Nortel Networks 411-2021-111 manual Table VCHINV, CCHINV, Lcrinv, Port #, Rip Connector J206

Page 83

Datafilling a Metro Cell Site 6-5

Table VCHINV, CCHINV, LCRINV

The frequency assignment tables should be datafilled so that the TRU location in the Metro RF Frame with respect to the port card of the ICRM are correctly identified in the datafill tuple. Each physical location in the Metro RF Frame corresponds with a port number of the NT8X47BA Port Card of the ICRM. The datafill of these frequency assignment tables requires that the P-side card and port number be defined. Each NT8X47BA Port Card of the ICRM must be cabled to either J205 or J206 of the Metro RF Frame RIP. Table 6-6 is a matrix of NT8X47BA port connections to the TRU number of the Metro RF frame for each RIP connector.

Note: Even though channels can be datafilled on every Port Card and on

almost every Port (Exception: Card 8 Port 14, Card 8 Port 15, Card 9 Port 13, Card 9 Port 14, and Card 9 Port 15), it is recommended that the Control Channel and its backup (Locate Receiver, Analog or Digital) be datafilled on separate Port Cards (see Frequency Assignment Example).

Table 6-6

NT8X47BA Port Numbers for Metro TRU locations

RIP Connector J205

METRO

NT8X47BA

TRU #

Port #

Rip Connector J206

METRO

NT8X47BA

TRU #

Port #

RF Frame 1

1

0

 

 

3

1

 

 

5

2

 

 

7

3

 

 

9

4

 

 

11

5

 

 

13

6

 

 

15

7

 

 

17

8

 

 

19

9

 

 

21

10

 

 

23

11

2

0

 

 

4

1

 

 

6

2

 

 

8

3

 

 

10

4

 

 

12

5

 

 

14

6

 

 

16

7

 

 

18

8

 

 

20

9

 

 

22

10

 

 

24

11

LocationMetro Framein

RF RIP

Duplexer 1

ATC 3

21

22

DPA

DPA

23

24

17TRU

18TRU

19TRU

20TRU

11

12

 

 

 

 

 

 

 

 

 

 

TRU

TRU

DPA

DPA

TRU

TRU

9

10

 

 

 

 

 

 

 

 

 

 

ATC 2

13

14

DPA

DPA

15

16

TRU9TRU

10TRUTRU

11TRUTRU

12TRUTRU

7

8

 

 

 

 

 

 

 

 

 

 

 

 

DPA

DPA

 

 

 

 

5

6

 

 

 

 

 

 

 

 

ATC 1

5

6

DPA

DPA

7

8

TRU

TRU

TRU

TRU

3

4

 

 

 

 

 

 

 

 

 

 

1

2

DPA

DPA

3

4

TRU

TRU

TRU

TRU

1

2

 

 

 

 

 

 

 

 

 

 

Base

DMS-MTX DualMode Metrocell Cell Site Description

Image 83
Contents DualMode Metrocell Page Page June Publication historyContents Appendices Power and Grounding RequirementsCell Site Components Datafilling a Metro Cell SiteList of tables Block diagram of a 120 Stsr Metrocell using one RF FramePage Intended audience for this publication About this documentApplicability of this publication How this publication is organizedCarrier RF List of termsBand Duplexer CellDBm DBWLoss FilterForward path IsolationReturn loss ModulationOmni DqpskSectorization Signal RFSector Stsr Northern Telecoms DualMode Metrocell IntroductionDigital ready cellular product System architecture of a DualMode MetrocellMetro RF Frame Basic components of a DualMode Metrocell Universal CE FrameChannel assignment Band a 416 channels Band B 416 channels 800 MHz cellular bandChannel assignment for 800 MHz cellular systems Introduction 6Introduction Standard 01.01 June Overview Cell Site ConfigurationsOmni configuration Omni N=7 frequency reuse plan Sectorized configuration120 N=7 sectorized frequency reuse plan 60 N=4 sectorized frequency reuse plan Cell Site Layouts Omni cell site configurationRF Frame Control Channel redundancyCell Site Layouts 4Cell Site Layouts TRU/DPA Transmit cabling6Cell Site Layouts Frames TRUs ATCs Receive cablingComponent requirement No.Stsr cell site configuration CE Frame RF Frame Block diagram of a 120 Stsr Metrocell using one RF FrameBlock diagram of a 120 Stsr Metrocell using three RF Frames 12Cell Site Layouts DPA 9 Port1 CCH ATC3 Port DPA 10 Port1 14Cell Site Layouts TRU/DPA ATC 16Cell Site Layouts Sector Sector Z Sector YSector Y TX/RX, 3 RX Sector W Stsr cell site connectionControl Channel Locate Channel Receiver Sector Sector U22Cell Site Layouts Block diagram of a 60 Stsr Metrocell with two RF Frames 24Cell Site Layouts Block diagram of a 60 Stsr Metrocell with four RF Frames 26Cell Site Layouts Transmit cabling 28Cell Site Layouts TRU/DPA 30Cell Site Layouts Port2 ATC3 Port DPA Port1 RF Frame 32Cell Site Layouts Receive cabling 34Cell Site Layouts Sector Y 36Cell Site Layouts Component requirement 38Cell Site Layouts Standard 01.01 June Major components of a DualMode Metrocell Description Cell Site ComponentsNTAX98AA FRU Customer Service Operations 4Cell Site Components Standard 01.01 June Safety requirements Power and Grounding RequirementsPower and grounding requirements Power and Grounding Requirements 4Power and Grounding Requirements Power distribution for the CE and RF Frames in a Metrocell Frame power distributionGrounding UL/CSA approval System power protectionCEC par DC coupled signals Cable Identification 10Power and Grounding Requirements Standard 01.01 June Datafill Overview Datafilling a Metro Cell SiteTable Acualm Table ClliCavities Fan Pwr Alarm PointsMetro RF Frame ATC Hsmo +27V a Port # Rip Connector J206Table VCHINV, CCHINV, Lcrinv Example of Metro TRU datafill Frequency Assignment ExampleIcrm Example of Metro ICRM/TRU hardwire configuration8Datafilling a Metro Cell Site Standard 01.01 June Radio Frequency Appendix a DualMode Metrocell Cell Site SpecificationsSystem Configuration Audio Interface AlarmsMechanical DC Power RequirementsPower Distribution Requirements Environmental PackagingTelecom Compliance Regulatory Electromagnetic EmissionsRadiated Emissions Product Safety =7 Frequency plan Band a Appendix B Frequency Plans=7 Frequency plan Band B =4 Frequency plan Band B =4 Frequency plan Band a10Frequency Plans Standard 01.01 June Page Cell Site Description