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Yaskawa GA700 OC Fault — Overcurrent Fix

⚡ Quick Answer

Diagnose Yaskawa GA700 OC Fault - Overcurrent Fix: likely causes to check, measurements to verify, and repair decisions before parts replacement.

⚡ AT A GLANCEScroll down for full repair guide
What it meansYaskawa GA700 OC means output current exceeded the drive limit; oC1, oC2, and oC3 tell you whether it happened during acceleration, deceleration, or steady running.
Most likely causeCommon causes include too-short ramps, mechanical binding, motor winding faults, long motor leads, missing motor-nameplate parameters, regeneration, and output-stage trouble.
First checkRecord the OC sub-fault, inspect the load, compare motor current, megger the disconnected motor and cable, verify E1 motor parameters, and check whether a reactor or braking resistor is needed.
⏱Repair time20-60 minutes for motor/load checks; longer for reactor, braking, or drive service work
🔧Part neededOutput reactor, dynamic braking resistor, shielded VFD motor cable, motor insulation tester, clamp meter
Repair intent

Need this fixed instead of diagnosed?

Diagnose Yaskawa GA700 OC Fault - Overcurrent Fix: likely causes to check, measurements to verify, and repair decisions before parts replacement.

Parts to price first

Check the part before you book service.

Yaskawa GA700 output reactor

Size by drive current and voltage when long motor leads are causing capacitive overcurrent trips.

Dynamic braking resistor

Match resistance, wattage, duty cycle, and braking-unit requirements before using for oC2 deceleration faults.

Shielded VFD-rated motor cable

Use when insulation, cable length, or noise diagnosis points to replacing the motor lead set.

$2-$8 per foot Check price

Motor insulation tester megohmmeter

Use on disconnected motor leads to separate motor or cable insulation failure from a drive fault.

True RMS clamp meter

Use to compare phase current and load behavior before changing GA700 parameters or replacing hardware.

Yaskawa GA700 OC Fault — What It Means

The Yaskawa GA700 is the latest generation general-purpose inverter, succeeding the A1000 series. The OC fault (Overcurrent) appears when the drive’s output current exceeds 200% of the drive’s rated current. The GA700 has enhanced current detection compared to earlier Yaskawa drives and can distinguish between acceleration overcurrent (oC1), deceleration overcurrent (oC2), and constant-speed overcurrent (oC3), giving you a more precise indication of when in the operating cycle the fault occurs.

Jump to Fix

OC Sub-Faults on the GA700

CodeWhen It Occurs
oC1During acceleration
oC2During deceleration
oC3At constant speed

Common Causes

Step-by-Step Fix

  1. Note the exact sub-fault code (oC1, oC2, or oC3) — The sub-fault tells you when in the cycle the overcurrent occurs, which directs you to the right fix.
  2. For oC1 — Increase the acceleration time in parameter C1-01. Start by doubling the current value. Also verify the load is freely rotating by hand (with power off) before restarting.
  3. For oC2 — Increase the deceleration time in parameter C1-02. If the load has very high inertia (large fans, centrifuges), add a dynamic braking unit and resistor to absorb regenerative energy.
  4. For oC3 — Check the mechanical load. Remove the obstruction if present. Measure motor phase currents with a clamp meter during steady-state operation — they should be balanced and below nameplate FLA.
  5. Megger the motor — With the motor disconnected from the drive and power off, test insulation resistance phase-to-ground (500V DC megger). Values below 1 MΩ indicate deteriorating insulation that will produce intermittent OC faults.
  6. Check motor cable length and shielding — If the cable run exceeds 100 feet, add a load reactor (output choke) at the drive output terminals to reduce capacitive charging current.
  7. Verify motor parameters — Navigate to the GA700’s E1 parameter group and confirm motor voltage (E1-01), motor rated current (E1-03), motor rated frequency (E1-04), and motor rated speed (E1-05) all match the motor nameplate.
  8. Run auto-tune — After confirming motor parameters, run the GA700’s auto-tune function (T1-00 parameter). Auto-tune measures the actual motor characteristics and optimizes the drive’s control performance, which can eliminate OC faults caused by improper vector control tuning.

Parts Often Needed

PartNotes
Output reactor (load reactor)For long cable runs >100 ft; reduces capacitive OC faults
Dynamic braking resistor/unitFor oC2 on high-inertia loads
Motor (replacement)If megger test shows insulation breakdown

Technician Tips

When diagnosing VFD faults, always check the drive’s fault history before resetting. Modern drives store the last 5-10 faults with the drive state at the time (running, accelerating, decelerating, stopped). An overcurrent fault that occurs only during acceleration points to incorrect motor data or mechanical binding. The same fault during deceleration suggests regeneration issues. A ground fault that clears after disconnecting the motor and returns when reconnected means the motor or cable insulation has failed.

Prevention: Schedule annual infrared scanning of drive cabinets. Loose power connections and failing capacitors produce heat long before they cause faults. A 5-minute scan can prevent hours of unplanned downtime.

Need Replacement Parts?

Before ordering, match the drive part to the model number, voltage class, amp rating, motor lead length, and confirmed OC sub-fault. Check current prices on Amazon - prices and availability change frequently.

When to Call a Pro

If oC3 persists with a confirmed healthy motor, correct cable length, and properly tuned drive parameters, the GA700’s IGBT output stage may have developed a fault. Yaskawa’s Technical Support Center (1-800-927-5292) can walk through advanced diagnostics, or the drive can be sent to a Yaskawa authorized repair center for board-level testing.

Quick FAQ

What is the difference between Yaskawa GA700 oC1, oC2, and oC3?

oC1 happens during acceleration, oC2 happens during deceleration, and oC3 happens at constant speed. The sub-fault points you toward ramp settings, regeneration, or a steady mechanical or motor problem.

Should I megger the motor for a GA700 OC fault?

Yes, after disconnecting the motor from the drive and following site safety procedures. A low phase-to-ground reading points to motor or cable insulation failure.

When does a GA700 OC fault need an output reactor?

Use an output reactor when long motor leads or cable capacitance are causing overcurrent trips after the motor, load, and parameters check out.


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