Category hub / Robotics

Industrial robotics references - identify the complete cell

A robot model is not the whole automation cell. Controller, teach pendant, servo pack, safety circuit, tooling, and software version can all decide whether a recovery path is viable. This hub keeps those dependencies visible while the robotics catalog remains withheld pending evidence.

Robotics / field guide and catalog statecomplete

Catalogue references

133 catalogue references

133 catalogue references.

Robotics catalogue search results
RankReferenceManufacturerTypeSystem roleEvidenceStatusAction
5100-134-525Not statedNot statedConverts three-phase 380-480 V AC into a 600 V DC supply for KUKA KR C2 and KRC2ed05 robot controllers.Individual researchPUBLISHEDOpen reference
5200-168-334Not statedNot statedPresents operator controls for programming, jogging, and operating a KUKA KR C4 robot controller.Individual researchPUBLISHEDOpen reference
5300-179-529Not statedNot statedRoutes KRC4 controller power and control connections through the documented X20 cable set.Individual researchPUBLISHEDOpen reference
5400-181-359Not statedNot statedTransmits robot wrist motion between the Quantec arm and its tool interface.Individual researchPUBLISHEDOpen reference
5500-189-002Not statedNot statedDisplays the documented smartPAD operator interface for a KUKA robot.Individual researchPUBLISHEDOpen reference
5600-192-232Not statedNot statedSupplies a documented spare-parts kit for maintenance of the IW150/180/210 assembly.Individual researchPUBLISHEDOpen reference
5700-194-763Not statedNot statedInterfaces cabinet-level control signals for a KRC4 robot controller.Individual researchPUBLISHEDOpen reference
5800-195-245Not statedNot statedStores KUKA control-PC data used in a KRC4 controller.Individual researchPUBLISHEDOpen reference
5900-195-841Not statedNot statedControls cabinet-level functions through the KUKA KRC4 cabinet-control-unit assembly.Individual researchPUBLISHEDOpen reference
6000-197-754Not statedNot statedProcesses KUKA control software for a KR C2 robot controller.Individual researchPUBLISHEDOpen reference
6100-197-755Not statedNot statedProcesses KUKA control software for a KR C2 robot controller.Individual researchPUBLISHEDOpen reference
6200-198-259Not statedNot statedSupplies power conversion for KUKA KRC4 robot-axis drive electronics.Individual researchPUBLISHEDOpen reference
6300-198-260Not statedNot statedSupplies power conversion for KUKA KRC4 robot-axis drive electronics.Individual researchPUBLISHEDOpen reference
6400-198-263Not statedNot statedSupplies power conversion for KUKA KRC4 robot-axis drive electronics.Individual researchPUBLISHEDOpen reference
6500-198-265Not statedNot statedSupplies power conversion for KUKA KRC4 robot-axis drive electronics.Individual researchPUBLISHEDOpen reference
6600-198-268Not statedNot statedDrives KUKA KRC4 robot-axis power stages in the KSP servo-drive path.Individual researchPUBLISHEDOpen reference
6700-198-269Not statedNot statedDrives KUKA KRC4 robot-axis power stages in the KSP servo-drive path.Individual researchPUBLISHEDOpen reference
6800-200-655Not statedNot statedConverts robot resolver feedback for KUKA KRC4 control electronics.Individual researchPUBLISHEDOpen reference
6900-211-996Not statedNot statedProcesses KUKA control software for a KR C4 robot controller.Individual researchPUBLISHEDOpen reference
7000-213-059Not statedNot statedProcesses KUKA control software for a KR C4 robot controller.Individual researchPUBLISHEDOpen reference
7100-226-429Not statedNot statedControls power within the KUKA KR C4 Cabinet Control Unit.Individual researchPUBLISHEDOpen reference
7200-228-936Not statedNot statedMeasures and supports electronic mastering of KUKA robot axes.Individual researchPUBLISHEDOpen reference
7300-235-627Not statedNot statedControls cabinet-level functions through the KUKA KRC4 cabinet-control-unit assembly.Individual researchPUBLISHEDOpen reference
7400-246-872Not statedNot statedThe RDC board converts resolver feedback for the KUKA KRC4 motion controller.Individual researchPUBLISHEDOpen reference
7500-291-556Not statedNot statedThe 00-291-556 smartPAD-2 controls a connected KUKA robot through the KR C4 operator-panel boundary.Individual researchPUBLISHEDOpen reference
7600-312-962Not statedNot statedThe operator panel displays operating information and receives operator input in the KUKA robot system.Individual researchPUBLISHEDOpen reference
7701-038-188Not statedNot statedThe robot wrist routes tool motion through the KUKA robot arm.Individual researchPUBLISHEDOpen reference
7801-050-770Not statedNot statedThe in-line robot wrist routes tool motion through the KUKA robot arm.Individual researchPUBLISHEDOpen reference
7901-050-786Not statedNot statedThe in-line robot wrist routes tool motion through the KUKA robot arm.Individual researchPUBLISHEDOpen reference
8001-053-099Not statedNot statedThe robot wrist routes tool motion through the KUKA robot arm.Individual researchPUBLISHEDOpen reference
8169-000-391Not statedNot statedThe motherboard routes internal computing and interface signals to provide the foundation for a KUKA KRC1 controller.Individual researchPUBLISHEDOpen reference
8269-000-398Not statedNot statedThe teach pendant controls the operator interface for programming and manually controlling a KUKA robot system.Individual researchPUBLISHEDOpen reference
8369-000-399Not statedNot statedThe control pendant controls the operator interface for programming and manually controlling the KUKA robot.Individual researchPUBLISHEDOpen reference
8469-000-422Not statedNot statedThe teach pendant controls the operator interface for programming and manually controlling a KUKA KRC1 robot system.Individual researchPUBLISHEDOpen reference
8569-000-695Not statedNot statedThe board routes internal interface circuitry within the KUKA controller.Individual researchPUBLISHEDOpen reference
8669-001-124Not statedNot statedThe interface module routes controller signals between a KUKA control system and connected robot interfaces.Individual researchPUBLISHEDOpen reference
8769-225-463Not statedNot statedThe servo motor converts controlled electrical power from a compatible drive into rotary motion.Individual researchPUBLISHEDOpen reference
8869-225-464Not statedNot statedThe AC servo motor converts controlled electrical power from a compatible drive into rotary motion.Individual researchPUBLISHEDOpen reference
8971-039-271Not statedNot statedRoutes RDC board signals within the referenced KUKA robot controller and robot-system architecture.Individual researchPUBLISHEDOpen reference
9071-039-278Not statedNot statedControls servo functions for the six-axis KUKA robot system it is installed in.Individual researchPUBLISHEDOpen reference
9171-040-031Not statedNot statedRegulates the mechanical load around axis 2 in the referenced KUKA robot mechanism.Individual researchPUBLISHEDOpen reference
9271-050-782Not statedNot statedTransmits and reduces mechanical motion for axis 1 of the referenced KUKA robot.Individual researchPUBLISHEDOpen reference
9371-050-783Not statedNot statedTransmits and reduces mechanical motion for axis 2 of the referenced KUKA robot.Individual researchPUBLISHEDOpen reference
9471-052-214Not statedNot statedRoutes MFC board signals within the referenced KUKA robot controller electronics.Individual researchPUBLISHEDOpen reference
9571-053-069Not statedNot statedTransmits mechanical motion within the referenced KUKA KR30 arm assembly.Individual researchPUBLISHEDOpen reference
96CBL-YRC061-1Not statedNot statedThe cable transmits operator and pendant signals between a Yaskawa robot controller and its teach pendant.Individual researchPUBLISHEDOpen reference
97JZNC-MPP22ENot statedNot statedControls and teaches robot motions through the MRC teach-pendant interface.Individual researchPUBLISHEDOpen reference
98JZNC-NSU01Not statedNot statedMonitors robot-axis range and speed for the DX100 functional-safety system.Individual researchPUBLISHEDOpen reference
99JZNC-XPP02BNot statedNot statedControls and teaches robot motions through the XRC handheld HMI.Individual researchPUBLISHEDOpen reference
100JZRCR-APP01-1Not statedNot statedThe JZRCR-APP01-1 provides touch, key, mode, emergency-stop, and enable controls for programming and operating a YRC1000 robot controller.Individual researchPUBLISHEDOpen reference

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

What this category covers

Industrial robot arms, controllers, teach pendants, and servo assemblies

Model identity, axis faults, safety context, tooling, and software evidence

Repair, exchange, sourcing, and replacement requests with no implied compatibility

Integration status: 10 catalogue identities integrated; identity pages are indexable and optional evidence is omitted when unavailable

Choose a recovery path

Editorial queue

10 draft / 0 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
Robot model or controller identity?Which robotics references need to be recorded together?Separate arm, controller, pendant, and software identity at intake.docs/data/data-model.md; Manufacturer documentation required before publicationDRAFT - NOT INDEXABLEOpen draft
How to identify an industrial teach pendantWhat proves a teach-pendant reference?Capture label, controller family, connector, condition, and visible alarm context.docs/data/data-model.md; Manufacturer documentation required before publicationDRAFT - NOT INDEXABLEOpen draft
Robot axis fault or servo fault: what to recordWhich evidence helps bound a robot motion fault?Document alarms, axis, timing, and repeatability without promising a diagnosis.docs/product/comparison-and-recovery-model.md; Qualified technical evidence requiredDRAFT - NOT INDEXABLEOpen draft
Robot controller replacement constraintsWhat must be compared before replacing a controller?Keep software, safety, axis, network, and cell integration constraints together.docs/product/comparison-and-recovery-model.md; Manufacturer documentation required before publicationDRAFT - NOT INDEXABLEOpen draft
What a robot repair intake should containWhich robot service evidence is useful first?Build a concise intake pack from alarms, photos, backups, and failure conditions./how-it-works/#request-checklist; Repair capability evidence requiredDRAFT - NOT INDEXABLEOpen draft
Robot safety-circuit contextWhy must the safety circuit be part of a robotics request?Make the safety boundary explicit before discussing repair or exchange.docs/security/; Qualified technical evidence requiredDRAFT - NOT INDEXABLEOpen draft
Recovery paths for an obsolete robotWhat should be checked when a robot family is obsolete?Separate controller migration, repair, exchange, and cell-change considerations.docs/data/data-management.md; Current manufacturer status requiredDRAFT - NOT INDEXABLEOpen draft
Robot spare versus compatible componentWhen is a spare claim different from a compatibility claim?Use source evidence and cell context before linking a replacement lead.docs/product/comparison-and-recovery-model.md; Manufacturer documentation required before publicationDRAFT - NOT INDEXABLEOpen draft
Evidence to send for a robot cell requestWhich photos and files make a robotics request actionable?Cover cell layout, labels, alarms, backups, tooling, and urgency./how-it-works/#request-checklist; Ardkor intake policyDRAFT - NOT INDEXABLEOpen draft
Robot reference aliases and model suffixesHow should robot model variants be tracked?Preserve exact controller and arm suffixes until the source confirms the relationship.docs/data/data-model.md; Source evidence requiredDRAFT - NOT INDEXABLEOpen draft

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