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Digital oscilloscope ML4035
differentialbench-top4-channel

Digital oscilloscope - ML4035 - MultiLane - differential / bench-top / 4-channel
Digital oscilloscope - ML4035 - MultiLane - differential / bench-top / 4-channel
Digital oscilloscope - ML4035 - MultiLane - differential / bench-top / 4-channel - image - 2
Digital oscilloscope - ML4035 - MultiLane - differential / bench-top / 4-channel - image - 3
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Characteristics

Input signal
digital, differential
Portability
bench-top
Number of channels
4-channel
Bandwidth

35 GHz

Description

The ML4035 is a state-of-the-art TDR/TDT and a Digital Sampling Oscilloscope at the same time. The DSO automatically performs accurate eye- diagram analysis at 35 GHz to characterize the quality of transmitters and receivers, implementing a statistical under-sampling technique with comprehensive software libraries used for eye measurements, jitter analysis and processing of NRZ/PAM4 data. The true- differential TDR/TDT is used to determine the impedance profile, reflection and transmission losses of components on 4 channels simultaneously. It is designed for characterization as well as manufacturing. The 4 differential PPG ports can generate pulse patterns at 53 Gpbs NRZ, thus enabling Sdd21 measurements beyond 35 GHz. The ML4035 can be configured to measure TDR with a range of 10 meters. It has a pulse rise time of 12ps that allows to resolve impedance discontinuities as close as 1.5mm apart. The dynamic range is 60dB. The ML4035-TDR is a state-of-the-art combination of a TDR and Digital Sampling Oscilloscope. The DSO performs accurate eyediagram analysis at 35 GHz to characterize the quality of transmitters and receivers, implementing a statistical under-sampling technique with comprehensive software libraries for eye measurements, jitter analysis and processing of NRZ/PAM4 data. The truedifferential TDR can determine the impedance profile and reflection loss on 4 channels simultaneously. It is designed and suited both for characterization as well as manufacturing. The 4 differential PPG ports can generate pulse patterns up to 58 Gbps NRZ, enabling Sdd21 measurements beyond 32 GHz. The ML4035-TDR can be configured to measure TDR with a range of 10 meters.
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