Product Details:
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New / Used: | Used | Frequency Range: | 20 Hz – 26.5 GHz |
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Phase-Noise Sensitivity: | Typ. –177 DBc/Hz At 1 MHz Offset Using 1000-line Cross-correlation | Phase-Noise Measurement Range: | 1 MHz – 26.5 GHz With 0.01 Hz – 30 MHz Offsets (PLL Method) |
Displayed Average Noise Level: | Typ. –150 DBm/Hz @ 22–26.5 GHz (–155 DBm With RF Pre-amp) | Interfaces / Options: | LAN, GPIB, USB; LO/IF Ports B21 For External Mixers; 20 DB RF Pre-amp B23; Cross-correlation & AM-noise Kits |
Highlight: | phase noise signal source analyzer,signal source analyzer rohde & schwarz,26.5ghz keysight signal analyzer |
Attribute | Value |
---|---|
New / Used | Used |
Frequency Range | 20 Hz – 26.5 GHz |
Phase-Noise Sensitivity | typ. –177 dBc/Hz at 1 MHz offset using 1000-line cross-correlation |
Phase-Noise Measurement Range | 1 MHz – 26.5 GHz with 0.01 Hz – 30 MHz offsets (PLL method) |
Displayed Average Noise Level | typ. –150 dBm/Hz @ 22–26.5 GHz (–155 dBm with RF pre-amp) |
Interfaces / Options | LAN, GPIB, USB; LO/IF ports B21 for external mixers; 20 dB RF pre-amp B23; cross-correlation & AM-noise kits |
The pre-owned Rohde & Schwarz FSUP26 combines a low-noise phase-noise tester and high-dynamic-range spectrum analyzer in one compact 4 kg enclosure. Its fundamental mixing technology provides direct coverage from 20 Hz to 26.5 GHz, while an internal PLL and optional cross-correlation engine achieve phase-noise floors below -177 dBc/Hz—ideal for crystal, PLL and DRO characterization.
Built-in low-noise DC supply and tuning ports accelerate VCO and synthesizer evaluation, while selectable 10 Hz - 10 MHz RBWs plus preselection filters ensure CISPR-grade spur analysis.
Delivered fully tested, freshly calibrated and with current firmware, this second-hand FSUP26 offers immediate availability and substantial cost savings compared to new signal-source analyzers, without compromising the precision, reliability or LAN/GPIB automation expected from Rohde & Schwarz instruments.
Interested in the Rohde & Schwarz FSUP26 or a similar model?
Contact Person: Ben