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oscilloscopes
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Rohde & Schwarz ZVL Vector Network Analyzer
Many users need both a network analyzer and a spectrum analyzer. But budgets are often tight and space is limited. And what about portability? Rohde & Schwarz has the answer: the new R&S®ZVL. It’s the most compact and lightweight network analyzer in its class, and it’s also a full-fledged spectrum analyzer. At just 15.5 lbs, the R&S®ZVL gives you exceptional results in a bidirectional two-port network analyzer with spectrum analyzer functionality.
ROH ZVL
The compact R&S ZVL from Rohde & Schwarz redefines network analysis. The new network analyzer's favorable price and scope of functions in combination with its excellent RF characteristics make it the ideal instrument for RF circuit development. Its dynamic range of 123 dB, bidirectional measurement capability, powerful analysis functions such as the multi-trace display, as well as extensive marker functions make it fit for measurement requirements of base station duplex filters. Moreover, due to its low weight of 7 kg and battery operation, it is also suitable for mobile applications.

Two For the Road
The new compact R&S ZVL offers network or spectrum analysis on the go.

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Key Features
  • Measurement of S-parameters, impedance, admittance and stability
  • Measurement output as Smith chart, inverted Smith chart, magnitude and phase, polar diagram, real / imaginary, group delay, VSWR
  • Very high number of traces and channels, overlay display of traces and different channels in a single diagram
  • Evaluation of traces within up to 10 ranges: max, min, rms, mean, std deviation, electrical length, phase delay
  • Evaluation of band pass filters in terms of center frequency, bandwidth, quality factor, attenuation
  • Optional spectrum analyser (ZVL-K1) including all functions also available with the network analyzer R&S ZVL
Network Analyzer Characteristics
  • Frequency range 9 kHz to 3 or 6 GHz
  • Dynamic range: >115 dB (>123 dB typ)
  • Bidirectional test set, measurement of all 4 S-parameters
  • Measurement bandwidths: 10 Hz to 500 kHz
  • Number of measurement points: 2 to 4001
  • Measurement speed @ 100 kHz IF BW and 201 meas. points: <60 ms
  • Trace noise 0.005 dB (rms)
  • Output power range: -50 to 0 dBm, typical values -60 to +10 dBm
  • Receiver step attenuator 0 to 30 dB for measurement on active devices
Spectrum Analyzer Characteristics
  • Frequency range 9 kHz to 3 or 6 GHz
  • Resolution bandwidth: 300 Hz to 10 MHz in 1/3 sequence, zero span additionally 20 MHz, optional 10 Hz to 10 MHz
  • I/Q demodulation bandwidth: 20 MHz
  • SSB Phase noise @ 1 GHz: typical value -103 dBc (1 Hz) at 10 kHz carrier offset
  • Third order intercept (T.O.I): +12 dBm, typical value
  • Displayed average noise level: <-140 dBm (1Hz): with optional preamp: typical value= -163 dBm (1Hz)
  • Level measurement uncertainty: 0.5 dB up to 3 GHz and 0.8 dB from 3 to 6 GHz.
  • Full set of detectors: max peak, min peak, auto peak, sample, rms, quasi peak, average
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