PMIC - Voltage Regulators - DC DC Switching Regulators

Image Part Number Description / PDF Quantity Rfq
A6985FTR

A6985FTR

STMicroelectronics

IC REG BUCK ADJ 500MA 16HTSSOP

0

L5988D

L5988D

STMicroelectronics

IC REG BUCK ADJ 4A 16HTSSOP

0

L7987L

L7987L

STMicroelectronics

IC REG BUCK ADJ 2A 16HTSSOP

843

B5973DTR

B5973DTR

STMicroelectronics

IC REG BUCK ADJUSTABLE 2A 8HSOP

470

ST1S12GR

ST1S12GR

STMicroelectronics

IC REG BUCK ADJ 700MA TSOT23-5

6573

L7981ATR

L7981ATR

STMicroelectronics

IC REG BUCK ADJUSTABLE 3A 8HSOP

0

ST1S30IPUR

ST1S30IPUR

STMicroelectronics

IC REG BUCK ADJUSTABLE 3A 8DFN

0

A6986TR

A6986TR

STMicroelectronics

IC REG BUCK ADJ 2A 16HTSSOP

2488

ST1S50PUR

ST1S50PUR

STMicroelectronics

IC REG BUCK ADJ 4A 10VFDFPN

2772

L5987A

L5987A

STMicroelectronics

IC REG BUCK ADJUSTABLE 3A 8HSOP

4117

STBB2J29-R

STBB2J29-R

STMicroelectronics

IC REG BCK BST PROG 20FLIPCHIP

0

ST8R00WPUR

ST8R00WPUR

STMicroelectronics

IC REG BOOST ADJUSTABLE 3A 8DFN

9057

L6983N50QTR

L6983N50QTR

STMicroelectronics

38 V 3A SYNCHRONOUS STEP-DOWN CO

445

L7981A

L7981A

STMicroelectronics

IC REG BUCK ADJUSTABLE 3A 8HSOP

0

L7986TR

L7986TR

STMicroelectronics

IC REG BUCK ADJUSTABLE 3A

17433

L4963D

L4963D

STMicroelectronics

IC REG BUCK ADJUSTABLE 1.5A 20SO

0

L5972D013TR

L5972D013TR

STMicroelectronics

IC REG BUCK ADJUSTABLE 2A 8SO

10754

L4973V3.3

L4973V3.3

STMicroelectronics

IC REG BUCK ADJ/3.3V 3.5A 18DIP

910

L5973D013TR

L5973D013TR

STMicroelectronics

IC REG BUCK ADJ 2.5A 8HSOP

211

ST2S06BPQR

ST2S06BPQR

STMicroelectronics

IC REG BUCK ADJ 800MA DL 12QFN

0

PMIC - Voltage Regulators - DC DC Switching Regulators

1. Overview

DC-DC switching regulators are electronic circuits that efficiently convert direct current (DC) from one voltage level to another through switching techniques. By rapidly turning semiconductor switches (e.g., MOSFETs) on/off and modulating the duty cycle, these regulators achieve high efficiency (often >90%) compared to linear regulators. They are critical in modern electronics for power management, enabling compact designs, thermal optimization, and extended battery life in portable devices. Their ability to step-up, step-down, or invert voltages makes them indispensable in applications ranging from consumer electronics to industrial systems.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Buck (Step-Down)Reduces input voltage to a lower regulated outputProcessor cores, LED drivers, battery chargers
Boost (Step-Up)Increases input voltage to a higher regulated outputUSB On-The-Go, battery-powered devices, backlighting
Buck-BoostInverts or adjusts voltage to match load requirementsPower-over-Ethernet, automotive systems
Cuk ConverterProvides smooth input/output currents with inversionMedical devices, precision instrumentation
SEPICEnables output voltage above/below input with DC isolationAutomotive infotainment, solar inverters
Zeta ConverterDelivers non-inverted output with input-output isolationTelecom power systems, industrial sensors

3. Structure and Composition

A typical DC-DC switching regulator integrates the following components:

  • Power Switches: MOSFETs or bipolar transistors for high-efficiency switching
  • Inductor: Stores energy during switching cycles (e.g., coupled inductors for isolation)
  • Capacitors: Input/output filtering to suppress ripple (ceramic or polymer types)
  • PWM Controller: Regulates duty cycle via feedback loops (voltage/current mode control)
  • Protection Circuits: Overcurrent, overtemperature, and undervoltage lockout (UVLO)

Advanced packages like QFN (Quad Flat No-leads) and BGA (Ball Grid Array) enable miniaturization, while synchronous rectification reduces conduction losses.

4. Key Technical Specifications

ParameterDescriptionImportance
Input Voltage RangeOperating voltage limits (e.g., 2.5V 40V)Determines compatibility with power sources
Output Voltage RangeAdjustable/setpoint voltage (e.g., 0.6V 5.5V)Matches load requirements
Output CurrentMaximum load current (e.g., 1A 20A)Dictates power delivery capability
EfficiencyRatio of output/input power (e.g., 85% 97%)Impacts thermal performance and battery life
Switching FrequencyOperating frequency (e.g., 100kHz 5MHz)Affects component size and EMI
Ripple/NoiseOutput voltage fluctuations (e.g., <30mVpp)Critical for noise-sensitive circuits

5. Application Areas

  • Consumer Electronics: Smartphones (PMIC integration), laptops, wearables
  • Automotive: Battery management systems, ADAS sensors, infotainment units
  • Industrial: PLCs, motor drives, IoT edge devices
  • Telecommunications: 5G base stations, optical transceivers, routers
  • Renewables: Solar micro-inverters, energy storage systems

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
Texas InstrumentsLM5118Synchronous buck-boost controller, 6V 40V input
STMicroelectronicsL69833.5V 38V input, 3A output, automotive qualified
InfineonTDA3608High-current boost converter for industrial lighting
ON SemiconductorNCP317040V input, 7A output, current-mode control
Analog DevicesLTC389160V input, low quiescent current, rail-to-rail operation

7. Selection Guidelines

Key considerations during component selection:

  • Define input/output voltage and current requirements
  • Prioritize efficiency targets (>90% for battery-operated systems)
  • Select switching frequency based on EMI constraints and component size
  • Verify thermal management capabilities (e.g., package thermal resistance)
  • Assess protection features (OCP, OTP, soft-start)
  • Evaluate PCB layout complexity (e.g., external MOSFET requirements)
  • Balance cost vs. integration level (integrated FETs vs. controllers)

Example: For a 12V-to-3.3V/5A telecom power supply, select a synchronous buck regulator with 40V rating, >92% efficiency, and remote sensing.

8. Industry Trends

Emerging trends shaping DC-DC regulator development include:

  • Wide Bandgap Integration: GaN/SiC devices enabling >1000V operation and 5MHz+ switching
  • Smart Power Management: Digital control via PMBus for dynamic voltage scaling
  • Ultra-Low Quiescent Current: <10 A IQ for always-on IoT sensors
  • Advanced Packaging: 3D stacking and embedded die solutions for <100 m form factors
  • EMI Reduction: Spread spectrum frequency modulation and shielding innovations
  • Functional Safety: ISO 26262 compliance for automotive ASIL-D systems

Market demand is projected to grow at 7.2% CAGR through 2030, driven by EVs, 5G infrastructure, and edge computing.

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