Thermoelectric modules and systems

We develop thermoelectric modules and systems for the conversion of waste heat into electricity (in the kilowatt range) and energy harvesting (in the milliwatt range) as well as Peltier modules for cooling and temperature control. In doing so, we can draw on over 20 years of experience – in material and module development, measurement technology, simulation processes and system construction.


Modules for waste heat recovery

Depending on the application, the thermoelectric modules differ in size, construction and design. We produce customized modules for efficient waste heat recovery and develop suitable assembly and connection technology.


Generator systems for waste heat conversion

Thermoelectric generators are robust, low-noise and low-maintenance, which makes them suitable for use in industrial and combustion plants.


Peltier modules

We produce Peltier modules in small batches on a partially automated module construction line. Aside from module production, we also develop, build and characterize Peltier-based systems for specific applications.

Publikationen »Thermoelectric modules and systems«

Publication Type
2016 Nanostructure, thermoelectric properties, and transport theory of V2VI3 and V2VI3/IV-VI based superlattices and nanomaterials
Dankwort, Torben; Hansen, Anna-Lena; Winkler, Markus; Schürmann, Ulrich; König, Jan D.; Johnson, David C.; Hinsche, Nicki; Zahn, Peter; Mertig, Ingrid; Bensch, Wolfgang; Kienle, Lorenz
Journal Article
2015 Fabrication and comprehensive structural and transport property characterization of nanoalloyed nanostructured V2VI3 thin film materials
Winkler, Markus; Dankwort, Torben; Schürmann, Ulrich; Liu, Xi; König, Jan D.; Kienle, Lorenz; Bensch, Wolfgang; Böttner, Harald; Bartholome, Kilian
Aufsatz in Buch
Book Article
2015 Thermoelectric modules based on silicides - development and characterization
Tarantik, Karina; König, Jan D.; Jägle, Martin; Heuer, Jana; Horzella, Jan; Mahlke, Andreas; Vergez, Marc; Bartholome, Kilian
Journal Article
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