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Opc Modeling Engineer Jobs in Kentucky (NOW HIRING)

Controls Engineer

Bowling Green, KY · Hybrid

$99K - $115K/yr

Train, tune, and validate vision models to ensure accuracy, robustness, and regulatory compliance ... Solid understanding of industrial communication protocols including EtherNet/IP, Modbus, and OPC UA

Train, tune, and validate vision models to ensure accuracy, robustness, and regulatory compliance ... Solid understanding of industrial communication protocols including EtherNet/IP, Modbus, and OPC UA

Opc Modeling Engineer information

What are the key skills and qualifications needed to thrive as an OPC Modeling Engineer, and why are they important?

To thrive as an OPC Modeling Engineer, you need a strong background in semiconductor physics, computational modeling, and a relevant engineering or science degree. Expertise in OPC software tools like Mentor Calibre or Synopsys, along with experience in scripting languages such as Python or Perl, is typically required. Analytical thinking, attention to detail, and effective cross-functional communication are vital soft skills for this role. These skills ensure precise photolithography models, efficient design-to-manufacturing processes, and seamless collaboration with design and fabrication teams.

What is the difference between Opc Modeling Engineer vs PCB Design Engineer?

AspectOpc Modeling EngineerPCB Design Engineer
Required CredentialsBachelor's in Electrical Engineering or related, knowledge of OPC standardsBachelor's in Electrical Engineering, Electronics, or PCB Design certifications
Work EnvironmentSemiconductor fabrication, EDA tool developmentElectronics manufacturing, product development
Industry UsageSemiconductor industry, IC manufacturingConsumer electronics, industrial equipment
Common Search/ComparisonYesNo

Opc Modeling Engineers focus on creating models for optical proximity correction in semiconductor manufacturing, working closely with EDA tools and chip fabrication. PCB Design Engineers develop printed circuit boards for electronic devices, emphasizing layout and electrical integrity. While both roles require electrical engineering knowledge, they serve different stages of electronic product development and are used in distinct industry segments.

What are some common challenges faced by OPC Modeling Engineers when working with new process nodes?

OPC Modeling Engineers often encounter challenges such as adapting to the increasing complexity of advanced process nodes, where feature sizes become smaller and patterning requirements grow more demanding. Accurate model calibration becomes more time-consuming, requiring close collaboration with lithography, process, and design teams. Additionally, integrating new materials and technologies can introduce unforeseen variables, making continuous learning and flexible problem-solving essential for success in this role.

What are OPC Modeling Engineers?

OPC Modeling Engineers are specialists who develop, calibrate, and maintain optical proximity correction (OPC) models used in semiconductor manufacturing. These engineers work to improve the fidelity of photolithography processes by simulating and correcting distortions that occur when transferring circuit patterns onto silicon wafers. Their expertise helps ensure that microchips are fabricated with high precision and yield, enabling the continued advancement of smaller and more complex semiconductor devices. OPC Modeling Engineers typically collaborate with process engineers, software developers, and design teams to optimize and implement OPC strategies.
What job categories do people searching Opc Modeling Engineer jobs in Kentucky look for? The top searched job categories for Opc Modeling Engineer jobs in Kentucky are:
What cities in Kentucky are hiring for Opc Modeling Engineer jobs? Cities in Kentucky with the most Opc Modeling Engineer job openings:
PLC Engineer

PLC Engineer

Quantum World Technologies Inc

Louisville, KY • On-site

Full-time

Posted 24 days ago


Job description

Job Title: PLC Engineer

Location: Louisville, KY (Onsite- 5 days a week)

Work Hours: 7:00 AM to 3:30 PM EST

Travel Required - 30%

Hire Type: Fulltime

Must Have: PLC expertise, OT, HMI, Control Systems, machine connectivity

Good to Have: MQTT, Edge Integration, machine learning, IT/OT Integration

Roles & Responsibilities/ Technical Depth:

  • Expertise in ControlLogix/CompactLogix, Siemens S7 series, MELSEC, Omron, ABB controllers.
  • Covers PLC/DCS/Safety Programming, HMI/SCADA/Batch Programming, and Controls Library Creation.
  • Includes modernization strategies, compliance (21 CFR Part 11 / GMP), and OT lifecycle management.
  • OT modernization, line integration, and solution architecture.
  • hardware/software BoM, commissioning, and hypercare support.
  • Retrofitting hardware, configuring PLCs, integrating sensors for real time data extraction.
  • Develop communication protocols and data flow configurations.
  • Support historian setup and ISA 95 alignment.
  • Standardize procedures for connected machines deployment.
  • Architect scalable, secure, and high-performance SCADA/MES/IIoT systems.
  • FAT & SAT commissioning, industrial automation projects
  • Integrate industrial protocols (OPC UA, MQTT, Modbus, Ethernet/IP) and databases (SQL Server, PostgreSQL, MySQL, Oracle).
  • Configure Gateways, tag providers, alarming, and historical data storage.
  • Collaborate with IT/OT teams for infrastructure integration (cloud, virtualization, networking).
  • Conduct code reviews and enforce development standards.
  • Serve as the technical point of contact for customers throughout the project lifecycle.
  • Conduct requirements gathering sessions, technical workshops, and solution walkthroughs.
  • Well versed with Onsite offshore model to leverage offshore team for all development work.
  • Translate business needs into technical specifications and ensure alignment with customer expectations.
  • Provide ongoing support and consultation, including troubleshooting and enhancement recommendations.
  • Lead project review meetings with internal stakeholders and customers.
  • Present architecture decisions, implementation progress, and risk mitigation strategies.
  • Document lessons learned and contribute to continuous improvement of delivery practices.
  • Ensure compliance with quality standards, cybersecurity policies, and regulatory requirements.