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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Implementation and Experimental Evaluation of a Cryocooled System Prototype for High-Throughput SFQ Digital Applications
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Implementation and Experimental Evaluation of a Cryocooled System Prototype for High-Throughput SFQ Digital Applications

机译:高通量SFQ数字应用的低温冷却系统原型的实现和实验评估

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We report on development of a cryocooled system prototype for high-throughput single flux quantum (SFQ) digital applications. The system was designed to have 32 I/O links with a bandwidth of 10 Gbps/port. An SFQ multi-chip module (MCM), double mu-metal magnetic shields, a 40-K radiation shield, customized GaAs cryogenic amplifiers, a 32-pin wide-bandwidth cryo-probe, and 32 I/O cables were packaged in a vacuum chamber together with a two-stage 4-K 1-W Gifford-McMahon (G-M) cryocooler. S-parameter measurements showed that the analog bandwidth of the I/O link was 23 GHz. We demonstrated high-speed cryocooled operation of a test module, in which a 5 mm $times$ 5 mm SFQ circuit chip was flip-chip bonded on a 16 mm $times$ 16 mm MCM carrier with $phi 30 mu{rm m}$ InSn bump bonds, at bit rates up to 12.5 Gbps. Measured bit error rate (BER) was less than $10^{-12}$ for a $10^{23}-1$ pseudorandom bit sequence (PRBS) at 10 Gbps.
机译:我们报告了针对高通量单通量量子(SFQ)数字应用的低温冷却系统原型的开发情况。该系统设计为具有32个I / O链接,带宽为10 Gbps /端口。 SFQ多芯片模块(MCM),双mu金属磁屏蔽罩,40-K辐射屏蔽罩,定制的GaAs低温放大器,32针宽带低温探头和32根I / O电缆包装在一个包装盒中。真空室和两段式4-K 1-W Gifford-McMahon(GM)低温冷却器。 S参数测量显示,I / O链路的模拟带宽为23 GHz。我们演示了测试模块的高速低温冷却操作,其中将5mm x 5mm SFQ电路芯片倒装芯片连接在16mm x 16mm MCM载体上,φ30μm InSn凸键,最高速率为12.5 Gbps。对于10 Gbps的$ 10 ^ {23} -1 $伪随机比特序列(PRBS),测得的误码率(BER)小于$ 10 ^ {-12} $。

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