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Remote Reverse Engineering Jobs in San Francisco, CA

Remote Job Overview We are seeking experienced SolidWorks Specialists to contribute their expertise ... Reverse engineering (Scan-to-CAD). * Manufacturability analysis. * Python, iLogic, and VBA ...

New

Remote Role Responsibilities * Red team conversational AI models and agents by performing ... Cybersecurity skills: penetration testing, exploit development, reverse engineering. * Socio ...

Senior Software Engineer

San Francisco, CA ยท On-site +1

$144K - $190K/yr

Comfortable working in a remote-only environment * Analytical mind * Confidence to share your ideas ... Experience with malicious software analysis and reverse engineering * MS or PhD in Computer Science ...

Senior Software Engineer

San Francisco, CA ยท On-site +1

$144K - $190K/yr

Comfortable working in a remote-only environment * Analytical mind * Confidence to share your ideas ... Experience with malicious software analysis and reverse engineering * MS or PhD in Computer Science ...

AI Biologist - Refusal

San Francisco, CA ยท On-site +1

$120K - $180K/yr

We're seeking a Bioinformatics Engineer to join our Refusal team, working at the frontier of what ... Hands-on experience working with sequencing data, molecular cloning, and reverse genetics, and ...

Remote Reverse Engineering information

See San Francisco, CA salary details

$96.6K

$160.6K

$229.7K

How much do remote reverse engineering jobs pay per year?

As of Aug 14, 2026, the average yearly pay for remote reverse engineering in San Francisco, CA is $160,568.00, according to ZipRecruiter salary data. Most workers in this role earn between $104,900.00 and $209,700.00 per year, depending on experience, location, and employer.

What is remote reverse engineering?

Remote reverse engineering is the process of analyzing software, hardware, or systems from a remote location to understand their design, functionality, or vulnerabilities. This often involves using specialized tools to decompile code, inspect binaries, or analyze protocols without having physical access to the device or system. Remote reverse engineers may work on tasks such as malware analysis, software compatibility, or security assessments. The work typically requires strong knowledge of programming, cybersecurity, and networking, as well as familiarity with legal and ethical considerations.

What are the key skills and qualifications needed to thrive as a remote reverse engineering specialist?

To thrive as a Remote Reverse Engineering Specialist, you need strong analytical skills in software deconstruction, a solid understanding of programming languages (such as C/C++ and Assembly), and typically a degree in computer science or related experience. Proficiency with tools like IDA Pro, Ghidra, OllyDbg, and experience with debuggers and disassemblers is essential, as are relevant certifications such as CEH or OSCP. Critical thinking, problem-solving, and clear written communication are vital soft skills for documenting findings and collaborating remotely. These skills ensure accurate code analysis, effective vulnerability discovery, and secure communication when working independently or with distributed teams.

What is the difference between Remote Reverse Engineering vs Remote Malware Analyst?

AspectRemote Reverse EngineeringRemote Malware Analyst
Required CredentialsKnowledge of assembly, debugging, and disassembly tools; sometimes certifications like GREM or GREM+Knowledge of malware behavior, analysis tools, and sometimes certifications like GREM or GREM+
Work EnvironmentPrimarily technical, involving code analysis and debuggingFocuses on analyzing malicious code and threat detection
Industry UsageUsed in cybersecurity, software development, and security researchPrimarily in cybersecurity, incident response, and threat intelligence

Remote Reverse Engineering and Remote Malware Analyst roles share skills like understanding binary code and using analysis tools. However, reverse engineers focus on dissecting software and systems, while malware analysts specialize in identifying and mitigating malicious threats. Both roles are vital in cybersecurity and often overlap in skills and tools used.

What are some common challenges faced by remote reverse engineers, and how can they be addressed?

Remote reverse engineers often face challenges such as limited access to proprietary hardware, difficulties in real-time collaboration, and ensuring secure handling of sensitive data. To address these, it's important to leverage secure remote desktop solutions, maintain clear documentation, and establish regular communication with team members. Additionally, using virtual labs and emulation tools can help overcome hardware access limitations, while participating in team debriefs ensures alignment and knowledge sharing.

What are the most commonly searched types of Reverse Engineering jobs in San Francisco, CA?

The most popular types of Reverse Engineering jobs in San Francisco, CA are:

What are popular job titles related to Remote Reverse Engineering jobs in San Francisco, CA?

For Remote Reverse Engineering jobs in San Francisco, CA, the most frequently searched job titles are:

What job categories do people searching Remote Reverse Engineering jobs in San Francisco, CA look for?

The top searched job categories for Remote Reverse Engineering jobs in San Francisco, CA are:

What cities near San Francisco, CA are hiring for Remote Reverse Engineering jobs?

Cities near San Francisco, CA with the most Remote Reverse Engineering job openings:

SolidWorks Expert - Remote

YO AI Labs

San Francisco, CA โ€ข Remote

$40 - $130/hr

Full-time

Posted 2 days ago

New


Job description

Job Title: SolidWorks Specialist

Job Type: Contractor
Location: Remote

Job Overview

We are seeking experienced SolidWorks Specialists to contribute their expertise to an innovative project at the intersection of mechanical engineering and emerging AI technology. In this role, you will help improve next-generation AI systems by creating, reviewing, and refining mechanical CAD models and technical documentation. No prior AI experience is required—your engineering and CAD expertise are what matter most.

Key Responsibilities
  • Create fully parametric 3D CAD models of mechanical parts and assemblies using SolidWorks based on detailed design requirements.

  • Edit and update existing parametric CAD models while maintaining robust feature trees, design intent, and model integrity.

  • Review and audit CAD models for dimensional accuracy, tolerance application, manufacturability, and overall design quality.

  • Apply Design for Manufacturability (DFM) principles across manufacturing processes including injection molding, sheet metal fabrication, CNC machining, casting, and forging.

  • Develop and maintain clear engineering documentation to support design revisions and AI model training.

  • Translate engineering requirements into structured CAD data suitable for AI learning and validation.

  • Collaborate remotely with cross-functional teams, providing clear written reports, technical documentation, and verbal updates.

Required Skills
  • SolidWorks.

  • Parametric CAD modeling.

  • GD&T (ASME Y14.5).

  • Design for Manufacturability (DFM).

  • Mechanical design.

  • Injection molding.

  • Sheet metal design.

  • CNC machining.

  • Casting and forging.

  • Assembly modeling.

  • CAD editing and feature tree management.

  • Design documentation.

  • Reverse engineering (Scan-to-CAD).

  • Manufacturability analysis.

  • Python, iLogic, and VBA scripting.

  • Tolerance application.

  • Project documentation.

  • Strong written and verbal communication.

  • Excellent problem-solving skills and attention to detail.

Preferred Qualifications
  • 4+ years of hands-on parametric CAD experience for editing tasks and 10+ years for creating complex assemblies.

  • Expert proficiency in SolidWorks, with experience in Autodesk Inventor, Fusion 360, or FreeCAD considered an advantage.

  • Practical experience applying GD&T in accordance with ASME Y14.5 or equivalent standards.

  • Proven experience supporting multiple manufacturing processes, including injection molding, sheet metal fabrication, CNC machining, casting, and forging.

  • Current experience in mechanical or industrial CAD modeling.

  • Reverse engineering expertise, including Scan-to-CAD and point cloud conversion workflows.

  • Experience with assembly-level design and CAD workflow automation using Python, iLogic, VBA, or similar scripting tools.

  • Excellent written and verbal communication skills with strong technical documentation abilities.

Why Join Us?
  • Fully remote contractor opportunity.

  • Flexible work schedule.

  • Opportunity to contribute to cutting-edge AI technology using your mechanical engineering expertise.

  • Collaborate with multidisciplinary engineering and AI teams on innovative technical projects.

  • No prior AI experience required—training and project guidance will be provided.