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EPC2216 - Efficient Power Conversion

Description: Automotive 15 V (D-S) Enhancement Mode Power Transistor, VDS 15 V, RDS(on) 26 mΩ, ID 3.4 A, AEC-Q101

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PCB Footprints
EPC2216 - Efficient Power Conversion PCB footprint - Other - Other - EPC2216-1
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3D Models
EPC2216 - Efficient Power Conversion  - 3D model - Other - EPC2216-1
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EPC2216 Details

  • Manufacturer Part Number:

    EPC2216

  • Rohs Code:

    Yes

  • Part Life Cycle Code:

    Contact Manufacturer

  • Package Description:

    DIE-6

  • ECCN Code:

    EAR99

  • Manufacturer:

    Efficient Power Conversion

EPC2216 Frequently Asked Questions (FAQs)

  • EPC provides a recommended PCB layout guide for the EPC2216, which includes guidelines for component placement, routing, and thermal management. It's essential to follow this guide to ensure optimal performance, low EMI, and high reliability.
  • The selection of a gate driver for EPC2216 depends on the specific application requirements, such as voltage, current, and frequency. EPC recommends using a gate driver with a high current capability, low propagation delay, and high immunity to noise and EMI. The EPC908, for example, is a suitable gate driver for the EPC2216.
  • The EPC2216 has a maximum operating temperature range of -55°C to 150°C, making it suitable for high-reliability applications. However, the device's performance and lifespan may be affected by extreme temperatures, so it's essential to ensure proper thermal management and cooling.
  • The EPC2216 requires a specific biasing scheme to ensure optimal performance. EPC provides a recommended biasing scheme in the datasheet, which includes the use of a voltage regulator, resistors, and capacitors. It's essential to follow this scheme to ensure the device operates within its specified parameters.
  • When paralleling multiple EPC2216 devices, it's essential to consider factors such as current sharing, thermal management, and gate drive synchronization. EPC provides guidelines for paralleling devices in the datasheet and application notes, which should be carefully followed to ensure optimal performance and reliability.

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