PMIC - Power Management - Specialized

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IR3082MTRPBF

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IC CTLR XPHASE 20-MLPQ

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IR3088AMPBF

IR3088AMPBF

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IC XPHASE CONTROL 20L-MLPQ

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TDA4916GGHUMA1

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IC SMPS W/ MOSFET OUTPUT PDSO-24

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IR3086M

IR3086M

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IC PHASE CONTROLLER 20-MLPQ

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IR3087MTRPBF

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IC CONTROLLER PHASE 20MLPQ

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IC XPHASE3 CTLR 20-MLPQ

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IR3088AMTR

IR3088AMTR

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IC XPHASE W/FAULT DET 20L-MLPQ

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IR3084UMPBF

IR3084UMPBF

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IC XPHASE CONTROL 28-MLPQ

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IC CTRL XPHASE3 VR11.0 32-MLPQ

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IR3084AMPBF

IR3084AMPBF

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IC XPHASE CONTROL 28-MLPQ

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IR3087MTR

IR3087MTR

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IC XPHASE W/OVP/TM CTRL 20L-MLPQ

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IR3507MTRPBF

IR3507MTRPBF

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IC XPHASE3 CONTROL 20-MLPQ

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IC XPHASE3 CONTROLLER 16-MLPQ

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TLE6270RAUMA1

TLE6270RAUMA1

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IC DRIVER INJECTOR QUAD DSO-36

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IR3080M

IR3080M

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IC PHASE CONTROLLER 32-MLPQ

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IC PHASE MULTIPLIER 9DFN

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IC ACTIVE BIAS CONTROLLER SOT343

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IR3081M

IR3081M

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IC PHASE CONTROLLER 28-MLPQ

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IR3502AMTRPBF

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IC XPHASE CTRL VR11.0/1 32-MLPQ

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IR3087MPBF

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IC XPHASE W/OVP/TM CTRL 20MLPQ

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PMIC - Power Management - Specialized

1. Overview

Specialized Power Management ICs (PMICs) are application-specific integrated circuits designed to optimize power distribution and management in electronic systems. These devices provide tailored solutions for voltage regulation, battery management, power sequencing, and energy efficiency optimization. Their importance in modern technology lies in enabling compact designs, reducing power consumption, and improving reliability for applications ranging from mobile devices to automotive systems.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Battery PMICsIntegrate battery charging, fuel gauging, and protection circuitsSmartphones, wearable devices
DC-DC ControllersRegulate voltage conversion with external MOSFETsHigh-performance computing (HPC) systems
AC-DC ControllersConvert AC to DC with power factor correction (PFC)Server power supplies, industrial equipment
LED DriversProvide constant current for LED arraysAutomotive lighting, display backlighting
Multi-Channel PMICsSupport multiple regulated outputs with sequencingMedical imaging equipment, IoT gateways

3. Structure and Components

Typical physical structure includes:

  • QFN/BGA packages for compact PCB integration
  • Internal blocks: Voltage regulators (LDOs, DC-DC converters), ADC/DAC modules, I2C/SPI interfaces
  • Protection circuits: Overcurrent (OCP), Overvoltage (OVP), Thermal shutdown (OTP)

4. Key Technical Specifications

ParameterImportance
Input Voltage RangeDetermines compatibility with power sources (e.g., 2.7V-24V for battery systems)
Output Current CapabilityDefines maximum load support (e.g., 0.5A-10A per channel)
Efficiency (Typical >90%)Impacts thermal performance and battery life
Quiescent CurrentCrucial for low-power standby modes (<10 A typical)
Protection FeaturesEnsures reliability under fault conditions
Operating TemperatureIndustrial (-40 C to +125 C) or automotive (-40 C to +150 C) grades

5. Application Areas

  • Consumer Electronics: Mobile phones, tablets, AR/VR headsets
  • Automotive: ADAS systems, electric vehicle (EV) battery management
  • Industrial: PLC systems, robotics actuators
  • Healthcare: Portable diagnostic devices, MRI gradient coil drivers
  • IoT: Edge sensors, smart meters

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Texas InstrumentsTPS659126-channel PMIC for AMOLED displays
STMicroelectronicsSTM32L4 Series PMICUltra-low-power with dynamic voltage scaling
ON SemiconductorNCP185xHigh-current battery charger with JEITA compliance
Analog DevicesLTC297xDigital power system management (PSM) IC
InfineonPSoC 6 PMICIntegrated with microcontroller for IoT applications

7. Selection Guidelines

  1. Define system power rails and sequencing requirements
  2. Match input voltage range with source characteristics (battery, AC adapter, etc.)
  3. Evaluate thermal performance under maximum load
  4. Prioritize protection features for critical applications
  5. Consider digital monitoring capabilities for smart systems

8. Industry Trends

Key trends shaping PMIC development:

  • Integration of wide-bandgap (SiC/GaN) drivers in power stages
  • AI-enabled dynamic power optimization for edge computing
  • 48V direct-to-load architectures for data centers
  • Functional safety compliance (ISO 26262) for automotive systems
  • Sub-1 A leakage current management for battery-free IoT devices
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