Geely’s SiEngine Launches Groundbreaking 2,048 Tops Adas Chip Production
Mass Production Milestone
Geely’s subsidiary, SiEngine, has officially commenced mass production of its cutting-edge 7-nm ADAS chips, significantly enhancing the company’s position in the automotive semiconductor landscape. As of December 26, 2025, the production of the StarLight series, which includes the powerful AD1000 and entry-level AD800 chips, marks a pivotal step towards L2 to L4 autonomous driving capabilities.
Technical Specifications that Impress
The flagship AD1000 SoC boasts a peak computing power of 512 TOPS, and when utilized in conjunction with up to three additional chips, it achieves a staggering 2,048 TOPS total output. This level of performance is not only crucial for advanced driver-assistance systems (ADAS) but also sets a new benchmark in the industry.
- Memory Bandwidth: 204 GB/s
- Safety Standards: Complies with EVITA safety protocols
- Architecture: Multi-core 7-nm design with hardware security for cryptographic functions
Competitive Edge in the Market
SiEngine’s AD1000 chip leads the pack in terms of performance, rivaling only Xpeng’s 2,250 TOPS Turing chip. In contrast, competitors like Xiaomi’s 700 TOPS Nvidia Orin and Tesla’s 720 TOPS AI 4 fall short in comparison, underscoring SiEngine’s advancements in ADAS technology. This production not only addresses the domestic semiconductor shortage but enhances China’s technological independence in the automotive sector, as highlighted by Just Auto.
Strategic Implications for Geely
This development aligns seamlessly with Geely’s broader strategy to integrate AI and autonomous driving technologies across its vehicle lineup, including the Geely Galaxy and Lynk & Co models. By 2025, Geely aims to achieve Level 4 autonomy through its Smart Geely 2025 initiative, which is bolstered by partnerships with industry leaders such as Mobileye.
Looking Ahead
As SiEngine continues to ramp up production, it not only fortifies Geely’s market position but also sets the foundation for future innovations in autonomous driving technology. The implications for the automotive industry are profound, as the move towards self-sufficiency in semiconductor production could reshape competitive dynamics globally.
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