Armored Vibration sensor cable
Indicative price, ex-works. Excludes GST, packing & forwarding, freight, insurance and duties. Request a quotation to confirm.
CA-103-5-A : Tinned Copper Braid 2 Core Twisted Shielded Cable with Stainless Steel Outer Armor – One side 2 pin Circular MIL Connector other side Bare wires / BNC Connector
CA-103-5-A : Tinned Copper Braid 2 Core Twisted Shielded Cable with Stainless Steel Outer Armor – One side 2 pin Circular MIL Connector other side Bare wires / BNC Connector
Description
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TIERA Vibration sensor cable with a stainless steel outer armor offers enhanced durability and protection against harsh environmental conditions. Here are some key characteristics of such a cable: Stainless Steel Armor: The outer layer of the cable is constructed using stainless steel, which provides excellent resistance to corrosion, abrasion, and mechanical damage. This armor effectively shields the internal components of the cable from external impact, making it ideal for rugged industrial environments. Vibration Resistance: The cable is designed to minimize interference from vibrations, ensuring accurate and reliable signal transmission from the vibration sensor to the monitoring equipment. The stainless steel armor adds an extra layer of protection to the cable, helping to maintain signal integrity even in high-vibration environments. Moisture and Chemical Resistance: In addition to mechanical protection, the stainless steel armor also provides resistance to moisture, chemicals, and other environmental hazards. This helps to prevent corrosion and degradation of the cable over time, extending its lifespan in harsh conditions. Temperature Resistance: The cable is engineered to withstand a wide range of temperatures, from extreme cold to high heat, without compromising performance. This ensures consistent operation in diverse operating environments, including outdoor and indoor settings. Connector Compatibility: Depending on the specific application, the cable may feature connectors compatible with various types of vibration sensors and monitoring equipment. Common connector types include MIL connectors, M12 connectors, and terminal blocks.
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Before you buy
The engineering behind this product
Why this measurement is made, how it goes wrong, and what the numbers mean — written by the people who build the instrument.
Test set-upWiring a 64-Channel Test: Junction Boxes, Ground Loops, and Channel DisciplineBelow about eight channels, cabling is an afterthought. Above thirty it becomes the dominant risk in the test: a mains hum you cannot explain, a channel map nobody trusts, and a day lost to a connector that was never seated. The fixes are boring, cheap and almost always skipped.8 min read · Read →
Cables & signal integrityThe Cable Is Part of the MeasurementA vibration cable carries a signal of a few millivolts. Flex the wrong cable and it generates its own charge, burying the bearing fault you bought the sensor to find. What makes a cable good, how cable quality is tested, and why the cheapest cable is the expensive one.14 min read · Read →
The buying decisionWhy the Cheapest Cable and Magnet Cost the MostA plant will approve a serious analyser and then defeat it with an unspecified cable and an unknown magnet. This is the commercial case for buying the whole measurement chain to a specification — the three failure modes that cost real money, the questions that separate a measurement-grade accessory from a generic one, and an interactive model you can drive with your own numbers.11 min read · Read →