Design and Implementation of Two-Stage Time-to-Digital Converter Based on Rapid Single-Flux-Quantum Circuits
Jianbo Lei, Kunjie Cheng, Jie Ren, Minghui Niu, Hourong Zhou, Yang Gao, Zhen Wang
Abstract
Jianbo Lei, Kunjie Cheng, Jie Ren, Minghui Niu, Hourong Zhou, Yang Gao, Zhen Wang
Abstract
This work proposed a new time-to-digital converter (TDC) utilizing rapid single-flux-quantum circuits. The proposed TDC architecture comprises a counter and a ring oscillator to construct a coarse TDC and a vernier delay line to build a fine TDC, which would maintain the high resolution and high dynamic range of the whole TDC. A TDC with the proposed architecture has been designed, fabricated, and successfully tested. The measurement shows that the designed TDC works correctly with a 5.5 ps resolution, a 1320 ps dynamic range, and a 1.5 LSB differential nonlinearity.
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This work proposed a new time-to-digital converter (TDC) utilizing rapid single-flux-quantum circuits. The proposed TDC architecture comprises a counter and a ring oscillator to construct a coarse TDC and a vernier delay line to build a fine TDC, which would maintain the high resolution and high dynamic range of the whole TDC. A TDC with the proposed architecture has been designed, fabricated, and successfully tested. The measurement shows that the designed TDC works correctly with a 5.5 ps resolution, a 1320 ps dynamic range, and a 1.5 LSB differential nonlinearity.
Key concepts: Time-to-digital converter, Vernier scale, Rapid single flux quantum, Differential nonlinearity, Ring oscillator, Dynamic range, Integral nonlinearity, Electronic circuit