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NiCd 175 Ah Battery - Rail NiCd Batteries - Serrmi.jpg

Ni-Cd 175

Length: 

Width

Height:

Terminal:

Cells Per Unit:

Voltage Per Unit:

Capacity:

Weight:

Terminal:

Max Discharging Current:

Design Life:

Max Charging Current:

Reference Capacity:

Float Charging Voltage:

Cycle Use Voltage:

Operating Temperature Ranges:

Normal Operating Temperature Ranges:

Self Discharge:

 

Container Material:

108± 2mm (4.25 in)
164± 2mm (6.4 in)
394± 2mm (15.5 in)

M8 - 20~ 25 N*m

1

1.2

175Ah@5hr-rate to 1 V per cell @20°C

Approx. 10.4 Kg (Tolerance ± 3%) or 22.15 lbs.

2x(M10)

175A

20 Year (floating charge)

17.5A

C1 - 65.0 Ah

C3 - 124.2 Ah

C5 - 159.0 Ah

C10 - 167.0 Ah

1.40V-1.42V @20°C

Temperature Compensation: -3mV/°C/Cell

1.42V-1.44V @20°C

Temperature Compensation: -4mV/°C/Cell

Discharge: -30°C~50°C

Charge: -30°C~50°C

Storage: 10°C~30°C

20°C+5°C

This decrease is quite rapid during the first two weeks and then stabilizes at about 2% per month at + 20 °C. In general the self-discharge of a Ni-Cd battery is affected by various temperatures. The open circuit loss is reduced at low temperatures; that is, the self-discharge is significantly increased at higher temperatures.

Polypropylene

Constant Current Discharge Characteristics: A(20ºC)

FV/Time
10MIN
30MIN
1HR
2HR
3HR
4HR
5HR
8HR
10HR
1V
173
153
116
69
49.3
39.9
35
22.01
17.68
1.05V
143
128
102
66.6
48.3
39
34.2
21.5
17.27
1.10V
113
103
86
61.2
46.4
37.8
33.4
21.1
17
1.15V
86
75
65
50
41.4
34.6
31.8
20.5
16.7

Discharge Characteristics Curve

1.jpeg

Charge Characteristics Curve

for Cycle Use (IU)

2.jpeg

Cycle Life In Relation to Depth of Discharge

3.jpeg

Relationship Between Charging Voltage and Temperature

4.jpeg

Temperature Effects on Capacity​

5.jpeg

Storage Characteristics

6.jpeg

Effect of Temperature on Long Term Life

7.jpeg

Relationship of OCV and State

of Charge (20ºC)

8.jpeg

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