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    Part Img STB5NB60T4 datasheet by STMicroelectronics

    • N-CHANNEL 600V - 1.8 Ohm - 5A - I2PAK/D2PAK PowerMESH MOSFET
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    • Yes
    • Unknown
    • Obsolete
    • EAR99
    • Find it at Findchips.com

    STB5NB60T4 datasheet preview

    STB5NB60T4 Frequently Asked Questions (FAQs)

    • The maximum safe operating area (SOA) for the STB5NB60T4 is not explicitly stated in the datasheet. However, according to STMicroelectronics' application notes, the device can operate safely within the boundaries defined by the maximum ratings, thermal resistance, and power dissipation. It's recommended to consult the application notes and thermal management guidelines for specific use cases.
    • To calculate the junction temperature (Tj) of the STB5NB60T4, you can use the following formula: Tj = Tc + (Rthjc * Pd), where Tc is the case temperature, Rthjc is the thermal resistance from junction to case, and Pd is the power dissipation. The thermal resistance values can be found in the datasheet, and the power dissipation can be calculated based on the device's operating conditions.
    • The recommended PCB layout and thermal management strategy for the STB5NB60T4 involves using a multi-layer PCB with a solid copper plane for heat spreading, placing the device on a thermal pad, and using thermal vias to connect the pad to the copper plane. Additionally, it's recommended to use a heat sink or a thermal interface material to improve heat dissipation. Consult STMicroelectronics' application notes and thermal management guidelines for more detailed information.
    • Yes, the STB5NB60T4 is qualified for use in high-reliability and automotive applications. It meets the requirements of the AEC-Q101 standard for automotive-grade discrete semiconductors and is manufactured using a robust and reliable process. However, it's essential to consult the device's qualification report and to perform thorough testing and validation to ensure the device meets the specific requirements of your application.
    • The STB5NB60T4 has built-in ESD protection, but it's still recommended to follow proper ESD handling and storage procedures to prevent damage. Use ESD-safe materials, handle the device by the body or pins, and avoid touching the device's pins or die. Additionally, consider using ESD protection devices or circuits in your design to further protect the device from ESD events.
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