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- W1981801641 abstract "We study a superconducting oversampling analog-to-digital (A/D) converter. The assumed structure of the converter consists of a front-end circuit based on single flux quantum circuitry and a back-end circuit based on semiconductor devices. We have proposed an improved front-end circuit design to facilitate transmission of data signals from the front-end circuit to the back-end circuit and synchronize both circuits. In the present front-end circuit, AC-biased stack-type amplifiers were adopted to achieve high-voltage output signals of several mV for reliable data transmission. A new demultiplexing method, hybrid DEMUX, was proposed and implemented in the front-end circuit for increasing the timing margin. We tested functionalities of the front-end circuit; demultiplexing and amplification of the data signal. The increased timing margin of the DEMUX by two clock periods and output voltages of 11 mV in the amplifiers were obtained. Furthermore, a high-speed operation of the DEMUX was also confirmed up to 33 GHz by using an on-chip testing method." @default.
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- W1981801641 date "2005-10-01" @default.
- W1981801641 modified "2023-09-27" @default.
- W1981801641 title "High-speed operation of AC-biased front-end circuit for superconducting analog-to-digital converter" @default.
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- W1981801641 doi "https://doi.org/10.1016/j.physc.2005.02.134" @default.
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