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Trusted Execution Environment Jobs (NOW HIRING)

We are looking for a highly skilled and experienced Principal Engineer to lead the design and development of security, virtualization, confidential compute and trusted execution environment (TEE ...

Security Analyst

Santa Clara, CA · On-site +1

$122K - $184K/yr

Experience with secure embedded systems, such as Smart Cards, Secure Elements, System-on-Chips (SoCs), Trusted Execution Environments, smart light, remote control, ECUs, etc. * Good understanding of ...

Security Architect

San Jose, CA · On-site

$76.25 - $98.50/hr

Proficiency in Secure Boot and Trusted Execution Environment (TEE). * Ability to present complex security topics to wide range of internal and internal audiences (engineers to executives). * Strong ...

Security Architect

San Jose, CA · On-site

$76.25 - $98.50/hr

Proficiency in Secure Boot and Trusted Execution Environment (TEE). * Ability to present complex security topics to wide range of internal and internal audiences (engineers to executives). * Strong ...

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Trusted Execution Environment information

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How much do trusted execution environment jobs pay per hour?

As of Jun 5, 2026, the average hourly pay for trusted execution environment in the United States is $34.08, according to ZipRecruiter salary data. Most workers in this role earn between $27.16 and $39.42 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a Trusted Execution Environment (TEE) Engineer, and why are they important?

To thrive as a Trusted Execution Environment (TEE) Engineer, you need a strong background in computer science, secure systems architecture, and cryptography, often with a relevant degree and experience in embedded security. Familiarity with TEE technologies like ARM TrustZone, Intel SGX, hardware security modules (HSMs), and security certification standards (such as GlobalPlatform) is typically required. Critical soft skills include problem-solving, attention to detail, and effective communication for collaborating with cross-functional teams. These skills are vital to ensure the secure execution of sensitive operations, protect data integrity, and maintain trust in secure computing environments.

What are the typical responsibilities of an engineer specializing in Trusted Execution Environment (TEE) solutions?

Engineers working with Trusted Execution Environment (TEE) solutions are typically responsible for designing, developing, and maintaining secure areas within processors that protect sensitive data and code execution. Their daily work often involves collaborating with hardware teams to implement security features, writing secure software code, and performing vulnerability assessments to ensure the integrity and confidentiality of information processed in the TEE. Additionally, they may be involved in reviewing cryptographic protocols, integrating TEE with broader system architectures, and supporting compliance with industry security standards. Working closely with application developers and security analysts is common to ensure seamless and robust security integration.

What is a Trusted Execution Environment (TEE)?

A Trusted Execution Environment (TEE) is a secure area within a device's main processor that ensures sensitive data is stored, processed, and protected in an isolated environment. TEEs provide a higher level of security by running code and processing data separately from the main operating system, making it difficult for attackers to access or tamper with confidential information. They are commonly used in applications such as mobile payments, digital rights management, and secure authentication. By isolating critical operations, TEEs help protect against both software and hardware attacks.

What is the difference between Trusted Execution Environment vs Secure Software Developer?

AspectTrusted Execution EnvironmentSecure Software Developer
CredentialsSecurity certifications, hardware knowledgeProgramming, security certifications
Work EnvironmentEmbedded systems, hardware security modulesSoftware development, application security
Industry UsageMobile devices, IoT, hardware securityWeb, enterprise, application security
Primary FocusIsolating secure code from the rest of the systemDeveloping secure software solutions

Trusted Execution Environments (TEEs) focus on hardware-based isolation to protect sensitive data and code, often working closely with hardware security modules. Secure Software Developers design and implement secure applications, emphasizing coding practices and software security measures. While TEEs are hardware-centric, Secure Software Developers work mainly in software environments. Both roles are essential for cybersecurity but serve different functions within the security ecosystem.

Remote Senior Software Engineer, Onchain (Security) - Gemini

Blockchain Works

Manhattan, NY • On-site

$126K - $173K/yr

Full-time

Medical, Retirement

Posted 5 days ago


Job description

About the Company Gemini is a global crypto and Web3 platform founded by Tyler Winklevoss and Cameron Winklevoss in 2014. Gemini offers a wide range of crypto products and services for individuals and institutions in over 70 countries. Crypto is about giving you greater choice, independence, and opportunity.

We are here to help you on your journey. We build crypto products that are simple, elegant, and secure. Whether you are an individual or an institution, we help you buy, sell, and store your bitcoin and cryptocurrency.

At Gemini, our mission is to unlock the next era of financial, creative, and personal freedom. The Department: Onchain The Role: Senior Software Engineer (Security) Security of customers' digital assets and personal information held with Gemini is our first and foremost priority. Gemini's Signing team develops and maintains a trusted execution environment for the purpose of working with Gemini customers' digital assets.

To directly support our cryptographic software, hardware, and trusted execution environments, this work includes developing and managing security tools and platforms, assisting users to design and assess the security internal systems, and simplifying manual or complex software security processes. In our work, we research and build applicable software and hardware security approaches to support our signing environment. An ideal candidate would have experience in the implementation of software that was used with one or more security areas (e.g., signing, encrypting, load-time attestation, digital signatures, sealing, binding).

This engineer will also work closely with various teams including our Security Operations, Custody, Product Security, Wallet Engineering, and Platform Engineering teams. We are a dynamic group with both entrepreneurial spirit and security engineering experience. We have incredibly high aspirations, and we are looking for like-minded individuals who want to guide the transition to a new more decentralized world where access to digital assets is normalized and ubiquitous.

Responsibilities: Implement software applications that may include key storage, signing, encryption, code attestation, or secure boot. Design, deploy, and maintain security solutions supporting maintenance of digital assets. Work closely with software security engineers to develop the capabilities of the existing signing security infrastructure with a goal of security and scalability.

Integrate the use of hardware security mechanisms into the Gemini software infrastructure. Work with hardware security mechanisms of interest include a trusted platform module (TPM) and/or hardware security modules (HSMs), and/or other similar hardware key storage mechanisms. Develop tools that integrate security into systems and process.

Participate in disaster recovery (DR) scenarios to validate operability of physical and digital material. Minimum Qualifications: Hands-on expertise in the development of at least one area of software security that includes implementing software in any of the following: operating systems, kernel development, kernel modules, embedded security software, network security engineering, cryptographic protocols, or cryptographic hardware (PKCS#11, FIPS 201-1 PIV, smartcards, TPMs, HSMs, or TEEs). Hands-on expertise in any one of the following areas: hardware security modules or discrete trusted platform modules or firmware trusted platform modules or secure enclaves.

Experience in network engineering and security. Experience in researching and addressing complex business topics around TPMs, HSMs, TEEs, secure build infrastructure, and applied cryptography. Candidates without a strong understanding in one of these areas may still be a strong candidate if this is offset by a strong background in a systems security area (e.g., operating systems, embedded systems security, firmware security, network security engineering).

Strong understanding of systems/network security, secure protocol design, secure build and supply chain management, encryption, authentication, key management and applied cryptography. Demonstrated ability to convert theoretical security concepts into production. Proficiency in a common scripting language including but not limited to Python, Ruby, etc.

Able to troubleshoot and debug issues, and demonstrate a methodical approach to root cause analysis. Experience working with engineering teams, teaching, training, and mentoring on how to implement best-practice technical solutions. Strong written and verbal communication skills; attentive to details.

Preferred Qualifications: 5+ years experience in software engineering. 2+ years experience with secure software that makes use of a trusted platform module (TPM), hardware security module (HSM), trusted execution environment (TEE), smartcard, and/or other similar hardware key storage mechanism. Ability to read and write code written in Python, Java, Scala, C/C++, and Golang.

Knowledge of hardware security, verified/secure boot, tamper resistance, side-channel attacks, anti-cloning, and PUFs. Solid understanding of Product Management and Product Ownership, Agile practices and methodologies. It Pays to Work Here The compensation & benefits package for this role includes: Competitive starting salary A discretionary annual bonus Long-term incentive in the form of a new hire equity grant Comprehensive health plans 401K with company matching Paid Parental Leave Flexible time off #J-18808-Ljbffr