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LM3463

AKTIV

6-kanaliger Konstantstrom-LED-Treiber mit hoher Spannung und dynamischer Headroom-Steuerung

Produktdetails

Input voltage type DC Linear Topology Current Sink, Multi-Channel Vin (min) (V) 12 Vin (max) (V) 95 Vout (max) (V) 95 Vout (min) (V) 0.9 Iout (max) (A) 6 Iq (typ) (mA) 9.75 Features Enable/Shutdown, Thermal shutdown Operating temperature range (°C) -40 to 125 Dimming method Analog, PWM Number of channels 6 Rating Catalog
Input voltage type DC Linear Topology Current Sink, Multi-Channel Vin (min) (V) 12 Vin (max) (V) 95 Vout (max) (V) 95 Vout (min) (V) 0.9 Iout (max) (A) 6 Iq (typ) (mA) 9.75 Features Enable/Shutdown, Thermal shutdown Operating temperature range (°C) -40 to 125 Dimming method Analog, PWM Number of channels 6 Rating Catalog
WQFN (RHS) 48 49 mm² 7 x 7
  • Dynamic Headroom Control Output to Maximize Efficiency
  • 6 Channels Current Regulated LED Driver
  • High Precision Analog Dimming Control Interface
  • 4 Individual PWM Dimming Control Input
  • Dimming Control via Digital Data Bus
  • Built-In Maximum MOSFET Power Limiting Mechanism
  • Allows Cascade Operation to Extend the Output Channels
  • Fault Indicator Output
  • Thermal Shutdown
  • UVLO With Hysteresis
  • 48L WQFN Package

Key Specifications

  • Wide supply voltage range (12V-95V)
  • Thermal fold-back dimming control
  • DHC regulates the lowest MOSFET drain voltage to 1V

All trademarks are the property of their respective owners.

  • Dynamic Headroom Control Output to Maximize Efficiency
  • 6 Channels Current Regulated LED Driver
  • High Precision Analog Dimming Control Interface
  • 4 Individual PWM Dimming Control Input
  • Dimming Control via Digital Data Bus
  • Built-In Maximum MOSFET Power Limiting Mechanism
  • Allows Cascade Operation to Extend the Output Channels
  • Fault Indicator Output
  • Thermal Shutdown
  • UVLO With Hysteresis
  • 48L WQFN Package

Key Specifications

  • Wide supply voltage range (12V-95V)
  • Thermal fold-back dimming control
  • DHC regulates the lowest MOSFET drain voltage to 1V

All trademarks are the property of their respective owners.

The LM3463 is a six channel linear LED driver with Dynamic Headroom Control (DHC) interface that is specialized for high power LED lighting applications. The variation of the output current of every output channel in the temperature range of -40°C to 125°C is well controlled to less than ±1%. The output current of every channel is accurately matched to each other with less than ± 1% difference as well.

By interfacing the LM3463 to the output voltage feedback node of a switching power supply via the DHC interface, the system efficiency is optimized automatically. The dynamic headroom control circuit in the LM3463 minimizes power dissipation on the external MOSFETs by adjusting the output voltage of the primary switching power supply according to the changing forward voltage of the LEDs. Comprising the advantages of linear and switching converters, the LM3463 delivers accurately regulated current to LEDs while maximizing the system efficiency.

The dimming control interface of the LM3463 accepts both analog and PWM dimming control signals. The analog dimming control input controls the current of all LEDs while the PWM control inputs control the dimming duty of output channels individually.

All trademarks are the property of their respective owners.

The LM3463 provides a sophisticated protection mechanism that secures high reliability and stability of the lighting system. The protection features include VIN Under-Voltage–Lock-Out (UVLO), thermal shut-down, LED short / open circuit protection and MOSFET drain voltage limiting. The LED short circuit protection protects both the LED and MOSFETS by limiting the power dissipation on the MOSFETS.

The LM3463 is a six channel linear LED driver with Dynamic Headroom Control (DHC) interface that is specialized for high power LED lighting applications. The variation of the output current of every output channel in the temperature range of -40°C to 125°C is well controlled to less than ±1%. The output current of every channel is accurately matched to each other with less than ± 1% difference as well.

By interfacing the LM3463 to the output voltage feedback node of a switching power supply via the DHC interface, the system efficiency is optimized automatically. The dynamic headroom control circuit in the LM3463 minimizes power dissipation on the external MOSFETs by adjusting the output voltage of the primary switching power supply according to the changing forward voltage of the LEDs. Comprising the advantages of linear and switching converters, the LM3463 delivers accurately regulated current to LEDs while maximizing the system efficiency.

The dimming control interface of the LM3463 accepts both analog and PWM dimming control signals. The analog dimming control input controls the current of all LEDs while the PWM control inputs control the dimming duty of output channels individually.

All trademarks are the property of their respective owners.

The LM3463 provides a sophisticated protection mechanism that secures high reliability and stability of the lighting system. The protection features include VIN Under-Voltage–Lock-Out (UVLO), thermal shut-down, LED short / open circuit protection and MOSFET drain voltage limiting. The LED short circuit protection protects both the LED and MOSFETS by limiting the power dissipation on the MOSFETS.

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Technische Dokumentation

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Typ Titel Datum
* Data sheet LM3463 Dynamic Headroom Contrler w/ Thermal Cntrol Intrface/Indvl Chnl Dimg Cntr datasheet (Rev. A) 01 Mai 2013
White paper Common LED Functions and LED Driver Design Considerations 21 Sep 2020
User guide AN-2255 LM3463 Evaluation Board (Rev. A) 03 Mai 2013

Design und Entwicklung

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Evaluierungsplatine

LM3463EVM — LM3463EVM-Evaluierungsmodul

The LM3463 is a 6-channel linear LED driver with Dynamic Headroom Control (DHC) designed to drive six strings of high brightness LEDs at maximum supply voltage up to 95V. Each output channel of the LM3463 evaluation board is designed to deliver 200 mA of LED driving current. The LED turn on (...)
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