PMIC - Battery Management

Image Part Number Description / PDF Quantity Rfq
R2A20050ANS#W0

R2A20050ANS#W0

Renesas Electronics America

IC BATT PWR MGMT CIRCUIT

45000

R2J20071ANS#W0

R2J20071ANS#W0

Renesas Electronics America

IC BATT PWR MGMT DC-DC

15000

R2J20071BNS#W0

R2J20071BNS#W0

Renesas Electronics America

IC BATT PWR MGMT DC-DC

5000

R2A20050NS#W00B

R2A20050NS#W00B

Renesas Electronics America

IC BATT PWR MGMT CIRCUIT

5000

R2J24020BF-023FPU2

R2J24020BF-023FPU2

Renesas Electronics America

IC BATT MANAGER MIXED SIGNAL

880

M62253BGP#D71J

M62253BGP#D71J

Renesas Electronics America

IC BATT CHG CONTROL LI-ION

12000

M62242FP#DF1J

M62242FP#DF1J

Renesas Electronics America

IC BATT CHG CONTROL LI-ION

192500

R2J24060F-020SP#U6

R2J24060F-020SP#U6

Renesas Electronics America

IC BATT MANAGER MIXED SIGNAL

2257

R2J24050F-050SN#U0

R2J24050F-050SN#U0

Renesas Electronics America

IC BATT MANAGER MIXED SIGNAL

0

M62242FP#TF1J

M62242FP#TF1J

Renesas Electronics America

IC BATT CHG CONTROL LI-ION

0

R2S20020SP#U00G

R2S20020SP#U00G

Renesas Electronics America

IC BATT AFE SMART LITH BATT

0

R2J24050F-020SP#U0

R2J24050F-020SP#U0

Renesas Electronics America

IC BATT MANAGER MIXED SIGNAL

119691

R2J24051F-021SP#U0

R2J24051F-021SP#U0

Renesas Electronics America

IC BATT MANAGER MIXED SIGNAL

6599

RAJ240100A20GFP#HC2

RAJ240100A20GFP#HC2

Renesas Electronics America

IC BATT PWR LI-ION 3-10C 64LFQFP

0

RAJ240100A20GFP#BC0

RAJ240100A20GFP#BC0

Renesas Electronics America

IC BATT PWR LI-ION 3-10C 64LFQFP

0

PMIC - Battery Management

1. Overview

Power Management Integrated Circuits (PMICs) with Battery Management functionality are specialized semiconductor devices designed to monitor, control, and optimize battery operations in electronic systems. These ICs handle critical tasks including charging control, discharge regulation, capacity monitoring, and safety protection. Their importance has grown exponentially with the proliferation of portable electronics, electric vehicles, and energy-harvesting systems, where battery efficiency and safety are paramount.

2. Major Types & Functional Classification

TypeFunctional FeaturesApplication Examples
Battery Charge Management ICsSupport Li-ion/Polymer, NiMH, and lead-acid chemistries; implement CC/CV charging, thermal regulationSmartphones, power banks
Fuel Gauge ICsImpedance tracking, voltage-based SOC estimation, data loggingLaptops, medical devices
Battery Protection ICsOvervoltage, overcurrent, short-circuit, and temperature protectionE-bikes, battery packs
Power Path Management ICsDynamic power distribution between charger and system loadTablets, drones

3. Structure & Composition

A typical PMIC Battery Management IC integrates:

  • Analog Front-End (AFE) with precision ADC/DAC
  • Digital control logic (state machines or embedded microcontrollers)
  • Communication interfaces (I2C, SMBus, SPI)
  • High-side/low-side MOSFET drivers
  • Temperature sensing elements
  • Non-volatile memory for calibration data

Advanced packages (QFN, BGA) enable high integration while maintaining thermal performance.

4. Key Technical Specifications

ParameterTypical RangeImportance
Charging Current Range100mA - 5ADetermines charge speed and battery size compatibility
SOC Estimation Accuracy 1-5%Impacts runtime prediction reliability
Quiescent Current1-20 ACrucial for standby power efficiency
Communication Speed400kHz - 3.4MHz (I2C)Affects system responsiveness
Operating Temperature-40 C to +125 CDetermines environmental robustness

5. Application Fields

  • Consumer Electronics: Smartphones (Apple iPhone PMICs), Smartwatches (Fitbit Charge series)
  • Medical Devices: Portable ultrasound machines (Philips Lumify), infusion pumps
  • Automotive: EV battery packs (Tesla Model 3 BMS), start-stop systems
  • Industrial: Robotics (Boston Dynamics Atlas), energy storage systems

6. Leading Manufacturers & Products

ManufacturerRepresentative ProductKey Features
Texas InstrumentsBQ25790Single-chip solution with USB PD 3.0, 3.5A charging
Analog DevicesMAX17055ModelGauge m3 algorithm, 60s runtime prediction
STMicroelectronicsSTM32F051xCortex-M0 core with integrated Li-ion charger
NXP SemiconductorsPF1550PMIC for i.MX8 processors with dynamic voltage scaling

7. Selection Guidelines

Key considerations:

  • Battery chemistry compatibility (Li-ion requires CC/CV profile)
  • System voltage requirements (USB PD needs 5-20V support)
  • Form factor constraints (Wearable devices demand WCSP packages)
  • Communication protocol compatibility (I2C vs. SMBus vs. HDQ)
  • Safety certifications (UL 1642 for lithium batteries)
  • Software ecosystem (development tools and reference designs)

Example: For a 2-cell Li-ion notebook battery, select a multi-cell fuel gauge (e.g., BQ30z55) with SHA-256 authentication and PC companion software support.

8. Industry Trends

  • Integration of wireless charging (Qi standard) with battery management
  • Adoption of AI algorithms for adaptive charging profiles
  • Development of ultra-low-power PMICs for IoT edge devices
  • Increase in ASIL-D rated automotive-grade PMICs for EVs
  • Transition to 3D packaging for higher functional density
  • Growing adoption of battery health analysis (BHA) algorithms
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