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Vitrek 952i - Specifications

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95x Series Operating Manual - May 17, 2022
Page 53 of 155
Firstly, test the lower voltage resistance and capacitance leakage.
Seq 1 Step 1 ACW Different breakdown and leakage limits needed, so use ACW
LEVEL: 500.0V 60.0Hz As required
BREAKDOWN: 5.000mApk Since the DUT is known to have little leakage this could be set lower
RAMP: 0.02sec No timing requirement, so set for fast testing
DWELL: 0.10sec No timing requirement, so set for fast testing
Test 1: INPHS Test the resistive leakage
Lim:100.0M-no maxΩ As required
Test 2: QUAD Test the capacitive leakage
Lim:26.50M-no maxΩ 26.5Mohm = 1/(2πFC) = the impedance of 100pF at 60Hz
ARC DETECT:4us 10mA Optional
DISCHARGE: NONE No need to discharge between this and the next step
ON FAIL: ABORT SEQ No further test steps if this step fails
Secondly test the high voltage withstand capability.
Seq 1 Step 2 ACW Could use ACez if arc detection not needed
LEVEL:2000.0V 60.0Hz As required
BREAKDOWN: 5.000mApk Since the DUT is known to have little leakage this could be set lower
RAMP: 1.00sec As required
DWELL: 1.00sec As required
Test 1: NONE No leakage testing required
Test 2: NONE No leakage testing required
ARC DETECT:4us 10mA Optional
DISCHARGE: FAST Immediately discharge as this is the last step
ON FAIL: ABORT SEQ
Example 3 -
A 0.033uF 1000Vac capacitor is to be tested against its tolerance (0.033uF ± 5%) and DF (<1%) specifications.
A nominal capacitor at 1000V/60Hz will draw 12.4mArms, so this is within the capabilities of all 95x models so the
capacitor can be tested at its maximum voltage rating.
This is accomplished in a single step as follows
Seq 1 Step 1 ACCAP
LEVEL:1000.0V 60.0Hz As required
BREAKDOWN: 25.00mApk As required
RAMP: 1.00sec Slow ramp to better measure breakdown voltage
DWELL: 5.0sec Optional, could be faster
C: 31.35n-34.65nF As required
DF: 0.0000-0.0100 As required
ARC DETECT:OFF Optional
DISCHARGE: FAST
ON FAIL: ABORT SEQ
SPECIFICATIONS
Specifications are valid at the 95x terminals for 1 year at ambient temperatures within ±5C of calibration
tem7perature (add 5% of accuracy specification per C outside of this). All specifications are relative to the

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