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Defense Intelligence Reference Document Pulsed High-Power Microwave Source Technology

Defense Intelligence Agency · 37 pages · text from the file's own layer

This Defense Intelligence Reference Document from the Defense Intelligence Agency, dated 28 January 2010, surveys pulsed high-power microwave (HPM) source technology. It was produced under the Advanced Aerospace Weapon System Applications (AAWSA) program. It covers insulation, cathode materials, high-voltage switching, pulse generators, microwave sources such as magnetrons, gyrotrons and the Phoenix and Jolt sources, and antennas. The document concludes that progress depends on advances in cathodes, switching and insulation. It says compact ultrawideband antennas will remain difficult to build.

UNCLASSIFIED//5O9 QSFICICP 1!55 0111 Y
uses a pulse transformer to charge a short section of coaxial transmission line to high
voltage. The transmission line is charged quickly enough to overvolt a high-pressure
(2,000-psi) hydrogen switch, providing 120-ps rise-time pulses at about 350 kV and
2.5-ns pulse width to another 40n coaxial transmission line, which uses a point
geometry converter (PGC) to feed an antenna.
Figure 5 shows H2 with a PGC output
driving a large TEM horn. The peak
power is 2 GW, and these sources were
capable of a power supply-limited PRR
of 1.8 kHz. Using a flat-plate TEM horn
antenna, the radiated field at 10 meters
was 25 kV/m. At the AFRL, they
compare HPM sources using what is
termed a figure of merit (FOM), defined
as the field value at some distance
multiplied by the distance. Thus, for H3
the FOM is 250 kV. While developing the
H series of HPM sources, scientists
devised a means of efficiently Figure 5. H2 With Large TEM Horn and PGC Output
converting from a coaxial geometry to a parallel-plate geometry. Radiation from a coax
forms a doughnut pattern with no field on bore site, and thus the PGC was developed to
feed a more interesting antenna.
Figure 6 shows a cross-section drawing of HS with a PGC feeding a Brewster angle
window and an extended-ground-plane antenna. HS was developed using a much
smaller volume high-pressure hydrogen switch than its predecessors used; however,
with the pressures involved, personnel were isolated from the source whenever any
pressure was in the switch.
Figure 6. Cross-Section Drawing of HS With Point Geometry Converter, Brewster Angle Window, and
Extended-Ground-Plane Antenna
21
UNCLASSIFIED/ }SOP OSFJCJ0I IPSF ONI X

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Report, from the dia collection. The PDF is mirrored here; the original link is above. 37 pages are in the text index: search them above, or from the library's search.