![]() Detects the location of an incident that has a reflectance larger than -62dB. Listed by the Canadian Standards Association CSA C22.2 No. If no fiber is attached or if the connector is dirty, the troubleshooter displays 0m or 0ft.Ĭonforms to relevant European Union directivesĬonforms to relevant Australian standards ![]() ± (1m + 0.1% x length) for reflective incidents 4 ± (3m + 0.1% x length) for non-reflective incidents 4 Backlight turns off first.ġ.5dB default warning threshold (user-configurable from 0.5dB to 6.1dB in 0.1dB increments) Random, 5Hz to 500Hz, MIL-PRF-28800F CLASS 2Ģ AA alkaline batteries (no battery charger)Īutomatically turns off after 5 minutes if no keys are pressed. Operating relative humidity (without condensation)ĩ5% (10✬ to 35✬) 75% (35✬ to 40✬) uncontrolled ‹ 10✬ +7dB maximum input power.Ġ.70dB default threshold (user-configurable from 0.5dB to 6.1dB in 0.2dB increments)ġ7.5cm H, 7.8cm W, 3.8cm D. Looks for a signal every 3 seconds after the first detection. 35dB default threshold (User selectable: -20dB to -45dB in 5dB incrementsĭetects optical signals from 600 nm to 1050nm and shows ACTIVE LINE if a signal is there. These models have the simplicity of a VFL, and provide distance and power information on high losses, breaks, and the end of the fiber. Optical Time Domain Reflectometers (OTDR) provide graphical data and analysis along the entire length of a cable, way beyond the reach of a VFL, but they can be expensive and require more time and skill to operate.įiber QuickMap fills the gap between a VFL and an OTDR. They are not very helpful for cable runs more than a few meters, or when the cable is not visible or accessible, or when the laser light can’t penetrate the jacket. VFLs work well for exposed lengths of fiber near a patch panel by illuminating bad connections and breaks. ![]() PA-ST Screw on ST adapter (not for older meters with rectangular style connector)įluke Networks also offers the following 100 meter multimode launch fibers with other connector types.Locate Faults beyond the range of a Visual Fault Locator (VFL) PA-FC Screw on FC adapter (not for older meters with rectangular style connector) PA-LC Screw on LC adapter (not for older meters with rectangular style connector) PA-SC Screw on SC adapter (not for older meters with rectangular style connector) It is possible to modify the output port on the device to another connector type by ordering one of the following adapters: The Fiber QuickMap ships with an SC output port. MMC-62-SCFC Multimode launch cable 62.5 µm SC/FC MMC-62-SCST Multimode launch cable 62.5 µm SC/ST MMC-62-SCLC-M Multimode launch cable 62.5 µm SC/LC MMC-62-SCSC Multimode launch cable 62.5 µm SC/SC MMC-50-SCE2K Multimode launch cable 50 µm SC/E2K ![]() MMC-50-SCFC Multimode launch cable 50 µm SC/FC ![]() MMC-50-SCST Multimode launch cable 50 µm SC/ST MMC-50-SCLC-M Multimode launch cable 50 µm SC/LC MMC-50-SCSC Multimode launch cable 50 µm SC/SC And no fiber patch cords should be used to transition different connector types.įluke Networks offers the following (100 meter) OTDR launch fibers with for use with the SC connector type: In other words, if the link is 62.5 micron multimode, do not use a 50 micron multimode launch fiber. Make sure that the OTDR launch fiber used is of the same core diameter and connector type as the fiber link under test. Using a shorter fiber launch cable may hide the first event within the Fiber QuickMap’s dead zone.Īttenuation and event deadzones explained In order to get the best results with the Fiber QuickMap, especially visibility into the first event, we recommend the use of a high quality, low loss, and low reflectance fiber launch cable of at least 100 meters with the appropriate connector for the first connection into the link under test. ![]()
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