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Control System Engineer Jobs in New Jersey (NOW HIRING)

Our diverse leadership and dedicated engineering team are committed to excellence and consistent ... Works on a variety of control system projects; providing hardware and software design, development ...

System Engineer / Programmer

Skillman, NJ ยท On-site

$60K - $90K/yr

Complete programming of advanced systems including Savant, Lutron, Control 4 etc. * Design, program and manage wired and wireless network environments * Preconfigure, commission, test, and train ...

... with Programmable Logic Controls (PLC) programs * 5+ year of experience with Robotics system ... or in Control Systems development, troubleshooting and programming * 4+ years of experience ...

... with Programmable Logic Controls (PLC) programs * 5+ year of experience with Robotics system ... or in Control Systems development, troubleshooting and programming * 4+ years of experience ...

... with Programmable Logic Controls (PLC) programs * 5+ year of experience with Robotics system ... or in Control Systems development, troubleshooting and programming * 4+ years of experience ...

... with Programmable Logic Controls (PLC) programs * 5+ year of experience with Robotics system ... or in Control Systems development, troubleshooting and programming * 4+ years of experience ...

Systems Engineer

Moorestown, NJ ยท On-site

$102K - $146K/yr

System drawings * Interface control documents * Engineering change documentation * Equipment specifications * Bills of materials (BOMs) * Installation drawings * Maintenance procedures * Manage ...

Showing results 21-40

Control System Engineer information

See New Jersey salary details

$61.9K

$110.4K

$178.2K

How much do control system engineer jobs pay per year?

As of Sep 4, 2026, the average yearly pay for control system engineer in New Jersey is $110,433.00, according to ZipRecruiter salary data. Most workers in this role earn between $85,300.00 and $128,400.00 per year, depending on experience, location, and employer.

What is a control system engineer?

Control System Engineers are professionals who design, develop, and maintain systems that manage, regulate, and automate processes in industries such as manufacturing, energy, and transportation. They use principles of engineering, mathematics, and computer science to ensure that machinery and processes operate efficiently, safely, and within desired parameters. Their work often involves programming controllers, integrating sensors and actuators, and troubleshooting complex automated systems.

What are the key skills and qualifications needed to thrive as a control system engineer, and why are they important?

To excel as a Control System Engineer, you need a solid background in electrical or mechanical engineering, strong analytical skills, and experience with control theory and system design. Familiarity with PLC programming, SCADA systems, MATLAB/Simulink, and certifications such as Professional Engineer (PE) are highly valued. Strong problem-solving abilities, attention to detail, and effective communication help you collaborate with multidisciplinary teams and manage complex projects. These skills are essential for designing, implementing, and maintaining reliable automation systems that optimize performance and safety in various industries.

What are some common challenges control system engineers face when working on multidisciplinary project teams?

Control System Engineers frequently collaborate with professionals from mechanical, electrical, and software engineering backgrounds. One of the main challenges is ensuring smooth communication and integration across these disciplines, as each team may have different priorities, terminologies, and workflows. Additionally, coordinating timelines and requirements to align control system design with hardware and software constraints can be complex. Proactive communication, clear documentation, and regular cross-team meetings help overcome these hurdles and ensure project success.

What is the difference between Control System Engineer vs Automation Engineer?

AspectControl System EngineerAutomation Engineer
CredentialsBachelor's in Electrical, Mechanical, or Control Engineering; certifications like CSCP or ISABachelor's in Electrical, Mechanical, or Automation Engineering; similar certifications
Work EnvironmentDesign, develop, and maintain control systems in manufacturing, energy, or industrial settingsDesign and implement automated systems and processes in manufacturing or production environments
Industry UsageCommonly employed in industries requiring control systems such as oil & gas, manufacturing, and utilitiesUsed in industries focusing on process automation, robotics, and production efficiency

Control System Engineers and Automation Engineers share similar educational backgrounds and certifications. While Control System Engineers focus on designing and maintaining control systems, Automation Engineers concentrate on implementing automated processes. Both roles are vital in industrial settings, often overlapping but with distinct primary responsibilities.

Infographic showing various Control System Engineer job openings in New Jersey as of August 2026, with employment types broken down into 1% As Needed, 80% Full Time, 13% Part Time, 2% Temporary, and 4% Contract. Highlights an 91% Physical, 2% Hybrid, and 7% Remote job distribution, with an average salary of $110,433 per year, or $53.1 per hour.

Engineer, Control Systems Design

Eos Energy Enterprises

Edison, NJ โ€ข On-site

Full-time

Re-posted 18 days ago


Job description

About Eos Energy Enterprises
Eos Energy Enterprises, Inc. is accelerating the shift to American energy independence with positively ingenious solutions that transform how the world stores power. Our breakthrough Znythโ„ข aqueous zinc battery was designed to overcome the limitations of conventional lithium-ion technology. It is safe, scalable, efficient, sustainable, manufactured in the U.S., and the core of our innovative systems that today provides utility, industrial, and commercial customers with a proven, reliable energy storage alternative for 3 to 12-hour applications. Eos was founded in 2008 and is headquartered in Edison, New Jersey. For more information about Eos (NASDAQ: EOSE), visit eose.com.
About the Role
The Control Systems Design Engineer helps develop the control strategies that manage battery behavior, grid interactions, and site-level automation. This role will work closely with the engineering teams to integrate BMS, PCS, and EMS controls into a cohesive platform that supports reliable energy delivery.
Responsibilities
  • Design and develop control system architectures for BESS, including battery management system (BMS) integration, energy management system (EMS) logic, and power conversion system (PCS) controls
  • Create control algorithms for charge/discharge cycles, state-of-charge (SOC) balancing, and grid support functions (e.g., frequency regulation, voltage support).
  • Develop PLC, SCADA, and HMI logic tailored to energy storage applications
  • Model and simulate system behavior using tools such as MATLAB/Simulink to validate control strategies under various grid and environmental conditions.
  • Collaborate with electronics engineering, software engineering, and manufacturing teams to ensure seamless integration of control hardware, sensors, and communication networks.
  • Support commissioning and field deployment, including troubleshooting control logic, tuning system parameters, and validating performance on live systems.
  • Ensure that designs comply with safety standards such as UL 9540, UL 1741, NFPA 855, and IEEE grid interconnection requirements.
  • Develop technical documentation, including control narratives, functional design specifications, test procedures, and system architecture diagrams.
  • Continuously improve system performance by implementing advanced control strategies, predictive analytics, and optimization techniques

Knowledge, Skills, and Abilities
  • Strong understanding of battery energy storage systems, including BMS, PCS, EMS, and site-level controls.
  • Proficiency with PLC programming (e.g., Allen-Bradley, Siemens), SCADA platforms, and industrial communication protocols (Modbus, CAN, IEC 61850).
  • Knowledge of power systems, including inverters, transformers, switchgear, and grid interconnection requirements.
  • Experience with control theory, system dynamics, and real-time control implementation.
  • Ability to interpret single-line diagrams, control schematics, and electrical drawings.
  • Strong troubleshooting skills for both hardware and software issues in complex energy systems.
  • Experience with energy storage, renewable energy, or power electronics preferred.
  • Knowledge of relevant standards (UL, IEEE, NFPA) and utility interconnection requirements.

Education and Experience
  • Bachelor's degree in electrical engineering required.
  • Minimum of 5 years' experience

Travel
  • Local Travel: 10-25%
  • Overnight/North America: 10-25%

Working Conditions
  • Office Environment - Must be able to remain in a stationary position 50% of the time and occasionally move about inside the office to access file cabinets, office machinery, etc. Required to have close visual acuity to perform an activity such as: preparing and analyzing data and figures; transcribing; viewing a computer terminal; extensive reading. May be required to exert up to 25 pounds of force occasionally to lift, carry, push, pull or otherwise move objects, including the human body.
  • Factory - The worker may be subject to hazards. Includes a variety of physical conditions, such as proximity to moving mechanical parts, vibration, moving vehicles, electrical current, exposure to temperature changes or exposure to chemicals. While performing the duties of this job, the employee may be exposed to fumes, airborne particles, odors, dust, mists, and gases. The noise level in the work environment can be loud. Required to have close visual acuity to perform an activity such as: preparing and analyzing data and figures; transcribing; viewing a computer terminal; extensive reading; visual inspection involving small defects, small parts, and/or operation of machines (including inspection); using measurement devices; and/or assembly or fabrication parts at distances close to the eyes. Machinery operation requires the use of safety equipment to include but not limited to eye safety glasses, hearing protectors, work boots, and lab coats. May be required to exert up to 50 pounds of force occasionally to lift, carry, push, pull or otherwise move objects, including the human body.
  • Customer/Partner Locations - Employee may visit customer or partner locations that may be comprised of office, manufacturing floor, laboratory environments and construction sites depending on the location and reason for visit.