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Contract Embedded Security Jobs (NOW HIRING)

Indianapolis, IN (onsite) Pay Range: $57 - $62/hr Contract: 7 months with possible extensions or ... Embedded security concepts * Git and software development best practices Wireless & Networking ...

Senior Embedded Software Engineer

Florham Park, NJ · On-site

$129K - $170K/yr

You'll play a key role in evaluating security and robustness of proprietary embedded systems ... and contract wage rates, relevant prior work experience, specific skills and competencies ...

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Contract Embedded Security information

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$70K

$153.4K

$174K

How much do contract embedded security jobs pay per year?

As of Sep 14, 2026, the average yearly pay for contract embedded security in the United States is $153,383.00, according to ZipRecruiter salary data. Most workers in this role earn between $131,500.00 and $173,000.00 per year, depending on experience, location, and employer.

What is a contract embedded security professional?

A Contract Embedded Security professional is a specialist hired on a temporary or project basis to ensure the security of embedded systems, such as those found in automotive, IoT, medical devices, and industrial equipment. Their work involves assessing risks, identifying vulnerabilities, and implementing security protocols to protect hardware and software from cyber threats. They often collaborate with development teams to integrate security into the product lifecycle and may also conduct security audits and compliance checks. Contract roles allow companies to access expert knowledge for specific projects without committing to a full-time hire.

What are the key skills and qualifications needed to thrive as a contract embedded security engineer, and why are they important?

To thrive as a Contract Embedded Security Engineer, you need a solid background in embedded systems, cybersecurity principles, and programming languages like C/C++, often supported by a relevant degree or security certifications such as CISSP or CEH. Familiarity with security analysis tools, hardware debuggers, firmware reverse engineering, and secure development frameworks is typically required. Strong analytical thinking, problem-solving abilities, and effective communication help you assess risks and collaborate with cross-functional teams. These skills ensure the development of robust, secure embedded products that can withstand evolving cyber threats.

What are the typical collaboration points between a contract embedded security engineer and other development teams?

As a contract embedded security engineer, you'll frequently collaborate with firmware developers, hardware engineers, and QA teams to ensure security is integrated throughout the development lifecycle. This often involves conducting code reviews, identifying vulnerabilities during design phases, and advising on secure coding practices. You may also work closely with project managers and compliance teams to align security measures with project goals and regulatory requirements. Effective communication and coordination are key, as your expertise helps bridge security considerations with practical engineering solutions.

What is the difference between Contract Embedded Security vs Contract Security Officer?

AspectContract Embedded SecurityContract Security Officer
CertificationsSecurity+ or equivalent, industry-specific trainingSecurity Guard License, Basic Security Training
Work EnvironmentOn-site, integrated within client operations, often in tech or manufacturing sectorsOn-site, patrols, access control, security posts in various settings
Employer & Industry UsageTech companies, manufacturing plants, corporate facilitiesRetail, commercial buildings, event venues

Contract Embedded Security professionals are integrated into client operations, requiring technical certifications and working within specialized environments. In contrast, Contract Security Officers focus on physical security tasks like patrols and access control. Both roles are vital but differ in scope, environment, and required credentials.

What cities are hiring for Contract Embedded Security jobs?

Cities with the most Contract Embedded Security job openings:

What are the most commonly searched types of Embedded Security jobs?

The most popular types of Embedded Security jobs are:

What states have the most Contract Embedded Security jobs?

States with the most job openings for Contract Embedded Security jobs include:

What other helpful pages are available for Contract Embedded Security?

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Infographic showing various Contract Embedded Security job openings in the United States as of July 2026, with employment types broken down into 81% Full Time, 16% Part Time, and 3% Contract. Highlights an 91% Physical, 2% Hybrid, and 7% Remote job distribution, with an average salary of $153,383 per year, or $73.7 per hour.

Automotive Embedded Security Tester (BH ID)

Plymouth, MI • On-site

Other

Posted 17 days ago


Key responsibilities

  • Design and execute comprehensive penetration testing campaigns against automotive embedded targets.

  • Configure and deploy fuzzing frameworks to identify vulnerabilities in vehicle ECUs and related systems.

  • Intercept, manipulate, and analyze traffic across wired vehicle networks and wireless communication interfaces.


Job description

Job Title: Automotive Embedded Security Tester (BH ID) Location: Plymouth, MI Duration:2+ year contract
Key Requirements

  • Automotive industry background required
  • Experience with Electronic Control Units (ECUs)
  • Strong understanding of CAN (Controller Area Network) protocols


Technical Skills

  1. Penetration testing experience
  2. Must have experience beyond fuzz testing
  3. Looking for candidates with security testing experience in one or more of the following areas:
  • USB
  • Wireless communications
  • Bluetooth
  • Similar embedded/connected device technologies

Position Notes: Embedded Security / Pen Testing Engineer
Automotive Embedded Security Tester (BH ID)
Embedded Systems Penetration & Fuzz Testing

  • Design & Execute Campaigns: Build and execute comprehensive penetration testing campaigns against a wide variety of automotive embedded targets.
  • Advanced Fuzzing: Configure and deploy targeted fuzzing frameworks (e.g., AFL++, libFuzzer, Peach, Defensics) against vehicle computers, ECUs, and clusters.
  • Vulnerability Discovery: Uncover memory corruption vulnerabilities (buffer overflows, use-after-free), resource exhaustion, and complex logic flaws that automated static analyzers often miss.


Comprehensive Wireless & Wired Protocol Analysis

  • Wired Vehicle Networks: Intercept, manipulate, and inject traffic across internal wired topologies, including CAN, CAN-FD, Automotive Ethernet (SOME/IP, DoIP), LIN, and FlexRay. You will utilize industry-standard tools like Vector CANoe/CANalyzer and Vehicle Spy.
  • Wireless Ecosystems: Aggressively analyze and exploit vulnerabilities across every wireless communication interface. This includes deep-dive assessments of Bluetooth/BLE, Wi-Fi (802.11), Cellular networks (4G/LTE, 5G, and C-V2X), UWB, NFC, and traditional RF/Keyless Entry Systems (RKE/PEPS) using Software Defined Radios (SDRs like HackRF, USRP).


Hardware & Firmware Reverse Engineering

  • Physical Attack Vectors: Conduct hands-on, hardware-level security testing to identify physical attack vectors.
  • Hardware Debugging & Exploitation: Utilize tools like Logic Analyzers, Bus Pirate, J-Link, and UART/JTAG/SPI debuggers, side-channel analysis (SCA), and voltage/clock fault injection techniques.
  • Firmware Analysis: Extract firmware from flash memory for subsequent reverse engineering and static analysis using disassemblers like IDA Pro.


AI-Enhanced Fuzzing and Vulnerability Discovery

  • Develop and apply AI-driven fuzzing techniques, using machine learning to intelligently guide test case generation and uncover complex vulnerabilities in vehicle software.
  • Utilize ML models to perform automated analysis of source code and binaries, identifying potential zero-day vulnerabilities that evade traditional static and dynamic analysis tools.


Automated Anomaly Detection in Vehicle Networks

  • Implement and manage machine learning systems to analyze real-time data from CAN, Automotive Ethernet, and wireless channels, automatically detecting anomalous patterns indicative of a cyberattack.


Adversarial AI/ML System Testing

  • Conduct security assessments of on-board AI/ML systems (e.g., those used for perception, sensor fusion, or decision-making in autonomous driving).
  • Design and execute adversarial attacks (e.g., data poisoning, evasion attacks) to test the resilience and integrity of automotive AI models.


Strategic Remediation

  • Actionable Reporting: Document findings in meticulous, highly technical reports that include mitigation strategies.
  • Engineering Collaboration: Partner directly with other security tester/consultants to craft actionable, robust remediation strategies that fix the root cause of vulnerabilities.


What We Are Looking For
Experience & Education

  • Bachelor's or Master's degree in Computer Science, Cybersecurity, Computer Engineering, or a heavily related technical discipline.
  • Proven experience in applying AI/ML techniques to cybersecurity challenges, such as intelligent fuzzing, anomaly detection, or securing machine learning systems.
  • 3+ years of hands-on experience in penetration testing, vulnerability research, or reverse engineering, specifically focused on automotive embedded systems, IoT devices, or specialized custom hardware.


Deep Technical Expertise & Certifications

  • Deep understanding of automotive E/E architectures, RTOS (e.g., QNX, VxWorks, AUTOSAR OS), and POSIX-based systems (Automotive Linux).
  • Familiarity with automotive microcontrollers (e.g., Infineon AURIX TriCore, Renesas RH850, ARM Cortex-R/M) and hardware security modules (HSM/SHE).
  • Strong grasp of industry-standard cybersecurity regulations and frameworks, specifically ISO/SAE 21434, UNECE WP.29 R155, and MITRE Telecommunication&CK.
  • Knowledge of common machine learning frameworks (e.g., TensorFlow, PyTorch, scikit-learn) and their application in a security context.


Understanding of adversarial ML concepts and defenses.

  • Preferred Certifications: OSCP, OSCE, OSWE, eCPTX, GXPN, or specialized automotive/IoT security certifications.


Programming & Tooling Proficiency

  • Proficiency in scripting and low-level programming languages such as Python, C/C++, Bash, or Assembly (ARM/x86/TriCore).
  • Experience with data science and machine learning libraries within Python (e.g., Pandas, NumPy).
  • Extensive hands-on experience with hardware/software testing tools (e.g., Oscilloscopes, Wireshark, Burp Suite, GNU Radio, Binwalk).