Abstract:
The present disclosure provides OLED panels, terminals, and methods for controlling photosensitivity, and relates to the field of display technology. An OLED panel may include an array substrate and an OLED layer disposed on the array substrate. The OLED panel may further include a photosensitive device array disposed in the array substrate or disposed between the array substrate and the OLED layer. The OLED panel may further include a control circuit connected to the photosensitive device array.
Abstract:
The disclosure relates to an interface circuit, method and device for state switching and belongs to the terminal technology field. Aspects of the disclosure provide a circuit for switching a device between a master state and a slave state. The circuit includes a first interface configured to couple the circuit with internal circuits of the device, a second interface configured to couple the circuit with a connector structure that is configured to couple the device with another device that is external to the device and control circuits configured to provide a first signal to the internal circuits via the first interface to switch the internal circuits from a first state to a second state, and provide a second signal via the second interface to the other device to switch the other device from the second state to the first state.
Abstract:
A liquid crystal driver circuit may include a screen including a plurality of liquid crystal units distributed as an array. The array may include m rows of liquid crystal units along a row direction, and n columns of liquid crystal units along a column direction, wherein m is an integer and n is an integer. The screen may also include n data lines, respectively connected to the n columns of liquid crystal units along the column direction; and at least one data line switch, each connected to a corresponding data line of the n data lines.