IP Library › Granted Patent US 11,740,273
Granted Patent B2
US 11,740,273 · App. 17/842,764 · Granted Aug 29, 2023

Method and system for testing radiation susceptibility

Inventors: Yung-Sen Lee (Taipei, TW); Yuan-Ho Chen (Taipei, TW)
Assignees: Inventec (Pudong) Technology Corp.; Inventec Corporation
G01R29/0821G01R29/105
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Quick Facts
Patent No.
US 11,740,273
App. No.
17/842,764
Granted
Aug 29, 2023
Kind
B2
Abstract

A radiation susceptibility testing method includes transmitting radiation waves to a device under test, measuring the device under test to obtain a first voltage according to the radiation waves, outputting a reference voltage to a coupling device so that the coupling device generates a second voltage according to the reference voltage, adjusting the reference voltage to approximate the second voltage to the first voltage, storing the adjusted reference voltage, and outputting the second voltage to the device under test according to the adjusted reference voltage to simulate the impact of the radiation waves to the device under test.

Claims (40)

1. A radiation susceptibility testing method, comprising:

transmitting radiation waves to a device under test by an antenna;

measuring the device under test to obtain a first voltage according to the radiation waves;

outputting a reference voltage to a coupling device so that the coupling device generates a second voltage according to the reference voltage;

adjusting the reference voltage to approximate the second voltage to the first voltage;

storing the adjusted reference voltage; and

outputting the approximated second voltage to the device under test according to the adjusted reference voltage to simulate an impact of the radiation waves to the device under test.

2. The radiation susceptibility testing method of claim 1 ,

wherein:

the radiation waves have a first frequency, and the adjusted reference voltage is corresponding to the first frequency; and

the radiation susceptibility testing method further comprises:

adjusting the radiation waves from the first frequency to a second frequency to further generate a second reference voltage corresponding to the second frequency.

3. The radiation susceptibility testing method of claim 1 , wherein the reference voltage is positively correlated to a sum of the second voltage and a calibration factor.

4. The radiation susceptibility testing method of claim 1 , further comprising:

accessing a first control signal between the coupling device and a peripheral control device;

accessing a second control signal between a measurement device and the peripheral control device; and

measuring the device under test by the measurement device to generate a measurement result when the coupling device outputs the second voltage to the device under test;

wherein the first control signal is related to the second control signal, the second control signal is related to the measurement result, and the measurement result is corresponding to the impact of the radiation waves to the device under test.

5. A radiation susceptibility testing system, comprising:

an antenna configured to transmit radiation waves to a device under test;

a measurement device configured to measure the device under test to obtain a first voltage according to the radiation waves;

a coupling device comprising a first terminal, a second terminal and a third terminal;

a signal generator configured to output a reference voltage to the first terminal so that the coupling device generates a second voltage according to the reference voltage; and

the device under test coupled to the second terminal of the coupling device and configured to receive the second voltage;

wherein the signal generator is further configured to adjust the reference voltage to the first terminal so that the coupling device approximates the second voltage to the first voltage and outputs the approximate second voltage to the device under test according to the adjusted reference voltage simulate the impact of the radiation waves to the device under test.

6. The radiation susceptibility testing system of claim 5 , further comprising:

a peripheral control device coupled to the third terminal of the coupling device and configured to access a first control signal; and

a measurement device coupled to the peripheral control device and the device under test and configured to access a second control signal and measure the device under test to generate a measurement result when the coupling device outputs the second voltage to the device under test;

wherein the first control signal is related to the second control signal, the second control signal is related to the measurement result, and the measurement result is corresponding to the impact of the radiation waves to the device under test.

7. The radiation susceptibility testing system of claim 6 , wherein:

the peripheral control device comprises a desktop computer, a server, a laptop computer, a tablet computer and/or a computing device; and

the measurement device comprises an oscilloscope.

8. The radiation susceptibility testing system of claim 5 , wherein the device under test comprises a network cable and a network connector.

9. The radiation susceptibility testing system of claim 5 , wherein the coupling device comprises:

a SubMiniature (SMA) connector coupled to the first terminal;

a first registered jack (RJ) connector coupled to the second terminal;

a second registered jack connector coupled to the third terminal; and

a choke circuit coupled to the third terminal.

10. The radiation susceptibility testing system of claim 5 , further comprising:

an amplifier coupled to the signal generator and the first terminal of the coupling device and configured to amplify the reference voltage.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 16, 2022
From: LEE, YUNG-SEN; CHEN, YUAN-HO
To: INVENTEC (PUDONG) TECHNOLOGY CORP.; INVENTEC CORPORATION
Reel/Frame 060233/0033 →
Priority Claims (1)
CN 202111068639.X · Sep 13, 2021 · national
Continuity (1)
Related Publication 20230085501A1 · Mar 16, 2023