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Black Semiconductor is seeking a Senior Hardware Compute Architect to own the hardware architecture of our next-generation hybrid compute engine, uniting electronic and photonic compute capabilities. You will define the compute architecture, memory hierarchy, data fabric, and system interfaces that enable dynamic workloads.
Working with the Architecture Lead, photonics teams, and downstream teams, you will evaluate performance, power, area, and manufacturability trade-offs and translate workload
We see the semiconductor industry as a realm of possibility. We see opportunity. We see the profound impact that our graphene solutions will have in transforming the industry. We invite you to join us in driving change with our fundamentally human‑centered approach, uniting bright minds around a shared vision. The vision is: Prove to everybody that you can make a fundamental change. Prove with your knowledge and skills how things can be done differently. Together, we can change the paradigm of how the world connects
The semiconductor industry’s growing demand for more powerful chips with higher bandwidth and lower power finds its solution in our technology. We connect chips to high‑throughput, low‑delay computing networks. The key lies in harnessing the physical properties of graphene to combine electronic computing with photonic communication, allowing countless chips to interact almost as if they were one. Our graphene photonic innovation increases computing power and efficiency to a new order of magnitude
In short, we connect chips to create powerful and energy‑efficient networks, overcoming connectivity limitations in the semiconductor industry. We deliver the graphene solution
We are seeking a skilled Senior Hardware Compute Architect at Black Semiconductor to own the hardware architecture of our next‑generation hybrid compute engine, combining electronic compute capabilities with photonic compute technologies. You will define the compute architecture, memory hierarchy, data fabric, and system interfaces that enable dynamic workload execution across electronic and photonic domains.
Working closely with the Architecture Lead, Senior Software Compute Architect, photonics teams, and downstream implementation teams, you will drive system‑level architectural decisions by evaluating performance, power, area, and manufacturability trade‑offs. Your work will translate workload requirements into an implementable hardware architecture for a new class of compute systems.
This role bridges compute architecture, heterogeneous system design, and electronic‑photonic co‑design.
To join our team, you should be excited to