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Published: 2017 - 07 - 15
Directional power meters are used to measure power and reflection under operational conditions. They are connected between source and load and measure the power flow in both directions. The power applied to the load and the reflection can thus be measured. Typical applications are in installation, maintenance and monitoring of amplifiers, transmitters, antennas and RF/microwave generators in industrial and medical fields.
Published: 2017 - 07 - 15
To support a wide range of test requirements, the GSS6300 can be remotely controlled via standard interfaces such as IEEE-488, USB or RS-232. In addition, Spirent SimCHAN software can be used to implement real-time user control of the GSS6300, making it an accurate laboratory GPS / SBAS, GLONASS and / or Galileo test equipment.
Published: 2017 - 07 - 15
Customers looking for a general purpose spectrum analyzer will appreciate the flexibility of the ESA spectrum analyzer that can be used for a wide range of applications from aerospace and defense to the manufacturing line. Browse the ESA Brochure.Customers who wish to take advantage of the ESA flexibility but who need a faster analyzer for the manufacturing line, or connectivity to LAN/USB in addition to GPIB, or want to do in depth signal analysis with 89600 VSA software will benefit from the new EXA signal analyzer. The EXA signal analyzer now comes standard with many of the ESAs optional features and yet offers more applications than the ESA. Migrate from ESA to EXA.
Tel: 13421364554
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Rohde & Schwarz ZNB8Vector Network Analyzer -Frequency range: 9 kHz
product name:

Rohde & Schwarz ZNB8Vector Network Analyzer -Frequency range: 9 kHz

Listing date: 2017-07-14

Rohde & Schwarz once again sets new benchmarks – with the R&S®ZNB vector network analyzers. The new family of network analyzers features high measurement speed, outstanding precision and exceptional ease of operation.

The R&S®ZNB vector network analyzers feature a wide dynamic range of up to 140 dB (at 10 Hz IF bandwidth), low trace noise of less than 0.004 dB RMS (at 10 kHz IF bandwidth) and high output power of up to +13 dBm, which can be adjusted electronically in a range of more than 95 dB.

With frequency ranges of 9 kHz to 4.5 GHz and 9 kHz to 8.5 GHz, the new network analyzers are primarily targeted at applications in the mobile radio and electronic goods industries. The R&S®ZNB is the right choice when it comes to developing, producing and servicing RF components such as amplifiers, mixers, filters and cables.

The new analyzers combine high measurement accuracy with exceptional speed – better than 10 μs per point. They feature excellent temperature and long-term stability, which ensures reliable measurements over several days without having to recalibrate the units.

These short-depth, compact two-port and four-port analyzers leave plenty of space on the workbench for the measurement application. They feature low operating noise thanks to low power consumption and a sophisticated cooling concept. The low power consumption also reduces operating costs and protects the environment.

  • Wide dynamic range of up to 140 dB, from 9 kHz for fast measurements on high-blocking DUTs 

  • Short sweep times of 4 ms for 401 points

  • Excellent raw data for high basic accuracy

  • High temperature stability of typically 0.01 dB/°C

  • Fast embedding/de-embedding for impedance matching using virtual networks

  • Mixed-mode S-parameters for balanced DUT characterization

  • Extensive analysis functions for convenient trace analysis

  • Amplifier measurements with wide power sweep range and receiver step attenuators

  • Time-domain analysis for distance-to-fault (DTF) measurements and filter adjustment

  • Wide range of IF bandwidths from 1 Hz to 10 MHz

  • Manual and automatic calibration

  • Large, high-resolution 12.1" screen

  • Flat and clear menu structures for efficient operation

  • Touchscreen user interface

  • Two or four test ports

Specifications for the R&S®ZNB8:

  • Frequency range: 9 kHz to 8.5 GHz

  • Frequency resolution: 1 Hz

  • Number of test ports: 2

  • Test port connector: N female

  • Impedance: 50 Ω

  • Number of measurement points per trace: 2 to 100001

  • Measurement bandwidth

    • Without optional increased bandwidth: 1 Hz to 1 MHz

    • With optional increased bandwidth: 1 Hz to 10 MHz

  • Dynamic range (without optional step attenuators)

    • 9 kHz to 100 kHz: >100 dB, typically 122 dB

    • 100 kHz to 50 MHz: >120 dB, typically 138 dB

    • 50 MHz to 4 GHz: >130 dB, typically 140 dB

    • 4 GHz to 7 GHz: >125 dB, typically 138 dB

    • 7 GHz to 8.5 GHz: >120 dB, typically 130 dB

  • Measurement time for 201 measurement points, with 200 MHz span, 500 kHz measurement bandwith

    • With 900 MHz center frequency: <5 ms

    • With 5.1 GHz center frequency: <4 ms 

  • Measurement time per point with 500 kHz measurement bandwidth, CW mode: 2.5 μs

  • Sample time per point

    • At 1 MHz measurement bandwidth: 860 ns

    • At 10 MHz measurement bandwidth: 312 ns

  • Switching time between channels with no more than 2001 points: <5 ms

  • Switching time between two preloaded instrument settings with no more than 2001 points: <5 ms

  • Test port output power range (without R&S®ZNB-B22 extended power range option)

    • 9 kHz to 100 MHz: –55 dBm to +10 dBm, typically +12 dBm

    • 100 MHz to 2.5 GHz: –55 dBm to +13 dBm, typically +15 dBm

    • 2.5 GHz to 7.5 GHz: –55 dBm to +10 dBm, typically +13 dBm

    • 7.5 GHz to 8.5 GHz: –55 dBm to +8 dBm, typically +12 dBm

  • Test port output power range (with R&S®ZNB-B22 extended power range option)

    • 9 kHz to 100 MHz: –85 dBm to +10 dBm, typically +12 dBm

    • 100 MHz to 2.5 GHz: –85 dBm to +13 dBm, typically +15 dBm

    • 2.5 GHz to 7.5 GHz: –85 dBm to +10 dBm, typically +13 dBm

    • 7.5 GHz to 8.5 GHz: –85 dBm to +8 dBm, typically +12 dBm

  • Test port input match without system error correction

    • 9 kHz to 20 kHz: >10 dB

    • 20 kHz to 8.5 GHz: >20 dB

  • Test port maximum nominal input level: +13 dBm

  • Test port damage level: +27 dBm

  • Test port damage DC voltage: 30 V 

  • Test port input noise level at 1 kHz measurement bandwidth, normalized to 1 Hz

    • 9 kHz to 50 kHz: <–115 dBm

    • 50 kHz to 50 MHz: <–120 dBm

    • 50 MHz to 4 GHz: <–130 dBm

    • 4 GHz to 6.5 GHz: <–125 dBm

    • 6.5 GHz to 8.5 GHz: <–120 dBm

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