Lead Vector Compute Architect - Taiwan/Hsinchu

Posted 3 Days Ago
Be an Early Applicant
Hiring Remotely in Taiwan
Remote
Senior level
Hardware • Semiconductor • Manufacturing
Bring your biggest ideas to life with the world's fastest Graphics Processors.
The Role
Lead architecture definition and technical direction for next-generation GPUs. Define data-parallel microarchitecture and memory/coherency hierarchies, drive tradeoffs (performance/power/area), perform workload profiling and performance modeling, collaborate across RTL/verification/physical/firmware/software teams, support silicon bring-up and post-silicon tuning, and contribute to long-term roadmap planning.
Summary Generated by Built In

Bolt Graphics is a semiconductor startup based in Sunnyvale, CA building the fastest and most efficient graphics processors. We pride ourselves on our first principles approach to solving problems. We are energized by our mission to reduce the barrier of entry for content creation and consumption. Our goal is to enable everyone to easily create, simulate and consume immersive experiences as vividly as they can imagine them.

Our Values

  • Be Fearless: Unmute yourself. Test boundaries and get proven right.
  • Remain Adaptable: Stay comfortable in a continuously changing world. If you’re wrong, concede and move on.
  • Educate Your Ego: Selflessly collaborate towards our shared purpose.

About the role:

We are looking for an experienced and highly motivated Lead Vector Compute Architect to lead the architecture definition and technical direction for Bolt’s next-generation GPUs. The ideal candidate will have strong expertise in data parallel compute unit architecture development, performance modeling, data path integration, and cross-functional collaboration across hardware, software, and systems teams.  

This role involves defining scalable and high-performance architectures for advanced compute workloads including graphics, HPC, and system management.


What you'll do:

  • Define data parallel microarchitecture satisfying ISA constraints. 
  • Drive architecture tradeoff analysis for performance, power, area, bandwidth, latency, and scalability.  
  • Develop and review system architecture specifications, interface definitions, and microarchitecture requirements.  
  • Collaborate with RTL, verification, physical design, firmware, software, and system teams throughout the development cycle.  
  • Lead performance modeling, workload analysis, and bottleneck identification using C/C++/SystemC or similar modeling environments.  
  • Define memory hierarchy, coherency architecture, and cache structures.  
  • Work closely with verification teams to define architectural test plans and validation strategies.  
  • Support silicon bring-up, debug, performance tuning, and post-silicon optimization.  
  • Contribute to long-term technology and product roadmap planning.  

Qualifications:

  • Strong understanding of modern data parallel microarchitectures and subsystem integration.  
  • Bachelor’s or Master’s degree in Electrical Engineering, Computer Engineering, Computer Science, or related field.  
  • 6+ years of experience in modern data parallel microarchitecture including: 
  • Workload characterization and profiling 
  • Performance modeling 
  • Out-of-order data dependency and control 
  • Utilization / occupancy optimization 
  • High-performance architecture design techniques

Experience with one or more of the following:  

  • CPU/GPU/NPU architectures  
  • NoC/interconnect architectures  
  • Cache coherency protocols (CHI/ACE/CXL)  
  • High-speed interfaces (PCIe, UCIe, Ethernet)  
  • Memory systems (DDR, LPDDR, HBM, GDDR)  
  • Power, performance, and area optimization  
  • Strong knowledge of RTL development and verification methodologies.  
  • Experience with architecture modeling and performance analysis tools.  
  • Familiarity with firmware/software interaction in complex SoC systems.  
  • Excellent problem-solving, communication, and leadership skills.   

Compensation Range: Market rate for Taiwan. The final offer may vary based on qualifications, experience, and location.



Bolt is committed to building a diverse and inclusive environment in which we recognize and value each other’s differences as well as fostering a culture that promotes its core values: Professionalism, Integrity, and Respect. As an equal opportunity employer, all qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, genetic information, national origin, age, disability, or status as a protected veteran.

Skills Required

  • Strong understanding of modern data parallel microarchitectures and subsystem integration
  • Bachelor's or Master's degree in Electrical Engineering, Computer Engineering, Computer Science, or related field
  • 6+ years of experience in modern data parallel microarchitecture
  • Workload characterization and profiling
  • Performance modeling (C/C++/SystemC or similar)
  • Out-of-order data dependency and control expertise
  • Utilization / occupancy optimization experience
  • High-performance architecture design techniques
  • Strong knowledge of RTL development and verification methodologies
  • Ability to develop and review system architecture specs, interface definitions, and microarchitecture requirements
  • Experience collaborating with RTL, verification, physical design, firmware, software, and system teams
  • Excellent problem-solving, communication, and leadership skills
  • Experience with CPU/GPU/NPU architectures
  • Experience with NoC/interconnect architectures
  • Familiarity with cache coherency protocols (CHI/ACE/CXL)
  • Experience with high-speed interfaces (PCIe, UCIe, Ethernet)
  • Experience with memory systems (DDR, LPDDR, HBM, GDDR)
  • Experience with power, performance, and area optimization
  • Familiarity with firmware/software interaction in complex SoC systems
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The Company
HQ: Sunnyvale, CA
59 Employees
Year Founded: 2020

What We Do

Bolt Graphics is a semiconductor startup building the fastest and most efficient graphics processors. Power consumption continues to rise with minimal performance improvements, resulting in increased cost and negative environmental impact. Hardware hasn’t kept up with consumer expectations, especially in industries like architecture, engineering, film, advertising, gaming, & scientific research. Our customers came to us to solve their two main problems: performance and power consumption. At Bolt Graphics, we constantly ask ourselves, “Why is it done this way?” and “How can we do it better?” This mindset enables our team to achieve orders of magnitude faster renders and simulations and drives our goal for everyone to create, simulate, and consume immersive experiences.

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