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Digitizing The Yuan Tseh Lee Array for Microwave Background Anisotropy by 5Gsps ADC boards

机译:用5GSPS ADC板向微波背景各向异性进行数字化YUAN TSEH LEE阵列

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An 8 bits, 5 Giga samples per second Analog to Digital Printed Circuit Board has been designed by the authors for digitizing The Yuan Tseh Lee Array for Microwave Background Anisotropy(AMiBA) and other radio telescopes. Associated with the Field Programmable Gate Array platform developed by the Collaboration for Astronomy Signal Processing and Electronics Research community, AMiBA will have a digital correlator system in the future, that was fiscally difficult in 2001 when it was at design phase. The board can digitize input radio frequencies from DC up to 2.5GHz with a flatness of 5dB. The ENOB ranges from 6.1 to 6.5 bits across the 2.5GHz band, the SFDR from 41 dB to 48 dB, and the SINAD from 32 dB to 37.5 dB if the gain and offset tuning is applied.
机译:作者曾设计了8位,每秒数模数印刷电路板的5个GIGA样本,用于数字化用于微波背景各向异性(Amiba)和其他无线电望远镜的元TSEH Lee阵列。 与天文信号处理和电子研究界合作开发的现场可编程门阵列平台相关联,Amiba将来将在2001年在设计阶段作出财政困难。 电路板可以将直流电频率从高达2.5GHz数字化,平坦度为5dB。 ENOB在2.5GHz频段上的6.1到6.5位,SFDR从41 dB到48 dB,以及32 dB的SINad,如果应用增益和偏移调整,则为37.5 dB。

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