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As a premier manufacturer and direct supplier of heavy-duty energy solutions, we present this high-capacity portable power station engineered for rigorous commercial applications.
Delivers a massive 3600Wh base capacity, seamlessly expandable up to an unprecedented 57.6kWh to support large-scale operational demands.
Features robust 6000W or 3600W pure sinewave AC output, capable of driving high-draw industrial equipment without fluctuation.
Equipped with multi-mode rapid energy replenishment, including EV station compatibility and advanced MPPT solar integration.
Built for extreme durability with industrial-grade lifecycles, ensuring uninterrupted power for enterprise deployments and off-grid projects.
The PEP-SD6000 (6000W) and F3600 (3600W) are high-performance portable energy storage systems, featuring 3600Wh core capacity (expandable to 57.6kwh) and pure sinewave AC output. Equipped with multi-type input ports (solar/AC/Car/EV) and rich output interfaces (USB-A/USB-C/DC/Anderson), they support Wi-Fi/Bluetooth connectivity and 6-layer safety protection. With -10℃~45℃ operating temperature range and >3500/-6000 cycles, these systems deliver reliable power for outdoor camping, home backup, and industrial use, meeting diverse high-power energy needs.
Product Advantage |
PEP-SD6000 offers 6000W total AC output (3x20A+1x30A), while F3600 provides 3600W (expandable to 7200W with two units), easily powering high-power devices like air conditioners and power tools. Both support up to 15 additional lithium battery packs, expanding total capacity to 57.6kwh, perfectly adapting to long-term energy storage needs for home backup and industrial temporary power supply.
Both models support diverse charging methods: solar (MPPT, max 2400W), AC (PEP-SD6000: 2200W fast/1200W slow; F3600: 2300W AC/3400W EV), and car charging. F3600’s EV input enables ultra-fast charging, while PEP-SD6000’s dual AC charging options balance speed and flexibility. Solar charging supports 12-150V wide voltage, compatible with most solar panels for off-grid use.
Equipped with multiple output ports: USB-A (12W/18W/28W), USB-C (100W Max), car charger (12V), DC5521, and Anderson output. They power smartphones, laptops, electric vehicles, and industrial equipment simultaneously. Pure sinewave output (100-240V, 50/60Hz) ensures stable power for sensitive electronics, with no damage to precision devices.
Built-in Wi-Fi (2412-2462MHz) and Bluetooth (2402-2480MHz) modules enable remote control and real-time monitoring via mobile apps. Users check battery level, charging/discharging status, and temperature anytime. The 6-layer safety management system (overvoltage/overload/short circuit, etc.) ensures safe operation in extreme environments, with optimal working temperature at 20℃~30℃.
F3600 boasts >6000 cycles to 80% capacity, while PEP-SD6000 offers >3500 cycles, far exceeding ordinary energy storage systems. Both weigh 44.45kg (98LBS) with dimensions 590×350×441mm, featuring a rugged structure for outdoor and industrial use. They operate in -10℃~45℃ discharging temperature and 0℃~45℃ charging temperature, adapting to complex climates.
Technical Parameters |
Technical Index | PEP-SD6000 | F3600 |
Model | PEP-SD6000 | F3600 |
Capacity | 75Ah 48V 3600Wh | 3600Wh 38-53V 95-70Ah |
Input Ports | Fast charging: 2200W; Slow charging: 1200WSolar Charger: 12-150V 25A Max, 2400W MaxCar Charger: 12V/24V 8A Max, 192W Max | PV/Car DC input: 12-60V 25A, 1500W (150V Max 2400W, MPPT supported)AC Input: 2300W Max, 230V 10A MaxEV Input: 3400W Max, 230V 16A Max |
Output Ports | USB-A(x1):12W; USB-A Fast Charging(x3):18W; USB-C(x1):100W | USB-A(x2):12W; USB-A Fast Charging(x2):28W; USB-C(x2):100W |
DC Output | Car Charger:12V=10A 120W; DC5521(x2):12V=3A 36W; Anderson:12.6V=30A 378W | Car Charger:12V 10A; Anderson:12V/24V 30A Max |
AC Output | Pure sinewave, 6000W total, 3x20A+1x30A, 100-240V~(50/60Hz) | Pure sinewave, 3600W (2 units total 7200W), 6x16A, 100-240V(50/60Hz) |
Lifecycles | >3500 cycles to 80%+ capacity | >6000 cycles to 80% original capacity |
Wireless Function | Wi-Fi + Bluetooth (specified frequency & power) | Wi-Fi + Bluetooth (specified frequency & power) |
Temperature Range | Optimal:20℃~30℃; Discharging:-10℃~45℃; Charging:0℃~45℃; Storage:-10℃~45℃ | Same as PEP-SD6000 |
Safety Protection | Over Voltage/Overload/Over Temperature/Short Circuit/Low Temperature/Low Voltage/Overcurrent Protection | Same as PEP-SD6000 |
Weight | 44.45Kg (98LBS) | 44.45Kg (98LBS) |
Dimensions | 590*350*441mm (23.2×13.8×17.5 inch) | 590*350*441mm (23.2×13.8×17.5 inch) |
Expandable Capacity | Up to 57.6kwh (15 additional battery packs) | Up to 57.6kwh (15 additional battery packs) |
Product Uses |
These high-power portable energy storage systems provide reliable backup power for homes during blackouts. PEP-SD6000’s 6000W output powers air conditioners, refrigerators, and lighting, while F3600 (expandable to 7200W) meets large-family needs. They charge via AC or solar, ensuring continuous power for days, ideal for areas with unstable grid supply.
For camping, RV travel, and outdoor events, the systems power tents, cooking equipment, and electronic devices. Rich output ports charge multiple devices simultaneously, and solar charging supports off-grid use. Their durable design withstands outdoor harsh conditions, with -10℃ low-temperature operation suitable for winter camping.
PEP-SD6000’s 6000W and F3600’s expandable 7200W output power construction tools, communication equipment, and temporary lighting. Anderson output supports high-current devices, and multi-mode charging adapts to construction site conditions. Long cycle life and safety protection ensure stable use in industrial scenarios, reducing reliance on generators.
Matching with solar panels, the systems store solar energy for off-grid homes, farms, and remote areas. MPPT solar charging maximizes energy conversion, and expandable capacity meets long-term energy needs. They operate in diverse temperatures, with remote monitoring enabling intelligent energy management, realizing green and cost-effective power supply.
Product Operate Guide |
Place the system on a flat, ventilated surface, avoid flammable materials. Connect input sources (solar/AC/Car/EV) as needed, ensuring correct voltage matching. Select appropriate output ports for devices, avoiding overload. Use the mobile app to monitor status via Wi-Fi/Bluetooth. Charge within 0℃~45℃ and discharge within -10℃~45℃. Regularly check connections and clean the system to maintain heat dissipation and safety.
FAQ |
The F3600 model is specifically designed to support dual-unit parallel connection, effectively doubling the output to a massive 7200W to handle extreme industrial loads. However, the PEP-SD6000 operates as a standalone powerhouse. While both models share compatibility with the same expandable battery packs, they cannot be mixed in a parallel configuration. Expansion must be done using identical models.
When connected to a solar array capable of delivering the maximum 2400W input, the system can achieve a full charge in approximately 1.5 to 2 hours under optimal sunlight conditions. The integrated MPPT (Maximum Power Point Tracking) controller actively optimizes the voltage and current from the solar panels, ensuring the highest possible conversion efficiency even as light intensity fluctuates throughout the day.
The F3600 features an exceptional rating of over 6000 cycles to 80% capacity, which translates to roughly 8 to 10 years of heavy, daily use (assuming 300-500 cycles per year). The PEP-SD6000 offers over 3500 cycles, equating to 5 to 7 years of rigorous service. This extended lifespan significantly reduces the frequency of equipment replacement, offering an outstanding return on investment for enterprise-level procurement.
Absolutely. Both systems utilize advanced inverters to produce pure sinewave AC output (100-240V) with a highly stable frequency. This ensures that the electrical waveform perfectly mimics or exceeds the quality of a standard municipal power grid, allowing you to safely power delicate precision instruments, IT infrastructure, and medical devices without any risk of damage from harmonic distortion or voltage spikes.
The system is engineered with robust environmental adaptability, featuring an operational discharging temperature range of -10℃ to 45℃. The intelligent Battery Management System regulates internal thermal conditions, ensuring stable power delivery even during winter outdoor operations or in unheated remote facilities. For charging, the system requires an ambient temperature between 0℃ and 45℃ to protect the chemical integrity of the lithium cells.