Evaluation Boards - LED Drivers

Image Part Number Description / PDF Quantity Rfq
EVB_RT4533AGJ6

EVB_RT4533AGJ6

Richtek

EVAL MODULE FOR RT4533AGJ6

0

EVB_RT8555WSC

EVB_RT8555WSC

Richtek

EVAL MODULE FOR RT8555WSC

0

EVB_RT4532WSC

EVB_RT4532WSC

Richtek

EVAL MODULE FOR RT4532WSC

0

EVB_RT8498GE

EVB_RT8498GE

Richtek

EVAL MODULE FOR RT8498GE

0

EVB_RT8497GS

EVB_RT8497GS

Richtek

EVAL MODULE FOR RT8497GS

0

EVB_RT4531WSC

EVB_RT4531WSC

Richtek

EVAL MODULE FOR RT4531WSC

0

EVB_RT8494GS

EVB_RT8494GS

Richtek

EVAL MODULE FOR RT8494GS

0

EVB_RT7306+RFID

EVB_RT7306+RFID

Richtek

EVAL MODULE FOR RT7306+RFID

0

EVB_RT7306GS

EVB_RT7306GS

Richtek

EVAL MODULE FOR RT7306GS

0

EVB_RT7310GE_03

EVB_RT7310GE_03

Richtek

EVAL MODULE FOR RT7310GE

0

EVB_RT7310GE_02

EVB_RT7310GE_02

Richtek

EVAL MODULE FOR RT7310GE

0

EVB_RT7302GS

EVB_RT7302GS

Richtek

EVAL MODULE FOR RT7302GS

0

EVB_RT7310GE_01

EVB_RT7310GE_01

Richtek

EVAL MODULE FOR RT7310GE

0

EVB_RT4832AWSC

EVB_RT4832AWSC

Richtek

EVAL MODULE FOR RT4832AWSC

0

EVB_RT7304GE_03

EVB_RT7304GE_03

Richtek

EVAL MODULE FOR RT7304GE

0

EVB_RT8497AGS

EVB_RT8497AGS

Richtek

EVAL MODULE FOR RT8497AGS

0

Evaluation Boards - LED Drivers

1. Overview

Evaluation Boards for LED Drivers are specialized hardware platforms designed to test, validate, and develop lighting control systems. These boards provide engineers with a controlled environment to assess driver performance, thermal management, and compatibility with various LED configurations. As solid-state lighting dominates modern applications, these evaluation tools accelerate innovation in energy efficiency, smart lighting, and dynamic color control across industries.

2. Major Types & Functional Classification

TypeFunctional FeaturesApplication Examples
Constant Current DriversMaintain stable output current regardless of voltage fluctuationsHigh-brightness LED streetlights, industrial lighting
Constant Voltage DriversProvide fixed voltage with variable current controlLED strips, automotive interior lighting
PWM Dimming ControllersUse pulse-width modulation for precise brightness controlArchitectural lighting, display backlighting
Digital Addressable ControllersSupport protocols like DALI, DMX512 for individual LED controlSmart building systems, stage lighting

3. Structure & Composition

Typical evaluation boards integrate:

  • PCB substrate with thermal vias for heat dissipation
  • LED array interfaces (commonly 1 N or matrix configurations)
  • Driver ICs with protection circuits (overvoltage, overtemperature)
  • Power management modules (AC/DC, DC/DC converters)
  • Communication interfaces (I2C, SPI, UART)
  • Onboard sensors for light output measurement
  • Debugging headers (JTAG, SWD) for firmware development

4. Key Technical Specifications

ParameterImportance
Output Current Range (mA)Determines LED brightness capability
Voltage Compliance Range (V)Affects compatibility with different LED strings
Dimming Resolution (bits)Defines granularity of light control
Switching Frequency (kHz)Influences EMI and efficiency
Thermal Shutdown Threshold ( C)Ensures reliability under stress conditions
Communication Protocol SupportEnables system integration capabilities

5. Application Fields

Primary industries include:

  • General Lighting: Smart home systems, commercial lighting
  • Automotive: Adaptive front-lighting systems, interior ambiance
  • Industrial: Machine vision systems, hazardous area lighting
  • Consumer Electronics: TV backlighting, gaming peripherals
  • Medical: Surgical lighting, phototherapy devices

6. Leading Manufacturers & Products

ManufacturerRepresentative ProductKey Features
TI (Texas Instruments)LM3466EVMConstant current driver with thermal fold-back
STMicroelectronicsSTEVAL-ILL011V1Digital dimming with 16-bit resolution
ON SemiconductorNCL30160LEDGEVBPWM dimming down to 0.1%
MicrochipCL88EVBHigh-voltage AC/DC conversion
NXP SemiconductorsPCA9901BDBDALI protocol support

7. Selection Guidelines

Key considerations:

  • Match output specifications to target LED requirements
  • Verify dimming method compatibility (PWM vs analog)
  • Assess communication protocol needs (e.g., Bluetooth mesh)
  • Evaluate thermal management capabilities
  • Check software ecosystem maturity
  • Consider cost vs feature balance

8. Industry Trends

Future development focuses on:

  • Higher integration with MCU and wireless SoC solutions
  • Adaptive control using AI/ML algorithms
  • Advancements in GaN/SiC semiconductor integration
  • Expansion of IoT-enabled lighting systems
  • Standardization of energy efficiency regulations (e.g., DOE)
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