CP08-127-06-MM-EP W4.5

The CP08-127-06-MM-EP W4.5 is a high-performance and highly reliable standard Thermoelectric Cooler. Assembled with Bismuth Telluride semiconductor material and thermally conductive Aluminum Oxide ceramics. It has a maximum Qc of 17.5 Watts when ΔT = 0 and a maximum ΔT of 70.5 °C at Qc = 0.


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CP08-127-06-L1-EP-W4.5

The CP08-127-06-L1-EP-W4.5 is a high-performance and highly reliable standard Thermoelectric Cooler. Assembled with Bismuth Telluride semiconductor material and thermally conductive Aluminum Oxide ceramics. It has a maximum Qc of 17.5 Watts when ΔT = 0 and a maximum ΔT of 70.5 °C at Qc = 0


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SH14-125-045-L1-EP-W4.5

The SH14-125-045-L1-EP-W4.5 is an annular-style thermoelectric cooler. The hot and cold side ceramics have a circular hole in the center to accommodate light protrusion for optics, mechanical fastening or temperature probe. It has a maximum Qc of 70.3 Watts when ΔT = 0 and a maximum ΔT of 70.5 °C at Qc = 0.


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SH14-125-045-L1-RT-W4.5

The SH14-125-045-L1-RT-W4.5 is an annular-style thermoelectric cooler. The hot and cold side ceramics have a circular hole in the center to accommodate light protrusion for optics, mechanical fastening or temperature probe. It has a maximum Qc of 70.3 Watts when ΔT = 0 and a maximum ΔT of 70.5 °C at Qc = 0.


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SH14-125-06-L-RT-W4.5

The SH14-125-06-L-RT-W4.5 is an annular-style thermoelectric cooler. The hot and cold side ceramics have a circular hole in the center to accommodate light protrusion for optics, mechanical fastening or temperature probe. It has a maximum Qc of 48.5 Watts when ΔT = 0 and a maximum ΔT of 70.5 °C at Qc = 0.


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SH10-95-06-L-RT-W12

The SH10-95-06-L-RT-W12 is an annular-style thermoelectric cooler. The hot and cold side ceramics have a circular hole in the center to accommodate light protrusion for optics, mechanical fastening or temperature probe. It has a maximum Qc of 19.1 Watts when ΔT = 0 and a maximum ΔT of 70.5 °C at Qc = 0.


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SH10-95-06-L-EP-W4.5

The SH10-95-06-L-EP-W4.5 is an annular-style thermoelectric cooler. The hot and cold side ceramics have a circular hole in the center to accommodate light protrusion for optics, mechanical fastening or temperature probe. It has a maximum Qc of 19.1 Watts when ΔT = 0 and a maximum ΔT of 70.5 °C at Qc = 0.


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Custom Thermoelectric Cooler Assemblies for Sample Storage Compartments

Accurate and precise temperature control is important for cell growth in sample storage compartments. Using compact thermoelectric cooler assemblies instead of compressor-based thermal management solutions provide a more efficient and cost-effective option. In addition, new government restrictions of traditional and natural refrigerants central to compressor-based systems make thermoelectrics a more advantageous solution for temperature stabilization in incubators.