Category hub / Drives / VFD

Drives and VFD references - diagnose the recovery path

A variable-frequency drive cannot be evaluated as an isolated box. Motor data, supply conditions, load, braking, parameters, and the machine duty all affect the next decision. This hub organizes those questions while the catalog has no reviewed drive reference ready for publication.

Drives / VFD / field guide and catalog statecomplete

Catalogue references

525 catalogue references

525 catalogue references.

Drives / VFD catalogue search results
RankReferenceManufacturerTypeSystem roleEvidenceStatusAction
100-117-344Not statedNot statedDrives a KUKA servo motor from the controller's motion-command path.Individual researchPUBLISHEDOpen reference
200-117-345Not statedNot statedDrives a KUKA servo motor from the controller's motion-command path.Individual researchPUBLISHEDOpen reference
300-122-284Not statedNot statedDrives a KUKA servo motor from the controller's motion-command path.Individual researchPUBLISHEDOpen reference
400-122-285Not statedNot statedDrives a KUKA servo motor through the listed KSD1-16 servo-drive module.Individual researchPUBLISHEDOpen reference
500-122-286Not statedNot statedDrives a KUKA servo motor through the listed KSD1-32 servo amplifier.Individual researchPUBLISHEDOpen reference
600-245-213Not statedNot statedThe servo drive drives motor power in the KUKA robot motion system.Individual researchPUBLISHEDOpen reference
7037N0074Not statedNot statedThe soft starter controls motor voltage during starting and stopping.Individual researchPUBLISHEDOpen reference
807.F5.B0A-6A0ANot statedNot statedThe axis drive controls motor power and output frequency in the KEB COMBIVERT F5 motion system.Individual researchPUBLISHEDOpen reference
907.F5.B1A-Z000Not statedNot statedThe variable-frequency drive controls motor power and output frequency in the KEB COMBIVERT F5 system.Individual researchPUBLISHEDOpen reference
1007.F5.CBB-YA53Not statedNot statedThe frequency inverter controls motor power and output frequency in the KEB COMBIVERT F5 system.Individual researchPUBLISHEDOpen reference
1109.F4.S1D-4A01Not statedNot statedThe frequency inverter controls motor power and output frequency in the KEB COMBIVERT F4 system.Individual researchPUBLISHEDOpen reference
1209.F5.A1A-3D2FNot statedNot statedThe frequency inverter controls motor power and output frequency in the KEB COMBIVERT F5 Multi system.Individual researchPUBLISHEDOpen reference
1309.F5.B1B-3A0ANot statedNot statedThe frequency inverter controls motor power and output frequency in the KEB COMBIVERT F5 system.Individual researchPUBLISHEDOpen reference
1409.F5.CBB-YM00Not statedNot statedThe KEB COMBIVERT F5 drive controls a connected three-phase motor in the machine drive system.Individual researchPUBLISHEDOpen reference
1510.F4.C1D-3460Not statedNot statedThe KEB COMBIVERT F4 drive controls a connected three-phase motor in the machine drive system.Individual researchPUBLISHEDOpen reference
1610.F4.C1D-4A01Not statedNot statedThe KEB COMBIVERT F4 drive controls a connected three-phase motor in the machine drive system.Individual researchPUBLISHEDOpen reference
1710.F4.F3D-4R01Not statedNot statedThe KEB COMBIVERT F4 drive controls a connected three-phase motor in the machine drive system.Individual researchPUBLISHEDOpen reference
1810.F5.B1B-3A0ANot statedNot statedThe KEB COMBIVERT F5 drive controls a connected three-phase motor in the machine drive system.Individual researchPUBLISHEDOpen reference
1912.F5.A1D-3A0ANot statedNot statedThe KEB COMBIVERT F5 drive controls a connected three-phase motor in the machine drive system.Individual researchPUBLISHEDOpen reference
2012.F5.B1D-3A0ANot statedNot statedThe KEB COMBIVERT F5 drive controls a connected three-phase motor in the machine drive system.Individual researchPUBLISHEDOpen reference
2112.F5.C1B-350ANot statedNot statedThe KEB COMBIVERT F5 drive controls a connected three-phase motor in the machine drive system.Individual researchPUBLISHEDOpen reference
22131B0091Not statedNot statedControls the connected motor or motion system as a Danfoss VLT AutomationDrive FC 302 within the documented Danfoss VLT AutomationDrive FC 301/302 family.Individual researchPUBLISHEDOpen reference
23131B0119Not statedNot statedControls the connected motor or motion system as a Danfoss VLT AutomationDrive FC 302 within the documented Danfoss VLT AutomationDrive FC 301/302 family.Individual researchPUBLISHEDOpen reference
24131B0149Not statedNot statedControls the connected motor or motion system as a Danfoss VLT AutomationDrive FC 302 within the documented Danfoss VLT AutomationDrive FC 301/302 family.Individual researchPUBLISHEDOpen reference
25131B0507Not statedNot statedControls the connected motor or motion system as a Danfoss VLT AutomationDrive FC 302 within the documented Danfoss VLT AutomationDrive FC 301/302 family.Individual researchPUBLISHEDOpen reference
26131B1980Not statedNot statedControls the connected motor or motion system as a Danfoss VLT AutomationDrive FC 302 within the documented Danfoss VLT AutomationDrive FC 301/302 family.Individual researchPUBLISHEDOpen reference
27131B8220Not statedNot statedControls the connected motor or motion system as a Danfoss VLT HVAC Drive FC 102 within the documented Danfoss VLT HVAC Drive FC 102 family.Individual researchPUBLISHEDOpen reference
28131F6617Not statedNot statedControls the connected motor or motion system as a Danfoss VLT AutomationDrive FC 302 within the documented Danfoss VLT AutomationDrive FC 301/302 family.Individual researchPUBLISHEDOpen reference
29131F8891Not statedNot statedControls the connected motor or motion system as a Danfoss VLT AutomationDrive FC 302 within the documented Danfoss VLT AutomationDrive FC 301/302 family.Individual researchPUBLISHEDOpen reference
30131F9966Not statedNot statedControls the connected motor or motion system as a Danfoss VLT AutomationDrive FC 302 within the documented Danfoss VLT AutomationDrive FC 301/302 family.Individual researchPUBLISHEDOpen reference
31131H2822Not statedNot statedControls the connected motor or motion system as a Danfoss VLT AutomationDrive FC 302 within the documented Danfoss VLT AutomationDrive FC 301/302 family.Individual researchPUBLISHEDOpen reference
32131H5299Not statedNot statedControls the connected motor or motion system as a Danfoss VLT AutomationDrive FC 302 within the documented Danfoss VLT AutomationDrive FC 301/302 family.Individual researchPUBLISHEDOpen reference
33131L9866Not statedNot statedControls the connected motor or motion system as a Danfoss VLT HVAC Basic Drive FC 101 within the documented Danfoss VLT HVAC Basic Drive FC 101 family.Individual researchPUBLISHEDOpen reference
34131N5457Not statedNot statedControls the connected motor or motion system as a Danfoss VLT AutomationDrive FC 302 within the documented Danfoss VLT AutomationDrive FC 301/302 family.Individual researchPUBLISHEDOpen reference
35135N1829Not statedNot statedReceives and processes the documented signals or supply for this frequency converter.Individual researchPUBLISHEDOpen reference
36136G9003Not statedNot statedReceives and processes the documented signals or supply for this HVAC frequency converter.Individual researchPUBLISHEDOpen reference
371398-DDM-030Not statedNot statedReceives and processes the documented signals or supply for this digital servo drive.Individual researchPUBLISHEDOpen reference
3814.422.01.042Not statedNot statedReceives and processes the documented signals or supply for this magnetic-particle clutch and brake controller.Individual researchPUBLISHEDOpen reference
3914.F4.C1E-3440Not statedNot statedReceives and processes the documented signals or supply for this AC frequency drive.Individual researchPUBLISHEDOpen reference
4015.F4.C1E-3420Not statedNot statedReceives and processes the documented signals or supply for this frequency inverter.Individual researchPUBLISHEDOpen reference
4115.F4.F1G-4R01Not statedNot statedReceives and processes the documented signals or supply for this frequency drive.Individual researchPUBLISHEDOpen reference
4215.F5.C1E-350ANot statedNot statedReceives and processes the documented signals or supply for this frequency inverter.Individual researchPUBLISHEDOpen reference
4316.F4.C1G-M440Not statedNot statedReceives and processes the documented signals or supply for this frequency drive.Individual researchPUBLISHEDOpen reference
4416.F4.F1G-4R05Not statedNot statedReceives and processes the documented signals or supply for this frequency drive.Individual researchPUBLISHEDOpen reference
4517.F5.C1G-350ANot statedNot statedReceives and processes the documented signals or supply for this frequency inverter.Individual researchPUBLISHEDOpen reference
46175G5058Not statedNot statedControls motor starting as an MCD3300 soft starter controller.Individual researchPUBLISHEDOpen reference
47175G5226Not statedNot statedControls motor starting as a Danfoss VLT Compact Starter.Individual researchPUBLISHEDOpen reference
48175H2910Not statedNot statedControls variable-speed HVAC fan or pump motor operation as a VLT 3511 unit.Individual researchPUBLISHEDOpen reference
49175H7280Not statedNot statedControls motor speed as a Danfoss VLT 3000 frequency converter.Individual researchPUBLISHEDOpen reference
50175Z0034Not statedNot statedRegulates motor speed as a Danfoss VLT 5000 variable speed drive.Individual researchPUBLISHEDOpen reference

Return to the parts index or submit a reference for review.

What this category covers

Variable-frequency drives, inverters, motor controllers, and accessories

Nameplate identity, sizing evidence, parameter backups, and fault context

Repair, exchange, sourcing, and replacement decisions with explicit uncertainty

Integration status: 18 catalogue identities integrated; identity pages are indexable and optional evidence is omitted when unavailable

Choose a recovery path

Editorial queue

9 draft / 1 published

Published guides passed the shared evidence evaluator. Draft entries remain noindex until their body, sources, review window, provenance, and category path pass the same gates.

IntentQuestionSummarySource notesIntegrationPreview
How to read a VFD nameplateWhich drive nameplate fields matter first?Explain the reference, input, output, overload, and enclosure details to capture at intake.docs/data/v1-guide-publication-review.md; Rockwell PowerFlex 4 manual cited by the guide (22A-UM001): https://literature.rockwellautomation.com/idc/groups/literature/documents/um/22a-um001_-en-e.pdf; Rockwell PowerFlex 400 manual for the guide's 22C example (22C-UM001): https://literature.rockwellautomation.com/idc/groups/literature/documents/um/22c-um001_-en-e.pdf; Lenze 8200 vector product page: https://www.lenze.com/en-de/products/inverters/previous-products-inverters/8200-vector/; ABB ACS580-01-09A5-4 product record: https://new.abb.com/products/3BBR50000038952P01/acs580-01-09a5-4; ABB ACS580-01 hardware manual Rev G: https://library.e.abb.com/public/1b3a01901abd4dbbb03586df4e3e6650/3AXD50000044794_en_1_G_ACS580-01%20drives%200.75%20to%20250%20kW%2C%201.0%20to%20350%20hp%20hardware%20manual%20for%20frames%20R1-R9.pdf; Rockwell PowerFlex 400 firmware release notes: https://literature.rockwellautomation.com/idc/groups/literature/documents/rn/22c-rn001_-en-e.pdf; ABB ACS580 firmware manual Rev E: https://library.e.abb.com/public/e61bd38148024a94947662a2002d3a37/EN_ACS580_standard_control_program_FW_E_A5.pdfPUBLISHED - INDEXABLEOpen published guide
Drive fault or motor fault: what to recordHow can an intake separate drive and motor symptoms?Create a symptom boundary without pretending a remote diagnosis is complete.docs/product/comparison-and-recovery-model.md; Qualified technical evidence requiredDRAFT - NOT INDEXABLEOpen draft
What to compare when sizing a replacement driveWhich ratings must match before a drive replacement?A comparison checklist for supply, motor, overload, control, braking, and cabinet constraints.docs/product/comparison-and-recovery-model.md; Manufacturer documentation required before publicationDRAFT - NOT INDEXABLEOpen draft
Why a drive parameter backup mattersWhat configuration evidence should be saved before a drive swap?Describe the value and limits of parameter files, photos, and machine documentation./how-it-works/#request-checklist; Technical evidence requiredDRAFT - NOT INDEXABLEOpen draft
What to do with an obsolete drive referenceWhich recovery paths exist when a VFD is obsolete?Separate verified successor research from repair, exchange, and safe machine changes.docs/data/data-management.md; Current manufacturer status requiredDRAFT - NOT INDEXABLEOpen draft
Drive repair or exchange: the intake decisionWhat makes a drive suitable for repair or exchange review?Define the evidence needed for a partner to assess a failed drive.docs/product/comparison-and-recovery-model.md; Repair capability evidence requiredDRAFT - NOT INDEXABLEOpen draft
Braking resistor evidence for a drive requestWhy should braking details be included with a drive reference?Keep braking, load, and fault context visible when reviewing a recovery option./how-it-works/#request-checklist; Qualified technical evidence requiredDRAFT - NOT INDEXABLEOpen draft
Drive environment checks before a replacementWhich cabinet conditions can change a drive recommendation?Cover heat, dust, moisture, clearance, wiring, and duty evidence for an honest request.docs/product/comparison-and-recovery-model.md; Technical evidence requiredDRAFT - NOT INDEXABLEOpen draft
Drive offer versus verified stockHow should a drive availability claim be documented?Distinguish a supplier lead, a current stock check, and a reviewed public reference.docs/data/catalog-database-status.md; Current source check requiredDRAFT - NOT INDEXABLEOpen draft
Drive reference aliases and suffixesWhat can a drive reference suffix change?Track formatting and suffix variants as leads that still need source evidence.docs/data/data-model.md; Source evidence requiredDRAFT - NOT INDEXABLEOpen draft

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