The IPB120N04S3-02 belongs to the category of power MOSFETs and is widely used in various electronic applications. This semiconductor device is known for its high efficiency, low on-resistance, and robust packaging, making it suitable for power management in a range of electronic systems.
The IPB120N04S3-02 features a maximum drain-source voltage of 40V and a continuous drain current of 120A. It has a low on-resistance of 4mΩ and a gate threshold voltage of 2V, making it suitable for high-power applications.
The IPB120N04S3-02 follows the standard pin configuration for a TO263-3 package, with the gate, drain, and source pins clearly labeled for easy integration into circuit designs.
Advantages: - High efficiency - Low on-resistance - Robust packaging - Suitable for high-power applications
Disadvantages: - May require heat sinking in high-power applications - Sensitive to static discharge if mishandled
The IPB120N04S3-02 operates based on the principles of field-effect transistors, utilizing its low on-resistance to efficiently control the flow of power within electronic systems. By modulating the gate voltage, it can effectively manage the power flow with minimal losses.
The IPB120N04S3-02 finds extensive use in applications such as: - Switching power supplies - Motor control - Battery management systems - Solar inverters - LED lighting systems
In conclusion, the IPB120N04S3-02 power MOSFET offers high efficiency and robust performance, making it an ideal choice for power management in various electronic systems.
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What is the maximum drain-source voltage of IPB120N04S3-02?
What is the continuous drain current rating of IPB120N04S3-02?
What is the on-resistance of IPB120N04S3-02 at a specific gate-source voltage?
Can IPB120N04S3-02 be used in automotive applications?
What is the typical gate charge of IPB120N04S3-02?
Is IPB120N04S3-02 suitable for use in power supplies?
What is the operating temperature range of IPB120N04S3-02?
Does IPB120N04S3-02 require a heat sink for high-power applications?
Can IPB120N04S3-02 be used in motor control applications?
What are some common protection measures when using IPB120N04S3-02 in circuit designs?