Automotive

Lead type ceramic capacitors for 200°C automobile use

13th January 2017
Alice Matthews
0

A capacitor has been developed by Murata Power Solutions which is able to withstand the extremely high temperatures experienced by equipment located in severe environments such as the engine compartment of an automobile. To improve the fuel economy of an automobile, a DC motor drive is used to optimise control of the power train control system.

A capacitor is used to suppress the electrical noise generated by this DC motor, but the automobile control equipment is mounted in an extreme environment, where temperatures can approach 200°C for short periods of time. Consequently, a very high degree of durability is needed for a capacitor deployed in this environment.

Featuring a newly developed heat resistant resin coating around a highly heat resistant multilayer ceramic capacitor, Murata’s newly developed RHS capacitors can be used at temperatures up to 200°C and as low as -55°C.

The capacitors comply with AEC-Q200 and their lead wires can be soldered or crimped to position them close to a noise-generating source for optimum performance and effectiveness. The RHS capacitors also pass the extreme surge test of the ISO7637-2 standard.

Capacitance values from 100pF to 0.01uF will be available, and the lineup initially includes 200 and 500VDC rated products, with the voltage range being expanded during 2017. At temperatures above 150°C, voltage derating is applied, so for example, a 500V rated capacitor is rated at 125V when used at 200°C.

Determined by the combination of rated voltage and capacitance value, the capacitors measure 4.0×3.5mm or 5.5×4.0mm, with lead centres being 2.5 or 5.0mm as appropriate.

Full production of the RHS capacitors begins in May 2017 and Murata expects to expand and diversify sales of the products for equipment mounted in a variety of high temperature environments such as engine rooms.

Product Spotlight

Upcoming Events

View all events
Newsletter
Latest global electronics news
© Copyright 2024 Electronic Specifier