RadiMation Application Note 164: Difference between revisions
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=== Configure the calibration === | === Configure the calibration === | ||
The configuration of the calibration can be created by selecting the menu: | |||
{{Menu|Calibration|System calibration|Conducted susceptibility}} | {{Menu|Calibration|System calibration|Conducted susceptibility}} | ||
[[File:CS101_Calibration_configuration.png]] | |||
[[File: | |||
{{ScreenElementDescriptionStart}} | {{ScreenElementDescriptionStart}} | ||
{{ScreenElementDescription|Start|The start frequency of the calibration. | {{ScreenElementDescription|Start|The start frequency of the calibration. 30 Hz.}} | ||
{{ScreenElementDescription|End|The stop frequency of the calibration. | {{ScreenElementDescription|End|The stop frequency of the calibration. 150 kHz.}} | ||
{{ScreenElementDescription|Step|The frequency step, | {{ScreenElementDescription|Step|The frequency step, 5%.}} | ||
{{ScreenElementDescription|Test level|The test level, in this case {{ScreenElement| | {{ScreenElementDescription|Test level|The test level, in this case {{ScreenElement|Voltage}}.}} | ||
{{ScreenElementDescription|Variable|The variable test level, select the correction file created earlier.}} | {{ScreenElementDescription|Variable|The variable test level, select the correction file created earlier.}} | ||
{{ScreenElementDescription|Tolerance|The regulation tolerance.}} | {{ScreenElementDescription|Tolerance|The regulation tolerance.}} | ||
{{ScreenElementDescription|Calibration method|The power measurement that should be the result of the calibration: {{ScreenElement| | {{ScreenElementDescription|Calibration method|The power measurement that should be the result of the calibration: {{ScreenElement|Signal generator level}}}} | ||
{{ScreenElementDescription|Test equipment|Calibration test equipment.}} | {{ScreenElementDescription|Test equipment|Calibration test equipment.}} | ||
{{ScreenElementDescription|Test engineer|The engineer that performed the calibration.}} | {{ScreenElementDescription|Test engineer|The engineer that performed the calibration.}} |
Revision as of 10:06, 26 February 2025
How to perform a MIL-STD-461 CS101, Conducted susceptibility, power leads[edit]
This application note explains how the MIL-STD-461 CS101, Conducted susceptibility, power leads test can be performed with RadiMation®
MIL-STD-461 CS101 is a test method used in military and aerospace environments to assess the conducted susceptibility of equipment to low-frequency interference, 30 Hz - 150 kHz, ensuring it operates reliably in the presence of conducted disturbances.
The exact requirements and test methods for the CS101 are specified in the MIL-STD-461.
Necessary equipment[edit]
The following devices are necessary to run the calibration and EUT test:
- Signal generator
- Amplifier
- Coupler
- Forward power meter (optional)
- Oscilloscope or measurement receiver
- 0.5 Ω resistor
Define the calibration test level[edit]
The CS101 EUT test is limited by the power levels specified in CS101-2, applied through a 0.5 Ω resistor.
During the calibration RadiMation® is levelling on a voltage and the corresponding signal source is recorded which is used during EUT testing to limit on.
To calculate the corresponding voltages based on the power levels the following formula can be used:
This gives the following voltages:
Frequency | Power | Voltage |
---|---|---|
30 Hz | 80 Watts | 136 dBµV |
5 kHz | 80 Watts | 136 dBµV |
150 kHz | 0.09 Watts | 106.5 dBµV |
[edit]
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File
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New
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Correction
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-
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Note: | Make sure to add the Vrms column with Columns/Units and remove the Correction column. In addition change the Unit to dBµV. |
[edit]
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File
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Save correction
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Store the test level as correction file on disk.
Calibration procedure[edit]
The calibration is performed to determine the signal source required for the corresponding power level through the 0.5 Ω resistor, which will be used during EUT testing as limit.
Calibration equipment[edit]
The configuration of the calibration test site should contain the following devices:
# | Device name | Tab in testsite configuration window | note |
---|---|---|---|
Signal Generator | Devices 1 | The signal generator to use | |
Amplifier | Devices 1 | The amplifier to use | |
Oscilloscope | Devices 1 | Oscilloscope | |
Sensor power meter | Devices 2 | measurement receiver as power meter (in case no oscilloscope is used) |
Configure the calibration[edit]
The configuration of the calibration can be created by selecting the menu:
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Calibration
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System calibration
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Conducted susceptibility
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-
-
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The start frequency of the calibration. 30 Hz. |
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The stop frequency of the calibration. 150 kHz. |
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The frequency step, 5%. |
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The test level, in this case Voltage. |
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The variable test level, select the correction file created earlier. |
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The regulation tolerance. |
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The power measurement that should be the result of the calibration: Signal generator level |
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Calibration test equipment. |
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The engineer that performed the calibration. |
Calibration result[edit]
When the calibration is performed, the engineer is asked, to save the results of that calibration to a calibration (.CAL) file. It is possible to give the .CAL file any clear and distinct name. All three bands have to calibrated, and at the end, there should be three different calibration files that are generated.
Verification[edit]
CS114 requires to perform a verification of the setup with the current probe in the calibration setup. With this verification it is important to verify that the forward power of the calibration is followed and that the generated current is within 3 dB tolerance of the current test limit.
Verification equipment[edit]
The configuration of the verification test site should contain the following devices:
# | Device name | Tab in testsite configuration window | note |
---|---|---|---|
Signal Generator | Devices 1 | The signal generator to use | |
Amplifier | Devices 1 | The amplifier to use | |
Coupler | Devices 1 | The coupler to use | |
Forward power meter | Devices 1 | The forward power meter to use | |
Sensor powermeter | Devices 2 | The power meter or analyser to use for measuring the current | |
Current Sensor | Devices 2 | The current sensor to use with transfer factor attached to the driver | |
Injection device | Devices 2 | The injection clamp to use | |
Cables | |||
① | Cable current -> power meter | Cables | Cable with a correction file specified for the cable loss |
② | Cable current -> power meter | Cables | Cable with the specified loss of the used attenuator |
③ | Cable current -> power meter | Cables | Cable with a correction file specified for the cable loss |
Configure the verification[edit]
The verification can be performed in RadiMation® by doing an actual conducted immunity test. This test can be started by selecting from the menu:
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Tests
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Conducted Immunity
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Multiband
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-
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Create a new multiband conducted immunity test and define three bands with the following settings:
Band | Frequency range | Step size |
---|---|---|
Band 1 | 10 kHz - 1 MHz | 10 % |
Band 2 | 1 MHz - 30 MHz | 2 % |
Band 2 | 30 MHz - 200 MHz | 1 % |
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The start frequency of the verification. For example 10 kHz. |
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The stop frequency of the verification. For example 1 MHz. |
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The frequency step, see 5.12.3.4.c.3. |
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The dwell time specified see TABLE II of the MIL-STD-461. |
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The method that is used to change from one to the next frequency: Constant. |
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Modulation is optional during the verification. |
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The equipment needed for the verification. |
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Injection clamp. |
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Specify the test level Current substitution method. |
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Add the Current sensor as an input. |
Each band needs a test level defined with the test level Current substitution method and the appropriate calibration file attached.
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The description of the test level. |
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Select the calibration file created during the calibration procedure. |
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Variable current and specify the correction file for the applicable test level created during the calibration procedure. |
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Select Forward Power. |
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Specify the tolerance to use. |
Add an input Current sensor, this will ensure that the current is measured during the test.
Run the verification test[edit]
When all settings are configured press Start Test to run the verification test.
Verification result[edit]
With the result of the verification it should be possible to determine if the measured current is within the 3 dB tolerance of the current test limit as specified in clause 5.12.3.4.c of the MIL-STD-461.
EUT Testing[edit]
EUT Testing equipment[edit]
The configuration of the eut test site should contain the following devices:
# | Device name | Tab in testsite configuration window | note |
---|---|---|---|
Signal Generator | Devices 1 | The signal generator to use | |
Amplifier | Devices 1 | The amplifier to use | |
Coupler | Devices 1 | The coupler to use | |
Forward power meter | Devices 1 | The forward power meter to use | |
Sensor powermeter | Devices 2 | The power meter or analyser to use for measuring the current | |
Current Sensor | Devices 2 | The current sensor to use with transfer factor attached to the driver | |
Injection device | Devices 2 | The injection clamp to use | |
Cables | |||
① | Cable current -> power meter | Cables | Cable with a correction file specified for the cable loss |
② | Cable current -> power meter | Cables | Cable with the specified loss of the used attenuator |
③ | Cable current -> power meter | Cables | Cable with a correction file specified for the cable loss |
Configure the EUT test[edit]
To perform the actual test on the EUT, create a conducted immunity multiband test with 3 bands. The conducted immunity multiband test, can be started by selecting from the menu:
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Tests
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Conducted Immunity
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Multiband
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-
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The following bands should be configured.
Band | Frequency range | Step size |
---|---|---|
Band 1 | 10 kHz - 1 MHz | 5 % |
Band 2 | 1 MHz - 30 MHz | 1 % |
Band 2 | 30 MHz - 200 MHz | 0.5 % |
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The start frequency of the test. For example 10 kHz. |
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The stop frequency of the test. For example 1 MHz. |
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The frequency step, see Table III. |
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The dwell time specified see TABLE II of the MIL-STD-461. |
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The method that is used to change from one to the next frequency: Constant. |
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Configure Pulse Modulation with 1 kHz and 50% duty cycle. |
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The equipment needed for the conducted immunity test. |
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Injection clamp. |
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Specify the Current substition method and add a limit Measured Current Limit |
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No inputs are needed. |
To configure the pulse modulation settings click Config next to the modulation settings, click the PM tab, and enter the pulse modulation settings as defined in 5.12.3.4.d.1.
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Check this checkbox to enable the pulse modulation. |
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The PM frequency 1 kHz. |
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A duty cycle of 50%. |
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Check this checkbox to enable modulation outside the dwell-time. |
At TestLevel click Add to add a new Test level and select TestLevel - Current substitution method
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The description of the test level. |
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Select the calibration file to use for this band. |
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Variable current, and specify the correction file for the applicable test level. |
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Select Forward Power. |
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Specify the tolerance to use. |
Next to the test level add a limit, At TestLevel click Add to add a new Limit and select Limit - Measured Current Limit
With this limit the level will not be regulated higher than the measured current in the cable even if the forward power is not reached yet.
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The description of the limit |
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The current to limit on. |
When all bands are configured press Start Test to run the EUT test.
EUT Test Result[edit]
Once the test is finished, the results of this test are stored in the EUT file and available as one of the performed Tests in the EUT file. Selecting the corresponding test result and pressing on Info will show the test results again.
Conclusion[edit]
The MIL-STD-461G CS114 calibration can be performed by using the Conducted immunity calibration. The RadiMation® Conducted immunity multiband test can then be used to perform the MIL-STD-461G CS114 verification and the EUT test with a calibration file and the current sensor used as a limit in the EUT test.