PMIC - Battery Chargers

Image Part Number Description / PDF Quantity Rfq
UC3909DWG4

UC3909DWG4

Texas Instruments

IC BATT CHG LEAD ACID 20SOIC

0

UC2909N

UC2909N

Texas Instruments

IC BATT CHG LEAD ACID 20DIP

0

BQ24205DGNRG4

BQ24205DGNRG4

Texas Instruments

IC BATT CHG LI-ION 1CELL 8MSOP

0

BQ24741RHDR

BQ24741RHDR

Texas Instruments

IC BATT CHG LI-ION 2-4CEL 28VQFN

0

LM3622M-4.2/NOPB

LM3622M-4.2/NOPB

Texas Instruments

IC BATT CONTRL LI-ION 1CEL 8SOIC

0

BQ24201DGNR

BQ24201DGNR

Texas Instruments

IC BATT CHG LI-ION 1CELL 8MSOP

0

LM3622AMX-8.4

LM3622AMX-8.4

Texas Instruments

IC BATT CONTRL LI-ION 2CEL 8SOIC

0

LM2601MTCX

LM2601MTCX

Texas Instruments

IC BATT CHG ADAPT 14TSSOP

0

UCC3956DW

UCC3956DW

Texas Instruments

IC BATT CHG LI-ION 20SOIC

0

LM3647IM

LM3647IM

Texas Instruments

IC BAT CHG MULTCHEM 1-4CL 20SOIC

0

LM3655TL/NOPB

LM3655TL/NOPB

Texas Instruments

IC BATT CHG LI-ION 1CELL 25USMD

0

LM3622AM-8.2/NOPB

LM3622AM-8.2/NOPB

Texas Instruments

IC BATT CONTRL LI-ION 2CEL 8SOIC

0

BQ24901PWRG4

BQ24901PWRG4

Texas Instruments

IC BATT CHG LI-ION 1CELL 14TSSOP

0

LM3420AM5X-8.4

LM3420AM5X-8.4

Texas Instruments

IC BATT CNTL LI-ION 2CEL SOT23-5

0

LM3622MX-4.2

LM3622MX-4.2

Texas Instruments

IC BATT CONTRL LI-ION 1CEL 8SOIC

0

BQ24260YFFT

BQ24260YFFT

Texas Instruments

IC BATT CHG LI-ION 1CELL 36DSBGA

0

LM3622MX-4.1

LM3622MX-4.1

Texas Instruments

IC BATT CONTRL LI-ION 1CEL 8SOIC

0

TPS65010RGZRG4

TPS65010RGZRG4

Texas Instruments

IC BATT CHG LI-ION 1CELL 48VQFN

0

BQ24740RHDRG4

BQ24740RHDRG4

Texas Instruments

IC BAT CHG MULTCHEM 2-4CL 28VQFN

0

LM3420AM5X-16.8

LM3420AM5X-16.8

Texas Instruments

IC BATT CNTL LI-ION 4CEL SOT23-5

0

PMIC - Battery Chargers

1. Overview

Power Management Integrated Circuits (PMIC) with Battery Charger functionality are specialized semiconductor devices that manage power distribution and battery charging processes in electronic systems. These ICs integrate charging algorithms, safety protections, and power path management to optimize energy efficiency and battery lifespan. Their importance in modern technology lies in enabling compact, high-efficiency power solutions for portable electronics, electric vehicles, and IoT devices.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Linear Battery ChargersSimple topology, low noise, limited efficiency (typically <70%)Wearable devices, low-power sensors
Switch-Mode Battery ChargersHigh efficiency (>90%), supports fast charging protocolsSmartphones, laptops, drones
Multi-Protocol ChargersSupports USB PD, QC, and proprietary fast charging standardsUniversal adapters, power banks
Wireless Battery ChargersIntegrates magnetic induction control and foreign object detectionSmartphones, electric toothbrushes

3. Structure and Components

Typical physical structure includes:

  • QFN/DFN package (3x3mm to 5x5mm size range)
  • Internal modules:
    • Voltage/current regulation circuits
    • Charging algorithm controller (CC-CV, pulsed charging)
    • Thermal management unit
    • Power MOSFETs (for switch-mode types)
    • Communication interface (I2C/SPI for parameter configuration)

4. Key Technical Specifications

ParameterTypical RangeImportance
Charging Current100mA-5ADetermines charge time and battery capacity
Voltage Accuracy 0.5%- 2%Ensures battery longevity and safety
Conversion Efficiency70%-95%Impacts thermal performance and battery life
Input Voltage Range3.7V-24VDefines compatibility with power sources
Protection FeaturesOVP/OCP/OTPPrevents system failures and safety hazards

5. Application Fields

  • Consumer Electronics: smartphones, tablets, TWS earbuds
  • Industrial: handheld terminals, robotics, medical devices
  • Automotive: infotainment systems, battery management for EVs
  • IoT: smart meters, environmental sensors, security systems

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Texas InstrumentsBQ257904.5A switch-mode charger with USB PD 3.0 support
Analog DevicesLTC4162High-voltage battery charger with MPPT algorithm
STMicroelectronicsSTBC08Automotive-grade linear charger with ASIL-B safety rating
NXP SemiconductorsPF1550PMIC with integrated wireless charging controller

7. Selection Guidelines

  • Match charging current/voltage requirements with battery specifications
  • Consider input power source compatibility (USB, AC adapter, solar)
  • Evaluate required protection features (temperature monitoring, fault reporting)
  • Check communication interface requirements (I2C register configuration needed?)
  • Thermal considerations: select package with adequate heat dissipation
  • Example: For a 10W IoT device, select a 1A linear charger with 1% voltage accuracy

8. Industry Development Trends

Key trends include:

  • Integration of AI-based charging algorithms for battery aging compensation
  • Adoption of GaN/SiC transistors for >95% efficiency in fast charging applications
  • Development of bidirectional chargers for vehicle-to-grid (V2G) applications
  • Standardization of USB-C Power Delivery as universal charging interface
  • Miniaturization through 3D packaging technology (stacked die integration)
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