Rohde & Schwarz Oscilloscopes | RTE1000
Available with 2 or 4 channels and Bandwidth of 200 MHz to 2 GHz makes the ideal for embedded design development to power electronics analysis to general debugging, the R&S RTE1000 handles everyday T&M challenges quickly, accurately and easily.
• Highest sampling rate of 5 Gsample/s and deepest memory of 200 Msample for accurate acquisition of long signal sequences
• Acquisition rate of more than one million waveforms/s for finding signal faults quickly
• Extremely low-noise frontends and 16-bit vertical resolution in high definition mode for precise results
• Highly accurate digital trigger system with virtually no jitter for triggering on smallest signal details in realtime.
Tools such as QuickMeas, fast mask tests, powerful spectrum analysis, history function and 77 automatic measurement functions are supplied as standard. Results are available fast thanks to hardware-assisted implementation of the measurement tools in the Rohde&Schwarz ASIC. The results are based on a large number of waveforms to provide statistically conclusive information.
R&S RTE oscilloscopes support dedicated application solutions for complex analyses, including trigger and decoding options for serial protocols and a power analysis option. The mixed signal option provides 16 digital channels for analyzing logical components in embedded designs.
The powerful R&S RTE is impressively easy to use thanks to its high-resolution 10.4″ XGA touchscreen.
Thanks to very low-noise frontends, the R&S®RTE oscilloscopes offer an input sensitivity down to 500 µV/div. This is unmatched on the market. Other oscilloscopes attain 1 mV/div sensitivity only by employing software-based zooming or by limiting the bandwidth. R&S®RTE oscilloscopes, however, show a signal’s real sampling points over the full measurement bandwidth, even at 500 µV/div sensitivity. This high measurement accuracy is particularly beneficial when measuring small signal amplitudes
To contact Leda Electronics about Rohde & Schwarz Oscilloscopes | RTE1000 use Get A Quote.
Available with 2 or 4 channels and Bandwidth of 200 MHz to 2 GHz makes the ideal for embedded design development to power electronics analysis to general debugging, the R&S RTE1000 handles everyday T&M challenges quickly, accurately and easily.
• Highest sampling rate of 5 Gsample/s and deepest memory of 200 Msample for accurate acquisition of long signal sequences
• Acquisition rate of more than one million waveforms/s for finding signal faults quickly
• Extremely low-noise frontends and 16-bit vertical resolution in high definition mode for precise results
• Highly accurate digital trigger system with virtually no jitter for triggering on smallest signal details in realtime.
Tools such as QuickMeas, fast mask tests, powerful spectrum analysis, history function and 77 automatic measurement functions are supplied as standard. Results are available fast thanks to hardware-assisted implementation of the measurement tools in the Rohde&Schwarz ASIC. The results are based on a large number of waveforms to provide statistically conclusive information.
R&S RTE oscilloscopes support dedicated application solutions for complex analyses, including trigger and decoding options for serial protocols and a power analysis option. The mixed signal option provides 16 digital channels for analyzing logical components in embedded designs.
The powerful R&S RTE is impressively easy to use thanks to its high-resolution 10.4″ XGA touchscreen.
Thanks to very low-noise frontends, the R&S®RTE oscilloscopes offer an input sensitivity down to 500 µV/div. This is unmatched on the market. Other oscilloscopes attain 1 mV/div sensitivity only by employing software-based zooming or by limiting the bandwidth. R&S®RTE oscilloscopes, however, show a signal’s real sampling points over the full measurement bandwidth, even at 500 µV/div sensitivity. This high measurement accuracy is particularly beneficial when measuring small signal amplitudes
To contact Leda Electronics about Rohde & Schwarz Oscilloscopes | RTE1000 use Get A Quote.
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