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Principal Embedded Security Vulnerability Analyst (m/f/d)

NXP Semiconductors

Principal Embedded Security Vulnerability Analyst (m/f/d)

full-timePosted: Aug 2, 2026Updated: Sep 1, 2026Gratkorn

Job Description

We are seeking a Principal Embedded Security Vulnerability Analyst to lead deep technical analysis of embedded systems, focusing on identifying and understanding vulnerabilities at the hardware/software boundary.You will drive the discovery and analysis of complex vulnerabilities in low-level firmware, boot code, and system components, and influence the security architecture of next-generation products. This role requires expert-level systems thinking, a deep understanding of attack techniques, and the ability to reason about complex execution environments.You will also define and advance modern vulnerability analysis approaches, including the integration of AI-assisted and agentic workflows, to significantly improve the depth, scalability, and effectiveness of security assessments.If you are already exploring how LLMs and agentic workflows can augment deep code and system analysis, this role provides an opportunity to apply, scale, and shape these approaches across an organization.We welcome both:experienced security researchershighly experienced embedded engineers with a demonstrated transition into securityYour ResponsibilitiesLead in-depth vulnerability analysis of embedded software (bare-metal, RTOS, trusted execution environments)Drive analysis of boot flows, privilege boundaries, and security-critical components (e.g., crypto libraries, key handling, isolation mechanisms)Own root cause analysis and assess exploitability and systemic impact of identified weaknessesDefine and guide security evaluation strategies for certifications (e.g., PSA, SESIP, Common Criteria)Lead analysis of PSIRT incidents and drive structural and architectural improvementsArchitect and develop advanced analysis methodologies and tooling (static analysis, fuzzing, automation frameworks)Define and scale the use of AI-assisted techniques for code analysis and vulnerability discovery (e.g., LLM-based and agentic workflows)Design and institutionalize workflows that combine traditional analysis (static/dynamic) with AI-assisted approachesEvaluate and introduce emerging attack techniques and incorporate them into internal methodologiesInfluence product teams and architecture decisions by translating findings into systemic mitigationsMentor and guide other engineers in vulnerability analysis and research methodologiesEducation & QualificationsDegree in Electrical Engineering, Computer Science, Mathematics, or related field, or equivalent practical experienceDeep understanding of low-level system behavior (memory layout, interrupts, privilege levels, concurrency)Extensive experience in C programming; strong familiarity with ARM and/or RISC-V architecturesStrong experience with assembly-level debugging and low-level system analysisStrong differentiators:Proven track record in vulnerability research, reverse engineering, or exploit developmentDeep experience with static and dynamic analysis tools, fuzzing, or symbolic executionStrong understanding of vulnerability classes (memory corruption, logic flaws, side channels) and exploitation techniquesExperience with debugging interfaces (e.g., JTAG, trace, GDB) in complex systemsExperience evaluating and operationalizing AI-assisted vulnerability discovery tools and workflowsExperience building scalable and automated analysis pipelines (e.g., scripting, distributed systems, agent-based approaches)Rust experience or strong interest in memory-safe system designYour ProfileExpert-level analytical thinking and strong intuition for how systems fail under adversarial conditionsAbility to lead complex, ambiguous technical investigations end-to-endStrong interest in combining deep technical expertise with modern AI-assisted methodologiesAbility to influence technical direction across teams and organizational levelsClear and authoritative communication of technical risks and findingsMentorship mindset and willingness to develop othersWhy Join UsLead vulnerability analysis for security-critical components of modern embedded systems and siliconDirectly influence the security architecture of next-generation productsShape and scale advanced vulnerability research methodologies, including AI-assisted analysisWork in an environment that values deep technical expertise and offensive security thinkingCollaborate with experts across hardware, firmware, and applied security researchPlease note: The successful candidate may/will be responsible for security related tasks. The assignment may/will be in scope of security certifications, therefore a conscious and reliable way of working is necessary.For applications in Gratkorn: NXP provides market competitive compensation according to the benchmarking of the electronic and semiconductor industry. Due to the Austrian Equal Treatment Act we are obligated to state the employment group of our applicable collective bargaining agreement (CBA) “Kollektivvertrag für Angestellte Gewerbe und Handwerk und in der Dienstleistung“, this position (fulltime) is graded in Employment Group V after 6 years. Your individual experiences and expectations will be considered in the application process. Moreover, we provide attractive benefits to our employees like home office, flexible working time, meal benefits and more.More information about NXP in Austria...#LI-a8a1

Locations

  • Gratkorn
  • Leuven

Skills Required

  • C programmingintermediate
  • ARM and/or RISC-V architecturesintermediate
  • assembly-level debuggingintermediate

Required Qualifications

  • Degree in Electrical Engineering, Computer Science, Mathematics, or related field, or equivalent practical experience (experience)
  • Deep understanding of low-level system behavior (memory layout, interrupts, privilege levels, concurrency) (experience)
  • Extensive experience in C programming; strong familiarity with ARM and/or RISC-V architectures (experience)
  • Strong experience with assembly-level debugging and low-level system analysis (experience)
  • Degree in Electrical Engineering, Computer Science, Mathematics, or related field, or equivalent practical experience (experience)
  • Deep understanding of low-level system behavior (memory layout, interrupts, privilege levels, concurrency) (experience)
  • Extensive experience in C programming; strong familiarity with ARM and/or RISC-V architectures (experience)
  • Strong experience with assembly-level debugging and low-level system analysis (experience)

Responsibilities

  • Lead in-depth vulnerability analysis of embedded software (bare-metal, RTOS, trusted execution environments)
  • Drive analysis of boot flows, privilege boundaries, and security-critical components (e.g., crypto libraries, key handling, isolation mechanisms)
  • Own root cause analysis and assess exploitability and systemic impact of identified weaknesses
  • Define and guide security evaluation strategies for certifications (e.g., PSA, SESIP, Common Criteria)
  • Lead analysis of PSIRT incidents and drive structural and architectural improvements
  • Architect and develop advanced analysis methodologies and tooling (static analysis, fuzzing, automation frameworks)
  • Define and scale the use of AI-assisted techniques for code analysis and vulnerability discovery (e.g., LLM-based and agentic workflows)
  • Design and institutionalize workflows that combine traditional analysis (static/dynamic) with AI-assisted approaches
  • Evaluate and introduce emerging attack techniques and incorporate them into internal methodologies
  • Influence product teams and architecture decisions by translating findings into systemic mitigations
  • Mentor and guide other engineers in vulnerability analysis and research methodologies
  • Lead in-depth vulnerability analysis of embedded software (bare-metal, RTOS, trusted execution environments)
  • Drive analysis of boot flows, privilege boundaries, and security-critical components (e.g., crypto libraries, key handling, isolation mechanisms)
  • Own root cause analysis and assess exploitability and systemic impact of identified weaknesses
  • Define and guide security evaluation strategies for certifications (e.g., PSA, SESIP, Common Criteria)
  • Lead analysis of PSIRT incidents and drive structural and architectural improvements
  • Architect and develop advanced analysis methodologies and tooling (static analysis, fuzzing, automation frameworks)
  • Define and scale the use of AI-assisted techniques for code analysis and vulnerability discovery (e.g., LLM-based and agentic workflows)
  • Design and institutionalize workflows that combine traditional analysis (static/dynamic) with AI-assisted approaches
  • Evaluate and introduce emerging attack techniques and incorporate them into internal methodologies
  • Influence product teams and architecture decisions by translating findings into systemic mitigations
  • Mentor and guide other engineers in vulnerability analysis and research methodologies

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