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Graduate Analog Design Engineer Jobs in Oxnard, CA

... engineering role. Key Responsibilities: * Assistin the design, development, and validation of ... Familiarity with analog, digital, and mixed-signal electronic circuits. Experience with ECAD tools ...

... a single engineering role. Key Responsibilities: * Assist in the design, development, and ... analog, digital, and mixed-signal electronic circuits. • Experience with ECAD tools such as ...

Hardware Design Engineer

Malibu, CA · On-site

$150 - $200/hr

Design and implement engineering solutions for electrical and electronic components, analog and digital subsystems, and associated algorithms, ensuring alignment with established engineering ...

Hardware Design Engineer

Malibu, CA · On-site

$154K - $197K/yr

Design and implement engineering solutions for electrical and electronic components, analog and digital subsystems, and associated algorithms, ensuring alignment with established engineering ...

Design and implement engineering solutions for electrical and electronic components, analog and digital subsystems, and associated algorithms, ensuring alignment with established engineering ...

Hardware Design Engineer

Malibu, CA · On-site

$154K - $197K/yr

Essential Duties: • Design and implement engineering solutions for electrical and electronic components, analog and digital subsystems, and associated algorithms, ensuring alignment with ...

Showing results 21-40

Graduate Analog Design Engineer information

See Oxnard, CA salary details

$81.5K

$197.2K

$215K

How much do graduate analog design engineer jobs pay per year?

As of Sep 8, 2026, the average yearly pay for graduate analog design engineer in Oxnard, CA is $197,222.00, according to ZipRecruiter salary data. Most workers in this role earn between $213,900.00 and $213,900.00 per year, depending on experience, location, and employer.

What does a graduate analog design engineer do?

A Graduate Analog Design Engineer works on the development and testing of analog circuits, such as amplifiers, filters, and signal converters, often as part of larger electronic systems. They typically assist with circuit design, simulation, layout, and debugging under the supervision of senior engineers. Their work is important for ensuring the performance and reliability of products like sensors, communication devices, and integrated circuits. This role is ideal for recent graduates who have a strong foundation in electronics and are looking to start their career in analog hardware design.

What are the key skills and qualifications needed to thrive as a graduate analog design engineer, and why are they important?

To thrive as a Graduate Analog Design Engineer, you need a solid foundation in electrical engineering principles, analog circuit design, and a relevant degree such as a BSc or MSc in Electrical or Electronic Engineering. Familiarity with simulation tools like Cadence, SPICE, and MATLAB, as well as understanding of layout and verification processes, is typically required. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills help set candidates apart. These skills and qualifications are crucial for designing reliable analog circuits, collaborating efficiently within design teams, and ensuring successful project outcomes.

What opportunities for mentorship and professional development can a graduate analog design engineer expect in their first year?

As a Graduate Analog Design Engineer, you can typically expect to work closely with experienced engineers who provide mentorship and on-the-job training. Many companies have structured onboarding programs, regular technical workshops, and opportunities to participate in design reviews where you can learn industry best practices. You’ll likely collaborate with cross-functional teams, including digital design, layout, and test engineers, which broadens your technical knowledge. Additionally, most organizations encourage ongoing learning through access to internal resources, online courses, and attendance at conferences, helping you develop both your technical and soft skills.

What is the difference between Graduate Analog Design Engineer vs Analog Design Engineer?

AspectGraduate Analog Design EngineerAnalog Design Engineer
QualificationsBachelor's degree in Electrical Engineering or related fieldBachelor's or Master's degree in Electrical Engineering or related field
ExperienceEntry-level, limited professional experienceSeveral years of professional experience in analog circuit design
Work EnvironmentInternships, training programs, entry-level projectsFull-time design teams, project leadership roles
Industry UsageUsed in early career stages, internships, and graduate programsUsed in professional design roles across semiconductor and electronics companies

The main difference between a Graduate Analog Design Engineer and an Analog Design Engineer lies in experience and responsibility. The graduate role is typically an entry-level position for recent graduates, focusing on learning and supporting design tasks. In contrast, an Analog Design Engineer has more experience and takes on more complex design responsibilities within professional teams.

What are popular job titles related to Graduate Analog Design Engineer jobs in Oxnard, CA?

For Graduate Analog Design Engineer jobs in Oxnard, CA, the most frequently searched job titles are:

What cities near Oxnard, CA are hiring for Graduate Analog Design Engineer jobs?

Cities near Oxnard, CA with the most Graduate Analog Design Engineer job openings:

Infographic showing various Graduate Analog Design Engineer job openings in Oxnard, CA as of August 2026, with employment types broken down into 87% Full Time, 8% Part Time, and 5% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $197,222 per year, or $94.8 per hour.

Hardware Design Engineer

SAAZ Micro Inc

Camarillo, CA • On-site

Full-time

Posted 27 days ago


Job description

The successful applicant willbe responsible forhardware design. The position includesdesign, development, validation, and production of advanced electronic hardware for electro-optical, imaging, sensing, and instrumentation systems. This position combines PCB design, circuit development, hardware integration, and laboratory validation into a single engineering role.


Key Responsibilities:

  • Assistin the design, development, and validation of electronic hardware and printed circuit boards.
  • Support schematic capture, PCB layout,componentselection, and engineering documentation.
  • Build, test, troubleshoot, and debug prototype electronic assemblies.
  • Perform electrical testing and hardware validation using laboratory instrumentation.
  • Analyze test data,identifyissues, and recommend design improvements.
  • Work closely with cross-functional engineering teams to develop products from concept through production.
  • Support manufacturing, prototype builds, and engineering change activities.
  • Maintain clear andaccuratetechnical documentation.

Desired Qualifications:


Internship, undergraduate research, senior design project, or personal project experience involving electronic hardware or PCB design.


Familiarity with analog, digital, and mixed-signal electronic circuits.


Experience with ECAD tools such as Altium Designer,KiCad, OrCAD, or similar through coursework or project work.


Hands-on experience with electronic assembly, soldering, and hardware debugging.


Familiarity with laboratory equipment such as oscilloscopes, digital multimeters, power supplies, function generators, and logic analyzers.


Basic programming or scripting experience (Python, C/C++, or MATLAB) for test automation or data analysis is a plus.


Exposure to embedded systems, microcontrollers, or FPGA-based hardware, including experience with firmware development, is desirable.


Strong analytical, troubleshooting, and problem-solving skills.


Excellent written and verbal communication skills with the ability to document technical work clearly.


Highly motivated, detail-oriented, and eager to learn in a collaborative, multidisciplinary engineering environment.


Ability to adapt to a flexible and changing schedule

Success Metrics:

  • Schematics released on time
  • Board validation without issues.
  • Demonstrate good lab safety,cleanroomand ESD rulecompliance
  • Thoroughboardand assemblydocumentation
  • Bill of Materials (BOM) accuracy