ANRITSU MW82119B REPAIR and ANRITSU MW82119B CALIBRATION

 
Custom-Cal has a high success rate in the repair of the ANRITSU MW82119B. A calibration by Custom-Cal is performed by engineers with extensive OEM experience. We have the expertise and the necessary standards to perform the ANRITSU MW82119B Calibration, onsite calibration may be available. We specialize in quick turnaround times and we can handle expedited deliveries upon request.

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   ANRITSU MW82119B   Description / Specification:   Spec Sheet 
ANRITSU MW82119B PIM Master Passive Intermodulation Analyzer

The Anritsu MW82119B is a battery-operated integrated Passive Intermodulation (PIM) Analyzer plus Cable and Antenna Analyzer (Option 331). It is a suitable solution for commissioning and maintaining global wireless networks.. PIM is a form of interference generated by passive components that are normally thought of as linear such as connectors, cable assemblies, filters, and antennas. However, when subjected to the downlink signals at a cell site, these components can generate spurious signals that raise the receiver noise floor and reduce site performance. PIM Master is a specialized test instrument that allows operators to fully characterize infrastructure quality by measuring Return Loss, VSWR, Cable Loss, Passive Intermodulation, Distance-to-Fault, and Distance-to-PIM with a single test instrument.
Specifications.

Measurements.
PIM vs. Time: IM product magnitude vs. time.
Noise Floor: Noise level vs. time at IM product frequency.
Distance-to-PIM: IM product magnitude vs. distance.
Swept PIM: IM product magnitude vs. frequency.
With Option 331:
VSWR,
Return Loss,
Cable Loss,
Distance-to-Fault (DTF) Return Loss,
Distance-to-Fault (DTF) VSWR,
1-Port Phase,
Smith Chart (50/75 _ selectable).

PIM Measurement Ranges.
Test Method: Reverse (reflected) Passive Intermodulation (PIM) per IEC-62037-1.
Intermodulation Order: 3rd, 5th, and 7th order, when in receive band (user selectable).
RF Test Power: Two CW tones 20 dBm to 46 dBm, 0.1 dBm steps.
Residual PIM Performance: <-117 dBm, <-125 dBm typical ( 2x 43 dBm test tones).
PIM Measurement Range: -70 dBm to -140 dBm.

Options.
MW82119B-0700 LTE 700
MW82119B-0702 APT 700
MW82119B-0800 LTE 800
MW82119B-0850 Cellular 850
MW82119B-0900 E-GSM 900
MW82119B-0180 DCS 1800
MW82119B-0194 PCS/AWS 1900/2100
MW82119B-0210 UMTS 2100
MW82119B-0260 LTE 2600
MW82119B-0019 High Accuracy Power Meter (requires USB power sensor)
MW82119B-0031 GPS Receiver (requires GPS antenna)
MW82119B-0331 Site Masterâ„¢ Cable and Antenna Analyzer



 

Standard Calibration $615.00 *
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*This is a Web introductory price for one calibration of the ANRITSU MW82119B. 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 Communication Terms and Definitions. For a complete list go to our  Terms and Definitions Page.

Decibel (dB)
A unit of measurement of optical power which indicates relative power. A -10 dB means a reduction in power by 10 times, -20 dB means another 10 times or 100 times overall, -30 means another 10 times or 1000 times overall and so on.

PDH
Plesiochronous Digital Hierarchy (PDH) is a transmission system for voice communication using plesiochronous synchronisation. The transmitter adds dummy information bits to allow multiple channels to be bit interleaved. The receiver discards these bits once the signals have been demultiplexed. PDH combines multiple 2 Mb/s (E1) channels in Europe and 1.544 Mb/s (DS1) channels in the US and Japan.

Spectral Width
Spectral Width is the wavelength interval over which the magnitude of all spectral components is equal to or greater than a specified fraction of the magnitude of the component having the maximum value. In optical communications applications, the usual method of specifying spectral width is the full width at half maximum. This is the same convention used in bandwidth, defined as the frequency range where power drops by less than half (at most -3 dB).


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