Diodes - Bridge Rectifiers

Image Part Number Description / PDF Quantity Rfq
EDF1BS-E3/45

EDF1BS-E3/45

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1PHASE 100V 1A DFS

0

BU2506-M3/45

BU2506-M3/45

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1P 600V 3.5A BU

567

VS-2KBP06

VS-2KBP06

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1PHASE 600V 2A D-44

2333

BU1006A5S-E3/45

BU1006A5S-E3/45

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1P 600V 3A BU-5S

0

BU25H08-M3/A

BU25H08-M3/A

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1P 800V 3.5A BU

0

GBPC25005W-E4/51

GBPC25005W-E4/51

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1P 50V 25A GBPC-W

0

G3SBA60-M3/45

G3SBA60-M3/45

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1PHASE 600V 2.3A GBU

0

G5SBA80-M3/45

G5SBA80-M3/45

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1PHASE 800V 2.8A GBU

0

B4S-E3/80

B4S-E3/80

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1P 400V TO269AA

5990

GBL01-E3/51

GBL01-E3/51

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1PHASE 100V 3A GBL

1100

BU1508-E3/45

BU1508-E3/45

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1P 800V 3.4A BU

800

BU10085S-E3/45

BU10085S-E3/45

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1P 800V 3.2A BU-5S

0

VS-KBPC608PBF

VS-KBPC608PBF

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1PHASE 800V 6A D-72

0

DF02S-E3/77

DF02S-E3/77

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1PHASE 200V 1A DFS

134

VS-36MB20A

VS-36MB20A

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1PHASE 200V 35A D-34

57

DF1508S-E3/45

DF1508S-E3/45

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1PHASE 800V 1.5A DFS

0

G2SB60-E3/45

G2SB60-E3/45

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1PHASE 600V 1.5A GBL

0

B4M-E3/45

B4M-E3/45

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1P 400V 500MA MBM

0

GBU4G-M3/45

GBU4G-M3/45

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1PHASE 400V 4A GBU

0

GBLA08-E3/45

GBLA08-E3/45

Vishay General Semiconductor – Diodes Division

BRIDGE RECT 1PHASE 800V 3A GBL

0

Diodes - Bridge Rectifiers

1. Overview

Bridge rectifiers are discrete semiconductor devices that convert alternating current (AC) to direct current (DC) using a bridge configuration of four or more diodes. They are fundamental components in power supply circuits, enabling efficient energy conversion in electronic systems. Their importance lies in providing reliable rectification for applications ranging from consumer electronics to industrial machinery, ensuring compatibility between AC power sources and DC-powered devices.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Single-Phase Full-Wave BridgeRectifies both AC half-cycles, low ripple outputSwitching power supplies, battery chargers
Three-Phase Bridge RectifierHandles three-phase AC inputs, higher efficiencyIndustrial motor drives, renewable energy inverters
High-Voltage BridgeRated for >1000V reverse voltageElectric vehicle charging stations, HVDC systems
Bridge Rectifier ModuleIntegrated heat sink, multi-pin packageHigh-power audio amplifiers, welding equipment

3. Structure and Components

A standard bridge rectifier consists of 4 diodes arranged in a closed-loop "bridge" configuration. The diodes are typically silicon-based PN-junction or Schottky barrier structures. The package uses epoxy resin encapsulation with metal terminals for AC/DC connections. Advanced designs incorporate:

  • Thermal vias for heat dissipation
  • Gold-aluminum wire bonds for conductivity
  • Integrated snubber circuits for voltage spike suppression

4. Key Technical Specifications

ParameterDescriptionImportance
Max Average Rectified Current (IO)Maximum continuous DC current ratingDetermines power handling capability
Reverse Peak Voltage (VRRM)Maximum allowable reverse voltagePrevents breakdown under AC peak voltages
Forward Voltage Drop (VF)Voltage loss during conductionImpacts efficiency and thermal design
Operating Temperature RangeValid temperature range for functionalityAffects reliability in extreme environments
Reverse Recovery Time (trr)Time to switch from conduction to blockingCritical for high-frequency applications

5. Application Fields

  • Power Electronics: AC-DC converters in PCs/servers
  • Automotive: Alternator rectification in combustion engines
  • Renewables: Solar inverter input stage
  • Consumer: LED driver circuits in TVs
  • Industrial: CNC machine tool power supplies

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
ON SemiconductorMB10F Series1A average current, 600V VRRM, high surge capability
STMicroelectronicsDBL60V120SGThree-phase 600V, integrated TVS protection
Vishay IntertechnologyKBU8M800V rating, 8A average current, compact package
Diodes Inc.GBU606600V, 6A, low leakage current

7. Selection Recommendations

Consider the following factors during component selection:

  1. Calculate required IO with 20% safety margin
  2. Select VRRM >1.5 expected AC peak voltage
  3. Choose low VF devices for >85% efficiency
  4. Match package thermal characteristics to cooling solution
  5. For high-frequency use, prioritize trr <50ns

8. Industry Trends

Future development focuses on:

  • Wide bandgap (SiC/GaN) bridges for 98%+ efficiency
  • 3D-printed heat spreader integration
  • Smart rectifiers with built-in current sensing
  • Automotive-grade modules for 800V EV systems
  • Lead-free packaging meeting RoHS 3.0 standards

Market growth driven by renewable energy systems and electric vehicle adoption, projected at 6.2% CAGR through 2030 (Source: Yole D veloppement).

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