MMF200ZB060

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MacMic MMF200ZB060 600V 200A FRED module with fast recovery for high-frequency rectification applications.

Product Overview

Description

This FRED module provides 200A current capability with fast recovery time of 35ns typical, minimizing switching losses.

Features soft recovery characteristics to reduce EMI and voltage overshoot in high-frequency circuits.

Ideal for use as output rectifiers in SMPS, freewheeling diodes in motor drives, and snubber circuits.

Product Series

Primary Application

Key Features

  • 200A current capability
  • 35ns fast recovery
  • Soft recovery characteristics
  • Low switching losses
  • TO-247 package

Specifications

Repetitive Peak Reverse Voltage (Vrrm) 600V
Average Forward Current (If) 200A
Forward Voltage (Vf) 1.35V typical
Reverse Recovery Time (trr) 35ns typical
Reverse Recovery Charge (Qrr) 2.5μC typical
Operating Temperature -40°C to +150°C
Package TO-247-2
Technology FRED
Reverse Voltage (Vrrm) N/A
Forward Current (If) N/A
Recovery Time (trr) N/A
Voltage Rating N/A
Current Rating N/A
Temperature Range N/A

Applications

SMPS Output Rectifiers

Industrial application for 200A 600V FRED Module

Freewheeling Diodes

Industrial application for 200A 600V FRED Module

Snubber Circuits

Industrial application for 200A 600V FRED Module

High-Frequency Rectification

Industrial application for 200A 600V FRED Module

Documents & Resources

FAE Expert Insights

D

"The MMF200ZB060 is an excellent FRED module that I frequently specify for high-frequency rectification applications. The soft recovery characteristics significantly reduce EMI and switching losses compared to standard recovery diodes. In my experience, this module performs exceptionally well when paired with MacMic IGBT modules in welding power supplies. I recommend using this FRED module for applications switching above 20KHz where fast recovery is essential."

Soft recovery FRED module ideal for high-frequency rectification

— David Chen, BeiLuo

Frequently Asked Questions

What is the recovery time?

Typical reverse recovery time is 35ns.

Suitable for high-frequency applications.

recovery time
What is the forward voltage?

Typical forward voltage is 1.35V at rated current.

Consider in conduction loss calculations.

forward voltage
How do I select the right product for my application?

Selecting the right product involves analyzing your application requirements including voltage, current, switching frequency, and thermal conditions. Consider the maximum voltage stress, continuous and peak current requirements, and switching speed needs. Our FAE team can provide detailed selection guidance based on your specific application parameters including load characteristics, duty cycle, and environmental conditions.

Provide your application requirements to our FAE team for personalized product recommendations.

product selection application requirements FAE support
What is the recommended gate drive for this IGBT/MOSFET?

Proper gate drive design is critical for optimal performance. I recommend using gate drivers with adequate output current capability (typically 2-4A for medium power devices). Gate resistor selection depends on switching frequency and EMI requirements - typically 5-15Ω for IGBTs and 10-47Ω for MOSFETs. Include negative gate voltage (-5V to -8V) for IGBTs to prevent false turn-on. For high-frequency applications, minimize gate loop inductance and use Kelvin source connections when available.

Contact our FAE team for gate drive design recommendations specific to your application.

gate drive gate resistor switching optimization
What thermal management is required for this product?

Effective thermal management is essential for reliable operation. Use thermal interface material with thermal conductivity of at least 3 W/mK between the module and heat sink. Ensure adequate heat sink sizing based on your maximum power dissipation and ambient temperature. I recommend maintaining case temperature below 85°C for long-term reliability. For high-power applications, consider forced air cooling or liquid cooling solutions. Thermal modeling can help optimize your thermal design.

Perform thermal calculations or contact FAE for thermal design assistance.

thermal management heat sink thermal interface