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5G Rf Optimization Engineer Jobs in Canton, MI (NOW HIRING)

Senior Systems Engineer, Telematics

Troy, MI ยท On-site

$99K - $135K/yr

... as WIFI, RF connectivity, multi-antenna (MIMO) systems, 5G, and/or Bluetooth. * Strong ... Experience with systems engineering activities, including requirements decomposition, interface ...

Senior Systems Engineer, Telematics

Troy, MI ยท On-site

$99K - $135K/yr

... as WIFI, RF connectivity, multi-antenna (MIMO) systems, 5G, and/or Bluetooth. * Strong ... Experience with systems engineering activities, including requirements decomposition, interface ...

Ensure optimization of software through design reviews. Collaborate with extended teams, including ... Familiarity with telematics technologies spanning Ethernet, Wi-Fi, Cellular (LTE and 5G), and GNSS ...

Infotainment System Engineer

Ypsilanti, MI ยท On-site

$151K/yr

... LTE, and 4G/5G technologies to support server validation as part of the overall End-to-End ... optimal performance Conduct system level validation on Infotainment aspects such as Radio, BT ...

... LTE, and 4G/5G technologies to support server validation as part of the overall End-to-End ... optimal performance Conduct system level validation on Infotainment aspects such as Radio, BT ...

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Showing results 1-20

5G Rf Optimization Engineer information

See Canton, MI salary details

$34.3K

$109.1K

$169.6K

How much do 5g rf optimization engineer jobs pay per year?

As of Jun 14, 2026, the average yearly pay for 5g rf optimization engineer in Canton, MI is $109,060.00, according to ZipRecruiter salary data. Most workers in this role earn between $90,400.00 and $128,800.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a 5G RF Optimization Engineer, and why are they important?

To thrive as a 5G RF Optimization Engineer, you need a solid background in wireless communications, RF engineering principles, and a relevant engineering degree. Expertise in RF planning tools, drive test equipment, and knowledge of system optimization platforms such as TEMS, Atoll, or Actix, along with relevant certifications like CCNA or 5G-specific credentials, are typically required. Strong analytical thinking, troubleshooting abilities, and effective communication skills help you collaborate with cross-functional teams and resolve network issues efficiently. These competencies are crucial for ensuring optimal network performance, customer satisfaction, and successful deployment of advanced 5G technologies.

What does a 5G RF Optimization Engineer do?

A 5G RF Optimization Engineer is responsible for ensuring optimal performance of 5G wireless networks by analyzing and improving radio frequency (RF) parameters. They use specialized tools to monitor network quality, identify coverage gaps, and resolve issues related to signal strength, interference, and data throughput. Their work involves tuning network equipment, conducting drive tests, and collaborating with other engineers to implement solutions that enhance user experience and network efficiency.

What are some common challenges faced by a 5G RF Optimization Engineer when deploying new sites, and how are they typically addressed?

A 5G RF Optimization Engineer often encounters challenges such as interference management, handover optimization, and ensuring consistent coverage in dense urban environments during new site deployments. These challenges are typically addressed through detailed drive testing, network parameter tuning, and close collaboration with network planners and field teams. Engineers also utilize advanced software tools to analyze performance metrics and implement solutions like antenna tilt adjustments, frequency planning, and power optimization to enhance network quality.

What is the difference between 5G Rf Optimization Engineer vs RF Network Engineer?

Aspect5G Rf Optimization EngineerRF Network Engineer
Primary FocusOptimizing 5G radio frequency performance and coverageDesigning, deploying, and maintaining RF networks
CertificationsRF, wireless, or telecom certifications, often including 5G-specific trainingSimilar certifications, with emphasis on RF and network design
Work EnvironmentField testing, site surveys, and network optimization in telecom companiesNetwork planning, deployment, and troubleshooting in telecom or service providers

The 5G Rf Optimization Engineer specializes in fine-tuning 5G radio networks to ensure optimal performance, coverage, and capacity. In contrast, the RF Network Engineer focuses on designing and maintaining RF networks, including 4G and 5G, across various stages. Both roles require similar certifications and often work within the same industry environments, but their core responsibilities differ in scope and focus.

What are popular job titles related to 5G Rf Optimization Engineer jobs in Canton, MI? For 5G Rf Optimization Engineer jobs in Canton, MI, the most frequently searched job titles are:
What job categories do people searching 5G Rf Optimization Engineer jobs in Canton, MI look for? The top searched job categories for 5G Rf Optimization Engineer jobs in Canton, MI are:
What cities near Canton, MI are hiring for 5G Rf Optimization Engineer jobs? Cities near Canton, MI with the most 5G Rf Optimization Engineer job openings:
Senior Researcher / Next Generation Wireless Precision Sensors

Senior Researcher / Next Generation Wireless Precision Sensors

Optimal Inc.

Warren, MI โ€ข On-site

Contractor

Posted 4 days ago


Job description

Senior Researcher / Senior Engineer - Next-Generation Wireless Precision Sensors
Role Summary
We are seeking a Senior Researcher / Senior Engineer to lead development of next-generation wireless sensing solutions for Future Factory manufacturing systems. This role will focus on high-precision, machine-attachable sensors that can operate in industrial environments and communicate over emerging 5G and 6G networks. The successful candidate will define sensing architectures for manufacturing equipment, prototype and validate high-resolution wireless sensors, and enable real-time data capture for AI-driven process monitoring, quality prediction, and closed-loop optimization.
The ideal candidate combines deep expertise in precision sensing hardware with strong understanding of manufacturing environments, sensor integration constraints, signal quality, and industrial deployment.
What You'll Do
Lead development of wireless sensing concepts for manufacturing equipment and test systems, with emphasis on high precision, robustness, and ease of attachment to existing machines
Define sensing strategies for displacement measurement in the 1-5 micron range, force sensing at Newton-level resolution, acoustic sensing for engine and equipment monitoring, and related high-fidelity industrial measurements
Evaluate and develop sensor technologies such as MEMS-based sensors, piezoelectric sensors, optical or laser displacement sensors, strain-based force sensors, acoustic and ultrasonic sensors, vibration sensors, temperature sensors, and hybrid multi-modal sensing packages
Architect compact, low-power, ruggedized sensor nodes suitable for harsh manufacturing environments including vibration, heat, EMI, oil, dust, and cycle-to-cycle variation
Design and validate sensor packaging, mounting strategies, calibration methods, drift compensation methods, and signal-conditioning approaches for factory deployment
Partner with controls, manufacturing, automation, and AI teams to ensure the sensor outputs are suitable for downstream real-time analytics and digital twin applications
Conduct laboratory and plant-floor experiments to benchmark resolution, repeatability, latency, reliability, battery life, and wireless performance
Develop technical roadmaps for next-generation industrial sensing aligned to 5G/6G connectivity and Future Factory requirements
Support supplier engagement, prototype builds, test plans, technical reviews, and technology down-selection
Required Qualifications
Master's degree or PhD in Electrical Engineering, Mechanical Engineering, Materials Engineering, Applied Physics, Mechatronics, Robotics, or a related field
5+ years of industrial or applied research experience in precision sensors, instrumentation, industrial measurement systems, or smart connected devices
Demonstrated expertise in one or more of the following:
  • Precision displacement sensing
  • Force or strain measurement
  • Acoustic or vibration sensing
  • Industrial instrumentation
  • MEMS sensor systems
  • Wireless embedded sensing

Strong understanding of sensor physics, signal conditioning, noise reduction, calibration, uncertainty analysis, and measurement-system design
Experience developing hardware for industrial or automotive environments
Hands-on experience with data acquisition systems, embedded electronics, sensor interfaces, and experimental validation
Ability to translate manufacturing problems into measurable sensing requirements and deployable hardware solutions
Strong written and verbal communication skills with the ability to work across research, engineering, manufacturing, and supplier teams
Preferred Qualifications
PhD with specialization in advanced sensors, wireless sensing, or industrial instrumentation
Experience with 5G, private wireless networks, ultra-reliable low-latency communications, or edge-connected sensor platforms
Experience with battery-powered or energy-efficient wireless sensor nodes
Familiarity with OPC UA, MQTT, industrial Ethernet, TSN, or edge-to-cloud telemetry frameworks
Experience with sensor fusion, anomaly detection, or AI/ML workflows for industrial process monitoring
Experience in automotive manufacturing, engine testing, welding, casting, assembly, or end-of-line validation
Experience with rugged product design, EMI/EMC considerations, and design-for-manufacturability
Key Skills and Competencies
Precision sensing and instrumentation
Wireless sensor architecture
Embedded hardware development
Signal processing and calibration
Experimental design and validation
Industrial deployment and machine integration
Cross-functional technical leadership
Supplier and prototype management
Success Profile
A strong candidate for this role will be able to take a manufacturing measurement challenge, identify the right sensing mechanism, design a wireless industrial sensor architecture, validate precision and robustness, and create a path toward scalable deployment in a connected factory environment.