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Sintering Jobs in California (NOW HIRING)

We're looking for a Senior Manufacturing Engineer to take ownership of process design, manufacturing systems, and continuous improvement across our joining lines, including laser, TIG, sintering ...

Senior Solar Process Engineer

Los Angeles, CA · On-site

$112K - $144K/yr

Responsible for the development, qualification, and production-scale optimization of K2 solar array processes - including solar module interconnects, bonding, sintering, lamination, deposition ...

Staff Process Engineer

Fremont, CA · On-site

$112K - $161K/yr

Deep understanding of sintering mechanisms and thermal/mechanical behavior of ceramics in extreme environments. * Strong mechanical aptitude and demonstrated ability to understand interaction of ...

Staff Process Engineer

Fremont, CA · On-site

$112K - $161K/yr

Deep understanding of sintering mechanisms and thermal/mechanical behavior of ceramics in extreme environments. * Strong mechanical aptitude and demonstrated ability to understand interaction of ...

Engineering Internship

Los Angeles, CA · On-site

$18 - $23.50/hr

Support flash sintering fixture iterations, including CAD updates, part sourcing, assembly, testing, and documentation * Help create and improve sample preparation SOPs for polishing, sectioning ...

Showing results 41-52

Sintering information

What is sintering?

Sintering is a manufacturing process used to create solid materials by heating powdered raw materials below their melting point until the particles bond together. This technique is commonly used in metallurgy, ceramics, and the production of certain plastics. The process enhances the strength and structural integrity of the final product, making it useful for producing components with complex shapes and specific material properties. Sintering is essential in industries such as automotive, aerospace, and electronics for making parts like gears, filters, and electronic components.

What are some common challenges faced by professionals working in sintering operations, and how can they be addressed?

One common challenge in sintering operations is maintaining consistent product quality due to variations in raw material properties or process conditions. To address this, professionals often use precise monitoring systems and adjust parameters such as temperature and dwell time in real time. Another challenge is equipment maintenance, as sintering furnaces operate at high temperatures and require regular inspection and servicing to minimize downtime. Effective communication with quality control and engineering teams is also vital to promptly resolve production issues and optimize process efficiency.

What are the key skills and qualifications needed to thrive as a Sintering Technician, and why are they important?

To thrive as a Sintering Technician, you need a solid understanding of materials science, mechanical aptitude, and experience with industrial manufacturing processes, often supported by a technical diploma or associate degree. Familiarity with sintering furnaces, temperature control systems, and quality inspection tools is typically required. Attention to detail, problem-solving skills, and effective teamwork are essential soft skills for this role. These abilities ensure the production of high-quality parts, minimize defects, and maintain efficient and safe operations in a manufacturing environment.

What is the difference between Sintering vs Machinist?

AspectSinteringMachinist
Required CredentialsTechnical training, certifications in powder metallurgy or materials scienceTechnical training, certifications in machining or manufacturing
Work EnvironmentManufacturing plants, working with powders and pressesMachine shops, workshops, manufacturing floors
Industry UsageMetal parts production, aerospace, automotiveMetal fabrication, tool and die, manufacturing

Both Sintering and Machinist roles are integral to manufacturing industries, often overlapping in metal production. Sintering involves shaping powdered materials through heat, while Machinists operate machines to cut and shape metal parts. Understanding their differences helps in choosing the right career path or job role within manufacturing sectors.

Infographic showing various Sintering job openings in California as of August 2026, with employment types broken down into 1% Internship, 95% Full Time, 2% Part Time, and 2% Nights. Highlights an 98% Physical, 1% Hybrid, and 1% Remote job distribution.

Senior Welding Engineer

Archer

San Jose, CA

$144K - $180K/yr

Full-time

Re-posted 21 days ago


Job description

About the Role

Archer is scaling production of the advanced joining and assembly processes that are critical to the reliability and performance of our Electric Propulsion System. We're looking for a Senior Manufacturing Engineer to take ownership of process design, manufacturing systems, and continuous improvement across our joining lines, including laser, TIG, sintering, ultrasonic, and other advanced joining processes used to build electric powertrain components.

This role pairs manufacturing systems engineering with hands-on expertise in specialized joining. You'll specify, design, and implement the equipment and control systems behind repeatable, safety-critical joints. Working alongside a lean, expert team, you'll partner with design, quality, and materials & process groups to scale these processes from development through high-reliability production. 

What You'll Do:
  • Lead process design and scale-up for your joining projects, from development through production ramp - defining process windows, parameter controls, and production requirements.
  • Commission new equipment and systems, and develop the SOPs, work instructions, and control plans that make manufacturing repeatable and validated.
  • Drive Design for Manufacturability (DFM) for joining processes, partnering with Product Design to optimize for producibility, cost, and quality without compromising functional requirements.
  • Specify and validate equipment for specialized joining processes - laser systems, automated test equipment, vision systems, and assembly tooling.
  • Develop equipment specs, tooling requirements, and control strategies that reliably govern critical parameters such as penetration, temperature, pressure, and timing.
  • Partner with process engineers and equipment vendors to define critical inputs and outputs, translate them into equipment specifications, and validate performance.
  • Design and run experiments that support process validation, troubleshooting, and improvement.
  • Collaborate with Product Design, Manufacturing, and Quality to solve process-equipment integration challenges and support design changes.
What You'll Bring:
  • A high-ownership mindset and bias for action; comfortable navigating competing priorities in a fast-paced, safety-critical environment.
  • Bachelor's degree in Mechanical, Materials, Manufacturing, or a related engineering field (or equivalent proven experience).
  • 2+ years of manufacturing engineering experience in a specialized, precision-process environment; ideally experience is involving equipment design, commissioning, or process control for a critical process.
  • A demonstrated ability to learn and master specialized process parameters: the critical inputs and outputs, how they're controlled, what can go wrong, and how to validate control strategies.
  • Hands-on troubleshooting of manufacturing problems, including root cause analysis and corrective action.
  • Experience in at least one of: welding/joining, materials processing, soldering/brazing, precision assembly, test equipment design, or other advanced manufacturing processes.
  • Strong proficiency with CAD tools (NX, SolidWorks, AutoCAD) and PLM/ERP systems.
  • Ability to read and create mechanical drawings.
  • A clear communicator with strong technical documentation skills - able to capture process knowledge and turn engineering requirements into action.
Bonus Points:
  • Experience with high-voltage systems
  • Hands-on expertise with PLCs, vision systems (2D/3D), sensor integration, or industrial automation.
  • Background in aerospace, EV, medical device, or semiconductor manufacturing.
  • Familiarity with design of experiments (DOE) or advanced process validation methods.
  • Experience with MES, Teamcenter, or similar manufacturing systems.

Please note that this job description is intended to provide a general overview of the position and does not include an exhaustive list of responsibilities and qualifications.

At Archer we aim to attract, retain, and motivate talent that possess the skills and leadership necessary to grow our business. We drive a pay-for-performance culture and reward performance that supports the Company's business strategy. For this position we are targeting a base pay between $144,000.00 - $180,000.00  Actual compensation offered will be determined by factors such as job-related knowledge, skills, and experience.

Archer is committed to provide a safe workplace and a safe aircraft. This is a safety sensitive designated role. Employment in safety sensitive positions is contingent on successful passage of a background check and is subject to pre-employment and random drug screening.

Archer is committed to working with and providing reasonable accommodations to job applicants with physical or mental disabilities, and those with sincerely held religious beliefs. Applicants who may require reasonable accommodation for any part of the application or hiring process should provide their name and contact information to Archer's People Team at people@archer.com. Reasonable accommodations will be determined on a case-by-case basis.