NEPOWER Series

Nebula Integrated Energy Storage EV Charger

The Nebula lntegrated Energy Storage EV charger is a cutting-edge, integrated charging solution designed for high-efficiency ultra-fast electric vehicle (EV) charging. Powered by CATL's lithium iron phosphate (LFP) batteries, it combines long life, exceptional safety, and high performance with the flexibility to operate without infrastructure upgrades. This innovative charger supports charging power of 270 kW from a single connector, with just 80 kW input power offering unparalleled convenience for various EV charging needs.
The Nebula lntegrated Energy Storage EV charger redefines the EV charging experience, offering a sustainable, efficient, and scalable solution to meet the growing demands of modern mobility.

Scope of Application

  • Charging Power
    Charging Power
  • Input Power
    Input Power
  • Highway Rest Areas
    Highway Rest Areas
  • Urban Parking Spaces
    Urban Parking Spaces
  • 神行桩-NEPOWER_1_副本

Product Feature

  • Charging Power

    Charging Power

    270 kW (output), supports up to 80 km range in 3 minutes

  • Input Power

    Input Power

    80 kW, eliminating the need for transformer upgrades

  • Charging Voltage Range

    Charging Voltage Range

    200V to 1000V DC

  • Energy Storage

    Energy Storage

    Integrated with CATL’s high-power LFP batteries

Battery Integrated

  • 189 kWh lithium-ion battery packs are actively cooled for enhanced performance and durability. Higher power output with less power input.
  • LFP batteries eliminate the risk of thermal runaway. Comprehensive lifecycle insulation monitoring ensures operational security.
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V2G and E2G Capabilities

  • Supports bidirectional power flow, enhancing grid stability and providing economic benefits.
  • Enables direct contribution of stored energy to the grid, boosting ROI for operators.
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All-in-one design

  • Designed with a small footprint and an integrated structure, the charger is easy to install even in space-constrained environments.
  • The modular design enables quick access to key components, simplifying routine maintenance and minimizing downtime. This approach significantly reduces operational labor costs and enhances overall system reliability.
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Better Economic Efficiency

  • Peak Shaving & Valley Filling with Energy Storage:Store electricity when grid prices are low and discharge during peak periods to optimize energy costs and improve economic returns.
  • PV Integration for Green Energy Utilization:Seamlessly integrates with solar PV systems to harness solar power, reducing reliance on the grid and maximizing the use of renewable energy.
  • Return on investment (ROI) can be achieved faster than expected, accelerating business progress and enhancing commercial viability.
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Liquid-Cooling System
  • Lower Noise for a Better charging Experience: Reduces operational noise, creating aquieter and more comfortable charging environment
  • Efficient Heat Dissipation for Stable High-Power Operation: Ensures thermal stabilityduring high-power charging, extending equipment lifespan and enhancing overall safety
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Application scenarios

  • Residential Area

    Residential Area

  • Dock

    Dock

  • Highway Rest Area

    Highway Rest Area

  • Office Building

    Office Building

  • Transit Hub

    Transit Hub

  • Shopping Mall

    Shopping Mall

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Basic Parameter

  • NEPOWER Series
  • Input Power Supply3W+N+PE
  • Rated Input Voltage400±10%V AC
  • Rated Input Power80kW
  • Rated Input Current150A
  • Rated AC Frequency50/60Hz
  • Max Output Charging PowerOne vehicle connected: 270kW maximum; Two vehicle connected: 135kW each maximum
  • Charging Voltage Range200V~1000V DC
  • Charging Current300A (400A for short-time)
  • Dimension (W*D*H)1580mm*1300mm*2000mm(Excluding cable puller)
  • Communication ProtocolОCPP
  • Energy Storage Capacity189kWh
  • Integrated Cabinet IP RatingIP55
  • Storage Ambient Temperature-30℃~60℃C
  • Working Ambient Temperature-25℃~50℃C
  • Cooling MethodLiquid-cooling
  • Safety & ComplianceCE & lEC expected to complete by 2025
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