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Hardware Design Engineer Intern Jobs in Arizona (NOW HIRING)

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Hardware Design Engineer Intern information

What are the key skills and qualifications needed to thrive as a Hardware Design Engineer Intern, and why are they important?

To thrive as a Hardware Design Engineer Intern, you need a solid understanding of electronics, circuit design, and hardware fundamentals, usually supported by coursework or a degree in electrical or computer engineering. Familiarity with CAD tools such as Altium Designer, OrCAD, or Mentor Graphics, along with basic proficiency in hardware description languages, is typically expected. Strong problem-solving ability, attention to detail, and effective teamwork set standout candidates apart. These skills ensure that interns can contribute meaningfully to design projects, troubleshoot issues, and collaborate efficiently in fast-paced engineering environments.

Is $20 an hour good for an internship?

For a Hardware Design Engineer Intern, $20 an hour is generally considered competitive, especially for entry-level positions that may require basic knowledge of circuit design, FPGA programming, or CAD tools. Internships often pay between minimum wage and $25 per hour, depending on location, company size, and required skills. Factors such as workload, learning opportunities, and industry standards should also be considered when evaluating compensation.

How much do Dell hardware engineer interns make?

Dell hardware design engineer interns typically earn between $20 and $30 per hour, depending on location and experience. Interns often work in a collaborative environment with access to industry-standard tools and may be required to complete a summer or semester-long internship program.

Are hardware engineers in high demand?

Hardware Design Engineer Interns and hardware engineers are in high demand due to the growth of electronics, IoT, and embedded systems industries. Skills in circuit design, FPGA, and CAD tools increase employability, and the field offers strong job prospects for those with relevant technical expertise. Demand is expected to remain steady as technology continues to advance.

How much do SpaceX hardware engineer interns make?

SpaceX hardware engineer interns typically earn between $20 and $30 per hour, depending on experience and location. Interns often work in a hands-on environment with exposure to aerospace hardware design and testing. Compensation can vary based on the internship program and academic level.

What types of projects can a Hardware Design Engineer Intern expect to work on during their internship?

As a Hardware Design Engineer Intern, you can expect to be involved in projects such as circuit board design, prototyping, testing, and debugging of hardware components. Interns often assist with schematic capture, PCB layout, and collaborating with senior engineers to validate and optimize hardware designs. These projects provide hands-on experience with industry-standard tools and foster collaboration with cross-functional teams, including firmware and mechanical engineers. This exposure helps build a strong technical foundation and prepares you for more advanced engineering roles.

What is the difference between Hardware Design Engineer Intern vs Hardware Design Engineer?

AspectHardware Design Engineer InternHardware Design Engineer
Required CredentialsEnrolled in or recent graduate of Electrical or Computer EngineeringBachelor's or Master's in Electrical Engineering or related field
Work EnvironmentInternship setting, often in tech or manufacturing companiesFull-time professional role in hardware development teams
Employer & Industry UsageUsed in tech, electronics, and semiconductor industries for entry-level rolesFull-time positions in similar industries, focusing on product development

The main difference between a Hardware Design Engineer Intern and a Hardware Design Engineer lies in experience level and responsibilities. Interns are typically students or recent graduates gaining practical experience, while engineers are full-time professionals responsible for designing and developing hardware products.

What does a Hardware Design Engineer Intern do?

A Hardware Design Engineer Intern assists in the development and testing of electronic hardware components and systems, such as circuit boards, processors, and embedded systems. They work under the supervision of experienced engineers, helping with schematic design, PCB layout, prototyping, and debugging. Their tasks may also include performing simulations, documenting designs, and collaborating with cross-functional teams. This role provides hands-on experience in the hardware development process and helps interns learn industry standards and tools.
What are the most commonly searched types of Hardware Design Engineer jobs in Arizona? The most popular types of Hardware Design Engineer jobs in Arizona are:
What are popular job titles related to Hardware Design Engineer Intern jobs in Arizona? For Hardware Design Engineer Intern jobs in Arizona, the most frequently searched job titles are:
What job categories do people searching Hardware Design Engineer Intern jobs in Arizona look for? The top searched job categories for Hardware Design Engineer Intern jobs in Arizona are:
What cities in Arizona are hiring for Hardware Design Engineer Intern jobs? Cities in Arizona with the most Hardware Design Engineer Intern job openings:
Electrical Hardware Design Engineer/ Hardware Design Engineer

Electrical Hardware Design Engineer/ Hardware Design Engineer

Accord Technologies Inc.

Phoenix, AZ โ€ข On-site

Contractor

Re-posted 28 days ago


Job description

JR-063942
Electrical Hardware Design Engineer/ Hardware Design Engineer
Location: Phoenix, AZ- Onsite work onlyย โ€“Fulltime
Visa: USC/ GC Holder.

ย 

Keywords to search:

Gas turbine engine components

Aero Engines

PCB Design Circuit Card Assembly (CCA)

Printed Board Assembly (PBA)

Analog / Linear Circuit Design

Signal Conditioning

Data Conversion (ADC / DAC)

EMI / EMC Compliance

DO-254, DO-160

Avionics Hardware Development

Hardware Integration & Testing

EICD (Interface Control Documents)

Design Verification & Validation

Product Lifecycle Support

Hardware Simulation & Analysis

ย 

Job Description:

Develop new complex PCB and CCA designs /alternate solutionsย  with existing designs.

Understand and comply designs with EMI/EMC requirements and verify at unit level.

Develop DO-254 compliant complex hardware.

Perform system integration based on documentationย  / author and execute test procedures.

Design interfaces and release EICDs (Interface Control Documents).

Author documents for FRACA resolutionย  andย  engineering changes / design release.

Perform testing with appropriate lab equipment to verify integrity of design.

Perform product life cycle sustaining tasks.

Qualifications

3-6 years of hardware engineering experience

Bachelorโ€™s degree from an accredited institution in a technical discipline such as the sciences, technology, engineering or mathematics

Required Skills:ย ย 

Electrical Engineer -Aero Engines

Develop Acceptance test criteria for electronic control units or other gas turbine engine components.

Electrical design experience with aero engine projects or other aero engine manufacturers projects.

Rich experience working on aero engine external parts

BS degree in Electronic Engineering or related discipline

Experience with Engines and power systems.

Experience with module level analog / linear circuits including signal conditioning, data conversion (analog-to-digital and digital-to-analog).

Demonstrated experience performing Product / LRU and Printed Board Assembly (PBA) design verification and qualification.

Knowledge of DO-254, Design Assurance Guidance for Airborne Electronic Hardware and RTCA DO-160 Qualification Guidelines.

Demonstrated experience designing, simulating, analyzing, and verifying design performance to requirements.

Proficiency with PCB schematic / Layout tools, Mathcad, MS Excel, and LT-Spice.

Test Engineering experience including requirements-based testing.

Familiarity with the avionics development life cycle and troubleshooting / debug capability / component obsolescence