About the job
Join Our Team at Etched
Etched is pioneering the world's first AI inference system specifically designed for transformers, achieving over 10x higher performance with significantly reduced costs and latency compared to traditional solutions. Our cutting-edge ASICs allow for the creation of previously unattainable products, such as real-time video generation and advanced reasoning agents. Backed by substantial investments and a team of elite engineers, we are revolutionizing the infrastructure for one of the fastest-growing industries globally.
Position Overview
We are on the lookout for a skilled Mechanical Engineer to join our innovative team. In this role, you will play a crucial part in transforming complex design concepts into dependable, high-performance data center products. You will engage in all stages of product development, from ideation to production, and collaborate effectively with both internal teams and external partners, including Joint Design Manufacturers (JDMs). Your expertise in mechanical design for data center chassis and high-power systems will be vital in ensuring our products adhere to stringent performance, reliability, and manufacturability standards.
Key Responsibilities
- Design and optimize mechanical systems for high-power data center products to ensure durability and reliability, managing the transition from concept to production-ready designs.
- Collaborate with internal design teams and external partners to ensure the seamless integration of mechanical designs into overall product architecture.
- Lead the design process for data center chassis and enclosures, focusing on performance, cooling efficiency, and durability.
- Oversee the development of tooling for mass production, ensuring compliance with quality and consistency standards.
- Ensure mechanical designs meet manufacturing requirements, including shock and vibration standards, to ensure product resilience in demanding environments.
- Translate industrial design concepts into practical, manufacturable solutions, effectively converting models into production-ready designs.
- Implement Design for Manufacturing (DFM) principles to enhance cost-effectiveness in manufacturing, assembly, and maintenance processes.
