Title :
A 250-MHz BiCMOS receiver channel with leading edge timing discriminator for a pulsed time-of-flight laser rangefinder
Author :
Palojärvi, Pasi ; Ruotsalainen, Tarmo ; Kostamovaara, Juha
Author_Institution :
Electron. Lab., Univ. of Oulu, Finland
fDate :
6/1/2005 12:00:00 AM
Abstract :
An integrated receiver channel of a pulsed time-of-flight (TOF) laser rangefinder for fast industrial measurement applications with the measurement accuracy of a few centimeters in the measurement range from ∼1 m to ∼30 m to noncooperative targets was developed. The receiver channel consists of a fully differential transimpedance amplifier channel, a peak detector, an rms meter and a timing discriminator. In this particular application there is no time to measure the received signal strength beforehand and it is not predictable from previous measurements, so a leading edge timing discriminator with a constant threshold voltage was used. The amplitude of the received pulse is measured with a peak detector and the amplitude information is used to compensate for the resulting walk error. The measured bandwidth of the receiver channel is 250 MHz, the maximum transimpedance 40kΩ and the input-referred noise ∼7pA/√Hz (Cphotodiode=2 pF). The timing detection accuracy of the receiver is better than ±35 mm in a single-shot measurement in a dynamic range of 1:4000 and a temperature range of 0°C to +50°C.
Keywords :
BiCMOS analogue integrated circuits; amplifiers; discriminators; laser ranging; optical receivers; peak detectors; 0 to 50 C; 250 MHz; BiCMOS receiver channel; constant threshold voltage; fully differential transimpedance amplifier channel; integrated receiver channel; laser rangefinding; leading edge timing discriminator; optical receiver; peak detector; pulsed time-of-flight laser rangefinder; rms meter; timing detection accuracy; BiCMOS integrated circuits; Detectors; Differential amplifiers; Optical pulses; Particle measurements; Pulse amplifiers; Pulse measurements; Threshold voltage; Time measurement; Timing; Laser rangefinding; optical receiver; timing discrimination; transimpedance amplifier;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2005.848022