AHW series automotive thick film wide electrode high power and low resistance chip resistor is a kind of high power and low resistance resistor specially designed for automotive electronics and industrial products. The product complies with AEC-Q200 specification for lead-free product applications.
Specifically, the AHW series is able to withstand higher power levels and is suitable for use under high load conditions. Has a low resistance value, thus reducing the energy loss in the circuit. The wide electrode design improves the thermal stability and electrical performance of the resistor.
Product overview
Suitable for automotive electronics and industrial products applications
Comply with AEC-Q200 specification
Suitable for lead-free product applications
Resistance type
Automotive thick film wide electrode chip resistor
Automotive wide electrode thick film low resistance chip resistance
Automotive thick film high power low resistance chip resistance
Technical characteristics
High power and low resistance
Thick film pulse resistant design
Made of high purity alumina substrate
Application field
Automotive electronics and industrial product applications
Power and energy applications
Communication industry application
Special technology and materials
High thermal conductivity material reduces heat dissipation area
Integrated molding technology ensures excellent heat dissipation performance
In addition, these resistors have excellent thermal performance and high temperature resistance, ensuring reliability and stability in a variety of complex environments. They are widely used in automotive electronics, such as engine management systems, in-vehicle entertainment systems, etc., to meet the needs of modern vehicles for high performance and high reliability.
AHW series automotive thick film wide electrode high power low resistance chip resistor is a kind of high performance, high reliability resistance products, especially suitable for automotive electronics and industrial products requiring high power and low resistance.