PMIC - Current Regulation/Management

Image Part Number Description / PDF Quantity Rfq
MAX17609ATC+T

MAX17609ATC+T

Maxim Integrated

INDUSTRIAL 1A OVER-CURRENT AND O

5000

MAX4007EUT+T

MAX4007EUT+T

Maxim Integrated

IC CURRENT MONITOR 5% SOT23-6

977

MAX20087ATPC/VY+T

MAX20087ATPC/VY+T

Maxim Integrated

DUAL/QUAD CAMERA PWR PROTECTOR

0

MAX20087ATPA/VY+

MAX20087ATPA/VY+

Maxim Integrated

QUAD CHANNEL CAMERA PROTECTOR

46

MAX1562ESA+

MAX1562ESA+

Maxim Integrated

IC INTERFACE SPECIALIZED 8SOIC

3085500

MAX20333ENL+

MAX20333ENL+

Maxim Integrated

CURRENT LIMIT SWITCH

7681220

MAX1562ESA+T

MAX1562ESA+T

Maxim Integrated

IC INTERFACE SPECIALIZED 8SOIC

0

MAX1563ETC+T

MAX1563ETC+T

Maxim Integrated

IC INTERFACE SPECIALIZED 12TQFN

0

MAX4995AAUT+T

MAX4995AAUT+T

Maxim Integrated

IC CURR LIMIT SWITCH SOT23-6

2290

MAX4211EETE+T

MAX4211EETE+T

Maxim Integrated

IC CURRENT MONITOR 1.5% 16TQFN

5000

MAX20087ATPC/VY+

MAX20087ATPC/VY+

Maxim Integrated

DUAL/QUAD CAMERA PWR PROTECTOR

0

MAX4210AEUA+

MAX4210AEUA+

Maxim Integrated

IC CURRENT MONITOR 1.5% 8MSOP

0

MAX1562HESA+

MAX1562HESA+

Maxim Integrated

IC CURRENT SWITCH 4A 8SOIC

264600

MAX20316EWC+T

MAX20316EWC+T

Maxim Integrated

500-6000MA ADJ CURRENT LIMITING

15000

DS1842N+

DS1842N+

Maxim Integrated

IC CURRENT MONITOR 14TDFN

33

MAX20315EWC+T

MAX20315EWC+T

Maxim Integrated

500-6000MA ADJ CURRENT LIMITING

12500

DS3920T-001+T

DS3920T-001+T

Maxim Integrated

IC CURRENT MIRROR 5:1 SOT23-6

42500

MAX4210EEUA+

MAX4210EEUA+

Maxim Integrated

IC CURRENT MONITOR 1.5% 8MSOP

350

DS3920T-001+

DS3920T-001+

Maxim Integrated

IC CURRENT MIRROR 5:1 SOT23-6

51

MAX4790EUS+T

MAX4790EUS+T

Maxim Integrated

IC SWITCH 1X1 SOT143-4

1377

PMIC - Current Regulation/Management

1. Overview

Power Management Integrated Circuits (PMICs) for current regulation and management are specialized semiconductor devices designed to control, monitor, and optimize electrical current flow in electronic systems. These ICs ensure stable power delivery, improve energy efficiency, and protect circuits from overcurrent, thermal, and voltage-related faults. With the rise of portable electronics, electric vehicles, and IoT devices, precise current management has become critical for system reliability and battery longevity.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Linear Regulators (LDOs)Low noise, simple design, dropout voltage constraintsSmartphones, RF modules
Switching RegulatorsHigh efficiency, PWM control, higher complexityLaptops, DC-DC converters
Battery Charge Management ICsSupport Li-ion/Polymer chemistries, thermal regulationElectric vehicles, drones
Current Sense AmplifiersPrecise current monitoring, low-side/high-side detectionIndustrial automation, power meters

3. Structure and Composition

Typical PMICs for current regulation integrate multiple components:

  • Voltage reference circuits for stable reference points
  • Error amplifiers for feedback control
  • Power MOSFETs or BJT switches for current regulation
  • Protection circuits (OCP, OVP, thermal shutdown)
  • Digital interfaces (I2C, PMBus) for programmability

Common packaging includes QFN, BGA, and TSSOP formats with thermal pads for heat dissipation.

4. Key Technical Parameters

ParameterDescriptionImportance
Input Voltage RangeOperating voltage limitsDefines compatibility with power sources
Output Current CapabilityMax sustained current deliveryDictates load capacity
Efficiency (Typical)Power conversion ratioAffects thermal and battery life
Quiescent CurrentStandby power consumptionCritical for low-power devices
Transient ResponseStability during load changesEnsures reliable operation

5. Application Fields

  • Consumer Electronics: Smartphones, wearables, tablets
  • Automotive: Battery management systems, ADAS modules
  • Industrial: PLCs, robotics, test equipment
  • Telecommunications: Base stations, optical transceivers

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Texas InstrumentsBQ25790Single-cell battery charger with 30V OVP
STMicroelectronicsSTBC08Automotive current sensor with 5% accuracy
Infineon TechnologiesXDPL210Digital PFC+LLC controller for servers

7. Selection Guidelines

  1. Determine input/output voltage/current requirements
  2. Evaluate efficiency needs based on thermal constraints
  3. Select appropriate protection features (OCP/OVP/OTP)
  4. Consider package size and thermal performance
  5. Assess digital control requirements (I2C/PMBus compatibility)

8. Industry Trends

Current PMIC development focuses on:

  • Higher integration (power + monitoring + communication)
  • Wide bandgap semiconductor adoption (GaN/SiC compatibility)
  • AI-driven dynamic voltage/current scaling
  • Automotive-grade reliability for EVs and ADAS systems
  • Sub-100 A quiescent current for always-on IoT devices
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