Key Findings
Same Sky has expanded its SPG family of thermoelectric generator modules with new configurations, achieving up to 27.3W of electrical output. These modules excel at directly converting thermal energy into electrical energy, providing an optimal solution for recovering waste heat generated in various industrial processes. This expansion is expected to enhance power recovery efficiency from existing heat sources, significantly contributing to improved energy efficiency across industrial sectors.
Technical Details
SPG thermoelectric generator modules utilize the Seebeck effect to directly convert temperature differences into electricity. The new configurations achieve an output of up to 27.3W through optimized heat flux management and advanced material selection, complementing Same Sky’s existing product lineup and catering to a broader range of power needs. These modules are designed for continuous hot-side operation up to 300°C, ensuring stable performance even in harsh industrial environments. They combine a robust design with high conversion efficiency, enabling the construction of reliable waste heat recovery systems.
Background and Industry Context
Driven by rising energy costs and the imperative of climate change mitigation, improving energy efficiency in the industrial sector is a pressing challenge. Many industrial processes release vast amounts of heat into the atmosphere as waste, representing significant energy loss and environmental burden. Thermoelectric power generation technology is gaining attention as a clean energy conversion solution that can effectively reuse this waste heat. Products like Same Sky’s SPG modules play a crucial role in this waste heat recovery market by contributing to efficient energy utilization and enhanced sustainability.
Strategic Significance and Outlook
The evolution of Same Sky’s SPG thermoelectric generator modules indicates that technologies for converting industrial waste heat into electricity are transitioning towards more practical and large-scale applications. Accelerated adoption is anticipated in industries that emit significant amounts of waste heat, such as steel manufacturing, glass production, cement factories, and chemical plants. This will directly contribute to reducing corporate operational costs, increasing energy self-sufficiency, and lowering carbon dioxide emissions. Furthermore, these modules can also serve as power sources for IoT sensors and wireless communication devices, potentially contributing to the realization of smart factories. Same Sky is committed to advancing sustainable societies through continuous technological innovation.
Source: https://www.electronicsforu.com/news/thermoelectric-modules-harvest-waste-heat
Get our weekly technology intelligence — free
Receive an infographic that lets you judge at a glance whether each field’s analysis report is worth reading.
Subscribe Free — Weekly Tech Intelligence
By subscribing, you’ll receive Troy-Technical’s weekly technology intelligence newsletter.
- Your email and selected fields are used only to deliver the newsletter.
- We never share your information with third parties.
- You can unsubscribe anytime via the link in each email.
See our Privacy Policy for details.
Takes about a minute · Unsubscribe anytime

Comments