AIKQB120N75CP2ALSA1 Overview
The AIKQB120N75CP2ALSA1 is a high-performance MOSFET designed for demanding industrial and power management applications. With its advanced silicon technology and optimized package, this device provides excellent efficiency and robust switching characteristics. Engineers and sourcing professionals seeking reliable, low-loss switching solutions benefit from its combination of low RDS(on) and high voltage handling. Ideal for use in power conversion, motor drives, and other high-current environments, it ensures consistent operation and simplified system integration. For detailed sourcing and manufacturer information, visit IC Manufacturer.
AIKQB120N75CP2ALSA1 Technical Specifications
| Parameter | Value |
|---|---|
| Part Number | AIKQB120N75CP2ALSA1 |
| Transistor Type | MOSFET (N-Channel) |
| Maximum Drain-Source Voltage (VDS) | 75 V |
| Maximum Continuous Drain Current (ID) | 120 A |
| Drain-Source On-Resistance (RDS(on)) | Low (exact value refer to datasheet) |
| Package Type | TO-220 |
| Technology | Advanced silicon process |
| Application Segment | Industrial, Power Management |
AIKQB120N75CP2ALSA1 Key Features
- High current capability enables efficient operation in power-intensive applications, supporting up to 120 A continuous drain current.
- Low RDS(on) ensures minimal conduction losses, which translates to greater energy efficiency and reduced heat generation for the user.
- Rugged TO-220 package offers reliable thermal performance and easy integration into standard PCB layouts, simplifying design and assembly.
- Optimized for switching applications, delivering fast switching speeds suitable for high-frequency converter and inverter designs.
AIKQB120N75CP2ALSA1 Advantages vs Typical Alternatives
Compared to conventional MOSFETs, this device stands out for its combination of high current capability and low on-resistance, resulting in lower power dissipation and improved efficiency. The advanced silicon technology and robust TO-220 package provide enhanced reliability and ease of integration, making it a preferred option for engineers seeking dependable, high-performance switching components.
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Typical Applications
- Switch-mode power supplies (SMPS): Ideal for use in high-efficiency power conversion circuits, where fast switching and low losses are critical for thermal management and compact design.
- Motor control: Suitable for both industrial and commercial motor drivers, supporting precise and reliable power delivery with high current handling.
- DC-DC converters: Well-suited for applications requiring efficient voltage regulation and minimal energy loss, especially in battery-powered systems.
- Uninterruptible power supplies (UPS): Used in backup power systems to ensure robust, rapid switching and reliable long-term operation under varying load conditions.
AIKQB120N75CP2ALSA1 Brand Info
This device is engineered by a reputable manufacturer committed to delivering advanced semiconductor solutions for industrial and power management sectors. The AIKQB120N75CP2ALSA1 showcases the manufacturer??s focus on reliability, efficiency, and ease of integration. Trusted in demanding environments, this MOSFET is supported by a robust distribution network and a portfolio of compatible products to help engineers streamline their designs and accelerate time-to-market.
FAQ
What are the main benefits of using the AIKQB120N75CP2ALSA1 in power conversion applications?
This MOSFET offers high current handling and low on-resistance, which reduces switching and conduction losses. As a result, it improves overall system efficiency and thermal performance, making it ideal for power conversion circuits.
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Is the AIKQB120N75CP2ALSA1 suitable for high-frequency switching?
Yes, the device is optimized for fast switching performance, supporting high-frequency operation in applications such as DC-DC converters and inverters, where switching speed is a critical parameter.
What type of package does this MOSFET use, and what are its advantages?
The AIKQB120N75CP2ALSA1 is supplied in a TO-220 package, which provides excellent thermal management and facilitates straightforward mounting onto standard PCBs or heatsinks, ensuring reliable operation under demanding conditions.
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Can this device be used in motor control applications?
Absolutely. Its high current capability and robust construction make it well-suited for industrial motor drivers, where precise, reliable switching is required to control motors efficiently and safely.
How does the on-resistance specification impact system design?
Low RDS(on) minimizes energy lost during conduction, which is especially important in systems where power efficiency and thermal management are crucial. This enables more compact designs and can reduce cooling requirements.






