GE 703-1476-05 Ultrasonic Transducer Cable Assembly
Description
GE 703-1476-05 is a customized integrated cable assembly exclusively compatible with P1347 and other general GE ultrasonic probes as well as GC868, AT868, XMT868 series flow hosts. It undertakes two core functions: delivering driving electric signals from the transmitter to the piezoelectric wafer inside the transducer and feeding back the received ultrasonic echo signals back to the main control unit for operation and calculation. The inner conductor adopts high-purity oxygen-free copper wire core with low impedance characteristics, effectively reducing signal attenuation during long-distance laying along pipe racks and workshop areas, and ensuring the integrity of weak ultrasonic signals.
The cable structure adopts double-layer shielding of metal braided mesh plus conductive wrapping layer, which can isolate electromagnetic noise generated by surrounding high-power motors, frequency conversion equipment and welding machines in industrial sites. The outer protective sheath is made of industrial wear-resistant and oil-resistant polymer material, with excellent anti-aging, moisture-proof and weak chemical corrosion resistance, adapting to harsh environments such as outdoor pipe galleries, humid chemical workshops and power plant equipment areas. The applicable operating temperature ranges from -20°C to 70°C, and stable insulating and conductive performance can be maintained under 95% non-condensing humidity for long-term outdoor buried or exposed laying.
Both ends of the cable are equipped with factory integrated molded connectors with precise pin definitions, achieving tight docking matching with original transducer interfaces and transmitter terminals without manual wiring modification during replacement. The internal wiring is fixed with tensile resistant structure to prevent internal wire breakage caused by equipment vibration and cable pulling in long-term operation. Each finished 703-1476-05 passes continuity test, insulation resistance detection and tensile fatigue test before delivery to guarantee long-term transmission reliability.
Aging sheath cracking, shielding layer failure and internal wire breakage of old cables are common faults that cause flow data jumping and measuring system signal loss. Adopting qualified original cables for replacement supports plug-and-play installation and effectively shortens on-site instrument maintenance period. Brand-new cables are supplied together with complete flow metering equipment for new construction projects, while tested spare cables are widely used in daily overhaul of online flow monitoring devices. Reliable signal transmission realized by this cable stabilizes the overall measuring precision of pipeline gas and liquid metering systems, reduces the failure rate of flow monitoring equipment, and cuts the overall operation and maintenance cost of industrial fluid measurement links in long-cycle continuous production.
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