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Quantum Computing Engineer Junior Jobs in Raleigh, NC

Senior DeltaV Controls Engineer

Raleigh, NC ยท On-site

$94K - $124K/yr

Define computing infrastructure requirements, including server architecture, virtualization ... Mentor and provide technical leadership to junior engineers and cross-disciplinary teams

Mentor, motivate, and coach junior members on technical best practices and inspire professional ... computing (CUDA, OpenCL) and HPC system software stack The wage range for this role takes into ...

... data science, engineering, and advanced mathematics. * Conceptual Teaching & Problem-Solving ... learning, and quantum mechanics applications. * Curriculum Awareness & Adaptive Instruction:

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Quantum Computing Engineer Junior information

See Raleigh, NC salary details

$32.6K

$69.8K

$106.4K

How much do quantum computing engineer junior jobs pay per year?

As of Jun 9, 2026, the average yearly pay for quantum computing engineer junior in Raleigh, NC is $69,795.00, according to ZipRecruiter salary data. Most workers in this role earn between $47,100.00 and $77,800.00 per year, depending on experience, location, and employer.

What does a Quantum Computing Engineer Junior do?

A Quantum Computing Engineer Junior assists in designing, developing, and testing quantum algorithms and hardware components. They typically work under the guidance of senior engineers and researchers, helping to build and maintain quantum computing systems. Their responsibilities can include coding quantum programs, running simulations, troubleshooting issues, and staying updated on the latest advancements in quantum technologies. This entry-level role offers hands-on experience and learning opportunities in the rapidly evolving field of quantum computing.

What are some common challenges faced by junior quantum computing engineers when transitioning from academia to industry?

Junior quantum computing engineers often find the transition from academia to industry challenging due to differences in project timelines, collaboration styles, and the need to quickly adapt to proprietary hardware and software tools. In industry, there's a greater emphasis on working as part of multidisciplinary teams and delivering results under tight deadlines. Additionally, engineers may need to broaden their expertise beyond theoretical concepts to include practical skills such as coding, debugging, and optimizing algorithms for real-world quantum devices. Continuous learning and adaptability are key to thriving in this dynamic and evolving field.

What is the difference between Quantum Computing Engineer Junior vs Quantum Computing Engineer?

AspectQuantum Computing Engineer JuniorQuantum Computing Engineer
Required CredentialsBachelor's degree in physics, computer science, or related field; some experience or internshipsBachelor's or master's degree; more experience or specialized certifications preferred
Work EnvironmentEntry-level labs, research teams, or tech companies; supervised projectsMore independent roles; involved in design, development, and testing of quantum algorithms and hardware
Employer & Industry UsageStartups, research institutions, tech companies exploring quantum techEstablished tech firms, research labs, and industry leaders in quantum computing

The main difference between a Quantum Computing Engineer Junior and a Quantum Computing Engineer lies in experience, responsibilities, and independence. Junior roles focus on learning and supporting projects, while full engineers take on more complex tasks and leadership in quantum computing development.

What are the key skills and qualifications needed to thrive as a Quantum Computing Engineer Junior, and why are they important?

To thrive as a Quantum Computing Engineer Junior, you need a solid background in quantum mechanics, linear algebra, and computer science, typically supported by a degree in physics, computer science, or a related field. Familiarity with quantum programming languages like Qiskit or Cirq, and experience using quantum simulators and cloud-based quantum platforms are commonly required. Strong analytical thinking, problem-solving abilities, and curiosity are standout soft skills in this position. These skills and qualities are vital for contributing to complex quantum projects and advancing innovation in this rapidly evolving field.
What are the most commonly searched types of Quantum Computing Engineer jobs in Raleigh, NC? The most popular types of Quantum Computing Engineer jobs in Raleigh, NC are:
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What cities near Raleigh, NC are hiring for Quantum Computing Engineer Junior jobs? Cities near Raleigh, NC with the most Quantum Computing Engineer Junior job openings:

Senior DeltaV Controls Engineer

Upcoresolutions

Raleigh, NC โ€ข On-site

$94K - $124K/yr

Full-time

Posted 2 days ago


Job description

Our client is looking for - a Senior DeltaV Engineer opportunity in our Raleigh, NC office.

This person will lead the design, implementation, and project management of large-scale capital automation projects within the Life Sciences industry.

This role requires proficiency with Emerson DeltaV systems and a strong technical background in designing and delivering cGMP-compliant automation solutions.

The ideal candidate will have a proven track record of managing complete project life cycles, ensuring compliance with industry regulations, and collaborating with cross-functional teams to optimize biopharmaceutical and medical device manufacturing processes.

RESPONSIBILITIES:

  • All areas of responsibility listed below are essential to the satisfactory performance of this position, with reasonable accommodation, if necessary.
  • Design and implement DeltaV control systems for complex Life Sciences capital projects
  • Develop and manage project schedules, budgets, and resources, ensuring on-time and within-budget project execution
  • Lead system architecture development and control strategies to enhance manufacturing efficiency
  • Design batch sequencing, phase logic, and recipe structures to optimize production efficiency and regulatory compliance
  • Develop DeltaV graphics using DeltaV Live and DeltaV Operate in alignment with ISA-101 HMI guidelines
  • Utilize a class-based approach in overall design to maximize scalability and standardization across projects
  • Develop electrical designs, including power distribution, panel layouts, and grounding strategies for automation systems
  • Specify and procure instrumentation and hardware components
  • Design and implement industrial networking solutions, including Ethernet/IP, Modbus TCP/IP, Profibus, and Foundation Fieldbus
  • Integrate 3rd party equipment with DeltaV systems using protocols such as OPC UA, Ethernet/IP, and Modbus
  • Define computing infrastructure requirements, including server architecture, virtualization, cybersecurity, and redundancy planning
  • Design, plan, and specify DeltaV system licensing based on user requirements and project scope to ensure cost-effective and scalable solutions
  • Oversee the full project lifecycle, from requirements gathering to commissioning and validation
  • Ensure project deliveries and execution methodology compliance with GAMP5, cGMP, 21 CFR Part 11, and industry best practices
  • Develop acceptance protocols and manage the execution of Factory Acceptance Testing (FAT) and Site Acceptance Testing (SAT) to validate system performance
  • Mentor and provide technical leadership to junior engineers and cross-disciplinary teams
  • Coordinate with clients, stakeholders, and regulatory bodies to ensure project success
  • Implement advanced automation strategies, including ISA-88 batch processing, historian integration, and alarm management
  • Troubleshoot complex automation challenges and drive continuous improvements in system performance
  • Travel up to 25% for on-site support, commissioning, and client engagement

QUALIFICATIONS:

  • Professional degree in Electrical Engineering, Control Systems Engineering, Chemical Engineering, or a related field.
  • Minimum of 8-15 years in automation and control system engineering, with a strong focus on Life Sciences projects.
  • 8-15 years of hands-on experience with Emerson DeltaV systems, focusing on system design and project execution.
  • Proficiency in DeltaV Live and DeltaV Operate, including experience designing high-performance HMIs and operator interfaces.
  • Expertise in ISA-101 HMI design principles and high-performance graphic design strategies.
  • Strong experience in class-based configuration and design.
  • Expertise in ISA-88 batch processing, historian solutions, and advanced control strategies.
  • Proven experience managing large-scale capital projects in the Life Sciences industry.
  • Strong knowledge of automation protocols (HART, Foundation Fieldbus, Profibus, Modbus TCP/IP, Ethernet/IP, OPC UA, IO-Link).
  • Deep understanding of industrial networking for communication between controllers, servers, and HMIs.
  • Strong knowledge of cGMP, GAMP5, and regulatory compliance for biopharmaceutical manufacturing.
  • Experience integrating electrical and process control systems.
  • Strong leadership, organizational, and communication skills for cross-functional collaboration.
  • Experience specifying and designing electrical components, including MCCs, VFDs, control panels, and power distribution systems.
  • Knowledge of server infrastructure and virtualization technologies for robust DeltaV system deployment.
  • Extensive experience designing and implementing batch control systems within regulated Life Sciences environments.
  • Experience in OEM system integration using OPC UA, Ethernet/IP, and other industrial communication protocols.
  • Ability to plan, specify, and manage DeltaV system licensing to optimize project implementation.
  • Knowledge of Rockwell Automation, Inductive Automation Ignition, Siemens PCS7, or other DCS/SCADA systems is a plus.

WORKING CONDITIONS:

  • The work environment characteristics described here represent those an employee encounters while performing the essential functions of this job. Reasonable accommodation may be made to enable individuals with disabilities to perform essential functions.
  • Office Work:
  • Office desk/cubicle environment
  • Frequent use of computers, engineering tools, and industrial control systems

PHYSICAL DEMANDS:

  • Occasional lifting, climbing, and working in production facilities during commissioning activities
  • Work may include working weekends, holidays, nightshift, and extended hours to meet deadlines and client requirements.

Our People:

  • Empowered Individuals โ€“ Employee-owned, we are able to hire the best and empower them to develop and deliver solutions
  • Rewarded & Motivated โ€“ Investing in continuing education and world-class benefits keeps our staff motivated
  • Positive Attitudes โ€“ Dedicated experts are committed in the long run and bring a positive, can-do attitude to your project
  • Knowledgeable โ€“ Recognized industry experts reinforced with ongoing training remain knowledgeable on the latest industry trends and directions

*Job Descriptions are not exhaustive lists of all skills, responsibilities, or efforts associated with a job. They reflect principal job elements essential for performing the job and evaluating performance.