2023IEEE Transactions on Applied SuperconductivityRequires access

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

Open publisher page 6 citations

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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What this paper is about

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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OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available 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.

Key concepts: Time-to-digital converter, Vernier scale, Rapid single flux quantum, Differential nonlinearity, Ring oscillator, Dynamic range, Integral nonlinearity, Electronic circuit

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