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D. Mager

Publications and source records attributed to D. Mager.

2 recordsLinked to original sources

HADES: a High Amperage Driver for Extreme States

Linear transformer drivers (LTD) allow to greatly reduce the size of pulsed-power drivers while increasing their efficiency and repetition rate. However, limitations on the capacitors voltage and current exist, mostly driven by technological imperatives. As a result, LTD required to be connected in series and in parallel to form a practical pulsed-power generator. The High Amperage Driver for Extreme States (HADES) proposed here can generate 250 GW of power, i.e. a 1 MA on current with a rise time of 150 ns into a 20nH load. The key feature of the driver is its size. The machine footprint is less than 5m2 and its height is less than 1.6m. This reduction in footprint, compared to other 1 MA LTD based-systems, comes from a compact transmission line geometry which allow to connect LTDs is series and in parallel efficiently. This paper summarizes this design and describes HADES operation and maintenance.

physics.ins-det

High voltage charging system for pulsed power generators

A robust and portable power supply has been developed specifically for charging linear transformer drivers, a modern incarnation of fast pulsed power generators. It is capable of generator +100 kV and -100 kV at 1 mA, while withstanding the large voltage spikes generated when the pulsed-power generator is triggered. The three-stage design combines a zero-voltage switching circuit, a step-up transformer using ferrite cores, and a dual Cockcroft-Walton voltage multiplier. The zero-voltage switching circuit drives the primary of the transformer in parallel with a capacitor. With this driver, the tank circuit naturally remain in its resonant state, allowing for maximum energy coupling between the zero-voltage switching circuit and the Cockcroft-Walton voltage multiplier across a wide range of loading conditions.

physics.ins-det