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Entry Level Analog Layout Design Engineer Jobs in St Louis, MO

As a Design Engineering Intern in the 2027 Hussmann Summer Internship Program, you will gain ... Responsibilities * Assist with concept layout, design, and development, via 3D & 2D CAD software ...

Hands-on experience or strong familiarity with analog hardware design for electronics, with ... Experience with PCB schematic capture and PCB layout tools. * PCB design skills suitable for power ...

Perform structural load calculations and assist with geometric layout and quantity development * Select standard bridge engineering/design procedures, and develop structural details using specialized ...

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Entry Level Analog Layout Design Engineer information

See St Louis, MO salary details

$74.9K

$181.1K

$197.4K

How much do entry level analog layout design engineer jobs pay per year?

As of Sep 4, 2026, the average yearly pay for entry level analog layout design engineer in St. Louis, MO is $181,066.00, according to ZipRecruiter salary data. Most workers in this role earn between $196,400.00 and $196,400.00 per year, depending on experience, location, and employer.

What does an entry level analog layout design engineer do?

An Entry Level Analog Layout Design Engineer is responsible for creating the physical layout of analog integrated circuits (ICs) based on circuit schematics provided by design engineers. This role involves using specialized software tools to place and route transistors, resistors, capacitors, and other components while ensuring optimal performance, manufacturability, and reliability. The engineer collaborates closely with design and fabrication teams to meet electrical and physical constraints, check for design rule violations, and prepare layouts for tape-out and production. Attention to detail and a strong understanding of semiconductor fabrication processes are essential for success in this position.

What are the key skills and qualifications needed to thrive as an entry level analog layout design engineer, and why are they important?

To thrive as an Entry Level Analog Layout Design Engineer, you need a solid understanding of analog circuit fundamentals, semiconductor physics, and a bachelor's degree in electrical engineering or a related field. Familiarity with industry-standard EDA tools like Cadence Virtuoso, along with knowledge of DRC/LVS verification processes, is typically required. Attention to detail, problem-solving abilities, and strong teamwork and communication skills help individuals excel in this role. These competencies ensure precise and efficient circuit layouts, minimize errors, and support successful collaboration in complex chip design projects.

What are some common challenges faced by entry level analog layout design engineers, and how can they be overcome?

Entry Level Analog Layout Design Engineers often encounter challenges such as understanding complex circuit schematics, meeting stringent design constraints (like matching, parasitics, and area optimization), and adhering to foundry-specific layout rules. Collaborating closely with senior engineers and participating in design reviews can help new engineers learn best practices and avoid common pitfalls. Utilizing available design automation tools and continuously seeking feedback on their layouts are also effective strategies for overcoming these challenges and accelerating professional growth.

What is the difference between Entry Level Analog Layout Design Engineer vs Analog IC Design Engineer?

AspectEntry Level Analog Layout Design EngineerAnalog IC Design Engineer
CredentialsBachelor's in Electrical Engineering or related fieldBachelor's or Master's in Electrical Engineering or related field
Work EnvironmentDesign teams, semiconductor companies, R&D labsDesign teams, semiconductor companies, R&D labs
ResponsibilitiesCreating physical layouts of analog circuits, ensuring manufacturabilityDesigning, simulating, and verifying analog circuits at the schematic level

While both roles involve working with analog circuits, the Entry Level Analog Layout Design Engineer focuses on translating circuit schematics into physical layouts, whereas the Analog IC Design Engineer is involved in the overall circuit design and simulation process. The layout engineer specializes in physical implementation, while the IC design engineer handles the conceptual and functional aspects of analog circuits.

What job categories do people searching Entry Level Analog Layout Design Engineer jobs in St. Louis, MO look for?

The top searched job categories for Entry Level Analog Layout Design Engineer jobs in St. Louis, MO are:

What cities near St. Louis, MO are hiring for Entry Level Analog Layout Design Engineer jobs?

Cities near St. Louis, MO with the most Entry Level Analog Layout Design Engineer job openings:

Infographic showing various Entry Level Analog Layout Design Engineer job openings in St. Louis, MO as of July 2026, with employment types broken down into 88% Full Time, 8% Part Time, 2% Contract, 1% Nights, and 1% Summer. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution, with an average salary of $181,066 per year, or $87.1 per hour.

Hardware Electronics Engineer I

Nidec Corporation

Saint Louis, MO • On-site

$65 - $90/hr

Other

Re-posted 18 days ago


Nidec rating

7.3

Company rating: 7.3 out of 10

Based on 52 frontline employees who took The Breakroom Quiz

314th of 496 rated machine equipment manufacturers


Job description

We begin with dreams. Dreams drive our motivation. Dreams are our future. The world's dreams, people's dreams, our dreams. Our passion creates ideas that make dreams come alive. Technology and products that were only dreams become reality. All for dreams. Dreams challenge and the Nidec-Group will continue to meet the challenge. For the world's and people's tomorrows; the world's first, the world's best technologies and products; we will continue our part in creating a better society.

Job Summary

The Hardware Electronics Engineer I develops and designs motor control power electronics through the product development lifecycle. Work within a team, from customers, suppliers and manufacturers, to translate designs into production. Provide technical guidance to support schedule and product cost to ensure overall success on projects. Utilize appropriate tools and resources to perform necessary design tasks including design conception, analysis, testing and verification.

Job Description

Responsibilities:

  • Design motor control power electronics, write design specifications, capture design schematics, guide the layout of the PCB, and oversee prototype, engineering validation and design verification phases of projects.
  • Work with software, mechanical and application engineering groups to optimize product design with low cost and high quality.
  • Complete hardware design per product requirements while complying with the new product development processes.
  • Coordinate prototype, engineering validation, design verification and agency testing.
  • Work with PCB layout designers to ensure schematic, part library, component placement and routing accuracy.
  • Responsible for component selection, benchmarking, qualification and approval of alternate components.
  • Prepare and conduct DFMEA, design and safety reviews.
  • Coordinate with component suppliers and contract manufacturers to introduce designs into production on schedule.
  • Create and support project documentation – BOMs, test procedures, manuals and drawings.
  • Work with the quality group to support design and process changes to improve product quality.
  • Work with a geographically distributed design and manufacturing teams.
  • Support application group regarding technical questions from customers.
  • Constantly keeps up with motor controls and power electronics technology changes in the industry.
  • Contribute to innovative ideas for cost reduction, product and process improvements.
  • Some travel domestically and globally to support manufacturing locations when necessary.
Knowledge, Skills and Abilities
  • Electrical Engineering BS degree.
  • 0 to 3 years of experience in and analog/digital circuit design and power electronics strongly desired.
  • Experience with PSPICE circuit simulation software, PCB schematic capture and layout tools are strongly desired.
  • Familiarity with Switch Mode Power Supply (SMPS) design and Power Factor Correction (PFC) circuits is preferred.
  • Past work in developing microcontroller/DSP based hardware for motor control application is preferred.
  • Familiarity in design and development of electronics for HVAC or appliance industries preferred.
  • Effective interpersonal, presentation, written and oral communication skills.
Additional Job Details

Electronic Motor Control, Switch Mode Power Supply, Power Electronics, Variable Frequency, Electric Motors, Design Engineer, Hardware Engineer, Hardware Development

Equal Employment Opportunity and Affiliation

Equal Employment Opportunity and affirmative action at Nidec. Nidec is an Equal Employment Opportunity (EEO) and affirmative action employer encouraging diversity in the workplace. All qualified applicants receive consideration for employment without regard to their age, gender, gender identity, sexual orientation, race, color, genetic information, religious creed, national origin, physical or mental disability, protected veteran status, or any other characteristic protected by law. For more information regarding your (EEO) rights as an applicant, please visit http://www1.eeoc.gov/employers/upload/eeoc_self_print_poster.pdf

Company Overview

Nidec has worked its way up to become the world's No.1 manufacturer of small precision motors. In the process, Nidec has gradually expanded its product lineup to include a variety of small to large motors, application products for machinery, and electronic and optical components. At present, its products are used in a wide range of fields and devices including information and telecommunications equipment, office equipment, home appliances, automobiles, industrial equipment, and environmental energy. "For Everything that Spins and Moves", the Group is creating next‑generation drive technologies to meet the needs of the society.

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