Product Overview
As energy storage systems (ESS) evolve toward higher capacity and tighter integration, thermal management becomes a decisive factor in system safety, performance stability, and lifecycle economics. The 104S ESS cooling plate is purpose-built to address the heat dissipation demands of 314Ah high-voltage battery packs, aligning with the 104-series (~400V) architecture widely adopted in containerized ESS. This standardization facilitates seamless grid integration while ensuring thermal uniformity across increasingly dense battery configurations.
Technical Specifications:
| Performance |
parameter |
unit |
| Alloy |
3003mod |
/ |
| Cells |
280/314 |
ah |
| Temperature difference |
3~5 |
℃ |
| Flow resistance |
15 |
Kpa |
| Charge and discharge rate |
0.5 |
c |
| Application |
Energy storage battery pack |
|
Key features:
- Optimized coolant flow channel design
- High thermal conductivity aluminum material
- Uniform temperature distribution
- Reliable brazing technology
- High pressure resistance
Our cooling plates are designed to effectively remove heat generated by battery modules and maintain optimal operating temperatures.
Why Choose Us
- Large production capacity - ensures stable supply
- Complete process - fully controllable throughout, fast delivery
- High professionalism - rich experience, high project success rate
- Excellent single-process performance - cost-effective, high quality
- Can be optimized with standard models - low development cost, fast delivery
FAQ
Q1:Is this enclosure suitable for 1P52S Module energy storage systems only?
A1:Yes, this is custom-made for the 1P52 module. Of course, the hole positions, crossbeams, brackets, and dimensions can all be adjusted.
Q2:What else can we offer?
A2:The box body and related products such as top cover ,end plate and pipelines are available.
Q3:MOQ
A3In fact, there is no (MOQ). Customized samples can also be provided.
Q4:What technical capabilities do we have?
A4:Full-process customized design,Cross-component design collaboration,Desin optimization & simulation
Q5:General delivery time
A5:The sample stage: 40 -45 days.Mass production stage: 35 days