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Internship Brain Computer Interface Jobs in Texas

... brain-computer interfaces. Relevant product development experience in micro-architecture design for low-power processors, on-chip bus and network interfaces, audio/video compression processors, AI/ML ...

As a Mechanical Engineer at Neuralink, you will own the design and production of hardware solutions for our brain-computer interface devices. Projects will be highly varied, leveraging both breadth ...

Paradromics is building a brain-computer interface (BCI) platform that records brain activity at the highest possible resolution: the individual neuron. AI algorithms then decode this massive amount ...

Paradromics is building a brain-computer interface (BCI) platform that records brain activity at the highest possible resolution: the individual neuron. AI algorithms then decode this massive amount ...

Paradromics is building a brain-computer interface (BCI) platform that records brain activity at the highest possible resolution: the individual neuron. AI algorithms then decode this massive amount ...

Paradromics is building a brain-computer interface (BCI) platform that records brain activity at the highest possible resolution: the individual neuron. AI algorithms then decode this massive amount ...

Manufacturing Operator

Austin, TX · On-site

$17.25 - $20.75/hr

Paradromics is building a brain-computer interface (BCI) platform that records brain activity at the highest possible resolution: the individual neuron. AI algorithms then decode this massive amount ...

Manufacturing Operator

Austin, TX · On-site

$17.25 - $20.75/hr

Paradromics is building a brain-computer interface (BCI) platform that records brain activity at the highest possible resolution: the individual neuron. AI algorithms then decode this massive amount ...

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Internship Brain Computer Interface information

What is an Internship Brain Computer Interface job?

An Internship in Brain-Computer Interface (BCI) involves working with cutting-edge technology that connects the human brain with computers or external devices. As an intern, you may assist in research, data collection, signal processing, machine learning, and hardware development for BCI applications. This role often requires knowledge of neuroscience, programming, and biomedical engineering. Interns typically work in labs, research institutions, or tech companies, contributing to advancements in neurotechnology.

What are the key skills and qualifications needed to thrive in the Internship Brain Computer Interface position, and why are they important?

To thrive as an Internship Brain Computer Interface, a foundational understanding of neuroscience, signal processing, and programming languages such as Python or MATLAB is essential, usually supported by relevant coursework or lab experience. Familiarity with brain-computer interface platforms, data analysis software, and tools like EEG acquisition systems or machine learning frameworks is often required. Strong analytical skills, adaptability, and clear communication are key soft skills for collaborating with multidisciplinary teams and presenting findings. These competencies are crucial for effectively contributing to research projects and advancing innovation in the field of brain-computer interfaces.

What types of projects or tasks are typically assigned to interns in Brain Computer Interface positions?

Interns in Brain Computer Interface roles often work on data collection and analysis, assist in developing or enhancing algorithmic models, and support the setup and operation of hardware like EEG systems. You may also contribute to literature reviews, help validate experimental protocols, or participate in team meetings to discuss results and troubleshoot challenges. The experience provides hands-on exposure to both hardware and software aspects of BCI research, giving interns valuable skills in experimental design, data analytics, and interdisciplinary collaboration. This immersive environment prepares you for advanced academic or professional careers in neurotechnology and related fields.

What are the most commonly searched types of Brain Computer Interface jobs in Texas? The most popular types of Brain Computer Interface jobs in Texas are:
What are popular job titles related to Internship Brain Computer Interface jobs in Texas? For Internship Brain Computer Interface jobs in Texas, the most frequently searched job titles are:
What job categories do people searching Internship Brain Computer Interface jobs in Texas look for? The top searched job categories for Internship Brain Computer Interface jobs in Texas are:
What cities in Texas are hiring for Internship Brain Computer Interface jobs? Cities in Texas with the most Internship Brain Computer Interface job openings:
Infographic showing various Internship Brain Computer Interface job openings in Texas as of June 2026, with employment types broken down into 2% As Needed, 84% Full Time, 8% Part Time, 2% Temporary, and 4% Contract. Highlights an 97% Physical, 1% Hybrid, and 2% Remote job distribution.
Electrical Engineer (Systems Generalist)

Electrical Engineer (Systems Generalist)

Paradromics

Austin, TX • On-site

Full-time

Posted 24 days ago


Job description

Electrical Engineer (Systems Generalist)
About Paradromics
Brain-related illness is one of the last great frontiers in medicine, not because the brain is unknowable, but because it has been inaccessible. Paradromics is building a brain-computer interface (BCI) platform that records brain activity at the highest possible resolution: the individual neuron. AI algorithms then decode this massive amount of brain-data, enabling the seamless translation of thought into treatments.
Our first clinical application, the Connexus® BCI, will help people who are unable to speak, due to ALS, spinal cord injuries and stroke, to communicate independently through digital devices. However, the capabilities of our BCI platform go far beyond our first application. With the brain in direct communication with digital devices, we can leverage technology to transform how we treat conditions ranging from sensory and motor deficits to untreatable mental illness.
The Role
The Electrical Engineer (Generalist) will own and support system-level electrical development across hardware, programmable logic, and mixed-signal domains. This role focuses on system integration, bring-up, debugging, and stabilization rather than solely PCB layout.
Working closely with cross-functional teams-including FPGA, firmware, mechanical, and test engineers-this person will drive hardware systems from prototype through validation and early production. The ideal candidate is comfortable operating across digital, analog, power, and signal integrity domains and thrives in fast-paced, multidisciplinary environments.
Responsibilities
  • Lead system bring-up and stabilization across hardware and programmable logic platforms.
  • Debug FPGA-based systems at both the board and system level, collaborating with digital design teams.
  • Develop structured debug plans and execute root cause analysis across electrical, firmware, and system domains.
  • Analyze and optimize digital system architecture including clocking schemes, reset strategies, high-speed data paths, and timing considerations.
  • Evaluate and troubleshoot analog and mixed-signal subsystems including power regulation, grounding, EMI mitigation, and signal integrity.
  • Support integration of subsystems involving wireless power transfer, RF signaling, or optical communication links.
  • Develop Python-based tools for lab automation, instrument control, data capture, and validation workflows.
  • Support system-level validation, characterization, and field testing activities.
  • Contribute to technical trade studies and clearly communicate design trade-offs across teams.
  • Maintain organized documentation, debug records, and validation reports throughout development.

Required Education
  • Bachelor's or Master's degree in Electrical Engineering or related field, or equivalent practical experience.

Required Qualifications
  • Demonstrated ownership of system bring-up and stabilization across hardware and programmable logic platforms.
  • Strong experience debugging FPGA-based systems at the board and system level.
  • Solid understanding of digital system architecture including clocking, resets, high-speed data paths, and timing constraints.
  • Working knowledge of analog and mixed-signal fundamentals including power regulation, signal integrity, grounding, and EMI principles.
  • Experience supporting or integrating systems involving wireless power transfer, RF signaling, or optical communication links.
  • Proficiency in Python for test automation, lab control, data analysis, or validation infrastructure.
  • Ability to develop structured debug plans and drive root cause analysis across multiple technical domains.
  • Experience supporting system-level validation, field testing, or early production hardware.
  • Strong ability to synthesize cross-domain findings and communicate technical trade-offs clearly.
  • Comfort working in fast-paced hardware development environments with evolving requirements.

Preferred Qualifications
  • Experience collaborating closely with FPGA/RTL design teams.
  • Exposure to regulated hardware environments (medical, aerospace, industrial, etc.).
  • Familiarity with high-speed interfaces (e.g., SERDES-based links, DDR memory systems).
  • Experience designing or supporting hardware test infrastructure.
  • Background in multidisciplinary system integration efforts.

Paradromics is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, or national origin.