107865-0030 Danaher
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The 107865-0030 is a 30 foot encoder cable made by Danaher, designed for use with the AI25 Absolute Encoder as part of the Dynapar Encoder Cables series. It features a 17-pin end-mount MS connector on one side and flying leads on the other, with 24 AWG wire gauge and a parallel push-pull output type.
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Product Description:
The 107865-0030 cable is supplied by Danaher and belongs to the Dynapar Encoder Cables series. It is a dedicated interconnect for absolute feedback devices, routing power and parallel position data between an AI25 encoder and a control cabinet. In motion-control installations, the assembly provides a predefined conductor count, shielding, and connector style, allowing the sensing element to connect to PLC input cards without field-fabricated terminations.
The assembly comes in a factory-cut length of 30 ft, providing enough reach for typical motor-to-panel runs while avoiding excess coiled cable. Its connector is arranged for end-mount installation, so the backshell aligns flush with the encoder housing to reduce axial overhang. On the encoder side, a female MS connector mates directly with the AI25 receptacle, and the sealed coupling helps preserve the enclosure’s protection. All contacts are organized in a 17-pin insert that matches the encoder’s parallel channel count. Each conductor is made from 24 AWG tinned copper stranded wire, balancing current capacity with the flexibility required for routing through continuous-motion cable tracks.
The trunk contains seventeen individual leads that carry the encoder’s data, power, and strobe signals. The controller end has flying leads, allowing the signals to terminate at screw terminals, IDC headers, or ribbon connectors as required by the installation. Data is presented to the control system through a parallel push-pull driver, allowing a direct connection to compatible TTL-level input modules without differential receivers. The cable is keyed for the AI25 absolute encoder, ensuring that channel assignments align with the manufacturer’s wiring table. Because the feedback element reports shaft position using an absolute code, the control system receives position information immediately after power is restored. This position retention can eliminate the need for a homing move after an emergency stop or power cycle, provided the connected control system supports the encoder interface.