the display portion and the peripheral portion, with each pixel being divided by the bank layer in the display portion, and the bank layer having at least one opening in the peripheral portion.
Abstract:
Disclosed herein is a display device including: a pixel array part configured to include scan lines disposed along rows, signal lines disposed along columns, and pixels that are disposed at intersections of the scan lines and the signal lines and are arranged in a matrix; and a drive part configured to have at least a write scanner that sequentially supplies a control signal to the scan lines to thereby carry out line-sequential scanning and a signal selector that supplies a video signal to the signal lines in matching with the line-sequential scanning.
Abstract:
A display device includes a display drain signal line which belongs to a display pixel is connected to a pixel electrode via a TFT, a first dummy drain signal line which belongs to a dummy pixel is connected to a dummy pixel electrode via a TFT, and a second dummy drain signal line is disposed outside of the dummy pixel. The second dummy drain signal line is not connected to a dummy pixel electrode.
Abstract:
A method of economically manufacturing display devices having a matrix of drivable pixels arranged in rows and columns arranged to be driven by IC drivers, including the steps of including a plurality of sensor signal lines in the display device that are selectively connectable to certain of the pixel rows, a plurality of sensor signal lines selectively connectable to certain of the pixel columns, transmitting test signals to test predetermined ones of the rows and columns of pixels, and connecting pixel driving circuits to those display devices exhibiting uniform pixel brightness in response to the test signals.
Abstract:
A display includes a substrate provided with a display region and a non-display region. A plurality of display electrodes are arranged on the substrate. A plurality of switching elements are respectively connected to the display electrodes. Each of the switching elements includes a control electrode and a data electrode. A plurality of scan lines are respectively connected to the control electrodes of the switching elements. A plurality of data lines are respectively connected to the data electrodes of the switching elements. A scan line electrostatic protection and test circuit is provided in the non-display region and connected to the scan lines The scan line electrostatic protection and test circuit includes an electrostatic protection circuit provided with a protection element which is normally in a non-conduction state and is set in a conduction state by generated static electricity, and an inspection circuit to inspect a conduction state of the scan lines by way of the protection element.
Abstract:
A display device includes a substrate having display portion and peripheral portion, a plurality of gate signal lines and a plurality of drain signal lines formed over the substrate, a plurality of switching elements connected to the plurality of gate signal lines and the plurality of drain signal lines and formed over the substrate, and a plurality of pixel electrodes connected to the plurality of switching elements and formed in the display portion. An organic interlayer film is formed in the display portion and the peripheral portion, and a covering layer is formed on the organic interlayer film in the peripheral portion and the insulating film includes at least one of a plurality of recesses and protuberances.
Abstract:
In a mother substrate for a lower substrate, a substrate for a display panel and a method of manufacturing a display panel, the substrate for the display panel includes a lower substrate and an upper substrate facing the lower substrate. The lower substrate includes an inspection line that receives a first inspection signal externally provided, a gate driving part that outputs a second inspection signal in response to the first inspection signal from the inspection line, and a pixel part driven in response to the second inspection signal. The inspection line is disposed on a grinding area. Thus, the display panel may have an enhanced productivity and an improved yield, on which the gate driving part is formed.