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Robotics Design Engineer Jobs in Bellflower, CA (NOW HIRING)

Staff Design Engineer

Los Angeles, CA · On-site

$135K - $250K/yr

Our robots take on the tedious, hazardous, and ergonomically demanding work that has kept ... As a Senior Design Engineer, you will join our Design & Mechatronics team onsite in our Carson, CA ...

Staff Design Engineer

Los Angeles, CA · On-site

$120 - $180/hr

Our robots take on the tedious, hazardous, and ergonomically demanding work that has kept ... As a Senior Design Engineer, you will join our Design & Mechatronics team onsite in our Carson, CA ...

Robotics engineer

Los Angeles, CA · On-site

$120K - $150K/yr

Sorting Robotics Inc. is looking for a robotics Engineer to design, develop, and deploy robotic solutions to manufacturing companies. This position is a Mid-level position requiring 5-10 years of ...

Mechanical Design Engineer

Torrance, CA

$79K - $107K/yr

By combining advanced software, robotics, and full-stack manufacturing, we are reinventing how ... The Role We are seeking a Mechanical Design Engineer to support the development of custom ...

Mechanical Design Engineer

Torrance, CA · On-site

$79K - $107K/yr

By combining advanced software, robotics, and full-stack manufacturing, we are reinventing how ... The Role We are seeking a Mechanical Design Engineer to support the development of custom ...

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Robotics Design Engineer information

See Bellflower, CA salary details

$30.3K

$110.4K

$176.6K

How much do robotics design engineer jobs pay per year?

As of Aug 7, 2026, the average yearly pay for robotics design engineer in Bellflower, CA is $110,354.00, according to ZipRecruiter salary data. Most workers in this role earn between $87,300.00 and $132,700.00 per year, depending on experience, location, and employer.

What does a robotics design engineer do?

A Robotics Design Engineer is responsible for designing, developing, and testing robotic systems and components. They use principles from mechanical, electrical, and software engineering to create robots that can perform specific tasks or functions. Their work involves creating blueprints, modeling designs, selecting appropriate materials, and collaborating with multidisciplinary teams to ensure the robots meet performance and safety standards. Robotics Design Engineers also troubleshoot and refine prototypes, ensuring their reliability and efficiency before deployment. This role is crucial in industries such as manufacturing, healthcare, and automation.

What are the key skills and qualifications needed to thrive as a robotics design engineer?

To thrive as a Robotics Design Engineer, you need a solid background in mechanical, electrical, or computer engineering, usually with a relevant bachelor's or master's degree. Proficiency in CAD software, programming languages like Python or C++, and experience with robotics platforms such as ROS are commonly required. Strong problem-solving, creativity, and teamwork skills help set candidates apart in this field. These skills ensure the effective design, integration, and troubleshooting of advanced robotic systems for diverse applications.

What is the difference between Robotics Design Engineer vs Mechanical Engineer?

AspectRobotics Design EngineerMechanical Engineer
Required CredentialsBachelor's in Robotics, Mechanical, or Electrical Engineering; often certifications in robotics or automationBachelor's in Mechanical Engineering; professional engineering license (PE) optional)
Work EnvironmentDesign labs, robotics development facilities, manufacturing settingsManufacturing plants, design offices, research labs
Industry UsageRobotics companies, automation firms, research institutionsManufacturing, automotive, aerospace, product design
Common Search/ComparisonRobotics Design Engineer vs Mechanical Engineer

Robotics Design Engineers focus on creating robotic systems, integrating sensors, actuators, and control systems, often requiring knowledge of electronics and programming. Mechanical Engineers design and analyze mechanical components and systems, with a broader scope across various industries. While both roles require engineering degrees, Robotics Design Engineers typically have specialized skills in robotics and automation, making them distinct yet overlapping with Mechanical Engineers in certain projects.

What are some common challenges faced by robotics design engineers when transitioning prototypes to mass production?

Robotics Design Engineers often encounter challenges when moving from prototype development to mass production, such as ensuring component reliability, optimizing designs for manufacturability, and maintaining cost efficiency without sacrificing performance. They must collaborate closely with manufacturing teams to refine product designs, address supply chain constraints, and ensure that regulatory standards are met. Effective communication and iterative testing are essential to identify and resolve issues early, facilitating a smoother transition to large-scale manufacturing.
What job categories do people searching Robotics Design Engineer jobs in Bellflower, CA look for? The top searched job categories for Robotics Design Engineer jobs in Bellflower, CA are:
What cities near Bellflower, CA are hiring for Robotics Design Engineer jobs? Cities near Bellflower, CA with the most Robotics Design Engineer job openings:
Infographic showing various Robotics Design Engineer job openings in Bellflower, CA as of July 2026, with employment types broken down into 90% Full Time, 8% Part Time, and 2% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $110,354 per year, or $53.1 per hour.

Product Design & HRI Engineer, Robotics Hardware

FieldAI

Irvine, CA • On-site

$100 - $150/hr

Other

Posted 18 days ago


Job description

Human‑Robot Interaction & Product Design Engineer

In this role you will develop hardware that shapes how our robotic systems look, feel, and sound. This spans audio and visual systems, industrial design, and robotic expressiveness and motion. Within audio and visual systems, you will select and integrate displays, speakers, and microphones. Within industrial design, you will work on form and CMF (color, material, finish). You will also help define robot motion and expressiveness. As part of the Hardware department this role will involve significant hands‑on work bringing up and designing electromechanical elements.

You will coordinate with Product and UI/UX to identify what interactions and experiences are needed. Then work with Electrical, Mechanical, and Computing hardware personnel to implement them. Solutions must balance performance, durability, manufacturability, and SWaP (size, weight, power) constraints across environments ranging from rugged industrial sites to commercial settings with the general public.

What You Will Get To Do Form & Interaction
  • Form & Aesthetics: Drive form, shape, and CMF (color/material/finish) decisions that define how the robot looks and feels.
  • Interaction & Expressiveness: Shape how people see, hear, and interact with the robot across displays, audio, and movement, adapting choices for industrial versus commercial and public settings.
  • Cross‑Team Collaboration: Partner with hardware groups such as Electrical, Mechanical, and Computing, and company‑wide groups such as Product, UX, and Field Ops, since many parts are interrelated.
Lighting & Visual Displays Systems
  • Display & Lighting Selection: Drive selection and programming of screens (OLED, LCD, LED), LED strips, and multicolor lighting elements such as ambient lighting, and expressive displays, including novel concepts like projection interfaces.
  • Durability & Readability: Ensure display and lighting durability (drop/impact resistance) and outdoor daylight readability across harsh field conditions.
  • SWaP Tradeoffs: Own SWaP tradeoffs for all display and lighting components as they are integrated into the payload.
  • Firmware & Validation: Write scripts to validate display boot‑up, onboard compute connectivity, and correct rendering, catching crashes before field deployment.
Audio Systems
  • Speaker & Microphone Selection: Select, spec, and program speakers and microphones for target use cases, balancing audio I/O needs with the robot's form factor.
  • Acoustic Performance Evaluation: Evaluate loudness, voice pickup, and acoustic performance across environments to ensure clear two‑way communication in the field.
  • SWaP Tradeoffs: Balance size, weight, and power (SWaP) tradeoffs for audio components against other system constraints and payload budgets.
What You Have
  • Education: B.S., M.S., or equivalent experience in Human‑Robot Interaction, Electrical Engineering, Mechanical/Industrial Design, or a related field.
  • Experience Level: Minimum of 3+ years of hands‑on experience working on industrial/product design, audio‑visual systems, or robotics. We welcome candidates across mid‑level to senior and staff levels.
  • AV Hardware Selection: Experience selecting and specifying speakers, microphones, displays (OLED/LCD/LED), and lighting elements for hardware products.
  • SWaP & Systems Integration: Comfort balancing size, weight, and power tradeoffs across audio‑visual and electromechanical system integration.
  • Firmware & Validation: Experience writing scripts or tools to validate display boot‑up, rendering, and connectivity, catching failures before field deployment.
  • Industrial Design Skillset: Experience with industrial design work, including form, shape, and CMF (color/material/finish) decisions, that shape a product's look and feel.
  • Robot Behavior & UI/UX Bridge: Familiarity with how robot movement and behaviour contribute to expressiveness, and comfort acting as the hardware bridge to a UI/UX team.
  • Cross‑Functional Collaboration: Experience partnering with Electrical and Mechanical teams to deliver integrated hardware.
  • Human‑Robot Interaction Knowledge: Familiarity with HRI/HMI concepts such as expressive/multimodal interaction, gaze/attention, and emotion libraries.
  • Prototyping Tools: Familiarity with CAD and 3D‑print prototyping for rapid iteration on audio‑visual hardware concepts.
  • Software Tools: CAD (Solidworks/Fusion/NX), Python (or related programming language).
What Will Set You Apart
  • Advanced Industrial Design: Experience owning industrial design end‑to‑end, including concept sketching, CMF systems, and prototyping, for consumer robotics or wearable hardware.
  • User Research: Experience running or supporting user studies on preferences, such as eye or face design options for expressive robots.
  • Animation & Expression: Experience with animation tools (Blender, Maya) or behaviour/emotion libraries for expressive, character‑driven robot design.
  • Functional Safety & Compliance: Familiarity with functional safety (SIL) and regulatory compliance (CE, FCC, UL) for audio‑visual hardware.
  • Scaling: Experience taking audio‑visual hardware from prototype to volume manufacturing with contract manufacturers (CM) and DFM/DFA practices.
Compensation

The salary range for this role is $100,000–$150,000. The actual offer for this position will be based on factors such as relevant experience, competencies, certifications, and how well the candidate meets the qualifications outlined above. Part of our compensation package also includes full benefits, equity, and generous time.

Field AI Onsite Work Philosophy

This is a fully onsite role. Candidates will be expected to work from our Irvine, CA office. In‑person engagement is essential to our success, and we offer flexible working hours to support focus and work‑life balance.

Equal Employment Opportunity

We celebrate diversity and are committed to creating an inclusive environment for all employees. Candidates and employees are always evaluated based on merit, qualifications, and performance. We will never discriminate on the basis of race, color, gender, national origin, ethnicity, veteran status, disability status, age, sexual orientation, gender identity, marital status, mental or physical disability, or any other legally protected status.

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