Abstract:
A system and method is disclosed for minimizing power consumption in a reference voltage circuit. A capacitor is coupled to a reference voltage circuit and charged to a voltage that equals the reference voltage of the reference voltage circuit. The capacitor is then decoupled from the reference voltage circuit and power to the reference voltage circuit is turned off. The capacitor then provides the capacitor voltage to other circuits as a reference voltage. After a selected period of time has elapsed since the capacitor was last charged to the reference voltage, the reference voltage circuit is turned on and the capacitor is again coupled to the reference voltage circuit. The reference voltage circuit then recharges the capacitor to the reference voltage level. This process is repeated to periodically charge the capacitor to the reference voltage.
Abstract:
An object of the present invention is to provide a liquid crystal display, which can surely perform an instillation process used when liquid crystal is sealed between substrates in a cell process, and a fabrication method thereof. A liquid crystal display comprises a sealing material made of a photo-curing type material which seals liquid crystal sandwiched between substrates, and a shading film having a shading area which overlays a red-colored layer transmitting red light, a green-colored layer transmitting green light and a blue-colored layer transmitting blue light, wherein only the blue-colored layer is formed in an area of the shading film contacting with the sealing material and the photo-curing type material of the sealing material is structured to have a light reactive area for a wavelength of blue color band.
Abstract:
A system and method is disclosed for minimizing power consumption in a reference voltage circuit. A capacitor is coupled to a reference voltage circuit and charged to a voltage that equals the reference voltage of the reference voltage circuit. The capacitor is then decoupled from the reference voltage circuit and power to the reference voltage circuit is turned off. The capacitor then provides the capacitor voltage to other circuits as a reference voltage. After a selected period of time has elapsed since the capacitor was last charged to the reference voltage, the reference voltage circuit is turned on and the capacitor is again coupled to the reference voltage circuit. The reference voltage circuit then recharges the capacitor to the reference voltage level. This process is repeated to periodically charge the capacitor to the reference voltage.
Abstract:
An object of the present invention is to provide a liquid crystal display, which can surely perform an instillation process used when liquid crystal is sealed between substrates in a cell process, and a fabrication method thereof. A liquid crystal display comprises a sealing material made of a photo-curing type material which seals liquid crystal sandwiched between substrates, and a shading film having a shading area which overlays a red-colored layer transmitting red light, a green-colored layer transmitting green light and a blue-colored layer transmitting blue light, wherein only the blue-colored layer is formed in an area of the shading film contacting with the sealing material and the photo-curing type material of the sealing material is structured to have a light reactive area for a wavelength of blue color band.
Abstract:
In an authentication server, when a mobile terminal is connected with a mobile network constructed by an IP network, a network-connection authentication of the mobile terminal is performed. A setup of a path from the mobile terminal to a home agent according to a mobile IP is performed after the network-connection authentication is performed. A mobile-management-service authentication of the mobile terminal with the home agent is performed after the setup of the path is performed. The authentication server includes a registration part which is configured to register an IP address of the mobile terminal and a domain name of the mobile terminal to a domain managing server which manages IP addresses and domain names.
Abstract:
A boost converter with a flying capacitor topology is provided. The flying capacitor is charged during a first half of a cycle. During a second half of the cycle, the output voltage of the boost converter is supplied from Vdd until the output voltage approximately reaches Vdd. At that point, the flying capacitor is used to provide the output voltage.
Abstract:
A large-scale wide area network system includes wireless communication base devices respectively configuring access points covering wireless zones subordinate thereto; wireless communication base control devices performing integrated control of the corresponding wireless communication base devices, and managing IP addresses of the wireless communication base control devices of a home location and a visited location as location information of a mobile terminal; in-area location information management devices respectively connected to the corresponding wireless communication base control devices via respective area IP networks corresponding to areas administered by the same common carrier, and managing the IP address of the wireless communication base control device of the home location as the location information of the mobile terminal; and a wide area location information management device hierarchically connected to the in-area location information management devices via a wide area IP network corresponding to a wide area administered by the common carrier, and managing the IP address of the corresponding in-area location information management device as the location information of the mobile terminal.
Abstract:
An object of the present invention is to provide a liquid crystal display, which can surely perform an instillation process used when liquid crystal is sealed between substrates in a cell process, and a fabrication method thereof. A liquid crystal display comprises a sealing material 6 made of a photo-curing type material which seals liquid crystal 22 sandwiched between substrates 4 and 16, and a shading film 8 having a shading area which overlays a red-colored layer 28 transmitting red light, a green-colored layer 26 transmitting green light and a blue-colored layer 24 transmitting blue light, wherein only the blue-colored layer 24 is formed in an area of the shading film contacting with the sealing material 6 and the photo-curing type material of the sealing material is structured to have a light reactive area for a wavelength of blue color band.
Abstract:
A timer circuit is arranged for reduced propagation delay and improved stability at low supply voltages. The timer circuit includes a capacitor circuit, a voltage offset circuit, an inverter circuit, and a current source circuit. The current source circuit is arranged to provide a current. Also, the capacitor circuit is arranged to provide a voltage ramp in response to the current. The voltage offset circuit is configured to provide a voltage offset. Further, the current source circuit, the capacitor circuit, and the voltage offset current are arranged to provide two voltage ramps that are offset from each other. Additionally, the inverter circuit includes a p-type transistor and an n-type transistor. The p-type transistor is configured to receive one of the two voltage ramps, and the n-type transistor is configured to receive the other of the two voltage ramps.
Abstract:
A hybrid exchange which exchanges the STM data to be transmitted periodically to realize an exchange in unit of the ATM data to be transmitted asynchronously includes asynchronous transmission terminal interface as the interface with an STM terminal, an synchronous transmission terminal interface as the interface with an ATM terminal, an ATM exchange interface as the interface with an ATM exchange, a transmitting unit for transmitting the STM time slot and ATM time slot, and a control unit for controlling the interfaces. The synchronous transmission terminal interface assigns the STM data to be transmitted periodically to the STM time slot, while the asynchronous transmission terminal interface assigns the ATM data to be transmitted asynchronously to the ATM time slot. The STM time slot and ATM time slot are identified by the STM/ATM identifier. The STM time slot is stored by multiplexing a plurality of STM data.