The nominal thickness of the electrode for this model is 215um, double sided composite electrode with a width of 250mm, A067 series.
This model electrode is a high voltage dry electrode with stabilized electrolyte and advanced highly conductive materials to ensure excellent performance in high voltage environments. It can efficiently convert and store electrical energy to minimize energy loss, and has low internal resistance and good cycling stability.
Electrode sheet model | TY-215D-250-A067 |
Electrode sheet type | double-sided |
Electrode sheet thickness | 215±5 μm |
Compaction density of the electrode sheet | ≥0.64g/cm3 |
Moisture content of the electrode sheet | ≤3% |
Total width of the electrode sheet | 250±1mm |
Width of the coated part of the electrode sheet and its tolerance | 224±2.0mm |
Width of the single-sided blank area | 13mm±1 |
Thickness of the foil and its tolerance | 20±2um |
Reference for capacitance performance in capacitors | 2700F/㎡ |
Meet the environmental protection requirements such as RoHS |
1. High compatibility and strong adaptability
The electrode materials can be adjusted to various operating conditions and are compatible with a variety of electrolytes and devices. They boost the system's application scope and compatibility while bolstering its competitiveness in the market.
2. Small Footprint and Compact Structure
Because of their compact design, the dry electrodes take up less space. They are appropriate for application scenarios that call for high power and little volume, and they can successfully increase the equipment's energy density.
3. Low Risk and High Safety
Due to the absence of hazardous solvents and high temperatures, dry electrodes are safer and significantly lower the likelihood of malfunctions during operation.
The TY-215D-250-A067 dry electrode, with its unique material composition and elaborate preparation process, demonstrates outstanding adaptability and precisely targets the application field of high-voltage 3000F supercapacitor cells. The supercapacitor cells it is paired with play a crucial role in the power systems of modern trams. They can quickly and stably release or store electrical energy under working conditions such as frequent vehicle start-stop and acceleration while climbing slopes, ensuring the efficient and smooth operation of the vehicles. Meanwhile, in distributed energy storage projects, relying on the characteristic advantages endowed by the TY-215D-250-A067 dry electrode, these cells can effectively buffer and store the volatile new energy power, such as wind and solar power generation, contributing to the optimized utilization and allocation of energy.
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