arXiv · 2004.03068
Large-scalable fabrication of improved Bi-Te-based flexible thermoelectric modules using a semiconductor manufacturing process
Abstract
Among the several flexible thermoelectric modules in existence, sintered Bi-Te-based modules represent a viable option because of their high output power density and flexibility, which enables the use of arbitrary heat sources. We have fabricated Bi-Te-based modules with a large-scalable fabrication process and improved their output performance. The reduction in the interconnection resistance, using thick electrodes of the flexible printed circuit, significantly improves the module's output power to 87 mW/cm$^{2}$ at $ΔT$ = 70 K, which is 1.3-fold higher than a previous prototype module. Furthermore, the establishment of the fabrication for the top electrodes by using the surface mount technology makes it possible to realize a high-throughput manufacturing of the module. Our durability tests reveal that there is no significant change in the internal resistance of the module during 10000 cycles of mechanical bending test and 1000 cycles of thermal stress test.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Kenjiro Okawa, Yasutaka Amagai, Hiroyuki Fujiki, Nobu-Hisa Kaneko, Nobuo Tsuchimine, Hiroshi Kaneko, Yuzo Tasaki, Keiichi Ohata, Michio Okajima, Shutaro Nambu. 2020-04-07. Large-scalable fabrication of improved Bi-Te-based flexible thermoelectric modules using a semiconductor manufacturing process. https://doi.org/10.35848/1347-4065%2Fab809d
Cite the original work for its findings. Save a collection to share your selection of sources.