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Scada Jobs in Maine (NOW HIRING)

Reliability Engineer

Berwick, ME · On-site

$100K - $180K/yr

Work with Controls and Automation engineers to harden PLC/SCADA architectures, sensor redundancy, and fail-safe behavior for continuous, lights-out operation * Develop predictive and preventive ...

Controls Engineer

Westbrook, ME

$85K - $109K/yr

Experience with HMI and SCADA development for industrial automation systems. * Experience working with automated and electrical systems that include robots, vision systems, sensors, drives, AC/DC ...

Oversee and troubleshoot HMI/PLC and SCADA systems to ensure they are functioning properly and integrating smoothly with plant operations. Assist project teams with SFAT (Site Factory Acceptance ...

Water Resources Project Engineer

Portland, ME · On-site

$87.36 - $102.96/hr

Design and integrate SCADA control systems for automated monitoring and operation of water/wastewater infrastructure. * Mentor junior engineers and drive innovation in sustainable design approaches.

New

Water Resources Project Engineer

Saco, ME · On-site

$82K - $113K/yr

Design and integrate SCADA control systems for automated monitoring and operation of water/wastewater infrastructure. * Mentor junior engineers and drive innovation in sustainable design approaches.

Water Resources Project Engineer

Saco, ME

$82K - $113K/yr

Design and integrate SCADA control systems for automated monitoring and operation of water/wastewater infrastructure. * Mentor junior engineers and drive innovation in sustainable design approaches.

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Scada information

See Maine salary details

$16

$33

$48

How much do scada jobs pay per hour?

As of Aug 21, 2026, the average hourly pay for scada in Maine is $33.05, according to ZipRecruiter salary data. Most workers in this role earn between $26.06 and $40.96 per hour, depending on experience, location, and employer.

What is a SCADA system?

SCADA stands for Supervisory Control and Data Acquisition. These are computer-based systems used to monitor and control industrial processes such as manufacturing, power generation, water treatment, and other utilities. SCADA systems collect real-time data from sensors and equipment, display it to operators, and often allow remote control of devices. They are essential for ensuring efficiency, safety, and reliability in complex industrial environments.

What jobs use SCADA?

SCADA stands for Supervisory Control and Data Acquisition. In this field, jobs are available for engineers, technicians, and analysts who work with SCADA network systems and configure, program, and develop solutions for clients and businesses. In these jobs, your duties and responsibilities vary. You may work with a statistical control system to analyze the effectiveness of equipment. You can also be responsible for monitoring and maintaining a computer network or the development of applications for communications and database management. In general, engineers focus on designing and implementing SCADA systems, while technicians handle tasks like performing tests and conducting repairs on electrical equipment.

What are the key skills and qualifications needed to thrive as a SCADA engineer?

To thrive as a SCADA Engineer, you need expertise in control systems, electrical engineering, and industrial automation, usually supported by a relevant engineering degree. Familiarity with SCADA software platforms (like Wonderware or Siemens), PLC programming, and networking protocols is essential, along with certifications such as ISA or vendor-specific credentials. Strong problem-solving, attention to detail, and effective communication are valuable soft skills in this role. These skills ensure reliable system performance, rapid troubleshooting, and seamless collaboration with operations and IT teams in industrial environments.

What are some typical challenges faced by SCADA engineers when integrating new equipment into existing systems?

SCADA engineers often encounter challenges related to compatibility and communication protocols when integrating new equipment into established systems. Ensuring seamless data exchange between devices from different manufacturers may require custom configuration or additional interface modules. Additionally, minimizing system downtime during integration is crucial, which involves thorough planning and testing. Collaborating closely with IT, operations, and vendor teams is essential to address cybersecurity concerns and maintain system reliability throughout the process.

What is the difference between Scada vs PLC Programmer?

AspectScadaPLC Programmer
Required CredentialsTechnical certifications in SCADA systems, automation, or control systemsCertifications in PLC programming, automation, and control systems
Work EnvironmentControl rooms, industrial facilities, remote monitoringIndustrial plants, manufacturing facilities, automation labs
Industry UsageUsed for supervisory control and data acquisition in various industriesDevelops and programs PLCs for automation processes

While both roles are integral to industrial automation, Scada specialists focus on supervisory control and data acquisition systems, monitoring and visualizing processes. PLC Programmers develop and implement programmable logic controllers that automate machinery. Both roles often collaborate but serve different functions within automation projects.

Is SCADA in demand?

SCADA (Supervisory Control and Data Acquisition) specialists are in demand due to their role in industrial automation, energy, manufacturing, and utilities sectors. The increasing adoption of automation technologies and the need for system security and maintenance drive job opportunities for professionals skilled in SCADA systems, programming, and network security.

What are the most commonly searched types of Scada jobs in Maine?

The most popular types of Scada jobs in Maine are:

What are popular job titles related to Scada jobs in Maine?

For Scada jobs in Maine, the most frequently searched job titles are:

What job categories do people searching Scada jobs in Maine look for?

The top searched job categories for Scada jobs in Maine are:

Infographic showing various Scada job openings in Maine as of August 2026, with employment types broken down into 90% Full Time, 4% Part Time, 3% Temporary, 2% Contract, and 1% Nights. Highlights an 87% Physical, 5% Hybrid, and 8% Remote job distribution, with an average salary of $68,754 per year, or $33.1 per hour.

ESSP Electrical Engineer - Experienced Professional

WSP

Freeport, ME • On-site

$90 - $130/hr

Other

Medical, Dental, Vision, Life, Retirement, PTO

Posted 3 days ago

New


WSP rating

8.6

Company rating: 8.6 out of 10

Based on 69 frontline employees who took The Breakroom Quiz

17th of 72 rated business consultants


Job description

This Opportunity

WSP is currently initiating a search for anESSP Electrical Engineer – Experience Professional for ourFreeport, ME office. Candidates in Ann Arbor, MI; Syracuse, NY; Orlando, FL and Fort Mill, SC will also be considered. Be involved in projects with ourESSP (Electrical Studies, SCADA and Protection) Team and be a part of a growing organization that meets our clients' objectives and solves their challenges.

WSP brings global expertise in power delivery, power generation, and program management—anchored by the acquisition of POWER Engineers, Inc. TRC Companies have now joined WSP, deepening our power practice and expanding our energy advisory and intelligent grid services. We're partnering with clients to shape how energy systems evolve around the world—and we need your help.

Your Impact
  • Protective Relaying: short circuit and symmetrical component analysis, time-current coordination, protection scheme and criteria development, relay settings calculation, integration with SCADA systems, NERC compliance, and arc flash analysis. Applicable software: AcSELerator Quickset (SEL-5030), AcSELerator Architect, GEEnerVista, ASPEN One Liner, GridscaleX (CAPE), SKM-PTW, ETAP, RSCAD/RTDS
  • Power System Planning Studies: steady-state real and reactive power flow including outage contingencies, generation interconnect feasibility, P‑V and Q‑V analysis for voltage stability margins, dynamic stability performance, automation of large batch simulations, working with models from NERC regional entities (WECC, MRO, SERC etc.), NERC compliance. Applicable Software: PSS/E, PSLF, PowerWorld, DSA Tools, Python Scripting
  • Design Studies: substation grounding, corona, electric and magnetic fields, insulation coordination (lightning, switching surge, and contamination performance), transient (time domain) simulation, power quality (harmonics, voltage flicker, over/under voltage, etc.), motor starting, AC interference (transmission line interaction with railroads and pipelines). Applicable Software: CDEGS, ATP-EMTP, PSCAD, POLARIS‑EMF, COMSOL Multiphysics, TFlash
  • Networking and Communications: design and configure network and communication paths for Remote Terminal Units (RTUs), protective relays, meters, Human Machine Interface (HMIs), PLC’s and other SCADA system equipment; develop basic specifications for fiber optic, microwave, power line carrier, or radio communication paths; travel to project sites to troubleshoot and commission network and communication systems. Applicable network and communication protocols: DNP, Modbus, SEL Communication Protocol, Goose Messaging, IEC 61850
  • Logic and Control Systems: develop and implement logic and control schemes for remote and local operation of power system equipment; develop programs on various platforms for implementation of these schemes; travel to project sites to test and commission the control schemes. Applicable Logic and Control Platforms: SEL RTAC, Orion, Cooper SMP, GE-D20
  • Write technical reports summarizing analysis with findings and conclusions, generating complete, accurate, and concise documentation using sketches, calculations, electronic systems, spreadsheets, and software.
  • Assist technical staff and project managers with risk identification and assessment, offering input and analysis with design concepts, construction, mitigation and improvement activities, and remediation projects.
  • Assist with work plan preparation and coordination of field/site work and permitting.
  • Complete training on assigned tasks.
  • Perform additional responsibilities as required by business needs.
  • Exercise responsible and ethical decision-making regarding company funds, resources, and conduct, and adhere to WSP’s Code of Conduct and related policies and procedures.
Who You Are Required Qualifications
  • BSEE (BS Electrical Engineering), BSEET (BS Electrical Engineering Technology), or BSCE (BS Computer Engineering) degree, from an ABET-accredited university
  • 3 - 5 years of industry experience performing design or device configuration in technical disciplines described in the Roles and Responsibilities section
  • Engineer in Training Certificate
  • Knowledge of electrical engineering principles, practices, process, design/build, and the application to permitting and project work‑related issues.
  • Analytical mindset with an ability to exercise sound judgment in evaluating situations and making decisions.
  • Strong interpersonal and communication skills when interacting with others, expressing ideas effectively and professionally to an engineering and non‑engineering audience.
  • Capable self‑leadership with attention to detail, accuracy, multi‑tasking, and prioritization of responsibilities in a dynamic work environment.
  • Ability to work independently with minimal supervision, as well as part of a team to meet business objectives.
  • Basic proficiency with technical writing, office automation, software, technology, math principles, predictive models, spreadsheets, and tools.
  • Proven track record of upholding workplace safety and ability to abide by WSP’s health, safety and drug/alcohol and harassment policies.
  • Ability to work schedules conducive to project‑specific requirements that may extend beyond the typical workweek.
  • Occasional travel may be required depending on project‑specific requirements.
Preferred Qualifications
  • Master’s Degree in Engineering
  • Essential Professional Licensure/Certification
  • Power system courses covering topics such as three‑phase power, load flow and reactive compensation, protective relaying, symmetrical components, transmission line theory, power system transients, dynamic stability, and power system electromagnetics
  • Internships and experience in technical areas and software listed in the Job Description section
  • Engineer In Training (EIT) certification, with the expectation to work toward professional engineering registration (PE)
  • Experience in mentoring others and/or providing technical leadership in customer‑focused engineering projects
  • A member of and/or actively participates in professional practice organizations.
Disclaimer

Relocation assistance is not available for this position.

WSP Benefits

WSP provides a comprehensive suite of benefits focused on providing health and financial stability throughout the employee’s career. These benefits include coverage related to medical, dental, vision, disability, and life; retirement savings; paid sick leave; paid vacation (or other personal time); paid parental leave; and paid time off for purposes of bereavement, voting, and/or attendance at naturalization proceedings.

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