$ cat jobs/senior-hardware-engineer-nanofabrication-and-mems-developmen-flagship-pioneering-inc-feac1e5659a5.json
Senior Hardware Engineer, Nanofabrication and MEMS Development
About Tilde (FL110) Tilde Bio, Inc. (FL110) is building a next-generation biological sensing platform at the intersection of synthetic biology, protein engineering, nanopore biophysics, electrophysiology, signal processing, and machine learning. Our goal is to create programmable biological measurement systems capable of extracting rich molecular information from single-molecule interactions. We believe nanopores generate a high-dimensional measurement of molecular identity and behavior that remains largely untapped. Unlocking that information requires new computational approaches — ones that don't yet exist — built by people who are comfortable working at the edge of what's known. At Tilde, you will work alongside scientists and engineers from diverse disciplines to help define how a new generation of biological sensing systems extract meaning from the physical world. Tilde is backed by Flagship Pioneering, which brings the long-term vision and resources needed to build platforms that don't fit neatly into existing categories. Position Summary We are seeking a highly skilled and innovative Senior Nanofabrication Engineer to drive the development of MEMS-based sensor architectures and micro/nanoscale structures that are core to our next-generation proteomics platform. This individual will play a critical role in designing, fabricating, and optimizing micro- and nanoscale devices, translating novel concepts into robust, manufacturable processes. The ideal candidate has deep hands-on experience in MEMS fabrication, cleanroom process development, and microfabrication techniques including lithography, etching, deposition, and thin-film processing. Because our sensors operate at the interface of silicon and biology, experience integrating microfabricated devices with fluidic, chemical, or biological systems is highly valued. This role requires close collaboration with electrical, mechanical, materials, and bioengineering teams to ensure seamless integration of MEMS senso