108615-0005 Danaher
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The Danaher 108615-0005 is a cable assembly from the Dynapar Encoder Cables series and measures 5 feet in length. It is compatible with H58 and HS35 encoders, featuring a 12-pin M23 female connector on the encoder side and flying leads on the other end. The assembly supports any output and has a pin orientation specified as counterclockwise.
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Product Description:
The 108615-0005 cable assembly is produced by Danaher as part of the Dynapar Encoder Cables series. Designed for motion-control installations, the product links rotary encoders to drive or PLC terminals and carries differential channels, power conductors, and optional marker lines while maintaining the electrical noise immunity required in factory environments. The preterminated interface matches compatible Dynapar feedback devices, reduces wiring errors, and simplifies installation and scheduled service.
At the sensor end, an M23 female circular connector with 12 pins supports full quadrature, index, and auxiliary power lines. Inside the overmold, a shielded pair layout feeds into a bundle of 10 individual leads, aligning one conductor with each active pin and providing two reserved grounds for consistent return paths. The assembly has a length of 5 ft, making it suitable for close-coupled motor or gearbox installations without leaving excess slack inside a cabinet. Opposite the molded plug, the jacket terminates in flying leads, allowing ferrules to be crimped in the field or conductors to be inserted into screw clamps and terminal blocks. Wiring follows a counterclockwise (CCW) pin orientation that matches the standard connector view used in Dynapar documentation.
The cable is keyed for the H58 and HS35 encoder families, ensuring that conductor color codes and shielding align with the internal electronics of those hollow-shaft and shafted models. Because the conductors accommodate differential, open-collector, or push-pull signaling, the harness supports any output option available on compatible sensors without modification. When fitted to these encoders, the assembly maintains balanced impedance along the entire run, limiting signal reflection and preserving the edge integrity needed for high-resolution position feedback. Its shielded arrangement also helps protect encoder signals from electromagnetic interference near motors, drives, and other electrically noisy industrial equipment.