Infineon EVAL-M7-HVMOS-INV 3-Phase Inverter for 600 V CoolMOS™ PFD7 for EVAL-M7-D111T

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£67.84

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RS Stock No.:
248-9744
Mfr. Part No.:
EVALM7HVMOSINVTOBO1
Brand:
Infineon
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Brand

Infineon

Power Management Function

3-Phase Inverter

For Use With

EVAL-M7-D111T

Kit Classification

Evaluation Board

Featured Device

600 V CoolMOS™ PFD7

Kit Name

EVAL-M7-HVMOS-INV

Infineon Evaluation board, 3-Phase Inverter, For Use With EVAL-M7-D111T - EVALM7HVMOSINVTOBO1


This evaluation board serves as an effective platform for testing diverse motor control applications using Infineon's advanced 600V inverter technology. It is specifically designed for compatibility with the EVAL-M7-D111T control board and highlights performance metrics enhanced by the integrated Infineon CoolMOS PFD7 technology, which optimises efficiency in power management solutions.

Features & Benefits


• Supports robust operation of PMSM and BLDC motors
• Utilises 600V CoolMOS PFD7 for enhanced performance
• Provides output power capabilities up to 300W
• Accommodates multiple current feedback configurations
• Compact design for straightforward integration in various setups

Applications


• Suitable for driving fans and pumps in household appliances
• Appropriate for sensorless sinusoidal field-oriented control
• Ideal for evaluations under laboratory conditions
• Facilitates efficient custom motor control systems

What control board is compatible with this evaluation board?


It is designed to work seamlessly with the EVAL-M7-D111T control board, optimising motor drive performance.

How does it handle voltage levels during operation?


The evaluation board operates with a maximum DC bus voltage of 400 V, ensuring safe and efficient performance in its applications.

What are the safety precautions involved while using it?


Always allow the DC link capacitors to discharge for five minutes after use, and ensure high voltage differential probes are utilised for measuring waveform outputs.

Can I use a heatsink with the evaluation board?


Yes, incorporating a heatsink can improve thermal performance and facilitate higher output power capabilities during operation.

Is it suitable for high-frequency applications?


This power board supports a maximum switching frequency of 20 kHz, making it suitable for various high-frequency motor control scenarios.