1

Senior Computer Operator Jobs in Missouri (NOW HIRING)

$75K/yr

Title 32 employees will not be militarily senior to their full-time supervisor (grade inversion ... as computer operator or assistant, computer sales representative, program analyst, or other ...

Surveillance Operator

Saint Joseph, MO ยท On-site

$16.25 - $20.25/hr

Report directly to the Surveillance Manager, Supervisor or Senior Operator. * Supports other ... COMPUTER SKILLS Must have Microsoft Office experience and basic computer skills. DISCLAIMER: This ...

Surveillance Operator I

La Grange, MO ยท On-site

$16.50 - $20.75/hr

... Senior Operators or the Manager in compliance with the Commission, departmental, and company ... COMPUTER SKILLS Must have high level computer skills with experience in excel. REASONING ABILITY ...

next page

Showing results 1-20

Senior Computer Operator information

See Missouri salary details

$23.4K

$75.3K

$153.4K

How much do senior computer operator jobs pay per year?

As of Aug 29, 2026, the average yearly pay for senior computer operator in Missouri is $75,310.00, according to ZipRecruiter salary data. Most workers in this role earn between $38,900.00 and $96,600.00 per year, depending on experience, location, and employer.

What is a senior computer operator?

Senior Computer Operators are experienced professionals responsible for overseeing the operation of computer systems and related equipment in an organization. They monitor system performance, troubleshoot technical issues, and ensure that scheduled tasks such as data backups and batch jobs run smoothly. Additionally, they may supervise junior operators, document procedures, and coordinate with IT staff to resolve complex problems. Their role is crucial for maintaining the reliability and efficiency of computer operations.

What are the key skills and qualifications needed to thrive as a senior computer operator?

To thrive as a Senior Computer Operator, you need strong knowledge of computer systems operations, troubleshooting, and a background in IT or computer science, often supported by relevant certifications or experience. Familiarity with operating systems (such as Windows, Linux, or mainframes), job scheduling software, and monitoring tools is typically required. Attention to detail, problem-solving ability, and effective communication help resolve issues efficiently and coordinate with technical teams. These skills ensure smooth workflow, system reliability, and rapid response to operational challenges in enterprise environments.

What are some typical challenges senior computer operators face when managing large-scale IT systems?

Senior Computer Operators often encounter challenges such as ensuring system uptime during maintenance windows, quickly resolving unexpected hardware or software failures, and effectively coordinating with IT support teams to minimize service disruptions. They must also stay vigilant against security threats and maintain detailed logs for audits and troubleshooting. Strong communication skills and the ability to prioritize tasks under pressure are critical for handling these responsibilities in a fast-paced IT environment.

What is the difference between Senior Computer Operator vs Computer Operator?

AspectSenior Computer OperatorComputer Operator
CredentialsTypically requires more experience, possibly certifications in computer operations or related fieldsHigh school diploma or equivalent; some certifications may be preferred
Work EnvironmentData centers, large IT departments, or control rooms with complex systemsOffice settings, smaller data centers, or manufacturing environments
ResponsibilitiesOverseeing daily operations, troubleshooting, and supervising junior staffMonitoring systems, running scheduled tasks, basic troubleshooting
Usage in IndustryCommonly used in large organizations with complex IT infrastructureWidespread across various industries for routine system operations

The main difference between a Senior Computer Operator and a Computer Operator lies in experience, responsibilities, and scope of work. Senior Computer Operators typically handle more complex tasks, supervise others, and have more industry experience, whereas Computer Operators focus on routine system monitoring and basic troubleshooting.

What career paths can a senior computer operator take?

A senior computer operator can advance to roles such as systems administrator, network administrator, or IT supervisor by gaining additional certifications and technical skills. They may also move into IT management, cybersecurity, or database administration, depending on their interests and experience.

Which senior computer operator job has the highest salary?

Senior computer operators with specialized skills in systems management, automation, and experience with enterprise-level hardware and software tend to have the highest salaries. Salaries can also vary based on industry, certifications, and location, with those working in finance, technology, or large corporations typically earning more.

What are the most commonly searched types of Computer Operator jobs in Missouri?

The most popular types of Computer Operator jobs in Missouri are:

What cities in Missouri are hiring for Senior Computer Operator jobs?

Cities in Missouri with the most Senior Computer Operator job openings:

Infographic showing various Senior Computer Operator job openings in Missouri as of August 2026, with employment types broken down into 1% Internship, 1% As Needed, 84% Full Time, 11% Part Time, 2% Contract, and 1% Nights. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution, with an average salary of $75,310 per year, or $36.2 per hour.

Senior Computer Vision Algorithm/Software Engineer

SAAZ Micro Inc.

California, MO โ€ข On-site

$120 - $160/hr

Other

This job post hasย expired today.ย Applications are no longer accepted.


Job description

SAAZ is seeking an exceptional Senior Computer Vision Algorithm & Software Engineer to architect and implement advanced processing pipelines for next-generation electro-optical and infrared (EO/IR) imaging systems.

This multidisciplinary role bridges theoretical research and high-performance software engineering, requiring handsโ€‘on expertise in image processing, computer vision, convolutional neural networks (CNNs), or spiking neural networks (SNNs) rather than traditional application software development alone. Operating with a high degree of autonomy, the successful candidate will hold a graduate degreeโ€”preferably a PhDโ€”and possess the independent drive to conceptualize, design, and deploy sophisticated algorithms from scratch without direct supervision.

Working closely with Firmware, FPGA, Systems, and Product Engineering teams, you will drive algorithmic innovation for advanced camera products deployed in aerospace, defense, and commercial imaging, guiding developments from concept through hardwareโ€‘software integration and production.

Key Responsibilities
  • Algorithm Architecture & Conceptualization: Design, prototype, and refine advanced image processing and computer vision algorithmsโ€”including traditional image enhancement, noise reduction, and modern deep learning models (CNNs/SNNs)โ€”tailored for EO/IR sensor architectures.
  • Autonomous End-to-End Implementation: Independently translate mathematical models and theoretical concepts into high-performance, maintainable software implementations without needing direct stepโ€‘byโ€‘step supervision.
  • Cross-Functional System Integration: Collaborate closely with Firmware, FPGA, and Systems Engineering teams to optimize, port, and validate algorithms on real-time target hardware and embedded camera processing platforms.
  • EO/IR Pipeline Optimization: Develop and tune edge-detection, feature extraction, non-uniformity correction (NUC), dynamic range expansion, object
    and tracking algorithms specialized for complex electro-optical and infrared environments.
  • Research & Feasibility Trade Studies: Conduct independent trade studies, literature reviews, and rapid prototyping to evaluate novel machine learning and spiking neural network (SNN) approaches for low-power or bandwidth-constrained imaging systems.
  • Verification & Testing Pipelines: Build robust simulation environments, ground-truth dataset collection methodologies, and automated testing frameworks to evaluate algorithm accuracy, latency, and performance edge cases.
  • Technical Documentation & Mentorship: Document mathematical formulations, algorithmic trade-offs, and software architectures to support production handover, system qualification, and intellectual property development.
Minimum / Required Qualifications:
  • Education & Experience: Master's degree in Electrical Engineering, Computer Science, Applied Mathematics, Optical Engineering, or a closely related field with 5+ years of handsโ€‘on algorithmic experience, or a Ph.D. with 2+ years of relevant research/industry experience.
  • Domain Expertise: Proven handsโ€‘on track record developing and deploying core image processing, computer vision, or neural network models (CNNs or SNNs). Pure application software development without signal processing or computer vision experience will not be considered.
  • EO/IR Pipeline Knowledge: Direct familiarity with physical imaging concepts and sensor data pipelines, such as non-uniformity correction (NUC), bad pixel replacement, dynamic range compression, or thermal/optical noise reduction.
  • Core Technical Stack: Proficiency in C/C++ and Python for rapid prototyping, algorithm implementation, and performance benchmarking.
  • Mathematical Foundations: Strong foundation in linear algebra, multi-variable calculus, spatial/frequency-domain filtering, and statistical signal processing.
  • Autonomous Execution: Demonstrated ability to drive projects independently from literature review and mathematical formulation through to functional code without daily supervision.
Preferred Qualifications:
  • Advanced Degree: Ph.D. focusing on Computer Vision, Spiking Neural Networks (SNNs), Neuromorphic Computing, or Infrared Image Processing.
  • Hardware-Aware Software Optimization: Experience adapting heavy algorithmic models or neural networks for resource-constrained platforms, such as embedded GPUs (NVIDIA Jetson), FPGAs, or specialized DSP architectures.
  • Advanced Neural Architectures: Handsโ€‘on research or deployment experience with Spiking Neural Networks (SNNs), event-based neuromorphic sensors, or ultra-low-latency event processing for edge execution.
  • Specialized EO/IR Algorithms: Background in real-time object detection/tracking, multi-sensor data fusion (EO/IR registration), or high dynamic range (HDR) image reconstruction.
  • Simulation & Frameworks: Expertise with deep learning and vision frameworks (e.g., PyTorch, OpenCV, TensorRT, LibTorch) alongside customized C++ execution pipelines.
Success Metrics:
  • Algorithms execute within defined latency, framerate, and real-time processing constraints.
  • CPU, GPU, and embedded memory utilization remain within target resource budgets.
  • Algorithms achieve specified precision, recall, and detection/tracking accuracy metrics across target EO/IR datasets.
  • Code passes performance, memory leak, and static analysis checks without critical warnings or errors.
  • Compliance with project coding, testing, and documentation standards.
  • Unit, integration, and ground-truth simulation tests successfully completed.
  • Seamless pipeline integration and data throughput achieved across cross-functional interfaces (Firmware, FPGA, host APIs).
  • Algorithmic robustness validated under adverse real-world conditions (e.g., thermal drift, low contrast, high dynamic range, atmospheric noise).
#J-18808-Ljbffr