ANSI TIA-568.2-C-1-2016 Balanced Twisted-Pair Telecommunications Cabling and Components Standard Addendum 1 Specifications for 100 Category 8 Cabling.pdf

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1、 TIA-568-C.2-1 (Addendum to TIA-568-C.2) July 2016Balanced Twisted-Pair Telecommunications Cabling and Components Standard, Addendum 1: Specifications for 100 Category 8 Cabling ANSI/TIA-568-C.2-1-2016 APPROVED: JUNE 30, 2016 NOTICE TIA Engineering Standards and Publications are designed to serve th

2、e public interest through eliminating misunderstandings between manufacturers and purchasers, facilitating interchangeability and improvement of products, and assisting the purchaser in selecting and obtaining with minimum delay the proper product for their particular need. The existence of such Sta

3、ndards and Publications shall not in any respect preclude any member or non-member of TIA from manufacturing or selling products not conforming to such Standards and Publications. Neither shall the existence of such Standards and Publications preclude their voluntary use by Non-TIA members, either d

4、omestically or internationally. Standards and Publications are adopted by TIA in accordance with the American National Standards Institute (ANSI) patent policy. By such action, TIA does not assume any liability to any patent owner, nor does it assume any obligation whatever to parties adopting the S

5、tandard or Publication. This Standard does not purport to address all safety problems associated with its use or all applicable regulatory requirements. It is the responsibility of the user of this Standard to establish appropriate safety and health practices and to determine the applicability of re

6、gulatory limitations before its use. Any use of trademarks in this document are for information purposes and do not constitute an endorsement by TIA or this committee of the products or services of the company. (From Project No. ANSI/TIA-PN-568-C.2-1-D4, formulated under the cognizance of the TIA TR

7、-42 Telecommunications Cabling Systems, TR-42.7 Subcommittee on Telecommunications Copper Cabling Systems (568). Published by TELECOMMUNICATIONS INDUSTRY ASSOCIATION Technology and Standards Department 1320 N. Courthouse Road, Suite 200 Arlington, VA 22201 U.S.A. PRICE: Please refer to current Catal

8、og of TIA TELECOMMUNICATIONS INDUSTRY ASSOCIATION STANDARDS AND ENGINEERING PUBLICATIONS or call IHS, USA and Canada (1-877-413-5187) International (303-397-2896) or search online at http:/www.tiaonline.org/standards/catalog/ All rights reserved Printed in U.S.A. NOTICE OF COPYRIGHT This document is

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19、ARE DISCLAIMED, INCLUDING WITHOUT LIMITATION, ANY AND ALL WARRANTIES CONCERNING THE ACCURACY OF THE CONTENTS, ITS FITNESS OR APPROPRIATENESS FOR A PARTICULAR PURPOSE OR USE, ITS MERCHANTABILITY AND ITS NONINFRINGEMENT OF ANY THIRD PARTYS INTELLECTUAL PROPERTY RIGHTS. TIA EXPRESSLY DISCLAIMS ANY AND

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21、DERED TO COMPLY WITH THE CONTENTS. TIA SHALL NOT BE LIABLE FOR ANY AND ALL DAMAGES, DIRECT OR INDIRECT, ARISING FROM OR RELATING TO ANY USE OF THE CONTENTS CONTAINED HEREIN, INCLUDING WITHOUT LIMITATION ANY AND ALL INDIRECT, SPECIAL, INCIDENTAL OR CONSEQUENTIAL DAMAGES (INCLUDING DAMAGES FOR LOSS OF

22、 BUSINESS, LOSS OF PROFITS, LITIGATION, OR THE LIKE), WHETHER BASED UPON BREACH OF CONTRACT, BREACH OF WARRANTY, TORT (INCLUDING NEGLIGENCE), PRODUCT LIABILITY OR OTHERWISE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGES. THE FOREGOING NEGATION OF DAMAGES IS A FUNDAMENTAL ELEMENT OF THE USE OF T

23、HE CONTENTS HEREOF, AND THESE CONTENTS WOULD NOT BE PUBLISHED BY TIA WITHOUT SUCH LIMITATIONS. ANSI/TIA-568-C.2-1 1 Specifications for 100 Category 8 Cabling TABLE OF CONTENTS 1 SCOPE . 15 2 NORMATIVE AND INFORMATIVE REFERENCES 15 3 DEFINITIONS, ABBREVIATIONS AND ACRONYMS, UNITS OF MEASURE 15 3.1 Ge

24、neral . 15 3.2 Definitions . 15 3.3 Acronyms and abbreviations 15 3.4 Units of measure . 15 3.5 Variables . 16 4 GENERAL 17 4.1 Backward compatibility and interoperability 17 4.2 Recognized categories . 17 5 MECHANICAL REQUIREMENTS 17 5.1 Channel mechanical performance 17 5.2 Permanent link mechanic

25、al performance . 18 5.3 Horizontal cable mechanical performance . 18 5.3.1 Horizontal cable insulated conductor diameter . 18 5.3.2 Horizontal cable pair assembly . 18 5.3.3 Horizontal cable insulated conductor color code 18 5.3.4 Horizontal cable diameter . 18 5.3.5 Horizontal cable breaking streng

26、th . 18 5.3.6 Horizontal cable cold bend radius . 18 5.3.7 Horizontal cable performance marking . 18 5.3.8 Horizontal cable core wrap . 19 5.3.9 Horizontal cable core shield 19 5.3.10 Horizontal cable dielectric strength . 19 5.4 Bundled and hybrid cable mechanical performance. 19 5.5 Cord cable mec

27、hanical performance 19 5.5.1 Cord cable general 19 5.5.2 Cord cable flex life 19 5.6 Backbone cable mechanical performance 19 5.7 Connecting hardware mechanical performance . 19 5.7.1 Connecting hardware environmental compatibility . 19 5.7.2 Connecting hardware mounting 19 5.7.3 Connecting hardware

28、 mechanical termination density . 19 5.7.4 Connecting hardware design 19 5.7.5 Connecting hardware equipment outlet/connector . 19 5.7.6 Connecting hardware performance marking 20 5.7.7 Connecting hardware reliability . 20 5.7.8 Connecting hardware shield mating interface 21 5.7.9 Connecting hardwar

29、e shield continuity . 21 5.8 Equipment cord mechanical performance 21 5.8.1 Equipment cord insulated conductor 21 5.8.2 Equipment cord insulated conductor color codes . 21 6 TRANSMISSION REQUIREMENTS 22 6.1 General . 22 ANSI/TIA-568-C.2-1 2 6.2 Channel transmission performance 22 6.2.1 Channel DC lo

30、op resistance . 24 6.2.2 Channel DC resistance unbalance within a pair . 24 6.2.3 Channel DC resistance unbalance between pairs 24 6.2.4 Channel mutual capacitance 25 6.2.5 Channel capacitance unbalance: pair-to-ground 25 6.2.6 Channel characteristic impedance and structural return loss (SRL) 25 6.2

31、.7 Channel return loss . 25 6.2.8 Channel insertion loss 26 6.2.9 Channel NEXT loss. 27 6.2.10 Channel PSNEXT loss 28 6.2.11 Channel FEXT loss . 29 6.2.12 Channel ACRF 29 6.2.13 Channel PSFEXT loss 30 6.2.14 Channel PSACRF . 30 6.2.15 Channel TCL . 31 6.2.16 Channel TCTL . 32 6.2.17 Channel ELTCTL 3

32、2 6.2.18 Channel coupling attenuation . 33 6.2.19 Channel propagation delay . 34 6.2.20 Channel propagation delay skew 35 6.2.21 Channel ANEXT loss 35 6.2.22 Channel PSANEXT loss . 35 6.2.23 Channel average PSANEXT loss . 36 6.2.24 Channel AFEXT loss 36 6.2.25 Channel PSAFEXT loss 36 6.2.26 Channel

33、PSAACRF. 36 6.2.27 Channel Average PSAACRF 37 6.3 Permanent link transmission performance . 38 6.3.1 Permanent link DC loop resistance 38 6.3.2 Permanent link DC resistance unbalance within a pair 38 6.3.3 Permanent link DC resistance unbalance between pairs . 39 6.3.4 Permanent link mutual capacita

34、nce 39 6.3.5 Permanent link capacitance unbalance: pair-to-ground . 39 6.3.6 Permanent link characteristic impedance and structural return loss (SRL) 39 6.3.7 Permanent link return loss 39 6.3.8 Permanent link insertion loss 40 6.3.9 Permanent link NEXT loss 42 6.3.10 Permanent link PSNEXT loss . 43

35、 6.3.11 Permanent link FEXT loss 43 6.3.12 Permanent link ACRF . 44 6.3.13 Permanent link PSFEXT loss . 45 6.3.14 Permanent link PSACRF 45 6.3.15 Permanent link TCL 46 6.3.16 Permanent link TCTL 46 6.3.17 Permanent link ELTCTL . 47 6.3.18 Permanent link coupling attenuation. 47 6.3.19 Permanent link

36、 propagation delay 48 6.3.20 Permanent link propagation delay skew . 49 6.3.21 Permanent link ANEXT loss . 49 6.3.22 Permanent link PSANEXT loss . 50 6.3.23 Permanent link average PSANEXT Loss . 50 6.3.24 Permanent link AFEXT loss 50 6.3.25 Permanent link PSAFEXT loss . 50 6.3.26 Permanent link PSAA

37、CRF 51 ANSI/TIA-568-C.2-1 3 6.3.27 Permanent link average PSAACRF loss 51 6.4 Direct attach channel transmission performance . 52 6.4.1 Direct attach channel return loss 52 6.4.2 Direct attach channel insertion loss 53 6.4.3 Direct attach channel NEXT loss 54 6.4.4 Direct attach channel PSNEXT loss

38、. 56 6.4.5 Direct attach channel ACRF . 58 6.4.6 Direct attach channel PSACRF 60 6.4.7 Direct attach channel propagation delay 61 6.4.8 Direct attach channel propagation delay skew . 61 6.5 Horizontal cable transmission performance . 62 6.5.1 Horizontal cable DC resistance 62 6.5.2 Horizontal cable

39、DC resistance unbalance . 62 6.5.3 Horizontal cable DC resistance unbalance pair-to-pair 62 6.5.4 Horizontal cable mutual capacitance 62 6.5.5 Horizontal cable capacitance unbalance: pair-to-ground . 62 6.5.6 Horizontal cable characteristic impedance and structural return loss (SRL) 62 6.5.7 Horizon

40、tal cable return loss 63 6.5.8 Horizontal cable insertion loss 63 6.5.9 Horizontal cable NEXT loss 64 6.5.10 Horizontal cable PSNEXT loss . 65 6.5.11 Horizontal cable FEXT loss 66 6.5.12 Horizontal cable ACRF . 66 6.5.13 Horizontal cable PSFEXT loss 67 6.5.14 Horizontal cable PSACRF 67 6.5.15 Horizo

41、ntal cable TCL 68 6.5.16 Horizontal cable TCTL 69 6.5.17 Horizontal cable ELTCTL 69 6.5.18 Horizontal cable coupling attenuation . 70 6.5.19 Horizontal cable propagation delay 71 6.5.20 Horizontal cable propagation delay skew . 72 6.5.21 Horizontal cable surface transfer impedance . 72 6.5.22 Horizo

42、ntal cable ANEXT loss 72 6.5.23 Horizontal cable PSANEXT loss . 73 6.5.24 Horizontal cable average PSANEXT loss . 73 6.5.25 Horizontal cable AFEXT loss 73 6.5.26 Horizontal cable PSAFEXT loss . 73 6.5.27 Horizontal cable PSAACRF 74 6.5.28 Horizontal cable average PSAACRF 74 6.6 Bundled and hybrid ca

43、ble transmission performance. 75 6.7 Cord cable . 75 6.7.1 Cord cable DC resistance . 75 6.7.2 Cord cable return loss . 75 6.7.3 Cord cable insertion loss 76 6.8 Backbone cable transmission performance 77 6.9 Connecting hardware transmission performance . 77 6.9.1 Connecting hardware DC resistance 7

44、7 6.9.2 Connecting hardware DC resistance unbalance 77 6.9.3 Connecting hardware mutual capacitance . 78 6.9.4 Connecting hardware capacitance unbalance: pair-to-ground . 78 6.9.5 Connecting hardware characteristic impedance and structural return loss (SRL) . 78 6.9.6 Connecting hardware return loss

45、 78 6.9.7 Connecting hardware insertion loss 79 6.9.8 Connecting hardware NEXT loss 80 6.9.9 Connecting hardware PSNEXT loss . 81 ANSI/TIA-568-C.2-1 4 6.9.10 Connecting hardware FEXT loss 82 6.9.11 Connecting hardware ACRF . 83 6.9.12 Connecting hardware PSFEXT loss . 83 6.9.13 Connecting hardware P

46、SACRF 84 6.9.14 Connecting hardware TCL 84 6.9.15 Connecting hardware TCTL 85 6.9.16 Connecting hardware ELTCTL . 86 6.9.17 Connecting hardware coupling attenuation 86 6.9.18 Connecting hardware propagation delay 86 6.9.19 Connecting hardware propagation delay skew . 86 6.9.20 Connecting hardware sh

47、ield transfer impedance . 86 6.9.21 Connecting hardware ANEXT loss . 86 6.9.22 Connecting hardware PSANEXT loss 87 6.9.23 Connecting hardware Average PSANEXT loss 87 6.9.24 Connecting hardware AFEXT loss 87 6.9.25 Connecting hardware PSAFEXT loss . 87 6.9.26 Connecting hardware PSAACRF 88 6.9.27 Con

48、necting hardware Average PSAACRF . 88 6.10 Equipment cord transmission performance 88 6.10.1 Equipment cord return loss . 88 6.10.2 Equipment cord NEXT loss . 89 Annex A (normative) - Reliability testing of connecting hardware . 92 A.1 General . 92 A.2 Modular plugs and jacks . 92 A.3 Solderless con

49、nections . 93 A.4 Other connecting hardware 93 A.5 (Informative) Examples of referenced test schedules 95 A.5.1 General . 95 A.5.2 Modular plug and jack, IEC 60603-7 series 95 A.5.3 Accessible IDC, IEC 60352-3 . 97 Annex B (normative) - Measurement requirements 99 B.1 General test configuration . 99 B.2 Balun requirements . 99 B.3 Ground plane requirements 100 B.4 Test termination of cable to test system . 100 B.5 Resistor terminations 102 B.5.1 Resistor terminations used with baluns 102 B.6 Balunless measurement requirements . 102 B.7 Resistor terminations used with balunless measu

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