Shape the control-system architecture and requirements for a Gen-1 DNA-origami electrostatic actuator to ensure observability and controllability from the start. Advise on sensor/actuator design, data logging for system ID/ML, and closed-loop architecture as a fractional consultant.
364k – 468k/yr
Hybrid7+ YOEEmbedded Engineering
About the role
Responsibilities
Define the control-system requirements and constraints for the DNA Origami actuator–sensor system — sensor bandwidth, noise floor, and latency; actuator drive-signal range and dynamics; and end-to-end observability — and feed them into the device-physics and DNA-origami design decisions early.
Review the field-effect (FET) position-sensor and electrostatic drive-stack designs through a controls lens, flagging choices that would make the system hard to stabilize, identify, or estimate.
Specify what the early ensemble and single-molecule experiments must log (sampling, excitation, metadata) so the data is usable for later system identification and ML modeling of the device response.
Sketch the closed-loop control architecture and a simulation/estimation plan (feedback stabilization, averaging, observers) that the incoming full-time Controls engineer will implement.
Provide a clean, documented handoff to the team.
Qualifications and Experience
PhD or MS (or equivalent industry depth) in controls, robotics, electrical engineering, or a related field, with hands-on closed-loop control-system design.
Track record translating plant and sensor characteristics into design constraints, ideally for noisy, nanoscale, or precision-instrumentation systems.
Strength in system identification and estimation (Kalman filters / observers) and in specifying data capture for later modeling.
Comfort advising a physics and wet-lab team fractionally, with occasional on-site collaboration in Emeryville.
Skills
control systems designsystem identificationkalman filtersobserversclosed-loop controlsensorsactuatorsfet position sensorselectrostatic actuatorsdata loggingml modelingRoboticselectrical engineering
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