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Remote Computer Engineering Student Jobs in Irvine, CA

Embedded Software Engineer

Long Beach, CA ยท On-site +1

$118K - $198K/yr

Bachelor's degree in electrical engineering, Computer Science, Computer Engineering, experience 5 ... Remote #LI-MZ1 #UEV What you'll do... Design and implement software running on a distributed ...

Embedded Software Engineer

Long Beach, CA ยท On-site +1

$100K - $168K/yr

Bachelor's degree in electrical engineering, Computer Science, Computer Engineering, experience 5 ... Remote #LI-MZ1 #UEV What you'll do... Design and implement software running on a distributed ...

... engineering, permitting, construction and/or operations support. You can be hybrid out of our San ... Remote work might also be considered if you live in California. * Apply intensive and diversified ...

SDET, Remote opportunity

Irvine, CA ยท On-site +1

$130K - $145K/yr

Hybrid if local to Irvine, CA. 100% remote if you live more than 30 miles from the office. Our ... Bachelor's degree in Computer Science, Engineering, or a related field, or equivalent experience ...

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Remote Computer Engineering Student information

See Irvine, CA salary details

$52.1K

$130.4K

$147.6K

How much do remote computer engineering student jobs pay per year?

As of Aug 31, 2026, the average yearly pay for remote computer engineering student in Irvine, CA is $130,434.00, according to ZipRecruiter salary data. Most workers in this role earn between $119,700.00 and $141,200.00 per year, depending on experience, location, and employer.

What is a remote computer engineering student?

Remote computer engineering students are individuals who are pursuing a degree or taking courses in computer engineering through online or distance-learning programs. These students complete their coursework, projects, and sometimes even labs entirely online, allowing them to study from anywhere with an internet connection. This flexibility can help students balance their education with work or personal commitments, and opens up access to programs that may not be available locally. Remote learners often use video lectures, virtual labs, and online collaboration tools to interact with instructors and classmates.

What are the key skills and qualifications needed to thrive as a remote computer engineering student, and why are they important?

To thrive as a Remote Computer Engineering Student, you need a solid understanding of programming, mathematics, and computer systems, typically supported by enrollment in a computer engineering degree program. Familiarity with collaboration tools (like GitHub, Zoom), coding languages (such as Python, C++), and access to virtual lab environments is essential. Strong self-motivation, time management, and effective online communication are standout soft skills for remote learning. These skills and qualities are crucial for managing coursework independently, collaborating remotely, and successfully completing complex engineering projects.

How do remote computer engineering students effectively collaborate with team members and instructors during group projects?

Remote computer engineering students typically use collaboration tools such as version control systems (like Git), video conferencing platforms, and shared document editors to work together on group projects. Regular virtual meetings and clear communication channels are essential for staying aligned and addressing challenges quickly. Many programs encourage students to adopt agile methodologies, assigning roles and setting milestones to maintain project momentum. Building strong digital communication skills and proactively reaching out to peers and instructors are key to ensuring successful teamwork in a remote setting.

What is the difference between Remote Computer Engineering Student vs Remote Software Developer?

AspectRemote Computer Engineering StudentRemote Software Developer
Required CredentialsEnrolled in a computer engineering program, some internships or certificationsProven coding skills, relevant certifications, portfolio
Work EnvironmentLearning-focused, often part-time or internship-basedFull-time or freelance projects, collaborative teams
Employer & Industry UsageEducational institutions, tech startups, internshipsTech companies, startups, freelance platforms

Remote Computer Engineering Students are typically in educational programs gaining foundational knowledge, often working on internships or projects. Remote Software Developers are experienced coders working on real-world projects, often full-time. While both roles involve programming, students focus on learning, whereas developers focus on delivering software solutions.

What jobs can I get with a BS in remote computer engineering student?

A BS in computer engineering prepares students for roles such as software developer, hardware engineer, systems analyst, or network administrator. These positions often require knowledge of programming languages, hardware design, and networking, and can be performed remotely depending on the employer and job requirements.

What are the most commonly searched types of Computer Engineering Student jobs in Irvine, CA?

The most popular types of Computer Engineering Student jobs in Irvine, CA are:

What are popular job titles related to Remote Computer Engineering Student jobs in Irvine, CA?

For Remote Computer Engineering Student jobs in Irvine, CA, the most frequently searched job titles are:

What job categories do people searching Remote Computer Engineering Student jobs in Irvine, CA look for?

The top searched job categories for Remote Computer Engineering Student jobs in Irvine, CA are:

What cities near Irvine, CA are hiring for Remote Computer Engineering Student jobs?

Cities near Irvine, CA with the most Remote Computer Engineering Student job openings:

Systems Engineer, Teleoperations & Remote Drive

Garden Grove, CA โ€ข On-site, Remote

Full-time

Posted 25 days ago


Job description

Job Overview

The Systems Engineering team is seeking a versatile Systems Engineer to own the end-to-end definition, integration, and architecture of ADAS features, teleoperation systems for remotely operated military/tactical vehicles, and core Electric Vehicle (EV) platform architectures.

In this role, you will bridge the gap between autonomous perception, remote command teleoperation, and high-voltage EV powertrains. You will lead the systems engineering lifecycle from defining customer use cases and sensor/communication architectures to managing Functional Safety (ISO 26262), cybersecurity, and vehicle-level validation across all Harbinger platforms.

What you will do:

  • Architect Teleoperation & Control Pipelines: Design low-latency teleoperation pipelines, video streaming architectures, and Operator Control Unit (OCU) interfaces for remotely operated and dual-use vehicles.
  • Design Safe Fallback Modes: Define fail-safe and fail-operational fallback behaviors during signal degradation, electronic countermeasures, or high-latency events, embedding core Functional Safety and cybersecurity controls.
  • Decompose Vehicle Requirements: Translate vehicle-level use cases and ADAS feature goals into clear system, component, and interface requirements using our requirement management platform (Flow Engineering).
  • Lead Validation & Track Testing: Define the DVP&R and oversee validation across SIL, HIL, and proving ground track testing to optimize system stability, link reliability, and feature calibration.

Who you are:

  • 5+ years of systems engineering experience in autonomous vehicles (AVs), robotics, Unmanned Ground Vehicles (UGVs), or EV/automotive vehicle platforms.
  • Hands-on background architecting or integrating low-latency teleoperation pipelines, real-time video/telemetry streaming, or Operator Control Unit (OCU) interfaces.
  • Knowledge of vehicle safety standards (e.g., ISO 26262, MIL-STD-882, or UL 4600) and experience designing safe fallback modes for degraded RF, cellular, or high-latency links.
  • Experience with control logic modeling (MATLAB/Simulink, C++, or ROS/ROS2), vehicle network protocols (CAN/Ethernet), and requirement management platforms.
  • Bachelor's degree in Systems, Robotics, Electrical, Mechanical, or Computer Engineering (or equivalent practical experience).