Title :
Superconductor digital receiver components
Author :
Kirichenko, Alex ; Sarwana, Saad ; Gupta, Deepnarayan ; Yohannes, Daniel
Author_Institution :
Hypres Inc., Elmsford, NY, USA
fDate :
6/1/2005 12:00:00 AM
Abstract :
We have developed and experimentally demonstrated several new RSFQ circuits, designed as components for digital receivers that are being developed by HYPRES. The first circuit is a digital phase generator, which produces a periodic digital signal with a controllable phase shift. This signal is obtained by decimation of an external high frequency signal by a factor of 1024, and provides a controllable phase shift with digital precision of π/512. The second circuit, a precise digital static frequency divider, is capable of dividing of an input signal frequency by any integer value between 1 and 1024. The third circuit is a digital quadrature mixer performing digital downconversion of bit-stream data. This report presents results of experimental evaluation of these circuits at speeds in excess of 30 GHz.
Keywords :
digital integrated circuits; digital radio; frequency dividers; millimetre wave frequency convertors; millimetre wave integrated circuits; millimetre wave mixers; millimetre wave phase shifters; millimetre wave receivers; radio receivers; signal generators; superconducting integrated circuits; superconducting microwave devices; 30 GHz; HF receivers; HYPRES; RSFQ circuits; controllable phase shift; digital downconversion; digital phase generator; digital precision; digital quadrature mixer; digital receivers; digital signal processors; digital static frequency divider; external high frequency signal decimation; periodic digital signal; static frequency dividers; superconducting integrated circuits; superconductor digital receiver components; Delay effects; Frequency conversion; Inverters; Local oscillators; RF signals; Radio frequency; Receivers; Signal generators; Superconducting integrated circuits; Wideband; Digital signal processors; HF receivers; static frequency dividers; superconducting integrated circuits;
Journal_Title :
Applied Superconductivity, IEEE Transactions on
DOI :
10.1109/TASC.2005.849771