Abstract:
A transceiver system having a phase and frequency locked architecture is described. The transceiver system includes a clock and data recovery type receiver, a frequency divider and a transmitter. The clock and data recovery type receiver receives an external signal from a host unit and extracts the external signal to generate a clock signal and a data signal. The frequency divider is used to divide the frequency of the clock signal for generating a reference clock signal. The transmitter transmits output data content based on the reference clock signal.
Abstract:
Apparatus, systems, and methods for data movement in a memory device are described. In one embodiment, a memory controller comprises logic to move a row of data from a first row of a memory in a first section of a memory device to a second row of memory in a second section of the memory device without passing the data through a communication interface. Other embodiments are also disclosed and claimed.
Abstract:
A frame assembly for installing panel modules with different dimensions is disclosed. The frame assembly includes a first frame and a second frame. The first frame has a first fixing structure formed thereon and a first sliding structure in an axis direction. The second frame has a second fixing structure formed thereon and a second sliding structure in the axis direction. The second sliding structure is slidably engaged with the first sliding structure. The first fixing structure and the second fixing structure are fixed on a side of a first panel module or on a side of a second panel module when the second frame slides relative to the first frame in the axis direction to a first position or to a second position.
Abstract:
The present invention discloses a start-up circuit for a motor driving IC. The activation circuit includes a determination unit, for generating a determination result indicating an operating mode of the motor driving IC according to an external pulse width modulation signal, and an output unit, for outputting an activation signal according to the determination result and a pulse width modulation activation signal. A duty of the pulse width modulation activation signal is greater than a duty of the external pulse width modulation signal.
Abstract:
A transceiver system having a phase and frequency locked architecture is described. The transceiver system includes a clock and data recovery type receiver, a frequency divider and a transmitter. The clock and data recovery type receiver receives an external signal from a host unit and extracts the external signal to generate a clock signal and a data signal. The frequency divider is used to divide the frequency of the clock signal for generating a reference clock signal. The transmitter transmits output data content based on the reference clock signal.
Abstract:
An expandable modular ultra pure water machine has a shell, a water manifold integration device, a control module, at least one water tank and multiple water treating modules. The water manifold integration device, the control module and the water treating modules are mounted in the shell. The control module actuates the machine and controls the water flow in the water manifold integration device. The water treating modules are connected to the water manifold integration device via connectors so that the amount of them are variable to perform different functions.
Abstract:
A smart card suitable for receiving data and electric power from a far-end reader/writer wirelessly is provided. The smart card includes a main body, an e-paper, an e-paper driver, a RFID tag chip and a receiving unit. The e-paper is disposed at the main body. The e-paper driver is disposed at the main body and electrically connected to the e-paper. The RFID tag chip is disposed at the main body and electrically connected to the e-paper driver. The receiving unit is disposed at the main body and electrically connected to the e-paper driver and the RFID tag chip. The receiving unit receives the data and the electric power wirelessly for transferring the electric power to the e-paper driver and transferring the data to the e-paper driver through the RFID tag chip. The e-paper driver drives the e-paper to display information by the data and the electric power.
Abstract:
A stackable modular ultra pure water machine has at least one water tank module, at least one terminal processing module, at least one purification module, at least one water outlet module and a control module that connected together in a stack. The control module has an LED display and a faceplate. Therefore, it is convenient to add or remove modules with different functions to form a customizable ultra pure water machine.
Abstract:
A frame assembly for installing panel modules with different dimensions is disclosed. The frame assembly includes a first frame and a second frame. The first frame has a first fixing structure formed thereon and a first sliding structure in an axis direction. The second frame has a second fixing structure formed thereon and a second sliding structure in the axis direction. The second sliding structure is slidably engaged with the first sliding structure. The first fixing structure and the second fixing structure are fixed on a side of a first panel module or on a side of a second panel module when the second frame slides relative to the first frame in the axis direction to a first position or to a second position.
Abstract:
A multi-purpose water filter cartridge assembly has two sets of manifold holes formed in a top of a manifold integration board. Each set of manifold holes is composed of an inlet, a first outlet and a second outlet. The first outlet of the first set of manifold holes communicates with the inlet of the second set of manifold holes. The manifold integration board further has four sets of cartridge connection holes formed in a bottom thereof and each set is composed of a first inlet, a second inlet and an outlet. The first and second inlets of two sets of the four sets of cartridge connection holes respectively communicate with the first and second outlets of the first set of manifold holes. The inlets of the two sets of cartridge connection holes respectively communicate with the outlets of the first set of manifold holes. The first and second inlets of the other two sets of cartridge connection holes respectively communicate with the first and second outlets of the second set of manifold holes, and the inlets of the two sets of cartridge connection holes respectively communicate with the outlets of the second set of manifold holes through connection holes inside the manifold integration board. At least one filter cartridge is mounted on a bottom of the manifold integration board. The present invention can conveniently and accurately connect multiple filter cartridges in serial, in parallel or both.