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Altium Jobs in Virginia (NOW HIRING)

Proficiency in PCB design tools (Altium Designer, KiCad, or equivalent) and EDA simulation tools (LTSpice or equivalent) * Experience with analog circuit design: transimpedance amplifiers, low-noise ...

Utilize Altium Designer for circuit design and PSPICE for simulation* Collaborate with external vendors for PCB fabrication and perform board population as needed* Conduct functional testing ...

SR ELECTRICAL ENGINEER

Dahlgren, VA

$109K - $142K/yr

Demonstrated experience utilizing industry standard Computer Aided Design (CAD) products for documenting system designs such as Altium, Agilent Advanced Design System (ADS), LT Spice, Matlab, Labview ...

Competent in use of Schematic Capture and PCB design tools (preferably Altium) Demonstrated experience in board-level electronic circuit design mixed-signal Analog/Digital Experience with serial data ...

Design schematic diagrams and multilayer printed circuit boards (PCBs) using CAD tools such as Altium Designer. * Program and debug embedded microcontrollers and circuit board controllers using C/C ...

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Showing results 1-20

Altium information

See Virginia salary details

$66.9K

$123.7K

$167.6K

How much do altium jobs pay per year?

As of Aug 25, 2026, the average yearly pay for altium in Virginia is $123,654.00, according to ZipRecruiter salary data. Most workers in this role earn between $106,600.00 and $138,800.00 per year, depending on experience, location, and employer.

What is an Altium designer?

Altium designers are professionals who use Altium Designer, a leading electronic design automation (EDA) software, to create printed circuit boards (PCBs). They are skilled in schematic capture, PCB layout, component placement, and preparing designs for manufacturing. Altium designers often work closely with engineers to ensure that electronic circuits meet functional and production requirements. Their expertise helps bring electronic products from concept to reality efficiently and accurately.

What are the key skills and qualifications needed to thrive as an Altium designer, and why are they important?

To excel as an Altium Designer, you need expertise in PCB design, electronic circuit theory, and a relevant engineering degree or comparable experience. Familiarity with Altium Designer software, schematic capture tools, and industry standards like IPC is essential, and certifications in PCB design can be advantageous. Strong attention to detail, problem-solving abilities, and effective communication skills help you collaborate with engineers and manufacturing teams. These competencies ensure accurate, manufacturable designs that meet client requirements and industry standards.

What are some common challenges faced by Altium designers when collaborating with hardware and manufacturing teams?

Altium Designers often work closely with hardware engineers and manufacturing teams to ensure that PCB designs are both functional and manufacturable. One common challenge is maintaining clear communication about design intent, component selection, and manufacturing constraints, which can change throughout a project. Additionally, ensuring that design files, such as schematics and Gerber files, are accurately handed off and compatible with manufacturing processes is critical. Regular design reviews and the use of version control tools within Altium Designer help mitigate these challenges and foster smooth collaboration.

What is the difference between Altium vs PCB Designer?

AspectAltiumPCB Designer
CredentialsTypically requires a degree in electronics or electrical engineering, with certifications in PCB designOften requires similar degrees and certifications, focusing on PCB design skills
Work EnvironmentSoftware-based, used in office or design labs for electronic circuit and PCB layoutPrimarily software-driven, working in design offices or remote setups for PCB development
Industry UsageWidely used in electronics manufacturing, product development, and engineering firmsCommonly employed in electronics design companies, contract manufacturers, and engineering teams

Altium and PCB Designer are closely related roles in electronic design. Altium refers to the software platform used for PCB design, while PCB Designer is a job title for professionals who use such software to create circuit layouts. Both require similar technical skills and work environments, making them highly interconnected in the electronics industry.

Infographic showing various Altium job openings in Virginia as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $123,654 per year, or $59.4 per hour.

Electrical Systems Design Engineer - Defense Prototyping

KFORM Defense

Sterling, VA • On-site

$150K - $200K/yr

Other

Posted 11 days ago


Job description

Design systems that move from concept to the field—fast

Kform is a next‑generation defense manufacturer partnering with leading defense and dual‑use startups to transform advanced ideas into production‑ready hardware. We span design, engineering, prototyping, manufacturing, quality, and production readiness so critical products make it from whiteboard to real‑world use.

If you thrive on building, learning at speed, and delivering under demanding timelines, you’ll fit right in. Our customers can’t wait years—our work helps them win in weeks.

A day in this role

Morning: you sketch a concept, jump into CAD, translate it into an ECAD design in Altium, and align on interfaces with embedded teammates. Midday: you’re on the bench with a prototype—probing signals, iterating layouts, and capturing test notes. Afternoon: you walk the shop floor to gather manufacturability feedback, update documentation, and brief suppliers. Before you wrap: you push a design review, mentor a junior engineer through a debug plan, and log lessons learned so production can move cleanly.

What you’ll tackle
  • Own end‑to‑end development of multidisciplinary hardware: mechanical subassemblies, electronic architectures, embedded controls, fixtures, test assets, and production‑ready components.
  • Design electronics in ECAD (primarily Altium), collaborating tightly with mechanical and firmware teams.
  • Bridge decisions across mechanical, electrical, software, manufacturing, and quality to optimize the full system.
  • Rapidly prototype proof‑of‑concepts using hands‑on fabrication, electronics, test equipment, and iterative build‑measure‑learn loops.
  • Develop, integrate, or support embedded software to connect electromechanical systems into functioning prototypes and products.
  • Plan and execute verification for performance, reliability, durability, manufacturability, and safety—then analyze results, isolate failure modes, and drive evidence‑based design changes.
  • Create clear documentation of intent, revisions, test results, tradeoffs, and lessons so designs transfer smoothly into production.
  • Partner with manufacturing, quality, supply chain, and program teams to improve designs for manufacturability, assembly, inspection, cost, schedule, and reliability.
  • Model strong engineering practice while mentoring junior teammates in problem solving, documentation, and ownership.
  • Independently lead smaller projects from ambiguous requirements to delivered outcomes.
  • Continuously improve Kform’s engineering and manufacturing systems.
Who will excel

You bring deep technical strength in one core discipline—often electrical or mechanical—and genuine curiosity across the rest. You like to understand the entire machine, make smart tradeoffs with imperfect data, and turn ambiguity into momentum. You can:

  • Develop designs at a workstation and reason through schematics and system implications.
  • Debug prototypes methodically at the bench.
  • Walk the production floor to capture actionable feedback.
  • Inspect parts, run tests, and communicate your reasoning clearly.

Best fits are curious, practical, disciplined, and biased toward action.

Minimum qualifications
  • Bachelor’s in Electrical Engineering, Mechatronics, or related technical field.
  • 3–5 years in product design, hardware development, prototyping, test, or multidisciplinary engineering.
  • Strong capability in at least one core discipline (ideally electrical or mechanical).
  • Working knowledge spanning embedded software, electronics, mechanical design, manufacturing, quality, test, and systems integration.
  • Advanced proficiency in Altium or a comparable primary design tool.
  • Hands‑on experience with rapid prototyping, fabrication tools, electronics, test equipment, and physical hardware.
  • Clear documentation skills across design intent, revisions, results, and decisions.
  • Proven problem solving and the ability to operate independently within a multidisciplinary team.
Preferred qualifications
  • Early‑stage, founding, or high‑ownership startup experience.
  • Background in defense, aerospace, robotics, industrial automation, advanced manufacturing, or other regulated sectors.
  • Familiarity with AS9100, quality systems, configuration control, production documentation, and design release.
  • Experience with DFM/DFA/DFI, reliability, and cost optimization.
  • Track record of taking hardware from prototype to production readiness.
  • Ownership of small engineering projects from concept through build or release.
  • Demonstrated interest in manufacturing, American industry, defense technology, and tough technical problems.
  • Strong communication with engineers, operators, customers, suppliers, and leadership.
Skills that matter here
  • Deep strength in one discipline with range across the full product lifecycle.
  • Electrical design literacy and ECAD collaboration in Altium.
  • Embedded development, integration, or debug.
  • Prototype build, assembly, instrumentation, and test.
  • Design for manufacturability and production readiness.
  • Technical documentation and configuration discipline.
  • Analytical thinking, practical judgment, and attention to detail.
  • Urgency matched with engineering rigor.
  • Ownership, follow‑through, and a drive to build products that matter.
Working environment
  • Frequent hands‑on work with prototypes, electronics, tooling, machinery, test and inspection equipment, and production hardware.
  • Regular time on your feet assembling, testing, troubleshooting, and operating near active manufacturing and prototyping areas.
  • Use of PPE as appropriate for tasks, equipment, and workspace.
  • Occasional travel for customers, suppliers, testing, or program needs.
How we operate

We prize continuous improvement, aggressive value creation, and extreme ownership. We’re building the infrastructure and execution engine to bring advanced defense products to production faster—by caring about details, respecting the customer, and delivering, every time.

Tools and proficiencies
  • Electrical Schematics
  • CAD Software
  • Electrical / Electronic Systems
  • Engineering Degree
  • Electrical Engineering
  • IoT Engineering

Machines & technologies: Altium, ECAD