1

Controls Engineer Jobs in Muskegon, MI (NOW HIRING)

Controls Engineer

Holland, MI · On-site

$75K - $125K/yr

CONTROLS ENGINEER Reports To: Engineering Manager Direct Reports: none Compensation: Salary Employment Status: Full time (45 Hours) COMPANY INFO M.W. Watermark is a leader, locally and globally ...

Controls Engineer

Comstock Park, MI

$70K - $90K/yr

CONTROLS ENGINEER COMSTOCK PARK, MI NATURE OF WORK: The Controls Engineer reports to the Controls Manager. Lear designs, builds, and installs equipment for Lear plants globally. Our portfolio ...

Controls Engineer

Comstock Park, MI · On-site

$70K - $90K/yr

CONTROLS ENGINEER COMSTOCK PARK, MI NATURE OF WORK: The Controls Engineer reports to the Controls Manager. Lear designs, builds, and installs equipment for Lear plants globally. Our portfolio ...

Controls Engineer

Comstock Park, MI · On-site

$70K - $90K/yr

Controls Engineer - Comstock Park, MI DISHER is currently partnering with a world leading automation company that specializes in groundbreaking technologies for flawlessly manufacturing millions of ...

Controls Engineer

Comstock Park, MI · On-site

$70K - $90K/yr

Controls Engineer - Comstock Park, MI DISHER is currently partnering with a world leading automation company that specializes in groundbreaking technologies for flawlessly manufacturing millions of ...

Controls Engineer

Comstock Park, MI · On-site

$70K - $90K/yr

Controls Engineer - Comstock Park, MI DISHER is currently partnering with a world leading automation company that specializes in groundbreaking technologies for flawlessly manufacturing millions of ...

Senior Controls Engineer

Hudsonville, MI · On-site

$90K - $120K/yr

Apex Controls is seeking a highly skilled and experienced Senior Controls Engineer to join our dynamic team. The ideal candidate will lead the development, implementation, and optimization of ...

Controls Engineer - Industrial Automation This role focuses on the design, programming, and troubleshooting of industrial automation systems, with a strong emphasis on Allen‑Bradley PLC programming.

Senior Controls Engineer The Senior Controls Engineer will design, program, install, and maintain industrial automation and control systems, including PLCs, SCADA platforms, robotics, and related ...

New

Senior Controls Engineer

Comstock Park, MI · On-site

$81K - $107K/yr

Senior Controls Engineer THE COMPANY Invio Automation is an Industry 4.0 automation leader that serves a variety of high-growth end-markets including medical devices amp; life science, renewable ...

Senior Controls Engineer

Whitehall, MI · On-site

$92K - $121K/yr

As a Senior Controls Engineer you will design, program, install and maintain industrial control systems (PLC, SCADA, robotics) while enabling seamless integration of AI outputs for intelligent ...

Senior Controls Engineer

Whitehall, MI

$92K - $121K/yr

As a Senior Controls Engineer you will design, program, install and maintain industrial control systems (PLC, SCADA, robotics) while enabling seamless integration of AI outputs for intelligent ...

Senior Controls Engineer

Whitehall, MI

$92K - $121K/yr

As a Senior Controls Engineer you will design, program, install and maintain industrial control systems (PLC, SCADA, robotics) while enabling seamless integration of AI outputs for intelligent ...

Senior Controls Engineer

Whitehall, MI · On-site

$92K - $121K/yr

The Controls Engineer ensures system reliability, safety, and scalability as the company advances toward Industry 4.0 capabilities. Job Role: * Analysis and synthesis --measures and interprets with ...

next page

Showing results 1-20

Controls Engineer information

See Muskegon, MI salary details

$49.7K

$87.2K

$118.3K

How much do controls engineer jobs pay per year?

As of Aug 26, 2026, the average yearly pay for controls engineer in Muskegon, MI is $87,244.00, according to ZipRecruiter salary data. Most workers in this role earn between $75,400.00 and $97,600.00 per year, depending on experience, location, and employer.

What does a controls engineer do?

A Controls Engineer designs, develops, and maintains systems that control machinery and processes in industries such as manufacturing, automotive, and energy. They work with automation systems, including programmable logic controllers (PLCs), sensors, actuators, and human-machine interfaces (HMIs) to ensure efficient, safe, and reliable operation. Controls Engineers also troubleshoot and optimize existing systems, implement upgrades, and ensure compliance with safety standards. Their expertise is crucial for improving productivity, reducing downtime, and integrating new technologies into production environments.

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

To thrive as a Controls Engineer, you need a solid background in electrical engineering, automation, and process control, typically supported by a relevant engineering degree. Familiarity with PLC programming, SCADA systems, HMI software, and certifications such as Professional Engineer (PE) or Siemens/Rockwell training are commonly required. Strong problem-solving abilities, attention to detail, and effective communication skills help distinguish top performers in this field. These skills ensure the safe, efficient, and reliable operation of automated systems critical to industrial and manufacturing environments.

What are common challenges faced by controls engineers when working on multidisciplinary project teams?

Controls Engineers frequently collaborate with mechanical, electrical, and software engineers, which can present challenges in aligning design standards, timelines, and communication styles. They must ensure that control systems integrate seamlessly with hardware and software components while also meeting safety and regulatory requirements. Effective communication and adaptability are essential, as Controls Engineers often act as a bridge between technical disciplines to troubleshoot issues and implement solutions efficiently.

What is the difference between Controls Engineer vs Electrical Engineer?

AspectControls EngineerElectrical Engineer
Required CredentialsBachelor's in Electrical, Mechanical, or Controls Engineering; certifications like Certified Control Systems Technician (CCST)Bachelor's in Electrical Engineering; Professional Engineer (PE) license often preferred
Work EnvironmentManufacturing plants, automation facilities, industrial settingsDesign offices, research labs, power plants, industrial sites
Industry UsageAutomation, manufacturing, process controlPower generation, electronics, telecommunications, industrial systems
Common Search/ComparisonControls Engineer vs Electrical Engineer

Controls Engineers focus on designing, developing, and maintaining control systems for automation and manufacturing processes, often working closely with machinery and PLCs. Electrical Engineers have a broader scope, working on electrical systems, power distribution, and electronic devices. While both roles require electrical knowledge and certifications, Controls Engineers specialize more in automation and control systems, whereas Electrical Engineers may work across various electrical disciplines.

What are the most commonly searched types of Controls Engineer jobs in Muskegon, MI?

The most popular types of Controls Engineer jobs in Muskegon, MI are:

What are popular job titles related to Controls Engineer jobs in Muskegon, MI?

For Controls Engineer jobs in Muskegon, MI, the most frequently searched job titles are:

What job categories do people searching Controls Engineer jobs in Muskegon, MI look for?

The top searched job categories for Controls Engineer jobs in Muskegon, MI are:

What cities near Muskegon, MI are hiring for Controls Engineer jobs?

Cities near Muskegon, MI with the most Controls Engineer job openings:

Infographic showing various Controls Engineer job openings in Muskegon, MI as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $87,244 per year, or $41.9 per hour.

Controls Engineer

M W Watermark Llc

Holland, MI • On-site

$75K - $125K/yr

Full-time

Re-posted 6 days ago


Job description

Job Description: JOB TITLE: CONTROLS ENGINEER Reports To: Engineering Manager Direct Reports: none Compensation: Salary Employment Status: Full time (45 Hours) COMPANY INFO M.W. Watermark is a leader, locally and globally, helping everyone protect our planet’s natural resources. M.W. Watermark constantly scans for ideas, opportunities or technologies that can help us advance toward our vision. M.W. Watermark is a safe place to work, to inspire, to become inspired, and from where you go home fulfilled knowing that you helped not just “me” but also “us”. For us, and each generation that follows, M.W. Watermark’s vision is to leave the world a cleaner and safer place than that in which we lived. Join us. Together, we can make a difference. SUMMARY The Controls Engineer is an integral member of the M.W. Watermark engineering team, working to provide innovative, robust, and reliable electrical designs and programming to support both product development and project requirements. M.W. Watermark’s equipment is sold to and installed in a wide variety of industrial applications that require a high degree of reliability both as stand-alone controls as well as controls that are integrated into site control systems. PRIMARY RESPONSIBILITIES The Controls Engineer designs, programs, and commissions automation systems, primarily related to recessed chamber filter presses using AutoCAD Electrical, Rockwell, Siemens and Keyence PLC software. This position will create schematics, develop PLC and HMI programming, and integrate components like light curtains, VFDs, transmitters, sensors, and switches. Key duties include ensuring compliance with customer specifications for both hardware and software, support of customer communication, shop programming and run-off, and occasional onsite startup as necessary. PLC Programming: Develop and troubleshoot PLC (typically Rockwell Allen-Bradley Studio 5000, Siemens TIA, Keyence) ladder logic, function block using Studio 5000/RSLogix.HMI Development: Create operator interfaces using Rockwell FactoryTalk View, Siemens WinCC, and Keyence VT Studio.Electrical Design: Design control panels and create electrical schematics (schematics, panel layouts, I/O diagrams) and bills of materials using AutoCAD Electrical and Autodesk Vault.Electrical within Skid Limits: Integrate Remote I/O (Allen Bradley and Emerson Aventics G3 Fieldbus), VFDs, safety light curtains & area scanners, pressure & level transmitters and proximity sensors.System Integration: Support the integration of machine control systems into customer distributed control systems, most often DeltaV or Rockwell PlantPAx. Service Support: Support service technicians remotely for troubleshooting of equipment in the field. Infrequent travel may be required for complex or highly integrated systems.Commissioning/Support: Occasionally perform onsite startup, debug, and validation of automated equipment at customer locations.Standards: Ensure compliance with UL508A, NEC, IEC 61131 and NFPA standards. Promote and contribute to a culture of continuous improvement.Other duties as assigned by the Engineering Manager. KNOWLEDGE AND SKILL REQUIREMENTS Education: Bachelor’s degree in related field or equivalent hands-on experience.Experience: 3+ years of experience in industrial automation, ideally with Allen-Bradley ControlLogix/CompactLogix systems.Software Proficiency: Knowledge of AutoCAD Electrical and Rockwell Automation suite, including Studio 5000, RSLogix 500/5000, and FactoryTalk View.Technical Skills: Ability to read/create electrical schematics, troubleshoot electrical hardware, and work with motors and sensors.Travel: Ability to travel occasionally is required. Travel is typically infrequent, but certain projects may require advanced programming skills for equipment commissioning and startup. WORKING CONDITIONS Working conditions are normal for an office environment. Business casual attire required. Occasionally work will be done on the production floor which requires the use of safety equipment to include but not limited to; safety glasses, hearing protection, steel toe work boots, and hardhats. REMOTE WORK This position is based in M.W. Watermark’s Holland office, with approved remote work permitted for specific tasks or occasional flexibility as schedules permit. A high degree of collaboration and hands-on work is required which cannot be performed remotely. Page Break “ADA CHECKLIST” CHECKLIST FOR DETERMINING THE GENERAL PHYSICAL REQUIREMENTS, PHYSICAL ACTIVITIES, VISUAL ACUITY, AND WORKING CONDITIONS OF SPA STAFF POSITIONS Position: Controls Engineer Circle the letters that correspond with the physical aspects of the essential functions of the position. Essential functions are the fundamental job duties, meaning the position exists to perform the function; there is a limited number of employees among whom the performance of the function can be distributed; and/or the incumbent is hired for expertise or ability to perform the function due to its high specialization. The Americans With Disabilities Act of 1990 (ADA) and associated Federal regulations protect qualified individuals with disabilities from discrimination in all areas of employment. To be considered qualified, an individual must be able to perform the essential functions of a position, with or without reasonable accommodation. It is important that the physical tasks associated with the essential functions be identified appropriately so that persons with disabilities can determine if any accommodation is necessary. I certify that I have read the physical requirements as set forth below and am physically able to perform the necessary duties as indicated herein. Employee Signature:_________________________________________ Date:_____________ 1. GENERAL PHYSICAL REQUIREMENTS Please check the ONE description of general physical requirements that best describes the work requirements of the position: A. Sedentary work: Exerting up to 10 pounds of force occasionally and/or a negligible amount of force frequently or constantly to lift, carry, push, pull or otherwise move objects, including the human body. Sedentary work involves sitting most of the time. Jobs are sedentary if walking and standing are required only occasionally and all other sedentary criteria are met. B. Light work: Exerting up to 20 pounds of force occasionally and/or a negligible amount of force constantly to move objects. If the use of arm and/or leg controls requires exertion of force greater than that for Sedentary Work and the worker sits most of the time, the job is rated for light work. C. Medium work: Exerting up to 50 pounds of force occasionally and/or up to 20 pounds of force frequently, and/or up to 10 pounds of force constantly to move objects. D. Heavy work: Exerting up to 100 pounds of force occasionally and/or up to 50 pounds of force frequently, and/or up to 20 pounds of force constantly to move objects. E. Very heavy work: Exerting in excess of 100 pounds of force occasionally, and/or in excess of 50 pounds of force constantly to move objects. 2. PHYSICAL ACTIVITIES Please check ALL physical activities that apply to the essential functions of the position: A. Climbing: Ascending or descending ladders, stairs, scaffolding, ramps, poles and the like, using feet and legs and/or hands and arms. Body agility is emphasized. This factor is important if the amount and kind of climbing required exceeds that required for ordinary locomotion. B. Balancing: Maintaining body equilibrium to prevent falling when walking, standing or crouching on narrow, slippery or erratically moving surfaces. This factor is important if the amount and kind of balancing exceeds that needed for ordinary locomotion and maintenance of body equilibrium. C. Stooping: Bending body downward and forward by bending spine at the waist. This factor is important if it occurs to a considerable degree and requires full use of the lower extremities and back muscles. D. Kneeling: Bending legs at knee to come to a rest on knee or knees. E. Crouching: Bending the body downward and forward by bending leg and spine. F. Crawling: Moving about on hands and knees or hands and feet. G. Reaching: Extending hand(s) and arm(s) in any direction. H. Standing: Particularly for sustained periods of time. I. Walking: Moving about on foot to accomplish tasks, particularly for long distances or moving from one work site to another. J. Pushing: Using upper extremities to press against something with steady force in order to thrust forward, downward or outward. K. Pulling: Using upper extremities to exert force in order to draw, drag, haul or tug objects in a sustained motion. L. Lifting: Raising objects from a lower to a higher position or moving objects horizontally from position-to-position. This factor is important if it occurs to a considerable degree and requires the substantial use of the upper extremities and back muscles. M. Fingering: Picking, pinching, typing or otherwise working, primarily with fingers rather than with the whole hand or arm as in handling. N. Grasping: Applying pressure to an object with the fingers and palm. O. Feeling: Perceiving attributes of objects, such as size, shape, temperature or texture by touching with skin, particularly that of fingertips. P. Talking: Expressing or exchanging ideas by means of the spoken word. Those activities in which they must convey detailed or important spoken instructions to other workers accurately, loudly, or quickly. Q. Hearing: Perceiving the nature of sounds at normal speaking levels or without correction. Ability to receive detailed information through oral communication, and make fine discriminations in sound. R. Repetitive Motions: Substantial movements (motions) of the wrists, hands, and/or fingers. 3. VISUAL ACUITY Please check the ONE description of visual acuity requirements (including color, depth perception, and field of vision), that best describes the requirements of the position: A. The worker is required to have close visual acuity to perform an activity such as: preparing and analyzing data and figures; transcribing; viewing a computer terminal; expansive reading; visual inspection involving small defects, small parts and/or operation of machines (including inspection); using measurement devices; and/or assembly of fabrication of parts at distances close to the eyes. B. The worker is required to have visual acuity to perform an activity such as: operating machines such as lathes, drill presses, power saws and mills where the seeing job is at or within arm's reach; performing mechanical or skilled trades tasks of a non-repetitive nature such as carpenters, technicians, service people, plumbers, painters, mechanics, etc. C. The worker is required to have visual acuity to operate motor vehicles or heavy equipment. D. The worker is required to have visual acuity to determine the accuracy, neatness, thoroughness of work assigned (i.e., custodial, food services, general labor, etc.) or to make general observations of facilities or structures (i.e., security guard, inspection, etc.) 4. WORKING CONDITIONS Please circle ALL conditions the worker is subject to in performing the essential functions of the position: A. The worker is subject to inside environmental conditions: Protection from weather conditions but not necessarily from temperature changes. B. The worker is subject to outside environmental conditions: No effective protection from weather. C. The worker is subject to both environmental conditions: Activities occur inside and outside. D. The worker is subject to extreme cold: Temperatures typically below 32 degrees for periods of more than one hour. Consideration should be given to the effect of other environmental conditions such as wind and humidity. E. The worker is subject to extreme heat: Temperatures above 100 degrees for periods of more than hour. Consideration should be given to the effect of other environmental conditions such as wind and humidity. F. The worker is subject to noise: There is sufficient noise to cause worker to shout in order to be heard above the ambient noise level. G. The worker is subject to vibration: Exposure to oscillating movements of extremities or whole body. H. The worker is subject to hazards: Includes a variety of physical conditions, such as proximity to moving mechanical parts, moving vehicles, electrical current, working on scaffolding and high places, exposure to high heat or exposure to chemicals. I. The worker is subject to atmospheric conditions: One or more of the following conditions that affect the respiratory system of the skin: Fumes, odors, dusts, mists, gases or poor ventilation. J. The worker is subject to oils: There is air and/or skin exposure to oils and other cutting fluids. K. The worker is required to wear a respirator. L. The worker frequently is in close quarters, crawl space, shafts, manholes, small, enclosed rooms, small sewage and water line pipes, and other areas which could cause claustrophobia. M. The worker is required to function in narrow aisles or passageways. N. The worker is exposed to infectious diseases. O. The worker is required to function around prisoners or mental patients. P. None: The worker is not substantially exposed to adverse environmental conditions (such as in typical office or administrative work).