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Internship Altium Pcb Jobs (NOW HIRING)

GSE Engineering Intern

Denver, CO · On-site

$28 - $32/hr

As a member of our GSE Engineering Internship Program, you will gain hands-on experience ... PCB layout design and review using tools such as Altium. Test System Integration: * Support the ...

New

Hardware Engineer

Hudson, NH · On-site

$124K - $164K/yr

Capture schematics and execute PCB layout using Altium Designer, working from initial component ... internship, co-op, or substantive project experience in electronic hardware design. * Working ...

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Internship Altium Pcb information

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$40K

$100.7K

$169K

How much do internship altium pcb jobs pay per year?

As of Aug 16, 2026, the average yearly pay for internship altium pcb in the United States is $100,705.00, according to ZipRecruiter salary data. Most workers in this role earn between $75,500.00 and $120,000.00 per year, depending on experience, location, and employer.

What types of projects and responsibilities can I expect during an internship Altium PCB?

As an intern focusing on Altium PCB design, you will typically assist with schematic capture, PCB layout, and design validation using Altium Designer software. You may work on real-time projects such as developing prototype boards, updating existing layouts, or conducting design rule checks. Collaboration with hardware engineers and exposure to the full product development lifecycle are common, providing valuable hands-on experience. This role is an excellent opportunity to build practical skills while contributing to meaningful team projects.

What is an internship Altium PCB?

An Internship Altium PCB is a training position where students or recent graduates gain hands-on experience in designing printed circuit boards (PCBs) using Altium Designer, a popular electronic design automation (EDA) software. Interns in this role typically assist with schematic capture, PCB layout, and documentation for electronic products. This internship helps individuals build practical skills in electronic design, understand industry standards, and prepare for careers in hardware engineering or PCB design.

What is the difference between Internship Altium Pcb vs PCB Designer?

AspectInternship Altium PcbPCB Designer
CredentialsBasic knowledge of Altium Designer, relevant courseworkProficiency in PCB design software, certifications preferred
Work EnvironmentInternship setting, supervised tasks, entry-levelFull-time or freelance, professional design environment
Industry UsageTraining and learning phase, entry-level projectsDesigning complex PCB layouts for products and prototypes

Internship Altium Pcb roles focus on learning and assisting with PCB design using Altium Designer, often in a supervised environment. PCB Designer positions require advanced skills, experience, and the ability to independently create detailed PCB layouts for various electronic products. While internships are entry-level and educational, PCB Designer roles are professional and specialized.

What are the key skills and qualifications needed to thrive as an internship Altium PCB?

To thrive as an Altium PCB Design Intern, you need a solid understanding of electronic circuit theory, PCB layout principles, and basic knowledge of electrical engineering, often supported by current enrollment in an engineering program. Familiarity with Altium Designer software, schematic capture tools, and version control systems is typically required. Attention to detail, problem-solving skills, and effective communication help interns excel in collaborating with engineering teams and learning quickly. These skills ensure accurate PCB designs, smooth workflow integration, and effective learning in a fast-paced engineering environment.
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What cities are hiring for Internship Altium Pcb jobs?

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What are the most commonly searched types of Altium Pcb jobs?

The most popular types of Altium Pcb jobs are:

What states have the most Internship Altium Pcb jobs?

States with the most job openings for Internship Altium Pcb jobs include:

Infographic showing various Internship Altium Pcb job openings in the United States as of August 2026, with employment types broken down into 12% Internship, 63% Full Time, 22% Part Time, 1% Temporary, and 2% Contract. Highlights an 87% Physical, 2% Hybrid, and 11% Remote job distribution, with an average salary of $100,705 per year, or $48.4 per hour.

Hardware Validation - Electrical Engineer

Skild AI

San Mateo, CA

Full-time

Re-posted 20 days ago


Job description

Position Overview

We are seeking a motivated and hands-on Electrical Hardware Validation Engineer to work closely with our Electrical Engineering team in developing and validating next-generation robotics electronics systems. This role focuses on defining and executing validation strategies for complex PCB designs used in robotics applications, including power systems, DC-DC converters, embedded computing platforms, motor control interfaces, and sensor systems.

In addition to new hardware validation, this role will also support debugging and failure analysis of existing robotic platforms in both lab and operational environments. The ideal candidate enjoys working hands-on with hardware, troubleshooting complex issues, developing test methodologies, and collaborating across engineering disciplines to improve system reliability and future hardware designs.

Responsibilities
  • Develop comprehensive validation and test plans for new PCB designs and embedded electronic systems
  • Define functional, electrical, thermal, and reliability test procedures for robotics hardware
  • Execute board bring-up, debugging, and characterization activities in the lab
  • Validate subsystems including power distribution and protection circuits, DC-DC converters and power sequencing, embedded computing hardware, sensor interfaces and communication buses, and high-speed digital and analog circuits
  • Perform lithium battery safety and validation testing, including charge/discharge characterization, protection circuit verification, thermal behavior evaluation, and failure-mode analysis
  • Develop and execute wire harness reliability and characterization tests, including continuity, insulation resistance, strain relief, vibration and flex-cycle, and connector retention validation
  • Design, build, and maintain hardware test fixtures and validation setups
  • Support debugging and repair of existing robotic systems and deployed hardware
  • Investigate hardware failures, identify root causes, and drive corrective actions
  • Collaborate with Electrical, Mechanical, Firmware, and Systems Engineers to improve testability, manufacturability, robustness, and serviceability of designs
  • Collect, analyze, and document test data, failure reports, validation procedures, and engineering findings
  • Communicate technical issues, test results, and root cause findings across cross-functional engineering teams
  • Support automation of repetitive validation and diagnostic tasks using scripting tools where appropriate
  • Support prototype builds, integration activities, and system-level testing
  • Maintain lab equipment, calibration records, and validation documentation
Preferred Qualifications
  • Bachelor's degree in Electrical Engineering, Computer Engineering, Mechatronics, or related field
  • Internship, academic project, or hands-on experience with PCB debugging or embedded electronics
  • Proficiency with lab equipment including oscilloscopes, multimeters, power supplies, electronic loads, and logic analyzers
  • Familiarity with power electronics, DC-DC converters, embedded systems, sensor and communication interfaces (I2C, SPI, UART, CAN, Ethernet), and lithium battery systems
  • Strong troubleshooting, debugging, and root cause analysis skills
  • Ability to read schematics, wiring diagrams, and interpret datasheets
  • Experience with robotics systems or autonomous platforms
  • Experience with PCB design tools such as Altium, KiCad, or Cadence
  • Experience with lithium battery testing or battery management systems (BMS)
  • Experience developing test automation scripts using Python or similar languages
  • Understanding of Design for Testability (DFT) principles
  • Experience with fixture design, pogo-pin interfaces, or functional test systems
  • Experience testing wire harnesses, connectors, or electromechanical assemblies
  • Exposure to EMI/EMC, thermal, vibration, or environmental testing
  • Familiarity with Linux-based embedded systems