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Jtag Jobs (NOW HIRING)

Senior Developer Tools Engineer

Santa Clara, CA · On-site

$143.80K - $189.60K/yr

... JTAG) and object file formats (ELF, COFF). • Collaborate with internal engineering teams to understand their needs and iterate on tooling, with a path toward external customer-facing tools.

Senior Developer Tools Engineer

Santa Clara, CA · On-site

$143.80K - $189.60K/yr

... JTAG) and object file formats (ELF, COFF). • Collaborate with internal engineering teams to understand their needs and iterate on tooling, with a path toward external customer-facing tools.

$100K - $500K/yr

Deep knowledge of DFT specific timing modes including JTAG, Scan Shift, Scan Slow Capture, Scan Fast Capture, Memory BIST etc. * Experience in Verilog/SystemVerilog RTL coding and back-annotated gate ...

Work on Scan insertion, ATPG, GLS (timing/non-timing) Implement MBIST and/or Boundary Scan (BSCAN, JTAG) Support DFT architecture and chip-level integration Debug DFT issues and improve test coverage ...

Hardware Debug Engineer

Seattle, WA · On-site

$140.50K - $185.50K/yr

Experience using Oscilloscopes, Power supplies, Signal generators, JTAG debugger (ITP), Thermal tools, DMM, Microscopes, Camera, and Soldering station * Strong organizational, communication ...

Work on Scan insertion, ATPG, GLS (timing/non-timing) Implement MBIST and/or Boundary Scan (BSCAN, JTAG) Support DFT architecture and chip-level integration Debug DFT issues and improve test coverage ...

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Jtag information

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How much do jtag jobs pay per hour?

As of May 31, 2026, the average hourly pay for jtag in the United States is $85.94, according to ZipRecruiter salary data. Most workers in this role earn between $67.07 and $93.99 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a JTAG (Joint Test Action Group) Engineer, and why are they important?

To thrive as a JTAG Engineer, you need a solid background in electronics engineering, digital circuit design, and familiarity with boundary scan testing principles, often supported by a degree in electrical engineering or a related field. Proficiency with JTAG debugging tools, boundary scan software (such as XJTAG or JTAG Technologies), and knowledge of relevant standards (IEEE 1149.x) is essential. Strong analytical thinking, problem-solving abilities, and clear technical communication help you diagnose and resolve hardware issues effectively. These skills ensure accurate testing, efficient debugging, and reliable product development in electronics manufacturing and design environments.

What are some common challenges encountered when working as a JTAG engineer, and how can they be addressed?

JTAG engineers often face challenges such as debugging complex hardware-software interactions, handling signal integrity issues, and ensuring compatibility between different devices and test tools. Effective troubleshooting requires a strong understanding of both digital systems and the specifics of the JTAG protocol. Collaborating closely with hardware designers, firmware engineers, and test teams is crucial for quickly identifying and resolving issues. Staying current with industry standards and using advanced debugging tools can also help overcome these challenges.

What are JTAG engineers?

JTAG engineers are professionals who specialize in using the Joint Test Action Group (JTAG) standard, also known as IEEE 1149.1, for testing, debugging, and programming electronic circuits and devices. They are responsible for developing test procedures, troubleshooting hardware issues, and ensuring the integrity of circuit boards during manufacturing and development. JTAG engineers work with specialized tools and software to access embedded devices, verify chip functionality, and facilitate communication between components. Their expertise is essential in industries such as electronics manufacturing, embedded systems, and hardware design.

What are the benefits of JTAG?

For a JTAG technician or engineer, the benefits include efficient debugging and testing of electronic devices through standardized boundary scan protocols, which can reduce troubleshooting time and improve product quality. Familiarity with JTAG tools and protocols enhances diagnostic accuracy and supports compliance with industry standards.

What is the difference between Jtag vs Test Technician?

AspectJtagTest Technician
Required CredentialsTypically certifications in electronics or hardware testing, some may have JTAG-specific trainingOften holds certifications in electronics, testing, or quality assurance
Work EnvironmentHardware development labs, manufacturing facilities, electronics testing environmentsManufacturing plants, quality control labs, electronics assembly lines
Industry UsageUsed for debugging, programming, and testing hardware via JTAG interfacePerforms testing, troubleshooting, and quality checks on electronic products

Jtag specialists focus on hardware testing and debugging using JTAG interfaces, while Test Technicians perform broader testing and quality assurance tasks. Both roles require electronics knowledge, but Jtag roles are more specialized in hardware debugging techniques.

More about Jtag jobs
What states have the most Jtag jobs? States with the most job openings for Jtag jobs include:
Infographic showing various Jtag job openings in the United States as of May 2026, with employment types broken down into 90% Full Time, and 10% Contract. Highlights an 92% Physical, 4% Hybrid, and 4% Remote job distribution, with an average salary of $178,751 per year, or $85.9 per hour.
C++ Hardware Bring up Engineer

C++ Hardware Bring up Engineer

Tachyon Technologies

Auburn Hills, MI

Other

Posted 10 days ago


Job description

Job Description:

We are seeking a highly skilled C++ Hardware Bring-Up Engineer with strong expertise in embedded systems, automotive SoC integration, BSP/LLD development, and hardware debugging. The ideal candidate will play a critical role in developing and optimizing low-level embedded software for automotive platforms, leading hardware bring-up activities, and supporting software-hardware integration for next-generation automotive systems.

The candidate should have hands-on experience with embedded operating systems, automotive SoC architectures, hardware validation tools, and low-level debugging methodologies.

Key responsibilities:

  • Design, develop, and maintain Board Support Packages (BSP) and Low-Level Drivers (LLD) for automotive SoC platforms.
  • Develop and optimize embedded software components using C and C++ for high performance and reliability.
  • Manage software build and integration processes using Make, CMake, and Git.
  • Drive SoC integration activities ensuring seamless interaction between hardware and embedded software components.
  • Optimize memory, CPU, and power utilization for automotive embedded applications.
  • Lead hardware bring-up activities for new ECU/SoC platforms.
  • Perform hardware-level debugging and validation using:
    • Oscilloscopes
    • Multimeters
    • Power Supplies
  • Troubleshoot software-hardware interaction issues using:
    • JTAG
    • GDB
    • Embedded debugging tools
  • Develop and maintain device drivers for peripheral interfaces such as UART, SPI, and I2C.
  • Collaborate with cross-functional engineering teams to resolve integration and performance issues.
  • Participate in code reviews, technical documentation, and system architecture discussions.

Professional Skills:

  • 7+ years of experience in automotive embedded software development.
  • Strong expertise in:
    • C
    • C++
    • Embedded Systems
    • Hardware Bring-Up
    • BSW (Basic Software)
  • Hands-on experience with:
    • BSP development
    • Low-Level Driver (LLD) development
    • SoC integration
  • Strong understanding of:
    • SoC architectures
    • Device drivers
    • Peripheral interfaces (UART, SPI, I2C)
  • Experience with embedded operating systems:
    • Linux
    • FreeRTOS
    • RTOS
  • Familiarity with:
    • Git
    • Make
    • CMake
    • JTAG
    • GDB
    • Experience using lab instruments:
    • Oscilloscope
    • Multimeter
    • Power Supply
  • Strong debugging and troubleshooting skills.
  • Excellent communication and teamwork abilities.
    • Interfaces & data conversions