Senior R&D Electrical Engineer
Pharma
Job description
At Johnson & Johnson, we believe health is everything. Our strength in healthcare innovation empowers us to build a world where complex diseases are prevented, treated, and cured, where treatments are smarter and less invasive, and solutions are personal. Through our expertise in Innovative Medicine and MedTech, we are uniquely positioned to innovate across the full spectrum of healthcare solutions today to deliver the breakthroughs of tomorrow, and profoundly impact health for humanity. Learn more at jnj.com As guided by Our Credo, Johnson & Johnson is responsible to our employees who work with us throughout the world. We provide an inclusive work environment where each person is considered as an individual. At Johnson & Johnson, we respect the diversity and dignity of our employees and recognize their merit. Job Function: R&D Product Development Job Sub Function: R&D Electrical/Mechatronic Engineering Job Category: Scientific/Technology All Job Posting Locations: Boston, Massachusetts, United States of America, Palm Beach Gardens, Florida, United States of America, Raynham, Massachusetts, United States of America Job Description: About Orthopaedics Fueled by innovation at the intersection of biology and technology, we’re developing the next generation of smarter, less invasive, more personalized treatments. Are you passionate about improving and expanding the possibilities of Orthopaedics? Ready to join a team that’s reimagining how we heal? Our Orthopaedics teams help keep more than 6 million people moving each year while delivering clinical and economic value to surgeons and healthcare systems. Our teams build solutions for joint reconstruction; trauma and craniomaxillofacial; sports, extremities, and elective foot and ankle; spine; and robotics and digital surgery. Your unique talents will help patients on their journey to wellness. Learn more at https://www.depuysynthes.com/#what-we-do We move the people who move us. From hardware to software, our solutions are developed fully around the person, to amplify the ability of humanity and to advance patient care. We are recruiting for a Senior Electrical Engineer on the Power Tools Team. The role will be based in Palm Beach Gardens, Florida, Raynham, Massachusetts, or Boston Massachusetts. Purpose: The Senior Electrical Engineer will develop embedded firmware tightly coupled to electrical hardware for next-generation surgical power tools, batteries, chargers, motor controllers, handpieces, accessories, and related electromechanical equipment. This is primarily an electrical engineering and embedded hardware role, with significant responsibility for low-level embedded firmware written in C and C++. The engineer will participate in electrical designs from early feasibility and architecture through schematic development, PCB implementation, board bring-up, firmware integration, design verification, regulatory support, manufacturing transfer, and product lifecycle support. The role requires strong hands-on capability in circuit design, embedded microcontroller systems, power electronics, battery-powered products, motor control, and laboratory troubleshooting. The Senior Electrical Engineer will collaborate closely with systems, mechanical, software, quality, regulatory, manufacturing, clinical, and supplier teams to deliver safe, reliable, manufacturable, and compliant medical devices. Key Responsibilities Electrical Hardware Architecture and Design • Design and develop surgical power tools, motor controllers, battery systems, chargers, handpieces, accessories, and supporting equipment. • Define electrical system and subsystem architectures, including power distribution, motor drive circuitry, safety circuits, sensing, communications, and embedded control hardware. • Design and develop electronics and embedded controls for three-phase brushless DC motor systems. • Translate product and system requirements into electrical requirements, interface definitions, component specifications, schematics, PCB designs, and verification strategies. • Perform design calculations, simulations, component derating analyses, tolerance analyses, power budgets, timing analyses, and technical trade studies. • Conduct and support architecture reviews, schematic reviews, PCB layout reviews, component reviews, and cross-disciplinary design reviews. • Maintain ownership of electrical systems from initial concept and prototype development through verification, regulatory approval, manufacturing release, and post-market support. • Develop embedded firmware interfaces to battery-management ICs, charging circuits, temperature sensors, current sensors, pack identification, authentication, and communication devices. • Support battery safety, reliability, verification, transportation, and regulatory compliance activities. • Perform system power measurements and characterize battery, charger, load, and motor-controller interactions under normal and fault conditions. • Plan and execute board bring-up for prototype and production-intent electronic assemblies. • Develop bring-up procedures, test firmware, diagnostic routines, and engineering fixtures to validate power rails, clocks, reset circuits, communication interfaces, sensors, memory, motor-control peripherals, and protection functions. • Perform low-level debugging using oscilloscopes, digital multimeters, logic analyzers, power supplies, electronic loads, data-acquisition equipment, programmers, and in-circuit debugging tools. Embedded Firmware Development • Design, implement, test, and maintain embedded firmware in C and C++ for microcontroller-based medical devices and power-tool systems. • Develop low-level firmware that directly interfaces with electrical hardware, including device drivers, peripheral initialization, interrupt service routines, timers, analog-to-digital converters, PWM modules, communication peripherals, and hardware protection features. • Develop firmware for motor control, battery management, power sequencing, sensor acquisition, fault detection, diagnostics, state-machine control, and real-time system behavior. • Support bare-metal and real-time embedded implementations where appropriate to the product architecture. • Configure and integrate microcontroller peripherals including SPI, I2C, UART, LIN, CAN, GPIO, ADC, PWM, timers, comparators, and hardware fault inputs. • Develop and maintain boot, startup, calibration, diagnostic, and firmware-update functionality when required by the product. • Implement firmware with an emphasis on deterministic execution, safe-state behavior, resource efficiency, hardware protection, testability, and maintainability. • Participate in firmware design reviews, peer code reviews, static analysis, unit test
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