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A passive electrical component called a chip resistor controls the flow of both direct current (DC) and alternating current (AC). One of its characteristics is to reduce the voltage or keep the current in an electrical circuit constant and the high temperature chip resistor has high heat resistance ie., high heat tolerance:
Achieves a maximum working temperature of 175 °C (and assures 100% of rated power output up to 105 °C). High reliability: Assures that the resistor will withstand 1000 cycles of thermal shock testing, during which it will be heated to temperatures between -55°C and +175°C.
Products meet EU RoHS criteria and are applicable to many types of automatic mounters for tape, among other uses. Pb-glass found in electrodes, resistor elements, and AEC-Q200 tested glass is not covered by the EU RoHS rule.
Global high temperature chip resistors market accounted for $XX Billion in 2023 and is anticipated to reach $XX Billion by 2030, registering a CAGR of XX% from 2024 to 2030.
Electronics T T IRC Advanced Film Division has created a line of tantalum nitride chip resistors with a 200°C operating temperature rating. The chip resistors, known as the PFC-HT Series, use IRC’s exclusive TaNFilm self-passivating resistive element technology, have a wraparound non-leaching termination style, and are available in 100% tin (lead-free) or gold-plated versions that are specifically made to allow the devices to operate at high temperatures.
The PFC-HT Series chip resistors were created for use in extremely hot environments, such as down-hole oil drilling sensing equipment.
The resistors are available with 100% tin or gold-plated terminations that will not reflow at 200°C, allowing engineers to use epoxy and soldiers developed for high temperature applications.
In addition to the down-hole sensor measurement uses for which they were intended, the PFC-HT Series devices are also appropriate for aerospace and automotive engine compartment uses.
By using metal glazing thick film, excellent heat resistance and weather resistance are ensured.
Excellent stability and high dependability thanks to the electrode’s triple-layer structure