Michael Andersen is a seasoned technology leader and founder with 12 years of experience building secure, infrastructure-heavy systems from embedded devices to cloud-native services. As CTO and co-founder of Antimatter and former CTO at PingThings and Hamilton IoT, he blends startup pragmatism with deep systems expertise to help security teams protect complex environments. His open-source work on projects like RIOT (IoT OS) and ceph-container shows hands-on proficiency in low-level hardware interfacing, networking (IPv6/NDP), and containerized storage orchestration. Based in the San Francisco Bay Area and pursuing a PhD in Computer Science at UC Berkeley, he pairs academic rigor with product-driven execution. Notably, he moves between microcontroller peripherals and distributed storage tooling with equal fluency, reflecting a rare full-stack systems comfort.
12 years of coding experience
3 years of employment as a software developer
Doctor of Philosophy - PhD, Computer Science, Doctor of Philosophy - PhD, Computer Science at University of California, Berkeley
BSc Hons, Computer Science, Physics, Electronics, BSc Hons, Computer Science, Physics, Electronics at Rhodes University
Contributions:14 commits, 25 PRs, 186 comments in 1 year 1 month
Contributions summary:Michael primarily contributes to low-level system code, focusing on hardware interactions and embedded systems. They modified flash scripts for the CC2538DK boards and adjusted code related to I2C and SPI peripherals for the SAMD21 microcontroller. Their work involves fixing issues related to the network layer, specifically IPv6 and NDP, as well as adding initial support for the MMA7660 accelerometer. The user's commits demonstrate strong knowledge of hardware interfacing and operating system internals within the context of an IoT platform.
Contributions:7 commits, 6 PRs, 36 comments in 2 months
Contributions summary:Michael primarily focused on modifying the entrypoint script for the ceph-container repository. Their contributions centered around improving the functionality of the OSD activation process, specifically addressing issues related to device naming, passing cluster information to ceph-disk, and refining PID checking. They also implemented bug fixes and style improvements, enhancing the container's stability and usability within the Ceph environment.
cephdockerfilecontainers
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