480 kW High-Power DC Fast Charger

480 kW High-Power DC Fast Charger

Product Profile

Short Description: A dedicated 480kW Ultra-Fast DC Charger SKU with dual charging guns, an adjustable DC 50-1000 V output range and OCPP 1.6 connectivity.

Product Description: Designed for high-throughput charging sites, this floor-standing charger combines high-power DC output with intelligent power distribution, network communication and thermal management for continuous operation.

Key Features:
- Dedicated 480kW SKU
- Dual charging guns
- Adjustable DC 50-1000 V output
- OCPP 1.6 support
- Ethernet/4G communication
- 7-inch touch display
- IP54 protection for indoor or outdoor use
- Automatic charging modes and multiple protection functions

Product Applications

High-throughput public charging stations Highway fast-charging sites Fleet depots Bus charging facilities Compatible heavy-duty and commercial EV charging projects
Request a Quote Reply within 1 business day

Technical Specifications

Power & Output

Parameter Value Unit Notes
Rated Power 480 kW Dedicated SKU
Number of Charging Guns Double guns
Single-Gun Maximum Output Current 300 A
Input Voltage AC 380 V ±20%
Input Frequency 50 Hz ±10% As stated in PDF
Output Voltage Range DC 50-1000 V Adjustable
Constant-Power Output Voltage Range DC 300-1000 V Optional
Output Voltage Error ≤±0.5 %
Output Current Error ≤±1 %
Voltage Regulation Accuracy ≤±0.5 %
Steady Current Accuracy ≤±1 %
Harmonic Content ≤±5 %
Power Factor ≥0.99
Efficiency ≥95 %
Electric Energy Metering Grade 1.0 meets GB standard
Insulation Resistance ≥100

Charging & Communication

Parameter Value Unit Notes
Charging Cable Length 5 m Standard; listed as optional
Display 7-inch touch display
Start Method Swipe IC card / scan QR code (APP, WeChat, etc.)
Charging Mode Automatic / by time / by power / by amount
Charging Method Full power charging / AB equalizing charging / wheel charging As stated in PDF
Communication Ethernet / 4G
Network Protocol OCPP 1.6

Protection, Environment & Mechanical

Parameter Value Unit Notes
Protection Functions Short circuit / overtemperature / overcurrent / leakage / input overvoltage and undervoltage
Protection Class IP54
Use Environment Indoor or outdoor
Cooling Method Air cooling
Operating Temperature -20 to +50 °C
Storage Temperature -40 to +70 °C
Relative Humidity 5-95 %
Altitude ≤2000 m
Noise ≤60 dB
Installation Method Floor installation
Dimensions (W×D×H) 800×650×2000 mm

Application Scenarios

Industrial Facilities

Power distribution for manufacturing plants, factories, and industrial complexes.

Commercial Buildings

Office buildings, shopping centers, and commercial complexes.

Infrastructure

Public utilities, transportation, and municipal power systems.

Renewable Energy

Solar farms, wind power installations, and energy storage systems.

Solutions

We are more than just an equipment manufacturer; we are dedicated to providing specialized end-to-end solutions for EPC contractors, industrial developers, and public infrastructure projects.

Custom Transformer Engineering

Delivering bespoke designs tailored to specific voltage requirements, extreme climate resilience (for African grids), and high-efficiency industrial upgrades (for the North American market).

Charging Infrastructure Solutions

Providing comprehensive turnkey solutions for charging station construction, deeply integrating highly reliable transformers with intelligent power distribution systems to empower the future of mobility.

Residential Energy Storage Solutions

Combining LiFePO4 batteries, single-phase solar inverters, and integrated backup systems for household solar self-consumption and resilient home power.

Industrial, Commercial, and Infrastructure Hubs

Providing robust power distribution architectures for manufacturing plants, mining operations, and modern urban infrastructure.

Validate the grid connection before charger selection

Build a site load model using vehicle arrivals, battery voltage, target dwell time, simultaneous charging and expansion. Review utility capacity, transformer rating, switchgear, protection, cable route, power factor, harmonics and demand-management strategy. A 480 kW charger should not be selected without a qualified site electrical study.

Review 480 kW output at the vehicle voltage

The product record lists 480 kW, two charging guns, DC 50–1000 V output and up to 300 A per gun. Confirm current at the required voltage, power-sharing or independent-allocation logic, simultaneous operation, cable limitations and derating. These details determine whether the configuration fits the actual vehicle mix.

Lock the connector configuration by market

Connector type is not established by the available evidence. Specify country, fleet, vehicle inlet, voltage window, cable arrangement and accessibility requirements. Request drawings, labeling and approval evidence for the exact connector configuration; do not infer CCS2, GB/T or CHAdeMO from the charger power.

Confirm protocol, firmware and CSMS

OCPP 1.6, Ethernet and 4G are listed for this model. The selected firmware, OCPP feature profile, CSMS compatibility, cybersecurity settings, networking and remote service workflow require project-specific confirmation. Listed protocol support is not the same as certification or proven interoperability.

Use performance values with test conditions

The record lists AC 380 V ±20% input, 50 Hz ±10%, power factor of at least 0.99 and efficiency of at least 95%. Reconfirm each value for the quoted model and request the test basis when it affects electrical design or acceptance. Do not extend these figures to other chargers or operating conditions.

Plan thermal, civil and operational details

The listed model includes air cooling, IP54, -20 to +50 °C operation, altitude up to 2000 m and 800 × 650 × 2000 mm dimensions. Verify heat rejection, ventilation, shelter, drainage, foundation, clearances, cable management, bollards, signage, noise and maintenance access for the site.

Define authentication and payment scope

The product data mentions IC card and QR/app initiation, but payment channels, tariff rules, user accounts, roaming, OTA, diagnostics and reporting depend on the selected backend and country. Treat these as integration requirements rather than default functions.

Prepare a 480 kW charging-site RFQ

Send vehicle data, traffic model, target power, utility supply, transformer and switchgear data, connector, gun allocation, OCPP/CSMS, payment, environment, civil plan, certification scope, service expectations, quantity and schedule. Final capability should be tied to the quoted model and evidence package.

Related product and project resources

Frequently Asked Questions

The product data lists up to 300 A per gun with two charging guns. Actual current, power allocation, simultaneous operation and derating must be confirmed at the required vehicle voltage.

That depends on utility capacity, diversified site demand, other loads, expansion and grid rules. A qualified electrical designer should coordinate the charger, transformer, switchgear, protection and cables.

No blanket guarantee should be made. OCPP 1.6 is listed, but firmware, supported profiles and CSMS interoperability require version-specific evidence and project testing.

The current evidence does not confirm the connector. State the destination market and vehicle interface and request the exact model-specific connector, cable and approval documentation.

Review temperature, altitude, rain, dust, corrosion, ventilation, drainage, foundation, clearances, cable management, service access and local approval requirements.

Project Support

Need help selecting a transformer, EV charging system, or residential energy storage solution?

Our engineering team can match the right configuration to your operating environment, charging demand, safety requirements, and household energy goals.