CCNNN1-025-05M00-00 Kollmorgen
Wake Industrial LLC is not an authorized distributor of this product.
The Kollmorgen CCNNN1-025-05M00-00 is a servo cable from the Kollmorgen Servo Cables series. It is a 5 meter combined EtherCAT and power cable with a 2.5 mm² wire cross section designed for decentralized systems. The cable features AKD-N connectors for both drive and motor sides.
Internal Product Review
The CCNNN1-025-05M00-00 is a Kollmorgen servo cable featuring a combined EtherCAT and power layout for decentralized systems. AKD-N connectors at the drive and motor ends support clean integration, while the 2.5 mm² wire cross section gives the assembly a strong electrical foundation.
To contact sales for pricing and lead time:
Payment Methods
Shipping Methods
Our Credentials
Product Description:
The CCNNN1-025-05M00-00 is a servo cable produced by Kollmorgen for the Kollmorgen Servo Cables series. It links AKD-N decentralized drives to compatible motors in modular automation cells. The assembly carries motor power and real-time network signals along the same route, reducing the number of separate cable runs required between distributed drive components.
This assembly measures 5 m, providing adequate reach between the drive and a moving axis without splicing. It is classified as an EtherCAT and Power cable, so twisted pairs carrying deterministic EtherCAT traffic are installed alongside the three-phase power cores. Both ends terminate in compact AKD-N bayonet connectors that lock to the drive and motor housings without additional tools. The copper cores have a cross-sectional area of 2.5 mm², supporting the continuous phase current required by medium-frame servo motors while limiting voltage drop. Conductive elements, shielding foils, and drain wires maintain the electrical characteristics needed across the cable’s full length. The molded terminations also provide a secure connection where machine movement or vibration could place strain on ordinary plug interfaces.
The cable follows the Combined (Hybrid) version guideline, with control pairs and power conductors arranged at separate lay lengths inside a common outer jacket. It is intended for decentralized system layouts, where placing the drive close to the actuator can reduce panel heat and shorten individual motor connections. The shared jacket also reduces the number of cabinet penetrations and helps keep cable routing organized in compact machinery. Each unit is supplied in cardboard packaging that protects the molded connector shells against impact during transportation without relying on static-generating plastic packaging. Its conductor geometry, shielding, and dielectric materials support the impedance needed for stable EtherCAT communication when the cable is routed near motor bus bars or other power cables. Separate internal arrangements for signal and power conductors help limit electromagnetic interference while preserving the compact form of the hybrid assembly.