
PMIC - PFC (Power Factor Correction)
PMIC - PFC (Power Factor Correction) - Product Category Overview
1. Definition of PMIC - PFC (Power Factor Correction)
PMIC - PFC (Power Factor Correction) refers to a specialized category of Power Management Integrated Circuits (PMICs) designed to improve the power factor in electronic systems. Power Factor Correction ensures efficient energy usage by aligning the phase relationship between voltage and current, reducing reactive power, and minimizing harmonic distortion. These ICs are critical in applications where high power efficiency and compliance with energy regulations (such as IEC 61000-3-2) are required.
2. Types of PMIC - PFC Products
PMIC - PFC solutions are available in various configurations to suit different power management needs:
- Active PFC ICs: Utilize switching techniques to dynamically correct power factor, commonly used in AC-DC converters, industrial equipment, and high-power applications.
- Passive PFC ICs: Employ passive components (inductors, capacitors) for simpler, cost-effective correction in lower-power systems.
- Digital PFC Controllers: Incorporate programmable control algorithms for adaptive power factor optimization in advanced power supplies.
- Integrated PFC + PWM Combos: Combine PFC with pulse-width modulation (PWM) for compact, high-efficiency designs in consumer electronics and server PSUs.
3. Key Considerations When Purchasing PMIC - PFC ICs
To select the right PFC solution for your application, evaluate the following:
- Efficiency Targets: Look for high power factor (>0.95) and low THD (Total Harmonic Distortion) ratings.
- Topology Compatibility: Match the IC (e.g., boost, buck-boost) to your system s voltage/current requirements.
- Regulatory Compliance: Ensure adherence to standards like ENERGY STAR, 80 PLUS, or EU CoC Tier-2.
- Thermal & Packaging: Consider thermal resistance (R JA) and package options (e.g., SOIC, QFN) for space-constrained designs.
- Design Support: Opt for vendors offering reference designs, simulation tools, and evaluation boards for faster prototyping.
By integrating PMIC - PFC solutions, engineers can enhance energy efficiency, reduce operational costs, and meet stringent environmental standards making them indispensable in modern power electronics.
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NCP1937A3DR2G
IC PFC CTRLR CRM 20SOIC
UCC38502DWTR
IC PFC CTR AVERAGE 100KHZ 20SOIC
PFS7624L
IC PFC CTRLR CCM 123KHZ ESIP-16G
ADP1047ARQZ-R7
IC PFC CTR AVERAGE 400KHZ 24QSOP
NCP1602BEASNT1G
IC PFC CTRLR CRM 6TSOP
ICE2PCS05G
ICE2PCS05 - PFC-CCM (CONTINUOUS
PFS7627H
IC PFC CTRLR CCM 123KHZ 16ESIP
FAN7528N
POWER FACTOR CONTROLLER
UC2853AD
IC PFC CTR AVER CURR 94KHZ 8SOIC
PFS726EG
IC PFC CTRLR CCM 95KHZ ESIP-7G
NCP1618ADR2G
HIGH-VOLTAGE, MULTIMODE POWER FA
ISL6730AFUZ-T
IC PFC CTRLR CCM 125KHZ 10MSOP
NCP1651DR2G
ANA PWR FACTOR CONTROLLER
UCC28517N
POWER FACTOR CONTROLLER
UCC28056ADBVT
ISOLATED DRIVER
UCC3817DWTR
IC PFC CTR AVERAGE 220KHZ 16SOIC
ML4805CP
ML4805 - VARIABLE FEEDFORWARD PF
LT8312HMS#PBF
IC PFC CTRLR DCM 400KHZ 16MSOP
SG6980DZ
POWER FACTOR CONTROLLER
UCC28070APWR
IC PFC CTL CCM ADJUSTABL 20TSSOP