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Rf Module Design Engineer Jobs in Montana (NOW HIRING)

Builds and maintains engineering standards, modules, templates, and rules enabling repeatability and scale. o Team 2 - Design: Executes project-level engineering using established standards and less ...

Design Standard Lead

Livingston, MT · On-site

$111K - $145K/yr

... engineering communities, and Supply Chain. Primary Accountability * Build and govern the direction ... Drive alignment across divisions on common design principles, platforms, modules, interfaces and ...

Builds and maintains engineering standards, modules, templates, and rules enabling repeatability and scale. o Team 2 - Design: Executes project-level engineering using established standards and less ...

Builds and maintains engineering standards, modules, templates, and rules enabling repeatability and scale. o Team 2 - Design: Executes project-level engineering using established standards and less ...

Manufacturing Engineer IV

Columbia Falls, MT · On-site

$66K - $86K/yr

Builds and maintains engineering standards, modules, templates, and rules enabling repeatability and scale. * Team 2 (Design): Executes project-level engineering using established standards and less ...

Manufacturing Engineer IV

Columbia Falls, MT · On-site

$66K - $86K/yr

Builds and maintains engineering standards, modules, templates, and rules enabling repeatability and scale. * Team 2 (Design): Executes project-level engineering using established standards and less ...

Builds and maintains engineering standards, modules, templates, and rules enabling repeatability and scale. * Team 2 (Design): Executes project-level engineering using established standards and less ...

Manufacturing Engineer ll

Columbia Falls, MT · On-site

$66K - $86K/yr

Builds and maintains engineering standards, modules, templates, and rules enabling repeatability and scale. * Team 2 - Design: Executes project-level engineering using established standards and less ...

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Rf Module Design Engineer information

What does an RF module design engineer do?

An RF Module Design Engineer specializes in designing, developing, and testing radio frequency (RF) modules used in a variety of wireless communication devices. They are responsible for creating circuit layouts, selecting components, and ensuring the modules meet performance, reliability, and regulatory standards. Their work often involves simulation, prototyping, and troubleshooting to optimize signal integrity and minimize interference. RF Module Design Engineers collaborate closely with hardware, software, and testing teams to integrate their modules into larger systems. This role is essential in industries such as telecommunications, aerospace, and consumer electronics.

What is the difference between Rf Module Design Engineer vs RF System Engineer?

AspectRf Module Design EngineerRF System Engineer
CredentialsBachelor's or Master's in Electrical Engineering, RF certificationsBachelor's or Master's in Electrical or RF Engineering, RF certifications
Work EnvironmentDesign labs, R&D departments, manufacturing facilitiesSystem integration labs, testing environments, R&D teams
Industry UsageWireless device manufacturing, telecom, consumer electronicsWireless networks, telecom infrastructure, system-level design

Both roles require strong RF engineering knowledge and similar educational backgrounds. The Rf Module Design Engineer focuses on designing and developing RF modules, while the RF System Engineer works on integrating RF components into complete systems. Understanding these differences helps in choosing the right career path or job search focus.

What are the key skills and qualifications needed to thrive as an RF module design engineer, and why are they important?

To thrive as an RF Module Design Engineer, you need strong expertise in RF circuit design, electromagnetic theory, and a relevant engineering degree, such as electrical or electronics engineering. Familiarity with tools like ADS, HFSS, and network analyzers, plus knowledge of industry standards and certifications such as IPC, is highly valued. Attention to detail, problem-solving abilities, and effective communication are crucial soft skills for collaborating with cross-functional teams and troubleshooting complex issues. These competencies ensure the development of high-performance, reliable RF modules that meet stringent industry requirements.

What are some common challenges faced by an RF module design engineer during the product development cycle?

RF Module Design Engineers often encounter challenges such as minimizing interference and signal loss, ensuring compliance with international wireless standards, and integrating modules into compact device enclosures without sacrificing performance. Balancing trade-offs between power consumption, cost, and performance is also a frequent consideration. Collaboration with cross-functional teams, such as PCB layout engineers and system architects, is essential to address these challenges and deliver robust, manufacturable designs.

What are popular job titles related to Rf Module Design Engineer jobs in Montana?

For Rf Module Design Engineer jobs in Montana, the most frequently searched job titles are:

What job categories do people searching Rf Module Design Engineer jobs in Montana look for?

The top searched job categories for Rf Module Design Engineer jobs in Montana are:

What cities in Montana are hiring for Rf Module Design Engineer jobs?

Cities in Montana with the most Rf Module Design Engineer job openings:

Embedded Systems Engineer ll

Kratos Defense

Columbia Falls, MT • On-site

Full-time

Posted 10 days ago


Kratos Defense & Security Solutions rating

7.8

Company rating: 7.8 out of 10

Based on 10 frontline employees who took The Breakroom Quiz


Job description

Overview: Nomad Global Communication Solutions (Nomad GCS) is a leading provider of communication and response products serving a wide range of customers. Our purpose is to be the solution when every minute matters. We are seeking Embedded Systems Engineers to help design, develop, and support the embedded hardware systems for Nomad Total Command™ (NTC) and other systems integrated into Nomad products.

Embedded Systems Engineers at Nomad GCS are responsible for the design, development, integration, testing, and lifecycle support of embedded hardware and firmware used within Nomad Total Command™ (NTC), as well as support of embedded systems across all Nomad products and platforms. This includes microcontrollers, embedded processors, sensors, control modules, communication interfaces, and operator control systems that enable deterministic control, automation, monitoring, and safe operation of capabilities across Nomad platforms.

Depending on level (I-V), Engineers progress from learning foundational engineering practices and supporting designs to independently leading complex system architectures, mentoring others, and driving technical strategy across the organization.

This position requires strong hands-on engineering capability combined with system-level thinking, enabling the engineer to diagnose complex system interactions, guide technical decisions, and improve the robustness and performance of embedded systems deployed in demanding environments.

Career Growth: Embedded Systems Engineers at Nomad GCS progress through five levels based on demonstrated technical mastery, independence, leadership, and impact. Advancement is supported through mentorship, ownership of embedded subsystems, and alignment with Nomad's Core Values.

Organizational Structure: Engineering is organized into Teams and Disciplines within the Innovative Solutions Division.

Teams:

o Team 1 - Standards and Modularity: Builds and maintains engineering standards, modules, templates, and rules enabling repeatability and scale.

o Team 2 - Design: Executes project-level engineering using established standards and less complex custom configurations.

o Team 3 - Advanced: Develops novel systems and resolves first-of-kind engineering challenges.

o Team 4 - Manufacturing & Industrial Engineering: Ensures manufacturability, safety, engineering intent, efficiency, and continuous improvement throughout Production.

Disciplines:

o Mechanical Engineering

o Electrical Engineering

o IT Engineering

o Human Factors Engineering

o Embedded Systems Engineering (where this role is located)

o Software Engineering

An Embedded Systems Engineer may be temporarily assigned to one or more of the four Teams and support Standards and Modularity, Design Engineering, Advanced Engineering, and/or Manufacturing & Industrial Engineering.

Core Responsibilities - All Levels:

  • Design, develop, and support embedded hardware and firmware used within Nomad Total Command (NTC) and other Nomad platforms.
  • Develop firmware and control logic using C/C++ for microcontrollers and embedded processors supporting modules and control interfaces.
  • Write logic that bridges embedded hardware with NTC software using C/C++ and other languages.
  • Specify/test new embedded computers, network switches, and other hardware for NTC or other Nomad platforms.
  • Integrate sensors, actuators, networking interfaces, and operator control systems used by the NTC platform.
  • Design and troubleshoot embedded systems using CAN, SPI, I²C, UART, Ethernet, and related protocols used within various communication networks.
  • Ensure systems exhibit deterministic and predictable behavior, particularly in real-time or near real-time environments.
  • Review, edit, or write JSON based configuration files.
  • Implement error logging, as well as frequent “health checks” and hardware status updates.
  • Drive improvements in reliability through testing, diagnostics, and design iteration.
  • Diagnose complex interactions between hardware, firmware, networking, and electrical systems.
  • Work within Linux-based environments, including containerized environments (Docker).
  • Flash embedded firmware for micro-controlled hardware and sensors.
  • Write control logic & software for Programmable Logic Controllers (PLC's).
  • Participate in efforts to automate and continuously improve NTC hardware configuration.
  • Attend meetings regarding upcoming builds, take meaningful notes, and actively participate:
    • Proposal Reviews;
    • Sales/Project Management Kickoffs;
    • SPN reviews, Initial Design Reviews (IDR), and Executive Design Reviews (EDR); and
    • Actively participate in Executive Reviews and document any findings.
  • Configure, or aid in configuring NTC hardware for production projects, ensuring configuration is accurate and aligns with customer requirements and intended system operation.
  • Assist production team(s) with troubleshooting NTC issues.
  • Design or assist in designing printed circuit boards (PCB's)
  • Participate in design reviews, testing, validation, and root cause analysis of embedded hardware and control behavior.
  • Work closely with Software Engineering to define hardware abstraction layers (HAL's) and other methods to translate software commands into hardware actions.
  • Assist software in defining how hardware data/control should be presented in the NTC frontend.
  • Develop and improve embedded systems with the goal that hardware control logic is independent of NTC software functionality.
  • Design systems with strong emphasis on fault tolerance, redundancy, and predictable failure behavior.
  • Assist field and production teams in resolving challenging system-level issues.
  • Prototype and test next-generation capabilities including, but not limited to:
    • Automation systems
    • Advanced sensor integration
    • AI-assisted monitoring
    • Autonomous subsystems
    • Vehicle information system integration (CAN)
    • Self-deployment capabilities (SLAM, Sensor-Fusion, Computer Vision etc.)
    • Edge machine learning
    • Predictive maintenance capabilities
    • Subsystem data acquisition for local inference.
  • Identify opportunities to improve operational awareness, system automation, and reliability.
  • Collaborate cross-functionally with Mechanical Engineering, Electrical Engineering, IT Integration, Human Factors Engineering, Software Engineering, Production, Quality, and Program Management teams to ensure embedded systems integrate cleanly with platform subsystems.
  • Apply continuous improvement principles to improve reliability, determinism, manufacturability, and maintainability of embedded hardware.
  • Produce clear technical documentation including:
    • Engineering notes
    • Troubleshooting guides
    • Test procedures
    • Technical design documentation
    • System changes, firmware updates, and hardware improvements.
  • Translate operational feedback into engineering improvements.
  • Uphold and model Nomad Core Values in all work.
  • Perform additional duties as assigned.

Level Expectations:

Embedded Systems Engineer ll - Independent Contributor

  • Independently develop firmware for embedded subsystems and control modules.
  • Implement control logic, state machines, and communication interfaces supporting NTC functionality.
  • Create production-ready embedded code and configuration for NTC hardware.
  • Participate in NTC hardware bring-up, integration, and troubleshooting.
  • Support manufacturing troubleshooting and resolve moderate NTC system issues.
  • Participate actively in design reviews and cross-functional collaboration with supporting disciplines.
  • Participate in advanced engineering projects requiring new features or complex logic.
  • 2-5 years embedded systems engineering experience.

Progression signal: Can be trusted to deliver correct and quality embedded solutions under minimal supervision. Takes full ownership of projects and remains composed under pressure. Trusted to lead tasks assigned to them including leading design reviews, mentoring others, and taking initiative to continuously improve quality of work.

Basic Knowledge Progression:

  • Level l: Foundational understanding of microcontrollers, firmware development, and debugging tools used within NTC embedded systems.
  • Level ll: Strong working knowledge of embedded protocols and subsystem integration supporting NTC modules.
  • Level lll: System-level expertise and troubleshooting mastery of NTC embedded hardware and communications.
  • Level lV: Platform-level architecture and technical leadership for the NTC embedded system.
  • Level V: Enterprise-level strategy, innovation, and mentorship guiding the evolution of the NTC embedded platform.

Qualifications & Preferred Skills:

  • Proficiency in C/C++ for embedded systems required.
  • Experience working in Linux environments required.
  • Basic networking knowledge required, advanced preferred.
  • Bachelor's Degree in Computer Engineering or related preferred.
  • 2-5 years embedded systems engineering experience.
  • Working knowledge of relational database systems preferred.
  • Experience with FreeRTOS or other RTOS platforms preferred.
  • Exposure to closed-loop control in robotics, automotive, aerospace or similar preferred.
  • Working knowledge of JavaScript, React, and/or similar object-oriented programming preferred.

Physical Demands:

  • Ability to stand and sit for extended periods.
  • Manual dexterity to operate office equipment.
  • Occasionally lift and/or move up to 20 pounds.
  • Occasional climbing or hands-on testing activities.
  • Ability to work in office, shop, and vehicle environments as needed.
  • Ability to work safely around energized systems when required.
  • Must be able to travel as needed on occasion.

Working Environment:

  • Combination of office, production floor, and vehicle-based environments.
  • Exposure to manufacturing noise, electrical equipment, and testing environments.
  • PPE required when entering production or testing areas.


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