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Remote Signal Processing Postdoctoral Jobs in Texas

From the dirt of the arena to the screens in living rooms nationwide, every signal we send carries ... Beyond the transmission desk, you'll get hands-on with studio and remote productions - running ...

RFIC Layout Design Engineer Richardson, TX (Hybrid) or Remote for Qualified Candidates W2 or ... Our design and product offerings focus on high-reliability mixed-signal and digital markets, while ...

PRODUCT MANAGER III (Remote)

Austin, TX · On-site +1

$109K - $164K/yr

You are a self-starter who prioritizes results over process. You have a proven track record of ... Ability to bridge the gap between complex concepts (Signal Integrity, System Architecture) and ...

Senior Organic Social Media Manager

Austin, TX · On-site +1

$124K - $139K/yr

LegalZoom supports a remote-friendly environment that gives employees flexibility and balance. Our ... those signals into recommended tests and content ideas. * Create scalable processes for briefs ...

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Remote Signal Processing Postdoctoral information

What are the key skills and qualifications needed to thrive as a Remote Signal Processing Postdoctoral Researcher, and why are they important?

To thrive as a Remote Signal Processing Postdoctoral Researcher, you need a Ph.D. in electrical engineering, computer science, or a related field, with expertise in signal processing theory and algorithms. Experience with programming languages such as Python or MATLAB, and familiarity with simulation tools or machine learning frameworks, is typically required. Strong analytical thinking, independent research skills, and effective written and verbal communication set outstanding candidates apart. These skills are crucial for advancing research, publishing results, and collaborating remotely with interdisciplinary teams.

What are some common challenges faced by remote signal processing postdoctoral researchers, and how can these be effectively managed?

Remote signal processing postdocs often encounter challenges such as limited access to specialized lab equipment, potential communication barriers with collaborators, and the need for strong self-motivation and time management. To address these, many researchers leverage cloud-based computing resources, regularly schedule virtual meetings, and participate in collaborative online platforms to stay connected with their teams. Setting clear research goals and maintaining open communication with supervisors can also help ensure ongoing progress and support while working remotely.

What is a Remote Signal Processing Postdoctoral researcher?

A Remote Signal Processing Postdoctoral researcher is a scientist who has recently completed their Ph.D. and conducts advanced research in signal processing—analyzing and interpreting signals such as audio, images, or sensor data—while working remotely. This position typically involves developing new algorithms, analyzing data, and publishing results in scientific journals. The 'remote' aspect means that the researcher can work from anywhere, collaborating with teams and contributing to projects online. These roles are common in fields like telecommunications, biomedical engineering, and geosciences.
What are the most commonly searched types of Signal Processing Postdoctoral jobs in Texas? The most popular types of Signal Processing Postdoctoral jobs in Texas are:
What are popular job titles related to Remote Signal Processing Postdoctoral jobs in Texas? For Remote Signal Processing Postdoctoral jobs in Texas, the most frequently searched job titles are:
What job categories do people searching Remote Signal Processing Postdoctoral jobs in Texas look for? The top searched job categories for Remote Signal Processing Postdoctoral jobs in Texas are:
What cities in Texas are hiring for Remote Signal Processing Postdoctoral jobs? Cities in Texas with the most Remote Signal Processing Postdoctoral job openings:

FPGA Design & Validation Engineer (Oil & Gas Systems)

Quest Global

Houston, TX • On-site, Remote

$117K - $161K/yr

Full-time

Medical, Retirement, PTO

Posted 8 days ago


Quest Global rating

7.4

Company rating: 7.4 out of 10

Based on 8 frontline employees who took The Breakroom Quiz

236th of 352 rated engineering


Job description

Job Requirements

Quest Global delivers world-class end-to-end engineering solutions by leveraging our deep industry knowledge and digital expertise. By bringing together technologies and industries, alongside the contributions of diverse individuals and their areas of expertise, we are able to solve problems better, faster. This multi-dimensional approach enables us to solve the most critical and large-scale challenges across the aerospace & defense, automotive, energy, hi-tech, healthcare, medical devices, rail and semiconductor industries.

We are looking for humble geniuses, who believe that engineering has the potential to make the impossible possible; innovators, who are not only inspired by technology and innovation, but also perpetually driven to design, develop, and test as a trusted partner for Fortune 500 customers. As a team of remarkably diverse engineers, we recognize that what we are really engineering is a brighter future for us all. If you want to contribute to meaningful work and be part of an organization that truly believes when you win, we all win, and when you fail, we all learn, then we’re eager to hear from you. The achievers and courageous challenge-crushers we seek, have the following characteristics and skills

What You will Do:

As an FPGA Engineer in our Oil & Gas division, you will develop high-reliability digital systems for demanding environments, such as downhole drilling toolssubsea instrumentation, or refinery monitoring systems. You will leverage VHDL to implement complex data acquisition and signal processing algorithms that must operate under strict power and thermal constraints. A significant portion of this role involves hands-on lab validation to ensure system integrity before deployment in remote or hazardous field locations. 

Key Responsibilities:

  • Ruggedized Design: Implement synthesizable VHDL code optimized for low power consumption and high-temperature stability (e.g., surviving 150°C+ for downhole applications).
  • High-Reliability Validation: Lead hardware-in-the-loop (HIL) testing in the lab to simulate harsh field conditions. Utilize oscilloscopes, logic analyzers (ILA/SignalTap), and thermal chambers to verify timing and functional reliability.
  • Protocol Management: Develop and test custom and industry-standard communication bridges (e.g., Modbus, Ethernet/IP, CAN, or proprietary mud-pulse telemetry).
  • Data Integrity: Design robust memory interfaces (DDR3/4) and error correction (ECC) for large-scale data logging during seismic or pipe inspection missions.
  • Certification Support: Maintain detailed documentation of testing protocols and validation results to support safety and industry compliance standards. 
  • Perform functional and timing verification using respective simulators
  • Conduct post-synthesis and post-layout verification.

Pay Range: Compensation decisions are made based on factors including experience, skills, education, and other job-related factors, in accordance with our internal pay structure. We also offer a comprehensive benefits package, including health insurance, paid time off, and retirement plan.


Work Experience

Required Technical Skills

  • Language & Logic: Expert proficiency in VHDL; experience with high-reliability design techniques like triple modular redundancy (TMR) is a plus.
  • Tools: Expert-level use of Xilinx VivadoIntel QuartusLattice FPGA or Microchip Libero.
  • Lab Expertise: Mastery of high-speed digital probing, power analysis (using tools like XPE), and debugging hardware-software interfaces.
  • Industry Interfaces: Experience with ADC/DAC interfacing (using JESD204B or LVDS) for high-precision instrumentation.
  • Environment: Understanding of design constraints for battery-operated or power-limited remote systems. 

Qualifications

  • Education: B.E./M.Tech in Electrical, Electronics, or Instrumentation Engineering.
  • Experience: 3+ years in FPGA development, preferably with exposure to industrial automationsubsea electronics, or downhole tools.
  • Soft Skills: Strong analytical mindset for "root cause" debugging in complex, multi-disciplinary systems.