CORNEX Unveils First Batch of 688Ah Ultra-Large Capacity Battery Cells from Production Line!

Recently, the first batch of new-generation 688Ah lifepo4 dedicated batteries jointly developed by CORNEX and CRRC Zhuzhou rolled off the assembly line smoothly. This cooperation not only demonstrates the deep accumulation of both parties in the field of lifepo4 technology but also gives strong new impetus to the industry's high-quality development and promotes the lifepo4 battery field to enter a new stage of the "Double Six" era comprehensively.

cornex 688Ah Ultra-Large Capacity Battery Cells

In the "double-six" era, the capacity of a single battery cell exceeds 600Ah and the system integrated energy exceeds 6MWh. The CORNEX 688Ah energy storage battery cell is a brand-new product specially developed to meet the market demand in the "double six" era. While the capacity is "upward", it has achieved multiple advantages such as energy density, intrinsic safety, energy efficiency, cost control, etc., creating a new level of battery cell performance in all dimensions.

High density

The 688Ah Lifepo4 battery cell innovatively adopts the pole piece and boss design on the same side, compressing the ineffective space to the extreme and releasing large energy in a small space. It uses high-density, high-gram capacity, high-energy-efficiency lithium iron phosphate material, optimizes the lamination process, and effectively increases the energy density of the battery cell. The mass-energy density is nearly 200Wh/kg, and the volume energy density exceeds 430Wh/L, an increase of 8% compared to the previous generation product.

High security

The 688Ah lifepo4 battery cell uses a high-safety, high-wetness electrolyte and a double-sided ceramic separator, which reduces side reactions and significantly improves thermal stability and wettability. The automated, digital, and intelligent production line has more than 50 CCD online monitoring items in a single line and more than 3,000 monitoring points to ensure process safety. It implements a testing process that is higher than national standards and has successfully passed stringent tests such as acupuncture and thermal runaway, protecting the bottom line of safety throughout the process.

From design and manufacturing to testing and verification, the intrinsic safety of the battery cells is built layer by layer to ensure the safe and stable operation of the 688Ah lifepo4 dedicated battery cells at ultra-large capacity.

High rate of return

A single 688Ah lifepo4 battery cell has 2.2 kilowatt-hours of electricity, a cycle life of 10,000 times, a calendar life of more than 20 years, and an energy conversion efficiency of 95%. It can be flexibly used in industrial and commercial lifepo4, large storage and other fields. A 20-foot container equipped with this battery cell can achieve a jump in system energy from 5MWh to 6.9MWh, reducing the floor space of a unit of the same size by 20%, effectively reducing the owner's investment and life-cycle electricity costs, and significantly increasing the power station's return on investment. Provide strong support for large-scale, low-cost lifepo4 applications.

CORNEX actively embraces industrial changes, continuously breaks through the boundaries of battery cell performance, and is committed to providing customers with more extreme lifepo4 solutions. In 2024, CORNEX simultaneously developed a number of large-capacity batteries and achieved breakthroughs in multiple key technologies such as safety, cost, recycling, and energy efficiency. As a joint work of CORNEX and CRRC Zhuzhou Institute, the 688Ah lifepo4 battery cell has excellent performance, is safe and reliable, and will help accelerate the implementation of the 6.9MWh system and contribute more to global energy transformation and sustainable development.


Tags:
Recent posts

How Many Volts Is a Car Battery: Battery Type and Battery Voltage Test

REPT BATTERO Unveils Innovative PowtrixTM Energy Storage System at KEY-The Energy Transition Expo 2025

How Long Does It Take to Charge a Tesla? Understanding Tesla Charging Times and Charging Methods

How Long do Hybrid Batteries Last and How to Extend the Battery's Durability?

LiFePO4 Batteries and Artificial Intelligence (AI): The Fusion of Future Technologies

CALB Breaks Ground on Zero-Carbon AI Gigafactory in Portugal, Set for 2027 Completion

LiFePO4 Batteries (LFP): The Best Choice for Improving Electric Vehicle Performance and Safety

LiFePO4 Battery Cell:Prismatic vs Pouch vs Cylindrical Lithium Ion Battery Cell

EVE Energy Discusses Large-Scale Battery Solutions at the 10th Energy Storage Summit in London

What Batteries Do Tractors Us and How do I Choose a Battery for My Tractor?

What Elements Are Used in Batteries? A Complete Guide to Battery Components

BAK Battery Launches PRO-M 18650 21700 Groundbreaking New Product: High-Safety Cylindrical Lithium Battery

Explore Deep Cycle LiFePO4 Battery Application Scenarios: RV, Marine, EV

EVE Energy Launches Distributed 5MWh Mr.Giant-628Ah Mr.Big Cell Energy Storage Solution at World Smart Energy Week Japan 2025

Charging LiFePO4 Batteries with Solar: A Complete Guide to Efficient and Safe Charging