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Anritsu Site Master S820D Broadband Cable & Antenna Analyzer SiteMaster S820

$ 6333.36

Availability: 13 in stock
  • Restocking Fee: No
  • Item must be returned within: 30 Days
  • Refund will be given as: Money back or replacement (buyer's choice)
  • Condition: Seller refurbished
  • All returns accepted: Returns Accepted
  • Return shipping will be paid by: Buyer
  • Brand: Anritsu
  • MPN: S820D

    Description

    ebay template
    The Following Items Are Included:
    Anritsu SiteMaster S820D Broadband Cable & Antenna Analyzer (BC# 42839)
    Installed Options:
    22: Two-Port Transmission
    Eagle CKT-050A Open/Short/Load Calibration Kit
    Armored Test Port Cable
    Anritsu 34RKNF60 Adapter
    AC Adapter/Charger
    Power Cord
    RS232 PC Interface Cable
    User Manual On CD-ROM
    Carrying Case
    BE SURE TO CHECK OUR EBAY STORE FOR OTHER ITEMS!
    This Item Has A Current Calibration!
    Anritsu Site Master S820D Broadband Cable & Antenna Analyzer
    Installed Options:
    - 22: Two-Port Transmission
    25 MHz to 20 GHz Frequency Range
    Includes Eagle CKT-050A Open/Short/Load Calibration Kit, Carrying Case & Accessories As Listed Above!
    Working Condition: Excellent
    Condition: Refurbished
    Calibrated: Yes
    Warranty: 1 YEAR WARRANTY
    Anritsu Site Master S820D Cable And Antenna Analyzer
    The Leading Handheld Broadband Microwave Transmission Line and Antenna Analyzer
    Anritsu’s handheld, battery-operated Broadband Site Master is the most accurate and convenient tool available for field installation, verification, troubleshooting and repair of microwave cables and communication systems. With calibrated vector error correction and a convenient user interface, difficult test specifications become easy to verify, quality is improved, and maintenance expenses are reduced.
    The Broadband Site Master targets microwave site installers, point-to-point operators, point-to-multipoint operators, radio manufacturers, private/public networks that support microwave links, and defense programs responsible for the installation and maintenance of microwave cables. The Broadband Site Master tests both waveguide and coaxial cables more conveniently than laboratory-sized scalar analyzers or microwave vector network analyzers.
    Enhanced Performance and Functionality
    The Broadband Site Master offers the following improvements over the preceding model:
    Increased frequency range to cover 2 MHz to 20 GHz with a single connection
    New CW source module for true two-port cable loss measurements of long cables operating up to 20 GHz
    New smoothing feature improves accuracy of cable loss measurements
    Added capability to support user-defined calibration kits: two coaxial and two waveguide kits
    Increased speed of power monitor measurements by four times
    Simplified calibration routine with more messages and added support for the new T-Calibration components (OSLK50, OSLN50)
    Enhanced calibration support for TNC cables
    Cost Savings and Quality Improvement
    Market competition requires operators to reduce per site maintenance expenses. Site Master’s Frequency Domain Reflectometry (FDR) technique breaks away from the traditional fix-after-failure maintenance process by finding small, hard to identify problems before major failures occur.
    Sixty to eighty percent of a typical cell site’s problems are caused by problematic cables, connectors and antennas. Cables installed in aircraft and on-board ships are difficult to troubleshoot and can cause extensive down time. When cables are damaged, mis-positioned, or contaminated with moisture, Site Master identifies the problem quickly. Antenna degradation reduces the cell coverage pattern. Site Master can pinpoint the antenna problem from ground level in a few seconds so climbing the antenna tower becomes unnecessary.
    FDR Technique
    Frequency Domain Reflectometry (FDR) and Time Domain Reflectometry (TDR) have similar acronyms, and both techniques are used to test transmission lines, but that’s where the similarities end. The TDR technique is not sensitive to RF problems. The TDR stimulus is a DC pulse, not RF. Thus, TDR is unable to detect system degradations that often lead to system failures. The FDR technique saves costly, time-consuming trouble shooting efforts by testing cable feedline and antenna systems at their proper operating frequency. Deficient connectors, lightning arrestors, cables, jumpers, or antennas are replaced before call quality is compromised.
    Insightful and Convenient Measurements
    Site Master performs various RF measurements aimed at simplifying transmission line and antenna system analysis: Return Loss, SWR, Cable Loss, and Distance-to-Fault (DTF). A single soft key selection on the main menu activates the desired measurement mode.
    Return Loss, SWR
    Return Loss and SWR measurements ensure conformance to system performance specifications. The measurement can easily be toggled between either one of the two modes, and can be performed without climbing the tower.
    Cable Loss Measurements Using 1-Port Approach
    Cable Loss measurements determine the level of insertion loss within the cable feedline system. Insertion loss can be verified prior to deployment, when you have access to both ends of the cable, or on installed cables without access to the opposite end. Smoothing feature can improve accuracy.
    Distance-to-Fault
    Although a Return Loss test can tell users the magnitude of signal reflections, it cannot tell the precise location of a fault within the cable system. A Distance-to-Fault measurement provides the clearest indication of trouble areas as it gives both the magnitude of signal reflection and the location of the signal anomaly.
    Vector Error Correction
    Vector error correction within the S8x0D Series improves the quality and convenience of measurements compared to traditional scalar techniques. Accuracy and repeatability are enhanced as errors such as test port match and source match are removed.
    Waveguide Dispersion and Calibration
    Vector error correction using FDR improves the quality of Distance-to-Fault data. Not only is the reflection magnitude more accurate, but the waveguide dispersion correction for fault location (different frequencies propagate at different speeds) is more accurate and repeatable. Unlike scalar-based systems, the Broadband Site Master S8x0D Series does not suffer reflection magnitude errors and length inaccuracies in proportion to the relative lengths of the coaxial input cable and waveguide under test.
    Coaxial Connections
    Site Master supports frequently used coaxial connectors such as K, N, and TNC.
    Transmission Line and Antenna Analyzer Anywhere, Anytime
    Functionality and Benefits
    :
    Functionality
    Benefits
    Cable and Antenna Analyzer
    Quickly finds small, hard to identify faults before major failures occur.
    Low Frequency Extension (S8x0D/2)
    Broader frequency coverage for aerospace and defense electronics
    Power Monitor (S8x0D/5)
    Performs accurate power measurements with more resolution in higher insertion loss situations.
    2-Port Cable Loss (S8x0D/22xF)
    Use CW Source for true 2-Port cable loss measurements of lossy cables.
    GPS Receiver (S8x0D/31)
    Built-in receiver for location information.
    Specifications:
    Frequency Range
    25 MHz to 20000 MHz
    Frequency Accuracy (Fixed CW On)
    ≤ 3 ppm at +25 ºC
    Frequency Resolution
    10 kHz (100 kHz for Distance-to-Fault)
    Output Power (from RF Out Port)
    <0 dBm (at any particular frequency)
    Immunity to Interfering Signals
    on-channel: +13 dBm
    on-frequency: –10 dBm
    Measurement speed
    Return Loss, SWR, DTF: ≤ 2 sec/sweep for 517 data points (CW ON)
    ≤ 4 sec/sweep for 517 data points (CW OFF)
    Number of data points
    130, 259, 517
    Return Loss
    Range: 0.00 to 60.00 dB
    Resolution: 0.01 dB
    VSWR
    Range: 1.00 to 65.53
    Resolution: 0.01
    Coax/Waveguide (1-port) Insertion Loss
    Range: 0.00 to 30.00 dB
    Resolution: 0.01 dB
    Measurement Accuracy
    ≥ 42 dB corrected directivity after calibration for <5 GHz
    ≥ 36 dB corrected directivity after calibration for <15 GHz
    ≥ 32 dB corrected directivity after calibration for >15 GHz
    Distance-to-Fault
    Vertical Range: Return Loss: 0.00 to 60 dB |  VSWR: 1.00 to 65.53
    Horizontal Range: 0 to (# of data points –1) x Horizontal Resolution to a maximum of 1197m (3929 ft), # of data points = 130, 259, 517
    Test Port Connector
    Precision K(f) or N(f) (Option 11NF)
    General
    Language Support
    Chinese, English, French, German, Japanese, and Spanish
    Internal Trace Memory
    Up to 200 traces
    Setup Configurations
    21
    Custom Cable Configuration Memory
    up to 200 configurations
    Display
    TFT color display with adjustable backlight
    Ports
    RF Out: Standard Type k(f) test port, 50 Ω +23 dBm (Peak), ±50 VDC, Maximum input without damage
    Serial Interface: 9 pin D-sub RS-232 three wire serial
    CE
    Electromagnetic Compatibility: Meets European Community requirement EN61326-1:1998
    Safety: Meets European Community requirement EN61010-1:2001
    Environmental (MIL-PRF- 28800F Class 2)
    Temperature/ Humidity: Operating: –10 ºC to 55 ºC, humidity 85% or less Non-operating: –51 ºC to +71 ºC (recommend storing battery separately between 0 ºC to +40 ºC for any prolonged non-operating storage period)
    Mechanical: Vibration: Sine (5 to 55 Hz); Random (10 to 500 Hz)
    Shock: 30G, 11 msec, half sine
    Power Supply
    External: DC input: +12 to +15 Volt DC, 5A
    Internal: NiMH battery: 10.8 volts, 1800 mAh
    Dimensions:
    Size (W x H x D): 254 mm x 178 mm x 61 mm (10.0 in x 7.0 in x 2.4 in)
    Weight: <2.28 kg (<5 lbs) including battery
    For full Anritsu S820D product specifications, please click here:
    Anritsu S820D
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