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IPA60R280P7
+NomenclatureMOSFETs LOW POWER_NEW
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FabricantTechnologie Infineon
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Pièce fabricant #IPA60R280P7
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Fiche technique IPA60R280P7 DataSheet
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En stock13876
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Spécifications
| Attribut | Valeur |
| Packaging | Tube |
Présentation
Description
The CoolMOS™ P7 series is known for its excellent thermal performance and low switching losses, which contribute to lower energy consumption and improved thermal management. The IPA60R280P7 is designed with softer commutation behavior, which helps reduce electromagnetic interference (EMI) and improve device reliability. It also offers robustness against voltage spikes and a high level of avalanche ruggedness, making it a reliable choice for demanding environments.
Overall, the IPA60R280P7 is ideal for engineers looking to design compact, efficient, and cost-effective power electronic systems.
Equivalent
1. Infineon IPB60R280P7 - Similar device from the same series.
2. STMicroelectronics STP60NF06 - Comparable performance characteristics.
3. ON Semiconductor FDPF12N60NZ - Similar voltage and current ratings.
Always verify the specifications from datasheets to ensure compatibility for your specific application.
Features
1. Low On-State Resistance (R_DS(on)): This ensures reduced power losses and improves efficiency.
2. Fast Switching Speed: The MOSFET is optimized for high-speed switching, beneficial for applications requiring quick transitions.
3. Robust Design: It offers high avalanche ruggedness and improved thermal performance.
4. Enhanced EMI Behavior: The device minimizes electromagnetic interference, improving compliance with EMI standards.
5. Wide Application Range: Suitable for use in power supplies, adapters, lighting systems, and industrial applications.
These features make the IPA60R280P7 ideal for developers looking for efficient, reliable, and high-performance power management solutions.
Pinout
1. Gate (G): This pin is used to control the MOSFET. A voltage applied to the gate modulates the conductivity between the drain and source.
2. Drain (D): This pin is connected to the main current-carrying channel. The MOSFET allows current to flow between the drain and source when the gate voltage is applied.
3. Source (S): This is the terminal through which current exits the MOSFET. When the device is turned on, the current flows from the drain to the source.
These MOSFETs are used in applications such as power supplies, adapters, and lighting, where efficiency and thermal performance are critical.
Manufacturer
Application
1. Switch Mode Power Supplies (SMPS): Widely used in computer and telecommunications equipment for efficient power conversion.
2. LED Drivers: Provides reliable and efficient power management in LED lighting systems.
3. Motor Drives: Suitable for industrial and consumer motor control applications.
4. Solar Inverters: Helps in converting DC to AC with high efficiency.
5. Uninterruptible Power Supplies (UPS): Ensures continuous power supply in critical applications.
6. Battery Chargers: Efficiently manages charging cycles in consumer electronics and electric vehicles.
These applications benefit from the MOSFET's low on-resistance and fast switching capabilities.