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Remote Microelectronics Engineer Jobs in Santa Clara, CA

STA Engineer Remote or San Jose, CA * STA setup, convergence, reviews, and sign-off for multi-mode ... Education: B.Tech or MTech/MS in Electrical/Electronics/Microelectronics/VLSI. Preferred ...

Remote Microelectronics Engineer information

See Santa Clara, CA salary details

$44.6K

$136.1K

$224.9K

How much do remote microelectronics engineer jobs pay per year?

As of Aug 8, 2026, the average yearly pay for remote microelectronics engineer in Santa Clara, CA is $136,076.00, according to ZipRecruiter salary data. Most workers in this role earn between $97,500.00 and $177,900.00 per year, depending on experience, location, and employer.

What is the difference between Remote Microelectronics Engineer vs Remote Electronics Design Engineer?

AspectRemote Microelectronics EngineerRemote Electronics Design Engineer
Required CredentialsBachelor's/Master's in Electrical Engineering, Microelectronics specialization, certifications like IEEEBachelor's/Master's in Electrical Engineering, Electronics or Circuit Design focus, relevant certifications
Work EnvironmentDesigning integrated circuits, working with semiconductor fabs, CAD toolsDeveloping electronic circuits, PCB design, prototyping, simulation
Employer & Industry UsageSemiconductor companies, chip manufacturers, R&D labsConsumer electronics, industrial equipment, startups, R&D firms

The main difference is that Remote Microelectronics Engineers focus on designing and developing microchips and integrated circuits, often requiring specialized knowledge of semiconductor fabrication. In contrast, Remote Electronics Design Engineers typically work on broader electronic circuit design, including PCB layout and prototyping. Both roles require electrical engineering credentials and often overlap in industry applications, but their core responsibilities and focus areas differ.

What are the key skills and qualifications needed to thrive as a remote microelectronics engineer?

To thrive as a Remote Microelectronics Engineer, you need strong expertise in circuit design, semiconductor devices, and microfabrication processes, typically supported by a degree in electrical engineering or a related field. Familiarity with CAD tools like Cadence or Altium Designer, simulation software, and relevant industry certifications is essential. Excellent problem-solving, independent work habits, and clear communication skills set individuals apart in this remote role. These competencies ensure precise design, effective collaboration, and successful project delivery in a highly technical and distributed work environment.

How do remote microelectronics engineers typically collaborate with hardware teams and manage project communication effectively?

Remote Microelectronics Engineers often work closely with hardware and cross-functional teams using digital collaboration tools such as video conferencing, project management platforms, and shared design software. Clear communication and regular status updates are essential to ensure alignment on design specifications, troubleshooting, and integration milestones. Many organizations establish structured check-ins and documentation protocols to bridge physical distance, making it easier for remote engineers to contribute effectively and stay informed about project progress.

What does a remote microelectronics engineer do?

A Remote Microelectronics Engineer designs, develops, and tests tiny electronic components and circuits used in devices like smartphones, computers, and medical equipment, all while working from a remote location. Their responsibilities often include schematic design, simulation, layout, and troubleshooting of microelectronic systems. They collaborate with other engineers using digital tools to ensure product quality and meet project deadlines. Working remotely allows them to access projects globally without needing to be on-site, making this role flexible and adaptable to various industries.
What are popular job titles related to Remote Microelectronics Engineer jobs in Santa Clara, CA? For Remote Microelectronics Engineer jobs in Santa Clara, CA, the most frequently searched job titles are:
What job categories do people searching Remote Microelectronics Engineer jobs in Santa Clara, CA look for? The top searched job categories for Remote Microelectronics Engineer jobs in Santa Clara, CA are:
Infographic showing various Remote Microelectronics Engineer job openings in Santa Clara, CA as of July 2026, with employment types broken down into 92% Full Time, 4% Part Time, and 4% Contract. Highlights an 88% Physical, 4% Hybrid, and 8% Remote job distribution, with an average salary of $136,076 per year, or $65.4 per hour.

STA Engineer

INA Solution Inc

San Jose, CA • Remote

Full-time

Re-posted 9 days ago


Job description

STA Engineer
Remote or San Jose, CA
 
  • STA setup, convergence, reviews, and sign-off for multi-mode, multi-voltage domain designs.
  • Timing analysis, validation, and debug across multiple PVT conditions using PT/Tempus.
  • Run Primetime and/or Tempus for STA flow optimization and Spice to STA correlation.
  • Evaluate multiple timing methodologies/tools on different designs and technology nodes.
  • Work on automation scripts within STA/PD tools for methodology development.
  • Good Technical writing and Communication skills; should be willing to work in a cross-collaborative environment
  • Experience in design automation using TCL/Perl/Python.
  • Familiar with digital flow design implementation RTL to GDS: ICC, Innovous, PT/Tempus
  • Familiar with process technology enablement: Circuit simulations using Hspice/FineSim, Monte Carlo.
Education:
 B.Tech or MTech/MS in Electrical/Electronics/Microelectronics/VLSI.
 
Preferred Qualification/Skills
  • Strong expertise in STA timing analysis basics, AOCV/POCV concepts, CTS, defining and managing timing constraints, Latch transparency handling, 0-cycle, multi-cycle path handling
  • Hands-on experience with STA tools – Prime-time, Tempus
  • Have experience in driving timing convergence at Chip-level and Hard-Macro level
  • In-depth knowledge cross-talk noise, Signal Integrity, Layout Parasitic Extraction, feed through handling,
  • Knowledge of ASIC back-end design flows and methods and tools (ICC2, Innovus)
  • Knowledge of Spice simulation Hspice/FineSim, Monte Carlo. Silicon to spice model correlation.
  • Proficient is scripting languages – TCL, Perl, Awk
  • Basic knowledge of device physics