Perform Insulation Resistance Test to Identify Faulty String

Insulation Resistance Test Overview

Insulation resistance testing is performed by “injecting” potential onto the conductor in the form of DC voltage, with a second conductor or ground conductor as a reference point. Any “leakage" of the potential indicates a fault in the insulation.

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Note
If an Isolation Fault error is present in the device setup interface, look for poor wire termination at the Powerwall 3 (wires not fully seated in terminals, wire strands are frayed). If poor wire terminations is not the issue, disconnect all strings from the terminals before proceeding, as the insulation resistance test is performed open air (meaning the conductors are not connected to the MPPTs during the test).
Required Tools:
  • Insulation Resistance Tester in 1000 V test mode

Identify the Faulty String

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Note
If testing a long string, perform isolation testing on shorter sections within the string to isolate the problematic segment.
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Note
Perform this testing after wires have been pulled through but before they have been landed at the Powerwall 3.
  1. Safely shut the system down:
    1. Turn the Powerwall 3 switch OFF to shut the system down, then turn the integrated DC isolator OFF.
    2. Open the Powerwall 3 circuit breaker (turn OFF).
    3. Wait 30 seconds before proceeding with any work.
      Warning IconA warning icon, calling your attention to a possibly risky situation
      Warning
      Confirm Powerwall 3 is de-energized before proceeding. Confirm the breaker is open (OFF) and solar production is disabled in Tesla One.
  2. Plug the positive and negative meter tester leads into the meter. For combination insulation resistance and multimeter testers, insert the test leads into the designated insulation testing ports.
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    Note
    Refer to the insulation resistance tester manufacturer instructions for complete test instructions.
  3. Set the tester to 1000 V mode.
  4. Use a known source (e.g. proving unit) to confirm the Insulation Resistance Tester is functioning correctly.
  5. Disconnect both (positive and negative) conductors of one string from the DC isolator and make the wiring safe for testing purposes.
  6. Test positive to Ground :
    1. Connect the insulation resistance tester positive lead (red) to the string's positive conductor.
    2. Connect the insulation resistance tester negative lead (black) to the string's equipment grounding conductor (EGC).
    3. Insulate and protect the string's negative conductor, as it is live and is not being tested during this step.
    4. Press and hold the TEST button to begin the test. Allow the reading to stabilize before recording the measurement (take the resistance value while STILL holding the TEST button).
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      Note
      Keep the test leads connected to the circuit until it is completely discharged, and the display shows near zero volts.
    5. Confirm the resistance value is greater than 1 MΩ. If the value is less than 1 MΩ, there is likely a damaged wire and/or ground fault in the system. Look for nicked or pinched wires, improper field-made connectors or improper crimps, or evidence of damaged modules that need to be replaced.
      Informational PurposesAn informational icon, calling your attention
      Note
      String voltage to ground (V DC) is expected to be a high value because it indicates an open circuit.
  7. Test negative to Ground :
    1. Connect the insulation resistance tester negative lead (black) to the string's negative conductor.
    2. Connect the insulation resistance tester positive lead (red) to the string's equipment grounding conductor (EGC).
    3. Insulate and protect the string's positive conductor, as it is live and is not being tested during this step.
    4. Press and hold the TEST button to begin the test. Allow the reading to stabilize before recording the measurement (take the resistance value while STILL holding the TEST button).
      Informational PurposesAn informational icon, calling your attention
      Note
      Keep the test leads connected to the circuit until it is completely discharged, and the display shows near zero volts.
    5. Confirm the resistance value is greater than 1 MΩ. If the value is less than 1 MΩ, there is likely a damaged wire and/or ground fault in the system. Look for nicked or pinched wires, improper field-made connectors or improper crimps, or evidence of damaged modules that need to be replaced.
      Informational PurposesAn informational icon, calling your attention
      Note
      String voltage to ground (V DC) is expected to be a high value because it indicates an open circuit.
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Note
Paralleled strings must be tested independently. This must be done on the roof, and can be done by undoing Y-connectors or removing jumpers inside the combiner box.

Identify the Failure in the Faulty String

To find the failure, perform a close inspection of all the components in the faulty string:

  • Inspect where the wires exit conduit, and where wires pass through conduit bodies, as nicked wires may occur here
  • Check for wires pinched by mounting hardware or damaged by fasteners
  • Check for improper field-made connectors or improper crimps
  • Look for evidence of damaged modules:
    • Microcracks
    • Signs of water intrusion
    • Module leads are bent at sharp angles
  • For the faulty string, try testing the string with the DC grounding conductor (EGC) removed from the inverter's ground terminal; if the string passes self-test with the grounding conductor removed, it is likely the string is faulting to ground somewhere

If any of the above issues are found, fully replace the damaged wire and/or perform the necessary repairs to ensure the system's lifespan is not compromised.