Home Diodes & Rectifiers MBR3060PT / MBR20200PT / MBR30100PT / MBR40100PT / MBR40200PT / MBR60100PT / MBR60200PT TO-247 Schottky Diode | 2PCS
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MBR3060PT / MBR20200PT / MBR30100PT / MBR40100PT / MBR40200PT / MBR60100PT / MBR60200PT TO-247 Schottky Diode | 2PCS

MBR3060PT / MBR20200PT / MBR30100PT / MBR40100PT / MBR40200PT / MBR60100PT / MBR60200PT TO-247 Schottky Diode | 2PCS

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MBR Series TO-247 Schottky Diode — High Current Power Rectifier | 2PCS

High-current TO-247 package Schottky barrier rectifier diodes covering the MBR3060PT through MBR60200PT series — the industry standard for high-efficiency power rectification in switch-mode power supplies (SMPS), solar charge controllers, motor drives, and DC-DC converters. Schottky diodes are preferred over standard PN junction diodes in power applications because of their significantly lower forward voltage drop (typically 0.3–0.5V vs. 0.7–1.0V for silicon diodes) — directly reducing conduction losses and improving system efficiency. The TO-247 package provides excellent thermal dissipation when mounted to a heatsink, enabling sustained high-current operation. Supplied as 2PCS per order.

Model Specifications

Model IF (Avg) VRRM VF (typ) Package
MBR3060PT 30A 60V ~0.50V TO-247
MBR20200PT 20A 200V ~0.85V TO-247
MBR30100PT 30A 100V ~0.65V TO-247
MBR40100PT 40A 100V ~0.65V TO-247
MBR40200PT 40A 200V ~0.85V TO-247
MBR60100PT 60A 100V ~0.65V TO-247
MBR60200PT 60A 200V ~0.85V TO-247

Schottky vs. Standard Silicon Diode — Why It Matters

Property Schottky (MBR series) Standard Silicon (1N540x)
Forward voltage (VF) 0.3–0.85V 0.7–1.0V
Conduction loss at 30A 9–25W 21–30W
Recovery time Near-zero (majority carrier) Slow (minority carrier storage)
Switching frequency Suitable for high-frequency SMPS Limited by reverse recovery
Leakage current Higher (temperature dependent) Lower
Best for High-frequency rectification, low-loss power Low-frequency, low-leakage applications

TO-247 Package — Pin Configuration

Pin Function (PT = dual common cathode)
Pin 1 (left) Anode 1
Pin 2 (centre) Cathode (common, connected to tab)
Pin 3 (right) Anode 2
Tab Cathode (heatsink mounting, electrically connected to Pin 2)

PT suffix = dual diode with common cathode. Use as a centre-tap rectifier or two independent diodes sharing a common cathode.

Key Features

  • Low forward voltage — 0.3–0.85V VF reduces conduction losses vs. standard silicon diodes
  • High current ratings — 20A to 60A average forward current for high-power applications
  • High voltage ratings — 60V to 200V VRRM covers 12V, 24V, 48V, and 110V DC bus applications
  • Near-zero reverse recovery — majority carrier device, no minority carrier storage, suitable for high-frequency SMPS
  • TO-247 package — heatsink-mountable for sustained high-power operation
  • Dual common cathode (PT) — centre-tap rectifier configuration in a single package
  • 2PCS per order — matched pair for full-bridge or dual-output rectifier builds

Common Applications

  • SMPS output rectifier (secondary side)
  • Solar charge controller reverse current protection
  • Battery charger output rectifier
  • DC motor drive freewheeling diode
  • DC-DC converter synchronous rectifier replacement
  • UPS and inverter output rectifier
  • High-current OR-ing diode (power supply redundancy)
  • Welding machine rectifier

Heatsink Mounting

At rated current, the TO-247 package dissipates significant power. Always mount with:

  • Thermal interface material (thermal pad or paste) between the tab and heatsink
  • An insulating pad if the heatsink is at a different potential than the cathode
  • An M3 screw and nut to secure the device to the heatsink
  • Heatsink sized for the expected power dissipation: P = VF × IF

Frequently Asked Questions

Q: What is the difference between MBR40100PT and MBR40200PT?
A: Both are 40A diodes. The MBR40100PT is rated for 100V reverse voltage; the MBR40200PT is rated for 200V. Choose based on your DC bus voltage with adequate margin (typically 2× the operating voltage).

Q: Can I use these in a full-bridge rectifier?
A: The PT (common cathode dual) package is optimised for centre-tap rectifier configurations. For a full-bridge, use four individual diodes or two PT packages.

Q: Why does leakage current increase with temperature?
A: Schottky diodes have higher reverse leakage than PN junction diodes, and this leakage increases significantly with temperature. In high-temperature applications, ensure the operating temperature stays within the datasheet limits to prevent thermal runaway.

Package Contents

  • 2× TO-247 Schottky Diode (model as selected)
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