Title :
Development of 4-Gsps 2-bit ADC with GaAs ICs for radio astronomy
Author :
Okiura, M. ; Iguchi, S. ; Okumura, S.K. ; Momose, M. ; Matsumoto, K. ; Kawaguchi, N.
Author_Institution :
Nobeyama Radio Obs., Nagano, Japan
Abstract :
We developed two sets of prototype 4-Gsps 2-bit analog to digital converters (ADCs) with GaAs ICs for the realization of 4 GHz sampling in an ADC system for the Atacama Large Millimeter / submillimeter Array (ALMA). This consists of three sets of 12-Gbps decision circuits and 12-Gbps demultiplexers, and has the capability of sampling in a bandwidth of 6 GHz. Toward implementation of GaAs ICs in the ADC system, we measured the sampling jitter of the ADC using the ultra-wide band correlator (UWBC) developed for the Nobeyama Millimeter Array (NMA). The measured Allan standard deviation of phase, corresponding to the stability of sampling timing is 2.3/spl times/10/sup -15/ at 10 seconds, and the Allan standard deviation due to the flicker-frequency noise is 0.8/spl times/10/sup -15/. It is shown that the coherence loss becomes 0.95 at a coherence time of 86400 seconds (24 hours). The Allan standard deviation of sampling timing and its long-time stability are acceptable for application to radio astronomical ADC systems.
Keywords :
III-V semiconductors; analogue-digital conversion; bipolar integrated circuits; circuit stability; decision circuits; gallium arsenide; integrated circuit noise; jitter; radioastronomical techniques; radiowave interferometers; 12 Gbit/s; 24 hour; 4 GHz sampling; 6 GHz; ALMA; AlGaAs/GaAs heterojunction bipolar transistors; Allan standard deviation; Atacama large millimeter submillimeter array; GaAs; GaAs 2-bit ADC ICs; NMA; Nobeyama millimeter array; coherence loss; coherence time; decision circuits; demultiplexers; flicker frequency noise; phase stability; radio astronomical ADC system; radio astronomy; radio interferometer technique; sampling jitter; sampling timing stability; ultra-wide band correlator; Analog-digital conversion; Circuits; Extraterrestrial measurements; Gallium arsenide; Measurement standards; Prototypes; Radio astronomy; Sampling methods; Stability; Timing;
Conference_Titel :
Microwave Symposium Digest, 2002 IEEE MTT-S International
Conference_Location :
Seattle, WA, USA
Print_ISBN :
0-7803-7239-5
DOI :
10.1109/MWSYM.2002.1011661