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R&S®ETL TV Analyzer - Product Brochure - Rohde & Schwarz

R&S®ETL TV Analyzer - Product Brochure - Rohde & Schwarz

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R&S®ETL<strong>TV</strong> <strong>Analyzer</strong>Benefits and keyfeaturesAll-in-one solution❙❙All required measurement equipment in a compactinstrument❙❙Short learning curve due to uniform operating concept❙❙Fast and comprehensive signal analysis❙❙Simplified documentation of measurement results❙❙Excellent price/performance ratio▷▷page 10FPGA-based realtime demodulators❙❙Simple implementation of new standards with firmwareupdates❙❙Easy integration of multiple standards in a singleinstrument❙❙Seamless signal analysis through realtime demodulation❙❙Analysis and provision of baseband signals (video, audio,ETI, MPEG-2 TS)▷▷page 12Comprehensive analysis of analog <strong>TV</strong> signals❙❙Ideal for the transition from analog to digital <strong>TV</strong>❙❙Overview of the most important parameters❙❙Measurements for evaluating modulator quality at thetransmitter or cable headend❙❙<strong>TV</strong> picture for fast visual inspection of transmission links▷▷page 14Comprehensive analysis of digital <strong>TV</strong> and mobile<strong>TV</strong> signals❙❙Overview of the most important parameters❙❙Spurious emissions quickly detected with integratedspectrum analyzer❙❙Constellation diagram with high processing speed fordetecting short-duration interferers❙❙Measurements for optimizing transmitters andmodulators▷▷page 16Analysis functions for second-generation<strong>TV</strong> standards – DVB‐T2, ATSC MD<strong>TV</strong>❙❙DVB-T2, realtime signal analysis❙❙Wide-ranging analysis functions❙❙Prepared for multi-PLP and MISO❙❙ATSC MD<strong>TV</strong> realtime signal analysis❙❙Analysis of signaling parameters and services❙❙Measurements to optimize single-frequency networks▷▷page 18Precise analysis of digital single- frequencynetworks (SFN)❙❙High-precision display of channel impulse response❙❙Simple identification of echoes using tabular lists andmarker functions❙❙Extended time domain for faraway post-echoes❙❙Efficient measurement of frequency drifts within an SFN▷▷page 204

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