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Supplier: Andover Corporation
Description: Our steep-edge long pass filters employ magnetron sputtered hard oxide coatings to yield deep rejection and a sharp transition to very high transmission. The coatings are deposited on precision polished Fused Silica substrates, and do not employ any absorbing filter glasses, making them
- Diameter, Square Side, or Rectangular Length: 50 mm
- Filter Type: Hot Mirrors, Long Pass Filters
- Thickness: 1.5 mm
-
Supplier: Andover Corporation
Description: Our steep-edge long pass filters employ magnetron sputtered hard oxide coatings to yield deep rejection and a sharp transition to very high transmission. The coatings are deposited on precision polished Fused Silica substrates, and do not employ any absorbing filter glasses, making them
- Diameter, Square Side, or Rectangular Length: 50 mm
- Filter Type: Hot Mirrors, Long Pass Filters
- Thickness: 1.5 mm
-
Supplier: Andover Corporation
Description: Our steep-edge long pass filters employ magnetron sputtered hard oxide coatings to yield deep rejection and a sharp transition to very high transmission. The coatings are deposited on precision polished Fused Silica substrates, and do not employ any absorbing filter glasses, making them
- Diameter, Square Side, or Rectangular Length: 50 mm
- Filter Type: Hot Mirrors, Long Pass Filters
- Thickness: 1.5 mm
-
-
Supplier: Andover Corporation
Description: Our steep-edge long pass filters employ magnetron sputtered hard oxide coatings to yield deep rejection and a sharp transition to very high transmission. The coatings are deposited on precision polished Fused Silica substrates, and do not employ any absorbing filter glasses, making them
- Diameter, Square Side, or Rectangular Length: 50 mm
- Filter Type: Hot Mirrors, Long Pass Filters
- Thickness: 1.5 mm
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A Scientist's War: The diary of Sir Clifford Paterson 1939-45
Lewis (TRE) had some hard things to say to me about their high power X band magnetron and the fact that we did not take a sufficiently critical view of what their needs would turn out to be—chiefly on grounds of frequency …
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Investigation of an X band experimental magnetron through MAGIC modelling
L. Ma, X. Chen, M. Esterson, P.A. Lindsay, ‘3D Computer Modeling of an Experimental X Band Magnetron ’, IVEC 2003, Seoul, Korea .
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High-gain high-efficiency TWT (traveling wave tube) amplifiers
As shown, the rf input signal is coupled from a 250 kW tuneable X band magnetron into the amplifier through port(s) located a half guide wavelength from the anode .
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New coastal radar performances: Evolution or revolution
While it is clear that the classical X band magnetron radar cannot cope with the new missions, price pressure puts another strong constraint on what engineers could do.
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Control of Schottky barrier height by thin high-doped layer
injectionloclung properties of a pulsed x band magnetron at an operating frequency of 9.2 GHz.
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Computer simulation of Adler's generalized equation for the interaction of oscillators with injected signals
injectionloclung properties of a pulsed x band magnetron at an operating frequency of 9.2 GHz.
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Upper hybrid wave collective accelerator studies
In some of the experiments the cavity section was omitted and in some cases there was an rf input signal provided at the cavity from an X band magnetron .
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Frequency Bandwidth Narrowing Technology for Pulsed Magnetrons
Measured anode voltage and anode current waveforms of both a conventional and an improved 10-kW X - band magnetron driven by the same modulator without any changes in the modulator circuit.
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Compact 950 keV X-band (9.4GHz) Linac X-ray Source for On-site Nondestructive Evaluation
This system consists of the X - band magnetron , modulator, thermionic 20kV electron gun, X-band linac and metal target of X-ray generation.
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100 Years of Radar
Western Electric developed its celebrated 725A, a double-ring-strapped X - band magnetron , which soon became the most popular magnetron ever made25 and the basic reference for many new developments.
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