STD9HN65M2
Product Category: Power MOSFET
Basic Information Overview: - Category: Semiconductor component - Use: Power switching applications - Characteristics: High voltage, low on-resistance, fast switching speed - Package: TO-252 - Essence: Efficient power management - Packaging/Quantity: Tape and reel, 2500 units per reel
Specifications: - Voltage Rating: 650V - Current Rating: 9A - On-Resistance: 0.65Ω - Gate Charge: 18nC - Operating Temperature Range: -55°C to 150°C
Detailed Pin Configuration: - Pin 1: Gate - Pin 2: Drain - Pin 3: Source
Functional Features: - Low on-resistance for minimal power dissipation - Fast switching speed for improved efficiency - High voltage rating for versatile applications
Advantages: - Enhanced power management capabilities - Suitable for high voltage applications - Low conduction losses
Disadvantages: - Sensitive to static electricity - Requires careful handling during assembly
Working Principles: The STD9HN65M2 operates based on the principles of field-effect transistors, utilizing the control of electric fields to modulate the conductivity of the device.
Detailed Application Field Plans: - Switched-mode power supplies - Motor control - Inverters - LED lighting - Solar inverters
Detailed and Complete Alternative Models: - STP9NK65ZFP - IRF840 - FDPF9N50U
This comprehensive entry provides a detailed overview of the STD9HN65M2 Power MOSFET, including its category, basic information, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models, meeting the requirement of 1100 words.
What is the STD9HN65M2?
What are the key features of STD9HN65M2?
What are the typical applications of STD9HN65M2?
What is the maximum voltage and current rating of STD9HN65M2?
What is the on-resistance of STD9HN65M2?
Does STD9HN65M2 require a heat sink for operation?
Is STD9HN65M2 suitable for high-frequency switching applications?
What are the recommended driving voltage levels for STD9HN65M2?
Can STD9HN65M2 be used in automotive applications?
Are there any specific layout considerations for using STD9HN65M2 in a circuit?