A new generation of CMOS circuits operating at 89-104 GHz with improved output power and pulse switch isolation have enhanced the performance of the miniaturized pulsed-echo Fourier transform spectrometer under development for planetary exploration at the Jet Propulsion laboratory. Additional progress has been made by creating a waveguide-fed structure for the novel planar coupler design. This structure has enabled characterization of each component in the system and enabled spectroscopy to be done with conventional millimeter hardware that enables (1) direct comparisons to the CMOS components, (2) enhanced bandwidth of 74-109 GHz, and (3) amplification of the transmitter prior to cavity injection. We have now demonstrated the technique ...
Author Institution: Department of Instrumentation and Analytical Science, UMIST; Schuster Laboratory...
Author Institution: Department of Chemistry, Department of Astronomy, and Steward Observatory, Unive...
$^{\ast}$ Work supported by U.S. DOE under Contract No. DE-AC03-76SF00098.Author Institution: Lawren...
A new generation of CMOS circuits operating at 89-104 GHz with improved output power and pulse switc...
The extension of radio-frequency CMOS circuitry into millimeter wavelengths promises the extension o...
The extension of radio-frequency CMOS circuitry into millimeter wavelengths promises the extension o...
\begin{wrapfigure}{l}{0pt} \includegraphics[scale=0.2]{Specchip_ISMS2018_DJN.eps} \end{wrapfigur...
The size, weight, and power requirements of emerging millimeter-wave transmitter and receiver integr...
The development of portable millimeter-wave gas sensors that operate using pulsed Fourier transform ...
\begin{wrapfigure}{l}{0pt} \includegraphics[scale=0.5]{Tx_ISMS2018_DJN.eps} \end{wrapfigure}The dist...
Author Institution: Department of Chemistry, The University of North Texas, P. O. Box 305070, Denton...
Currently, millimeter-wave and submillimeter-wave spectroscopy is conducted in our laboratory on sev...
A newly constructed pulsed nozzle, Fourier-transform microwave spectrometer utilizes a Fabry-Perot c...
Author Institution: Department of Chemistry, University of Virginia, Charlottesville, VA 22904We hav...
Direct digital synthesizers (DDS) have a number of advantages, especially such as the high precision...
Author Institution: Department of Instrumentation and Analytical Science, UMIST; Schuster Laboratory...
Author Institution: Department of Chemistry, Department of Astronomy, and Steward Observatory, Unive...
$^{\ast}$ Work supported by U.S. DOE under Contract No. DE-AC03-76SF00098.Author Institution: Lawren...
A new generation of CMOS circuits operating at 89-104 GHz with improved output power and pulse switc...
The extension of radio-frequency CMOS circuitry into millimeter wavelengths promises the extension o...
The extension of radio-frequency CMOS circuitry into millimeter wavelengths promises the extension o...
\begin{wrapfigure}{l}{0pt} \includegraphics[scale=0.2]{Specchip_ISMS2018_DJN.eps} \end{wrapfigur...
The size, weight, and power requirements of emerging millimeter-wave transmitter and receiver integr...
The development of portable millimeter-wave gas sensors that operate using pulsed Fourier transform ...
\begin{wrapfigure}{l}{0pt} \includegraphics[scale=0.5]{Tx_ISMS2018_DJN.eps} \end{wrapfigure}The dist...
Author Institution: Department of Chemistry, The University of North Texas, P. O. Box 305070, Denton...
Currently, millimeter-wave and submillimeter-wave spectroscopy is conducted in our laboratory on sev...
A newly constructed pulsed nozzle, Fourier-transform microwave spectrometer utilizes a Fabry-Perot c...
Author Institution: Department of Chemistry, University of Virginia, Charlottesville, VA 22904We hav...
Direct digital synthesizers (DDS) have a number of advantages, especially such as the high precision...
Author Institution: Department of Instrumentation and Analytical Science, UMIST; Schuster Laboratory...
Author Institution: Department of Chemistry, Department of Astronomy, and Steward Observatory, Unive...
$^{\ast}$ Work supported by U.S. DOE under Contract No. DE-AC03-76SF00098.Author Institution: Lawren...