Abstract:
The invention discloses a driving method for a display. The method includes the following steps: providing a pixels structure; receiving a plurality of frames; driving the (2n−1)th scan line and the (2n)th scan line by turns while receiving the number of odd frame; driving (2n)th scan line and (2n−1)th scan line by turns while receiving the number of even frame; adjusting the voltage of the Vcom according to pixels voltage value which are the voltage to be written into the pixels by odd data lines and even data lines while the pixels structure receiving the number of odd frame and the number of the even frame.
Abstract:
A method for transmitting touch panel data is provided. The method is adapted for transmitting coordinate data of at least a touch point being touched on the touch panel and includes the following procedures. The at least coordinate data is compressed. A serial data transmission interface command and a serial data transmission interface client address are appended in front of the compressed at least coordinate data, such that the compressed at least coordinate data is encapsulated into a serial transmission data packet. In addition, the serial transmission data packet is transmitted through a serial data transmission channel.
Abstract:
An agent service processing method and an Internet Protocol (IP) agent terminal are provided. The method includes the following steps: receiving, by an IP agent terminal, a user side media stream sent by a user terminal through an IP network; performing audio and video processing on the user side media stream according to a control command from a computer used by an agent ; sending the processed user side media stream to an external device used by the agent, and/or sending the processed user side media stream to the computer used by the agent through a computer peripheral interface of the computer used by the agent. By using the agent service processing method and the IP agent terminal, conversation quality of an agent service is ensured, while service flexibility is considered.
Abstract:
A touch panel comprising a substrate, a touch element, a first grounding electrode, an insulation layer and a second grounding electrode is disclosed. The touch element is disposed on a first surface of the substrate. The first grounding electrode is disposed on the first surface to surround the touch element. The insulation layer is disposed on the first surface to cover the touch element and the first grounding electrode. The second grounding electrode is disposed on the first insulation layer or on a second surface of the substrate opposite to the first surface. Therefore, the ESD can be conducted to the grounding end G of the circuit component through the enclosed first grounding electrode, and the signal interference between the touch panel and display can be shielded by the second grounding electrode to enhance anti-ESD and anti-noise abilities of the touch panel.
Abstract:
A matrix resistive touch panel including a plurality of first sensing electrodes, a plurality of second sensing electrodes, a control circuit and a compensating circuit is provided. Each first sensing electrode has a first end and a second end. Each second sensing electrode has a third end and a fourth end. The compensating circuit is electrically connected to the control circuit, the first and the second ends of the first sensing electrodes, and the third and the fourth ends of the second sensing electrodes. The compensating circuit is used for equating a plurality of first impedances between the first ends and the control circuit, equating a plurality of second impedances between the second ends and the control circuit, equating a plurality of third impedances between the third ends and the control circuit, and equating a plurality of fourth impedances between the fourth ends and the control circuit.
Abstract:
An electronic device with high electrostatic discharge (ESD) protection is provided. The electronic device includes a touch panel, at least one ESD protection element and a liquid crystal module. When an ESD event occurs at the surrounding of the touch panel, the ESD energy is rapidly discharged to ground via an energy transmission path inside the touch panel. The ESD protection element is connected to the output terminal of the touch panel in parallel to protect the electronic device and its internal circuits.
Abstract:
The present invention describes a system and method for surveillance cameras that maintain proper mapping of a mapped region of interest with an imaged region of interest based on feedback received regarding the current orientation of a surveillance camera. The system or method first determines the location of the imaged region of interest within the surveillance camera's imaged current field of view based on mechanical or imaged feedback, or a combination of both. The system or method then remaps the mapped region of interest within the surveillance camera's imaged current field of view such that the mapped region of interest is coextensive with the imaged region of interest.
Abstract:
An integrated system and method to achieve ESD robustness on an integrated circuit (IC) in a fully automated ASIC design environment is described. Electrical characteristics and electrical limits on the power network are translated to power route region constraints for each chip input/output (I/O) cell. Electrical limits on the signal network are translated into signal route region constraints for each chip I/O cell. These constraints are passed on to an I/O floorplanner (automatic placer of I/O cells) that analyzes trade-offs between these constraints. For I/O cells that can not be placed to satisfy both power and signal region constraints, the I/O floorplanner utilizes the knowledge of alternative power distribution structures to group I/Os and create local power grid structures that have the effect of relaxing the power region constraints. Instructions for creating these local power grid structures are passed on to the automatic power routing tool.
Abstract:
The present invention provides a method for transporting a Destination User Part Unavailable (DUPU) message, including: carrying along with a DUPU message the originating point code corresponding to the originating signalling point which has triggered the DUPU message by a first signalling point in which a user part is unavailable and returning the DUPU message to a second signalling point; and forwarding, by the second signalling point upon receiving the DUPU message, the received DUPU message according to the originating point code which is contained in the message. The present invention also provides a system and a signalling point for transporting a DUPU message. According to the present invention, correct transmission of the DUPU message is be attained with the workload in forwarding messages lightened and network consumption reduced.
Abstract:
A transflective liquid crystal display includes a plurality of pixels. Each pixel includes a plurality of primary color sub-pixels and a brightness-enhancing sub-pixel. The reflective region of the transflective liquid crystal display is formed only on the brightness-enhancing sub-pixel.