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Design of a hysteresis lock detector for dual-loops clock and data recovery circuit
Conference proceeding

Design of a hysteresis lock detector for dual-loops clock and data recovery circuit

Yung Sern Tan, Kiat Seng Yeo, Chirn Chye Boon, Manh Anh Do and IEEE
2011 INTERNATIONAL CONFERENCE OF ELECTRON DEVICES AND SOLID-STATE CIRCUITS (EDSSC)
IEEE International Conference on Electron Devices and Solid-State Circuits
01/01/2011

Abstract

Engineering Engineering, Electrical & Electronic Physical Sciences Physics Physics, Applied Science & Technology Technology
In dual-loops clock and data recovery (CDR) circuit design, lock detector is crucial in controlling the switching within CDR loop. The setting of the frequency accuracy of lock detector is a tough task as large ppm will leads to a longer lock time for phase tracking loop and small ppm will leads to more switching time between the loops. A novel lock detector with hysteresis property is proposed in this paper. It provides two different ppms in both different conditions; a smaller ppm for in-lock condition and a larger ppm for out-of-lock condition. This paper also provides a detailed analysis of the proposed lock detector at different conditions. The proposed lock detector is simulated in 0.18-um technology and it consumes 1.1-mW at a 1.8V supply voltage.

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