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Myo Palate is a stem cell manufacturing company building platforms for next-generation cell-based products. We seek an Electrical and Controls Engineer to own architecture, boards, firmware, control loops, and data layers for custom bioprocessing equipment.
You will work from schematic through commissioning with minimal reference designs, collaborating with scientists to define system requirements. The role focuses on real closed-loop control, power electronics sharing a chassis, and
Job Posting for Electrical and Controls EngineerIntake: RollingSalary: $80,000 to $100,000 CAD (adjusted based on experience and qualifications)Benefits: Extensive benefits plan that covers health and dental care and paid vacation daysTerm: In-person; full-timeSchedule: Weekday, occasional weekends as needed
About Myo PalateMyo Palate is a stem cell manufacturing company building the platforms that will produce the next generation of cell based products. Our work spans cultivated meat, real animal protein produced directly from cells, and iPSC based cell therapy platforms with applications in cancer and heart disease. The manufacturing challenges across these programs are shared: scalable, controlled, high quality cell production. Solving them in one domain accelerates all of them.
We're a team of scientists and engineers leveraging modern biotechnology to make meat more sustainable, humane, and accessible, while building the foundation for the next generation of cellular therapies.
About the PositionWe are hiring an Electrical and Controls Engineer who will own the electrical, embedded, and control systems workflow for custom bioprocessing equipment and devices. You will take hardware from electrical architecture and board design through firmware, control implementation, integration, commissioning, and the operator facing layer, and deliver systems that run reliably in daily use.
This is not a support role. You own the architecture, the boards, the firmware, the control loops, the panel, the interface, and the data layer. You will work closely with the lead scientist to define system requirements, but the methodology, the implementation, and the quality of the result are yours. There is no existing reference design to copy and no application note for what we are building.
Control here means real closed loop process control against sensor feedback, not sequencing actuators. It also means designing for the practical reality of precision instrumentation and power electronics sharing a chassis. If mixed signal design, control implementation, and grounding strategy are things you actually enjoy, this role will be interesting to you.
The equipment is in R&D and pilot use today, with a defined path toward a commercial product and, later, regulated manufacturing. Maturing early stage control hardware toward a production platform is part of the job, and we expect you to make that selection on technical grounds.The pace is fast, the problems are hard, and the work demands focus and persistence. We are building something that has never been built before and we are looking for people who find that energizing, not exhausting.
About YouBuilder first. You would rather have a board on the bench than a specification in a folderComfortable owning a system end to end and being the person accountable for whether it worksA systematic debugger who isolates root cause rather than swapping parts until the symptom movesFluent across the stack: analog, digital, firmware, control, and all the wiring in betweenDocuments as you go, because someone else will eventually have to service, extend, and manufacture what you buildEnergized rather than blocked by problems that have no datasheet, no forum thread, and no prior artClear communicator who can explain electrical constraints to scientists and process engineers in terms they can act on
QualificationsRequiredBachelor's degree in Electrical Engineering, Mechatronics Engineering, Robotics Engineering, Control and Automation Engineering, or a related field3 or more years of hands-on engineering experience, or a demonstrated equivalent portfolio of independent build workHas personally taken at least one instrument or automation system from schematic through working, field debugged hardwareEmbedded systems and firmware development in C/C++ and Python across microcontrollers and Linux single board computers, including an understanding of real time constraints and when a control loop must be moved off a non deterministic operating systemClosed loop control: PID implementation and tuning, sensor feedback, and handling of coupled multivariable loopsMotor and drive control: servo, BLDC, or VFD drives with encoder feedback, plus stepper motors and drivers, pumps, and valvesAnalog signal conditioning and data acquisition: amplification, filtering, isolation, and ADC selection for process measurementsPCB design through fabrication and assembly: schematic capture, layout, vendor handoff, assembly, bring up, and rework, using KiCad, Altium, or an equivalent toolWiring, control panel build, electrical assembly, and full system integrationCommunication protocols at both the industrial and board level: at least one of Modbus, CAN, or EtherCAT, plus I2C, SPI, and UARTHMI development and process data logging: operator interfaces, alarm handling, live trending, and structured run recordsMachine safety design: emergency stop architecture, interlocks, fault detection, and defined safe state behaviourDocumentation discipline: schematics, wiring diagrams, BOMs, panel layouts, and revision controlIndependent troubleshooting and rapid iteration in a fast paced R&D environment
PreferredPLC programming in IEC 61131-3 structured text or ladder logic, using CODESYS, TwinCAT, TIA Portal, Studio 5000, or equivalentSCADA, historian, or time series database experience for process dataEMI and EMC mitigation, grounding, and shielding in systems that combine power electronics with precision instrumentationBioprocess or laboratory instrumentation experience: pumps, fluid paths, sterile connections, sanitary design3D CAD for enclosure and panel layout coordination
About Your ResponsibilitiesA list of responsibilities is listed here. A more detailed list will be shared after an NDA is in place.Own the electrical and control architecture for custom bioprocessing equipment and devicesDesign, lay out, fabricate, assemble, and bring up custom PCBs for sensing, signal conditioning, actuation, and controlDevelop firmware and control software across microcontrollers and Linux single board computers, with explicit attention to real time behaviourImplement and tune closed loop control against sensor feedback, including coupled process variablesIntegrate and commission electromechanical hardware and process instrumentationDesign analog front ends and data acquisition chains for process measurementsBuild and maintain the HMI and process data logging layer, including operator interface, alarm handling, trending, and structured, exportable run recordsDesign and implement machine safety: emergency stop architecture, interlocks, fault detection, and safe state behaviourOwn the EMI, grounding, and shielding strategy across the systemEvaluate and select the production control platform, and migrate control software onto itProduce and maintain schematics, wiring diagrams, BOMs, panel layouts, and revision controlled documentationMove prototype builds toward serviceable, manufacturable hardware: design for manufacture, connectivity, cable management, and service accessCollaborate with engineering and science colleagues on enclosure design, panel layout, and instrumentation placementSupport the future transition toward a regulated manufacturing environment