PMIC - Power Supply Controllers, Monitors

Image Part Number Description / PDF Quantity Rfq
MAX16064ETX+T

MAX16064ETX+T

Maxim Integrated

IC PWR SUPPLY CTLR QUAD 36-TQFN

0

MAX4972EBC+T

MAX4972EBC+T

Maxim Integrated

IC OVERVOLTAGE PROT CTRLR 12USCP

0

MAX16071ETL+

MAX16071ETL+

Maxim Integrated

IC SYSTEM MANAGER 8CH 40-TQFN

0

MAX34446ETL+CDJ

MAX34446ETL+CDJ

Maxim Integrated

MAX34446 CUSTOM PMBUS POWER-SUPP

0

MAX4959ELB+

MAX4959ELB+

Maxim Integrated

IC CTLR HI VOLTAGE OVP

0

MAX16053AUT+TG7

MAX16053AUT+TG7

Maxim Integrated

HIGH-VOLTAGE, ADJUSTABLE SEQUENC

0

MAX1533ETJ+

MAX1533ETJ+

Maxim Integrated

IC POWER SUPPLY CONTROLER 32TQFN

0

MAX1533AETJ+T

MAX1533AETJ+T

Maxim Integrated

IC POWER SUPPLY CONTROLER 32TQFN

0

MAX34451ETN+T

MAX34451ETN+T

Maxim Integrated

IC MONITOR PMBUS 16CH V/I TQFN

0

MAX34462EXQ+T

MAX34462EXQ+T

Maxim Integrated

IC MONITOR 16 CH PMBUS 100-CSBGA

0

MAX5973ETL+T

MAX5973ETL+T

Maxim Integrated

IC SUPERVISOR DC/DC CONV 40TQFN

0

DS1632S+

DS1632S+

Maxim Integrated

IC POWER FAIL W/RESET 16SOIC

0

MAX34441ETL+

MAX34441ETL+

Maxim Integrated

IC PS MANAGER PMBUS 5CH 40TQFN

0

MAX1907AETL+

MAX1907AETL+

Maxim Integrated

QUICK-PWM MASTER CONTROLLERS FOR

150

MAX1533ETJ+T

MAX1533ETJ+T

Maxim Integrated

IC POWER SUPPLY CONTROLER 32TQFN

0

DS1632+

DS1632+

Maxim Integrated

IC POWER FAIL W/RESET 16DIP

0

MAX34461ETM+T

MAX34461ETM+T

Maxim Integrated

IC SYST MON PMBUS 16CH 48TQFN

0

MAX4970EBC+T

MAX4970EBC+T

Maxim Integrated

IC OVERVOLTAGE PROT CTRLR 12USCP

0

MAX34451ETNA1+T

MAX34451ETNA1+T

Maxim Integrated

IC MONITOR PMBUS 16CH V/I TQFN

0

MAX17606AZT+

MAX17606AZT+

Maxim Integrated

IC SECONDARY SIDE CTRLR 6-TSOT23

4510

PMIC - Power Supply Controllers, Monitors

1. Overview

Power Supply Controllers and Monitors (PSCMs) are critical subcategories of Power Management Integrated Circuits (PMICs) that manage voltage regulation, current control, power sequencing, and system monitoring in electronic devices. These components ensure stable power delivery, optimize energy efficiency, and protect against faults such as overvoltage, undervoltage, and overheating. Their importance spans across consumer electronics, industrial systems, automotive electronics, and IoT devices, where precise power management is essential for performance and reliability.

2. Main Types and Functional Classification

Type Functional Features Application Examples
Multi-Channel Controllers Supports multiple independent or synchronized power rails; integrated MOSFET drivers Smartphones, FPGA power supplies
Single-Channel Controllers Optimized for dedicated DC-DC or AC-DC conversion; high precision regulation Wearable devices, sensor modules
Power Monitors Measures voltage, current, power, and temperature; I C/SMBus communication Server power management, battery monitoring
Digital Power Controllers Programmable via PMBus; real-time adaptive control Data centers, telecom infrastructure

3. Structure and Components

A typical PSCM integrates analog and digital modules within a compact semiconductor package (e.g., QFN, BGA). Key components include:

  • Reference Voltage Generator: Provides stable voltage references for regulation.
  • PWM Controller: Adjusts duty cycles for DC-DC converters.
  • ADC/DAC Modules: Enable analog-to-digital conversion for feedback loops.
  • Communication Interface: I C, PMBus, or SPI for system integration.
  • Fault Detection Circuits: Overcurrent, undervoltage, and thermal shutdown protection.

4. Key Technical Parameters

Parameter Description
Input Voltage Range Determines compatibility with power sources (e.g., 2.7V 24V for portable devices).
Output Channels Number of independent or grouped power rails managed.
Monitoring Accuracy Typical error margin (e.g., 1% for voltage measurements).
Switching Frequency Impacts efficiency and component size (e.g., 300kHz 2MHz).
Communication Protocol Defines interface type (e.g., PMBus for digital power systems).

5. Application Fields

  • Consumer Electronics: Mobile phones, notebooks, gaming consoles.
  • Industrial: PLCs, motor drives, automation equipment.
  • Automotive: Battery Management Systems (BMS), ADAS sensors.
  • Telecom/Data Centers: Servers, networking switches, 5G base stations.
  • Medical Devices: Portable diagnostics, imaging equipment.

6. Leading Manufacturers and Products

Manufacturer Representative Product Key Features
Texas Instruments TPS404x Series Multi-phase controllers with PMBus interface
STMicroelectronics L499x Series High-efficiency synchronous buck controllers
Analog Devices ADM127x Series Digital power monitors with fault logging
Infineon Technologies IRPS5401 Integrated DrMOS solution for servers

7. Selection Guidelines

Key considerations for selecting PSCMs:

  • Power Requirements: Match input/output voltage/current specifications to system needs.
  • Integration Level: Choose between standalone controllers and highly integrated PMICs.
  • Thermal Management: Evaluate package thermal resistance and derating curves.
  • Communication Needs: Select protocols compatible with host processors (e.g., I C vs. PMBus).
  • Environmental Conditions: Ensure operating temperature range and reliability meet application demands.
  • Cost vs. Performance: Balance precision and features against budget constraints.

8. Industry Trends

Emerging trends in PSCM development include:

  • Higher Integration: Combining controllers, drivers, and monitoring in single chips.
  • Digitalization: Expansion of PMBus-enabled devices for real-time telemetry.
  • Wide Bandgap Semiconductors: GaN/SiC compatibility for high-frequency applications.
  • AI-Driven Optimization: Machine learning algorithms for dynamic power adjustment.
  • Functional Safety: Enhanced fault diagnostics for ISO 26262/IEC 61508 compliance.
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