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Remote Firearm Engineer Jobs (NOW HIRING)

.NET Developer

$49.50 - $65.25/hr

... Firearms and Explosives (ATF). The program provides a range of IT services, including software ... This position is 100% remote and requires working in a fast-paced, dynamic environment; this ...

... of firearms, electro-optics, ammunition, airguns, suppressors, remote controlled weapons stations ... Coordinate and facilitate collaboration between SMEs, Learning Content Developer & System ...

... of firearms, electro-optics, ammunition, airguns, suppressors, remote controlled weapons stations ... Coordinate and facilitate collaboration between SMEs, Learning Content Developer & System ...

... of firearms, electro-optics, ammunition, airguns, suppressors, remote controlled weapons stations ... German engineering, and Swiss precision. Today, SIG SAUER is synonymous with industry-leading ...

... of firearms, electro-optics, ammunition, airguns, suppressors, remote controlled weapons stations ... German engineering, and Swiss precision. Today, SIG SAUER is synonymous with industry-leading ...

Remote Firearm Engineer information

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$12

$20

$33

How much do remote firearm engineer jobs pay per hour?

As of Jun 24, 2026, the average hourly pay for remote firearm engineer in the United States is $20.44, according to ZipRecruiter salary data. Most workers in this role earn between $16.83 and $21.39 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a Remote Firearm Engineer, and why are they important?

To thrive as a Remote Firearm Engineer, you need a solid background in mechanical engineering, firearms design, and relevant industry standards, often supported by a degree in engineering and experience with weapon systems. Familiarity with CAD software, ballistics modeling programs, and certifications such as a Professional Engineer (PE) license or ITAR compliance are typically required. Strong problem-solving skills, attention to detail, and effective written and verbal communication are essential soft skills for remote collaboration and complex design projects. These competencies ensure the safe, compliant, and innovative development of firearms while enabling effective teamwork across distributed engineering teams.

What is a Remote Firearm Engineer?

A Remote Firearm Engineer is a specialized engineer who designs, develops, and tests firearms and related systems while working remotely, often from a home office or a location outside of the main manufacturing facility. Their responsibilities include creating blueprints, ensuring compliance with safety and legal standards, and collaborating with teams using digital tools. They may also troubleshoot design issues, provide technical support, and oversee the prototyping process. Working remotely allows these engineers to contribute to projects from anywhere, leveraging secure communication platforms and CAD software. This role typically requires a strong background in mechanical engineering, firearms technology, and regulatory knowledge.

What is the difference between Remote Firearm Engineer vs Remote Mechanical Engineer?

AspectRemote Firearm EngineerRemote Mechanical Engineer
Required CredentialsBachelor's in Mechanical, Electrical, or related engineering; firearm safety certificationsBachelor's in Mechanical or Aerospace Engineering; relevant certifications
Work EnvironmentDesigning firearm components, testing, and safety analysis remotelyDesigning mechanical systems, product development, and testing remotely
Industry UsageFirearms manufacturing, defense, law enforcementAutomotive, aerospace, consumer products
Search & Comparison IntentYesYes

The main difference between Remote Firearm Engineer and Remote Mechanical Engineer lies in their specialization. Firearm engineers focus on designing and testing firearm components, often requiring firearm safety certifications, while mechanical engineers work on a broader range of mechanical systems across various industries. Both roles involve remote work, but their industry applications and specific skill sets differ.

What are some common challenges faced by Remote Firearm Engineers when collaborating with manufacturing teams?

Remote Firearm Engineers often face challenges related to communication and hands-on involvement when collaborating with manufacturing teams. Since much of the work is conducted virtually, conveying design changes, ensuring precise specifications, and addressing manufacturing issues can require extra effort and clear documentation. Leveraging video conferencing, 3D modeling software, and regular virtual check-ins helps bridge the distance, but occasional on-site visits may still be necessary for critical prototyping or testing phases. Building strong relationships with on-site team members and maintaining open channels for feedback are key to overcoming these challenges.
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Principal Embedded Software Engineer

SigSauer

Tualatin, OR • On-site, Remote

Full-time

Posted 8 days ago


Job description

Principal Embedded Software Engineer

SIG SAUER, Inc. is a leading provider and manufacturer of firearms, electro-optics, ammunition, airguns, suppressors, remote controlled weapons stations, and training. For over 250 years SIG SAUER, Inc. has evolved, and thrived, by blending American ingenuity, German engineering, and Swiss precision. Today, SIG SAUER is synonymous with industry-leading quality and innovation which has made it the brand of choice amongst the U.S. Military, the global defense community, law enforcement, competitive shooters, hunters, and responsible citizens. Additionally, SIG SAUER is the premier provider of elite firearms instruction and tactical training at the SIG SAUER Academy. Headquartered in Newington, New Hampshire, SIG SAUER has over 3,400 employees across sixteen U.S. locations in three states, and four additional global facilities. SIG SAUER is certified a Great Place to Work™. For more information about the company and product line visit: www.sigsauer.com

Position Summary: The Principal Embedded Software Engineer is responsible for developing complex software system designs for new products as well as design improvements to legacy products. They will exercise sound engineering judgement, present analysis summaries which support design decisions, mentor and coach R&D staff. The Principal Embedded Software Engineer is a subject matter expert who leads large-scale embedded system design, sets technical direction, and influences strategy across projects or teams. They are recognized for deep technical insight, they architect complex systems, establish best practices, cross-discipline coordination, and long-term planning. The Principal Embedded Software Engineer works both independently and in a team environment with Software Engineers, Design Engineers, NPI Managers, and Test Technicians. They frequently initiate collaboration with all departments company wide.

FLSA: Exempt

Job Duties and Responsibilities:

  • Define and drive the architectural vision for software components, ensuring scalability, performance, and maintainability. Lead design reviews and establish best practices to develop innovative solutions that align with long-term product and business objectives.
  • Define and optimize software development processes at an organizational level, driving efficiency and innovation. Establish best practices, ensure adherence to industry standards, and mentor teams to elevate overall software.
  • Lead R&D projects in a team setting to meet project cost targets, budget requirements and delivery dates.
  • Approve verification test plans, check the accuracy of test results, and draw logical conclusions. Responsible for R&D projects meeting validation test criteria.
  • Define and drive the organization's release strategy, ensuring scalability, security, and efficiency. Establish best practices for versioning, deployment automation, and cross-team collaboration to streamline the release cycle.
  • Design advanced software solutions for manufactured systems, focusing on optimization, scalability, and system architecture. Lead development and ensure best practices for reliability and efficiency.
  • Drive continuous improvement in technical information such as software design documentation, architecture diagrams, code standards, technical specifications, and test procedures to evaluate, support, and enhance product design and development processes, ensuring alignment with industry best practices and innovating at the appropriate competency level.
  • Provide expert technical assistance across the company, collaborating with both internal teams and external vendors to resolve complex software issues, drive technical solutions, and ensure alignment with project goals and timelines.
  • Analyze software architecture at a higher level, evaluating how different modules or components integrate, scale, and interact within the system. Ensure that the overall design is robust, maintainable, and scalable, and align with long-term business and technical goals.
  • Provide technical leadership within the SIG NPI (New Product Introduction) process.
  • Design and schematic drawing checker for other software engineers in R&D.
  • Mentor and guide technicians and software engineers at all levels, fostering technical growth and promoting best practices in software design and development.
  • Travel as business needs dictate; some international travel is required.
  • Engage in and actively volunteer for Continuous Improvement projects/tasks.
  • Participate in and sustain 5S Standards.
  • Must follow all required Safety and ISO procedures.
  • Miscellaneous duties as assigned.

Education/Experience & Skills:

  • Bachelor of Science in Software Engineering, and 10+ years of previous experience as a Software Engineer required.
  • Deep expertise in embedded systems architecture, real-time software development, and low-level hardware/software integration. Proficient in designing scalable and maintainable software solutions, optimizing system performance, and leading technical reviews. Advanced knowledge of communication protocols, debugging tools, and development environments such as VS Code, along with mastery of Git for version control, collaboration, driving technical innovation, and influence of software development strategies across projects.
  • Debug and Trace - Advanced knowledge of embedded communication protocols (I2C, SPI, UART), debugging tools (JTAG, SWD, TRACE). Able to write Python scripts for integration testing.
  • Build Systems - Proficient with CMake, GCC and C/C++ linting tools such as clang-tidy, clang-format, PC-LINT or equivalent. Experienced in setting up and maintaining development environments such as VS Code or Clion.
  • CI/CD and Test – Ability to create and maintain CI/CD platforms. Hardware-in-the-loop (HIL) testing experience preferred. Familiar with unit testing platforms such as Unity, CPPUTest, ZTest or equivalent.
  • Hardware/EE – Capable to read schematics and perform board bring up. Must be skilled with oscilloscopes, dmms, and logic analyzers. Able to work with hardware and mechanical team to optimize firmware/hardware cooperation and system design.
  • Demonstrate proficiency in Microsoft Word, Excel, PowerPoint, and Outlook, as well as Project and Visio.
  • Must be able to clearly, concisely, and accurately convey ideas and information to others, both verbally and in written form.
  • Classwork and practical software engineering design experience.
  • Ability to interpret technical instructions in schematic, mathematical or diagram form.
  • Define and drive the strategy for evaluating third-party tools and external development partnerships, guiding teams in the creation of scalable, high-performance software solutions that align with the organization’s long-term vision and objectives, while ensuring cost-effectiveness and budget adherence.
  • Ability to define and resolve problems by collecting and analyzing data, establishing facts, drawing valid conclusions, and executing solutions.
  • Ability to write and review reports and procedures, and effectively present information to team members and executive management.
  • Ability to manage multiple projects in a logical and organized manner.
  • Ability to lead and direct Engineers at all levels.
  • Strong Linux skills including embedded Linux application layer development, threading and technical competence with the command line preferred.
  • Docker experience for the purpose build, debug, test, and automation preferred.
  • Bluetooth Low Energy expertise and in-depth knowledge of the stack, protocol layers and limitations preferred.
  • Low power design experience optimizing run/sleep duty factors, hardware offloading techniques, and proper component selection preferred.
  • Modern C++ for embedded systems preferred.
  • Zephyr experience and proficiency with the device tree preferred.
  • Experience using and maintaining firearms is preferred.

Working Conditions:

  • Prolonged periods of sitting at a desk and working at a computer using a keyboard and mouse performing repetitive tasks.
  • Ability to open file cabinets, reach with hands and arms, bend, and twist, lift and move files.
  • Ability to lift up to 25 pounds.
  • Must wear required Personal Protective Equipment (PPE) where required.
  • Must comply with all work exposure EH&S training requirements and adhere to SIG SAUER Inc. Security Mandates.

Qualified applicants will receive consideration for employment without regard to race, color, religion, sex, national origin, disability, protected veteran status or other characteristics protected by law.