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Sensor Jobs in Georgia (NOW HIRING)

The successful candidate will contribute to the development and deployment of robot control software, sensor integration, navigation algorithms, and fleet management systems that support safe ...

Develop ground-truth and sensor-fidelity models for camera, LiDAR, radar, GNSS, and inertial sensors. * Support virtual validation initiatives to reduce physical testing requirements. * Integrate ...

Develop ground-truth and sensor-fidelity models for camera, LiDAR, radar, GNSS, and inertial sensors. * Support virtual validation initiatives to reduce physical testing requirements. * Integrate ...

Develop ground-truth and sensor-fidelity models for camera, LiDAR, radar, GNSS, and inertial sensors. * Support virtual validation initiatives to reduce physical testing requirements. * Integrate ...

Systems Engineering Intern

Peachtree Corners, GA ยท On-site

$15.75 - $20.50/hr

Embedded coding for sensor, control, and data acquisition systems * Hardware prototyping, wiring, bring-up, and integration * Collect, analyze, and distribute data to various engineering teams

Apply engineering expertise in modeling and simulation, weapon system integration, and sensor technologies to support mission readiness, operational assessments, and capability development. * Lead ...

Medical Assistant

Athens, GA ยท On-site

$14.75 - $19/hr

This sensor has to be inserted into slots for appropriate capture. One slot is parallel to the ground and is 1/2 inch from the floor; this sensor has to be removed completely, lifted 2 feet then ...

Showing results 41-60

Sensor information

See Georgia salary details

$12

$25

$38

How much do sensor jobs pay per hour?

As of Sep 14, 2026, the average hourly pay for sensor in Georgia is $25.10, according to ZipRecruiter salary data. Most workers in this role earn between $20.29 and $29.04 per hour, depending on experience, location, and employer.

What is a sensor?

A Sensor job typically involves working with sensor technologies to collect, analyze, and interpret data for various applications. This role may include designing, developing, testing, and maintaining sensors used in industries like automotive, healthcare, manufacturing, and environmental monitoring. Responsibilities often involve programming, signal processing, calibration, and integration with other systems. Sensor professionals may work as engineers, technicians, or researchers focused on improving accuracy and reliability. The job requires knowledge of electronics, physics, and data analysis tools.

What are the key skills and qualifications needed to thrive in the sensor position, and why are they important?

To thrive as a Sensor in an industrial or scientific setting, you need strong analytical and observational skills, attention to detail, and familiarity with data collection or quality assessment methodologies. Typically, Sensors use specialized measuring instruments, data logging software, and may require certifications relevant to safety or technical standards. Strong communication, teamwork, and problem-solving abilities help Sensors excel, especially when relaying findings or collaborating on process improvements. These skills are vital for ensuring accurate and reliable monitoring, supporting operational efficiency, and identifying potential issues promptly.

What are some common challenges sensors face on the job?

Sensors often work in environments where maintaining accuracy and consistency under time constraints can be a challenge, especially when multiple samples need to be analyzed quickly. Adapting to new technologies, processes, or strict regulatory standards may also require ongoing training and attention. Additionally, Sensors must remain vigilant for minor anomalies, as small errors can impact overall quality or safety. However, these challenges are balanced by established procedures, team support, and opportunities to develop specialized technical expertise over time.

How do you become a sensor engineer?

To become a sensor engineer, typically a bachelor's degree in electrical engineering, mechanical engineering, or a related field is required. Gaining experience with sensor design, testing, and calibration, along with proficiency in programming and tools like MATLAB or LabVIEW, is also important; advanced roles may require a master's degree or higher.

What are popular job titles related to Sensor jobs in Georgia?

For Sensor jobs in Georgia, the most frequently searched job titles are:

What job categories do people searching Sensor jobs in Georgia look for?

The top searched job categories for Sensor jobs in Georgia are:

Infographic showing various Sensor job openings in Georgia as of August 2026, with employment types broken down into 81% Full Time, 9% Part Time, 7% Contract, and 3% Nights. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution, with an average salary of $52,207 per year, or $25.1 per hour.

Software Engineer

Newnan, GA โ€ข On-site

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 2 days ago


Job description

Software Engineer

Join the Grenzebach Team

Grenzebach Corporation is a high-tech company focusing on the future of automation, our customers, and our employees. We are convinced that only those who explore new paths and face today's issues with an open mind can actively shape the world.

An open and appreciative culture unites our multinational group of companies. Embark on a new course and join us on an exciting journey that will change global markets from the bottom up. Become part of the Grenzebach family, grow professionally and personally, and accompany our customers on their journey into the world of tomorrow!

Benefits / Perks:

FREEย Employee Insurance - Medical, Dental and Vision

FREEย Long-Term and Short-Term Disability Insurance

FREEย Gym Membership

FREEย Life Insurance

20 PTO Days Starting Day 1 ย  ย  ย  ย  ย ย 

401k with Match

10 Paid Holidays ย  ย  ย  ย  ย  ย  ย  ย  ย  ย  ย  ย  ย  ย ย 

Annual Bonus Opportunity

Employee Assistance Program

Position Overview

We are seeking a highly skilled Software Engineer โ€“ Autonomous Mobile Robotics to support the design, development, integration, and lifecycle management of software systems used in Automated Guided Vehicles (AGVs) and Autonomous Mobile Robots (AMRs) operating in data center environments.

This role focuses on developing and maintaining software architectures that enable reliable navigation, perception, and fleet coordination of robotic vehicles operating in complex facilities such as manufacturing plants, logistics centers, and data center infrastructure environments.

The successful candidate will contribute to the development and deployment of robot control software, sensor integration, navigation algorithms, and fleet management systems that support safe, scalable, and high-performance robotic operations.

Job Description:

  • Develop, maintain, and optimize software for AGV and AMR control systems.
  • Implement and support navigation, localization, and motion control algorithms used in autonomous vehicles.
  • Develop software modules for real-time robot control and industrial automation systems.
  • ย Implement and maintain SLAM (Simultaneous Localization and Mapping) navigation algorithms.
  • Develop and maintain software using CODESYS for industrial robotic systems.
  • Integrate robot control systems with industrial PLC architecture and automation infrastructure.
  • Support communication protocols used in industrial robotics environments (EtherCAT, CAN, TCP/IP, Modbus, etc.).
  • Design and support robot SLAM navigation and fleet management systems responsible for task scheduling, traffic control, and system coordination.
  • Implement communication frameworks enabling multi-robot coordination and centralized fleet supervision.
  • ย Integrate robotics systems with WMS, MES, and facility control systems.
  • Develop simulation and test environments for validating navigation algorithms and robot behaviors.
  • Support system testing, commissioning, and Factory Acceptance Testing (FAT) for robotic platforms.
  • Debug field issues related to navigation, perception, and fleet coordination.
  • Optimize system performance for high uptime and reliability in industrial operations.
  • Support diagnostics, telemetry, and monitoring systems for robot fleets.
  • Collaborate with hardware, controls, and mechanical teams to improve overall robot system performance.

Requirements:

Required Qualifications

  • Bachelorโ€™s or Masterโ€™s degree in Computer Science, Robotics, Mechatronics, Electrical Engineering, or related field.
  • 2 years of experience developing software for robotics, autonomous systems, or industrial automation
  • Strong programming experience in C/C++, Python, or similar languages
  • Experience with CODESYS or PLC-based control systems
  • Hands-on experience with LiDAR sensor integration and processing
  • Familiarity with real-time control systems and embedded software environments
  • Experience working in industrial or manufacturing environments

Preferred Qualifications

  • Experience developing software for AGVs, AMRs, mobile robotics, or warehouse automation systems
  • Experience implementing or supporting SLAM-based navigation systems
  • Experience with robot fleet management or multi-robot coordination systems
  • Experience with ROS / ROS2 robotics middleware
  • Familiarity with path planning algorithms (A, D, RRT, etc.) *
  • Experience with industrial communication protocols (EtherCAT, CANOpen, OPC UA)
  • Experience integrating robotics systems with MES/WMS platforms
  • Experience with simulation environments such as Gazebo or digital twin systems
  • Knowledge of robot safety standards (ISO 3691-4, ISO 13849, etc.)

Key Technical Skill Areas

Candidates should demonstrate experience or familiarity with the following technologies:

  • CODESYS PLC Programming
  • ย LiDAR-based perception systems
  • SLAM navigation algorithms
  • Autonomous robot localization and mapping
  • Robot motion control
  • Multi-robot fleet management systems
  • Industrial automation and controls integration
  • Sensor fusion and perception processing

Work Environment

Heavy manufacturing / industrial robotics environment

Interaction with cross-functional teams including:

  • Mechanical engineering
  • Electrical engineering
  • automation controls
  • commissioning teams
  • production and manufacturing operations

Support for robot commissioning, testing labs, and Factory Acceptance Testing (FAT)

Key Traits for Success

  • Strong systems thinking and debugging ability
  • Ability to work in complex hardware-software integrated environments
  • Comfort operating in fast-paced industrial development cycles
  • Strong collaboration with engineering and production teams
  • Focus on reliability, safety, and operational scalability