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Hp\agilent 8509C lightwave polarization analyzer


For Sale: Hp\agilent 8509C lightwave polarization analyzer


Subject Hp\agilent 8509C lightwave polarization analyzer
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The Agilent 8509C lightwave polarization analyzer offers high-speed, calibrated polarization measurements of both optical signals and components. These capabilities are provided by innovations in hardware, software, and applications of Jones matrix and Stokes vector mathematics.
The 8509C analyzer facilitates a greater understanding of the polarization properties of lightwave signals and materials in helping to develop higher performance lightwave components and systems, as well as more effective test and manufacturing processes. These developments involve many types of polarization-sensitive devices which are used in communications, sensors, optical computing and material analysis; devices such as single-mode fibers, polarization maintaining fibers, isolators, optical switches, lasers, beamsplitters, modulators, interferometers, retardation plates and, of course, polarizers and polarization adjusters.
Polarization characteristics affect all lightwave transmissions. The polarization of a lightwave signal is defined by its E-field components. As a signal propagates, interaction with optical components and other lightwave signals (in interfero-metric applications) modifies the magnitude and phase of the signal’s E-field components. Polarization-dependent loss, gain or even signal distortion may occur depending on the application.
Polarization mode dispersion (PMD) is a key hurdle limiting the transmission of signals at 10 Gbit/s and above. The Agilent 8509C lightwave polarization analyzer in conjunction with the Agilent 8164 series tunable laser source or the Agilent 8168 laser can be used to measure PMD of fiber and components down to 1 fs resolution.
This unit has the following features:
* Measurement Capabilities: Polarization Mode Dispersion (PMD), Polarization Dependent Loss (PDL), Polarization Maintaining Fiber (PMF) launch alignment (polarization cross talk), Degree of Polarization (DOP), Stokes Parameters and Average power measurements
* Wide wavelength range: 1280-1640 nm S, C and L band coverage
* Polarization Mode Dispersion accuracy: +/- 0.05ps (50fs)
* Polarization Mode Dispersion measurement range: 0.01 ps (10 fs) to 400 ps. Measure very low PMD using the highly accurate Jones Matrix Eigenanalysis (JME) method. PMD measurements can also be made using the Fixed Analyzer (or wavelength scanning) method
* Wide dynamic range: +10 dBm to –55 dBm
* High-speed measurements: Polarization measurement rate of > 3500 points per second
* PMD Statistics: PMD statistics window allows viewing of PMD statistics. A Maxwell curve is automatically fitted to the data and the parameters that define the shape of the fitted Maxwell curve is displayed
* Low PDL measurements: 0.05 dB. PDL measurement using JME and power max-min methods
* 1 pm relative wavelength accuracy (with Agilent 86120C wavelength meter) - It allows very precise characterization of optical components and fiber for chromatic dispersion
* 0.1 pm wavelength resolution - The best resolution on the market. This allows for optical fiber and component manufacturers to measure their devices with very small step sizes
* Easy PMD measurements of optical fiber and components - large measurement dynamic range. Ability to measure very small dispersion values
This system has the following measurement capabilities and data summaries:
* Polarization Mode Dispersion
* Polarization-Dependent Loss
* Polarization-Maintaining-Fiber Launch Conditions
This system has the following specifications:
* Polarization Mode Dispersion (PMD) Specifications Using JME Technique
* Calibrated wavelength operating range:
* Maximum Measurable PMD Delay:
* Depends on setup conditions and level of PMD
* Wavelength Step: 1310 nm; 1550 nm
* 0.01 nm: 280 ps; 400 ps
* 10.0 nm: 0.28 ps; 0.4 ps
* Measurement floor is approximately <10 fs (0.01 ps) depending on setup conditions.
* Wavelength operating range: 1280 nm to 1640 nm
* PMD measurement range: < 0.01 ps (10 fs) to 400 ps (depends on setup conditions)
* PMD measurement accuracy:
* Wavelength Step: Accuracy (+/-)
* 0.01 nm: 0.07 ps (70 fs)
* 1.0 nm: 0.02 ps (20 fs)
* 10.0 nm: 0.005 ps (5 fs)
* Input power operating range: +10 dBm to –55 dBm
* Input average power damage level: +16 dBm
* Average power measurement linearity: +/- 0.06 dB
* Average power measurement uncertainty: +/- 15%
* Degree of polarization measurement:
* 1280 nm to 1340 nm, +/- 2.0%
* 1470 nm to 1580 nm, +/- 2.0%
* 1580 nm to 1630 nm, +/- 3.0%
* 1630 nm to 1640 nm, +/- 5.0%
* Poincare sphere display:
* 1280 nm to 1340 nm, +/- 1.5 degrees
* 1470 nm to 1640 nm, +/- 1.5 degrees
* Polarization state measurement rate: > 3500 per second
* Polarization state display update rate: > 3500 per second
* External Source Input Port Characteristics
* Wavelength operating range: 1280 nm to 1640 nm
* Internal path insertion loss:
* 1280 nm to 1580 nm, 8.5 dB
* 1580 nm to 1640 nm, 10 dB
(EXTERNAL SOURCE INPUT to OPTICAL OUTPUT)
* Input power operating range: +16 dBm to –49 dBm
* Input average power damage level: +22 dBm
* Return loss (based on OPTICAL OUTPUT connection with return loss of 30 dB or greater): 35 dB
* Polarization Dependent Loss Measurement Characteristics Using the Jones-Matrix Analysis Technique
* Wavelength operating range:
* Polarization-Maintaining Fiber Launch Alignment Characteristics Using Poincare Sphere Technique
* Extinction ratio range: 0 dB to 50 dB
* Compatible fiber: 9/125 micrometer
This item is in excellent condition, working perfectly, and comes with a 14 Day Guarantee Against DOA.
Our 14 Day Guarantee Against DOA (Dead On Arrival) does not guarantee compatibility.
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Hp\agilent 8509C lightwave polarization analyzer