Blogs, Case Studies, and White Papers

  1. Through its Smart Cells, Dukosi is demonstrating on-cell DCIR and EIS advanced measurement capabilities, enabling richer diagnostics that can feed into more accurate State of Charge (SoC), State of Available Power (SoP) and State of Health (SoH) estimation.

  2. Cell manufacturing typically uses end of line testing as a pass/fail validation, but technologies such as smart cells enable a shift toward more effective in-line quality control. By integrating an intelligent IC onto each cell during manufacturing, every cell becomes a self-monitoring device that can be repeatedly and easily interrogated for data throughout the production process.

  3. Some of the world’s largest cell manufacturers and automotive OEMs are developing larger-format (4680-class) cylindrical cells that could transform the EV industry by improving energy density, power output, thermal management, mechanical robustness, and cost competitiveness.

  4. Training the largest, most advanced AI models creates massive and unpredictable demands on power systems. Battery Energy Storage Systems (BESS)  is therefore an essential component in AI Data Center design, and DKCMS® can maximize operational performance, reliability, safety, deployment speed, and much more.

  5. Electrification is transforming indsutries worldwide ahead of NZE2050. However, uneven global battery regulations create both challenges and opportunities, but technologies already exist to get ahead, improving traceability, extending battery life, and enabling more efficient material recovery.

  6. Dukosi recently collaborated with STMicroelectronics on a turnkey end-to-end secure Battery Passport-ready battery management solution. The design utilizes the Dukosi chip-on-cell technology with C-SynQ® proprietary communications with ST’s MCU and Secure Element.

  7. Dukosi DK-NFLNK™ Demonstrator

    Content type: Blog post

    Dukosi DK-NFLNK™ is a highly reliable battery communication solution designed to upgrade modular battery architectures based on multi-channel AFEs to a safer and more scalable architecture.

  8. The battery landscape is highly diverse, shaped by applications across global automotive, industrial, and consumer markets. Each electrified application has distinct requirements for design, performance, safety, regulatory compliance, reliability, and supply chains.

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