PMIC - PFC (Power Factor Correction)

Image Part Number Description / PDF Quantity Rfq
PFS7624C-TL

PFS7624C-TL

Power Integrations

IC PFC CTLR CCM 123KHZ INSOP-24B

1780

HA16174FPEL-E

HA16174FPEL-E

Renesas Electronics America

POWER FACTOR CORRECTION CONTROL

6000

IR11452STRPBF

IR11452STRPBF

IR (Infineon Technologies)

IC PFC CTRLR CCM 66KHZ 8SOIC

0

STK760-304-E

STK760-304-E

MOD PFC HYBRID INVERTER 1PH DCDC

224

NCP1615CDR2G

NCP1615CDR2G

POWER FACTOR CONTROLLER

3616

STK760-712A-E

STK760-712A-E

Sanyo Denki SanUPS Products

SINGLE-PHASE RECTIFICATION

22750

R2A20112ASP#W0

R2A20112ASP#W0

Renesas Electronics America

IC PFC CTRLR CRM 16SOP

0

R2A20115SP#U0

R2A20115SP#U0

Renesas Electronics America

MIXED SIGNAL PROCESSOR

2201

R2A20124AFP#W5

R2A20124AFP#W5

Renesas Electronics America

POWER FACTOR CORRECTION

8000

STK760-213AC-E

STK760-213AC-E

SINGLE-PHASE RECTIFICATION

3626

NCP1615D2DR2G

NCP1615D2DR2G

POWER FACTOR CONTROLLER

14766

MP44010HP-LF

MP44010HP-LF

MPS (Monolithic Power Systems)

IC PFC CTRLR 8SOIC

0

HA16141FPEL-E

HA16141FPEL-E

Renesas Electronics America

PFC AND PWM CONTROLLER

4000

HA16174P-E

HA16174P-E

Renesas Electronics America

POWER FACTOR CORRECTION CONTROL

0

NCP1615C5DR2G

NCP1615C5DR2G

POWER FACTOR CONTROLLER

23149

STNRG012TR

STNRG012TR

STMicroelectronics

DIGITAL COMBO MULTI-MODE PFC AND

0

HA16142FPEL-E

HA16142FPEL-E

Renesas Electronics America

PFC AND PWM CONTROLLER

14000

SC33262DR2G

SC33262DR2G

IC VOLT REGULATOR

86668

STK760-211C-E

STK760-211C-E

ANALOG CIRCUIT, 1 FUNC, HYBRID

29523

R2A20114SP#W0

R2A20114SP#W0

Renesas Electronics America

POWER FACTOR CORRECTION

0

PMIC - PFC (Power Factor Correction)

1. Overview

Power Factor Correction (PFC) integrated circuits (ICs) are critical components in power management systems that improve electrical efficiency by aligning the phase of current with voltage waveforms. This reduces harmonic distortion and reactive power, enhancing energy utilization. PFC circuits are essential in modern electronics, particularly for compliance with international standards like IEC 61000-3-2, which regulate harmonic currents in power supplies.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Active PFCUses switching circuits to dynamically control current waveformHigh-end power supplies, servers, industrial equipment
Passive PFCRelies on inductors/capacitors for basic waveform shapingLow-cost consumer electronics, small appliances
Transition Mode (CrM) PFCOperates at zero current detection for reduced switching lossLED drivers, battery chargers
Continuous Conduction Mode (CCM) PFCHigh-efficiency operation with continuous inductor currentHigh-power industrial systems, electric vehicle charging

3. Structure and Composition

A typical PFC IC consists of:

  • Control Core: Implements PWM/PFM algorithms for switch regulation
  • High-Voltage Gate Drivers: Interface for external MOSFET/IGBT
  • Current/Voltage Sensing Circuits: Feedback for waveform correction
  • Protection Modules: Overvoltage, overcurrent, and thermal shutdown
  • Communication Interfaces: Digital control (e.g., I C) in smart power systems
Physical packaging includes QFN, SOIC, and TO-220 formats for different thermal requirements.

4. Key Technical Specifications

ParameterDescriptionImportance
Input Voltage Range90-264 VAC standardDetermines global compatibility
EfficiencyTypically >90%Energy savings and thermal performance
Switching Frequency45kHz-300kHzAffects component size and EMI
Power FactorTarget >0.95Compliance with harmonic regulations
Thermal Resistance15-50 C/WReliability and power handling capability

5. Application Fields

  • Consumer Electronics: PC power supplies, LED TVs
  • Industrial: Variable frequency drives, welding equipment
  • Automotive: Onboard chargers for EVs, battery management systems
  • Renewable Energy: Solar inverters, wind turbine converters

6. Major Manufacturers and Products

ManufacturerProduct SeriesKey Features
TI (Texas Instruments)UCC28070Transition mode PFC with 115kHz operation
STMicroelectronicsL6562High-voltage startup, valley switching
InfineonICE3PCS01HIntegrated CoolMOS solution
ON SemiconductorNCP1654Multi-mode operation for wide load range

7. Selection Guidelines

Key considerations:

  • Match input/output voltage requirements with IC capabilities
  • Balance efficiency targets with switching losses
  • Select appropriate package for thermal management
  • Evaluate EMI characteristics for system integration
  • Consider digital control features for smart systems
Example: For a 3kW server power supply, select CCM PFC ICs with integrated gate drivers and thermal shutdown protection.

8. Industry Trends

Current trends include:

  • Integration with wide bandgap semiconductors (GaN/SiC) for higher efficiency
  • Digital PFC controllers with adaptive algorithms
  • Higher integration levels combining PFC + DC-DC conversion
  • Increased focus on automotive-grade solutions for EVs
  • AI-driven predictive power factor correction systems
The global PFC market is projected to grow at 6.8% CAGR through 2030, driven by renewable energy and EV adoption.

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