Silicon-Carbon Electrode Sheet SC02XX
Silicon-Carbon Electrode Sheet SC02XX
Silicon-Carbon Electrode Sheet SC02XX
Silicon-Carbon Electrode Sheet SC02XX
Silicon-Carbon Electrode Sheet SC02XX
Silicon-Carbon Electrode Sheet SC02XX

Silicon-Carbon Electrode Sheet SC02XX

$75.51
Model:
SC02XX
Brand:
Canrd
Classification:
CustomizedElectrode Sheets, Standard Graphite/Silicon-Carbon Electrode Rolls, Pilot Verification, All
item_No
Specifications
Price
No. SC02XX
5 Pcs / Rolled
$75.51

Details

This product must be tested according to Canrd recommended testing methods and electrolytes to achieve the desired performance.

Because testing methods and electrolytes significantly impact battery performance, changing the testing method or electrolyte may degrade electrode performance. Please verify this information before purchasing.

Electrode Sheet Technical Data Sheet (SC02XX - Si/C 420 Electrode)

Parameter Specification
Slurry Areal Density (mg/cm²) 7.25
Electrode Sheet Size 10 × 10 cm
Current Collector Thickness (μm) 9 (Carbon-coated Cu foil)
Active Material Ratio 95.00%
Compacted Density (g/cc) 1.10 (Not compacted; value needs self-calculation)
Active Material Si/C 1800 (5%) + Graphite (95%)
Recommended Electrolyte KLD-Si01
Electrode Name Si/C 420 Electrode
Electrode Code SC02XX
Specific Capacity (mAh/g) 420 (0.005–2.000 V)
Areal Capacity (mAh/cm²) 1.9
Coating Areal Density (mg/cm²) 4.80 (Tolerance ±2.0%)

Usage Recommendations

  1. If the electrode is not compacted, it should be compacted before punching and baking. (Reference minimum value above for compacted density.)

  2. Baking conditions: 85–105°C for 4 hours.
    If vacuum baking, replace the air twice.

  3. Active material mass should be weighed for each circular electrode individually for accurate calculation.


Compatible Full Cell Electrode Models (N/P Ratio ≈ 1.09)

SY13XX, SY25XX, SY33XX, LF06XX, LC02XX


Test Conditions

  • Ambient temperature: 25°C, rest for 4 h

  • Discharge: 0.10C / 0.09C / 0.08C / ... / 0.01C (constant current) to 0.005 V

  • Rest for 3 min

  • Charge: 0.1C (constant current) to 2.00 V

  • Rest for 3 min


Shelf Life

  • 6 months in vacuum-sealed storage

  • Use within 1 month after opening


Capacity Measurement Conditions

  • 25°C

  • 0.10 / 0.09 / 0.08 / 0.07 / 0.06 / 0.05 / 0.04 / 0.03 / 0.02 / 0.01 C DC discharge to 0.005 V

  • 0.1 C CC charge to 2.00 V

This product must be tested according to Canrd recommended testing methods and electrolytes to achieve the desired performance.

Because testing methods and electrolytes significantly impact battery performance, changing the testing method or electrolyte may degrade electrode performance. Please verify this information before purchasing.

Electrode Sheet Technical Data Sheet (SC02XX - Si/C 420 Electrode)

Parameter Specification
Slurry Areal Density (mg/cm²) 7.25
Electrode Sheet Size 10 × 10 cm
Current Collector Thickness (μm) 9 (Carbon-coated Cu foil)
Active Material Ratio 95.00%
Compacted Density (g/cc) 1.10 (Not compacted; value needs self-calculation)
Active Material Si/C 1800 (5%) + Graphite (95%)
Recommended Electrolyte KLD-Si01
Electrode Name Si/C 420 Electrode
Electrode Code SC02XX
Specific Capacity (mAh/g) 420 (0.005–2.000 V)
Areal Capacity (mAh/cm²) 1.9
Coating Areal Density (mg/cm²) 4.80 (Tolerance ±2.0%)

Usage Recommendations

  1. If the electrode is not compacted, it should be compacted before punching and baking. (Reference minimum value above for compacted density.)

  2. Baking conditions: 85–105°C for 4 hours.
    If vacuum baking, replace the air twice.

  3. Active material mass should be weighed for each circular electrode individually for accurate calculation.


Compatible Full Cell Electrode Models (N/P Ratio ≈ 1.09)

SY13XX, SY25XX, SY33XX, LF06XX, LC02XX


Test Conditions

  • Ambient temperature: 25°C, rest for 4 h

  • Discharge: 0.10C / 0.09C / 0.08C / ... / 0.01C (constant current) to 0.005 V

  • Rest for 3 min

  • Charge: 0.1C (constant current) to 2.00 V

  • Rest for 3 min


Shelf Life

  • 6 months in vacuum-sealed storage

  • Use within 1 month after opening


Capacity Measurement Conditions

  • 25°C

  • 0.10 / 0.09 / 0.08 / 0.07 / 0.06 / 0.05 / 0.04 / 0.03 / 0.02 / 0.01 C DC discharge to 0.005 V

  • 0.1 C CC charge to 2.00 V

This product must be tested according to Canrd recommended testing methods and electrolytes to achieve the desired performance.

Because testing methods and electrolytes significantly impact battery performance, changing the testing method or electrolyte may degrade electrode performance. Please verify this information before purchasing.

Electrode Sheet Technical Data Sheet (SC02XX - Si/C 420 Electrode)

Parameter Specification
Slurry Areal Density (mg/cm²) 7.25
Electrode Sheet Size 10 × 10 cm
Current Collector Thickness (μm) 9 (Carbon-coated Cu foil)
Active Material Ratio 95.00%
Compacted Density (g/cc) 1.10 (Not compacted; value needs self-calculation)
Active Material Si/C 1800 (5%) + Graphite (95%)
Recommended Electrolyte KLD-Si01
Electrode Name Si/C 420 Electrode
Electrode Code SC02XX
Specific Capacity (mAh/g) 420 (0.005–2.000 V)
Areal Capacity (mAh/cm²) 1.9
Coating Areal Density (mg/cm²) 4.80 (Tolerance ±2.0%)

Usage Recommendations

  1. If the electrode is not compacted, it should be compacted before punching and baking. (Reference minimum value above for compacted density.)

  2. Baking conditions: 85–105°C for 4 hours.
    If vacuum baking, replace the air twice.

  3. Active material mass should be weighed for each circular electrode individually for accurate calculation.


Compatible Full Cell Electrode Models (N/P Ratio ≈ 1.09)

SY13XX, SY25XX, SY33XX, LF06XX, LC02XX


Test Conditions

  • Ambient temperature: 25°C, rest for 4 h

  • Discharge: 0.10C / 0.09C / 0.08C / ... / 0.01C (constant current) to 0.005 V

  • Rest for 3 min

  • Charge: 0.1C (constant current) to 2.00 V

  • Rest for 3 min


Shelf Life

  • 6 months in vacuum-sealed storage

  • Use within 1 month after opening


Capacity Measurement Conditions

  • 25°C

  • 0.10 / 0.09 / 0.08 / 0.07 / 0.06 / 0.05 / 0.04 / 0.03 / 0.02 / 0.01 C DC discharge to 0.005 V

  • 0.1 C CC charge to 2.00 V