Wholesale Price Solavita High Voltage 5kwh 8kwh 11kwh 17kwh 20kwh Ess LiFePO4 Lithium Battery Solar System for Home Use

Customization: Available
Weight: 50kg
Warranty: 5years

Product Description

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Basic Information

Model NO.:DHDJ-5000
Cycle Life:6000 Times
Nominal Capacity:5kwh-60kwh
Material:LiFePO4
Battery Cell:Grade a+
BMS:Yes
Voltage:51.2V
Capacity:5120wh
Cell Capacity:100ah
Transport Package:Cartoon Box
Specification:602*532*215mm
HS Code:8507600090
Production Capacity:500 Sets/Month

Product Description

Battery Module Stacking Design

Design a smart Battery Management System (BMS) to monitor the voltage, temperature, and current of the battery pack in real-time, ensuring safe and stable operation. Use a modular design to allow users to flexibly adjust battery capacity based on household energy needs.

High Voltage LiFePO4 Lithium Battery Solar System
Modular ESS Design

All-in-One Design

Optimize the integration of the inverter, battery, and BMS to improve space utilization and aesthetics. Employ a compact inverter and efficient cooling solutions to ensure stable operation under high loads. The streamlined exterior design will hide wiring and offer various color and material options to suit different home styles.

Communication Interface

Consider using CAN bus or RS485 to enhance anti-interference capabilities, suitable for complex electromagnetic environments. Design interfaces that support multiple communication protocols or allow software upgrades to accommodate new standards.

Communication Interface Details
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Product Parameters

Battery model Voltage Energy Capacity Size Current Material
DHDJ-5000*1 51.2V 100Ah 5.12kWh 602*532*215mm 100A LiFePO4
DHDJ-5000*2 51.2V 200Ah 10.24kWh 602*532*430mm 100A LiFePO4
DHDJ-5000*3 51.2V 300Ah 15.36kWh 602*532*645mm 100A LiFePO4

Certifications

ISO 9001 CE UN38.3 MSDS

Certification Documents 1
Certification Documents 2
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Packaging & Shipping

Safe transport certificate for land and sea transport:

Our battery products are packaged using specialized, customs-approved hazardous packaging boxes to ensure compliance with international dangerous goods transportation standards. We hold safety transportation certification for both land and sea transport, proving that our packaging and transportation methods meet relevant laws and regulations. This includes the requirements of the United Nations' "Manual of Tests and Criteria" Part III, Section 38.3. Our "Hazardous Packaging Certificate" ensures compliance with the declaration of dangerous goods to maritime and port authorities.

Packaging Compliance

Installation Instructions

Our battery installation process is user-friendly, allowing individuals to manage easily without professional electrician backgrounds:

  1. Unboxing Preparation: Open the packaging and remove the battery units.
  2. Stacking Batteries: Follow guidance to stack the battery units together simply.
  3. Parallel Connection: Connect the battery units in parallel for stable power output.
  4. Communication Cable Connection: Connect the cable to the battery management system for monitoring.
  5. Connecting to Power: Integrate the battery pack into PV, mains electricity, and output supply systems.
Installation Steps Diagram
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Industry Expertise

Founded in 2017, we are a professional battery energy storage system (BESS) provider. We integrate expertise in electrochemistry, power electronics, and system integration to provide reliable global energy storage solutions.

With over 20 agents, 30+ partners, and a joint research lab with a leading university, our facility spans over 10,000 square meters. We are committed to green development and sustainable future solutions through unremitting efforts in new energy.

Production Facility
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Frequently Asked Questions

When the system starts operation for the first time, are there any technical or mechanical adjustments needed?
The system is set at the factory; no manual adjustment is required as the system automatically adapts.
What maintenance is required during operation? Do we need to change components?
Parameters are preset during production. You can monitor the system via the LCD screen or use a WIFI module to connect to the APP. No manual component changes are typically required.
How can I calculate the solar system requirements for a consumption of 4000 kWh per year?
4000kWh/year ÷ 365 days ≈ 10.9kWh/day. Based on this daily consumption, you can determine the required number of solar panels and batteries.
What are the primary business areas covered?
We focus on solar energy systems and components, including advanced inverters and Lithium batteries.
What is the after-sales policy?
Within the shelf life, products with manufacturing issues are replaced free of charge. Outside the shelf life, we offer replacement at a 20% discount on the original price.
How long is the price guarantee valid?
The price guarantee is valid for 15 days.

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