... experience, internship experience and / or schoolwork/classes/research. The preferred ... OpenCL, SYCL, or CUDA. * Experience developing tools for hardware and software validation ...
... experience, internship experience and / or schoolwork/classes/research. The preferred ... OpenCL, SYCL, or CUDA. * Experience developing tools for hardware and software validation ...
AI Systems Software Engineer - Neuromorphic Computing
Hillsboro, OR · On-site
$188K - $223K/yr
... experience, internship experience and / or schoolwork/classes/research. The preferred ... OpenCL, SYCL, or CUDA. * Experience developing tools for hardware and software validation ...
AI Systems Software Engineer - Neuromorphic Computing
Hillsboro, OR · On-site
$188K - $223K/yr
... experience, internship experience and / or schoolwork/classes/research. The preferred ... OpenCL, SYCL, or CUDA. * Experience developing tools for hardware and software validation ...
AI Performance Library Architect
Hillsboro, OR · On-site
$170K - $315K/yr
Low-level performance optimizations using CUDA, x86 assembly or intrinsics, or OpenCL Preferred ... internship experiences and/or schoolwork/classes/research. Job Type:Experienced Hire Shift:Shift 1 ...
AI Performance Library Architect
Hillsboro, OR · On-site
$170K - $315K/yr
Low-level performance optimizations using CUDA, x86 assembly or intrinsics, or OpenCL Preferred ... internship experiences and/or schoolwork/classes/research. Job Type:Experienced Hire Shift:Shift 1 ...
AI Performance Library Architect
Hillsboro, OR · On-site
$170K - $315K/yr
Low-level performance optimizations using CUDA, x86 assembly or intrinsics, or OpenCL Preferred ... internship experiences and/or schoolwork/classes/research. Job Type: Experienced Hire Shift: Shift ...
AI Performance Library Architect
Hillsboro, OR · On-site
$170K - $315K/yr
Low-level performance optimizations using CUDA, x86 assembly or intrinsics, or OpenCL Preferred ... internship experiences and/or schoolwork/classes/research. Job Type: Experienced Hire Shift: Shift ...
Internship Opencl information
What is the difference between Internship Opencl vs Internship CUDA?
| Aspect | Internship Opencl | Internship CUDA |
|---|---|---|
| Required Credentials | Basic programming skills, knowledge of parallel computing | Basic programming skills, knowledge of parallel computing, some familiarity with NVIDIA hardware |
| Work Environment | Cross-platform, supports various hardware vendors | NVIDIA-specific hardware and software environment |
| Industry Usage | Used in diverse industries for hardware-agnostic parallel processing | Primarily used in industries leveraging NVIDIA GPUs for high-performance computing |
| Search & Comparison Intent | Commonly compared for cross-platform development opportunities | Compared for NVIDIA-specific GPU development roles |
Internship Opencl focuses on cross-platform parallel programming, suitable for various hardware vendors, while Internship CUDA is tailored for NVIDIA GPU development. Both roles require foundational programming skills, but CUDA internships often demand familiarity with NVIDIA hardware. The choice depends on the target hardware environment and industry needs.
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For Internship Opencl jobs in Oregon, the most frequently searched job titles are:
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The top searched job categories for Internship Opencl jobs in Oregon are:
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Cities in Oregon with the most Internship Opencl job openings:

$188K - $223K/yr
Full-time
Medical, Retirement, PTO
Posted 12 days ago
Intel rating
8.7
Based on 147 frontline employees who took The Breakroom Quiz
18th of 159 rated electronics manufacturers
Job description
About the Organization
As part of Intel's CTO Office, you will join a vertically integrated incubation effort dedicated to bringing Intel's neuromorphic technology innovations to market. Our diverse team of engineers and researchers has pioneered sparse, event-based neuromorphic architectures over multiple generations and is now focused on commercializing the technology in future Intel and partner products.
The Opportunity
For nearly a decade, Intel's Neuromorphic Computing Lab, together with a global ecosystem of 250+ research groups, has explored architectures, algorithms, and software inspired by the brain's extraordinary efficiency, scalability, and adaptability. Our Loihi series of research chips pioneered event-driven, sparse, and massively parallel neuro-inspired processing, fueling over 100 peer-reviewed publications that validate the promise of this novel approach.
Now, we're entering an exciting new chapter: transforming these breakthroughs into real-world products that will power the coming era of physical AI systems beyond the reach of GPUs and mainstream AI accelerators.
If you are passionate about pushing the boundaries of computing, from low-level hardware enablement to software abstractions and applications, join us. Help define the next wave of AI technology that combines the proven advantages of Intel's neuromorphic computing technology with the versatility demanded by modern AI workloads.
Position Overview
Join the team defining and implementing Intel's product-grade neuromorphic AI software stack. In this role, you will develop and validate systems software that enables Intel neuromorphic accelerators, spanning device interfaces, operating system integration, runtime APIs, simulation environments, and integration with higher-level AI and application frameworks. You will collaborate with hardware, software, and solution architects to deliver robust, efficient, and scalable software that enables customers to build high-performance physical AI applications powered by Intel's neuromorphic technology.
Responsibilities
- Design, develop, and validate system-level software for future neuromorphic accelerator platforms, including device-driver interfaces, operating system integration, runtime APIs, and simulation environments.
- Analyze functional and performance issues across software drivers, runtimes, and applications; implement improvements and develop supporting profiling, debugging, benchmarking, and validation tools.
- Collaborate with hardware, architecture, operating-system, and application teams to enable upcoming platform features, recommend hardware and software improvements, and ensure expected functionality and performance on next-generation systems.
The Minimum qualifications are required to be initially considered for this position. Minimum qualifications listed below would be obtained through a combination of industry relevant job experience, internship experience and / or schoolwork/classes/research. The preferred qualifications are in addition to the minimum requirements and are considered a plus factor in identifying top candidates.
Minimum Qualifications
- BS in Computer Science, Computer Engineering, Electrical Engineering, or a closely related engineering discipline.
- 5+ years of industry experience developing and validating production software for GPUs, AI accelerators, embedded devices, or other hardware platforms, including work across device drivers, runtime systems, APIs, simulation environments, or application frameworks.
- 5+ years of production software development experience in C or C++ and Python, including systems-level or performance-critical software.
- Experience designing, debugging, integrating, and validating software across hardware, operating system, driver, runtime, and application boundaries.
- Experience applying standard software engineering practices, including design and code reviews, profiling, benchmarking, correctness and performance regression testing, build and toolchain discipline, and CI/CD.
Preferred Qualifications
- Post graduate degree in Computer Science, Computer Engineering, Electrical Engineering, or a closely related engineering discipline
- Experience developing Linux device drivers, hardware abstraction layers, low-level runtime libraries, or platform services for GPUs or other accelerators.
- Experience with low-level systems and accelerator programming technologies such as LLVM, oneAPI, OpenCL, SYCL, or CUDA.
- Experience developing tools for hardware and software validation, profiling, debugging, tracing, or performance analysis.
- Experience with hardware and software co-design, hardware simulator development, or performance modeling.
- Experience with robotics, edge AI, or real-time systems, including frameworks such as ROS 2.
- Experience with AI, deep learning, or optimization workloads and frameworks such as PyTorch, JAX, TensorFlow, ONNX, OpenVINO, or IREE.
We offer a total compensation package that ranks among the best in the industry. It consists of competitive pay, stock bonuses, and benefit programs which include health, retirement, and vacation. Find out more about the benefits of working at Intel.
Annual Salary Range for jobs which could be performed in the US: $128,880.00-211,200.00 USDThe range displayed on this job posting reflects the minimum and maximum target compensation for the position across all US locations. Within the range, individual pay is determined by work location and additional factors, including job-related skills, experience, and relevant education or training. Your recruiter can share more about the specific compensation range for your preferred location during the hiring process.Work Model for this Role
This role will be eligible for our hybrid work model which allows employees to split their time between working on-site at their assigned Intel site and off-site. * Job posting details (such as work model, location or time type) are subject to change.*
ADDITIONAL INFORMATION: Intel is committed to Responsible Business Alliance (RBA) compliance and ethical hiring practices. We do not charge any fees during our hiring process. Candidates should never be required to pay recruitment fees, medical examination fees, or any other charges as a condition of employment. If you are asked to pay any fees during our hiring process, please report this immediately to your recruiter.About Intel
Sourced by ZipRecruiter
Intel strives to make every facet of semiconductor manufacturing state-of-the-art -- from semiconductor process development and manufacturing, through yield improvement to packaging, final test and optimization, and world class Supply Chain and facilities support. Employees in the Technology and Manufacturing Group are part of a worldwide network of design, development, manufacturing, and assembly/test facilities, all focused on utilizing the power of Moore's Law to bring smart, connected devices to every person on Earth
Industry
Manufacturing
Company size
10,000+ Employees
Headquarters location
Santa Clara, CA, US
Year founded
1968