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CP Series Peltier Solid-State Thermoelectric Coolers |
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- 100% Lead Free - RoHS Compliant
- Low Cost, High Performance
- Designed for higher current, larger heat pumping applications
- The standard for consumer product and industrial cooling
- Ideal for instrumentation and consumer applications
- Excellent for applications from commercial to military.
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Mechanical Characteristics |
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| Wire Standards |
| Module Type |
Wire Gauge (AWG) |
| CP0.8-ALL |
26 |
| CP1.0-ALL |
24 |
| CP1.4-ALL |
18 |
| CP2-ALL |
18 |
For all CP Series modules, wire is stranded, 114 mm (4.5 in.) long and PVC insulated, except CP5.
‡ These modules have four leads and can be wired in series or parallel. The Specifications table indicates maximum values
for V and I when “Wired in Series/Wired in Parallel”. |
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Moisture Protection Options
(Click to view sealing methods for moisture protection.)
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| CP Series Specifications |
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TH=25°C |
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Dimensions (mm) |
| Catalog Number1 |
Datasheet |
Qmax2 (Watts) |
Imax (Amps) |
Vmax (Volts) |
DTmax (°C) |
N |
A |
B |
C |
D3 |
| CP08,31,06,L1,W4.5 |
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4.4 |
2.1 |
3.8 |
67 |
31 |
12 |
12 |
12 |
3.4 |
| CP10,31,08,L1,W4.5 |
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5.3 |
2.5 |
3.8 |
67 |
31 |
15 |
15 |
15 |
4.0 |
| CP10,31,05,L1,W4.5 |
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8.2 |
3.9 |
3.8 |
67 |
31 |
15 |
15 |
15 |
3.2 |
| CP14,31,10,L1,W4.5 |
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8.2 |
3.9 |
3.75 |
68 |
31 |
20 |
20 |
20 |
4.7 |
| CP08,63,06,L1,W4.5 |
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9.0 |
2.1 |
7.6 |
67 |
63 |
12 |
25 |
12 |
3.4 |
| CP10,63,06,L1,W4.5 |
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12.7 |
3.0 |
7.6 |
67 |
63 |
15 |
30 |
15 |
3.6 |
| CP10,71,06,L,W4.5 |
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14.4 |
3.0 |
8.6 |
67 |
71 |
23 |
23 |
23 |
3.6 |
| CP10,63,05,L1,W4.5 |
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16.6 |
3.9 |
7.6 |
67 |
63 |
15 |
30 |
15 |
3.2 |
| CP08,127,06,L1,W4.5 |
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18.1 |
2.1 |
15.4 |
67 |
127 |
25 |
25 |
25 |
3.4 |
| CP14,71,10,L1,W4.5 |
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18.7 |
3.9 |
8.6 |
68 |
71 |
30 |
30 |
30 |
4.7 |
| CP2,31,10,L1,W4.5 |
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18.8 |
9.0 |
3.8 |
68 |
31 |
30 |
30 |
30 |
5.6 |
| CP14,35,045,L1,W4.5 |
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19.0 |
8.5 |
4.2 |
65 |
35 |
15 |
30 |
15 |
3.3 |
| CP085,127,06,L1,W4.5 |
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20.2 |
2.7 |
15.3 |
66 |
127 |
30 |
30 |
30 |
3.6 |
| CP10,127,08,L1,W4.5 |
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21.4 |
2.5 |
15.4 |
67 |
127 |
30 |
30 |
30 |
4.0 |
| CP10,127,06,L1,W4.5 |
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25.7 |
3.0 |
15.4 |
67 |
127 |
30 |
30 |
30 |
3.6 |
| CP14,71,06,L1,W.45 |
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28.7 |
6.0 |
8.6 |
67 |
71 |
30 |
30 |
30 |
3.8 |
| CP2,31,06,L1,W4.5 |
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29.3 |
14.0 |
3.8 |
67 |
31 |
30 |
30 |
30 |
4.6 |
| CP10,127,05,L1,W4.5 |
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33.4 |
3.9 |
15.4 |
67 |
127 |
30 |
30 |
30 |
3.2 |
| CP14,127,10,L1,W4.5 |
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33.4 |
3.9 |
15.4 |
68 |
127 |
40 |
40 |
40 |
4.7 |
| CP14,71,045,L1,W4.5 |
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38.5 |
8.5 |
8.6 |
65 |
71 |
30 |
30 |
30 |
3.3 |
| CP14,127,06,L1,W4.5 |
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51.4 |
6.0 |
15.4 |
67 |
127 |
40 |
40 |
40 |
3.8 |
| CP10,254,06,L1,W4.5 |
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51.4 |
3.0/6.0 |
30.8/15.4 |
67 |
254 |
60 |
30 |
30 |
3.6 |
| CP12,161,06,L1,W4.5 |
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52.2 |
4.8 |
18.3 |
67 |
161 |
40 |
40 |
40 |
3.6 |
| CP2,71,06,L1,W4.5 |
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67 |
14 |
8.6 |
68 |
71 |
44 |
44 |
44 |
4.6 |
| CP12,161,04,L1,W.45 |
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69.3 |
6.4 |
18.3 |
67 |
161 |
40 |
40 |
40 |
3.3 |
| CP14,127,045,L1,W4.5 |
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72.0 |
8.5 |
15.4 |
65 |
127 |
40 |
40 |
40 |
3.3 |
| CP2,127,10,L1,W4.5 |
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77.1 |
9.0 |
15.4 |
68 |
127 |
62 |
62 |
62 |
5.6 |
| CP2.127,06,L1,W4.5 |
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120.0 |
14.0 |
15.4 |
67 |
127 |
62 |
62 |
62 |
4.6 |
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| 1 Please specify the surface finish
by adding one of the following codes to the end of the catalog number: |
| M/M |
Metallized Hot and/or Cold face |
| L/L |
Non-Metallized Hot and/or Cold face |
| T/T |
Pre-tinning Hot and/or Cold face with 118°C InSn Solder |
| T93/T93 |
Pre-tinning Hot and/or Cold face with 93°C InSnCd Solder |
| 2 Conditions for Qmax: DT = 0°, I = Imax, V = Vmax, and TH = 25°C. |
| 3 Thickness is for Type L only. |
| * These modules have four leads and can be wired
in series or parallel. The specifications table indicates
maximum values for V and I when "Wired in Series" / "Wired in Parallel". |
Note: Maxium Operating Temperature for CP Series Module is 80° C.
Definitions
| Imax |
Input current resulting in greatest DT (DTmax) [Amps] |
| Qmax |
Maximum amount of heat that can be absorbed at cold face (occurs at I=Imax, DT = 0°C) [Watts] |
| TH |
Temperature of the TEC hot face during operation [°C] |
| DTmax |
Maximum temperature difference a TEC can achieve (occurs at I=Imax, Qc = 0) [°C] |
| Vmax |
Voltage at DT (DTmax) [Volts] |
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