Infineon Technologies CoolMOS series Power MOSFETs

Features and Applications of CoolMOS series Power MOSFETs

The purpose of this article is to briefly illustrate what is possible with Power MOSFETs and the features and applications of these MOSFETs manufactured by Infineon Technologies under the CoolMOS series.

Applications

  • Lighting
  • Motor drives
  • Building automation
Associated Products

Part NumberDescriptionStockRFQ
IRF7523D1MOSFET N-CH 30V 2.7A MICRO-80RFQ
IRF7422D2TRMOSFET P-CH 20V 4.3A 8-SOIC8000RFQ
IRF7322D1TRMOSFET P-CH 20V 5.3A 8-SOIC0RFQ
SPD100N03S2L04TMOSFET N-CH 30V 100A DPAK10RFQ
SPD30N03S2L07TMOSFET N-CH 30V 30A DPAK0RFQ
IPS031N03L GMOSFET N-CH 30V 90A TO251-31500RFQ
IPU105N03L GMOSFET N-CH 30V 35A IPAK38658RFQ
BSS214NW L6327MOSFET N-CH 20V 1.5A SOT-3230RFQ
IPB08CNE8N GMOSFET N-CH 85V 95A TO263-30RFQ
IPB160N04S203ATMA1MOSFET N-CH 40V 160A TO263-720000RFQ
IPB12CNE8N GMOSFET N-CH 85V 67A TO263-30RFQ
IPB80N06S208ATMA1MOSFET N-CH 55V 80A TO263-31100023RFQ
IPB80N06S207ATMA1Trans MOSFET N-CH 55V 80A 3-Pin(2+Tab) TO-2631100023RFQ
IPD12CNE8N GMOSFET N-CH 85V 67A TO252-30RFQ
IPB80N06S2L-H5MOSFET N-CH 55V 80A TO263-30RFQ
IPD16CNE8N GMOSFET N-CH 85V 53A TO252-30RFQ
IPB80N06S2H5ATMA1MOSFET N-CH 55V 80A TO263-30RFQ
SPW35N60C3FKSA1MOSFET N-CH 650V 34.6A TO-24710RFQ
IPAN70R750P7SXKSA1MOSFET COOLMOS 700V TO251-3208RFQ
IPS60R360PFD7SAKMA1MOSFET N-CH 600V1000RFQ
Technical Documents

Ease of use and easy to design in are key features for customers. As a trusted advisor, Infineon puts the success of its customers in the center of its product development.

Infineon MOSFETs - Ease of use in power MOSFET product development | Infineon


CoolMOS is a series of high-performance power MOSFETs from Infineon Technologies that are designed to offer superior performance in a variety of applications. They feature low on-resistance, high switching speeds, and excellent thermal performance, making them ideal for use in power supply, lighting, motor control, and other high-power applications.

Features

The main features of the CoolMOS series Power MOSFETs may be summarized as follows:

1. Low on-resistance: CoolMOS MOSFETs have low on-resistance, which helps to reduce power losses and improve efficiency in power conversion applications.

2. High switching speeds: The fast switching speeds of CoolMOS MOSFETs make them ideal for use in high-frequency applications, such as switch-mode power supplies and motor control.

3. Excellent thermal performance: The low thermal resistance of CoolMOS MOSFETs enables efficient heat dissipation, which helps to improve reliability and extend the lifespan of electronic devices.

4. High breakdown voltage: CoolMOS MOSFETs can withstand high voltage levels, making them suitable for use in high-voltage applications.

5. Wide range of packages: CoolMOS MOSFETs are available in a variety of packages, including TO-220, TO-247, and DPAK, making them easy to integrate into a wide range of electronic designs.

Applications

  • Power supplies

  • Lighting

  • Motor control

  • Consumer electronics

  • Automotive

CoolMOS MOSFETs are widely used in switch-mode power supplies for PCs, servers, and other electronic devices. CoolMOS MOSFETs are used in LED drivers and other lighting applications, where high efficiency and low power loss are critical. CoolMOS MOSFETs are used in motor control applications, such as servo drives, robotics, and industrial automation.

 


Frequently Asked Questions

What is the advantage of CoolMOS over other power MOSFETs?

CoolMOS has a lower on-resistance and lower gate charge than traditional power MOSFETs, resulting in lower switching and conduction losses. This improves overall efficiency and reduces heat generation, making it ideal for high power applications.

What is the maximum voltage rating of CoolMOS?

The maximum voltage rating of CoolMOS can reach up to 1,200 volts, making it suitable for high voltage applications.

What is the switching speed of CoolMOS?

CoolMOS has a fast switching speed, with a typical turn-on and turn-off time of less than 10 nanoseconds.