Demonstration of a Wideband 10-kW Ka-Band Sheet Beam TWT Amplifier

Electron Devices, IEEE Transactions  (2014)

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摘要
A sheet-beam coupled-cavity traveling wave tube has produced over 10 kW of peak power at a center frequency of 34 GHz, with a 3-dB bandwidth of almost 5 GHz. The power of this amplifier is an order of magnitude higher than state-of-the-art conventional amplifiers of comparable frequency, bandwidth, and operating voltage (<;20 kV). This unprecedented performance is made possible by a unique, Naval Research Laboratory (NRL)-developed sheet electron beam along with a novel slow-wave interaction structure. High-current, low-voltage operation provides high gain per unit length and allows an interaction structure<;5-cm long to be used to achieve the desired gain of 15 dB at saturation. Measured performance agrees well with 3-D particle-in-cell simulations.
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electron beams,millimetre wave amplifiers,slow wave structures,travelling wave amplifiers,3d particle-in-cell simulations,nrl,naval research laboratory,frequency 34 ghz,gain 15 db,power 10 kw,sheet beam twt amplifier,sheet electron beam,sheet-beam coupled-cavity traveling wave tube,slow-wave interaction structure,wideband ka-band,amplifier,coupled-cavity (cc),millimeter wave,sheet beam,traveling wave tube (twt),vacuum electronics,vacuum electronics.,solid modeling,traveling wave tube,oscillators,gain,bandwidth,power generation,twt
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