fiber_run
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| fiber_run [2024/04/23 16:51] – holtz | fiber_run [2026/05/26 15:45] (current) – 24.4.246.2 | ||
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| - | Fiber run measurements, | + | ====== Fiber ====== |
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| + | ===== Fiber cladding and termination ===== | ||
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| + | We inherited fiber from the Australia SONG project. This was about 500 meters of octagonal (50/70/95) fiber. We signed a contract with FiberTech Optica (FTO) in Canada to construct 2 separate 83m cables (for redundancy), | ||
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| + | However, FTO has had issues with that fiber: | ||
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| + | - for a short (2m) segment, they measured 25% lower throughput than the same length of circular fiber | ||
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| + | - for an 83m segment, they measured 80% throughput at 632nm (not so far from the 86% that we were anticipating) | ||
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| + | - most troubling, they say the fiber came off the spool very twisted and stressed, so that it coils itself back up, and is very difficult to work with. Injecting a slow beam, they estimate 40% loss in an output f/6 beam, and thus, likely worse for an input f/6 beam (which they will test). | ||
| + | the same spool for the Australia SONG node a few years ago, they looked up the notes for that, and found that the technician who handled that fiber described it as "devil fiber", | ||
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| + | Because of this, we decided not to proceed with the octagonal fiber for the full run. However, Fiber Tech Optica has developed a method of fusing fiber together with apparently good success. Based on their test results, we decided to proceed by fusing a short section of the octagonal fiber to a long section of circular fiber, in order to maintain scrambling. Unfortunately, | ||
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| + | The cable has three fibers that are terminated in a ferrule at the spectrograph end, and are separated into three individual fibers with FC connectors at the telescope end. Two full fibers were constructed by FTO. FTO provided a {{:: | ||
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| + | ===== Fiber conduit ===== | ||
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| + | ==== Fiber run measurements, | ||
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| - From top of pier to bottom of pier: 4' 6" | - From top of pier to bottom of pier: 4' 6" | ||
| - | - from bottom of pier to J3 junction box (concrete): 22' 3", including some estimate of service loop for azimuth motion | + | - from bottom of pier to J3 junction box (concrete): 22' 3", including some estimate of service loop for azimuth motion |
| - from J3 junction box to J4 junction box : 98' | - from J3 junction box to J4 junction box : 98' | ||
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| - from big box to small junction box where conduit enters APOGEE raceway: | - from big box to small junction box where conduit enters APOGEE raceway: | ||
| - | - from small junction box up to wall in MARVELS room: 21' (but may need additional if service loops are needed for tight turns, e.g. from building | + | - from small junction box up to wall in MARVELS room: 21' (but may need additional if service loops are needed for tight turns, e.g. from building |
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| MARVELS room wall length ~6 meters, so need additional depending on where spectrograph is located | MARVELS room wall length ~6 meters, so need additional depending on where spectrograph is located | ||
| - | {{::spec:optical_design.png? | + | ==== Images of fiber run ==== |
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| + | == Small junction box into APOGEE raceway == | ||
| + | {{::fiber:fiber1.jpg? | ||
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| + | == Turn inside APOGEE room == | ||
| + | {{:: | ||
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| + | == New conduit around SDSS == | ||
| + | {{:: | ||
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| + | {{:: | ||
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| + | == Raw fiber from Polymicro == | ||
| + | {{:: | ||
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| + | {{:: | ||
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| + | {{:: | ||
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fiber_run.1713891108.txt.gz · Last modified: by holtz
