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Homomorphic Encryption Jobs in Sunnyvale, CA (NOW HIRING)

Familiarity with privacy-preserving machine learning techniques, such as Differential Privacy, Federated Learning, or Homomorphic Encryption. * Experience building first-class user facing products.

Homomorphic Encryption information

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$17

$31

$47

How much do homomorphic encryption jobs pay per hour?

As of Aug 1, 2026, the average hourly pay for homomorphic encryption in Sunnyvale, CA is $31.23, according to ZipRecruiter salary data. Most workers in this role earn between $24.81 and $35.82 per hour, depending on experience, location, and employer.

What is a Homomorphic Encryption job?

A Homomorphic Encryption job typically involves researching, designing, and implementing cryptographic techniques that allow computations on encrypted data without decrypting it. Professionals in this field work on secure data processing, privacy-preserving machine learning, and cloud security. They often have expertise in cryptography, mathematics, and computer science, and may develop theoretical advancements or practical applications. Opportunities exist in academia, government, and industries like finance and healthcare that require secure data computation.

What does a typical day look like for someone working in Homomorphic Encryption?

Professionals specializing in Homomorphic Encryption often split their day between research, software development, and collaboration. You may spend time designing and implementing cryptographic algorithms, benchmarking performance, and staying current on the latest advances in the field. Regular meetings with data scientists, security engineers, and product teams are common, as secure computation frequently supports larger privacy or compliance goals. The role requires a balance of independent deep work and cooperative problem-solving, making it both intellectually stimulating and collaborative.

What are the key skills and qualifications needed to thrive in the Homomorphic Encryption position, and why are they important?

To thrive in the field of Homomorphic Encryption, you need a deep understanding of cryptography, strong mathematical and algorithmic skills, and typically an advanced degree in computer science, mathematics, or a related field. Experience with programming languages such as Python, C++, and libraries like Microsoft SEAL or HElib, as well as familiarity with cryptographic protocols, is highly beneficial. Analytical thinking, creative problem-solving, and effective communication are key soft skills for presenting complex concepts and collaborating with multidisciplinary teams. These competencies are essential to advance secure data processing solutions and drive innovation in privacy-preserving technologies.

What are popular job titles related to Homomorphic Encryption jobs in Sunnyvale, CA? For Homomorphic Encryption jobs in Sunnyvale, CA, the most frequently searched job titles are:
What job categories do people searching Homomorphic Encryption jobs in Sunnyvale, CA look for? The top searched job categories for Homomorphic Encryption jobs in Sunnyvale, CA are:
What cities near Sunnyvale, CA are hiring for Homomorphic Encryption jobs? Cities near Sunnyvale, CA with the most Homomorphic Encryption job openings:
Infographic showing various Homomorphic Encryption job openings in Sunnyvale, CA as of July 2026, with employment types broken down into 51% Full Time, 19% Part Time, and 30% Contract. Highlights an 79% In-person, and 21% Remote job distribution, with an average salary of $64,965 per year, or $31.2 per hour.

Cryptography Research Scientist, FHE

LG Electronics

Santa Clara, CA • Hybrid

Other

Re-posted 11 days ago


LG Electronics rating

7.1

Company rating: 7.1 out of 10

Based on 42 frontline employees who took The Breakroom Quiz

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Job description

About the Team - LG's Emerging Technology Lab

LG's Emerging Technology Lab (ETL) is the catalyst for technological innovation within LG's CTO organization. Located in the Silicon Valley and New Jersey, we drive excellence across CTO organizations and business units by pioneering in select emerging technology areas. As the Center of Excellence (CoE), we define and shape key technology domains, setting strategic directions that foster impactful internal and external partnerships to deliver measurable business value.

 

Position Overview

We are seeking a highly motivated Cryptography Research Engineer / Scientist to join our Advanced Security team located in Santa Clara, CA. This can be a hybrid position.

The Cryptography Research Scientist will be working on next-generation cryptographic technologies, with a primary focus on Fully Homomorphic Encryption (FHE) and additional involvement in Post-Quantum Cryptography (PQC). This position is intended for early-career researchers, typically candidates with a PhD and 0-2 years of relevant research or industry experience.

This role is centered on the research, optimization, implementation, and deployment of privacy-enhancing technologies for real-world applications. The ideal candidate will have strong mathematical foundations in modern cryptography, hands-on software development skills, and a passion for translating advanced cryptographic concepts into practical systems and Proof-of-Concept (PoC) demonstrations.

The candidate will work on cutting-edge problems involving encrypted computation, privacy-preserving AI/analytics, and quantum-safe cryptographic systems.

Key Responsibilities

  • Conduct advanced research and development in Fully Homomorphic Encryption (FHE) and related privacy-enhancing technologies.
  • Design, optimize, and implement FHE algorithms and pipelines for practical applications and deployment scenarios.
  • Develop high-performance implementations for specialized use cases, including:
    • privacy-preserving AI/ML inference,
    • secure analytics and recommendation systems,
    • confidential cloud computation.
  • Develop and demonstrate Proof-of-Concept (PoC) systems showcasing practical FHE applications.
  • Evaluate and integrate modern FHE frameworks and libraries such as:
    • OpenFHE,
    • HEAAN/CKKS-based frameworks,
    • TFHE,
    • Microsoft SEAL,
    • PALISADE,
    • Concrete,
    • or related technologies.
  • Contribute to research and development efforts in Post-Quantum Cryptography (PQC), including lattice-based cryptography and quantum-safe migration technologies.
  • Collaborate with cross-functional engineering and product teams to transition research into deployable technologies.
  • Track emerging developments in cryptography, privacy-enhancing technologies, and quantum-safe security.

Required Qualifications

  • PhD in Computer Science, Mathematics, Electrical Engineering, Cryptography, or a related field, with 0-2 years of relevant industry experience.
  • Strong theoretical background in modern cryptography, particularly lattice-based cryptography and/or Fully Homomorphic Encryption.
  • Hands-on experience implementing cryptographic algorithms and optimizing performance-critical systems.
  • Strong programming skills in languages such as:
    • C++,
    • Python,
    • CUDA,
    • Rust,
    • or similar.
  • Familiarity with one or more FHE libraries/frameworks.
  • Strong understanding of algorithm optimization, computational complexity, and memory-performance tradeoffs.
  • Ability to independently drive research ideas into working prototypes and PoCs.
  • Strong analytical, problem-solving, and communication skills.

Preferred Qualifications

  • Experience with GPU acceleration and high-performance computing for cryptographic workloads.
  • Familiarity with CKKS, TFHE, BFV, or BGV schemes.
  • Experience with encrypted machine learning or privacy-preserving AI systems.
  • Knowledge of Post-Quantum Cryptography standards and NIST PQC algorithms (e.g., ML-KEM/Kyber, ML-DSA/Dilithium).
  • Publications or open-source contributions in cryptography, security, or privacy-enhancing technologies.
  • Experience working in research labs or advanced technology development environments.

Please Note: the salary range listed is dependent on the experience of the candidate. There are additional incentives to this compensation package.

#LI-JH1 #LI-Hybrid


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