PMIC - Lighting, Ballast Controllers

Image Part Number Description / PDF Quantity Rfq
UCC3973NG4

UCC3973NG4

Texas Instruments

IC CCFL CNTRL 160KHZ 8DIP

0

UC3871DWG4

UC3871DWG4

Texas Instruments

IC FLRSCNT LAMP CTR 78KHZ 18SOIC

0

UC3872NG4

UC3872NG4

Texas Instruments

IC BALLAST CNTRL 78KHZ 14DIP

0

UC2871NG4

UC2871NG4

Texas Instruments

IC FLRSCNT LAMP CNTL 78KHZ 18DIP

0

UC3871Q

UC3871Q

Texas Instruments

IC FLRSCNT LAMP CTR 78KHZ 20PLCC

0

UC3871QG3

UC3871QG3

Texas Instruments

IC FLRSCNT LAMP CTR 78KHZ 20PLCC

0

UC2871DWG4

UC2871DWG4

Texas Instruments

IC FLRSCNT LAMP CTR 78KHZ 18SOIC

0

UC3871NG4

UC3871NG4

Texas Instruments

IC FLRSCNT LAMP CNTL 78KHZ 18DIP

0

UCC2972NG4

UCC2972NG4

Texas Instruments

IC CCFL CNTRL 160KHZ 8DIP

0

PMIC - Lighting, Ballast Controllers

1. Overview

Power Management ICs (PMICs) for lighting and ballast control are specialized integrated circuits designed to manage power delivery and operational parameters for lighting systems. These controllers regulate functions such as dimming, color tuning, current/voltage stabilization, and fault protection. They play a critical role in enhancing energy efficiency, extending lifespan, and ensuring reliable performance in applications ranging from consumer electronics to industrial systems.

2. Major Types and Functional Classification

TypeFunctional FeaturesApplication Examples
LED Driver ControllersConstant current regulation, PWM dimming, color mixingSmartphone displays, automotive LED headlights
Fluorescent Lamp Ballast ControllersHigh-voltage startup, lamp current balancingOffice lighting systems, industrial fixtures
CCFL ControllersFrequency control, lamp ignition sequencingLCD backlighting, signage
Smart Lighting ControllersWireless communication (Zigbee, Bluetooth), ambient light sensingHome automation, IoT devices

3. Structure and Components

A typical lighting/ballast controller consists of:

  • Integrated circuit die with analog/digital control logic
  • Power MOSFET drivers and gate control circuits
  • Feedback amplifiers for current/voltage regulation
  • Protection modules (overtemperature, overcurrent)
  • Communication interfaces (I2C, SPI)
Packaged in QFN, TSSOP, or BGA formats with thermal dissipation pads.

4. Key Technical Parameters

ParameterDescriptionImportance
Input Voltage RangeOperational voltage limits (e.g., 4.5V 40V)Determines system compatibility
Output Current AccuracyRegulation precision ( 2% typical)Ensures consistent brightness
Dimming RangePWM control range (0.1% 100%)Enables precise light control
EfficiencyPower conversion ratio (>90%)Impacts thermal performance and energy savings
Fault ProtectionOvervoltage, overtemperature, short-circuitPrevents system damage

5. Application Areas

Key industries include:

  • Consumer Electronics: Smartphone flash modules, LCD TVs
  • Automotive: Adaptive driving beam (ADB) systems, interior ambient lighting
  • Industrial: High-bay LED lighting, emergency lighting systems
  • Medical: Surgical lighting, diagnostic equipment illumination
Example: TI's LM3445 controller used in 12V automotive LED headlamps achieves 92% efficiency with 16-step PWM dimming.

6. Leading Manufacturers and Products

ManufacturerKey ProductFeatures
Texas InstrumentsTMP88CM287-channel LED controller with HDR dimming
STMicroelectronicsL6922Fluorescent lamp controller with soft-start
ON SemiconductorFL7734Primary-side regulated LED driver
Analog DevicesLT396516-channel PWM LED controller

7. Selection Guidelines

Key considerations:

  • Match input voltage to power source (e.g., 12V automotive vs. 48V industrial)
  • Verify output current capability against LED array requirements
  • Assess dimming resolution for application needs (e.g., theater lighting vs. indicator LEDs)
  • Check protection features for harsh environments (IP67-rated systems)
  • Evaluate communication protocol compatibility (DALI, DMX512)
Prioritize devices with integrated MOSFETs for compact designs and external FET drivers for high-power systems.

Industry Trends Analysis

Emerging trends include:

  • Integration of AI for adaptive lighting in smart cities
  • Adoption of GaN/SiC transistors enabling higher switching frequencies
  • Increased focus on functional safety (ASIL compliance for automotive)
  • Growing demand for single-chip solutions with embedded energy harvesting
  • Standardization of wireless control protocols (Bluetooth Mesh, Zigbee 3.0)
Market growth driven by EV lighting upgrades and Energy Star compliance requirements.

RFQ BOM Call Skype Email
Top