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Tested Fluke 96270A 27 GHz Low Phase Noise Reference Source multi product calibrator

Tested Fluke 96270A 27 GHz Low Phase Noise Reference Source multi product calibrator

  • Tested Fluke 96270A 27 GHz Low Phase Noise Reference Source multi product calibrator
  • Tested Fluke 96270A 27 GHz Low Phase Noise Reference Source multi product calibrator
  • Tested Fluke 96270A 27 GHz Low Phase Noise Reference Source multi product calibrator
  • Tested Fluke 96270A 27 GHz Low Phase Noise Reference Source multi product calibrator
Tested Fluke 96270A 27 GHz Low Phase Noise Reference Source multi product calibrator
Product Details:
Place of Origin: USA
Brand Name: Fluke
Certification: CNCS
Model Number: 96270A
Payment & Shipping Terms:
Minimum Order Quantity: 1 set
Price: Negotiation
Packaging Details: carton
Payment Terms: T/T
Supply Ability: in stock
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Detailed Product Description
Product Name: Multi Product Calibrator Freqency Range: 27 GHz
Condition: Pre-Owned Functions: Tested, In Full Working Conditions
High Light:

Multi Product Calibrator Noise Reference Source


Low Phase Noise Reference Source


27 GHz Noise Reference Source

Fluke 96270A 27 GHz Low Phase Noise Reference Source

Description of Fluke96270A Multi Product Calibrator

Cover a broad range of your RF workload with a single instrument

The 96270A calibrates a broad workload of RF calibration devices, including:

  • Spectrum analyzers, including higher frequency models
  • RF power sensors
  • Modulation meters and analyzers
  • Measurement receivers
  • Frequency counters
  • RF attenuators and components
  • High frequency oscilloscopes
  • ...and more

The metrology associated with calibrating these items becomes simpler because you have fewer error sources and uncertainty contributions to consider than with traditional RF calibration systems.

Avoid extensive measurements and calculations with self-characterization

The 96270A can “self-characterize” or profile its output to account for losses and attenuation of system components like cables, attenuators, splitters, and connecters, effectively creating a signal reference plane directly at the connection to the UUT input. This frequency/amplitude level correction profile is saved into 96270A memory, which can store up to 30 profiles for different output and interconnection configurations. Using a profile, the 96270A applies the level correction data automatically and delivers the user’s signal level setting accurately at the reference plane created at the UUT input. As a result, you save time, because you don’t have to measure, calculate and apply correction factors for each component in the signal delivery system.

Cut the cost of your RF calibration system in half

As the central instrument in a high performance RF spectrum analyzer calibration system, the 96270A can cut your costs in half or even more. The 96270A replaces all of these parts of a “typical” RF calibration system:

Up to five signal sources (from audio/ function generators to RF and microwave signal generators and low phase noise sources)

  • Power meters
  • Power sensors
  • Step attenuators
  • Filters
  • Pads
  • Couplers
  • 300 MHz frequency counter

The 96270A not only reduces the initial cost and time to purchase, install and configure RF system components, but it also reduces the costs to maintain and calibrate all of that equipment. For many spectrum analyzer models operating below 27 GHz, as well as for most power sensors, you only need a 96270A to perform the entire calibration.

The 96270A is also easier to transport than a heavy rack of equipment and accessories, making it the optimum solution for on-site calibration.

Designed for RF calibration

Many RF calibration systems are assembled with a mix of general purpose signal generators, power sensors, and other non-calibration-specific instruments. The 96270A, on the other hand, is designed specifically for RF calibration. Its user interface is designed to simplify processes for calibrating items such as spectrum analyzers, RF level meters and receivers. Parameter offset, stepping, relative and UUT/DUT error readout modes allow you to work accurately and efficiently, following familiar calibration procedures. You’ll find it easier than ever to determine the performance and tolerances of units under test.

The 96270A front panel is equipped with dedicated function keys, context-sensitive softkeys, and a bright, easy-to-read color display that make levels in terms of power (watts or dBm), voltage (RMS or peak to peak) using familiar multipliers and exponent forms. You can move easily between voltage, power and dBm units without losing entered values or accuracy. In error readout mode to adjust the reading, simply rotate the spin wheel and the UUT error is displayed directly in dB, ppm or percent.

The simple, calibration-oriented user interface also makes troubleshooting easier if you encounter an unexpected result or an out-of-tolerance condition while following a manual or automated calibration procedure.

State-of-the-art phase noise performance

With low phase noise optimized for low and high offset frequencies, and specifications from 1 Hz to 10 MHz offsets, the 96270A offers exceptional phase noise performance beyond that required for today’s high performance workloads.

Phase noise data is included in the 96270A certificate of calibration. Instead of relying only on the more conservative guaranteed specifications, users have actual performance data for their unit.

Calibrated as a system to assure system performance

The 96270A mainframe and leveling head are calibrated together as a complete system to assure overall system performance. Each 96270A instrument is supplied with a comprehensive ISO 17025 compliant certificate of calibration with data for all key parameters, including level and attenuation, leveling head output VSWR, and phase noise. You can be assured that your 96270A is traceable, plus RF metrology and uncertainty analysis become much simpler and faster. Accredited certification is available for the 96270A and both 50 ohm and 75 ohm heads.

  Frequency specifications Level specifications
Frequency/ Level Range Leveling Head O/P [50 Ω]: 1 mHz to 4 GHz
Microwave O/P Direct: 1 mHz to 27 GHz [with LL option] Microwave O/P with HF option: 1 kHz to 27 GHz [with LL option]
-130 to +24 dBm to 125 MHz, +14 dBm at 4 GHz -4 [-100] to +24 dBm, >1.4 GHz: +20 dBm, [>20 GHz: +18 dBm] -10 [-35] to +18 dBm, >1.4 GHz: +14 dBm, [>20 GHz: +12 dBm]
Resolution 10 µHz 0.001 dB
Frequency accuracy ± 0.05 ppm ± 5 µHz
Level accuracy (into 50 Ω): Leveling Head O/P:
Down to -48 dBm; ± 0.03 dB to 100 kHz, ± 0.05 dB to 128 MHz, ± 0.3 dB at 4 GHz
10 MHz to 128 MHz; ± 0.05 dB to -48 dBm, ± 0.1 dB to -84 dBm , ± 0.7 dB at -130 dBm Microwave O/P Direct:
Typically ± 0.5 dB to 4 GHz, ± 0.5 dB to 26.5GHz Microwave O/P with HF option (after self-characterization):
Power flatness uncertainty; ± 0.05 dB at 100 MHz, ± 0.07 dB at 1 GHz, ± 0.1 dB at 12 GHz, ± 0.16 dB at 26.5 GHz
% Power (Cal Factor) uncertainty with factory calibration; ± 1.06 % at 100 MHz, ± 1.42 % at 1 GHz, ± 3.52 % at 26.5 GHz
% Power (Cal Factor) uncertainty with reference sensor calibrated with typical state-of-the-art uncertainty and vector corrections for mismatches at splitter output port; ± 0.37 % at 100 MHz, ± 0.49 % at 1 GHz, ± 2.18 % at 26.5 GHz
Attenuation accuracy (into 50 Ω) Leveling Head O/P: ± 0.02 dB to 49 dB, ± 0.15 dB at 110 dB Relative to +10 dBm, 10 Hz to 128 MHz
VSWR Leveling Head O/P (50 Ω): ≤ 100 MHz: ≤ 1.05, ≤ 2 GHz: ≤ 1.1, 2 GHz to 4 GHz: ≤ 1.0 + 0.05 x f (GHz) Microwave O/P: direct ≤ 2.0 (typical), HF option splitter device ≤ 1.22
Harmonics and sub-harmonics Harmonics ≤1 GHz: -60 dBc, >1 GHz: -55 dBc; sub-harmonics ≤ 4 GHz: none, >4GHz: -60 dBc
Spurious ≥ 3 kHz offset ≤ -84 dBc at 500 MHz, ≤ -78 dBc at 1 GHz, ≤ -66 dBc at 4 GHz, ≤ -48 dBc at 27 GHz
Phase noise at 1 GHz –144 dBc/Hz, typical, at 10 kHz to 100 kHz offset
Modulation AM, FM, PM, internal and external to 4 GHz (Leveling Head and Microwave O/P); frequency pull and external leveling
Frequency sweep 1 mHz to 4 GHz (Leveling Head); 1 mHz to 27 GHz (Microwave O/P). Linear or logarithmic. Stop-start or center-span
Frequency counter Internal 300 MHz frequency counter
Power meter readout compatibility Rhode & Schwarz NRP-Z series thermal sensor models 51, 52, 55.03, 55.04, 56, 57 and 58
Temperature Operating: 0 °C to 50 °C, 23 °C ± 5 °C for specified performance Storage: -20 °C to +70 °C
Standard interfaces IEEE-488.2 (GPIB)
GPIB command emulation 9640A, 9640A-LPN, 9640A-LPNX, HP3335, HP8662A, HP8663A, HP8340A, HP8360 B-Series; Agilent E8257 Series
Dimensions (HxWxD) 146 mm x 442 mm x 551 mm (5.8 in x 17.4 in x 21.7 in) including handles. Industry-standard 19 in (483 mm) rack mounting when fitted with Y9600 rack mounting kit
Weight 18 kg (40 lb)



1.Can you ship order to Canada or Australia ?
Yes,we can .We send orders worldwide .
2. What delivery method do you use ? and delivery time ?
We can ship by EMS,DHL,FedEx,UPS,TNT with tracking number. Usual delivery time is 4-7 workdays.
3. What is your payment term?
100% T/T payment before shipment.
4. How can I ask any other question ?
You can contact us online or leave us messages below .

Tested Fluke 96270A 27 GHz Low Phase Noise Reference Source multi product calibrator 0Tested Fluke 96270A 27 GHz Low Phase Noise Reference Source multi product calibrator 1Tested Fluke 96270A 27 GHz Low Phase Noise Reference Source multi product calibrator 2Tested Fluke 96270A 27 GHz Low Phase Noise Reference Source multi product calibrator 3


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