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Mechanical Design Engineer Jobs in Bothell, WA (NOW HIRING)

We are seeking a Senior TCA Mechanical Design Engineer with deep expertise in manufacturing processes, tooling design, and specialized fabrication methodologies to support rocket engine injector ...

Mechanical Design Engineer - Outerbody

Kirkland, WA · On-site

$86K - $117K/yr

The salary range for Mechanical Design Engineer - Outerbody is $80,800 - $120,800 annually. This position is also eligible for a holiday gift. Additionally, this role is eligible for the full range ...

The salary range for Mechanical Design Engineer - Outerbody is $80,800 - $120,800 annually. This position is also eligible for a holiday gift. Additionally, this role is eligible for the full range ...

The salary range for Mechanical Design Engineer - Outerbody is $80,800 - $120,800 annually. This position is also eligible for a holiday gift. Additionally, this role is eligible for the full range ...

Mechanical Design Engineer, AFT Quality

Bellevue, WA · On-site

$85K - $116K/yr

Amazon Fulfillment Technologies (AFT) is seeking a mechanical design engineer to conceive, develop, prototype and deploy modular data-collection systems at scale. These systems will be installed in a ...

Showing results 41-60

Mechanical Design Engineer information

See Bothell, WA salary details

$50.9K

$102.4K

$152.6K

How much do mechanical design engineer jobs pay per year?

As of Sep 1, 2026, the average yearly pay for mechanical design engineer in Bothell, WA is $102,374.00, according to ZipRecruiter salary data. Most workers in this role earn between $85,000.00 and $115,100.00 per year, depending on experience, location, and employer.

What does a mechanical design engineer do?

A Mechanical Design Engineer is responsible for designing, developing, and testing mechanical devices and systems. They use computer-aided design (CAD) software to create detailed blueprints and models, ensuring that products meet required specifications and standards. Their work often involves problem-solving, selecting appropriate materials, and collaborating with other engineers and teams to bring a concept from idea to production. Mechanical Design Engineers are found in a wide range of industries, including automotive, aerospace, manufacturing, and energy.

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

To thrive as a Mechanical Design Engineer, you need a solid background in mechanical engineering principles, CAD design, and problem-solving, typically supported by a bachelor's degree in mechanical engineering or a related field. Familiarity with industry-standard CAD software (such as SolidWorks or AutoCAD), simulation tools, and relevant certifications (like FE or PE) is highly valuable. Strong teamwork, creativity, and effective communication skills help you collaborate on multidisciplinary projects and present design solutions. These abilities are crucial for developing innovative, manufacturable designs that meet both technical requirements and client needs.

What are some typical challenges mechanical design engineers face when working on multidisciplinary teams?

Mechanical Design Engineers often collaborate closely with electrical engineers, software developers, and manufacturing teams. One common challenge is ensuring that mechanical designs align with the requirements and constraints of other disciplines, such as electronics placement or thermal management. Effective communication and regular meetings are crucial to resolve conflicts, address design changes, and keep projects on schedule. Building strong cross-functional relationships helps Mechanical Design Engineers anticipate potential issues early and deliver integrated solutions.

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

AspectMechanical Design EngineerMechanical Drafter
CredentialsBachelor's in Mechanical Engineering, Professional Engineer (PE) license often preferredAssociate degree or technical diploma in drafting or CAD technology
Work EnvironmentDesign offices, engineering firms, manufacturing companiesDrafting departments, engineering firms, manufacturing settings
ResponsibilitiesDesigns, analyzes, and develops mechanical systems and componentsCreates detailed technical drawings and plans based on engineers' designs

The main difference is that Mechanical Design Engineers focus on designing and developing mechanical systems, requiring engineering degrees and licenses, while Mechanical Drafters prepare detailed drawings based on engineers' concepts, typically with technical diplomas. Both roles work closely in the engineering process but serve different functions within the product development cycle.

What is the work of a Mechanical Design Engineer?

A Mechanical Design Engineer develops and creates mechanical systems, components, and products using CAD software and engineering principles. They analyze specifications, perform simulations, and collaborate with manufacturing teams to ensure designs are functional, efficient, and manufacturable.

What are the most commonly searched types of Mechanical Design Engineer jobs in Bothell, WA?

The most popular types of Mechanical Design Engineer jobs in Bothell, WA are:

What are popular job titles related to Mechanical Design Engineer jobs in Bothell, WA?

For Mechanical Design Engineer jobs in Bothell, WA, the most frequently searched job titles are:

What cities near Bothell, WA are hiring for Mechanical Design Engineer jobs?

Cities near Bothell, WA with the most Mechanical Design Engineer job openings:

Infographic showing various Mechanical Design Engineer job openings in Bothell, WA as of August 2026, with employment types broken down into 84% Full Time, 14% Part Time, and 2% Contract. Highlights an 83% Physical, 5% Hybrid, and 12% Remote job distribution, with an average salary of $102,374 per year, or $49.2 per hour.

Mechanical Design Engineer, Robotics Sustaining Engineering

Meta

Redmond, WA • On-site

$173K - $245K/yr

Full-time

Re-posted 3 days ago


Meta rating

7.8

Company rating: 7.8 out of 10

Based on 45 frontline employees who took The Breakroom Quiz

138th of 247 rated software companies


Job description

At Meta, we're building the future of human connection and the technology that enables it. This means continuously inventing and developing technologies for the next generation of experiences. To continue our efforts in the path to AGI, and as we move closer to a future with intelligent robots and advanced AI models, we're hiring talent across a broad range of disciplines from robotics hardware to system software, machine perception, and artificial intelligence. These crucial projects and initiatives taken on by this team have never been done before, so you have a rare opportunity to help us create new ways people connect around the world. The Meta Robotics Hardware team is seeking a Mechanical Design Engineer focused on sustaining engineering to own the design health and continuous improvement of our humanoid robot hardware after initial release. You will be the primary engineering contact for failure investigation, corrective design action, and design-for-manufacture improvements driven by real-world feedback from our fabrication shops and assembly teams. This is a hands-on role that lives at the boundary between the design office and the shop floor - you'll spend as much time reviewing failed parts and assembly pain points as you do in CAD. This role will be part of a ME team responsible for concept development, analytical modeling, prototype design, first article build, fabrication, vendor management, and testing. Candidates should be comfortable working in a high ambiguity, fast paced environment where full system requirements are seldom known. This team is dedicated to building hardware that enables learning through data collection and system testing.
Responsibilities
Lead root-cause analysis (RCA) on mechanical failures - fractured components, worn interfaces, fatigue cracks, fastener loosening, tolerance stack-up issues
• Own the corrective action process: document failure mode, determine root cause, implement and verify design fix, and update drawings and specifications
• Maintain a failure tracking database; identify recurring failure patterns and drive systemic design improvements
• Collaborate with test and reliability engineers to correlate field/lab failures back to design margins and loading assumptions
• Initiate and manage Engineering Change Orders (ECOs) to implement corrective actions into production documentation
• Serve as the primary design engineering liaison to the assembly and integration team
• Collect, triage, and action assembly feedback - difficult-to-reach fasteners, unclear build sequences, interference issues, tooling access constraints, and handling concerns
• Implement design changes that reduce assembly time, lower operator skill requirements, and improve build repeatability
• Develop and revise assembly work instructions, torque specifications, and inspection criteria based on build technician input
• Participate in hands-on build activities to first-hand identify ergonomic and process pain points
• Design tooling to facilitate complex component assembly
• Maintain and improve the sustaining engineering change process - from issue identification through design release and verification
• Support configuration management and BOM accuracy for all active robot builds
• Track and report sustaining metrics: open issues, mean time to corrective action, repeat failure rate, assembly hours per unit
• Develop and document standard work instructions and assembly aids for prototype and production builds
• Work closely with a cross-functional team of engineers (Electrical, Software, Firmware) to deliver complete technical solutions
• Troubleshoot root-cause of mechanical failures, implement improved designs, and test effectiveness of changes
Minimum Qualifications
• BS degree in Mechanical Engineering
• 7+ years of experience in Mechanical Design Engineering with a meaningful portion in sustaining, production, or manufacturing engineering
• Strong CAD proficiency (SolidWorks, NX, or CREO) including full drawing packages with GD&T per ASME Y14.5
• Working knowledge of CNC machining processes - understanding of fixturing, tool access, setup minimization, and achievable tolerances
• Experience interpreting assembly feedback and translating it into actionable design improvements
• Hands-on experience working on a shop floor or in a build area
• Familiarity with engineering change management processes (ECO/ECN/ECR workflows)
• Experience with rapid prototyping manufacturing processes and materials
• Experience managing time-sensitive projects through to completion while balancing evolving priorities and a broad range of stakeholders
• Experience in tolerance analysis and geometric dimensioning and tolerancing (GD&T per ASME Y14.5)
• Experience in Finite Element Analysis (FEA)
• Experience with tolerance analysis tools and methodologies (RSS, Monte Carlo, worst-case)
• Familiarity with common joining and fastening methods and their trade-offs in robotic assemblies
• Experience communicating technical recommendations and influencing design decisions across multidisciplinary teams (e.g., failure reports, design reviews, ECO proposals)
• Experience with lightweighting strategies (topology optimization, lattice structures, composite materials)
• Background in high-mix/low-volume transitioning to mid-volume production environments
Preferred Qualifications
• Exposure to Lean manufacturing principles or structured problem-solving methodologies (8D, A3, Ishikawa)
• Demonstrated ability to integrate AI tools to optimize/redesign workflows and drive measurable impact (e.g., efficiency gains, quality improvements)
• Experience adhering to and implementing responsible, ethical AI practices (e.g., risk assessment, bias mitigation, quality and accuracy reviews)
• Experience with additional manufacturing processes: sheet metal, additive manufacturing, anodizing, and plating
• Ability to read and interpret FEA results to inform failure investigations and design margin assessments
• Demonstrated ongoing AI skill development (e.g., prompt/context engineering, agent orchestration) and staying current with emerging AI technologies
• Direct experience with robotic systems - BLDC motors, actuators, gearboxes, linkage mechanisms
• Experience writing clear failure reports that cross-functional teams can act on
• Experience with PLM/PDM systems (Teamcenter, SolidWorks PDM, Windchill, or similar)
• Familiarity with statistical tolerance analysis and process capability (Cp/Cpk)
About Meta
Meta builds technologies that help people connect, find communities, and grow businesses. When Facebook launched in 2004, it changed the way people connect. Apps like Messenger, Instagram and WhatsApp further empowered billions around the world. Now, Meta is moving beyond 2D screens toward immersive experiences like augmented and virtual reality to help build the next evolution in social technology. People who choose to build their careers by building with us at Meta help shape a future that will take us beyond what digital connection makes possible today-beyond the constraints of screens, the limits of distance, and even the rules of physics.
Equal Employment Opportunity
Meta is proud to be an Equal Employment Opportunity employer. We do not discriminate based upon race, religion, color, national origin, sex (including pregnancy, childbirth, reproductive health decisions, or related medical conditions), sexual orientation, gender identity, gender expression, age, status as a protected veteran, status as an individual with a disability, genetic information, political views or activity, or other applicable legally protected characteristics. You may view our Equal Employment Opportunity notice here.

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