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Retro C
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- Articles coming soon
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- Replace the Retro C Computer
- Configure the Touchscreen Computer to Power On Automatically
- Replace the microSD Card in a Display Computer
- Transfer Files to the Retro C
- Replace the USB Drive in the Touchscreen Computer
- Configure a Newer Computer to Power On After an Outage
- Configure an Older Computer to Power On After an Outage
- Touchscreen Pointer Is Flipped or Mirrored
- Replace the Retro C Touchscreen USB Drive
- Retro C Touchscreen Is Black or Will Not Start
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- Recover and Recalibrate a Stuck Angle or Centerline
- Replacing an Angle Encoder
- Angle Movement Overruns the Commanded Position
- Angle (Arch) Movement Overview
- Angle Chains – Proper Chain Tension
- Diagnose Unknown Blade Motor Noises
- Pivot Point Calibration Check
- Troubleshoot Power or Wiring for Angle Motors and VFDs
- Dirty Saw Head Slide: Symptoms and Cleaning
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- Recover and Recalibrate a Stuck Angle or Centerline
- Calibrate Retro C Centerlines 1–5
- Advanced Centerline Recovery When Calibration Is Far Out
- Centerline (Vertical) Movement Overview
- Replace a Centerline Encoder
- Replacing a Centerline Gearbox
- Check the Centerline Maximum and Minimum Height Settings
- Tighten the Centerline Slides
- Adjust Centerline Chain Tension
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- Third Scrap Drive Wiring and GS23 Programming
- Adjust or Tighten the Scrap Conveyor Belt
- Configure the Scrap or Incline Conveyor to Always Run
- Replacing the Scrap Motor
- Scrap Belt: Support Roller Replacement
- Scrap Belt Sweeper Adjustment and Inspection
- Scrap Belt Tracking and Alignment
- Retro C Scrap System Overview and Daily Checks
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- VFD General Reference and Troubleshooting
- Drive (VFD) Disconnected Warning: Diagnosis and Recovery
- GS1 and GS2 VFD Reference
- GS20 VFD Reference
- GS20 ACM/DCM Common Wiring
- GS20 Standard VFD Wiring Reference
- GS3 VFD Reference
- Program a Replacement CFW Drive
- GS VFD Overvoltage Warning: Diagnosis and Safe Response
- VFD Replacement Options
- Yaskawa V1000 Blade Programming
- Program an AutomationDirect GS23 VFD
- Common VFD Wiring to VC1s
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- Replace and Commission a VC1
- Replace a VC1: Mechanical and Electrical Procedure
- Add a Delay Diode Jumper to a VC1
- Configure the Software After Replacing a VC1
- Temporary 24 V UPS Bypass: Qualified-Technician Procedure
- VC1 Standard Jumper Removal
- 24 AWG-to-22 AWG VC1/VFD Cable Upgrade Wiring Reference
- VC1 Status Lights and Startup Diagnosis
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- Encoder Wiring Diagram
- Stationary and Carriage Panel Cable Entry Layout
- Troubleshoot Power or Wiring for Angle Motors and VFDs
- Replace the Wires and Hoses in the Energy Chain
- Temporary 24 V UPS Bypass: Qualified-Technician Procedure
- 24 AWG-to-22 AWG VC1/VFD Cable Upgrade Wiring Reference
- Common VFD Wiring to VC1s
- Retro C Encoder Counts Move in the Wrong Direction
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- Common Retro C Issues and Solutions
- Countdown Timer Warning with All VC1s and VFDs Disconnected
- Scrap Belt or Scrap Incline VFD Disconnected: Troubleshooting
- Recover and Recalibrate a Stuck Angle or Centerline
- Touchscreen Pointer Is Flipped or Mirrored
- Encoder Unplugged Error: Diagnosis and Recovery
- Stationary or Carriage Horizontals Will Not Move
- Error Messages and Warnings: Quick Index
- Retro C Will Not Start or Enable After Power-Up
- Retro C Calibration Will Not Hold or Changes After Restart
- Recover Retro C After an Unexpected Power Loss
- Recover Retro C After an Unexpected Power Loss
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Linear Pickline
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- Foot Pedal Controls and Troubleshooting
- Unexpected Conveyor Movement Caused by a Foot Pedal Contact
- Front Conveyor Sensor: Location and Diagnosis
- Kindle Fire 8 Configuration
- Linear PickLine – Conveyor Sensor Integration
- Linear PickLine – Installation Requirements
- Linear PickLine – Installing the Brain Box
- SmartConveyor Air Stop: Operation and Troubleshooting
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Plant One Projection
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SmartConveyor
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- Cable Pull Emergency-Stop System
- SmartConveyor V40 Encoder: Route, Replacement, and Verification
- Foot Pedal Controls and Troubleshooting
- Unexpected Conveyor Movement Caused by a Foot Pedal Contact
- Front Conveyor Sensor: Location and Diagnosis
- SmartConveyor Dual-Pedal Controls
- SmartConveyor Air Stop: Operation and Troubleshooting
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Sticker Printer
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NexPlate
GS VFD Overvoltage Warning: Diagnosis and Safe Response
Applicability
| Product | GS-series VFD |
|---|---|
| Subsystem | Input power and DC-bus voltage |
| Drive/controller | GS-series VFD |
| Skill level | Qualified electrical technician |
| Lockout/tagout | Required for enclosure access, measurements, or wiring changes |
A GS VFD reports an overvoltage warning when its measured voltage rises above the drive’s acceptable range. On the systems covered by this article, a VFD-software reading above 340 V triggers the warning.
Electrical hazard: Stop the affected movement and contact Enventek Support. Incoming-power measurements and wiring changes must be performed by a qualified electrician using the machine schematic and approved electrical-safety procedures.
Record the fault before resetting
- The exact VFD warning or fault code.
- The voltage value shown in the VFD software.
- Which drive and machine movement are affected.
- Whether the fault occurs at power-up, during acceleration, while stopping, or intermittently.
- Any recent facility-power, transformer, wiring, or VFD changes.
Likely causes
- Incoming supply voltage is too high.
- One supply leg is higher than the others or the phase voltages are unbalanced.
- The drive is connected to a supply configuration that does not match its rating or application.
- Regenerated energy during deceleration raises the DC-bus voltage.
- A wiring, grounding, parameter, or drive fault is producing an incorrect condition or reading.
Qualified-electrician checks
- Verify the drive model, input rating, and machine schematic.
- Measure the incoming supply using the facility’s approved procedure and compare the phase-to-phase readings.
- Investigate and correct an abnormally high or unbalanced supply leg.
- Inspect the VFD input wiring, disconnects, fuses, grounding, and terminal condition.
- Provide the readings and fault history to Enventek Support before changing wiring or drive parameters.
Do not remove a supply leg unless Enventek Support confirms the exact drive and schematic. Some PickLine conveyor drives are designed to use only legs 1 and 3, but this does not apply to every VFD or motor. Applying that workaround to the wrong drive can damage equipment or create a hazardous condition.
What Correct Looks Like
After the cause is corrected, confirm that the displayed voltage remains below the warning threshold through power-up, acceleration, steady operation, and stopping. If the warning returns, stop resetting the drive and provide Enventek Support with the measured incoming voltages and exact operating point of the fault.
Escalate When
Record the exact screen message, affected component, indicator-light state, and steps already attempted. Contact Enventek Technical Support if the fault remains or the machine does not respond as expected.