Senior Engineer I, Cybersecurity Advanced Consulting and Engineering Solutions
About the role
Motivair by Schneider Electric is a global leader in advanced liquid cooling and integrated controls systems supporting hyperscale data centers, HPC platforms, and mission-critical digital operations. The Senior Engineer I, Cybersecurity Controls Engineer within the New Product Development (NPD) team is responsible for developing, configuring, and validating control logic, automation sequences, embedded software, and system integration for Motivair’s liquid-cooling solutions.
Responsibilities
Develop, deploy, and maintain robust Cybersecurity measures.
Measure security efficacy against design baselines and remediate all identified vulnerabilities to maintain a strong security posture.
Drive and Implement Software Development Lifecycle (SDL) practice in projects and products.
Review, validate, and schedule security patches for Programmable Logic Controllers (PLCs) and other hardware ensuring updates do not trigger operational downtime.
Develop PLC logic, HMI interfaces, and automation sequences for liquid-cooling control systems.
Create control panel layouts, I/O lists, communication architectures, and system documentation.
Program, test, and validate PLC, HMI, and embedded control hardware in accordance with internal standards.
Integrate sensors, instrumentation, VFDs, pumps, and communication buses into functional control systems.
Interpret customer specifications, SOWs, and industry standards to develop customized ETO controls solutions.
Collaborate with electrical, mechanical, manufacturing, and field service teams to ensure end-to-end system functionality.
Troubleshoot controls issues during build, FAT, commissioning, and field deployment.
Develop and maintain documentation including functional specifications, wiring diagrams, logic flow, and test plans.
Support continuous improvement efforts, software standardization, and development of reusable controls modules.
Qualifications
BS in Electrical Engineering, Software Engineering, Controls Engineering, Cybersecurity, or related discipline.
Strong Understanding of the core Cybersecurity Principles, Regulations and Standards.
5 years or more of experience in industrial controls, automation, embedded software, or related fields.
A minimum of 2-3 years of experience in at least two of the domains of the Secure Development Lifecycle.
Ability to develop and troubleshoot PLC applications using Function Block Diagrams (FBD), Structured Text (ST), and Ladder Logic (LD), depending on system requirements.
Experience with BMS/SCADA development and industrial communication protocols (Modbus, BACnet, SNMP, Redfish (nice to have)).
Demonstrated ability to manage source code using modern version control systems (Git/GitHub), following best practices for collaboration and code integrity.
Strong understanding of control theory, instrumentation, PID tuning, and system integration.
Ability to read and interpret electrical schematics, I/O diagrams, and system architecture drawings.
Excellent troubleshooting skills for automation hardware and software.
Strong communication and cross-functional collaboration skills.
Ability to manage multiple concurrent projects and adapt to evolving requirements.
Preferred Skills
A relevant CyberSecurity Certification (eg CSSLP, CISSP, CEH, Data Privacy Practitioner).
Proficient with PLC programming environments such as C.suite/1Tool (Carel), Modicon, and Schneider EcoStruxure.
Experienced in embedded firmware development using C/C++, Python or similar languages.
Experience integrating variable-frequency drives (VFDs), optimizing pump-control systems, and implementing thermal-management automation.
Skilled in commissioning fieldbus-connected devices.
Familiarity with data logging, analytics, and cloud-connected control architectures.
Understanding of cybersecurity principles and best practices for securing industrial control systems and operational technology environments.
Exposure to digital twins, simulation modeling, or virtual commissioning tools.
Understanding of DFMA, Lean principles, and standardized software architecture practices.