Characteristics
1. Service out-put(load characteristics) |
| Continuous discharge, E.P.V:2.0V, Temp.:20¡¾2¡ÆC |
| Load |
| 5.6kW |
50kW |
| 3400hours |
1300days |
|
 |
| 2. Service out-put(Temperature characteristics) |
| 5.6kWcontinuous discharge, E.P.V.:2.0V |
| Temperature |
| -20¡ÆC |
20¡ÆC |
60¡ÆC |
| 2040hours |
3400hours |
3160hours |
|
 |
| 3. Storage characteristics at high temperature(60¡ÆC, ordinary humidity) |
| Item |
Storage periods |
| Initial |
after 40 days |
after 80 days |
| Off-load-voltage (V) |
3.20 |
3.29 |
3.30 |
| Internal resistance (W) |
4.3 |
6.2 |
6.9 |
| Leakage (pcs) |
- |
0 |
0 |
Service Out-put at 15kW Continuous discharge (hours) E.P.V.:2.5V |
3400 |
3260 |
3230 |
| Test temp.:20¡¾2¡ÆC, Average of 10 batteries | |
 |
| 4. Short circuit characteristics |
| (1) Temperature of battery surface | 
| (2) Change of off-load voltage after short circuit | 
| (3) Shape, Dimension, Appearance |
| No change is recognized for 80minutes. (temp.:20¡¾2¡ÆC) | |
 |
| 5. Over-discharge characteristics |
| Test method |
Test result |
| The discharge is further continued for 20days at 5.6kW load after the voltage has become less than the end-point voltage(2.0V) |
Appearance:No change |
|
 |
| 6. Charge characteristics |
| Charge current |
Charging time |
Test result |
| 2.25mA |
24hours |
Appearance:No change |
|
 |
| 7. Heat shock test |
| Range of temperature:-10~+60¡ÆC, Time:each for 1 hour |
| Item |
Initial |
After 100 cycles |
| Off-load-voltage (V) |
3.20 |
3.27 |
| Internal resistance (W) |
4.3 |
5.9 |
| Leakage (pcs.) |
- |
0 |
Measuring temp.:20¡¾2¡ÆC, Average of 10 batteries Measurement of internal resistance is done by 1kHz alternating current. Leakage proof is done by visual check. | |
 |
| 8. Vibration test |
Amplitude:1.5mm, Frequency:10~55Hz, Time:X,Y,Z direction, each for 90 minutes |
| Item |
Initial |
After 100 cycles |
| Off-load-voltage (V) |
3.20 |
3.20 |
| Internal resistance (W) |
4.2 |
4.3 |
| Leakage (pcs.) |
- |
0 |
Average of 10 batteries Measurement of internal resistance is done by 1kHz alternating current. | |