TIA-609A000-2000 Sectional Specification for Conventional Permanent Optical Fiber Splices《光纤接合的常规 永久性可组合规范》.pdf
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1、 TIASTANDARDSectional Specification forConventional, Permanent, OpticalFiber SplicesTIA-609A000JULY 2000TELECOMMUNICATIONS INDUSTRY ASSOCIATIONRepresenting the telecommunications industry inassociation with the Electronic Industries Alliance TIA-609A000NOTICETIA/EIA Engineering Standards and Publica
2、tions are designed to serve the public interest through eliminatingmisunderstandings between manufacturers and purchasers, facilitating interchangeability and improvement ofproducts, and assisting the purchaser in selecting and obtaining with minimum delay the proper product for hisparticular need.
3、Existence of such Standards and Publications shall not in any respect preclude any member ornonmember of TIA/EIA from manufacturing or selling products not conforming to such Standards and Publications,nor shall the existence of such Standards and Publications preclude their voluntary use by those o
4、ther than TIA/EIAmembers, whether the standard is to be used either domestically or internationally.Standards and Publications are adopted by TIA/EIA in accordance with the American National Standards Institute(ANSI) patent policy. By such action, TIA/EIA does not assume any liability to any patent
5、owner, nor does itassume any obligation whatever to parties adopting the Standard or Publication. TIA STANDARDSTIA Standards contain information deemed to be of technical value to the industry, and are published at the requestof the originating Committee without necessarily following the rigorous pu
6、blic review and resolution of commentswhich is a procedural part of the development of an ANS Standard.TIA Standards should be reviewed every five years by the formulating Committee and a decision made on whether toproceed to develop an ANS Standard on this subject. Suggestions for revision should b
7、e directed to: Standards 25 C 5 C (77 F 8F) with 45% relative humidity and uncontrolled pressure.VII. Standard atmospheric conditions in accordance with EIA-455; 25 C 5 C (77 F 8F) with 45% relative humidity and 484 mmHg (0.637 atm.) pressure.VIII. 25 C 3 C (77 F 5 F) with 95% relative humidity and
8、uncontrolled pressure.IX. 30 C 3 C (86 F 5 F) with 75% relative humidity and uncontrolled pressure.X. 40 C 3 C (104 F 5 F) with 45% relative humidity and uncontrolled pressure.XI. 50 C 3 C (122 F 5 F) with uncontrolled humidity and uncontrolled pressure.Stabilize all splicing materials at the specif
9、ied ambient temperature and relative humidity for onehour minimum prior to module assembly.TIA/EIA-609A00054.5 Fiber RetentionTest completed splice modules for fiber retention in accordance with FOTP-6, Cable RetentionTest Procedure for Fiber Optic Cable Interconnecting Devices. Specify the minimum
10、tensileload to be applied, length of time for which the load must be maintained, the maximum allowablechange in attenuation, and the required module yield in the Detail Specification.A splice module is said to have failed this test if there is evidence of physical or mechanicaldamage as a result of
11、the test. Calculate the change in attenuation due to the test by measuringthe initial loss per FOTP-34, tensile testing the splice, measuring the final loss again per FOTP-34, and calculating the difference in the loss values. Alternatively, the change in loss can bedetermined by measuring the initi
12、al and final insertion loss per FOTP-8 and calculating thedifference. A change in optical transmittance that exceeds the specified maximum acceptablechange is also a failure, unless the Detail Specification defines maximum attenuation increaseas an alternative criterion. Calculate the module yield o
13、f acceptable modules. Report all resultsin the test report. Also include the determination as to whether the specifications were met inthis test in the report. Preferred attribute values are:Minimum Load 1.0 lbs for 1-2splices per module2.0 lbs for 3-6splices per module3.0 lbs for 7-12splices per mo
14、duleRetention Time 10 seconds 30 seconds 60 secondsMaximum Loss Change 0.02 dB 0.05 dB 0.10 dB4.6 VibrationVibrate completed splice modules in accordance with FOTP-11 Vibration Test Procedure forFiber Optic Connecting Devices, test condition 1 for 1.5 hours in each plane. Specify themaximum allowabl
15、e change in transmission power in the Detail Specification. A splice module is said to have failed this test if there is evidence of physical or mechanicaldamage as a result of the test. Calculate the change in optical transmittance due to the test bymeasuring the initial loss per FOTP-34 or FOTP-8,
16、 vibration testing the splice, measuring thefinal loss per FOTP-34 or FOTP-8, and calculating the difference in the loss values. A change inoptical transmittance that exceeds the specified maximum acceptable change is also a failure,unless the Detail Specification defines maximum attenuation increas
17、e as an alternative criterion.Calculate the module yield. Report all results in the test report. Also include the determinationas to whether the specifications were met in this test in the report. Preferred attribute valuesare:Maximum Loss Change 0.02 dB 0.05 dB 0.10 dB 0.20 dB4.7 Temperature CycleT
18、emperature cycle completed splice modules in accordance with FOTP-3 Procedure toMeasure Temperature Cycling Effects on Optical Fibers, Optical Cable, and Other PassiveFiber Optic Components. Specify the maximum and minimum temperatures, soak times, andTIA/EIA-609A0006number of cycles in the Detail S
19、pecification. Temperature cycling transition should be at a rate of1 oC/minute unless otherwise specified in the Detail Specification.Change in transmission power may occur as a repeatable temperature cycling pattern in whichthe power changes as the temperature changes or as a reduction of the trans
20、mission power. Specify the maximum acceptable temperature cycling pattern, and maximum acceptablereduction in transmission power in the Detail Specification. The change in transmission powerdue to thermal cycling may be determined by measuring the initial insertion loss per FOTP-34 orFOTP-8, thermal
21、 cycling the test sample, measuring the final insertion loss per FOTP-34 orFOTP-8, and calculating the difference. The loss cycling pattern may be determined bymeasuring the initial insertion loss per FOTP-34 or FOTP-8, measuring the loss at the extremetemperatures during various thermal cycles thro
22、ughout the test, and determining the range intransmission power. The reflectance cycling pattern may be determined by measuring the initialreflectance (or return loss) per FOTP-8 or FOTP-107, measuring the reflectance (or return loss)at the extreme temperatures during various thermal cycles througho
23、ut the test, and determiningthe range in reflectance (or return loss) values.During thermal cycling, measure the loss and reflectance no less than 20 minutes after reachingthe extreme temperature. Measure the loss and reflectance cycling patterns at least every 20cycles if cycling 100 or more cycles
24、, at least every 10 cycles if cycling 31 - 99 cycles, at every 5cycles if cycling 15 - 30 cycles, every cycle if cycling 0 - 14 cycles.A splice module is said to have failed this test if there is evidence of physical or mechanicaldamage as a result of the test. A change in optical transmittance or a
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