Time domain analysis
High Stability Timebase
4-port Test Set, 9 kHz to 8.5 GHz without Bias Tees
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Qty: 1USB Drive with Software and Manuals
Qty: 14-port Test Set, 9 kHz to 8.5 GHz without Bias Tees
Time domain analysis
Removable Data Storage
High Stability Timebase
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Connecting Bar BNC
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Qty: 1USB Drive with Software and Manuals
Qty: 1Frequency Offset Mode
High Stability Timebase
4-port Test Set, 9 Khz To 8.5 Ghz Without Bias Tees
Enhanced Time Domain Analysis
Connecting Bar BNC
Qty: 1Cord Power
Qty: 1USB Drive with Software and Manuals
Qty: 14-port Test Set, 9 kHz to 8.5 GHz without Bias Tees
Enhanced Time Domain Analysis
Connecting Bar BNC
Qty: 1Cord Power
Qty: 1USB Drive with Software and Manuals
Qty: 1Frequency-offset measurements
High Stability Timebase
4-port Test Set, 9 kHz to 8.5 GHz without Bias Tees
Connecting Bar BNC
Qty: 1Cord Power
Qty: 1USB Drive with Software and Manuals
Qty: 14-port Test Set, 9 kHz to 8.5 GHz without Bias Tees
High Stability Timebase
Add keyboard
Add mouse
Enhanced Time Domain Analysis
Connecting Bar BNC
Qty: 1Cord Power
Qty: 1USB Drive with Software and Manuals
Qty: 1Standard hard disk drive
High Stability Timebase
4-port Test Set, 9 kHz to 8.5 GHz without Bias Tees
Connecting Bar BNC
Qty: 1Cord Power
Qty: 1USB Drive with Software and Manuals
Qty: 1Frequency-offset measurements
Time domain analysis
High Stability Timebase
4-port Test Set, 9 kHz to 8.5 GHz without Bias Tees
Add keyboard
Add mouse
Connecting Bar BNC
Qty: 1Cord Power
Qty: 1USB Drive with Software and Manuals
Qty: 1Content is AI-generated. Verify critical details with manufacturer-provided resources.
The E5071C-480 is a 4-port vector network analyzer covering 9 kHz to 8.5 GHz without bias tees. This extended port count enables full multiport S-parameter measurements for differential devices, balanced components, and complex multiport RF circuits in a single connection.
The 4-port test set allows you to measure all 16 S-parameters (S11 through S44) without reconnecting cables, significantly reducing measurement time and improving repeatability. This is particularly valuable for characterizing differential devices, mixers, couplers, diplexers, and other multiport components where complete network characterization is needed.
All four test ports on the E5071C-480 feature Type-N female connectors. These 50 ohm connectors provide robust, repeatable connections suitable for the full frequency range up to 8.5 GHz and are compatible with standard RF cables and calibration kits.
The E5071C-480 delivers 98 dB dynamic range from 10 MHz to 6 GHz and 92 dB from 6 to 8.5 GHz at 3 kHz IF bandwidth. With the narrowest 10 Hz IF bandwidth, dynamic range improves to 123 dB (10 MHz to 6 GHz) and 117 dB (6 to 8.5 GHz), providing excellent sensitivity for low-level signal measurements.
No, the E5071C-480 does not include built-in bias tees. This model is configured for passive device measurements or active devices that are externally biased. If you require integrated DC biasing capability for active component testing, consider the E5071C-485 which includes bias tees on all four ports.
The E5071C-480 provides 0 dBm nominal output power. For the 4-port configuration, the maximum leveled power is 10 dBm from 9 kHz to 6 GHz, stepping down to 9 dBm from 6 to 7 GHz and 8 dBm from 7 to 8.5 GHz. The power range is -55 to 10 dBm with 0.05 dB resolution, allowing fine control over source power levels.
Yes, the E5071C-480 is fully compatible with the E5092A configurable multiport test set, which extends the analyzer's measurement capability from 4 ports to additional test ports. This combination enables multiport measurements from 50 MHz to 8.5 GHz by connecting semi-rigid cables to the E5092A front panel to access its internal switches.
The E5071C-480 supports full multiport calibration using mechanical calibration kits such as the 85032F (Type-N, DC to 9 GHz) or electronic calibration modules. For efficient 4-port calibration, 4-port ECal modules like the N4431B (9 kHz to 13.5 GHz) or N4432A (300 kHz to 18 GHz) are recommended, as they significantly reduce the number of connections required.