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Sr Controls Engineer Jobs in Rochester, NY (NOW HIRING)

... an experienced Senior Process & System Engineer to lead the development, scale-up, and ... Define process flow diagrams (PFDs), equipment requirements, controls interfaces, and quality ...

Senior Applications Engineer

Webster, NY ยท On-site

$115K - $125K/yr

A Sr. Applications Engineer's major function is to win profitable, low risk work for Calvary ... Develop & represent working mechanical and controls solutions in electronic format (AutoCAD, SW ...

Senior Applications Engineer

Webster, NY ยท On-site

$115K - $125K/yr

A Sr. Applications Engineer's major function is to win profitable, low risk work for Calvary ... Develop & represent working mechanical and controls solutions in electronic format (AutoCAD, SW ...

Showing results 21-40

Sr Controls Engineer information

See Rochester, NY salary details

$71K

$113.2K

$151.9K

How much do sr controls engineer jobs pay per year?

As of Aug 12, 2026, the average yearly pay for sr controls engineer in Rochester, NY is $113,195.00, according to ZipRecruiter salary data. Most workers in this role earn between $95,700.00 and $126,300.00 per year, depending on experience, location, and employer.

What types of projects and cross-functional collaboration can a Sr Controls Engineer expect in this role?

As a Sr Controls Engineer, you will typically lead or contribute to projects involving the design, implementation, and optimization of automation systems. Collaboration is common with multidisciplinary teams, including mechanical and electrical engineers, software developers, and operations personnel, to ensure seamless integration of control systems. You may also work closely with project managers and clients to define requirements, troubleshoot issues, and deliver solutions that align with production goals. This role often involves balancing technical problem-solving with strong communication skills to coordinate across departments.

What is a Sr Controls Engineer?

Sr Controls Engineers are experienced professionals who design, develop, and maintain control systems used in manufacturing, automation, or other industrial processes. They work with hardware and software to ensure machinery operates efficiently, safely, and according to specifications. Their responsibilities often include programming PLCs, troubleshooting system issues, leading projects, and collaborating with multidisciplinary teams. Senior-level controls engineers also mentor junior staff and contribute to the strategic improvement of automation processes.

What are the key skills and qualifications needed to thrive as a Sr Controls Engineer, and why are they important?

To thrive as a Sr Controls Engineer, you need a strong background in electrical engineering, automation, and control systems design, usually supported by a relevant bachelor's degree and significant industry experience. Expertise in PLC programming, SCADA systems, HMI development, and familiarity with industry standards and certifications like ISA or PE is essential. Strong problem-solving, project management, and communication skills set standout professionals apart in this role. These qualifications ensure effective system integration, reliable automation solutions, and successful collaboration on complex engineering projects.

What is the difference between Sr Controls Engineer vs Controls Engineer?

AspectSr Controls EngineerControls Engineer
Required CredentialsBachelor's in Electrical, Mechanical, or related engineering; often 5+ years experience; certifications like PLC or automation certificationsBachelor's in relevant engineering; 1-3 years experience; similar certifications
Work EnvironmentIndustrial plants, manufacturing facilities, automation projectsSimilar industrial settings, project-based work, automation systems
Employer & Industry UsageManufacturing, automation, process control industriesManufacturing, industrial automation, equipment design

The main difference between a Sr Controls Engineer and a Controls Engineer lies in experience level, responsibilities, and expertise. Sr Controls Engineers typically have more years of experience, handle complex automation projects, and may mentor junior staff. Controls Engineers are often earlier in their careers, focusing on implementing and maintaining control systems. Both roles are vital in industrial automation and share similar work environments and industry applications.

What are popular job titles related to Sr Controls Engineer jobs in Rochester, NY? For Sr Controls Engineer jobs in Rochester, NY, the most frequently searched job titles are:
What job categories do people searching Sr Controls Engineer jobs in Rochester, NY look for? The top searched job categories for Sr Controls Engineer jobs in Rochester, NY are:
What cities near Rochester, NY are hiring for Sr Controls Engineer jobs? Cities near Rochester, NY with the most Sr Controls Engineer job openings:
Infographic showing various Sr Controls Engineer job openings in Rochester, NY as of August 2026, with employment types broken down into 89% Full Time, 6% Part Time, and 5% Contract. Highlights an 85% Physical, 5% Hybrid, and 10% Remote job distribution, with an average salary of $113,195 per year, or $54.4 per hour.

Automation Controls Engineer II - Relocation Assistance Eligible

Progressive Machine & Design

Victor, NY โ€ข On-site

$100K - $120K/yr

Full-time

Re-posted 4 days ago


Job description

Description:

Relocation Assistance may be available for qualified candidates.


JOB SUMMARY

The Controls Engineer II is responsible for providing controls hardware design, programming, debug, and site-installation of turnkey custom automation equipment.


ESSENTIAL FUNCTIONS

  • Work independently on medium sized or average complexity projects and/or under direction of more senior engineers on portions of larger or more complex projects.
  • Review customer requirements, PMD proposal, PMD cost estimate, and Federal, State, & Local requirements.
  • In advance of completed Mechanical Engineering design, attend Mechanical Design Reviews to understand machine functionality, suggest concepts & componentry to meet functional & safety requirements, and incorporate associated Controls Hardware design elements into the Controls Hardware design.
  • Translate device list provided by Mechanical Engineering into Controls Hardware design elements.
  • Utilize AutoCad Electrical for drafting.
  • Use provided symbols & circuits.
  • Develop new symbols & circuits as necessary.
  • Controls Hardware Design
  • AC Power schematics
  • DC Power schematics
  • Safety schematics
  • Servo/Stepper schematics
  • Industrial Network schematics
  • Device schematics
  • Testers, Transducers, Laser Markers, Welders, Robots, etc.
  • I/O schematics
  • Control Enclosure layouts
  • Control Panel layouts
  • Fluid Power Supply schematics
  • Fluid Power Control schematics
  • Bill of Materials
  • Interact with Controls Build personnel to answer questions.
  • Assist Controls Build Technicians, Controls Software Engineers, and Controls Engineers with electrical and fluid power debug.
  • Update design as required throughout the project life cycle.
  • Use provided standard code and device drivers, or use end-customer provided code and/or formats to create custom control & HMI programs.
  • Create custom device driver code.
  • Using control schematics, enter I/O into controller programs.
  • Using timing chart provided by Mechanical Engineering, program intended sequences into controller programs.
  • Download completed programs.
  • Commission control hardware.
  • Debug control hardware for out-of-box failures, intended design, and correct wiring/plumbing.
  • Debug control software, including all intended sequences, modes of operation, special functions, fault detection, fault recovery, tooling return, and interface.
  • Participate in Factory Acceptance Test at PMD.
  • Participate in Site Acceptance Test at end-customer’s facility


OTHER DUTIES

  • Maintain a clean and orderly work area.
  • Observe safety procedures.
  • Any other task assigned by management within scope of position, federal and state regulations.



Requirements:

EDUCATION

  • BS in EE, EET, Mechatronics, related engineering field; or demonstrated equivalent experience.


EXPERIENCE (5-10 years)

with 4 or more of the following Hardware Design skills:

  • AutoCad Electrical
  • NFP79, UL508a, CE, CSA standards
  • Power calculations (AC 3phase, AC 1phase, DC 5-90V, Transformers)
  • Enclosure Heat calculations
  • SCCR calculations
  • Fluid Power flow calculations
  • SISTEMA safety calculations

and 3 or more of the following Programming skills:

  • PLC Programming (Rockwell, Siemens, and/or Omron)
  • HMI Programming (Rockwell, Siemens, and/or Omron)
  • Robot Programming (Fanuc, ABB, Epson, Staubli, and/or Kuka)
  • Vision Systems (Cognex, Keyence, Matrox, and/or Teledyne Dalsa)
  • Industrial Protocols (Ethernet/IP, ProfiNet, EtherCat, and/or IOLink)


KNOWLEDGE, SKILLS & ABILITIES

  • Effective verbal and written communication.
  • Ability to read, analyze, and interpret general technical procedures.
  • Ability to work in decimal, octal hexadecimal, and binary numbering systems.
  • Ability to apply concepts of basic algebra and geometry and to calculate scaling factors, proportions, percentages, rates, and ratios.
  • Organized
  • Detail oriented
  • Ability to work independently or as part of a team
  • Ability to take direction
  • Creative/Innovative
  • Time management skills


PHYSICAL DEMANDS & WORK ENVIRONMENT

The physical demands described here are representative of those that must be met by an employee to successfully perform the essential functions of this job. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.


  • Regularly required to sit; use hands to handle or feel; reach with hands and arms; talk or hear; and smell.
  • Occasionally required to stand, walk, push, pull, lift, stoop, kneel, crouch and crawl.
  • Specific vision abilities include close vision, distance vision, color vision, peripheral vision, depth perception, and ability to adjust focus.
  • Work environment is primarily performed indoors; partially around moving mechanical parts at a moderate noise level.
  • Wear safety equipment, including proper PPE.