ANSI ATIS 0600336-2015 Design Requirements for Universal Cabinets and Framework.pdf
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1、 AMERICAN NATIONAL STANDARD FOR TELECOMMUNICATIONS ATIS-0600336.2015 Design Requirements for Universal Cabinets and Framework As a leading technology and solutions development organization, the Alliance for Telecommunications Industry Solutions (ATIS) brings together the top global ICT companies to
2、advance the industrys most pressing business priorities. ATIS nearly 200 member companies are currently working to address the All-IP transition, network functions virtualization, big data analytics, cloud services, device solutions, emergency services, M2M, cyber security, network evolution, qualit
3、y of service, billing support, operations, and much more. These priorities follow a fast-track development lifecycle from design and innovation through standards, specifications, requirements, business use cases, software toolkits, open source solutions, and interoperability testing. ATIS is accredi
4、ted by the American National Standards Institute (ANSI). The organization is the North American Organizational Partner for the 3rd Generation Partnership Project (3GPP), a founding Partner of the oneM2M global initiative, a member of and major U.S. contributor to the International Telecommunication
5、Union (ITU), as well as a member of the Inter-American Telecommunication Commission (CITEL). For more information, visit www.atis.org. AMERICAN NATIONAL STANDARD Approval of an American National Standard requires review by ANSI that the requirements for due process, consensus, and other criteria for
6、 approval have been met by the standards developer. Consensus is established when, in the judgment of the ANSI Board of Standards Review, substantial agreement has been reached by directly and materially affected interests. Substantial agreement means much more than a simple majority, but not necess
7、arily unanimity. Consensus requires that all views and objections be considered, and that a concerted effort be made towards their resolution. The use of American National Standards is completely voluntary; their existence does not in any respect preclude anyone, whether he has approved the standard
8、s or not, from manufacturing, marketing, purchasing, or using products, processes, or procedures not conforming to the standards. The American National Standards Institute does not develop standards and will in no circumstances give an interpretation of any American National Standard. Moreover, no p
9、erson shall have the right or authority to issue an interpretation of an American National Standard in the name of the American National Standards Institute. Requests for interpretations should be addressed to the secretariat or sponsor whose name appears on the title page of this standard. CAUTION
10、NOTICE: This American National Standard may be revised or withdrawn at any time. The procedures of the American National Standards Institute require that action be taken periodically to reaffirm, revise, or withdraw this standard. Purchasers of American National Standards may receive current informa
11、tion on all standards by calling or writing the American National Standards Institute. Notice of Disclaimer the weight of the UCF, the maximum mounted equipment weight, and 23 kg (50 lbs.) to simulate a cable weight supported by the top of the UCF. It is the responsibility of the integrator (in the
12、case of pre-configured systems) or the service provider (in the case of provisioning unequipped UCF) to confirm equipment weight is within the frameworks maximum rated capacity. 4.2 Static Tests R-4. (Required) Static load tests shall be performed on the UCF assembly by applying a force equal to twi
13、ce the intended maximum rated load (200 kg 441 lbs., 400 kg 882 lbs., 600 kg 1323 lbs., or 800 kg 1764 lbs.). An open UTF shall be tested without equipment, blank panels, and reinforcement plates mounted to upright rails. A closed UTF shall be tested with doors and side panels in place but without e
14、quipment, blank panels, and reinforcement plates mounted to upright rails. R-5. (Required) The UCF shall be secured at the base to a test platform or a floor by using the floor securing detail designed into the UCF base (see Figure 9.5 for location). The actual floor anchors do not need to be used f
15、or securing. However, the same quantities, diameter, and location of the securing fasteners for tests shall be used to secure UCF. R-6. (Required) When the UCF is subjected to a static force equal to two times the rated capacity objective, the allowable deflection shall not exceed 75 mm (2.95 inches
16、) when measured at greatest deflection point. UCF shall recover to within 6 mm (0.24 inches) upon release of load. A horizontal static force shall be applied as close to the top of the UCF as practicable. The static load tests shall be applied twice: once in the front-to-back axis and once in the si
17、de-to-side axis of the UCF. R-7. (Required) For a 2-pole framework, when subjected to a vertical static downward force of 1000 pounds (453.6 kg) loaded at the top of the cross member, bowing at the mid height of the uprights shall not exceed 0.125 inch (3.12 mm) (see Figure 9.1.e). The static load m
18、ay be applied using weights, hydraulic ram, or other measurable load application method to within 5% tolerance. 4.2.1 Test Requirements Each tested frame will be tested in four (4) individual axes, front, back, one side, and vertical. Load will be applied at the frame top crossmember for each test a
19、xes. Test load applied must be at right angles over the crossmember. Frames are loaded by either of two ways: a) Hydraulic Cylinder: A hydraulic cylinder with minimum of 5 inch stroke and pump shall be used to load frame as shown in Figure 9.1.a. Attach one end of the cylinder to a stationary struct
20、ure. The other end of ATIS-0600336.2015 5 the cylinder is attached to the frame. A load cell or tension scale is placed inline at the frame end of the cylinder for measuring load. b) Hanging Weights: Individual cast iron weights with a cable pulley system shall be used to load the frame as shown in
21、Figure 9.1.b. Attach a weight holder to one end of the cable. The other end of the cable is attached to the frame. The cable is passed through a low friction pulley mounted to a stationary structure. The pulley suspends the weights vertically and applies tension to the cable. A load cell or tension
22、scale is placed inline at the frame end of the cable. 4.2.2 Data Requirements The displacement at the top of the frame will be measured and recorded. Displacement transducers can be used to measure the rack movement and plotted. Measurements made with a calibrated rule or gauge within .0625 inch (1.
23、5875 mm) from a stationary point are acceptable if a transducer is not available. The frame shall be measured by the transducer or a rule at the top corner of frame (see Figure 9.2). The frame displacement is the distance the frame corner has moved from the reference start point when a load is appli
24、ed. Test loads will be measured and recorded. The range of measuring instrument required will be 0 to 1200 lbs (0 to 544 kg). A load cell strain gauge may be used to record the loads. A simple tension scale with accuracy of 2.5 lbs. ( 1.13 kg) may be used if load cell is not available. For vertical
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