IP Library Granted Patent US 9,460,885
Granted Patent B2
US 9,460,885 · App. 14/124,464 · Granted Oct 4, 2016

Magnetron filter

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Quick Facts
Patent No.
US 9,460,885
App. No.
14/124,464
Granted
Oct 4, 2016
Kind
B2
Abstract

A low-filter is arranged for attachment to an exterior face of a wall of an electrically conducting screened chamber encasing the magnetron and an associated isolation transformer electrically connected to terminals of the magnetron. Output connections of the filter pass directly through an interface between the electrically conducting screened chamber and the filter to connect electrically, directly or indirectly, with the isolation transformer. There are therefore no electrical leads outside the screened chamber electrically connecting the filter to the isolation transformer.

Claims (20)

1. A low-pass filter arrangement for reducing stray emissions from a magnetron that is encased, along with an associated isolation transformer electrically connected to terminals of the magnetron, by an electrically conducting screen, the arrangement comprising: a low pass filter having an output connection; and an interface between the low pass filter and the electrically conducting screen, wherein the output connection of the low pass filter passes directly through the interface for electrical connection, directly or indirectly, with the isolation transformer, and the low pass filter is attached to an exterior face of a wall of the electrically conducting screen; the low pass filter further comprising a printed circuit board having first and second faces; wherein the interface comprises a ground plane arranged on the first face, at least one capacitor plate is arranged on the second face opposed to the ground plane on the first face, and the output connection of the low pass filter is connected directly or indirectly to the at least one capacitor plate.

2. The filter arrangement as claimed in claim 1 , wherein the printed circuit board has a through-hole and the output connection passes via the through-hole in the printed circuit board directly to the at least one capacitor plate.

3. The filter arrangement as claimed in claim 1 , wherein the ground plane includes an aperture for passage there through of the output connection, for voltage hold off between the output connection and the ground plane.

4. The filter arrangement as claimed in claim 1 , wherein the low pass filter comprises a plurality of LC stages between a first line and the ground plane and between a second line and the ground plane.

5. The filter arrangement as claimed in claim 4 , wherein inductors in neighbouring LC stages are orthogonal to each other to minimize coupling between the inductors.

6. The filter arrangement as claimed in claim 4 , wherein the capacitors of the plurality of LC stages include capacitor plates that have dimensions of substantially 22 mm by 22 mm.

7. The filter arrangement as claimed in claim 1 , further comprising an electrically conducting screen encasing the low pass filter and arranged for electrical connection to the electrically conducting screen of the magnetron.

8. The filter arrangement as claimed in claim 7 , wherein the interface comprises a ground plane that is electrically connected to the electrically conducting screen of the low pass filter.

9. The filter arrangement as claimed in claim 1 , wherein the low pass filter is arranged to filter stray radiation with frequencies in a range 100 MHz to 1 GHz.

10. The filter arrangement as claimed in claim 1 , wherein the low pass filter is arranged to filter stray radiation with frequencies in a range 100 MHz to 2 GHz.

11. The filter arrangement as claimed in claim 1 , wherein the low pass filter is arranged for a magnetron producing an output at a frequency of substantially 900 MHz.

12. A method for reducing stray emissions from a magnetron, comprising:

using a low-pass filter comprising a printed circuit board having first and second faces attached to an exterior face of a wall of an electrically conducting screen encasing the magnetron and encasing an associated isolation transformer electrically connected to terminals of the magnetron, the second face of the printed circuit board having at least one capacitor plate arranged thereon; and

passing an output connection of the low pass filter, connected directly or indirectly to the at least one capacitor plate, directly through an interface, attached to the first face of the printed circuit board and arranged between the electrically conducting screen and the first face of the filter printed circuit board to connect electrically, directly or indirectly, with the isolation transformer.

13. A low-pass filter arrangement for reducing stray emissions from a magnetron that is encased, along with an associated isolation transformer electrically connected to terminals of the magnetron, by an electrically conducting screen, the arrangement comprising:

a low pass filter having an output connection; and

an interface between the low pass filter and the electrically conducting screen;

wherein the output connection of the low pass filter passes directly through the interface for electrical connection, directly or indirectly, with the isolation transformer, and the low pass filter is attached to an exterior face of a wall of the electrically conducting screen;

wherein the low pass filter further comprises a printed circuit board having first and second faces, wherein the interface comprises a ground plane arranged on the first face, wherein at least one capacitor plate is arranged on the second face opposed to the ground plane on the first face, and the output connection of the low pass filter is connected directly or indirectly to the at least one capacitor plate, and wherein the low pass filter comprises a plurality of LC stages between a first line and the ground plane and between a second line and the ground plane; and

wherein the low pass filter further includes a first capacitor and a first resistor in series between the first line and the ground plane and a second capacitor and a second resistor connected in series between the second line and the ground plane to ensure nominally matched impedance at frequencies of the stray emissions thereby minimizing gain of the low pass filter at frequencies in a desired attenuation band while providing insignificant impedance to a waveform output from a heater supply inverter.

Assignments (3)
CHANGE OF NAME Recorded Jan 2, 2020
From: TELEDYNE E2V (UK) LIMITED
To: TELEDYNE UK LIMITED
Reel/Frame 051461/0294 →
CHANGE OF NAME Recorded Jul 20, 2017
From: E2V TECHNOLOGIES (UK) LIMITED
To: TELEDYNE E2V (UK) LIMITED
Reel/Frame 043277/0908 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 27, 2014
From: RICHARDSON, ROBERT; OSBOURNE, KARL
To: E2V TECHNOLOGIES (UK) LIMITED
Reel/Frame 032537/0207 →