Hazardous area assemblies are certified as an entire assembly for most comprehensive protection. MINCO S480PFY30 TEMPERATURE PROBE Quick Overview You may also be interested in the following product(s) Johnson Controls A19AAC-9C Temperature Controller. Assemblies are available with spring loaded sensors, fast-responding copper tip sensors, high temperature sensors, high pressure fittings, rugged connection heads, transmitters for 4-20mA or HART signals and protective thermowells for high pressure and flow applications. It’s a match made in heaven.Ĭontact Minco today to learn how our match-calibrated sensors and transmitters can deliver superior accuracy in your next project.Minco temperature sensor assemblies are durable and provide accurate and repeatable temperature measurements for years of worry free service. The cost of this calibration is nominal, and the savings can be significant. Because the sensor inaccuracy disappears, there is no need to use higher cost Class A temperature sensors when specifying match calibration. As long as the sensor and transmitter are used together, inaccuracy is kept to a minimum. A wide range of control modes, sensor input types, and relay or SSR outputs give versatile control of Thermofoil heaters and lets you easily connect to other electronics. Match calibration provides a constant accuracy over the full temperature range. This economical controller packs sophisticated PID control into a compact 1/16 DIN enclosure. System-matched controllers complement Minco sensors and heaters to deliver improved system accuracy. Calibrating both at the same time effectively eliminates sensor inaccuracy from the system accuracy specification. All-polyimide heaters from Minco support higher temperatures and greater watt densities than most flexible film heaters available. ![]() Rather than calibrating a transmitter to nominal resistance values, the calibration is completed with the actual resistance values of a paired temperature sensor. Minco offers match calibration of a sensor and transmitter. There is a relatively simple, cost-effective solution to the problem. It offers inexpensive on/off temperature control of your process or equipment with accuracy many times better than bimetal thermostats. While the mismatch may be small, the degree of inaccuracy can vary across a wide temperature range, making it difficult to optimize the system’s efficiency and performance. The CT325 Miniature DC Temperature Controller is designed for use with Minco Thermofoil heaters and RTD or thermistor sensors. By utilizing an internal solid state relay, logic voltage output, and internal mechanical relay, the controller is fully configurable. The CT425 consists of epoxy-sealed electronics in a non-conductive plastic casing, with a pair of terminal blocks, a USB-B port, a pair. ![]() Engineers need heating systems that can keep critical devices operating at optimal temperatures, from in-flight sensors on. Transmitters are calibrated to nominal resistance values, so this source of error is hard to avoid in off-the-shelf pairing of sensors and transmitters. Minco’s CT425 Temperature Controller is a PID temperature controller capable of reading two independent temperature sensors (RTDs). Precision is a big part of temperature control. ![]() The problem is that, in addition to any inaccuracy in the sensor itself, there is additional inaccuracy caused by slight miscommunication between sensor and transmitter when converting sensor resistance to a 4-20 mA current output. TI408 8-Channel Handheld Temperature Indicator Operating Instructions Tel: 763. Where Class C sensors once sufficed, customers have turned to more precise Class B and, in some cases, even more accurate Class A sensors. To meet these requirements, users need increased accuracy from temperature control systems-the sensors and transmitters that keep systems as close as possible to ideal operating temperatures. And in many industrial applications, higher normal operating temperatures are more efficient the problem is that these temperatures are close to those at which overheating, wear, and breakdown can occur, leaving a very narrow band of ideal operating temperature. Sensors are used to spot temperature changes that can indicate wear and can provide warning in time to head off catastrophic failure. ![]() The need for precise temperature control is also recognized in the oil and gas industry and in the operation of many kinds of rotating equipment-generators in power plants, wind turbines, large motors in a variety of applications, industrial pumps, and more. This has long been the case in HVAC applications, where even relatively slight variation from ideal temperatures can lead to sweats or chills, not to mention unnecessary expense. Many industrial and commercial processes are dependent on precise temperature control.
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