Executive snapshot
- Experience: 0-3 Jahre
- Seniority: Junior
- Work mode: Nach Absprache
- Availability: Nach Absprache (ab Juli 2026)
- Region: Deutschland / EU
- Focus: Automotive, E-Mobility, Embedded Systems, IoT Security
At a glance
Profile ID
DP-140139
Role
Embedded Security Specialist, Automotive Cybersecurity Engineer
Seniority
Junior
Experience
0-3 Jahre
Work mode
Nach Absprache
Availability
Nach Absprache (ab Juli 2026)
Region
Deutschland / EU
Languages
English: C1, German: C1
Engagement models
Festanstellung, Projektarbeit
Indicative rate
Nach Absprache
Short profile
Experienced Embedded Security Engineer and Researcher with profound practical experience in security analysis of embedded systems, penetration testing of safety-critical automotive platforms, and hardware attacks and reverse engineering at the ECU level. Specializing in firmware security assessments, static firmware analysis, and ISO/SAE 21434-compliant Threat Analysis and Risk Assessment (TARA). Develops structured security concepts and testing methodologies and is active in offensive and defensive embedded security.
Focus (domains)
AutomotiveE-MobilityEmbedded SystemsIoT SecurityElectric VehicleSoftwareSecurityEmbeddedTesting
Core skills
Security AnalysisPenetration TestingHardware Reverse EngineeringFirmware AnalysisVulnerability IdentificationCryptographyTARA (ISO/SAE 21434)CAN/UDS Protocol AnalysisPCB AnalysisFuzzingFirmwareHardwareSecurityEmbeddedCybersecurityPythonSoftwareTesting
Tools & technologies
PythonARM-based PlatformsCAN/UDSGitHubCJavaFirmwareHardwareSecurityEmbeddedCybersecuritySoftwareTesting
Track record & project highlights
Development of a structured Embedded Security Penetration Testing methodology for automotive embedded systems, including EV charging stations and ECUs; Independent reverse engineering of charging communication control units (EVCC) at the ECU level with detailed PCB analysis; Identification, evaluation, and manipulation of internal IC communication in automotive control units; Application of targeted fuzzing approaches for reverse engineering proprietary CAN protocols and analysis of wake-up routines; Execution of firmware acquisition, attack surface analysis, and systematic vulnerability identification.