The IXFP130N10T2 operates based on the principles of field-effect transistors, utilizing the gate voltage to control the flow of current between the drain and source terminals.
This comprehensive entry provides a detailed overview of the IXFP130N10T2, covering its category, use, characteristics, package, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
Question: What is the maximum drain-source voltage for IXFP130N10T2?
Answer: The maximum drain-source voltage for IXFP130N10T2 is 100V.
Question: What is the continuous drain current rating for IXFP130N10T2?
Answer: The continuous drain current rating for IXFP130N10T2 is 130A.
Question: Can IXFP130N10T2 be used in high-frequency applications?
Answer: Yes, IXFP130N10T2 can be used in high-frequency applications due to its low input and output capacitance.
Question: What is the typical on-resistance for IXFP130N10T2?
Answer: The typical on-resistance for IXFP130N10T2 is 4.5mΩ.
Question: Is IXFP130N10T2 suitable for automotive applications?
Answer: Yes, IXFP130N10T2 is suitable for automotive applications due to its rugged construction and high current capability.
Question: Does IXFP130N10T2 require a heat sink for operation?
Answer: Depending on the application and power dissipation, a heat sink may be required for optimal performance of IXFP130N10T2.
Question: What is the operating temperature range for IXFP130N10T2?
Answer: The operating temperature range for IXFP130N10T2 is -55°C to 175°C.
Question: Can IXFP130N10T2 be used in parallel to increase current handling capability?
Answer: Yes, IXFP130N10T2 can be used in parallel to increase current handling capability in high-power applications.
Question: What type of package does IXFP130N10T2 come in?
Answer: IXFP130N10T2 is available in a TO-220 package for easy mounting and thermal management.
Question: Are there any recommended gate driver ICs for IXFP130N10T2?
Answer: Several gate driver ICs are compatible with IXFP130N10T2, including those with high peak current capability and under-voltage lockout protection.