Primary Intelligence Asset

A High-Power Pulse Generator Based on Pulse Forming Network and Linear Transformer

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INTEL

Executive Summary

This research article presents the design, development, and testing of a two-stage high-power pulse generator based on pulse forming networks (PFN) and a linear transformer (LT). By utilizing four Blumlein PFNs in an arc-type configuration connected symmetrically to the primary coil of a linear transformer and triggered by laser-activated spark switches, the module significantly increases output power while maintaining low output impedance. Experimental verification on a 12 Ω solid resistor demonstrated an output voltage of approximately 250 kV and an output power of approximately 5.2 GW at a repetition rate of 5 Hz, providing a technical foundation for higher-power microwave drivers.
Analysis Confidence: High
ST_CODE: 4B722C

System Metadata

Source ID

DOC-6761DA39

Process Date

Public archive record

Integrity Hash

SHA256-6761DA394CD0...

Indexer Status

COMPLETE

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Abstract

With the development of high-power microwave technology, the output power of the pulse generator is required more and more higher. In this paper, it is realized by increasing the output power of the module while the output impedance of the module changes little. The module of the generator is based on pulse forming network (PFN) and linear transformer (LT). Four Blumlein PFNs with arc-type configuration and 24 Ω characteristic impedance were connected symmetrically to the primary coil of the LTD and driven by two identical laser triggered spark switches to ensure four Blumlein PFNs synchronizing operation. On this basis, a two-stage high-power pulse generator based on PFN-LT is developed. The following technical parameters of the generator were achieved on a 12 Ω high-power solid resistor: output voltage amplitude of ∼250 kV and output power of ∼5.2 GW at a repetition rate of 5 Hz.

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This research article presents the design, development, and testing of a two-stage high-power pulse generator based on pulse forming networks (PFN) and a linear transformer (LT). By utilizing four Blumlein PFNs in an arc-type configuration connected symmetrically to the primary coil of a linear tran...