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EVAL_DRIVE_3PH_PFD7

hotdigi 2021. 5. 24. 09:31

https://www.infineon.com/cms/en/product/evaluation-boards/eval_drive_3ph_pfd7/?utm_content=e1&utm_term=mha_board%2Bpfd7&utm_medium=email&utm_campaign=202105_glob_en_pss_pss.p.a.mha.2021&utm_source=N309&elq_mid=5629&elq_cid=787307

 

EVAL_DRIVE_3PH_PFD7

Three-phase inverter power stage with half-bridge gate-driver IC based on CoolMOS™ PFD7, the latest Infineon’s SJ technology with fast body diode

This is a complete evaluation board that includes IPN60R1K5PFD7S discrete Superjunction (SJ) MOSFET and 2ED28073J06F gate-driver ICs for motor drives application. Ready-to-use three-phase inverter power stage with 600V blocking voltage - up to 100W. In combination with iMOTION™ controller, the user can run a motor within one hour with a smooth start-up using inductive sensing.

The EVAL_DRIVE_3PH_PFD7 is designed to provide easy to use power stage based on Infineon's discrete CoolMOS™ Superjunction MOSFET. The board is equipped with all assembly groups for sensorless field oriented control (FOC). It provides a single-phase AC-connector, rectifier, and three-phase output for connecting the motor. The power stage also contains emitter shunts for current sensing and a voltage divider for DC-link voltage measurement.

The board can be easily interfaced through iMOTION™ Link. This tool is designed to program and debug IMC100 and all future series of iMOTION™ motor control ICs. It is essential for tuning your motor control system.

Important note: The iMOTION™ Link does not come with this evaluation board, and must be ordered separately.

Summary of Features

  • Low BOM count due to the CoolMOS™ PFD7 and latest iMOTION™ algorithm
  • Smooth startup using inductive sensing
  • Best light-load efficiency solution
  • Sensorless field-oriented control (FOC)
  • Ease of use with graphical user interface (GUI)

Benefits

  • High efficiency
  • Cost-effectiveness
  • Simplified design
  • Accelerated time-to-market

Potential Applications

List of components:

Interactive 3D model

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01_01 | Jan 14, 2020 | PDF | 3.97 mb

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Parametrics

ParametricsEVAL_DRIVE_3PH_PFD7

Board Type Evaluation Board
Dimensions 93mm×74.5mm×18mm
Family CoolMOS™ PFD7
Input Type AC
Output Current   max 0.86 A
Output Voltage   max 320.0 V
Pout   max 100.0 W
Product Description High voltage motor driver evaluation board with CoolMOS™ PFD7 SJ MOSFET and iMotion™ controller
Product Name EVAL_DRIVE_3PH_PFD7
Qualification Standard
Supply Voltage   min  max 85.0 V   265.0 V
Target Application Drives ; Heating ; Home Appliances ; Household ; IoT ; Motor Control & Drives ; Power Supplies ; Pumps
Topology Half Bridge

 

 

Documents

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Data Sheets

Product Brief

Application Notes

Additional Technical Information

Additional Product Information

Order

Sales Product NameEVAL_DRIVE_3PH_PFD7OPNProduct StatusInfineon Package nameStandard Package nameOrder onlineCompletely lead freeHalogen freeRoHS compliantPacking SizePacking TypeMoisture LevelMoisture Packing

EVALDRIVE3PHPFD7TOBO1
active and preferred
--
 
Buy online
 
 
no
1
CONTAINER
 
NON DRY

 

 

Tools & Software

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Support

 

Top 6 FAQs. Use the search bar above to show more!

For which topologies is CoolMOS™ PFD7 suitable?

Due to the integrated fast body diode CoolMOS™ PFD7 can be used in half- and full-bridge configurations and can be used in hard- and soft-switching topologies.

Which quality grade is offered for the CoolMOS™ PFD7 parts?

600 V CoolMOS™ PFD7 parts are available in standard grade.

Key benefits of 600 V CoolMOS™ PFD7

Minimized switching losses, Power density improvement, Increased efficiency and improved thermal behavior

I need FIT data for my product. How can I get access to it?

In order to get access to product FIT (failure in time) data, please contact our support center at https://www.infineon.com/support

Technical Support

In order to enable us to process your inquiry as efficiently as possible and ensure your case is duly reported, we kindly ask you to submit your request via the following support form:

https://www.infineon.com/tac

After submitting the form you will receive an acknowledgement of receipt in your inbox.
For security reasons, please confirm the incoming mail by sending it back to us.  In this way we make sure that your e-mail address is valid.
Additionally, you are able to attach any relevant document concerning your issue at this stage.

Thank you very much.


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