IP Library Granted Patent US 12684678
Granted Patent B2
US 12684678 · App. 18/930,625 · Granted Jul 14, 2026

X-ray fluorescence spectrometer and power supply apparatus

Inventor: Yohei Ukai (Kyoto, JP)
Assignee: SHIMADZU CORPORATION
H05G1/54G01N23/223H05G1/265H05G1/32H05G1/56
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Quick Facts
Patent No.
US 12684678
App. No.
18/930,625
Granted
Jul 14, 2026
Kind
B2
Abstract

An X-ray fluorescence spectrometer includes a first power supply that applies a tube voltage and a second power supply that supplies a filament current. The first power supply includes a switching circuit connected to a primary side of a transformer. The X-ray fluorescence spectrometer includes a current detection circuit connected to the primary side of the transformer to detect a current that flows to the primary side of the transformer and a control circuit that controls the first power supply based on the detected current. The current detection circuit includes a first comparator configured to detect whether or not the current detected by the current detection circuit is equal to or larger than a first threshold value. The control circuit detects occurrence of electric discharge based on detection of the current equal to or larger than the first threshold value by the current detection circuit.

Claims (34)

1 . An X-ray fluorescence spectrometer comprising:

an X-ray tube including a filament and a target, the X-ray tube irradiating a sample with primary X-rays;

a detector that detects secondary X-rays generated from the sample;

a first power supply that applies a tube voltage to the target;

a second power supply that supplies a filament current to the filament,

the first power supply including

a transformer, and

a switching circuit connected to a primary side of the transformer;

a current detection circuit connected to the primary side of the transformer to detect a current that flows to the primary side of the transformer; and

a control circuit that controls the first power supply based on the current detected by the current detection circuit, wherein

the current detection circuit includes a first comparator configured to detect whether the current detected by the current detection circuit is equal to or larger than a first threshold value, and

the control circuit detects occurrence of electric discharge based on detection of the current equal to or larger than the first threshold value by the current detection circuit.

2 . The X-ray fluorescence spectrometer according to claim 1 , wherein

the current detection circuit further includes a second comparator that detects whether the current detected by the current detection circuit is equal to or larger than a second threshold value smaller than the first threshold value.

3 . The X-ray fluorescence spectrometer according to claim 2 , wherein

the control circuit

stops operation of the first power supply when the current detected by the current detection circuit is equal to or larger than the second threshold value and equal to or larger than the first threshold value, and

does not stop operation of the first power supply when the current detected by the current detection circuit is equal to or larger than the second threshold value and smaller than the first threshold value.

4 . The X-ray fluorescence spectrometer according to claim 3 , wherein

the control circuit determines that the electric discharge is not occurring even when the current detected by the current detection circuit is equal to or larger than the second threshold value until lapse of a first period since acceptance of change of a setting value of an output voltage from the first power supply.

5 . The X-ray fluorescence spectrometer according to claim 1 , wherein

when the control circuit determines that the electric discharge has occurred a predetermined number of times within a predetermined period, the control circuit encourages a user to perform maintenance of the X-ray fluorescence spectrometer.

6 . The X-ray fluorescence spectrometer according to claim 1 , wherein

the control circuit determines that the electric discharge is not occurring even when the current detected by the current detection circuit is equal to or larger than the first threshold value until lapse of a first period since acceptance of change of a setting value of an output voltage from the first power supply.

7 . A power supply apparatus that supplies a current to an X-ray tube including a filament and a target, the power supply apparatus comprising:

a first power supply that applies a tube voltage to the target;

a second power supply that supplies a filament current to the filament,

the first power supply including

a transformer, and

a switching circuit connected to a primary side of the transformer;

a current detection circuit connected to the primary side of the transformer to detect a current that flows to the primary side of the transformer; and

a control circuit that controls the first power supply based on the current detected by the current detection circuit, wherein

the current detection circuit includes a first comparator configured to detect whether the current detected by the current detection circuit is equal to or larger than a first threshold value, and

the control circuit detects occurrence of electric discharge based on detection of the current equal to or larger than the first threshold value by the current detection circuit.