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REF :MN.00024.E - 004 INSTALLATION GUIDELINES ALCPLUS2 Issued by MOHD RIZAL LEMAN Approved by LUCARELLI ALFREDO Date 04/14/11 Page 1 of 157 Siae Microelettronica All rights reserved Rev./Ver. 02 INSTALLATION GUIDELINES ALCPLUS2

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Page 1: InstallationGuidelineALCplus4 July Final

REF :MN.00024.E -

004

INSTALLATION GUIDELINES

ALCPLUS2

Issued by

MOHD RIZAL LEMAN

Approved by

LUCARELLI

ALFREDO

Date

04/14/11

Page

1 of 157

Siae Microelettronica

All rights reserved

Rev./Ver.

02

INSTALLATION GUIDELINES ALCPLUS2

Page 2: InstallationGuidelineALCplus4 July Final

REF :MN.00024.E -

004

INSTALLATION GUIDELINES

ALCPLUS2

Issued by

MOHD RIZAL LEMAN

Approved by

LUCARELLI

ALFREDO

Date

04/14/11

Page

2 of 157

Siae Microelettronica

All rights reserved

Rev./Ver.

02

INDEX

1. INSTALLATION AND PROCEDURES FOR ENSURING THE ELECTROMAGNETIC COMPATIBILITY .................................................................... 5

1.1GENERAL INFORMATION TO BE READ BEFORE THE INSTALLATION ............................. 5

1.2GENERAL ............................................................................................................................... 6

1.3MECHANICAL INSTALLATION ............................................................................................. 6

1.3.1 IDU installation ................................................................................................................ 6

1.4ELECTRICAL WIRING ........................................................................................................... 7

1.4.1 Electrical characteristics ................................................................................................. 7

1.5CONNECTIONS TO THE SUPPLY MAINS ........................................................................... 8

1.6IDU-ODU INTERCONNECTION CABLE .............................................................................. 8

1.6.1 Connectors ........................................................................................................................ 8

1.6.2 Max length ........................................................................................................................ 8

1.7GROUNDING CONNECTION ................................................................................................ 8

1.8SURGE AND LIGHTNING PROTECTION ............................................................................ 9

2. ALCPLUS2 INDOOR UNIT CONNECTORS .............................................................. 11

2.1.1 ALCplus2 1+0/1+1 (GAI0157/GAI0152) ..................................................................... 11

2.1.2 ALCplus2 16E1 1+0/1+1 (GAI0155/GAI0156)........................................................... 11

2.1.3 ALCplus2 NODAL 1+0/1+1 (GAI0163/GAI0162) ........................................................ 12

2.1.4 ALCplus2 32E1 1+0/1+1 (GAI0169/GAI0168) ........................................................... 12

3. INSTALLATION ONTO THE POLE OF THE ODUWITH SEPARATED ANTENNA ..................................................................................................................... 22

3.1INSTALLATION KIT .............................................................................................................. 22

3.1.1 REQUIRED TOOLS FOR MOUNTING (NOT SUPPLIED) ................................................ 23

3.2INSTALLATION PROCEDURE .............................................................................................. 23

3.2.1 1+0 version – Installation onto the pole of the supporting plate ........................... 23

3.2.2 1+0 version – Installation onto the pole of the supporting plate by Band-it ........ 24

3.2.3 1+1 version – Installation onto the pole of the supporting plate ........................... 24

3.2.4 Installation of the ODU ................................................................................................... 24

3.2.5 GROUNDING ..................................................................................................................... 25

4. INSTALLATION ONTO THE WALL OF THE ODUWITH SEPARATED ANTENNA ..................................................................................................................... 38

4.1INSTALLATION KIT .............................................................................................................. 38

4.1.1 REQUIRED TOOLS FOR MOUNTING (NOT SUPPLIED) ................................................ 38

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INSTALLATION GUIDELINES

ALCPLUS2

Issued by

MOHD RIZAL LEMAN

Approved by

LUCARELLI

ALFREDO

Date

04/14/11

Page

3 of 157

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Rev./Ver.

02

4.2INSTALLATION PROCEDURE .............................................................................................. 38

4.2.1 1+0 version – Installation onto the wall of the supporting plate ............................ 39

4.2.2 1+1 version – Installation onto the wall of the supporting plate.............................. 39

4.2.3 Installation of the ODU ................................................................................................... 39

4.2.4 GROUNDING ..................................................................................................................... 40

5. INSTALLATION ONTO THE POLE OF THE ODUWITH INTEGRATED ANTENNA ..................................................................................................................... 50

5.1FOREWORD ........................................................................................................................... 50

5.1.1 INSTALLATION KIT .......................................................................................................... 50

5.1.2 REQUIRED TOOLS FOR MOUNTING (NOT SUPPLIED) ................................................ 50

5.2INSTALLATION PROCEDURE .............................................................................................. 51

5.2.1 Installation onto the pole of the support system and the antenna ......................... 51

5.2.2 Installation of ODU .......................................................................................................... 51

5.2.3 ODU installation ............................................................................................................... 52

5.3ANTENNA AIMING ................................................................................................................ 53

5.4COMPATIBILITY .................................................................................................................... 53

5.5GROUNDING ......................................................................................................................... 53

6. INSTALLATION ONTO THE POLE OF THE ODUWITH INTEGRATED ANTENNA (KIT V32307,V32308, V32309) ........................................................... 69

6.1FOREWORD ........................................................................................................................... 69

6.1.1 INSTALLATION KIT .......................................................................................................... 69

6.1.2 REQUIRED TOOLS FOR MOUNTING (NOT SUPPLIED) ................................................ 69

6.2INSTALLATION PROCEDURE .............................................................................................. 69

6.2.1 1+0 MOUNTING PROCEDURES ...................................................................................... 70

6.2.2 1+1 MOUNTING PROCEDURES ...................................................................................... 71

7. INSTALLATION ONTO THE POLE OF THE ODUWITH RFS INTEGRATED ANTENNA ..................................................................................................................... 82

7.1FOREWORD ........................................................................................................................... 82

7.1.1 INSTALLATION KIT .......................................................................................................... 82

7.1.2 REQUIRED TOOLS FOR MOUNTING (NOT SUPPLIED) ................................................ 82

7.2INSTALLATION PROCEDURE .............................................................................................. 82

7.2.1 1+0 MOUNTING PROCEDURES ...................................................................................... 83

7.2.2 1+1 MOUNTING PROCEDURES ...................................................................................... 84

8. INSTALLATION ONTO THE POLE OF ODU ASNWITH STANDARD LOCK ......... 94

8.1ODU COUPLING KIT ............................................................................................................ 94

8.1.1 ODU AS .............................................................................................................................. 94

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INSTALLATION GUIDELINES

ALCPLUS2

Issued by

MOHD RIZAL LEMAN

Approved by

LUCARELLI

ALFREDO

Date

04/14/11

Page

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Rev./Ver.

02

8.1.2 ODU ASN ........................................................................................................................... 94

8.2INSTALLATION ONTO THE POLE OF THE ODU WITH INTEGRATED ............................ 95

8.2.1 ODU AS and ODU ASN (Fast Lock) ............................................................................... 95

8.2.2 ODU ASN (Standard Lock).............................................................................................. 95

8.3INSTALLATION ONTO THE POLE OF THE ODU WITH SEPARATED .............................. 96

8.3.1 ODU AS and ODU ASN (Fast Lock) ............................................................................... 96

8.3.2 ODU ASN (Standard Lock).............................................................................................. 96

9. GENERAL INSTALLATION ......................................................................................... 106

9.1RG8 Cable Runway ................................................................................................................ 106

9.2Outdoor Grounding ............................................................................................................. 107

9.3Indoor Installation ............................................................................................................... 108

9.4Outdoor Installation............................................................................... ................................... 114

10.0 LABELING..................................................................................... ............................ 117

10.1Labeling Tools ....................................................................................................................... 117

10.2Indoor Labeling ...................................................................................................................... 118

10.3Outdoor labeling .................................................................................................................... 125

11.0INSTALLATION PICTURE ......................................................................................... 127

12.0SITE WORKS .................................................................................................................. ...129

13.0STANDARD PROCEDURE INSTALLATION........................................................................ 141

14.0INSTALLATION OF DCPDB............................................................................................ 144

15.0RG CABLE CHARACTERISTIC......................................................................................... 146

16.0DESIGN LOADING AND STANDARDS............................................................................ 150

17.0BOOM/BRACKET DETAILS AND STANDARDS................................................................. 150

18.0FABRICATION.............................................................................................................. ..... 150

19.0IF PANEL PLATE...................................................................................................... ......... 155

20.0IMPEDANCE AT CELL...................................................................................................... 157

21.0SURGE ARRESTOR.......................................................................................................... 157

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INSTALLATION GUIDELINES

ALCPLUS2

Issued by

MOHD RIZAL LEMAN

Approved by

LUCARELLI

ALFREDO

Date

04/14/11

Page

5 of 157

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All rights reserved

Rev./Ver.

02

1. INSTALLATION AND PROCEDURES FOR ENSURING

THE ELECTROMAGNETIC COMPATIBILITY

1.1GENERAL INFORMATION TO BE READ BEFORE THE INSTALLATION

The equipment is a split mount (indoor-outdoor) radio link system operating in the frequency ranges 4, 6, 7, 8,

13, 15, 18, 23, 25, 28 and 38 GHz, for low, medium and high transport capacity (from 4 up to 622 Mbit/s),

designed to establish LAN-LAN connections and PDH/SDH access. For the details related to the actual used

frequency band refer to the label on the equipment.

The system is provided with an integral antenna; however, in case its antenna is not used, it should be

connected to an antenna conforming to the requirements of ETSI EN 302 217-4-2 for the relevant frequency

band.

The equipment is composed by the following separate units:

• radio unit (outdoor) with or without integral antenna

• Baseband (indoor)

This equipment makes use of non-harmonized frequency bands.

Class 2 radio equipment subject to Authorisation of use. The equipment can operate only at the frequencies

authorised by the relevant National Authority.

• The deployment and use of this equipment shall be made in agreement with the national regulation for the Protection from Exposure to Electromagnetic Field.

• The symbol

indicates that, within the European Union, the product is subject to separate collection at the product end-

of-life. Do not dispose of these products as unsorted municipal waste. For more information, please contact the

relevant supplier for verifying the procedure of correct disposal.

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INSTALLATION GUIDELINES

ALCPLUS2

Issued by

MOHD RIZAL LEMAN

Approved by

LUCARELLI

ALFREDO

Date

04/14/11

Page

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02

1.2GENERAL

The equipment consists of IDU and ODU(s) units and is mechanically made up of a wired 19” subrack (IDU) and

a weather proof metallic container (ODU). The two units are shipped together in an appropriate cardboard box.

After unpacking, mechanical installation takes place followed by electrical connections as described in the

following paragraphs.

1.3MECHANICAL INSTALLATION

IDU

The IDU (all the versions) is made up of a metallic box with two little lateral brackets (90° bent), provided with

two holes for M6 screws (2 screws for each side), to fasten the unit to a 19” rack or to a 19” mechanical

structure.

1.3.1IDU installation

In order to avoid damage to the cables connected on the front panel of the IDU, the two lateral brackets (90°

bent) can be positioned on the IDU lateral panel in three different position, by means of 3 phillips screws.

ALPlus2 - To avoid overtemperature problems the free space below and above an IDU must be 22 mm

(1/2RU) minimum.

ALCPlus2 - IDUs can be stacked.

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INSTALLATION GUIDELINES

ALCPLUS2

Issued by

MOHD RIZAL LEMAN

Approved by

LUCARELLI

ALFREDO

Date

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1.4ELECTRICAL WIRING

The electrical wiring must be done using appropriate cables thus assuring the equipment responds to the

electromagnetic compatibility standards.

The cable terminates to flying connectors which have to be connected to the corresponding connectors on the

equipment front.

Position and pin–out of the equipment connectors are available in this section. Tab.10 shows the characteristics

of the cables to be used and the flying connector types.

.

a. For power cable length longer than 20 m. a section of 4 mm is required.

b. Max length 2.5 m Tab.10 - Characteristics of the cables

1.4.1Electrical characteristics

-Cable type coaxial

-Cable impedance 50 ohm - Insertion loss 24 dB at 330 MHz -Return loss (connectors included) batter than 22 dB (from 100 MHz to 400 MHz) - Max total DC resistance 4 Ohm -Shielding effectiveness 90 dB

Interconnecting points Type of connector

terminating the cable Type of cable/conductor

Battery Polarized SUB–D 3W3 female

connector Section of each wire ≥ 2.5 sq.mm a

Tributary signals SCSI 50 pin male connector 8 conductor cable different for 75 Ohm and 120 Ohm signals

User input/alarm output Female type D connector with 9

pins and shielded holder

9 conductor cable with double brass sheath type

interconductor DB28.25 or equivalent

LCT USB B Standard “printer” cable b

NBUS RJ45 SIAE code F03580 and F03581

STM1 Plug-in Relevant to plug-in module

Optical LAN port Plug-in Relevant to plug-in module

Electrical LAN port RJ45 Standard CAT5e cable

RS232 Female type D connector with 9

pins and shielded holder

9 conductor cable with double brass sheath type interconductor DB 28.10 or equivalent

GND Faston male type Section area ≥ 6 sq. mm.

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INSTALLATION GUIDELINES

ALCPLUS2

Issued by

MOHD RIZAL LEMAN

Approved by

LUCARELLI

ALFREDO

Date

04/14/11

Page

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1.5CONNECTIONS TO THE SUPPLY MAINS

During the final installation, the IDU must be protected by a magneto-thermal switch (not supplied with the

equipment), whose characteristics must comply with the laws in force in one's country. The disconnection from

the supply mains is made disconnecting the connector SUB-D 3W3 from the IDU.

1.6IDU-ODU INTERCONNECTION CABLE

1.6.1Connectors

N-type male connectors on both sides.

1.6.2Max length

With the 1/4” cable, the max length is 300m for all modulation profile

1.7GROUNDING CONNECTION

Fig.36 and annexed legend show how to perform the grounding connections.

Legend

1 IDU grounding point, faston type. The cross section area of the cable used must be ≥ 4 sq. mm.

The faston is available on the IDU both sides. 2 ODU grounding bolt. The cross section area of the cable used must be ≥ 16 sq. mm 3 IDU–ODU interconnection cable type Celflex CUH 1/4” terminated with N–type male connectors

at both sides. 4 Grounding kit type Cabel Metal or similar to connect the shield of interconnection cable. 5 Matching cable (tail) terminated with SMA male and N female connectors. 6 Battery grounding point of IDU to be connected to earth by means of a cable with a section area

2.5 sq. mm. Length ≤ 10 m. 7 Grounding cords connected to a real earth internal of station. The cross section area of the cable

must be ≥ 16 sq. mm

Fig.36 - Grounding connection

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INSTALLATION GUIDELINES

ALCPLUS2

Issued by

MOHD RIZAL LEMAN

Approved by

LUCARELLI

ALFREDO

Date

04/14/11

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1.8SURGE AND LIGHTNING PROTECTION

Gas dischargers are present both in IDU and ODU.

Characteristics

-DC spark-over voltage 150V ±20% -Nominal impulse discharge current (wave 8/20 ms) 20kA -Single impulse

discharge current /wave 8/20 ms) 25kA -Performances in accordance to EN 301 489.

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ALFREDO

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INSTALLATION GUIDELINES

ALCPLUS2

Issued by

MOHD RIZAL LEMAN

Approved by

LUCARELLI

ALFREDO

Date

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Page

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02

2. ALCPLUS2 INDOOR UNIT CONNECTORS

IDU FRONT PANEL

The front panel of the ALCplus2 IDU is made up by various connectors depending on IDU version: in the

following type of connectors and relevant pin-out are listed. On the body of each IDU there is the ground

connection: 6.3mm male (Faston).

2.1.1ALCplus2 1+0/1+1 (GAI0157/GAI0152)

In Fig.8 and Fig.9 are shown the 1+0 and 1+1 version. The following connectors are available:

• MNGT1, 2 management Port MNGT 1, 2 set MDI or MDIX status automatically

• LAN port 1, 2, 3, 4 electrical 10/100/1000BaseT Electrical port 1, 2, 3, 4 can be configured MDI or MDIX via WEBLCT

• LAN port 3, 4 100/1000BaseX

• Trib A, B

• LCT, management

• USER IN/OUT

• Connector for 50 Ohm interconnection to ODU 1 connector 1+0, 2 connectors in 1+1 (Fig.2)

• -48 Vdc power supply 1 connector in 1+0, 2 connectors in 1+1

In 1+1 the two power supply connectors are in parallel (Fig.1)

2.1.2ALCplus2 16E1 1+0/1+1 (GAI0155/GAI0156)

In Fig.10 and Fig.11 are shown the 1+0 and 1+1 version. The following connectors are presents:

• MNGT1, 2 management Port MNGT 1, 2 set MDI or MDIX status automatically

• LAN port 1, 2, 3, 4 electrical 10/100/1000BaseT Electrical port 1, 2, 3, 4 can be configured DI or MDIX via WEBLCT

• LAN port 3, 4 100/1000BaseX

• Trib A, B

• LCT, management

• USER IN/OUT

• Trib 1/8, 9/16 E1, 75 Ohm and 120 Ohm interfaces are present in the same connectors (different pins)

• Connector for 50 Ohm interconnection to ODU 1 connector 1+0, 2 connectors in 1+1 (Fig.2) • -48 Vdc power supply 1 connector in 1+0, 2 connectors in 1+1(Fig.1)

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ALFREDO

Date

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2.1.3ALCplus2 NODAL 1+0/1+1 (GAI0163/GAI0162)

• STM-1 1, 2 in/out SFP can be I.1, S1.1, L1.1, L1.2, electrical coaxial 1.0/2.3 SFP

• LAN port 3, 4 100/1000BaseX SFP-LC

• Trib A, B RJ45 (Tab.19)

• N-BUS 1, 2 connection among IDUs only through SIAE cable F03471

• LCT, management USB type B (receptable)

• USER IN/OUT SUB-D male 9 pin (Tab.20)

• Trib 1/8, 9/16 E1, 75 Ohm and 120 Ohm interfaces are present in the same connectors (different pins) 50 pin SCSI female (Tab.12 for 75 Ohm and Tab.13 for 120 Ohm)

• Connector for 50 Ohm interconnection to ODU 1 connector 1+0, 2 connectors in 1+1 SMA (Fig.2)

• -48 Vdc power supply 1 connector in 1+0, 2 connectors in 1+1 1

SUB-D 3W3 (pinout on the panel) (Fig.1)

2.1.4 ALCplus2 32E1 1+0/1+1 (GAI0169/GAI0168)

In Fig.12 and Fig.13 are shown the 1+0 and 1+1 version. The following connectors are present:

• MNGT1, 2 management Port MNGT 1, 2 set MDI or MDIX status automatically RJ45 (Tab.16)

• LAN port 1, 2, 3, 4 electrical 10/100/1000BaseT Electrical port 1, 2, 3, 4 can be configured MDI or MDIX via WEBLCT RJ45 (Tab.11)

• STM-1 1, 2 in/out SFP can be I.1, S1.1, L1.1, L1.2, electrical coaxial 1.0/2.3 SFP

• LAN port 3, 4 100/1000BaseX SFP-LC

• Trib A, B RJ45 (Tab.19)

• N-BUS 1, 2 connection among IDUs only through SIAE cable F03471

• LCT, management USB type B (receptable)

• USER IN/OUT SUB-D male 9 pin (Tab.20) • • Trib 1/8, 25/32 E1, 75 Ohm and 120 Ohm interfaces are present in the same connectors (different pins) 50 pin SCSI female (Tab.12 for • 75 Ohm and Tab.13 for 120 Ohm) • Connector for 50 Ohm interconnection to ODU 1 connector 1+0, 2 connectors in 1+1 SMA

• -48 Vdc power supply 1 connector in 1+0, 2 connectors in 1+1 1

SUB-D 3W3 (pinout on the panel)

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ALFREDO

Date

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INSTALLATION GUIDELINES

ALCPLUS2

Issued by

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ALFREDO

Date

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LAN2 LAN4

LAN1 LAN3

Tab.11 -10/100/1000BaseT, RJ45

Pin RJ45 Function

10/100BaseT 1000BaseT

1 Twisted pair IN_P BI_DB+

2 Twisted pair IN_N BI_DB

3 Twisted pair OUT_P BI_DA+

4 nc BI_DD+

5 nc BI_DD

6 Twisted pair OUT_N BI_DA

7 nc BI_DC+

8 nc BI_DC

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Pin 75 Ohm

48 Ground A

23 Tributary 1/9 input

50 Ground A

25 Tributary 1/9 output

47 Ground A

22 Tributary 2/10 input

45 Ground A

20 Tributary 2/10 output

42 Ground A

17 Tributary 3/11 input

43 Ground A

18 Tributary 3/11 output

40 Ground A

15 Tributary 4/12 input

39 Ground A

14 Tributary 4/12 output

36 Ground B

11 Tributary 5/13 input

37 Ground B

12 Tributary 5/13 output

34 Ground B

9 Tributary 6/14 input

33 Ground B

8 Tributary 6/14 output

29 Ground B

4 Tributary 7/15 input

31 Ground B

6 Tributary 7/15 output

28 Ground B

3 Tributary 8/16 input

26 Ground B

1 Tributary 8/16 output

Note: Join pin 44 with ground A pins, join pin 32 with ground B pins.

Tab.12 - 8xE1, 50 pin SCSI female 75 Ohm

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Date

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Pin 120 Ohm

49 Tributary 1/9 input

23 Tributary 1/9 input

44 Ground A

24 Tributary 1/9 output

25 Tributary 1/9 output

44 Ground A

21 Tributary 2/10 input

22 Tributary 2/10 input

44 Ground A

46 Tributary 2/10 output

20 Tributary 2/10 output

44 Ground A

16 Tributary 3/11 input

17 Tributary 3/11 input

44 Ground A

19 Tributary 3/11 output

18 Tributary 3/11 output

44 Ground A

41 Tributary 4/12 input

15 Tributary 4/12 input

44 Ground A

13 Tributary 4/12 output

14 Tributary 4/12 output

44 Ground A

10 Tributary 5/13 input

11 Tributary 5/13 input

32 Ground B

38 Tributary 5/13 output

12 Tributary 5/13 output

32 Ground B

35 Tributary 6/14 input

9 Tributary 6/14 input

32 Ground B

7 Tributary 6/14 output

8 Tributary 6/14 output

32 Ground B

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5 Tributary 7/15 input

4 Tributary 7/15 input

32 Ground B

30 Tributary 7/15 output

6 Tributary 7/15 output

32 Ground B

27 Tributary 8/16 input

3 Tributary 8/16 input

32 Ground B

2 Tributary 8/16output

1 Tributary 8/16 output

32 Ground B

Tab.13 - 8xE1, 50 pin SCSI female 120 Ohm)

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Tab.15 - SUB-D 9 pin male USER IN/OUT)

Pin Description

1 C relay contact- branch 1

2 NA/NC relay contact - branch 1

3 C relay contact - branch 2

4 NA/NC relay contact - branch 2

5 User input 01

6 User input 02

7 User input 03

8 User input 04

9 Ground

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MNGT2

MNGT1

Tab.16 - MNGT/1 and MNGT/2 100BaseT connector pin-out for 10/100BaseT Ethernet connection

(RJ45)

Pin Description

1 Tx+

2 Tx

3 Rx+

4 -

5 -

6 Rx

7 -

8 -

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Trib A

Trib B

Pin Description

1 Tx-C (IN) common

2 TX-F (IN) 120 Ohm

3 GND

4 TX-F (IN) 75 Ohm

5 Rx-C (OUT) common

6 Rx-F (OUT) 120 Ohm

7 GND

8 Rx-F (OUT) 75 Ohm

Tab.18 - 2 Mbit/s wayside connector pin-out (RJ45)

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Fig2. ODU Connectoions (Connector coax type SMA)

Fig1. IDU Power Connectors

RT1 RT2

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3. INSTALLATION ONTO THE POLE OF THE ODUWITH

SEPARATED ANTENNA

3.1INSTALLATION KIT

Following installation kits are supplied with the equipment depending on different versions: • 1+0 version - antisliding strip (see Fig.40)

- supporting plate plus 60–114 mm pole fixing bracket and relevant nuts and bolts (see Fig.41) - adapting tools and relevant bolts and nuts for 219 mm pole (see Fig.42) - Band-it fixing system (see Fig.45) - antenna side flange, variable as function of RF frequency (see Fig.43) - support with ODU fast locking mechanism (see Fig.41) - connection to the antenna with flexible wave guide and possible use of a rigid elbow (optional) (see Fig.43) - kit for ground connection making part of ODU • 1+0 version (6 GHz only) Besides the previous items a specific flange adaptor (kit V32409) must be used (see Fig.51). The flange is UDR70. • 1+1 version - antisliding strip (see Fig.40) - supporting plate plus pole fixing bracket and relevant nuts and bolts (see Fig.41) - adapting tools and relevant bolts and nuts for 219 mm pole (see Fig.42) - hybrid with ODU fast locking mechanism (see Fig.44) - flexible waveguide trunk for connection to antenna (optional) (see Fig.43) - kit for ground connection making part of the two ODUs. • 1+1 version (6 GHz only) Besides the previous items a specific flange adaptor (kit V32415) must be used (see Fig.52). The flange is UDR70.

Warning: in order to avoid damages to flexible waveguides, don‟t fold or twist them more than values specified as limit in installation instructions of the waveguide supplier. In case of flexible wave guide use, Tab.23 shows the maximum bending radius.

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3.1.1REQUIRED TOOLS FOR MOUNTING (NOT SUPPLIED)

• N.2 13mm torque wrench • N.1 15 mm torque wrench • N.1 17 mm torque wrench • N.1 3 mm Allen wrench Warning: if screwing operation concerns more than one screw or bolt, tighten subsequently everyone and its opposite, step by step.

3.2INSTALLATION PROCEDURE

Installation procedure proceeds according to the following steps: • Version 1+0: installation onto the pole of the supporting plate 2

• Version 1+0: installation onto the pole of the support plate by Band-it • Version 1+1: installation onto the pole of the supporting plate 2

• Installation of the ODU (common to both 1+0 and 1+1 version) • ODU grounding

3.2.11+0 version – Installation onto the pole of the supporting plate

Fig.40 – Mount antislide strip around the pole. The position of the plastic blocks depends on the position of the supporting plate (see next step) Fig.41 – Adhere the supporting plate to the antisliding strip plastic blocks and then secure it to the pole through the fixing bracket for 60–114 mm pole (see Fig.41). Bolts and nuts are available on the supporting plate. Tightening torque must be 32 Nm. Warning: As shown in Fig.42 an adapting kit must be used for the 219 mm pole. It consists of an additional plate to enlarge the standard supporting plate dimension and relevant U–bolt for 219 mm pole fixing. Fig.43 – Fix the flexible waveguide to the antenna side flange. Four fixing screws are available the dimensions of which depend on the waveguide type. Tighten progressively and alternatively the four screws with the following torque:

Fig.43 – Fix the antenna side flange to the support with ODU fast locking mechanism. The flange can be mounted horizontally (as shown in Fig.43) or vertically as function of convenience. Fig.44 – Fix the support with ODU fast locking mechanism to the supporting plate making use of available bolts and nuts. Fig.44 shows the possible positions. Tightening torque must be 18 Nm. 2 In case of 219 mm pole, an adapting kit is supplied for the purpose.

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3.2.21+0 version – Installation onto the pole of the supporting plate by Band-it

In case of 1+0 ODU installation, a Band-it pole mounting kit can be used: through slots (see Fig.45) on the supporting plate two metallic bands secure the plate on the pole. Band characteristics are: • thickness 0.76 mm • width 19 mm. It is also possible to use the anti-sliding system (optional).

3.2.31+1 version – Installation onto the pole of the supporting plate

Fig.40 – Mount antislide strip around the pole. The position of the plastic blocks depends on the position of the supporting plate (see next step) Fig.41 – Position the supporting plate to the antisliding strip plastic blocks and then secure it to the pole through the fixing bracket for 60–114 mm pole (see Fig.41). Bolts and nuts are available on the supporting plate kit. Tightening torque must be 32 Nm. Fig.46 – Secure the hybrid with ODU fast locking mechanism to the supporting plate using bolt and nuts available on the support plate. Tightening torque must be 18 Nm. Remove the plastic cover from the hybrid flange sides. Warning: Do not remove the foil from the hybrid flange sides. Fig.46 – Fix the flexible waveguide to the antenna side flange. Four fixing screws are available the dimensions of which depend on the waveguide type. Tighten progressively and alternatively the four screws with the following torque:

Warning: It is advisable to shape the waveguide flexible trunk, connecting ODU flange with antenna flange as shown in Fig.49. This avoids possible condensate to be channelled towards the ODU flange.

3.2.4Installation of the ODU

1 Remove the plastic cover from the ODU flange side. Apply silicon grease e.g. type RHODOSIL PATE 4 to the O–ring of Fig.48. Warning: Do not remove the foil from the flange. 2 Bring the ODU with the two hands and position the ODU handle at the bottom side. 3 Position the ODU body close to the support with ODU fast locking mechanism and align ODU side flange (see Fig.48) to antenna side flange (see Fig.43 – 1+0 version) or hybrid side flange (see Fig.46 – 1+1 version).

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Note: For 1+0 version the ODU can assume positions of Fig.47 depending on the polarisation. 4 With respect to the flange alignment, turn the ODU body approx. 30° anti–clockwise and then insert the ODU body into the support and search for alignment between reference tooth on the support (see Fig.43 – 1+0 version or Fig.46 – 1+1 version) and ODU body reference tooth (see detail Fig.48) 5 When alignment is achieved, turn the ODU body clockwise until “clack” is heard and the ODU rotation stops. 6 Secure ODU body on the support by tightening bolts (1) (see Fig.43 – 1+0 version or Fig.46 – 1+1 version). Tightening torque must be 6 Nm. Final assembly of 1+1 version is shown in Fig.49. A parasol mounting is optionally possible.

3.2.5GROUNDING

The ODU must be connected to ground making reference to details of Fig.50.

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4. INSTALLATION ONTO THE WALL OF THE ODUWITH

SEPARATED ANTENNA

4.1INSTALLATION KIT

Following installation kits are supplied with the equipment depending on different versions: • 1+0 version - wall supporting plate with additional contact surface extension plates (see Fig.53) - antenna side flange, variable as function of RF frequency (see Fig.54) - support with ODU fast locking mechanism (see Fig.54)

- connection to the antenna with flexible wave guide and possible use of a rigid elbow (optional) (see Fig.54) - kit for ground connection making part of ODU • 1+0 version (6 GHz only) Besides the previous items a specific flange adaptor (kit V32409) must be used (see Fig.61). The flange is UDR70. • 1+1 version - supporting plate with additional contact surface extension tools (see Fig.53) - hybrid with ODU fast locking mechanism (see Fig.56) - connection to the antenna with flexible wave guide and possible use of a rigid elbow (optional) (see Fig.54) - kit for ground connection making part of the two ODUs. • 1+1 version (6 GHz only) Besides the previous items a specific flange adaptor (kit V32415) must be used (see Fig.62). The flange is UDR70. In case of flexible wave guide use, Tab.26 shows the maximum bending radius.

4.1.1REQUIRED TOOLS FOR MOUNTING (NOT SUPPLIED)

• N.2 13mm torque wrench • N.1 15 mm torque wrench

• N.1 17 mm torque wrench • N.1 3 mm allen wrench. Warning: if screwing operation concerns more than one screw or bolt, tighten subsequently everyone and its opposite, step by step.

4.2INSTALLATION PROCEDURE

Installation procedure proceeds according to the following steps: • version 1+0: installation onto the wall of the supporting plate • version 1+1: installation onto the wall of the supporting plate • installation of the ODU (common to both 1+0 and 1+1 version) • ODU grounding.

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4.2.11+0 version – Installation onto the wall of the supporting plate

Fig.53 – Fix on the supporting plate the two supplied extension plates to increase the wall contact surface. Fig.53 – Secure the supporting plate on the wall using the more suitable screws. Fig.54 – Fix the flexible waveguide to the antenna side flange. Four fixing screws are available the dimensions of which depend on the waveguide type. Tighten progressively and alternatively the four screws with the following torque:

Fig.54 – Fix the antenna side flange to the support with ODU fast locking mechanism. The flange can be mounted horizontally (as shown in Fig.54) or vertically as function of convenience. Fig.55 – Fix the support with ODU fast locking mechanism to the supporting plate making use of available bolts and nuts. Fig.55 shows three possible positions. Tightening torque must be 18 Nm.

4.2.21+1 version – Installation onto the wall of the supporting plate

Fig.53 – Fix on the supporting plate the two supplied extension plates to increase the wall contact surface. Fig.53 – Secure the supporting plate on the wall using the more suitable screws. Fig.56 – Secure the hybrid with ODU fast locking mechanism to the supporting plate using bolt and nuts available on the support plate. Tightening torque must be 18 Nm. Remove the plastic cover from the hybrid flange sides. Warning: Do not remove the foil from the hybrid flange sides. Fig.56 – Fix the flexible waveguide to the antenna side flange. Four fixing screws are available the dimensions of which depend on the waveguide type. Tighten progressively and alternatively the four screws with the following torque:

Warning: It is advisable to shape the waveguide flexible trunk, connecting ODU flange with antenna flange as shown in Fig.59 This avoids possible condensate to be channelled towards the ODU flange.

4.2.3Installation of the ODU

1 Remove the plastic cover from the ODU flange side. Apply silicon grease e.g. type RHODOSIL PATE 4 to the O–ring of Fig.58. Warning: Do not remove the foil from the flange. 2 Bring the ODU with the two hands and position the ODU handle at the bottom side. 3 Position the ODU body close to the support with ODU fast locking mechanism and align ODU side flange (see Fig.58) to antenna side flange (see Fig.54 – 1+0 version) or hybrid side flange (see Fig.56 – 1+1 version).

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Note: For 1+0 version the ODU can assume positions of Fig.57 depending on the polarisation. 4 With respect to the flange alignment, turn the ODU body approx. 30° anti–clockwise and then insert the ODU body into the support and search for alignment between reference tooth on the support (see Fig.54 – 1+0 version or Fig.56 – 1+1 version) and ODU body reference tooth (see detail Fig.58) 5 When alignment is achieved, turn the ODU body clockwise until “clack” is heard and the ODU rotation stops. 6 Secure ODU body on the support by tightening bolts (1) (see Fig.54 – 1+0 version or Fig.56 – 1+1 version). Tightening torque must be 6 Nm. Final assembly of 1+1 version is shown in Fig.59. A parasol mounting is optionally possible.

4.2.4GROUNDING

The ODU must be connected to ground making reference to details of Fig.60.

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5. INSTALLATION ONTO THE POLE OF THE ODUWITH

INTEGRATED ANTENNA

5.1FOREWORD

The installation onto the pole of the ODU with integrated antenna concerns both 1+0 and 1+1 versions.

5.1.1INSTALLATION KIT

Following installation kits are supplied with the equipment depending on different versions:

1+0 version • 60 to 114 mm pole mounting kit consisting of: - centring ring and relevant screws (see Fig.63) - antislide strip (see Fig.64) - pole support system and pole fixing brackets (see Fig.65) - ODU with O–ring and devices for ground connection

1+1 version • pole mounting kit from 60 to 114 mm for 1+1 consisting of: - centring ring and relevant screws (see Fig.63) - antislide strip (see Fig.64) - pole support system and pole fixing brackets (see Fig.65) • hybrid mechanical body (see Fig.74) • polarization twist disk (see Fig.76) • 2 ODUs with O–rings and devices for ground connection.

5.1.2REQUIRED TOOLS FOR MOUNTING (NOT SUPPLIED)

• N.2 13 mm torque wrench • N.1 15 mm torque wrench • N.1 17 mm torque wrench • N.1 3 mm allen wrench.

Warning: if screwing operation concerns more than one screw or bolt, tighten subsequently everyone and its opposite, step by step.

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5.2INSTALLATION PROCEDURE

Installation procedure proceeds according with the following steps:

1+0 version 1 installation onto the pole of the support system 2 installation of the antenna 3 installation of ODU 4 antenna aiming 5 ODU grounding

1+1 version 1 installation onto the pole of the support system 2 installation of the antenna 3 installation of hybrid circuit 4 installation of the two ODUs 5 antenna aiming

6 ODU grounding.

5.2.1Installation onto the pole of the support system and the antenna

Fig.63 – Set the antenna in such a position as to be able to operate on its rear side. Locate the five threaded holes around antenna flange. Mount centring ring onto antenna flange and tight it with 3 calibrated bolts. Caution: centring ring should be mounted so that the screws do not stick out. Define if the antenna will be mounted with vertical or horizontal polarization. Check that free drain holes stay at bottom side. Mount bolt type M10x30, in position A leaving it loose of 2 cm approx. With horizontal polarization mount bolt type M10x30 in position D, leaving it loose of 2 cm approx. Fig.64 – Mount antislide strip onto the pole. Place blocks as in Fig.64 following antenna aiming direction. Tighten the strip with screwdriver. Fig.65 – Mount pole supporting system with relevant pole fixing brackets following antenna aiming direction as indicated by arrow. Antislide strip should result at the centre of supporting plate. Supporting system should lean against antislide clamp with the tooth as in Fig.66. Position the antenna in such a way that bolt in position A or D of Fig.63 cross through hole E of Fig.67. Secure the support system to the pole by means of the pole fixing brackets and relevant fixing bolts. Fig.68 – Rotate the antenna body until the remainder three antenna holes coincide with the three support holes. Secure the antenna to the support by thightening the relevant passing through bolts.

5.2.2Installation of ODU

1+0 version 1 Apply silicon grease e.g. RHODOSIL PATE 4” to the O–ring (4) of Fig.71 by protecting finger hands with gloves. 2 Bring the ODU with the two hands and position the ODU handle at the bottom side. The ODU handle can assume position of Fig.69 depending on the polarization. 3 Position the ODU body near the support system and align ODU side flange to antenna side flange (see Fig.70). With respect to the flange alignment, turn the ODU body approx. 30° anti–clockwise and then insert the ODU body into the support and search for alignment between reference tooth on the support (see Fig.70) and ODU body reference tooth (see detail of Fig.71). 4 When alignment is achieved, turn the ODU body clockwise until “clack” is heard and the ODU rotation stops.Fig.72 and Fig.73 show ODU housing final position for vertical and horizontal polarization respectively.

5 Secure ODU body on the support system by tightening bolts (1) of Fig.70.

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1+1 version Fig.74 – Apply silicon grease, type “RHODOSIL PATE 4” to O–rings (1). Insert O–rings (1) and (6) into twist polarization disk (2). Vertical polarization Fix the disk on hybrid flange placing marker (4), on disk, close to V mark. Horizontal polarization Fix the disk on hybrid flange placing reference (4), on disk, close to H mark. In 13 GHz and 15 GHz ODUs the polarization disk is fixed to the hybrid flange by means of 3 screws as shown in Fig.75. Caution: Twist disk has two planes. Take care of position marker (4) on twist disk. The position of marker

(4) plane should be in contact to hybrid like in figure. Tighten progressively and alternatively screws (7) with the same number of spring washers (8) with the following torque:

Fig.76 – Fix hybrid to support system with four bolts (1) taking care of RT1/RT2 position shown by labels of Fig.76. Tighten progressively and alternatively four bolts (1).

5.2.3ODU installation

The installation procedure of the two ODUs is the same. 1 Apply silicon grease e.g. RHODOSIL PATE 4” to the O–ring (4) of the Fig.71 by protecting finger hands with gloves. 2 Bring the ODU with the two hands and position the ODU handle at the bottom side. For 1+0 the ODU can assume position of Fig.69 depending on the polarisation. For 1+1 the handle ODU position is always placed at the right side (horizontal polarization). 3 Position the ODU body near the support system and align ODU side flange to antenna side flange

(see Fig.70). With respect to the flange alignment, turn the ODU body approx. 30° anti–clockwise and then insert the ODU body into the support and search for alignment between reference tooth on the support (see Fig.70) and ODU body reference tooth (see detail of Fig.71). 4 When alignment is achieved, turn the ODU body clockwise until “clack” is heard and the ODU rotation stops.Fig.72 and Fig.73 show ODU housing final position for vertical and horizontal polarization respectively for 1+0 version.Fig.77 shows ODU housing final position for 1+1 version. 5 Secure ODU body on the support system by tightening bolts (1) of Fig.70.

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5.3ANTENNA AIMING

Antenna aiming for 1+0 version and 1+1 version is the same. The antenna aiming devices allow to perform the following adjustments with respect to the starting aiming position: - Horizontal ± 15° operating on the nut (3) shown in Fig.78, only after having loosen the nuts (7), (8), (9), (10) of Fig.79. - vertical ± 15° operating on vertical adjustment worm screw (2) shown in Fig.78 only after having loosen nuts (1), (2), (11) of Fig.79 and (4) and (5) of Fig.78. For adjustment from 0° to +30° extract nut (1) Fig.79 and position it in hole (4), extract nut (2) Fig.79 and position it in hole (6). Operate on vertical adjustment worm screw (2) after having loosen nuts (1), (2), (11) of Fig.79 and (4) of Fig.78. For adjustment from 0° to –30° extract nut (1) of Fig.79 and position it in hole (3), extract nut (2) of Fig.79 and position it in hole (5). Operate on vertical adjustment worm screw (2) after having loosen nuts (1), (2), (11) of

Fig.79 and (4) of Fig.78. For vertical adjustment some markers, every 10°, are available on support. The bigger marker gives 0° starting aiming position. Once the optimum aiming position is obtained, tighten firmly the four nuts (1), (2), (11) of Fig.79 and (4) and (5) of Fig.78 for vertical adjustment and the four nuts (7), (8), (9), (10) of Fig.79 for horizontal adjustment. Tighten with 15 mm wrench and 32 Nm torque.

5.4COMPATIBILITY

The pole installation kit of the ODU unit in 1+0 and 1+1 configuration is compatible with integrated antenna

complying with SIAE standard with measures 0.2 m, 0.4 m, 0.6 m, 0.8 m of diameter.

5.5GROUNDING

See Fig.80. On ODU grounding can be connected with the available bolt spring washer and flat washers as shown.

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6. INSTALLATION ONTO THE POLE OF THE ODUWITH

INTEGRATED ANTENNA (KIT V32307,V32308, V32309)

6.1FOREWORD

The description concerns pole mounting of ODU, in 1+0 and 1+1 version, using following installation kits: - V32307 for ODU with frequency from 10 to 13 GHz - V32308 for ODU with frequency from 15 to 38 GHz - V32309 for ODU with frequency from 7 to 8 GHz Differences regard the dimensions and the presence of the centring ring (see Fig.81): - V32307 centring ring for antenna flange from 10 to 13 GHz - V32308 centring ring for antenna flange from 15 to 38 GHz

- V32309 no centring ring (and relevant screws).

6.1.1INSTALLATION KIT

Following installation kits are supplied with the equipment depending on different versions.

1+0 version • 60 to 129 mm pole mounting kit: - centring ring and relevant screws - pole support system plus antenna (already assembled) and pole fixing brackets - 1+0 ODU support and relevant screws - ODU with O–ring and devices for ground connection

1+1 version • 60 to 129 mm pole mounting kit: - centring ring and relevant screws - pole support system plus antenna (already assembled) and pole fixing brackets - 1+0 ODU support - hybrid and relevant screws - polarization twist disk and relevant screws - 2 ODUs with O–rings and devices for ground connection.

6.1.2REQUIRED TOOLS FOR MOUNTING (NOT SUPPLIED)

• N.1 2.5 mm Allen wrench • N.1 3 mm Allen wrench • N.1 6 mm Allen wrench • N.1 13 mm spanner • N.2 17 mm spanner. Warning: if screwing operation concerns more than one screw or bolt, tighten subsequently everyone and its opposite, step by step.

6.2INSTALLATION PROCEDURE

Installation procedure is listed below:

1+0 version 1 antenna polarization 2 installation of the centring ring on the antenna

3 installation of 1+0 ODU support 4 installation onto the pole of the assembled structure 5 installation of ODU 6 antenna aiming 7 ODU grounding

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1+1 version 1 antenna polarization 2 installation of the centring ring on the antenna 3 installation of 1+0 ODU support 4 installation onto the pole of the assembled structure 5 installation of hybrid 6 installation of ODUs 7 antenna aiming 8 ODU grounding.

6.2.11+0 MOUNTING PROCEDURES

6.2.1.1Setting antenna polarization

Fig.81 – Set the antenna in such a position to operate on its rear side. Locate the four M3 Allen screws around the antenna flange. Unscrew them (use 2.5 mm Allen wrench) and position the antenna flange according on: horizontal wave guide –> vertical polarization, vertical wave guide –> horizontal polarization. Screw again the four Allen screws (torque = 1 Nm).

6.2.1.2Installation of the centring ring on the antenna

Fig.81 – Set the antenna in such a position to operate on its rear side. Locate the three holes around the antenna flange. Mount the centring ring onto antenna flange and tight it with the 3 Allen screws M4 (use 3mm Allen wrench, torque 2 = Nm).

6.2.1.3Installation of 1+0 ODU support

Fig.81 – Mount the support onto assembled structure (pole support system plus antenna) using the four M8 Allen screws (use 6 mm Allen wrench, torque 18 = Nm). Two of the four screws, diagonally opposed, must be mounted with the two bushes around.

6.2.1.4Installation onto the pole of the assembled structure

Fig.81 – Mount the assembled structure on the pole using the two pole fixing brackets and the four M10 screws (use 17 mm spanner, torque = 13 Nm); the heads of the screws are inserted on the antenna side, the four nuts and the springs between nut and brackets are inserted on bracket side.

6.2.1.5Installation of ODU (on 1+0 support)

Fig.82 – Apply silicon grease (e.g. RHODOSIL PATE 4”) on the O–ring by protecting fingers with gloves. Fig.83 – Bring the ODU with the two hands and position the ODU handle at the bottom side. The handle can assume the positions shown in the figure depending on the polarization. Position the ODU body near the support and align the wave guide of the ODU to the Wave guide of the antenna: respect to the position of wave guide alignment, turn the ODU body approx. 30° counter–clockwise into the support and search for matching between reference tooth on the support (see Fig.84) and reference tooth on the ODU body. Fig.85 – When alignment of the references teeth is achieved, turn the ODU body clockwise until rotation is stopped. In figure are shown ODU final position for both polarizations. Fig.84 – When ODU positioning is over, secure ODU body on the support by tightening bolts (use 13mm spanner, torque = 6Nm).

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6.2.1.6Antenna aiming

Antenna aiming procedure for 1+0 version or 1+1 version is the same. Horizontal aiming: ±5° operating on the 17 mm nut shown in Fig.86 with a 17 mm spanner, only after having loosen the two 17 mm nut on the pivot. Vertical aiming: ±20° operating on the 13 mm nut shown in Fig.86 with a 13 mm spanner, only after having loosen the three 13 mm nut on the pole support. Once optimum position is obtained, tighten firmly all the nuts previously loosen. Tab.28 shows an example for 0.6m antenna and 75-114 mm pole with relevant screws and torque values.

6.2.1.7ODU grounding

ODU grounding is achieved with: • M8 screw without washers • M6 screw with washer as shown in Fig.87.

6.2.21+1 MOUNTING PROCEDURES

In further page are explained all the mounting step not already discussed in paragraph “16.5 1+0 MOUNTING PROCEDURES”.

6.2.2.1Installation of Hybrid

Fig.88 – The polarization disk must be always fixed on hybrid flange. Apply silicon grease (e.g. RHODOSIL PATE 4”) on the O–rings by protecting fingers with gloves. Bring the polarization twist disk with the position

marker down. Insert the O–ring into polarization twist disk. Vertical polarization: fix the twist disk on hybrid flange placing the marker of the disk towards V mark. Horizontal polarization: fix the twist disk on hybrid flange placing the marker of the disk towards H mark. In 13 GHz and 15 GHz ODUs the polarization disk is fixed to the hybrid flange by means of 3 screws as shown in Fig.89. Tighten progressively and alternatively the screws and the spring washer with following torque:

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Fig.90 – Fix hybrid body to 1+0 support with four M8 bolts (use 13 mm spanner, torque = 18 Nm), tighten progressively and alternatively the bolts.

6.2.2.2Installation of ODUs (on hybrid for 1+1 version)

For both ODUs. Fig.82 – Apply silicon grease e.g. RHODOSIL PATE 4” to the O–ring by protecting fingers with gloves. Fig.83 – Bring the ODU with the two hands and position the ODU handle at the bottom side. The handle can assume the positions shown in the figure depending on the polarization. Position the ODU body near the support and align the wave guide of the ODU to the wave guide of the hybrid: respect to the position of wave guide alignment, turn the ODU body approx. 30° counter–clockwise and then insert the ODU body into the support. For 1+1 system the handle of the ODU is always positioned on the right. The polarization twist disk on the hybrid matches the antenna polarization. Fig.91 – When alignment of the reference teeth is achieved, turn the ODU body clockwise until the rotation

stops. In figure are shown ODUs final position. Fig.84 – When ODU positioning is over, secure ODU body on the support by tightening bolts (use 17 mm spanner, torque = 6 Nm). WARNING: Internal codes (e.g. installation items, antennas, PCB) are here reported only as example. The Manufacturer reserves the right to change them without any previous advice.

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7. INSTALLATION ONTO THE POLE OF THE ODUWITH

RFS INTEGRATED ANTENNA

7.1FOREWORD

The installation onto the pole of the ODU with integrated antenna concerns both 1+0 and 1+1 version.

7.1.1INSTALLATION KIT

Following installation kits are supplied with the equipment depending on different versions.

1+0 version • 60 to 129 mm pole mounting kit: - centring ring and relevant screws

- pole support system plus antenna (already assembled) and pole fixing brackets - 1+0 ODU support and relevant screws - ODU with O–ring and devices for ground connection

1+1 version • 60 to 129 mm pole mounting kit: - centring ring and relevant screws - pole support system plus antenna (already assembled) and pole fixing brackets - 1+0 ODU support - hybrid and relevant screws - polarization twist disk and relevant screws - 2 ODUs with O–rings and devices for ground connection.

7.1.2REQUIRED TOOLS FOR MOUNTING (NOT SUPPLIED)

• N.1 2.5 mm Allen wrench • N.1 3 mm Allen wrench • N.1 6 mm Allen wrench • N.1 13 mm spanner • N.2 17 mm spanner. Warning: if screwing operation concerns more than one screw or bolt, tighten subsequently everyone and its opposite, step by step.

7.2INSTALLATION PROCEDURE

Installation procedure is listed below:

1+0 version 1 antenna polarization 2 installation of the centring ring on the antenna 3 installation of 1+0 ODU support 4 installation onto the pole of the assembled structure 5 installation of ODU 6 antenna aiming 7 ODU grounding

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1+1 version 1 antenna polarization 2 installation of the centring ring on the antenna 3 installation of 1+0 ODU support 4 installation onto the pole of the assembled structure 5 installation of hybrid 6 installation of ODUs 7 antenna aiming 8 ODU grounding.

7.2.11+0 MOUNTING PROCEDURES

7.2.1.1Setting antenna polarization

Fig.81 – Set the antenna in such a position to operate on its rear side. Locate the four M3 Allen screws around the antenna flange. Unscrew them (use 2.5 mm Allen wrench) and position the antenna flange according on: horizontal wave guide –> vertical polarization, vertical wave guide –> horizontal polarization. Screw again the four Allen screws (torque = 1 Nm).

7.2.1.2Installation of the centring ring on the antenna

Fig.81 – Set the antenna in such a position to operate on its rear side. Locate the three holes around the antenna flange. Mount the centring ring onto antenna flange and tight it with the 3 Allen screws M4 (use 3mm Allen wrench, torque 2 = Nm).

7.2.1.3Installation of 1+0 ODU support

Fig.81 – Mount the support onto assembled structure (pole support system plus antenna) using the four M8 Allen screws (use 6 mm Allen wrench, torque 18 = Nm). Two of the four screws, diagonally opposed, must be mounted with the two bushes around.

7.2.1.4Installation onto the pole of the assembled structure

Fig.81 – Mount the assembled structure on the pole using the two pole fixing brackets and the four M10 screws (use 17 mm spanner, torque = 13 Nm); the heads of the screws are inserted on the antenna side, the four nuts and the springs between nut and brackets are inserted on bracket side.

7.2.1.5Installation of ODU (on 1+0 support)

Fig.82 – Apply silicon grease (e.g. RHODOSIL PATE 4”) on the O–ring by protecting fingers with gloves. Fig.83 – Bring the ODU with the two hands and position the ODU handle at the bottom side. The handle can assume the positions shown in the figure depending on the polarization. Position the ODU body near the support and align the wave guide of the ODU to the Wave guide of the antenna: respect to the position of wave guide alignment, turn the ODU body approx. 30° counter–clockwise into the support and search for matching between reference tooth on the support (see Fig.84) and reference tooth on the ODU body. Fig.85 – When alignment of the references teeth is achieved, turn the ODU body clockwise until rotation is stopped. In figure are shown ODU final position for both polarizations. Fig.84 – When ODU positioning is over, secure ODU body on the support by tightening bolts (use 13mm spanner, torque = 6Nm).

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7.2.1.6Antenna aiming

Antenna aiming procedure for 1+0 version or 1+1 version is the same. Horizontal aiming: ±5° operating on the 17 mm nut shown in Fig.86 with a 17 mm spanner, only after having loosen the two 17 mm nut on the pivot. Vertical aiming: ±20° operating on the 13 mm nut shown in Fig.86 with a 13 mm spanner, only after having loosen the three 13 mm nut on the pole support. Once optimum position is obtained, tighten firmly all the nuts previously loosen.

7.2.1.7ODU grounding

ODU grounding is achieved with: • M8 screw without washers • M6 screw with washer as shown in Fig.87.

7.2.21+1 MOUNTING PROCEDURES

In further page are explained all the mounting step not already discussed in paragraph “16.5 1+0 MOUNTING PROCEDURES”.

7.2.2.1Installation of Hybrid

Fig.88 – The polarization disk must be always fixed on hybrid flange. Apply silicon grease (e.g. RHODOSIL PATE 4”) on the O–rings by protecting fingers with gloves. Bring the polarization twist disk with the position marker down. Insert the O–ring into polarization twist disk. Vertical polarization: fix the twist disk on hybrid flange placing the marker of the disk towards V mark. Horizontal polarization: fix the twist disk on hybrid flange placing the marker of the disk towards H mark. In 13 GHz and 15 GHz ODUs the polarization disk is fixed to the hybrid flange by means of 3 screws as shown in Fig.89. Tighten progressively and alternatively the screws and the spring washer with following torque:

Fig.90 – Fix hybrid body to 1+0 support with four M8 bolts (use 13 mm spanner, torque = 18 Nm), tighten progressively and alternatively the bolts.

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7.2.2.2Installation of ODUs (on hybrid for 1+1 version)

For both ODUs. Fig.82 – Apply silicon grease e.g. RHODOSIL PATE 4” to the O–ring by protecting fingers with gloves. Fig.83 – Bring the ODU with the two hands and position the ODU handle at the bottom side. The handle can assume the positions shown in the figure depending on the polarization. Position the ODU body near the support and align the wave guide of the ODU to the wave guide of the hybrid: respect to the position of wave guide alignment, turn the ODU body approx. 30° counter–clockwise and then insert the ODU body into the support. For 1+1 system the handle of the ODU is always positioned on the right. The polarization twist disk on the hybrid matches the antenna polarization. Fig.91 – When alignment of the reference teeth is achieved, turn the ODU body clockwise until the rotation stops. In figure are shown ODUs final position. Fig.84 – When ODU positioning is over, secure ODU body on the support by tightening bolts (use 17 mm spanner, torque = 6 Nm).

WARNING: Internal codes (e.g. installation items, antennas, PCB) are here reported only as example. The Manufacturer reserves the right to change them without any previous advice.

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8. INSTALLATION ONTO THE POLE OF ODU ASNWITH

STANDARD LOCK

8.1 ODU COUPLING KIT

Two versions of ODU can be connected to ALplus2/ALCplus2 IDU: ODU AS and ODU ASN. Both versions need to be completed with a coupling kit to be connected to the mechanical structure for the installation.

8.1.1 ODU AS

ODU AS is factory assembled with a “Fast Lock” coupling kit (see Fig.103); for the installation it needs Oring and grounding bolt only.

8.1.2 ODU ASN

ODU ASN can mount two different coupling kits in order to obtain a Fast Lock ASN or a Standard ASN. After having mounted the proper coupling kit the ODU needs O-ring and grounding bolt.

8.1.2.1Fast lock coupling kit

The Fast Lock coupling kit is the same used in ODU AS and so after kit, O-ring and grounding bolt assembly, the ASN Fast Lock can be installed in the same way of ODU AS.

Coupling kit assembly procedure See Fig.104 - Put the Fast Lock coupling kit on the ODU. Align the four holes of the coupling kit with the four nut screws on the ODU. Insert and tighten the four screws.

8.1.2.2Standard coupling kit

The standard coupling kit is mounted on ASN ODU by means of four screws.

Coupling kit assembly procedure See Fig.105 - Put the standard coupling kit on the ODU. Align the four holes of the coupling kit with the four nut screws on the ODU. Insert and tighten the four screws.

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8.2INSTALLATION ONTO THE POLE OF THE ODU WITH INTEGRATED

ANTENNA

8.2.1ODU AS and ODU ASN (Fast Lock)

The installtion of ODUs with Fast Lock coupling kit is described in previous chapters.

8.2.2ODU ASN (Standard Lock)

Mounting kit 1+0 version • Centering ring and relevant screws • M10 bolts • ODU with O-ring and devices for ground connection

Mounting kit 1+1 version • Centering ring and relevant screws

• M10 bolts for hybrid and ODU mounting • Hybrid mechanical body • Polarization twist disk (see Fig.108) • 2 ODUs with O-rings and devices for ground connection.

8.2.2.11+0 ODU

Install the antenna using the antenna installation guide (specific for each antenna) inside the antenna box provided by antenna producer. Keep attention to the polarization of the antenna feeder depending on requested polarization. After the antenna is installed onto the pole, the ODU must be installed, see Fig.106. • Position the three holes circular flange (1) on the antenna flange and align the three holes on the circular flange with the three relevant holes on the antenna flange • Insert and tighten the three 3mm M4 Allen screws (2) using a 3mm Allen wrench (torque = 2 Nm) • Screw partially the four M10 bolts (3) on the antenna back plate: each bolt should be tightened to have the square head out of the hole of about 13-14mm (the thickness of hook (4), use 15mm spanner) • Apply silicone grease (e.g. RHODOSIL PATE 4”) to the O-ring, protecting fingers with gloves, and insert in the proper track on the ODU flange • Position the ODU (5) vertically near the four bolts on the antenna flange and align the ODU to match

the polarization of the antenna feeder: - vertical polarization: the handle (6) of the ODU is at the bottom left corner - horizontal polarization: the handle (6) of the ODU is at the bottom right corner • After the right position has been found, rotate 30° counter clockwise the ODU and approach the ODU to the antenna flange in order to have the four slots of the Standard Lock cross between the four bolts • Rotate 30° clockwise the ODU to hook each slots on the relevant bolt • When each slot is firmly hooked on the relevant bolt, tighten each bolt (use 15mm spanner, torque=46mm) • Optional: sun cover kit - Insert the sun cover and tie one of its bottom holes to the ODU handle by means of the black plastic strip included in the sun cover kit

• The ODU is ready to be connected to the IDU-ODU cable and to the grounding cable.

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8.2.2.21+1 ODU

Install The antenna using the antenna installation guide (specific for each antenna) inside the antenna box by antenna prodicer. Keep attention to the polarization of the antenna feeder depending on requested polarization. After the antenna is installed onto the pole, follow the procedure below, see Fig.107. Mounting the hybrid (3) on the back of the antenna: • Position the three holes circular flange (1) on the antenna flange and align the holes on the circular flange with the relevant holes on the antenna flange • Insert and tighten the three 3mm M4 Allen screws (2) using a 3mm Allen wrench (torque = 2mm) • Prepare the polarization disk (see Fig.108) with the twi O-rings: silicone grease e.g RHODOSIL PATE 4” must be applied to the O-ring, protecting fingers with gloves; each O-ring must be inserted in the proper track on each surface of the disk

• Mount always (with vertical and with horizontal polarization)the polarization disk on the hybrid flange (antenna side) as shown in Fig.108 and tighten the four screws (only three screws in 13 GHz and 15 GHz hybrid). The polarization disk must br oriented deprnding on requested polarization by antenna feeder (position V or H as shown in Fig.108. Torque values as in Tab.31.

8.3INSTALLATION ONTO THE POLE OF THE ODU WITH SEPARATED

ANTENNA • Diameter of the pole 60-114 mm

8.3.1ODU AS and ODU ASN (Fast Lock)

The installation of ODUs with Fast Lock coupling kit is described in previous chapters.

8.3.2ODU ASN (Standard Lock)

Mounting kit 1+0 version • Supporting plate, fixing bracket with M10 130mm bolts (with washer, spring and nut) • 1 antenna side flange, variable as function of RF frequency, with relevant screws • M10 25mm bolts for ODU mounting • ODU with O-ring and devices for ground connection

Mounting kit 1+1 version • Supporting plate, fixing bracket with M10 130mm bolts (with washer, spring and nut) • M10 25mm bolts for hybrid and ODUs mounting • Hybrid mechanical body • Polarization twist disk (see Fig.108) • 2 ODUs with O-rings and devices for ground connection.

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8.3.2.11 1+0 ODU

See Fig.109. • Position the supporting plate (1) on the pole and fix the rear bracket (2) to it by means of the four 130 mm M10 bolt (3) with relevant washers, springs and nuts (use 15mm spanner, torque = 46Nm). • Fix the antenna side flange (4) with the proper screws ( in Fig.109 the antenna flange is shown in two different positions depending on the polarization), the screw holes side is the side where the waveguide must be installed. • On the supporting plate, on the opposite side respect to the antenna flange just mounted, insert in holes (5) on the supporting plate the four 25mm M10 bolts (3): screw them partially, each bolt should be tightened to have the square head out of the hole of about 13-14 mm (the thickness of hook (4), use 15mm spanner). • Apply silicon grease (e.g. RHODOSIL PATE 4‟‟) to the O-ring, protecting fingers with gloves, and insert it in the proper track on the ODU flange.

• Position the ODU vertically near the four bolts on the supporting plate and align the ODU to match the polarization of the antenna flange: - vertical polarization: the handle of the ODU is at the bottom left corner - horizontal polarization: the handle of the ODU is at the bottom right corner • After the right position has been found, rotate 30° counter clockwise the ODU and approach the ODU to the supporting plate in order to have the four slots of the Standard Lock cross between the four bolts • Rotate 30° clockwise the ODU to hook each slots on the relevant bolt • When each slot is firmly hooked on the relevant bolt, tighten each bolt (use 15 mm spanner, torque =46 Nm).

• Mount the hybrid on the back of the antenna by means of four M10 bolts (4) (torque = 46 Nm) Mounting each ODU on the hybrid: • Screw partially four M10 bolts (4) on the hybrid flange (ODU side): each bolt should be tightened to have the square head out of the hole of about 13-14 mm, use 15 mm spanner • Apply silicon grease (e.g. RHODOSIL PATE 4‟‟) to the O-ring, protecting fingers with gloves, and insert in the proper track on the ODU flange • Position the ODU (5) vertically near the four bolts on the antenna flange and align the ODU to match the polarization of the antenna feeder: horizontal polarization must be used, the handle (6) of the ODU is at the bottom right corner • After the right position has been found, rotate 30° counter clockwise the ODU and approach the ODU to the antenna flange in order to have the four slots (7) of the Standard Lock cross between the four bolts on the hybrid • Rotate 30° clockwise the ODU to hook each slots on the relevant bolt

• When each slot is firmly hooked on the relevant bolt, tighten each bolt (use 15 mm spanner, torque = 46Nm)

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• Optional: sun cover kit - Insert the sun cover and tie one of its bottom holes to the ODU handle by

means of the black plastic strip included in the sun cover kit • Now the ODU is ready to be connected to the IDU-ODU cable and to the grounding cable • Repeat for the other ODU on the other side • Optional: sun cover kit . Insert the sun cover and tie one of its bottom holes to the ODU handle by means of the blak plastic strip included in the sun cover kit • Now the ODU is ready to be connected to the IDU-ODU cable and to the grounding cable.

8.3.2.21+1 ODU

See Fig.110. • Position the supporting plate (1) on the pole and fix the rear bracket (2) to it by means of the four 130 mm M10 bolt (3) with relevant washers, springs and nuts (use 15 mm spanner, torque = 46 Nm)

• Mount the hybrid (4) on the back of the antenna by means of four 25 mm M10 bolts (5) (use 15 mm spanner with torque = 46 Nm) in the holes (6). Mounting each ODU on the hybrid: • Screw partially four 25 mm M10 bolts positioning them in the holes (7) on the hybrid flange (ODU side): each bolt should be tightened to have the square head out of the hole of about 13-14 mm, use 15 mm spanner • Apply silicon grease e.g. RHODOSIL PATE 4” to the O-ring, protecting fingers with gloves, and insert in the proper track on the ODU flange • Position the ODU vertically near the four bolts on the antenna flange and align the ODU to match the polarization of the antenna feeder: horizontal polarization must be used, the handle of the ODU is at the botton right corner • After the right position has been found, rotate 30° counter clockwise the ODU and approach it to the antenna flange in order to have the four slots of the Standard Lock cross between the four bolts on the hybrid • Rotate 30° clockwise the ODU to hook each slots on the relevant bolt • When each slot is firmly hooked on the relevant bolt, tighten each bolt (use 15 mm spanner, torque = 46 Nm) • Optional: sun cover kit - insert the sun cover and tie one of its bottom holes to the ODU handle by

means of the black plastic strip included in the sun cover kit • Now the ODU is ready to be connected to the IDU-ODU cable and to the grounding cable • Repeat for the other ODU on the other side

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8.3.2.3 Waveguide towards the antenna

After having installed the ODU in 1+0 configuration or in 1+1 configuration, the waveguide towards the antenna must be installed. • 1+0: the waveguide must be fixed to the antenna flange on the supporting plate of the ODU. In case of flexible waveguides, an excessive folding can damage the waveguide, see Tab.32 for details. • 1+1: the waveguide must be fixed to the hybrid. In case of flexible waveguides, an excessive folding can damage the waveguide, see Tab.32 for details.

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9. GENERAL INSTALLATION

9.1RG8 Cable Runway

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9.2 Outdoor Grounding

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9.3Indoor Installation

The number of E1 cable will be install based on the existing E1 installed.

Scenario Existing E1 Number of E1 to be install

1 1E1 – 4E1 8 E1

2 5E1 – 8E1 16 E1

3 9E1- 16E1 24 E1 Note : Any additional subject on Digi request

Scenario 1:

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Scenario 2:

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Scenario 3:

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Grounding tapping sample for indoor site-structure monople

Remark: Only 2 point for grounding tapping needed according to this project. For additional point will add as per client requirment. Details as per below tabble,

Grounding Point TappingLocation

Point 1 Nearest grounding bar to the radio/antenna

Point 2 Before the entries cabin/outdoor cabinet

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Grounding tapping sample for indoor site-structure tower

Remark: Only 2 point for grounding tapping needed according to this project. For additional point will add as per client requirment. Details as per below tabble,

Grounding Point TappingLocation

Point 1 Nearest grounding bar to the radio/antenna

Point 2 Before the entries cabin/outdoor cabinet

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Grounding tapping sample for indoor site-structure boom

Remark: Only 2 point for grounding tapping needed according to this project. For additional point will add as per client requirment. Details as per below tabble,

Grounding Point TappingLocation

Point 1 Nearest grounding bar to the radio/antenna

Point 2 Before the entries cabin/outdoor cabinet

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9.4Outdoor Installation

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Grounding tapping sample for outdoor site-structure monople

Remark: Only 2 point for grounding tapping needed according to this project. For additional point will add as per client requirment. Details as per below tabble,

Grounding Point TappingLocation

Point 1 Nearest grounding bar to the radio/antenna

Point 2 Before the entries cabin/outdoor cabinet

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Grounding tapping sample for outdoor site-structure tower

Remark: Only 2 point for grounding tapping needed according to this project. For additional point will add as per client requirment. Details as per below tabble,

Grounding Point TappingLocation

Point 1 Nearest grounding bar to the radio/antenna

Point 2 Before the entries cabin/outdoor cabinet

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Grounding tapping sample for outdoor site-structure boom

Remark: Only 2 point for grounding tapping needed according to this project. For additional point will add as per client requirment. Details as per below tabble,

Grounding Point TappingLocation

Point 1 Nearest grounding bar to the radio/antenna

Point 2 Before the entries cabin/outdoor cabinet

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10. LABELING

10.1Labeling Tools

-BROTHERS, CASIO ( KL-60 EZ)-Label Printer (Battery Operated)

-Cartridge size: 9mm height for all indoor labeling and the length is dependant on the length of the message.

-Background Colour is Yellow

-T cable tie.

-Alphabet Template = 40mm antenna labeling.

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10.2Indoor Labeling.

10.2.1 IDU Labeling.

1st Sticker:

First Row (Link ID – refer SSR)

Second Row (Link Name)

2nd Sticker:

Third Row (Equipment Configurations)

Fourth Row (Receive & Transmit Details)

Size: 2x2

3rd Sticker:

fifth Row (Agent IP Address)

Example:

1st Sticker

LINK ID : 193

TESCO EXTRA OUTDOOR(xxxxx) TO WORLD WIDE(xxxxx)

2nd Sticker

ALC+2/4FE32E1(18G-P)/2,2/7V

RSL:xxx Tx POWER:xxx Tx:7442MHZ Rx:7596MHZ

3rd Sticker

AGENT IP ADDRESS: XXX.XXX.XXX.XXX

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PATCH PANEL/ DDF RACK LABELING

10.2.2Equipment Rack Labeling.

First Row( Rack No.)

Size : 3x1

Example :

RACK 3

10.2.3 DC Breaker Labeling at Rectifier.

First Row ( POWER RACK No.)

Size : 2x1

Example :

POWER A RACK3

10.2.4 DC Breaker Labeling at Equipment Rack DC PDB for Main Power.

First Row ( POWER RACK No.)

Size : 2x1

Example :

POWER A RACK3

TESCO XXXXX, 32E1

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10.2.5DC Breaker Labeling at Rack DC PDB for ALCplus2 Power Supply

Main Power Supply.

First Row (MAIN), site LRD, far end site id

Second Row( Direction of the Link)

Size : 2x2

Example :

MAIN

SHT XXXXX

Standby Power Supply.

First Row (PWR STBY)

Second Row( Direction of the Link)

Size : 2x2

Example :

STBY

SHT XXXX

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10.2.6Power Cabel labeling at ALCplus2 IDU.

Main Power Supply.

First Row (POWER)

Second Row(MAIN/STANDBY)

Size : 2x1

Example :

POWER

MAIN

POWER

STANDBY

10.2.7IF Cabel labeling at ALCplus2 IDU.

First Row (IF MAIN/STANDBY)

Second Row ( Direction of the link)

Size : Auto

Example :

IF MAIN

WORLD WIDE XXXXX

IF STANDBY

WORLD WIDE XXXXX

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10.2.8IF Cabel labeling before and after Surge Aresstor.

First Row (IF MAIN/STANDBY)

Second Row ( Direction of the link)

Size : Auto

Example :

IF MAIN

WORLD WIDE xxxxx

IF STANDBY

WORLD WIDE XXXXX

10.2.9SCSI Cabel Labeling at Both ends.

First Row (site ID ,E1 follow by port no)

Size : 2x1

Example :

XXXXX

E1 17 - 32

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10.2.10Baseband cable Labeling at Patch Panel.

Label at e1 port 1, 8, 9,16,17,24,25 and 32 TX and RX side.

Size : 2x1

Example :

10.2.11DDF Rack Labeling

Format DDF Rack No.

Size : 2x1

Example :

DDF 3

XXXXX

E1 1 IN

XXXXX

E1 1 OUT

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10.2.12 DDF Frame Labeling

Format : (FULL NAME FAR END OF SITE,SITE ID, NO. OF E1,PRINT VERTICAL)

Size : 2x1

Example :

10.2.13Baseband Cable Labeling at DDF

Label at e1 port 1, 8, 9,16,17,24,25 and 32 TX and RX side.

Format : (SITE ID, SHORT NAME, 1 IN OR 1 OUT)

Size : 2x1

Example :

TESCO XXXXX, 32E1

XXXXX SHT 1 IN

XXXXX SHT 1 OUT

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10.3Outdoor Labeling

10.3.1Antenna Labeling.

Antenna should be label as „ TO follow by direction of the link‟.

Format : (DG Dataran Sunway)

Labeling need to be water proof (Clear spray need to be sprayed)

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10.3.2IF Cabel labeling at ODU.

First Row (FAR END ID, SHORT NAME, AND MAIN/STANDBY)

Example : (1367A WORLD WIDE MAIN) OR (1367A WORLD WIDE STANDBY)

Labeling Abbreviations

*KG as Kampung *Masjid as Masjid *PMTG as Permatang

*BDR as Bandar *SG as Sungai *JLN as Jalan

*PLU as Pulau *BKT as Bukit *PT as Parit

*LRG as Lorong *BT as Batu *Taman as Taman

*LDG as Ladang *GNG as Gunung

1367A WORLD WIDE MAIN

1367A WORLD WIDE STANDBY

METAL CABLE TIE

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11. INSTALLATION PICTURE

11.1INSTALLATION SCENARIO

11.1.1Billboard (Indoor Equiment)

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11.1.2Monopole (Outdoor Equipment)

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12.0 SITE WORKS

12.1 Antenna structure supports

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6m dia

6 meter 76mm-diameter

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6m diameter 114mm

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12.2 Scopes and requirements

Antenna mount structure provisioning is limited to tripod floor mount,all appropriate brackets,fasteners,booms

and etc. Scope does not include the provisioning of tower or mast.

12.3 Cable management and cable entries

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Roxtec photo for cable entries

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13.0 Standard Procedure Installation

13.1 Checking material on site

Unpacking the Equipment

After the project begins, the project supervisor should unpack and inspect the equipment togetherwith the customer.For a non-turnkey project, when unpacking, both the customer and the project supervisor shouldbe present. If one party unpacks the equipment when the other party is not present, the unpacking party shall take responsibilities for any possible error.For a turnkey project, the project supervisor and the order management engineer shall unpack, inspect and hand over the equipment together, and sign for the confirmation. The procedures for unpacking and inspecting the equipment and reporting equipment problems are the same as those for a non-turnkey project, except that the customer does not need to sign on relevant documents.After qualified initial acceptance, the equipment shall be handed over to the customer.The following describes how to unpack, inspect and hand over the equipment for a non-turnkeyproject.

Checking the Equipment For each site, there is a packing list for delivered equipment. Before unpacking, the project supervisor should check the cargoes according to the packing list together with the customer.

Prerequisite The equipment must be delivered to the site. Both the project supervisor and the customer must be present. Procedure Step 1 Print the packing list according to the electronic ship order. Step 2 According to the packing list, check the number of the packing boxes and the deliverydestination. Step 3 Check the outer package. If any of the following cases is identified, stop unpacking immediately. The outer package is severely damaged. There is water leakage on the outside packaging box. There is rust or water on the equipment. Find the damage causes and report the situation to the local representative office.

13.2 Assemble Pole (Refer 5.2.1)

13.3 Assemble Antenna

REQUIRED TOOLS FOR MOUNTING (NOT SUPPLIED)

• N.1 2.5 mm Allen wrench • N.1 3 mm Allen wrench • N.1 6 mm Allen wrench • N.1 13 mm spanner • N.2 17 mm spanner. Warning: if screwing operation concerns more than one screw or bolt, tighten subsequently everyone and its opposite, step by step. MOUNTING PROCEDURES

Setting antenna polarization (Refer 11.1.2.1)

Installation of the centring ring on the antenna(Refer 11.1.2.2)

Installation of 1+0 ODU support(Refer 11.1.2.3)

Installation onto the pole of the assembled structure(Refer 11.1.2.4)

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13.4 Preparation Work

Preparing Documents and Tools To guarantee a smooth installation of the equipment, prepare relevant documents and tools. Documents Required documents include two categories, engineering design documents and installation guide documents.

AA certificate and LB need to be laminated and keep it at sites. Tools Required tools include common tools, special tools and instruments. Checking Installation Conditions Before starting the installation, check the installation conditions on the site and make a record.If the installation conditions do not meet the requirements, make changes accordingly. Checking the Installation Conditions of the IDU Items that need to be checked include the construction, location, temperature, humidity, dustproof measures,

fire-proof measures, and antistatic measures. Checking the Installation Conditions of the ODU Items that need to be checked include the tower and the mast. Checking the Lightning-Proof and Grounding System Items that need to be checked include the indoor and outdoor grounding systems. Checking the Power System Items that need to be checked include the AC power system and the DC power system. Checking Auxiliary Devices and Cables Items that need to be checked include the Digital Distribution Frame (DDF), the Optical Distribution Frame (ODF), outdoor cables and trunk cables.

13.5 Installation of ODU

Installation of ODU (on 1+0 support)(Refer 11.1.2.1)

Antenna aiming(Refer 11.1.2.2)

ODU grounding(Refer 11.1.2.3)

1+1 MOUNTING PROCEDURES(Refer 11.1.3)

Installation of Hybrid(Refer 11.1.3.1)

- Connect back the BNC port after installation complete

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13.6 Fixing IF Connector for IF cable

Manually fasten the type-N connector or use a torque wrench with a force moment of 1.7 N•m, to avoid

damaging the type-N connector.When routing or bending the IF cable, do not use the type-N connector of the IF cable or the IF port of the ODU as the stress point or pivot point, to avoid damaging the type-N connector or IF port. Procedure Step 1 Depending on the distance between the IDU and the ODU, cut off a length of IF cable with a slack of 3 m to 5 m. Step 2 Make a connector for the end that is connected to the ODU. Take protective measures for the connector to avoid damage to the connectors during hoisting and routing of the IF cables. Step 3 Affix temporary labels to both ends of the IF cable. Step 4 Leave enough slack of the IF cable for routing and binding it along the mast, wiring ladder and wiring frame. Step 5 Connect the type-N connector of the IF cable to the surge end of the lightning arrester, and tighten the connector.Manually fasten the type-N connector or use a torque wrench with a force moment of 1.7 N•m,to avoid damaging the type-N connector. Step 6 Waterproof the connection between the ODU and the IF cable.

Step 7 Make a connector for the end that is connected to the IF jumper.

13.7 Lift and installation pole

Mount pole supporting system with relevant pole fixing brackets following antenna aiming direction as indicated by arrow. Antislide strip should result at the centre of supporting plate. Supporting system should lean against antislide clamp with the tooth as in Fig.66. Position the antenna in such a way that bolt in position A or D of Fig.63 cross through hole E of Fig.67. Secure the support system to the pole by means of the pole fixing brackets and relevant fixing bolts.(Refer 5.2.1)

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13.8 Installation of 19’ rack and DDF rack

Securing to floor 1. Place the rack upright, without the adjustable feet, and position it according to a layout plan. 2. Put marks through the holes, remove the rack and drill holes in the floor. 3. Put expansion plugs in the holes and hammer gently into place. 4. Mount the adjustable feet (nominal height 28 mm) and place the rack into position. 5. Insert the screws and washers and align the rack to correct vertical position by adjusting the feet. Then tighten the screws. 6. All the new rack must be grounded.

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13.9 Installation of microwave antenna

Set the antenna in such a position as to be able to operate on its rear side. Locate the five threaded holes around antenna flange. Mount centring ring onto antenna flange and tight it with 3 calibrated bolts. Caution: centring ring should be mounted so that the screws do not stick out. Define if the antenna will be mounted with vertical or horizontal polarization. Check that free drain holes stay at bottom side. Mount bolt type M10x30, in position A leaving it loose of 2 cm approx. With horizontal polarization mount bolt type M10x30 in position D, leaving it loose of 2 cm approx. Mount antislide strip onto the pole. Place blocks as in Fig.64 following antenna aiming direction. Tighten the strip with screwdriver. Rotate the antenna body until the remainder three antenna holes coincide with the three support holes. Secure the antenna to the support by thightening the relevant passing through bolts.

14.0 Installation of DCPDB

DCPDB comming together with new 19‟ rack and already installed on it.

14.1 Installation of IDU (Refer 1.3)

14.2 Water proofing & IF cable route

The protection grounding cable of the ODU must be installed.Before the IF cable enters the IDU room, make waterproof curves with the IF cable.First bind the IF cable to avoid its type-N connector being pulled. Under the ODU, make waterproof curves with the IF cable.To ground the IF cable, first determine the grounding point depending on the installation mode and the length of the IF cable, and then ground the cable by using the grounding Kit.

Minimum the slack in IF cable at Antenna during the installation.

14.3 Installation of E1 cable

Cable type

-Cable 8CX 75 OHM ST213/2 CT1320

-Cable 16CX 75 OHM ST218/2 CT1320

Connector type

-Connector BNC Male COAX STR.ST212

-Connector CX 1,6/5,6 Female x ST212

-Connector CX 1,6/5,6 male x ST212

E1 cable will run away from patch panel to DDF via existing/new cable ladder

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14.4 IF cable routing

One end of the IF cable is connected to the ODU, while the other end is connected to the IF jumper from the IDU.

14.5 Labeling (refer 10.0)

-size 9mm

14.6 Installation of power cable

The DC power cable should be routed from the DC distribution cabinet or the DC distribution box. The cable diameter should meet the design requirement.

14.7 Site cleaning All debris creating,packages shall be removed immediately after installation complete.

Equipment room shall be left clean as before commencement of installation.

14.8 Power on By powering on the equipment, you can check if the hardware system of the equipment and the power system are normal.The hardware installation must be complete, and it should pass the installation check.The input power must be available. When the test value of the voltage is not within the range, first clear the fault of the powerequipment. The abnormal voltage can cause damage to the equipment, even personal injury.

14.9 Final checking After the installation, check out the results. For any unqualified items, correct them as soon as possible.Check out the installation of the IDU chassis, IDU cables, IDU cabinet, power cables, and grounding cables of the cabinet.Check out the installation of the ODU, ODU cables, antenna, and hybrid coupler. If the ODU is separately mounted to the antenna, check the installation of the separate mount parts.

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15.0 RG cable characteristic

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16.0 Design loading and standards Tripods, T-brackets, boom, SEL-bracket, cable-ladder and roxtec made reference in this document comforms andin compliant to Digi version 4 specification.

17.0 Boom/bracket details and standards (refer 12.0-pre endorse by DG) -New boom design for tower (refer to 12.0) -New poles design for rooftop(refer to 12.0) -Wind brace Already intergrated with antenna

18.0 fabrication Rack Racks are fabricated in accordance to‟ Digi Specification 42U , 19inch open rack. Fabricated and supplied by DiGi panel supplier

Standard requirement/design requirement -Concrete plinth For the antenna mounting structure please refer to 12.0 For equipment not in SIAE scope

-Special bracket n/a

-Labelling size (refer 10.0) Use 9mm catridge

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REF :MN.00024.E -

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INSTALLATION GUIDELINES

ALCPLUS2

Issued by

MOHD RIZAL LEMAN

Approved by

LUCARELLI

ALFREDO

Date

04/14/11

Page

155 of 157

Siae Microelettronica

All rights reserved

Rev./Ver.

02

19.0 IF panel plate Option 1 (vertical).

Will install when there are space at existing 19‟ rack.

Page 156: InstallationGuidelineALCplus4 July Final

REF :MN.00024.E -

004

INSTALLATION GUIDELINES

ALCPLUS2

Issued by

MOHD RIZAL LEMAN

Approved by

LUCARELLI

ALFREDO

Date

04/14/11

Page

156 of 157

Siae Microelettronica

All rights reserved

Rev./Ver.

02

Option 2 (horizontal) Will install when there are no space at existing 19‟ rack.

Page 157: InstallationGuidelineALCplus4 July Final

REF :MN.00024.E -

004

INSTALLATION GUIDELINES

ALCPLUS2

Issued by

MOHD RIZAL LEMAN

Approved by

LUCARELLI

ALFREDO

Date

04/14/11

Page

157 of 157

Siae Microelettronica

All rights reserved

Rev./Ver.

02

20.0 Impedance at cell

21.0 Surge arrestor SM radios are EN 301 489 compliant. As such Surge arrestors are not recommended. Please find appended EN 301 489 recommendations.