Peltier Thermoelectric Modules Miniature types
The Miniature TEM series is suitable for various cooling and heating applications where only a small amount of heat is involved. Typical application areas include laser diode cooling, infrared systems, electro-optics and electronic equipment and other low wattage applications. Standard substrates are metallized (M) and gold-plated. These TEMs are also available with different configurations.

| Bezeichnung / Ref. | Imax (A) |
Umax (V) |
Qcmax (W) |
Δtmax (°C) |
Tmax (°C) |
W Dim (mm) |
L1 Dim (mm) |
L2 Dim (mm) |
H Dim (mm) |
Sealing |
|---|---|---|---|---|---|---|---|---|---|---|
| UEPT-1RE-011-011E120 | 1,1 | 1,4 | 0,9 | 71 | 120 | 9 | 4 | - | 3,24 | variable |
| UEPT-108-031-011E120 | 1,1 | 3,8 | 2,6 | 71 | 120 | 8 | 8 | - | 3,25 | variable |
| UEPT-1RE-065-012C200M | 1,2 | 8,9 | 5,8 | 70 | 170 | 12,1 | 11,2 | - | 2,65 | variable |
| UEPT-108-031-012C200M | 1,2 | 4,3 | 2,8 | 70 | 170 | 7,98 | 7,98 | - | 2,14 | variable |
| UEPT-1RE-018-012C200M | 1,2 | 2,5 | 1,6 | 70 | 170 | 6,05 | 6,2 | 7,19 | 2,14 | variable |
| UEPT-106-018-012C200M | 1,2 | 2,5 | 1,6 | 70 | 170 | 6,05 | 6,05 | 7,62 | 2,59 | variable |
| UEPT-106-017-012C200M | 1,2 | 2,3 | 1,5 | 70 | 170 | 6,05 | 6,05 | - | 2,65 | variable |
| UEPT-104-007-012C200M | 1,2 | 0,96 | 0,63 | 70 | 170 | 4,01 | 4,01 | - | 2,39 | variable |
| UEPT-1RE-011-017E200 | 1,7 | 1,4 | 1,4 | 71 | 200 | 4 | 9 | - | 2,75 | variable |
| UEPT-1RE-065-018C200M | 1,8 | 8,9 | 8,7 | 70 | 170 | 12,1 | 11,2 | - | 2,34 | variable |
| UEPT-1RE-035-018C200M | 1,8 | 4,8 | 4,7 | 70 | 170 | 6,05 | 12,2 | - | 1,64 | variable |
| UEPT-108-031-018C200M | 1,8 | 4,3 | 4,1 | 70 | 170 | 7,98 | 7,98 | - | 1,83 | variable |
| UEPT-1RE-029-018C200M | 1,8 | 4 | 3,9 | 70 | 170 | 6,05 | 10,2 | - | 1,83 | variable |
| UEPT-1RE-023-018C200M | 1,8 | 3,2 | 3,1 | 70 | 170 | 6,05 | 8,18 | - | 1,83 | variable |
| UEPT-1RE-018-018C200M | 1,8 | 2,5 | 2,4 | 70 | 170 | 6,05 | 6,2 | 7,19 | 1,64 | variable |
| UEPT-106-018-018C200M | 1,8 | 2,5 | 2,4 | 70 | 170 | 6,05 | 6,05 | 7,62 | 2,34 | variable |
| UEPT-106-017-018C200M | 1,8 | 2,3 | 2,3 | 70 | 170 | 6,05 | 6,05 | - | 2,34 | variable |
| UEPT-104-007-018C200M | 1,8 | 0,96 | 0,94 | 70 | 170 | 4,01 | 4,01 | - | 2,09 | variable |
| UEPT-1RE-029-018C200M | 1,8 | 4 | 3,9 | 70 | 170 | 6,05 | 10,2 | - | 1,64 | variable |
| UEPT-112-017-019E120 | 1,9 | 2,1 | - | 71 | 120 | - | - | - | - | variable |
| UEPT-1RE-035-020C200M | 2 | 4,8 | 5,2 | 70 | 170 | 6,05 | 12,2 | - | 1,64 | variable |
| UEPT-1RE-029-020C200M | 2 | 4 | 4,3 | 70 | 170 | 6,05 | 10,2 | - | 1,64 | variable |
| UEPT-1RE-023-020C200M | 2 | 3,2 | 3,4 | 70 | 170 | 6,05 | 8,18 | - | 1,64 | variable |
| UEPT-1RE-065-021E120 | 2,1 | 8 | 10,1 | 71 | 120 | 12 | 13 | - | 2,55 | variable |
| UEPT-108-007-023E120 | 2,3 | 0,9 | 1,3 | 71 | 120 | 8 | 8 | - | 4,3 | variable |
| UEPT-112-017-023E120 | 2,3 | 2,1 | 3,1 | 71 | 120 | 11,5 | 11,5 | - | 4,3 | variable |
| UEPT-112-017-023E080 | 2,3 | 2,1 | 3,1 | 71 | 80 | 11,5 | 11,5 | - | 4,3 | variable |
| UEPT-1RE-035-025C200M | 2,5 | 4,8 | 6,5 | 70 | 170 | 6,05 | 12,2 | - | 1,64 | variable |
| UEPT-112-017-036E120 | 3,6 | 2,1 | 4,6 | 71 | 120 | 11,5 | 11,5 | - | 3,6 | variable |
| UEPT-110-007-037E120 | 3,7 | 0,9 | 2,1 | 71 | 120 | 10 | 10 | - | 4,8 | variable |
| UEPT-108-017-066E200 | 6,6 | 2,1 | 8,4 | 71 | 200 | 8 | 8 | - | 2,45 | variable |
Miniature Modules for industrial use:
| Bezeichnung / Ref. | Imax (A) |
Umax (V) |
Qcmax (W) |
Δtmax (°C) |
Tmax (°C) |
W Dim (mm) |
L1 Dim (mm) |
L2 Dim (mm) |
H Dim (mm) |
Sealing |
|---|---|---|---|---|---|---|---|---|---|---|
| UEPT-110-007-030M125S | 3 | 0,85 | 1,6 | 66 | 125 | 10 | 10 | - | 5,4 | Silicone |
| UEPT-110-007-050M125S | 5 | 0,85 | 2,8 | 66 | 125 | 10 | 10 | - | 4 | Silicone |
| UEPT-110-007-080M125S | 8 | 0,85 | 4,4 | 66 | 125 | 10 | 10 | - | 3,5 | Silicone |
| UEPT-110-007-150M125S | 15 | 0,85 | 8,1 | 66 | 125 | 10 | 10 | - | 3 | Silicone |
| UEPT-1RE-015-050M125S | 5 | 1,8 | 6,1 | 66 | 125 | 10 | 20 | - | 4 | Silicone |

Type 2 (T2) TEMs feature a "porch" for more accurate heat distribution.
This makes the L2 dimensions slightly longer than the L1 dimension.
| Imax: | Maximum input current in amperes at Qc=0 and ΔTmax |
| Vmax: | Maximum DC input voltage in volts at Qc=0 and ΔTmax |
| ΔTmax: | Maximum temperature differential in °C at Qc=0 and Imax |
| Qcmax: | Maximum heat pumping capacity in watts at Imax and ΔT=0 |
| T hot: | Temperature of TEM hot side during operation |
