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A leading company focused on innovative therapy solutions is seeking a Principal System Algorithms & Controls Engineer. This role involves designing complex control systems and software solutions for medical devices that deliver nitric oxide therapy, requiring a Master's degree and significant experience in embedded systems and control algorithms. Join a fast-paced startup making a significant impact in respiratory care.
1 day ago Be among the first 25 applicants
Third Pole is on a mission to expand the lifesaving benefits of Nitric Oxide inhalation therapy, making it accessible to millions of respiratory challenged newborns and adults around the world. This is a rare opportunity to be part of a rapidly growing team, making a huge social impact, touching the lives of those we love and care about most.
We are a fast-paced startup developing a game-changing technology that generates Nitric Oxide on demand, at the patient location, from the air we breathe. Our Third Pole community is grounded in the values of collaboration, embracing diverse ideas, commitment, and transparency without the politics found in most companies. Our motto is we are only successful if we all cross the finish line together! Sound like you?
The Principal System Algorithms & Controls Engineerleads and provides expertise in the development, characterization and testing of control software and hardware in medical devices. They develop complex hardware and systems that include high-voltage and pneumatic controls, motor control, sensors and pump drivers, plasma generation, optimize hardware and system performance, and troubleshoot hardware and system issues. They develop software/firmware algorithms that optimize the therapy delivery, gas flow delivery control, Nitric oxide generation, and pneumatic control for overall hardware and system operation. They formulate rational, data-driven decisions while designing software algorithms and complex electromechanical systems that meet medical product requirements. Develop and validate test methods that ensure compliance with requirements.
Responsibilities:
·Architect electro-mechanicalsubsystems and pneumatic for Nitric oxide generation, gas delivery control, and safety control.
·Understand analog and digital circuits for a complex system that generates nitric oxide gas, controls gas delivery, includes high voltage generation, current sensors, pneumatic control, environmental sensors, and gas delivery mechanisms
·Generates and implements software/firmware algorithms in C language including PID control loops for embedded software control and monitoring of complex systems, therapy delivery control, Nitric Oxide generation, and pneumatics
·Utilizes technical expertise to contribute to the development of system architectures for respiratory devices. Uses modeling, hardware-in-the-loop simulation and actual devices to develop, debug and test complex systems to meet required performance
·Develops and models complex cross-functional systems
·Performs advanced risk analyses using FMEA and fault tree methods. Works with other engineering disciplines to develop, implement, and verify system solutions
·Evaluates product performance on an on-going basis and initiates and evaluates required changes to the design to improve and optimize performance
·Interfaces with internal and external clinicians, physicians and thought leaders to create innovative products and features
·Ensures adherence to company quality system, product specifications, industry standards, and quality and regulatory procedures and requirements
·Maintains accurate documentation of concepts, designs, drawings, and processes through lab notebooks or other methods
Requirements:
·Master’s degree in electrical or computer engineering or related specialization, and 10+ years of related experience
·Demonstrated experience designing, implementing, tuning and analyzing high accuracy, multi-sensor control circuits and systems, including high-performance PID feedback and open-loop controls
·Experience implementing software/firmware control algorithms in C language on embedded, real-time systems
·Experience with ventilators and/or respiratory applications
·Experience with digital and analog electrical circuits
·Proven ability to engage effectively in risk analysis including FMEA
·Demonstrated strength in judgment, decision making, and critical thinking
·Excellent written and verbal communication
·Demonstrated strength in building relationships at all levels of an organization
Preferred Experience:
·PhD. in Electrical or computer engineering or related specialization
·Experience in software-based electromechanical medical device development
·Experience with statistical process control
·Experience with pneumatic systems and related components, particularly flow controllers
·Experience with Python, Jupyter, and data acquisition systems
·Experience performing design of experiments
·Well-versed in medical product R&D and clinical/regulatory process
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