Keysight (Agilent) E5071C CALIBRATION and Keysight (Agilent) E5071C REPAIR

 
A calibration by Custom-Cal is performed by engineers with extensive OEM experience. We have the expertise and the necessary standards to perform the Keysight (Agilent) E5071C Calibration, onsite calibration may be available. We specialize in quick turnaround times and we can handle expedited deliveries upon request.

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   Keysight (Agilent) E5071C   Description / Specification:    
Keysight (Agilent) E5071C ENA Network Analyzer

The Agilent E5071C ENA Series Network Analyzer offers the highest RF performance and fastest speed in its class, with a wide frequency range and versatile functions. The E5071C is the ideal solution for manufacturing and R&D engineers evaluating RF components and circuits for frequency range up to 20 GHz. The E5071C has flexible configurations and you can select the number or ports, frequency and bias teas to fit your application. And the E5071C provides upgradability across all of the options at any time without changing serial number, for both software and hardware options. The E5071C network analyzer provides flexibility as you plan for future investments hardware options. Frequency Option: 4.5, 6.5, 8.5, 14 and 20 GHz. Port Configuration: 2 or 4 ports, plus flexible multiport configuration of up to 22 ports with E5092A multiport test set. Key Features & Specifications. Various test set selection: 9 kHz to 20 GHz, 2- or 4-port. Low trace noise: 0.004 dB rms @ 70 kHz IFBW. Wide dynamic range: > 123 dB. Fast measurement speed: 8 msec @ full 2-port cal, 401 points. High temperature stability: 0.005 dB/C. Balanced measurements (4-port option). Options. Opt 008, Frequency offset mode. Opt 010, Time domain analysis. Opt 017, Removable hard disk drive. Opt 019, Standard hard disk drive. Opt 1A7, ISO 17025 compliant calibration. Opt 1CM, Rack mount kit. Opt 1CN, Front handle kit. Opt 1CP, Rack mount and front handle kit. Opt 1E5, High stability timebase. Opt 230, 2-port test set, 9 kHz to 3 GHz without bias tees. Opt 235, 2-port test set, 100 kHz to 3 GHz with bias tees. Opt 240, 2-port test set, 9 kHz to 4.5 GHz without bias tees. Opt 245, 2-port test set, 100 kHz to 4.5 GHz with bias tees. Opt 260, 2-port test set, 9 kHz to 6.5 GHz without bias tees. Opt 265, 2-port test set, 100 kHz to 6.5 GHz with bias tees. Opt 280, 2-port test set, 9 kHz to 8.5 GHz without bias tees. Opt 285, 2-port test set, 100 kHz to 8.5 GHz with bias tees. Opt 430, 4-port test set, 9 kHz to 3 GHz without bias tees. Opt 435, 4-port test set, 100 kHz to 3 GHz with bias tees. Opt 440, 4-port test set, 9 kHz to 4.5 GHz without bias tees. Opt 445, 4-port test set, 100 kHz to 4.5 GHz with bias tees. Opt 460, 4-port test set, 9 kHz to 6.5 GHz without bias tees. Opt 465, 4-port test set, 100 kHz to 6.5 GHz with bias tees. Opt 480, 4-port test set, 9 kHz to 8.5 GHz without bias tees. Opt 485, 4-port test set, 100 kHz to 8.5 GHz with bias tees. Opt 2D5, 2-port test set, 300 kHz to 14 GHz with bias tees. Opt 4D5, 4-port test set, 300 kHz to 14 GHz with bias tees. Opt 2K5, 2-port test set, 300 kHz to 20 GHz with bias tees. Opt 4K5, 4-port test set, 300 kHz to 20 GHz with bias tees. Opt UNQ, Standard stability timebase. Opt TDR, Enhanced Time Domain Analysis.



 

Standard Calibration $785.00 *
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*This is a Web introductory price for one calibration of the Keysight (Agilent) E5071C. Price does not in most cases include measurement performance data. Pricing does include NIST traceable calibration and issue of a calibration certificate and calibration label. Pricing may vary slightly due to volume and location of laboratory supporting calibration. Volume pricing may apply. On-site fees may apply depending on logistics, location and volume of work to be completed during the visit.


Related RF Terms and Definitions. For a complete list go to our  Terms and Definitions Page.

dBm
dBm (sometimes dBmW) is an abbreviation for the power ratio in decibels (dB) of the measured power referenced to one milliwatt (mW). Zero dBm equals one milliwatt. A 3 dB increase represents roughly doubling the power, a 3 dB decrease, the power is reduced by about one half.

Noise Figure
Noise Figure the ratio of the signal-to-noise power ratio at the input to the signal-to-noise power ratio at the output.

Standing Wave Ratio (SWR)
Standing wave ratio (SWR) is the ratio of the amplitude of a partial standing wave at an antinode (maximum) to the amplitude at an adjacent node (minimum).


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