Details
| Canrd | 10*10cm | 5 sheets/pack | Coating | ||||
| NO. | Electrode Name | Model | Main Material | Active Material Capacity (mAh/g) | Loading | Areal Density (mg/cm²) | Areal Capacity (mAh/cm²) |
| 1 | NCA Electrode | SY51 | NCA-S (Nickel Cobalt Aluminum Oxide) | 195 | 94.50% | 17.66 | 3.25 |
| 2 | Ni90 Electrode | SY41 | Ni90 Single Crystal NCM | 195 | 94.50% | 9.50 | 1.75 |
| 3 | NCM811 Electrode | SY33 | NCM811 Single Crystal | 188 | 94.50% | 9.20 | 1.63 |
| 4 | NCM811 Electrode | SY34 | — | 188 | 94.50% | 21.50 | 3.82 |
| 5 | NCM622 Electrode | SY25 | NCM622 Single Crystal-B | 168 | 96.70% | 10.00 | 1.62 |
| 6 | NCM622 Electrode | SY24 | — | 168 | 96.70% | 21.60 | 3.51 |
| 7 | NCM523 Electrode | SY15 | NCM523 | 165 | 94.00% | 19.70 | 3.06 |
| 8 | NCM523 Electrode | SY13 | NCM523 | 165 | 94.00% | 10.50 | 1.63 |
| 9 | LCO Electrode | LC02 | High Voltage Lithium Cobalt Oxide-Z-4.45V | 178 | 96.40% | 10.00 | 1.72 |
| 10 | LRM Electrode | FL01 | Lithium-rich Manganese-based-E | 280 | 95.00% | 5.96 | 1.59 |
| 11 | Graphite Electrode | SM02 | Natural Graphite (Standard)-A | 340 | 95.70% | 5.80 | 1.89 |
| 12 | Fast Charging Graphite Electrode | SM04 | Fast Charging Graphite-B | 350 | 96.70% | 5.60 | 1.90 |
| 13 | Silicon Carbon Electrode | SC02 | Silicon Carbon Anode 1800 (Porous Carbon Deposited Silicon) | 420 | 95.00% | 4.80 | 1.92 |
| 14 | NFM Electrode | NT02 | Sodium Nickel Iron Manganese Oxide | 127 | 95.50% | 12.27 | 1.49 |
| 15 | NFM Electrode | NT03 | — | 127 | 95.50% | 8.00 | 0.97 |
| 16 | Hard Carbon Electrode | YT02 | Imported Hard Carbon (5 μm) | 300 | 95.50% | 6.00 | 1.72 |
| 17 | LFP Electrode | LF07 | Lithium Iron Phosphate (High Compaction Density) |
150 | 91.50% | 12.30 | 1.69 |
| 18 | LNMO Electrode | NM01 | High Voltage Lithium Nickel Manganese Oxide-B | 130 | 96.00% | 7.50 | 2.00 |
| 19 | NFPP Electrode | NF01 | Sodium Iron Phosphate Pyrophosphate | 100 | 93.50% | 15.30 | 1.43 |
| 20 | Vanadium Pentoxide Electrode | VO02 | Vanadium Pentoxide | 300 | 80.00% | 5.00 | 1.20 |
| 21 | Manganese Dioxide Electrode | MO01 | Manganese-based or Vanadium-based Material | 100 | 80.00% | 5.00 | / |
| 22 | Zinc Negative Electrode | ZA01 | Pure Zinc Powder / Alloy Zinc Powder | / | 70.0%–96.0% | 5.0–15.0 | / |
MOQ for Custom Small Electrode Sheets: 10*10cm/pcs,5cs/pack,1pack
To place an order or request a quotation, please Contact Us.



Specifications:
| Item | Specification / Description |
|---|---|
| Electrode Sheet Name | NCA Electrode Sheet |
| Electrode Sheet No. | SY5101 |
| Active Material | Nickel-Cobalt-Aluminum (NCA-S) |
| Electrode Sheet Size (cm) | 10 × 10 |
| Active Material Content / Loading | 94.5% |
| Active Material Specific Capacity (mAh/g) | 180 (3.00–4.30 V) |
| Coating Areal Density (mg/cm²) | 17.66 (Tolerance: ±2.0%) |
| Areal Capacity (mAh/cm²) | 3 |
| Current Collector Thickness (μm) | 12 |
| Current Collector Areal Density (mg/cm²) | 3.30 |
| Compacted Density (g/cc) | 3.35 |
| Recommended Electrolyte | KLD-1230C |
| Compatible Full-Cell Electrode Model (N/P Ratio) | / |
| Shelf Life | 6 months when stored in vacuum-sealed packaging; use within 1 month after opening. |
| Test Conditions | 25 °C, 0.1C/0.1C, 3.00–4.30 V |
| Test Procedure | 25 °C, rest for 4 h; 0.1C CC charge to 4.30 V, 4.30 V CV charge to 0.02C, rest for 3 min; 0.1C CC discharge to 3.00 V, rest for 3 min. |
| Usage Recommendations |
1. If the electrode sheet has not been calendered, it generally needs to be calendered before electrode punching and baking. The minimum value listed under “Compacted Density” in this table may be used as a reference for the target compacted density. 2. Baking conditions: 85–105 °C for 4 h. If vacuum baking is used, perform two gas-exchange cycles during the process. 3. The active material mass shall be determined based on the actual measured weight of each punched electrode disc. |
Product Description, Recommendations
1, vacuum storage or glove box with self-sealing bag 2 layer packaging, especially high nickel, sodium cathode materials, improper storage will lead to increased battery internal resistance
2. the pole piece is not rolled, and the pole piece needs to be rolled according to the recommended compaction density
3. The surface density of the coating shall be determined according to the actual weighing results. The surface density of the coating does not include the current collector.
4. actually weigh and calculate the mass of active substance (mg)= (tablet weight mg-current collector surface density mg/cm2 * tablet area cm2)* proportion of active substance
5. theoretical amount of active substance (mg)= coating surface density mg/cm2 * active substance ratio * wafer area cm2
6. theoretical surface capacity mAh/cm2 = coating surface density mg/cm2 * active substance ratio * g capacity mAh/g ÷ 1000
7. when calculating the gram capacity, it is calculated according to the amount of active substance actually weighed. due to the tolerance of coating surface density, the actual weighing shall prevail
8. creases: single-sided pole pieces are easy to roll after rolling, and flat packing may cause creases
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