Abstract:
A color uniformity system for correcting color uniformity problems that exist with today's display devices. A device to measure the color uniformity of the display device and software that uses the information from the measuring system to correct the color uniformity problem on the display device. Probe assembly has so many probes on it that is placed on the display and captures the color information on the display. Measuring assembly measures the color of the signal that comes from the probe assembly. Processor uses the color information from the measuring assembly and also communicates with the host system where the display device is driven from. Software resides on the host system and uses the stored color information to correct the color data that is applied to display device. Hardware unit that resides in the display device and performs color calculations if they are not done in the software.
Abstract:
A touch detection device for detecting touches on a given surface. The inventive device includes a surface where a touch generates acoustic waves, transducers that detect these waves, a controller that calculate the location of the touch and a host device where the touch position is used to communicate with the application program. The screen is formed from any material that is capable of propagating acoustic waves. Plurality transducers are placed on the screen. These transducers detect acoustic waves generated on the screen. The screen is calibrated by touching it once and a map of arrival time ratios are generated and saved in the storage unit. During the real time operation, a touch on the screen generates acoustic waves that are detected by transducers. The output of each transducer is sent to a controller unit where the time differences and their ratios are calculated and compared to time ratios in the storage unit to detect the touch location.
Abstract:
A low emission signal manipulating circuit for reducing emission of a given signal. This is accomplished by manupulating the signal and recovering the original signal. The inventive device includes a transmitter which modifies a given signal, a divider that resides in transmitter which divides the incoming signal, a pulse shaping circuit which generates two pulses one at the leading edge and one at the trailing edge of the incoming signal, a receiver which recovers the original signal from the modified signal, a register which generates a signal based on incoming pulses, a phase locked loop circuit that generates a signal at the output. Pulse shaping circuit has two integrators and logic gates. Receiver has a register circuit and phase locked loop. Register has a flip flop. Phase Locked Loop has a phase comparator charge pump, voltage controlled oscillator and a divider.
Abstract:
A color uniformity system for correcting color uniformity problems that exist with today's display devices. The inventive device includes a device to measure the color uniformity of the display device and software that uses the information from the measuring system to correct the color uniformity problem on the display device. Probe assembly has so many probes on it that is placed on the display and captures the color information on the display. Measuring assembly measures the color of the signal that comes from the probe assembly. Processor uses the color information from the measuring assembly and also communicates with the host system where the display device is driven from. Software resides on the host system and uses the stored color information to correct the color data that is applied to display device. Hardware unit that resides in the display device and performs color calculations if they are not done in the software.
Abstract:
A touch detection using wavelet algorithm for detecting touches on a surface by receiving acoustic waves generated by the touch and performing signal analysis on these acoustic waves using wavelet transformation where the storage requirement for reference signal is reduced. The inventive device includes a substrate that can be any material which is capable of propagating acoustic waves, transducers that detect the acoustic waves generated by the touch on the screen, a controller that implements the wavelet algorithm and software that Incorporates wavelet algorithm. The substrate can be built from any material that Is capable of propagating acoustic waves. The size of the substrate is not limited to a certain size. The sensitivity of the controller is determined and adjusted by the algorithm based on the size of the substrate. This is an adaptive sensitivity control determined by the size of the substrate.
Abstract:
A touch detection using wavelet algorithm for detecting touches on a surface by receiving acoustic waves generated by the touch and performing signal analysis on these acoustic waves using wavelet transformation where the storage requirement for reference signal is reduced. The inventive device includes a substrate that can be any material which is capable of propagating acoustic waves, transducers that detect the acoustic waves generated by the touch on the screen, a controller that implements the wavelet algorithm and software that incorporates wavelet algorithm. The substrate can be built from any material that is capable of propagating acoustic waves. The size of the substrate is not limited to a certain size. The sensitivity of the controller is determined and adjusted by the algorithm based on the size of the substrate. This is an adaptive sensitivity control determined by the size of the substrate. Transducers can be either piezo transducers or any other type that can detect acoustic waves generated by the touch on the substrate. The resonance frequency of these transducers can be within the sound frequency range. The sensitivity of the controller is determined based on the resonant frequency of these transducers used to detect acoustic waves. The controller is the device that accepts inputs from those transducers that are placed on the substrate. These signals are converted to digital signals by means of analog to digital converters on the controller board. These signals are applied to a microcontroller circuit on the controller. The microcontroller has a firmware code that is stored in the ROM area. This code implements the wavelet algorithm to characterize and detect the touch location. The location that is calculated by the controller is communicated to host computer. A driver that resides in the host computer receives the touch coordinate locations from the controller and communicates the location with the operating system. If the controller is not performing the wavelet algorithm then the software will be performing the wavelet algorithm.
Abstract:
The present invention is directed to a single-axis capacitive multi-touch panel, system and method. A multi-touch panel includes a substrate and some conductive lines formed on one side of the substrate, wherein the conductive lines are arranged in a single axis. A driving circuit, for producing an alternating-current signal, is operatively coupled to the conductive lines of the multi-touch panel, and measuring circuit, for receiving an output signal according to the alternating-current signal to determine touch location, i s operatively coupled to the c onductive lines of the multi -touch panel.
Abstract:
A touch detection device for detecting touches on a given surface. The inventive device includes a surface where a touch generates acoustic waves, transducers that detect these waves, a controller that calculate the location of the touch and a host device where the touch position is used to communicate with the application program. The screen is formed from any material that is capable of propagating acoustic waves. Plurality transducers are placed on the screen. These transducers detect acoustic waves generated on the screen. The screen is calibrated by touching it once and a map of arrival time ratios are generated and saved in the storage unit. During the real time operation, a touch on the screen generates acoustic waves that are detected by transducers. The output of each transducer is sent to a controller unit where the time differences and their ratios are calculated and compared to time ratios.
Abstract:
A low emission signal generator and distribution system for reducing emission of a given signal. This is accomplished by modifying the signal and recovering the original signal. The inventive device includes a transmitter which modifies a given signal, a divider that resides in transmitter which divides the incoming signal, a pulse shaping circuit which generates two pulses one at the leading edge and one at the trailing edge of the incoming signal, a receiver which recovers the original signal from the modified signal, a register which generates a signal based on incoming pulses, a phase locked loop circuit that generates a signal at the output. Transmitter has a divider circuit that divides the incoming signal. It also has pulse circuits where two pulses are generated. Divider has five flip-flops that divide the incoming signal's frequency by a predetermined amount. Pulse shaping circuit has two integrators and logic gates. Receiver has a register circuit and phase locked loop. Register has a flip-flop. Phase Locked Loop has a phase comparator, charge pump, voltage controlled oscillator and a divider.