IRF9530NPBF P-Channel MOSFET Transistor, TO-220 Package, Vishay

  • Acts as a P-channel MOSFET, enabling efficient switching and power management in electronic circuits.
  • Supports through-hole mounting, which helps with secure placement and straightforward prototyping during assembly.
  • The TO-220 package offers a compact footprint, saving board space while allowing for effective heat dissipation.
  • Provides reliable performance in DC-DC converters, improving voltage regulation in power supply applications.
  • Manufactured for consistent quality, helping ensure dependable operation even in demanding environments.
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IRF9530NPBF Overview

The IRF9530NPBF is a robust P-channel power MOSFET designed for efficient switching and amplification tasks in industrial and commercial electronics. With its advanced silicon technology and TO-220 package, it achieves reliable performance in demanding environments. This device offers low on-resistance and high-speed switching, making it suitable for applications requiring precise load control and power management. The IRF9530NPBF is lead-free and RoHS compliant, aligning with modern environmental and regulatory standards. For engineers seeking a dependable solution in medium-voltage circuits, it delivers a compelling mix of efficiency, reliability, and ease of integration. IC Manufacturer

IRF9530NPBF Technical Specifications

Parameter Details
Transistor Type P-Channel MOSFET
Drain-to-Source Voltage (VDS) -100 V
Continuous Drain Current (ID) -12 A
RDS(on) (Max) 0.2 ??
Gate-to-Source Voltage (VGS) ?I20 V
Power Dissipation (PD) 60 W
Operating Temperature Range -55??C to +175??C
Package Type TO-220AB
Mounting Style Through Hole
RoHS Status Compliant / Lead-Free

IRF9530NPBF Key Features

  • Low on-resistance (RDS(on)): This enables efficient power switching with minimal energy loss, which is critical for thermal management and overall circuit efficiency.
  • High continuous drain current: The device supports up to -12 A, allowing it to handle substantial loads in motor control and power supply circuits.
  • Wide operating temperature range: With a range from -55??C to +175??C, the IRF9530NPBF is suitable for harsh industrial environments and high-reliability systems.
  • TO-220AB package: Ensures easy integration and effective heat dissipation, which supports high-power applications and extends device lifespan.
  • RoHS compliant, lead-free design: Meets modern environmental standards, supporting eco-friendly manufacturing and global market requirements.
  • Fast switching performance: Reduces switching losses, making the device ideal for high-frequency applications and efficient power management solutions.

IRF9530NPBF Advantages vs Typical Alternatives

The IRF9530NPBF stands out among P-channel MOSFETs due to its low RDS(on) value, robust current handling, and broad temperature support. These attributes provide superior energy efficiency, enhanced reliability, and easier thermal management compared to standard alternatives. Its RoHS compliance and through-hole TO-220 package further simplify assembly and support regulatory needs, making it a preferred choice for engineers in demanding environments and power-sensitive applications.

Typical Applications

  • Power Supply Switching: Frequently used for load switching in DC-DC converters, where efficient on/off control and low conduction losses are essential for stable power delivery and system reliability.
  • Motor Control Circuits: Ideal for driving and protecting motors in industrial automation and consumer electronics, leveraging its high current capability and fast switching characteristics.
  • Reverse Polarity Protection: Utilized in battery-powered systems to prevent damage from accidental reverse connections due to its inherent P-channel structure.
  • General Purpose Switching: Suitable for relay replacement and signal-level switching in a wide variety of commercial and industrial electronic circuits.

IRF9530NPBF Brand Info

The IRF9530NPBF is a member of a well-established line of power MOSFETs recognized for reliability and ruggedness in high-power applications. Designed to meet the demands of global markets, this device features a lead-free, RoHS-compliant build and a versatile TO-220 package. Its development reflects a focus on optimizing efficiency and durability, with a proven track record in industrial, automotive, and power management sectors. Customers appreciate its consistent performance, ease of use in design, and suitability for both legacy and modern applications.

FAQ

What makes the IRF9530NPBF suitable for high-power applications?

Its combination of low on-resistance, high continuous drain current capability, and efficient heat dissipation through the TO-220AB package ensures reliable operation under heavy loads. These features allow engineers to implement the device confidently in power switching and regulation designs with demanding performance requirements.

Can the IRF9530NPBF be used in high-temperature environments?

Yes, the device supports an operating temperature range from -55??C to +175??C. This wide range ensures stable operation in both extreme cold and heat, making it suitable for industrial control systems and automotive power supplies exposed to challenging conditions.

How does the IRF9530NPBF contribute to energy efficiency in circuits?

With a low maximum RDS(on) value of 0.2 ??, the device minimizes conduction losses during operation. This feature is particularly beneficial in applications where thermal management and energy savings are critical, such as power converters and switching regulators.

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Is the IRF9530NPBF compliant with environmental regulations?

Yes, it is RoHS compliant and lead-free. This not only supports environmental responsibility but also simplifies product certification and market access in regions with strict hazardous substance regulations, such as the European Union.

What mounting options are available for the IRF9530NPBF?

The device is provided in a TO-220AB package designed for through-hole mounting. This allows for secure mechanical attachment and effective heat dissipation, making it suitable for both prototyping and high-volume manufacturing in power electronics assemblies.

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