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Our driver portfolio includes ICs for small DC motors that are controlled directly from the output stages. At the heart of this portfolio are motor driver System Basis Chips (SBCs) with integrated gate drivers or pre-drivers to control separate N-channel MOSFETs. These drivers can be used to control almost any size N-channel MOSFET in a broad range of applications.
Our 3-phase brushless motor drivers and brushed DC gate drivers combine a power supply and a microcontroller to create cost-efficient motor driver SBCs. These SBCs also include a communication port that is Grade 0 and Grade 1 rated for use in harsh automotive conditions. Your design will require fewer external components which will reduce your circuit design complexity, lower your overall BOM cost and speed up your time to market.
Improve system performance in computing, mass storage, networking and other applications with our portfolio of fan controller ICs. Our closed-loop fan controllers feature look-up tables, PID loop control and alerts for locked rotors and blocked air paths. The majority of our PWM and linear fan controllers feature integrated temperature sensing, making them great all-in-one solutions for a variety of embedded applications.
Portfolio of devices includes motor driver SBCs for a variety of applications using BLDC motors
Full-bridge motor gate drivers, including motor driver SBCs, to drive BDC motors in automotive body and powertrain applications
Fan controller ICs that offer up to five Pulse-Width Modulation (PWM) fan drivers and integrated temperature sensors for design flexibility and improved system performance
Dual full-bridge motor drivers to drive bipolar stepper motors, or bidirectional control of two DC motors
Find all available MOSFET Gate Driver Solutions for BDC, BLDC and stepper motors
Multi-channel half-bridge drivers to support BDC motors in automotive and industrial applications
Provides design suggestions for common circuit needs, estimates performance for common modifications, and can export to MPLAB® Mindi™ Analog Simulator for verification.
Uses a SIMetrix/SIMPLIS environment to model circuit behavior, reducing design time with software debugging for initial design verification.
Provides advice on your exact physical circuit layout, sharing best practices from an experienced power supply designer so that physical hardware will match simulations.