Abstract:
An embodiment of the invention provides a touch panel, which includes a substrate, a lower conductive layer overlaying the substrate, an insulating layer overlaying the lower conductive layer, and an upper conductive layer overlaying the insulating layer. The lower conductive layer includes a plurality of first conductive patterns including a plurality of first electrodes and a plurality of first dummy patterns, wherein the first dummy patterns are electrically insulated from the first conductive patterns. The upper conductive layer includes a plurality of second conductive patterns including a plurality of second electrodes respectively overlapping the first dummy patterns and a plurality of second dummy patterns, wherein the second dummy patterns are electrically insulated from the second conductive patterns and respectively overlapping the first electrodes.
Abstract:
A microwave control system is applied to control a working system to execute at least one predetermined assignment, and comprises a microwave control unit, a control card and a passive control unit. A microwave illuminator of the microwave control unit is applied to send a microwave signal. After receiving the microwave signal, the control card reflects a reflection signal to the microwave control unit, wakes up from a first sleep mode to enter a first awake mode, and sends a first control signal to the passive control unit. After the microwave control unit receives the reflection signal, the passive control unit wake up from a second sleep mode to enter a second awake mode, and the passive control unit transmits a second control signal in accordance with the first control signal to the working system, so as to control the working system to execute the predetermined assignment.
Abstract:
A data source apparatus, such as a computer, is connected to a remote device, such as a wireless projector, via a transmission channel, such as a wireless network, so that the remote device shows display images of the data source apparatus. Updated regions of the data source apparatus are detected and analyzed. Corresponding compression methods are then selected according to the characteristics of the updated regions. Then, the updated regions are compressed using the selected compression methods, and the compressed data accompanied by meta data indicating the type of the compression methods and coordinate values of the updated regions are then transmitted to the remote device. Then, the remote device updates its display according to the received data.
Abstract:
A method and a circuit for extracting current-voltage characteristics employ two pulse signals with different duty cycles into a device to be measured in order to extracting current-voltage characteristics of the device to be measured. The present invention may reduce the self-heating effect of the device to be measured and increase the measurable range of the device to be measured.
Abstract:
Systems for displaying images. The system comprises a display panel comprising a plurality of data lines DL(x), a plurality of gate lines SL(y) perpendicular to the data lines DL(x), and a pixel array coupled to the data lines and the gate lines. The pixel array comprises a first pixel P(x+1, y) coupled to the gate line SL(y+1) and the data line DL(x+1), a second pixel P(x+1, y+1) coupled to the gate line SL(y+1) and the data line DL(x+2), a third pixel P(x, y+1) coupled to the gate line SL(y+2) and the data line DL(x+1), and a fourth pixel P(x, y+2) coupled to the gate line SL(y+2) and the data line DL(x).
Abstract:
Fiber sensors formed on side-polished fiber coupling ports based on evanescent coupling are described. Such sensors may be configured to measure various materials and may be used to form multi-phase sensing devices. A Bragg grating may be implemented in such sensors to form reflective fiber sensors.
Abstract:
A soft zoom lens system includes an axially expandable or shrinkable holding portion, a supporting portion, a first lens and a second lens. This holding portion has an inner space, a first end and a second end. The supporting portion is made by a soft material. The first lens is disposed between the first end and the supporting portion. The second lens is disposed between the second end and the supporting portion. When this holding portion is applied by predetermined electricity, it will expand or to shrink axially. So, the curvatures of the first lens and the second lens will be changed. The zooming is performed. The invention's structure is simple. The adjusting of focal length is easy. The production is easy with low cost.
Abstract:
A shift register in an amorphous-silicon gate driver comprises a pull-up transistor and two pull-down modules. The pull-up transistor produces a positive pulse when the clock signal is high and the gate of the pull-up transistor is also high. The gate of the pull-up transistor is pulled down to a negative voltage level Vss by two pull-down transistors in the pull-down modules. Each pull-down module also has a further pull-down transistor to keep the output terminal at Vss after the output pulse is produced. The two pull-down modules are operated in a cooperative manner so that each pull-down transistor is conducting approximately 50% of the time. The gates of the pull-down transistors are kept at a positive voltage level approximately 50% of the time and at Vss′ approximately 50% of the time with Vss′ being more negative than Vss.
Abstract:
The invention provides a method to real time monitor the ion beam. Initially, turn on an ion implanter which has a wafer holder, a Faraday cup and a measurement device positioned close to a special portion of a pre-determined ion beam path of the ion beam, wherein the Faraday cup is positioned downstream the wafer holder and the measurement device is positioned upstream the wafer holder. Then, measure a first ion beam current received by the Faraday cup and a second ion beam current received by the measurement device. By continuously measuring the first and second ion beam current, the ion beam is real-time monitored even the Faraday cup is at least partially blocked during the period of moving the wafer holder across the ion beam. Accordingly, the on-going implantation process and the operation of the implanter can be adjusted.
Abstract:
An electronic device includes a host and an earphone. The host includes a application module, the earphone includes at least one speaker, and at least one vibrator. The host generates a first vibration signal according to an original audio signal from the application module, and sends the original audio signal and the first vibration signal to the earphone. The earphone generates a second vibration signal according to the original audio signal, sends the first vibration signal and the second vibration signal to the at least one vibrator, and sends the original audio signal to the at least one earphone speaker. The electronic device may also generate audio signals according to an original vibration signal from the application module.