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Keysight N5247B-224

-N5247B-224-0

PNA-X Microwave Network Analyzer / 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches

Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
  • Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
  • Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
  • Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
  • Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
  • Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
  • Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
  • Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
  • Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
  • Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches
  • Keysight N5247B-224 10 MHz to 67 GHz/ 2-port/ Config. Test Set/ Source & Receiver Att./ Bias Tees/ Second Source/ Combiner/ Mech. Switches

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Cannot ship to:

European Union
Switzerland
Norway
Turkey

Unit only ships within China.

Unit ships worldwide.

Standard Keysight Premium Used For professional and industrial use only
Condition Refurbished, like New
DownloadsKeysight N5247B-224 Data sheetKeysight N5247B-224 Configuration GuideKeysight N5247B-224 User Manual
Warranty Like New WarrantyFor extensions or discount, contact us5 years Keysight Care assured on eligible models
CalibrationFully calibratedFor plans or discount, contact us
AccessoriesStandard accessories includedTo order additional accessories, contact us
Shipping Limited countries only Check availability
Deal IDW2129644

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This InstrumentThis Instrument
Keysight Premium UsedKeysight Used
Save up to 70%Save up to 90%
Like New ConditionWorking Condition²
Firmware UpdatedFirmware as Listed
Fully CalibratedCalibration as Listed
New AccessoriesAccessories as Listed
Like-New Warranty
1–5 Years¹
90 days warranty
Customization PossibleLimited Customization

Contact us to check availability of any service, calibration plans, or the possibility to software. New accessories may be able to be added for the United States only. 

Specifications

Reach for Unrivaled Excellence

More than just a vector network analyzer, the PNA-X is the world’s most integrated and flexible microwave test engine for measuring active devices such as amplifiers, mixers, and frequency converters. The hardware includes two internal signal sources, a signal combiner, S-parameter and noise receivers, pulse modulators and generators, and a set of switches and RF access points. These hardware features provide a powerful core for a broad range of linear and nonlinear measurements, all with a single set of connections to your device under test.

  • Simplify your test stations by replacing racks and stacks of equipment
  • Increase productivity with the most integrated and flexible single-connection microwave test engine
  • Reduce test time with the world’s widest range of single-connection measurement applications
  • Accurately test linear and nonlinear device characterization using advanced error correction
  • Accelerate insight into component behavior using a multi-touch display and intuitive user interface
See downloads for more details
Installed Options
029Add noise receiver to 50 GHz
See downloads for more details
Addable Options
(not installed)
S930700BModulation distortion up to 8.5 GHz
S930900BSpectrum analysis up to 8.5 GHz
S930901BSpectrum analysis up to 13.5 GHz
S930701BModulation distortion up to 13.5 GHz
020Add IF inputs
021Add pulse modulator to internal 1st source
022Add pulse modulator to internal 2nd source
S930902BSpectrum analysis up to 26.5 GHz
S930702BModulation distortion up to 26.5 GHz
S930704BModulation distortion up to 43.5 GHz
S930904BSpectrum analysis up to 43.5 GHz
S930905BSpectrum analysis up to 50 GHz
S930705BModulation distortion up to 50 GHz
S930707BModulation distortion up to 70 GHz
S93007BAutomatic fixture removal
S930907BSpectrum analysis up to 70 GHz
S930909BSpectrum analysis up to 90 GHz
S93110BActive Hot Parameters
S93010BTime-domain analysis
S94510BNonlinear component characterization
S94511BNonlinear component characterization, restricted to 50 GHz
S93011BEnhanced Time Domain Analysis with TDR
S93111BActive Hot Parameters, restricted to 50 GHz
S94514BNonlinear X-parameters
S93015BReal-time S-parameter and power measurement uncertainty
S930317BPhase noise measurement up to 70 GHz
S94518BNonlinear pulse envelope domain
S93118BFast CW measurements
S94520BArbitrary load impedance, X-parameters
S94521BArbitrary load control, X-parameters
S930321BPhase noise measurement up to 125 GHz
S94522BArbitrary Load Control, Device Characterization
S93025BBasic pulsed-RF measurements
S93026BAdvanced pulsed-RF measurements
S93027BMechanical noise tuner control
S93029BNoise figure measurements with vector correction
S93247BPNA-X Core Software to 70 GHz
S93551BN-port measurements
S93460BTrue-mode stimulus
S93080BFrequency-offset measurements
S93082BScalar mixer/converter measurements
S93083BVector and scalar mixer/converter measurements
S93084BEmbedded-LO capability
S93086BGain-compression measurements
S93087BIntermodulation distortion measurements
S93088BSource phase control
S93089BDifferential and I/Q device measurements
S93093BSpectrum analysis to 120 GHz
S93094BSpectrum analysis beyond 120 GHz
S93898BBuilt-in performance test software
A6JANSI Z540-1-1994 Calibration
S93247B-F12
S93247B-F36
S93247B-F60
UNYEnhanced low phase noise performance
XSBThird RF source up to 13.5 GHz

Request a customized version of this model by requesting a Custom Quote
See downloads for more details

Warranty
Like New Warranty
Contact us or request a custom quote to check extensions or discount.
Check terms and conditions
Calibration
Fully calibrated
Get up to 10% discount on calibration plans ordered with your used Keysight instrument.
Contact us or request a custom quote to check availability.
Accessories
Standard accessories included
To order additional accessories, please contact us or request a custom quote
Software
Get up to 10% discount on software ordered with your used Keysight instrument.
Contact us or request a custom quote to check availability.

FAQs

What are the differences between Keysight Used & Keysight Premium Used?

You will find more information about the differences of Keysight's used equipment standards here.

Can I configure a unit to meet my personal needs?

Customization is generally possible with our Keysight Premium Used equipment. The majority of our Keysight Premium Used equipment can be configured just the way you need it. Options can be added at additional cost.
Customizing Keysight Premium Used equipment might change the delivery and lead time of the item.

Some Keysight Used products cannot be customized. Use the contact option on the product page to check with the our eStore team.

What accessories are included?

Keysight Premium Used equipment typically comes with the same accessories and warranty as new products.

For Keysight Used products, the accessories included are mentioned in each listing on the Keysight Store on eBay or the Keysight Alibaba store.

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We currently only offer those accessories which are part of the listing. Other accessories can be purchased separately at extra cost with your purchase of a Keysight Used or Keysight Premium Used unit.

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FAQs

What is a Vector Network Analyzer?

High-performance Vector Network Analyzers (VNA) are used to characterize and analyze RF and Microwave devices such as amplifiers, filters, power dividers/combiners, switches, antennas, and more. VNAs provide engineers with accurate device measurements including S-parameters, noise figures, return loss, and more.

What is a Vector Network Analyzer used for?

A Vector Network Analyzer, a stimulus response testing equipment, is commonly used for research and development, design validation, failure analysis, and production testing by measuring the frequency response of component(s).

Does a VNA need to be calibrated?

Yes, all VNAs are calibrated to ensure the highest quality results. The calibration process involves adjusting the instrument to eradicate the hardware systematic errors using traceable standards for accuracy and phase measurements.

How do you calibrate a Vector Network Analyzer?

The calibration process can be done manually or automatically, but in most cases, the manual method is used. The common methods of calibration include SOLT and TRL based on different parameters to remove systematic errors. Manual calibration involves selecting a known stimulus signal from a list of available signals within the VNA's software, then adjusting the amplitude and phase until the value corresponds to that from the known stimulus source. The network analyzer should be periodically calibrated with a reference calibrator to ensure the analyzer is measuring correctly. Periodic calibration guarantees the match with International standards.

Does a VNA have error correction?

Some VNAs have built-in error correction that may compensate for a variety of errors including thermal drift, time delay, source-load mismatch and optical path length variations.

What is the difference between a Vector Network Analyzer vs Network Analyzer?

A Vector Network Analyzer measures the amplitude as well as phase characteristics of one and two-port devices such as wireless components, microstrip lines, and branched structures.

A Network Analyzer measures the network parameters of two-port and arbitrary number of ports devices such as amplifiers, filters etc.

What is the difference between a Vector Network Analyzer vs Spectrum Analyzer?

A Vector Network Analyzer measures complex component specifications at specific frequencies using a signal generator and a receiver.

A Spectrum Analyzer measures power across an entire frequency spectrum of the applied signal using a receiver only.

What is the difference between a Vector Network Analyzer vs Oscilloscope?

An oscilloscope measures external signals by representing voltage waveforms as a function of time, while a Vector Network Analyzer measures both the amplitude and phase monitoring the response of a network.

How does a VNA measure S11?

A VNA measures S11 by introducing a stimulus signal into the port of the device being tested, then measuring the reflected signal. The frequency at which this reflection occurs is then used to calculate S11.

What is the S21 parameter?

S21 is used to measure how well a device rejects signals that are passed through the input port and reflected on the output port. The power transferred from the first port to the next can be determined using the S21 parameter.

What are propagation and channel modeling?

Propagation and channel modeling is a technique for estimating the performance of wireless communications antennas and their effect on cell coverage.
The most significant parameters in propagation and channel modeling are path loss, Fresnel zone, path attenuation, and multipath fading.

What is a Smith chart?

A Smith chart is a graphic representation of a particular type of circuit operation. It shows the impedance, admittance, and conductance of an amplifier or other system component as it relates to frequency or voltage. In order to understand how a Smith chart operates, it is important to know the basics of transmission line theory.

What is Voltage Standing Wave Ratio?

Voltage standing wave ratio is the measure of the non-reactive voltage received at a point in space relative to cause by an AC source, thus representing the reflected power from the antenna source. It is typically specified as volts per meter (V/m) or millivolts per meter (mV/m).

How does a Vector Network Analyzer measure phase?

A Vector Network Analyzer measures phase by introducing a stimulus signal into the port of the device being measured. The degree of phase shift is then noted. A separate calibration is used to determine the degree of phase shift when no stimulus signal is applied.

How does a VNA measure amplitude?

A VNA measures amplitude by introducing a stimulus signal into the port of the device, then measuring the strength. The magnitude of the reflected signal is then used to calculate amplitude.

What are amplitude properties?

Amplitude properties include the amplitude at a particular frequency, amplitude ranges, amplitude linearity, and amplitude ratio measurements.