Title :
Passive Millimeter-Wave Imaging Module With Preamplified Zero-Bias Detection
Author :
Lynch, Jonathan J. ; Moyer, Harris P. ; Schaffner, James H. ; Royter, Yakov ; Sokolich, Marko ; Hughes, Brian ; Yoon, Yeong J. ; Schulman, Joel N.
Author_Institution :
HRL Labs. LLC, Mali, CA
fDate :
7/1/2008 12:00:00 AM
Abstract :
An analytical model and supporting measured data are presented for a preamplified W-band radiometer with a zero-bias detector appropriate for commercial millimeter-wave imaging cameras. Basic radiometer parameters, including RF bandwidth, are computed directly from simple low-frequency measurements and compare well with those obtained from RF measurements. A detailed analytical model shows how radiometer performance depends on internal component parameters, such as low-noise amplifier gain, noise factor, reflection coefficient, detector responsivity, etc. The measurements suggest that performance is sufficient for operation without a Dicke switch or mechanical chopping. A measured noise equivalent temperature difference of 0.45 K was obtained, assuming a single sensor is scanned across a focal plane, forming 32 pixels with 3.125-ms integration time per pixel. This sensitivity is considered sufficient by commercial manufacturers to obtain quality images in low-contrast (e.g., indoor) environments.
Keywords :
image sensors; low noise amplifiers; millimetre wave devices; detector responsivity; low-noise amplifier gain; mechanical chopping; millimeter-wave imaging cameras; noise factor; passive millimeter-wave imaging module; preamplified W-band radiometer; preamplified zero-bias detection; reflection coefficient; $W$-band sensors; Direct detection; millimeter-wave imaging; radiometers;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2008.924361