Aluminum LED Emergency Driver Kit | 8W Emergency Power | 6.4V 3600mAh LiFePO4 Battery | DC9-175V Output |LED-EMW10

Industrial-Grade Split Emergency Conversion Kit with LiFePO4 Battery

The LED-EMW10 is a premium emergency power module designed for high-performance LED luminaires. Encased in a slim aluminum housing (15.9cm), it separates the inverter from its high-capacity 6.4V 3600mAh external LiFePO4 battery pack for optimized thermal management and flexible installation. This kit automatically provides 8W of constant emergency power for a full 180 minutes during main power failure. With an ultra-wide voltage range of DC 9-175V, it serves as a universal backup for commercial panels, downlights, and architectural fixtures.

  • Power Load:8-100W LED Module
  • Emergency Power:8W
  • Emergency Duration:180mins
  • Output Voltage:DC9-175V
  • Warranty: 3 Years
  • Battery Pack:External LiFePO4 6.4V 3600mAh
  • Application: LED Tubes, LED Panels, LED Linear Lights, LED Downlights
  • Certification:CE / RoHS

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    FEATURES

    Product Details

    Descrizione

    LED-EMW10 Premium Split-Type Aluminum LED Emergency Module

    When specifying safety compliance systems for premium commercial and industrial spaces, long-term battery stability and heat regulation are paramount. The LED-EMW10 addresses these needs perfectly through its advanced split-type design. By placing the LiFePO4 battery core externally away from the main driver inverter, the system prevents heat accumulation, ensuring a much longer standby life and exceptional safety in warm ceiling environments.

    Key Features:

    • Rugged Aluminum Driver Casing:The main inverter enclosure is crafted from high-grade aluminum, acting as an excellent heat sink to safeguard internal microprocessor electronics.
    • Superior Lithium Iron Phosphate (LiFePO4) Battery:Outfitted with a heavy-duty 6.4V 3600mAh external LiFePO4 pack known for superior safety, absolute thermal stability, and a longer cycle life than traditional Ni-CD or standard lithium-ion chemistries.
    • Constant 8W Brightness & 3H Runtime:Delivers a robust 8W of emergency power for a minimum of 180 minutes (3 hours), maintaining significant illumination levels across wide corridors or high-ceiling zones during escape situations.
    • Highly Versatile DC 9-175V Output: An intelligent adaptive voltage circuit seamlessly accommodates different series/parallel LED configurations, making it a drop-in match for downlights, track heads, and square panels.
    • Complete Professional Accessory Kit: Comes fully equipped with a remote LED indicator cable and a tactile test switch mechanism, simplifying legal building safety inspections.

    Technical Specifications:

    Model LED-EMW10
    Input Power 8W to 100W
    Rated Voltage AC85-265V 50/60Hz
    Changing Time of Emergency >2S
    Output Voltage DC9-175V
    Output Power While Emergency 8W
    Emergency Duration 180 Minutes (3 Hours)
    Battery Specification External LiFePO4 6.4V 3600mAh
    Charging Current 300mA
    Standby Power 0.5W
    Type of Lamp LED Tubes, LED Panels, LED Linear Lights, LED Downlights.
    IP Grade IP20
    Working Mode Emergency+Lighting
    Standard EN60598-2-22

    LED-EMW10 Wiring Diagram:

    LED-EMW10B Emergency poer kit Keep your space illuminated during power outage
    LED-EMW10B Emergency poer kit Keep your space illuminated during power outage
    LED-EMW10B Emergency power kit Wiring diagram
    LED-EMW10B Emergency power kit Wiring diagram
    LED-EMW10B Emergency power kit with LiFePO4 battery (2)
    LED-EMW10B Emergency power kit with LiFePO4 battery (2)

    LED-EMW10 Emergency Mode FAQ:

    Q1: What is the benefit of the split design (separate driver and battery) in the LED-EMW10?
    A: The split structure of the LED-EMW10 offers two major advantages. First, it drastically improves thermal management; since emergency battery packs continuously trickle-charge, keeping them physically separated from the driver circuitry prevents localized overheating, extending battery life. Second, it allows for flexible installation in extra-shallow ceiling voids or inside tight lighting housings where a single massive box would not fit.

    Q2: Why use a 6.4V LiFePO4 battery instead of cheaper alternatives?
    A: LiFePO4 (Lithium Iron Phosphate) represents the gold standard for emergency backup power. Compared to standard Li-ion or older Ni-CD cells, LiFePO4 offers unmatched safety (no risk of fire or thermal runaway), can withstand higher ambient operating temperatures inside ceilings, and maintains its capacity over thousands of charge-discharge cycles, reducing long-term replacement labor costs.

    Q3: Does this kit come ready for standard code-compliance testing?
    A: Yes, the kit includes a dedicated pre-wired test switch and status indicator light assembly. Once installed, maintenance teams can mount the small indicator button on the rim of the luminaire or ceiling panel to easily check charging status and manually trigger emergency simulation tests to fulfill regulatory requirements.

     

    Technical Specifications

    Model LED-EMW10
    Input Power 8W to 100W
    Rated Voltage AC85-265V 50/60Hz
    Changing Time of Emergency >2S
    Output Voltage DC9-175V
    Output Power While Emergency 8W
    Emergency Time 180 Minutes (3 Hours)
    Battery Specification External LiFePO4 6.4V 3600mAh
    Charging Current 300mA
    Standby Power 0.5W
    Type of Lamp LED Tubes, LED Panels, LED Linear Lights, LED Downlights.
    IP Grade IP20
    Working Mode Emergency+Lighting
    Standard EN60598-2-22

    FAQ

    Q1: What is the benefit of the split design (separate driver and battery) in the LED-EMW10?
    A: The split structure of the LED-EMW10 offers two major advantages. First, it drastically improves thermal management; since emergency battery packs continuously trickle-charge, keeping them physically separated from the driver circuitry prevents localized overheating, extending battery life. Second, it allows for flexible installation in extra-shallow ceiling voids or inside tight lighting housings where a single massive box would not fit.

    Q2: Why use a 6.4V LiFePO4 battery instead of cheaper alternatives?
    A: LiFePO4 (Lithium Iron Phosphate) represents the gold standard for emergency backup power. Compared to standard Li-ion or older Ni-CD cells, LiFePO4 offers unmatched safety (no risk of fire or thermal runaway), can withstand higher ambient operating temperatures inside ceilings, and maintains its capacity over thousands of charge-discharge cycles, reducing long-term replacement labor costs.

    Q3: Does this kit come ready for standard code-compliance testing?
    A: Yes, the kit includes a dedicated pre-wired test switch and status indicator light assembly. Once installed, maintenance teams can mount the small indicator button on the rim of the luminaire or ceiling panel to easily check charging status and manually trigger emergency simulation tests to fulfill regulatory requirements.

     


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