112123-0010 Danaher
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The Danaher 112123-0010 is an encoder cable assembly from the Dynapar Encoder Cables series, featuring a length of 10 feet and six leads. It is equipped with a female MS connector on the encoder side and flying leads on the non-encoder side, supporting differential signals and a line driver output interface.
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Product Description:
The 112123-0010 is an interconnect component produced by Danaher within the Dynapar Encoder Cables series. This product carries incremental encoder signals between a rotary sensor and a downstream drive or PLC in industrial automation equipment. By matching the mechanical and electrical format used by Dynapar encoders, the cable helps maintain signal integrity while simplifying wiring between the sensor and control hardware.
Danaher classifies the product as a cable assembly, and its selected construction is an encoder cable designed for low-level pulse transmission. At the encoder end, a sealed female MS connector mates with the sensor receptacle, while individual conductors inside the jacket carry power and output channels. The lead allocation is fixed at 6 leads, with one conductor assigned to each position in the unshielded connector insert. This arrangement provides dedicated cores for channel A, channel B, supply power, and common connections. The overall cable length is 10 ft, making it suitable for short runs inside control cabinets or along moving cable tracks where excess slack is undesirable. The cable carries quadrature pulses from the encoder while preserving the timing relationship required for accurate direction and position measurement.
The free end terminates in flying leads, allowing each conductor to be landed on screw terminals, solder cups, or crimp contacts without removing a factory-molded connector. Signal transmission uses a line-driver interface, and the paired conductors present complementary voltages in a differential format that improves resistance to common-mode electrical noise. The wiring is configured without an index channel, so the harness carries motion pulses but does not route a separate zero-reference signal. This configuration is appropriate for applications that determine speed, direction, or relative position without requiring a once-per-revolution reference pulse. The separate conductors also permit direct routing to compatible input terminals on a drive, counter module, or PLC. Proper termination at the receiving device helps preserve clean pulse edges across the full cable length in electrically noisy industrial machinery.