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Industry-leading features of our MOSFET driver ICs include fast delay times, small package sizes, high efficiency, and better reliability.In Brief: On this site you will find pictures and technical information about Service Modes, Circuit Diagrams, Firmware Update procedure, Disassemble procedure, Universal remote control set-up codes, Troubleshooting and more. We provide evaluation kits and reference designs for quick prototyping and design verification. Single and dual drivers, along with secondary-side synchronous drivers, provide even greater efficiency for isolated designs. ORing MOSFET controllers provide the control logic required for this type of circuit. MOSFETS, which have a lower on-resistance than Schottky diodes, produce less heat and therefore do not need heatsinks, making the overall solution size smaller. For these applications, it is better to use a MOSFET instead of a Schottky diode. However, if a large current is required, the diode forward-voltage drop causes significant power loss, which means a heatsink is required. In applications where multiple power supplies are connected in parallel (e.g., backup power supplies), ORing Schottky diodes are commonly used for protection. The MOSFET driver IC controls switch timing to ensure that only one transistor conducts at a time, preventing potentially damaging shoot-through current. MOSFET driver ICs are commonly used to switch MOSFETS in a half-bridge circuit.

A MOSFET driver IC is a high-gain amplifier that uses a low-voltage input to switch on/off discrete power MOSFETS in high-voltage applications.
