A CMOS time-to-digital converter based on a ring oscillator for a laser radar
Ilkka Nissinen, A. Mantyniemi, Juha Kostamovaara
Abstract
Ilkka Nissinen, A. Mantyniemi, Juha Kostamovaara
Abstract
An integrated ring oscillator based time-to-digital converter (TDC) for a pulsed time-of-flight laser rangefinder has been designed and tested. The time-to-digital conversion is based on counting the pulses of this eight-stage differential ring oscillator and additionally registering the state of its 16 phases at the arrival moment of the timing signals. The single-shot precision and the non-linearity of the TDC are better than 78.5ps and /spl plusmn/37ps, respectively and the current consumption of the time-to-digital converter was fabricated on the same chip with a receiver channel in a 0.35 /spl mu/m CMOS process.
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An integrated ring oscillator based time-to-digital converter (TDC) for a pulsed time-of-flight laser rangefinder has been designed and tested. The time-to-digital conversion is based on counting the pulses of this eight-stage differential ring oscillator and additionally registering the state of its 16 phases at the arrival moment of the timing signals. The single-shot precision and the non-linearity of the TDC are better than 78.5ps and /spl plusmn/37ps, respectively and the current consumption of the time-to-digital converter was fabricated on the same chip with a receiver channel in a 0.35 /spl mu/m CMOS process.
Key concepts: Time-to-digital converter, Ring oscillator, CMOS, Local oscillator, Chip, Electronic engineering, Electrical engineering, Physics