Automatically sweeping dual-channel boxcar integrator. 1978

D J Keefe, and D R Patterson
Electronics Division, Argonne National Laboratory, Argonne, IL 60439, USA.

An automatically sweeping dual-channel boxcar integrator has been developed to automate the search for a signal that repeatedly follows a trigger pulse by a constant or slowly varying time delay when that signal is completely hidden in random electrical noise and dc-offset drifts. The automatically sweeping dual-channel boxcar integrator improves the signal-to-noise ratio and eliminates dc-drift errors in the same way that a conventional dual-channel boxcar integrator does, but, in addition, automatically locates the hidden signal. When the signal is found, its time delay is displayed with 100-ns resolution, and its peak value is automatically measured and displayed. This relieves the operator of the tedious, time-consuming, and error-prone search for the signal whenever the time delay changes. The automatically sweeping boxcar integrator can also be used as a conventional dual-channel boxcar integrator. In either mode, it can repeatedly integrate a signal up to 990 times and thus make accurate measurements of the signal pulse height in the presence of random noise, dc offsets, and unsynchronized interfering signals.

UI MeSH Term Description Entries

Related Publications

D J Keefe, and D R Patterson
September 2009, The Review of scientific instruments,
D J Keefe, and D R Patterson
January 1971, Biomedical engineering,
D J Keefe, and D R Patterson
November 1968, Journal of scientific instruments,
D J Keefe, and D R Patterson
March 1969, Medical & biological engineering,
D J Keefe, and D R Patterson
August 1974, Electroencephalography and clinical neurophysiology,
D J Keefe, and D R Patterson
November 2018, Micromachines,
D J Keefe, and D R Patterson
August 1981, Forbes,
D J Keefe, and D R Patterson
December 2010, Molecular systems biology,
D J Keefe, and D R Patterson
February 2022, Nanomaterials (Basel, Switzerland),
Copied contents to your clipboard!