Nexustest has announced the launch of two new products: the DCA1065 sampling oscilloscope with integrated clock recovery and the CR3302 standalone clock recovery unit. These solutions are specifically engineered to address the clock extraction and eye diagram analysis requirements of cutting-edge 1.6T AI optical transceiver computing interfaces, as well as single lane 224 Gbps PAM4 signals.

AI and machine learning (ML) training place stringent demands on network bandwidth and reliability. As the central hub for data exchange, the performance of computing interfaces directly determines the overall efficiency and stability of AI systems. With bandwidth now advancing to 1.6T, comprehensive interface testing has become essential. Any malfunction or performance degradation in optical modules can interrupt AI workloads, resulting in costly delays and wasted resources. To mitigate these risks, network equipment manufacturers and optical module vendors must perform rigorous interface testing. This requires high-bandwidth, high-sensitivity, low-noise sampling oscilloscopes that comply with industry standards, complemented by dedicated sampling and clock recovery units to ensure accurate and dependable test results.
DCA1065: Sampling Oscilloscope with Built-in Clock Recovery
CR3302: Independent Clock Recovery Unit
Full-rate Clock Recovery and Eye Diagram Analysis for Single Lane 224Gbps PAM4 Signals
Specifically designed and manufactured for clock extraction and eye diagram analysis of 1.6T optical transceiver interfaces

(eye chart change to eye diagram; single wave change to single lane)
































































