112077-0010 Danaher
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The Danaher 112077-0010 is a cable from the Dynapar Encoder Cables series, with a length of 10 feet and 24 AWG wire gauge. It is designed for AI25 Absolute Encoders with a 14-bit resolution and features a side-mount MS Bayonet female connector with 19 pins, while the opposite end has flying leads.
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Product Description:
The 112077-0010 encoder cable is produced by Danaher as part of the Dynapar Encoder Cables series. It serves as a dedicated link between an absolute shaft encoder and control hardware, transmitting position, clock, and power signals in automated machinery. Within industrial motion loops, this molded assembly maintains consistent feedback from the rotating AI25 sensor to drives or PLC cards, supporting precise speed and position regulation without additional converters.
The assembly provides a fixed length of 10 ft, giving adequate reach from the encoder to a junction enclosure while keeping loop impedance low. Stranded conductors are sized at 24 AWG, a common gauge that balances flexibility with current capacity for the encoder’s 5 V supply. At the encoder end, a keyed female MS bayonet plug is crimped onto the cable, and its quick-coupling interface simplifies disconnection. The shell provides a side-mount entry on the encoder housing so the cable can exit parallel to the motor face. Inside the circular connector, a 19-pin insert assigns separate contacts for the supply, ground, serial data, and shield termination, minimizing crosstalk between differential pairs.
The opposite end has flying leads, allowing each conductor to terminate directly on a terminal block without specialized mating components. The color codes follow Dynapar standards and align directly with the connection map for an AI25 absolute encoder. The encoder output reaches a 14-bit resolution, making signal integrity important for accurate position reporting. A continuous foil shield and drain path are preserved across the cable to maintain signal reference quality and reduce interference from nearby power wiring. Consistent pin assignments along the cable support reliable communication between the encoder and connected control hardware. Controlled capacitance also helps keep signal rise times within the communication protocol’s operating limits.