Role & Responsibilities: Translate product and system requirements into electrical specifications, architectures, interface definitions, and verifiable design outputs. Design and review schematics; select components; guide or perform PCB layout; and support prototype bring-up, integration, debugging, and design iteration. Develop robust analog, digital, power, sensing, communication, and motor-control circuitry appropriate for medical robotic applications. Plan and execute design verification, including test methods, protocols, traceable results, reports, and resolution of anomalies. Apply sound practices for grounding, shielding, signal integrity, power integrity, thermal performance, reliability, and electromagnetic compatibility. Create and maintain controlled engineering outputs, including schematics, PCB files, bills of materials, specifications, drawings, work instructions, test records, and design-change documentation. Work with systems, firmware, software, and mechanical engineers to manage interfaces and resolve cross-disciplinary design issues. Support risk management, design reviews, design transfer, DFM/DFT, supplier engagement, production qualification, and product sustaining activities. Support investigation of production and field issues using structured troubleshooting and root-cause analysis; implement effective corrective or design-improvement actions. Plan and support external laboratory testing for electrical safety and EMC, including radiated and conducted emissions and immunity; assess results and drive technical closure of findings. Design, testing and qualify PCBA/ module in accordance with design specification. Make or recommend technical design decisions within the assigned scope, subject to the company’s design-control and approval processes. Review electrical design outputs and test evidence; approve them when formally delegated as an authorized reviewer or approver. Raise, document, and escalate safety, quality, compliance, schedule, or technical risks, and recommend proportionate controls. Pause or reject testing or design implementation where an uncontrolled safety risk, invalid test condition, or clear nonconformity is identified. Initiate engineering changes, investigations, and corrective actions, and provide technical input to supplier and component acceptance decisions. Work closely with peers, such as software, firmware, and mechanical engineering, to design a medical robot. Competency Requirements: Bachelor’s degree in Electrical Engineering, Electronic Engineering, or a closely related discipline. A master’s degree is advantageous but not required. Minimum 5 years’ experience in product design and development. Sound knowledge of analog and digital electronics, power supplies, microcontroller-based systems, sensors, actuators, and common wired communication interfaces. Practical experience with schematic capture and PCB-layout tools; experience with Altium Designer or an equivalent platform is advantageous. Hands-on capability with oscilloscopes, multimeters, power supplies, logic analyzers, electronic loads, and other relevant test equipment. Ability to isolate faults systematically, interpret data, document evidence, and convert findings into robust design improvements. Ability to understand embedded-system behaviour and collaborate effectively with firmware engineers; hands-on embedded C/C++ experience is advantageous. Ability to prepare clear, accurate, and traceable engineering specifications, design records, test documents, and reports. Able to work independently while communicating effectively across engineering, quality, regulatory, manufacturing, purchasing, service, and supplier teams. Development of medical devices, robotics, motion-control systems, precision electromechanical products, or other regulated products. Design controls and risk management within an ISO 13485 quality system, including familiarity with ISO 14971. Electrical safety and EMC standards for medical electrical equipment, particularly IEC 60601-1 and IEC 60601-1-2. Design transfer, production support, component lifecycle management, supplier qualification, and engineering change control.