Photonic computing enables faster and more energy-efficient processing of vision data1,2,3,4,5. However, experimental superiority of deployable systems remains a challenge because of complicated optic...
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Scientists in China have unveiled a new AI chip called LightGen that is 100 times faster and 100 times more energy efficient than NVIDIA chips, the
The 96 GBd and 128 GBd ultra-high-speed optical devices are key components for building high-performance optical infrastructure. Considering 800ZR standardization and the
Instead of using electronic oscillators to keep internal time, these chips run photons around a racecourse-like circuit that runs at the speed of light.
Here we propose an all-analog chip combining electronics and light, named ACCEL, for energy-efficient and ultra-high-speed vision tasks with competitive task performance and scalability.
This has been a strong driver of the development of high-speed light sources and detectors for emerging applications. In addition, these ultra-fast optoelectronic devices have come to
They developed an ultra-highly parallel optical computing integrated chip—Meteor-1—and successfully demonstrated a photonic computing prototype system with a parallelism level
Instead of using electronic oscillators to keep internal time, these chips run photons around a racecourse-like circuit that runs at the speed of light.
Scientists in China have unveiled a new AI chip called LightGen that is 100 times faster and 100 times more energy efficient than NVIDIA chips, the leading supplier of AI chips worldwide.
They developed an ultra-highly parallel optical computing integrated chip—Meteor-1—and successfully demonstrated a photonic computing prototype
Exploring optical interconnects for AI data centers: LPO for low-power, short-distance links, NPO for high-density, near-package connections, and CPO for ultra-high-bandwidth co
The capacity and performances of such optical transmission links are mainly determined by high-speed optoelectronic devices, namely, semiconductor lasers, optical modulators, and PDs.
The on-chip integration in the TFLN platform not only offers a higher information density compared to bulk discrete components, but also greatly enhances the stability and performance of
The ultra-high-performance optoelectronic chip proposed by the research team at Tsinghua University adopts a new architecture of optoelectronic fusion, which is disruptive to existing...
High-precision power meters (Ge/InGaAs) and stabilized light sources for insertion loss and return loss testing.
Full-featured OTDR, fiber OTDR testers, and modular OTDR test modules for network deployment and troubleshooting.
High-resolution OSA for DWDM and eye diagram testers for signal integrity validation.
BERT up to 800G, fiber endface inspection probes, and extinction ratio meters for comprehensive testing.
We provide custom optical test solutions, from handheld power meters to high-end OSA and BERT systems.
From prototype to mass production, our team ensures premium quality and technical support.
Unit 5, High Tech Business Park, 15 Innovation Drive, Century City, Cape Town, 7441, South Africa
+27 71 539 4287 | +27 71 539 4287 | [email protected]