Abstract
This paper presents the design of two types of magnetron injection guns (MIG's) for 1 MW, 127.5 GHz gyrotron. TE24,8 mode has been chosen as the operating mode. In-house developed code MIGSYN has been used to estimate the initial gun parameters. The electron trajectory tracing program EGUN and in-house developed code MIGANS have been used to optimize the single-anode and the double-anode design for 80 kV, 40 A MIG. The parametric analysis of MIG has also been presented. The advantages and the disadvantages of each kind of configuration have been critically examined.
Received: 2011-02-01
Published Online: 2011-08-25
Published in Print: 2011-July
Copyright © 2011 De Gruyter
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Articles in the same Issue
- Fractal-Shaped Balun Using Composite Right/Left-Handed Transmission Line for Bandwidth Enhancement
- Design of Compact Low Pass Microstrip Filter For Wireless Communication System
- A Compact and Broadband Chip-Resistor Loaded Circularly Polarized Microstrip Antenna
- A Low Power Multi-Modulus Programmable Divider with TSPC Technology
- Numerical Simulation of Single-anode and Double-anode Magnetron Injection Guns for 127.5 GHz 1 MW Gyrotron
- SINR Analysis of Hexagonal Multicarrier Transmission Systems in the Presence of Insufficient Synchronization for Doubly Dispersive Channel
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- 8th International Workshop on Intelligent Transportation (WIT 2011), Hotel Hafen Hamburg, 22. und 23. März 2011