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Posted On: 01/14/2025 3:20:22 PM
Post# of 1143
From: macnai 1/14/2025 3:18:40 PM
1136
of 1136
We look forward to the 12th of February.
The timing could be right for a big reveal.
events.photonics.com
The Value Proposition of the Optical Interposer — The Industry's Next De Facto Platform Technology
Presented by: Suresh Venkatesan, POET Technologies
The optical interposer has gained traction because it can meet the high-volume production requirements of AI clusters while reducing cost and power consumption. As the market settles into an era where 800Gbps and 1.6Tbps applications become the norm — and 3.2Tbps optical engines may not be far behind — the demand for a “semiconductorization of photonics” approach increases. The cornerstone of that approach will be silicon-based optical interposers that allow for scalability through wafer-level passive assembly and an overall reduction of components.
By adopting optical interposers, data center networking companies can eliminate numerous parts and labor-intensive steps, including wire bonds. They can also benefit from improved margins, lower overhead, and a streamlined supply chain. With a simplified system design and material-agnostic platform, optical interposers provide engineers with the capability to unlock new designs and architect the computing devices of the future.
x.com
1136
of 1136
We look forward to the 12th of February.
The timing could be right for a big reveal.
events.photonics.com
The Value Proposition of the Optical Interposer — The Industry's Next De Facto Platform Technology
Presented by: Suresh Venkatesan, POET Technologies
The optical interposer has gained traction because it can meet the high-volume production requirements of AI clusters while reducing cost and power consumption. As the market settles into an era where 800Gbps and 1.6Tbps applications become the norm — and 3.2Tbps optical engines may not be far behind — the demand for a “semiconductorization of photonics” approach increases. The cornerstone of that approach will be silicon-based optical interposers that allow for scalability through wafer-level passive assembly and an overall reduction of components.
By adopting optical interposers, data center networking companies can eliminate numerous parts and labor-intensive steps, including wire bonds. They can also benefit from improved margins, lower overhead, and a streamlined supply chain. With a simplified system design and material-agnostic platform, optical interposers provide engineers with the capability to unlock new designs and architect the computing devices of the future.
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