Kyocera IBS19AA Base Station of Wireless Broadband Internet System User Manual

Kyocera Corporation Base Station of Wireless Broadband Internet System

User Manual

Installation Manual for Kyocera iBurst System (BS1905A-US-A) (Q05T-AI-BB001E)
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CONFIDENTIAL
April 26, 2004
Revision 1.00
Doc-No. Q05T-AI-BB001E
Kyocera Corp.
2-1-1 Kagahara, Tsuzuki-ku, Yokohama-city, Kanagawa 224-8502, Japan
Telephone:+81-45-943-6176
Fax:+81-45-943-6123
© KYOCERA Corporation 2003
All right reserved.
No part of this publication may be excerpted, reproduced,
translated or edited, in any form by any means, without
the prior written permission of KYOCERA Corporation
Installation Manual for Kyocera iBurst System
(BS1905A-US-A)
A
pproved Checked Checked Prepared
Installation Manual for Kyocera iBurst System (BS1905A-US-A) (Q05T-AI-BB001E)
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Revision History
Revision Description Date Charge
1.00 1st Edition April 26, 2004 Y. Izawa
1. INSTALLATION CRITERIA...................................................................................................... 5
1.1 PURPOSE AND POLICY...........................................................................................................6
1.2 LAWS ....................................................................................................................................6
1.3 PRECAUTIONS FOR HANDLING..............................................................................................6
1.4 DESIGN AND EXECUTION POLICY ..........................................................................................6
1.5 INSTALLATION CRITERIA.......................................................................................................6
1.5.1
General.........................................................................................................................6
1.5.2
Criteria for selecting antenna location .......................................................................8
1.5.2.1 Accuracy of antenna mounting ............................................................................8
1.5.2.2 Sequence of mounting antenna............................................................................8
1.5.2.3 Interval of antenna...............................................................................................8
1.5.2.4 Lightening protection...........................................................................................9
1.5.2.5 Isolation from drain..............................................................................................9
1.5.2.6 Isolation from obstacle .......................................................................................10
1.5.2.7 Horizontal sight angle........................................................................................10
1.5.2.8 Vertical sight angle............................................................................................. 11
1.5.2.9 Isolation from radio system................................................................................12
1.5.2.10 Isolation from outdoor unit of air conditioner, etc. ...........................................14
1.5.2.11 Isolation from power line ...................................................................................14
1.5.3
Criteria for selecting PA unit location ......................................................................15
1.5.3.1 Mounting direction of PA unit............................................................................15
1.5.3.2 Securing space for PA unit .................................................................................15
1.5.3.3 Lightening protection.........................................................................................16
1.5.3.4 Isolation from drain............................................................................................17
1.5.4
Criteria for selecting GPS unit location ...................................................................17
1.5.4.1 Accuracy of GPS mounting.................................................................................17
1.5.4.2 GPS sight space ..................................................................................................18
1.5.4.3 Lightening protection for GPS...........................................................................19
1.5.5
Criteria for selecting Base unit location...................................................................20
1.5.5.1 Installation space for Base unit.........................................................................20
1.5.5.2 Lightening protection for Base unit...................................................................20
1.5.5.3 Isolation from drain............................................................................................21
1.5.5.4 Isolation from iBurst antenna ...........................................................................21
1.5.6
Precautions on cabling ..............................................................................................22
1.5.6.1 Ground ................................................................................................................22
1.5.6.2 Cable ................................................................................................................... 22
1.5.7
Precautions in installation on the roof .....................................................................23
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1.5.8
Separation of power systems.....................................................................................24
1.5.9
Waterproof treatment for connector and bushing ....................................................25
2 CONFIGURATION OF BASE STATION AND ACCESSORIES.......................................... 26
2.1 CONFIGURATION OF BASE STATION....................................................................................27
2.1.1
System Diagram ........................................................................................................27
2.1.1.1 Star connection...................................................................................................27
2.1.1.2 Daisy-chain connection.......................................................................................28
2.1.2
Appearance form........................................................................................................29
2.1.2.1 PA unit ................................................................................................................29
2.1.2.2 Inside LID........................................................................................................... 30
2.1.2.3 GPS unit..............................................................................................................31
2.1.2.4 Base unit.............................................................................................................32
2.1.3
Connection diagram...................................................................................................37
2.1.3.1 PA unit - Antenna ...............................................................................................37
2.1.3.2 PA unit-Base unit ...............................................................................................38
2.1.3.3 Base unit – Other equipment.............................................................................42
2.1.4
Pin assignment of cables/connectors.........................................................................43
2.1.4.1 AC Power supply cable.......................................................................................43
2.1.4.2 PA control cable .................................................................................................. 43
2.1.4.3 Network cable..................................................................................................... 44
2.1.4.4 GPS cable ............................................................................................................44
2.1.4.5 GPI cable.............................................................................................................45
2.1.4.6 Master/Slave cable..............................................................................................45
2.2 SPECIFICATIONS .................................................................................................................46
2.2.1
Hardware specifications ............................................................................................46
2.2.2
LED indicators...........................................................................................................47
2.2.2.1 PA unit ................................................................................................................47
2.2.2.2 Base unit.............................................................................................................47
2.2.3
Accessories .................................................................................................................48
2.2.3.1 PA unit ................................................................................................................48
2.2.3.2 Base unit.............................................................................................................48
2.2.4
Cable specification.....................................................................................................48
2.2.5
Other Parts specification...........................................................................................49
2.2.6
Handling of cables .....................................................................................................50
2.2.7
Tightening Torque .....................................................................................................50
2.2.8
Tools............................................................................................................................51
3 INSTALLATION ................................................................................................................... 52
3.1 INSTALLING ANTENNA SYSTEM (EXAMPLE)........................................................................53
3.1.1
Installing the antenna pole .......................................................................................53
3.2 INSTALLING PA UNIT .........................................................................................................56
3.2.1
Mounting and removing the Eyebolt ........................................................................56
3.2.2
Mounting the PA Unit (Example) .............................................................................57
3.2.3
Connecting cables ......................................................................................................59
3.2.3.1 Connecting the AC power supply cable .............................................................59
3.2.3.2 Connecting the grounding cable. .......................................................................64
3.2.3.3 Connecting the PA control cable ........................................................................65
3.2.3.4 Connecting the antenna cable............................................................................70
3.2.3.5 Connecting the Calibration cable ......................................................................72
3.2.3.6 Connecting the PU-BU RF cable .......................................................................79
3.3 INSTALLING THE GPS UNIT ...............................................................................................82
3.4 INSTALLING THE BASE UNIT ..............................................................................................86
3.4.1
Mounting and removing the Eyebolt ........................................................................86
3.4.2
Fixing the Base Unit .................................................................................................88
3.4.3
Connecting cables ......................................................................................................89
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3.4.3.1 Connecting the AC power supply cable .............................................................89
3.4.3.2 Fixing the grounding cable ................................................................................94
3.4.3.3 Connecting the PA control cable ........................................................................95
3.4.3.4 Connecting the GPS cable................................................................................100
3.4.3.5 Connecting the Calibration cable ....................................................................105
3.4.3.6 Connecting the PU-BU RF cable ..................................................................... 110
3.4.3.7 Connecting the Network cable......................................................................... 114
3.4.3.8 Connecting the Master/Slave cable .................................................................123
3.4.3.9 Attachment of Grounding Kit .......................................................................... 130
3.4.4
Inserting the board..................................................................................................130
3.4.4.1 Notes at setting Boards and Power supply .....................................................131
3.4.4.2 Inserting the Power supply.............................................................................. 133
3.4.4.3 Inserting the LoCal board................................................................................133
3.4.4.4 Inserting the MoNerd board ............................................................................134
3.4.4.5 Inserting the TRx board...................................................................................134
3.4.4.6 Inserting the FAN tray.....................................................................................134
3.4.4.7 Removing the Power supply and other boards................................................135
3.4.5
Connecting cables to the Power supply and boards ...............................................136
3.4.5.1 Power supply.....................................................................................................136
3.4.5.2 LoCal board.......................................................................................................137
3.4.5.3 MoNerd board...................................................................................................137
3.4.5.4 TRx the board ...................................................................................................138
* iBurst is the trademark of ArrayComm.
* All the things in which a size does not have a unit display are mm units.
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1. Installation Criteria
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1.1 Purpose and policy
This document is intended to specify a fundamental design criterion for the installation of
iBurst base station, thus ensuring smooth work and providing the customer with appropriate
services and establishing easy-to-maintain system.
1.2 Laws
In executing the work, necessary related laws (Telecommunications Business Law, Wired
Telecommunications Law, Radio Law, Building Standard Law, Electric Work Specialist Law,
Fire Fighting Law, etc. in Japan), other related laws, and licensing conditions must be
observed. In addition, application for permission based on the law must be conducted without
delay.
1.3 Precautions for handling
The iBurst system contains precision components; therefore, do not give any strong shock by
falling or dropping.
Strong shock may result in a failure or badly affect the lifetime or the product.
1.4 Design and execution policy
1.4.1 In designing the work, functionality, reliability, maintainability, economy, etc. must be
fully taken into account.
1.4.2 Not only enhancement of safety mind but also security for the third party must always
be kept in mind.
1.4.3 Be sure to make efforts to complete better work objective in accordance with
technological sense.
1.4.4 Be sure to keep communication with the owner and residents of the building and the
neighboring residents with due consideration not to cause a problem.
1.4.5 Be sure to make efforts to grasp the status of the work, to give an appropriate advice,
and to fulfill a duty of reporting the status.
1.4.6 Be sure to prevent the work from generating a noise or vibration to maintain the living
environment.
1.4.7 Be sure to dispose the waste materials caused from the work in accordance with the
specified method regarding the method, place, etc. of disposal, thereby preventing the
occurrence of accident to be caused by the waste material.
1.4.8 In conducting a negotiation or design, future expansion of equipment should be
considered as much as possible.
1.5 Installation criteria
1.5.1 General
1.5.1.1 Select the location where general public is hard to access but maintenance is
easy.
1.5.1.2 Antenna and mounting stud must be located at a place where dropping or other
accident, if any, may not be harmful for the personnel and general public.
1.5.1.3 In designing a base station, the location shall be determined by the study of
strength against load and work product.
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1.5.1.4 Do not place antenna, base station, or other obstruction in front of advertising
display such as neon sign and signboard.
1.5.1.5 When conducting the work, select the location of antenna, base station, UPS,
wiring, piping, etc. in consultation with the owner while considering the
appearance.
1.5.1.6 Before implementing the work, check the status of any broken or damaged
portion of the building and facilities associated with the installation area of the
base station together with the owner or the person from the control company.
1.5.1.7 Materials for mounting equipment
1.5.1.7.1 Quality-of-the-material specification used for the mount of outdoor
installation etc. is considered as hot- dip galvanized. Moreover,
quality-of-the-material specification of inside-of-a-house installation is
made into the anti-rust material more than electric zinc plating material,
and a bolt and a nut also apply to this. However, about the place of
conditions, which are easy to generate, such as rust etc., it applies to
outdoor specification.
However, a hot-dip galvanized steel or Dacrotized finishing is recommended
for the bolt directly fixed on PA unit mounting bracket.
1.5.1.7.2 In the connection of various cables, use of cold-shrinkable tube as well as
self-fusing tape is recommended as a method of waterproof treatment.
1.5.1.8 Study the shape of the building and the status of waterproof treatment on the
roof not to cause any problem in the installation on the building.
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1.5.2 Criteria for selecting antenna location
1.5.2.1 Accuracy of antenna mounting
Antenna shall basically be installed vertically within the range of ±2 degrees off the
vertical line.
1.5.2.2 Sequence of mounting antenna
Each PA unit to be connected with the antenna has antenna numbers (ANT1 to ANT3).
The location of ANT1 is not specified specifically.
1.5.2.3 Interval of antenna
Antennas shall be separated by more than 3λ from each other as shown below.
An average interval of antenna shall be separated by more than 8λ.
Frequency Isolation (L)
1.9GHz More than 50cm
Sequence of antenna mounting and interval of antennas
A
NT1
A
NT2
A
NT3
L
L
3
λ
3λ
3λ 3λ
3λ
3λ 3
λ
3λ
3λ 3λ
3
λ
3
λ
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1.5.2.4 Lightening protection
Antenna installation shall be designed to be within the protection angle (* 60 degrees) of
the lightening rod.
* Lightening protection method is obeying the law by State regulations.
Lightening protections for antenna - Lightening rod -
Lightening protection for antenna - Raised conductor -
1.5.2.5 Isolation from drain
When installing the antenna on the roof of a building, keep the isolation distance of
more than 1 m to prevent the pedestal from blocking the drain of the roof.
Isolation distance from roof drain
More than 1.5m When using raised conductor
Roof-drain
More than 1m
Not O
K
60°
Lightening rod
More than 1.5m
60°
O
K
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1.5.2.6 Isolation from obstacle
When installing the antenna on the building, be sure that there is no object such as roof
buildings or advertising display that may block the electric wave around the antenna.
Isolation from obstacle
1.5.2.7 Horizontal sight angle
Horizontal sight angle shall be 330 degrees or more for the purpose of enlarging the area.
In addition, there shall be no obstruction along the direction to be covered.
Definition of horizontal sight angle: Horizontal sight angle from the antenna shall be
more than the standard value.
(Angle added by the sight direction in the horizontal angle of 360 degrees around the
antenna excluding the direction that cannot keep the sight due to obstruction on the
roof: See below)
A
ntenna location
Obstacle
L
L>2m
On the horizontal line of antenna center.
Regarded as obstacle
Plane view of roof
Penthouse
γ: Horizontal sight angle
γ
Horizontal sight angle
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1.5.2.8 Vertical sight angle
The standard value shown in the following table shall be secured for vertical sight angle.
Vertical sight angle standard values
Tilt angle Standard value
7dBi (20 degrees) 30 degrees
9dBi (10 degrees) 20 degrees
11dBi (5 degrees) 10 degrees
11dBi (0 degree) 5 degrees
Upon confirmation of the “distance from edge” of an object, be sure “distance from edge”
is within the corresponding “allowable distance” in the following table.
Vertical sight angle vs. allowable distance
Applied
height (m)
Calculated
value (m)
11dBi
0 degree
11dBi
5 degrees
9dBi
10 degrees
7dBi
20 degrees
Allowable
sight angle
(degrees)
5 10 20 30
4 or more 4 45.7 22.7 11.0 6.9
Over 3.5 and
below 4
3.5 40.0 19.8 9.6 6.1
Over 3 and
below 3.5
3 34.3 17.0 8.2 5.2
Over 2.5 and
below 3
2.5 28.6 14.2 6.9 4.3
Allowable
distance
Over 2 and
below 2.5
2 22.9 11.3 5.5 3.5
(m) Over 1.5 and
below 2
1.5 17.1 8.5 4.1 2.6
Over 1 and
below 1.5
1 11.4 5.7 2.7 1.7
Over 0.5 and
below 1
0.5 5.7 2.8 1.4 0.9
tan5°=0.0874886, tan10°=0.1763269, tan20°=0.3639702, tan30°=0.5773502
Sight angle and allowable distance
Sight angle
Height from floor
(* Applied height)
Distance from edge
(* Must be within allowable distance)
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1.5.2.9 Isolation from radio system
When installing a base station, it is necessary to keep enough space so as not to give
damage to other existing base stations.
1.5.2.9.1 Isolation from iBurst system
When installing the iBurst systems on the same plane of the roof, keep the specified
isolation distance.
Interval between iBurst systems
1.5.2.9.2 Isolation from GSM/CDMA base station
When installing the antennas in GSM/CDMA base station close together, sufficient
survey must be conducted
- Do not installing the iBurst antenna to direction of radiation.
- When installing the iBurst antenna to anti-direction of radiation, please make sure
shown below parameter and new calculation of isolation distance will be required.
Radiation pattern of iBurst antenna
Used frequency Rang (Up-link/Down-link) of GSM/CDMA antenna
Output power rating of GSM/CDMA antenna
Characteristic of BPF of GSM/CDMA antenna
Radiation pattern of GSM/CDMA antenna
Example of isolation distance from GSM/CDMA base station --Top View
(Note)
When a base station is installed close to other base station, a failure may possibly be
caused on or from the associated base station.
Direction of radiation
GSM /CDMA Antenna
iBurst Antenna
iBurst Antenna
Do not install the iBurst antenna to direction of radiation.
More than 2m
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1.5.2.9.3 Isolation from other radio system
Regarding the existing antenna of other radio system such as TV antenna, effect on
the associated antenna shall be fully taken into account at the time of installation.
As TV antenna has directivity, no base station shall be located in the direction of the
antenna. There may be the possibility of having an effect even outside the range of
directivity due to the effect of reflection depending on the environment around the
location. Practically, as shown in the following figure, the base station must not be
located within the range of existing antenna direction ±45° on the same roof.
More than 3 m distance (horizontal) shall be allowed from TV antenna and installation
within the range of ±45 degrees from TV antenna direction shall be avoided.
Isolation from TV antenna
Plane
Installation of this
type is not permitted
as the antenna arm is
considered as a circle.
Directivity of TV antenna
45° 45°
3m
3m
3m
O
K
Not O
K
O
K
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1.5.2.10 Isolation from outdoor unit of air conditioner, etc.
When installing an antenna, it is necessary to keep the antenna away from the rotating
metal such as a heat-dissipating fan of the outdoor unit of air conditioner, ventilating
fan, etc.
When there is any rotating metal on the same horizontal plane, it is necessary to keep
the isolation of more than 1.5 m. If, however, this isolation cannot be secured, isolation
of more than 0.5 m from the top and bottom edges of the antenna must be secured.
Isolation from outdoor unit
1.5.2.11 Isolation from power line
Isolation from power line shall be executed by confirming the details in accordance with
the related laws. As power producer includes electric power company and Train
Company, pay full attention to the surrounding conditions.
More than 1.5m
More than 0.5m
More than 0.5m
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1.5.3 Criteria for selecting PA unit location
1.5.3.1 Mounting direction of PA unit
PA unit can be installed only vertically with the antenna connector up.
1.5.3.2 Securing space for PA unit
1.5.3.2.1 Workspace
When installing on the roof or the like, keep approx. 1m as a maintenance space
around the PA unit.
Workspace for PA unit
1.5.3.2.2 Ventilation space
When installing the PA unit on the wall, allow a ventilation space of more than 15mm.
Example of ventilation space for PA unit
Lid
Bush
1m
More than 15mm
Pedestal
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1.5.3.3 Lightening protection
PA unit installation shall be designed to be within the protection angle (* 60 degrees) of
the lightening rod.
* Lightening protection method is obeying the law by State regulations.
Lightening protection for PA unit - Lightening rod-
Lightening protections for PA unit- Raised conductor -
More than 1.5m When using raised conductor
More than 1.5m
Not O
K
60°
Lightening rod
60°
O
K
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1.5.3.4 Isolation from drain
When installing the PA unit on the roof of a building, keep the isolation distance of more
than 1 m to prevent the pedestal from blocking the drain of the roof.
Isolation from drain
1.5.4 Criteria for selecting GPS unit location
1.5.4.1 Accuracy of GPS mounting
Inclination of GPS against the vertical direction shall be 4.5 degrees max.
Accuracy of GPS unit mounting
More than 1m
Roof drain
Within 4.5°
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1.5.4.2 GPS sight space
There shall be no obstruction at the place of 25 degrees or more from the horizontal
surface at the center (excluding antenna).
GPS sight space
2
°
25°
Sight should not be obstructed in this range.
25°
25°
Sight should not be obstructed in this range.
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1.5.4.3 Lightening protection for GPS
GPS unit installation shall be designed to be within the protection angle (* 60 degrees)
of the lightening rod.
The GPS unit shall be isolated by more than 1.5 m from the lightening rod, lightening
conductor, or raised conductor.
When the GPS mounting pole is made of metal, isolation of more then 1.5 m is
recommended like the above.
* Lightening protection method is obeying the law by State regulations.
Lightening protections for GPS - Lightening rod -
Lightening protections for GPS - Raised conductor -
More than 1.5m When using raised conductor
Not O
K
60°
Lightening rod
More than 1.5m
60°
O
K
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1.5.5 Criteria for selecting Base unit location
1.5.5.1 Installation space for Base unit
A space for installing and maintaining the Base unit shall be secured at the place
confirmed in the site survey.
Installation space for Base unit
1.5.5.2 Lightening protection for Base unit
When installing the Base unit outdoors, be sure to design the Base unit to be located
within the protection angle (* 60 degrees) of the lightening rod.
* Lightening protection method is obeying the law by State regulations.
Lightening protection for Base unit - Lightening rod-
Lightening protection for Base unit - Raised conductor -
A
pprox. 2300
1700
1150 500
TOP VIEW 665
665
Base unit
Front
Rear
Not O
K
60°
Lightening rod
More than 1.5m
60°
O
K
More than 1.5m When using raised conductor
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1.5.5.3 Isolation from drain
When installing the Base unit outdoor such as on the building roof, keep the isolation
distance of more than 1 m so that the pedestal may not block the neighboring drain or
may not obstruct the flow of wastewater.
Isolation from drain
1.5.5.4 Isolation from iBurst antenna
When installing both Base unit and antenna on the same plane such as on the roof,
allow an isolation distance of 2m between the antenna and Base unit.
Isolation from antenna
Top View Base Unit
Drain
More than 1m
Isolation of 2m
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1.5.6 Precautions on cabling
1.5.6.1 Ground
1) The grounding terminal of the power cable must be surely connected to the ground.
(Note)
Unless ground connection is completed, noise may be caused during communication or
equipment may be damaged as lightening protection by ground line is disabled.
2) Ground shall be 100 or less.
(Note)
If the ground resistance is more than 100 , sound or image failure may be caused in
other radio equipment.
1.5.6.2 Cable
1) Be sure to lay the network cable and power cable in separate ducts.
(Note)
If the network cable and power cable are laid in a bundle, noise may be caused during
communication or sound or image failure may be caused in other radio equipment.
2) Attach an identification label on the power box, circuit breaker, and Ethernet
switch to indicate the cable belongs to the base station.
(Note)
Unless identification label is attached on the power box and circuit breaker, PA unit,
Base unit power may be turned off erroneously. Or power to other electrical devices
may be turned off erroneously resulting in a good deal of trouble.
Unless identification is attached on the network cable, identification work for network
cable may be difficult.
3) Allow an isolation distance of more than 10 cm between the network cable and
power cable.
(Note)
If the line cable and power cable are laid close together, noise may be caused during
communication.
4) Do not lay power cable within 3 m from the TV antenna.
(Note)
If power cable is close to the TV antenna, TV sound and image may be damaged.
Power cable and TV antenna
3m
3m
3m
3m
3m
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1.5.7 Precautions in installation on the roof
1) When laying the network cable and power cable on the roof, pass them through the
duct for cable protection to the specified places while putting them on the pedestals
for raised cabling.
Cabling on the roof - 1 -
2) When laying the network cable and power cable along the wall, fix them through
the duct in the same manner as the above.
Cabling on the roof - 2 -
Bracket
Protecting duct
Bracket
Pedestal
Protecting duct
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CONFIDENTIAL
1.5.8 Separation of power systems
1) For the convenience of maintenance, the Base unit and PA unit shall be separately
provided with power cabling. In addition, four PA units shall be provided with
independent power systems each having a specified circuit breaker.
Separation of power systems
Connect to common distribution
board or master breaker.
PA unit1 breaker
PA unit2 breaker
PA unit3 breaker
PA unit4 breaker
Base unit breaker
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CONFIDENTIAL
1.5.9 Waterproof treatment for connector and bushing
For connectors and bushing, it is necessary to use appropriate self-shrinkable tube or
wind self-fusing tape and then vinyl tape around them for water preventing measure to
protect the equipment against damage by water immersion.
In waterproof treatment, it is important to cover the root of the connectors and bushings.
See the following figure.
Waterproof treatment for connector and bushing
Surge Arrester
A
ntenna cable
PU-BU RF cable
Calibration cable
A
C Power Supply cable
Network cable
GPS cable
PA Control cable
GPI cable
M/S cable
Bushes
Cover the root Cover the root
Grounding Kit
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CONFIDENTIAL
2 Configuration of Base Station and Accessories
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CONFIDENTIAL
2.1 Configuration of Base Station
2.1.1 System Diagram
Two connecting types are provided depending on the method of the calibration cable.
One is star connection to connect one Base unit and one PA unit together and the other
is daisy chain connection to connect one Base unit and two PA units in series.
2.1.1.1 Star connection
A
ntenna Cable
PA Control Cable (Shielded Twisted Pair)
PU-BU RF Cable
Calibration Cable
GPS Cable (Shielded Twisted Pair AWG24)
Network Cable (Shielded Twist Pair)
A
C Power Cable 3P
Grounding Cable
Grounding Kit
TNC (P) Type Connector
TNC (P) Type Terminator
N (P) Type Connector
N (J-J) Type Arrester
MMP Connector
A
ntenna Unit
GPS Antenna
Base Unit
PA Unit
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CONFIDENTIAL
2.1.1.2 Daisy-chain connection
A
ntenna Cable
PA Control Cable (Shielded Twisted Pair)
PU-BU RF Cable
Calibration Cable
GPS Cable (Shielded Twisted Pair AWG24)
Network Cable (Shielded Twist Pair)
A
C Power Cable 3P
Grounding Cable
Grounding Kit
TNC (P) Type Connector
TNC (P) Type Terminator
N (P) Type Connector
N (J-J) Type Arrester
MMP Connector
A
ntenna Unit
GPS Antenna
Base Unit
PA Unit
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CONFIDENTIAL
2.1.2 Appearance form
2.1.2.1 PA unit
Rear View
550
Bushing for PA Control Cable
Bottom View
390
Left Side View
Front View
Connector for Antenna Cable (N-J x 3)
Screw hole for fixing the Eyebolt (M10) or
Cap bolt (M10)
2M10 x P1.5 x 19deep
To
p
View
231±0.5
340±0.5
6-M10 x P1.5 x 30 deep
256
Screw hole for fixing the lug of grounding cable (M6)
M6 x P1.0 x 15deep
Bushing for
A
C Power supply Cable
Connector for Calibration Cable (TNC-J x 2)
Connector for PU-BU RF Cable (N-J x 3)
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CONFIDENTIAL
2.1.2.2 Inside LID
Lid screws
L
N
FS
+ RXD
+ TXD
+
Clamp for PA Control Cable
LED for Status
Interface for AC Power Supply (Live)
Interface for AC Power Supply (GND)
Interface for AC Power Supply (Neutral)
Clamp for
A
C Power supply Cable
Interface for PA Control Cable (DDK 232D-02P1B x 3)
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CONFIDENTIAL
2.1.2.3 GPS unit
Note) This mounting adaptor is not an accessory of the GPS unit.
Mount Adaptor
Recommended mating connector
Manufacturer: DEUTSCH ECD
Plug: MMP26C-2212S1
Contact: 6862-201-22278, 12pcs
Boot: 6810-204-2001
Smart Antenna RS422_Cable Mount Type
96
1.00-14UNS-2B X 1.00 deep
φ115
304
500
520
450
25
50
Mounting Adaptor
Mounting pipe length: 520mm
Mounting pipe inside diameter: 20.5-21.5mm
Materials to be used for the mount adaptor shall
be hot-dip galvanized steel.
1.00-14UNS-2A
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CONFIDENTIAL
2.1.2.4 Base unit
535
575
See detailed drawing A.
4-φ14
See detailed drawing B.
See detailed drawing C.
Bottom View
*Installation Base Unit is not included in the Base Unit.
665
665
Top View
500 900
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CONFIDENTIAL
2.1.2.4.1 Bottom details
Master GPI
CAL1
CAL2 CAL4
CAL3
Calibration RF2
RF3
RF1
RF3
RF2 RF1
PA Unit 4
PA Unit 3
RF2
RF3
RF1
RF3
RF2 RF1
PA Unit 2
PA Unit 1
GPS2 GPS1
GPS Slave LAN2 LAN1
100Base-TX
PA
Unit 4
PA
Unit 3
PA
Unit 2
PA
Unit 1
PA Control
A
C INPUT
GPO
MODEM
This figure looked from bottom side
TNC-J type Connector Entry
N-J type Connector Entry
Bushing type Entry
Detailed drawing A
Detailed drawing B
Detailed drawing C
Front Side
Blind Cap
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CONFIDENTIAL
2.1.2.4.2 Inside Base unit
Thi S B d (GPI) i t
d
This Surge Board (M/S) is not used.
Surge Board GPS
Surge Board Network
LoCal Board
FAN Tray
Power Supply
TRx Board
A
C Terminal
Surge Board PA CTL
Surge Board M/S
Surge Board GPI
MoNerd Board
Combiner Module
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CONFIDENTIAL
2.1.2.4.3 Surge board
2.1.2.4.4 AC terminal
L
L
N
N
ETH
FG
PA1
Tx+
Tx-
Rx+
Rx-
Frame+
Frame-
PA2
Tx+
Tx-
Rx+
Rx-
Frame+
Frame-
PA3
Tx+
Tx-
Rx+
Rx-
Frame+
Frame-
PA4
Tx+
Tx-
Rx+
Rx-
Frame+
Frame-
LAN1
TxD+
TxD-
RxD+
RxD-
unused
unused
unused
unused
LAN2
TxD+
TxD-
RxD+
RxD-
unused
unused
unused
unused
GPI
GPI0
GND0
GPI1
GND1
GPI2
GND2
M/S
Tx+
Tx-
Rx+
Rx-
GPS2
1PPS+
1PPS-
TxD+
TxD-
+12V
GND
RxD+
RxD-
GPS1
1PPS+
1PPS-
TxD+
TxD-
+12V
GND
RxD+
RxD-
Reserve1-
Reserve1+
Reserve1-
Reserve1+
Reserve2-
Reserve2+
Reserve2-
Reserve2+
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CONFIDENTIAL
2.1.2.4.5 Display LED and Connector
POWER
STATUS
STATUS
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
CAL
LoCal
STATUS
MASTER
CAL
LoCal
STATUS
MASTER
MoNerd
STATUS
MASTER
NETWORK
COM
100Base-TX
MoNerd
STATUS
MASTER
NETWORK
COM
100Base-TX
Power Supply
POWER
AC INPUT
Power Supply
POWER
AC INPUT
Power Supply
POWER
AC INPUT
FAN
POWER
STATUS
RF3
STATUS
MASTER
NETWOR
K
COM
POWER
100Base-TX
A
C INPUT
LED LED LED
LED
Connecter
Connecter
Connecter
Connecter
Cal
Connecter
STATUS
MASTER
LED
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CONFIDENTIAL
2.1.3 Connection diagram
2.1.3.1 PA unit - Antenna
A
NT1 ANT2 ANT3
A
NT1 ANT2 ANT3
Surge Arrester
A
ntenna Cable
A
ntenna
PA Unit
N type connector
N type connector
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CONFIDENTIAL
2.1.3.2 PA unit-Base unit
2.1.3.2.1 Star connection
2.1.3.2.1.1 Base unit – PA unit1,2
PU-BU RF Cable w/ NP Connectors
Calibration Cable w/ TNCP Connectors
PA Control Cable w/ 232D
TNCP type Terminator
Front Side
RF3 RF2 RF1
PA
Unit 4
PA
Unit 3
PA
Unit 2
PA
Unit 1
PA Control
CAL1
CAL4
CAL3
This figure looked from bottom side
Base Unit
RF3 RF2 RF1
CAL OUT CAL IN CAL OUT CAL IN
PA Unit 1 PA Unit 2
RF1
PA Unit 4
RF2
RF3
RF1 RF2 RF3
RF1 RF2 RF3
CAL2
PA Unit 2
RF3 RF2 RF1
PA Unit 1
PA Unit 3
Calibration
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CONFIDENTIAL
2.1.3.2.1.2 Base unit – PA unit3,4
PU-BU RF Cable w/ NP Connectors
Calibration Cable w/ TNCP Connectors
PA Control Cable w/ 232D
TNCP type Terminator
Front Side
CAL1
CAL2
CAL3
Calibration
This figure looked from bottom side
Base Unit
RF3 RF2 RF1
RF2
RF3
RF1
RF3
RF2 RF1
PA Unit 2
PA Unit 1
CAL OUT CAL IN CAL OUT CAL IN
PA Unit 3 PA Unit 4
PA
Unit 4
PA
Unit 3
P
A
Unit 2
PA
Unit 1
PA Control
RF1
RF2
RF1 RF2 RF3
RF1 RF2 RF3
CAL4 RF3
PA Unit 3
PA Unit 4
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CONFIDENTIAL
2.1.3.2.2 Daisy-chain connection
2.1.3.2.2.1 Base unit-PA unit1,2
PU-BU RF Cable w/ NP Connectors
Calibration Cable w/ TNCP Connectors
PA Control Cable w/ 232D
TNCP type Terminator
Front Side
PA Control
CAL1
CAL4
CAL3
Calibration
This figure looked from bottom side
Base Unit
RF3 RF2 RF1
RF3 RF2 RF1
CAL OUT CAL IN CAL OUT CAL IN
PA Unit 1 PA Unit 2
PA
Unit 4
PA
Unit 3
PA
Unit 2
PA
Unit 1
RF1
PA Unit 4
RF2
RF3
RF1 RF2 RF3 RF1 RF2 RF3
RF2
RF3 RF1
PA Unit 3 PA Unit 1
PA Unit 2
CAL2
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CONFIDENTIAL
2.1.3.2.2.2 Base unit – PA unit3,4
CAL1
CAL2
CAL3
Calibration
PU-BU RF Cable w/ NP Connectors
Calibration Cable w/ TNCP Connectors
PA Control Cable w/ 232D
TNCP type Terminator
PA
Unit 4
PA
Unit 3
PA
Unit 2
PA
Unit 1
PA Control
This figure looked from bottom side
Base Unit
RF3 RF2 RF1
RF2
RF3
RF1
RF3
RF2 RF1
PA Unit 2
PA Unit 1
CAL OUT CAL IN CAL OUT CAL IN
PA Unit 3 PA Unit 4
RF1
RF2
RF3
RF1 RF2 RF3 RF1 RF2 RF3
PA Unit 3
PA Unit 4
CAL4
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CONFIDENTIAL
2.1.3.3 Base unit – Other equipment
Front Side
GPS Antenna
GPS Cable
Deutsch MMP26C-2212S1 Connector
Base Unit
Ethernet Switch
This figure looked from bottom side
Master GPI
GPS2 GPS1
GPS Slave PA
Unit 4
PA
Unit 3
PA
Unit 2
PA
Unit 1
PA Control
A
C INPUT
LAN2 LAN1
100Base-TX
Network Cable
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CONFIDENTIAL
2.1.4 Pin assignment of cables/connectors
2.1.4.1 AC Power supply cable
2.1.4.2 PA control cable
PA unit Connection place Base unit
TXD + Rx +
TXD – Rx –
RXD + Tx +
RXD – Tx –
FS + Frame +
FS – Frame –
L
L
N
N
ETH
FG
Live Neutral
GND
Base Unit AC Terminal
PA Unit AC Terminal
L
N
Live
GND
Neutral
Base Unit Surge Board
Rx –
Rx +
Frame –
Frame +
FS +
FS –
RXD +
RXD –
TXD +
TXD –
PA Control Cable
PA Unit side
LED
Tx –
Tx +
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CONFIDENTIAL
2.1.4.3 Network cable
2.1.4.4 GPS cable
GPS connector pin No. Connection place Base Unit
Surge Board
No.1 + 12
No.2 TxD
No.3 TxD +
No.4 RxD
No.5 RxD +
No.6 NONE
No.7 NONE
No.8 NONE
No.9 GND
No.10 NONE
No.11 1PPS +
No.12 1PPS
GND
+12V
RxD –
RxD +
TxD –
TxD +
1PPS –
1PPS +
Connector of GPS unit side
(Pin side view)
Base Unit Surge Board
GPS Cable
5
1
2
4 6
7
8
9
10
12
11
3
Network Cable
Reserve2–
Reserve2+
TxD –
TxD +
Reserve1–
Reserve1+
RJ45
Base Unit Surge Board
1
2
3
4
5
6
7
8
RxD –
RxD +
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CONFIDENTIAL
2.1.4.5 GPI cable
Customer’s UPS Connection place Base Unit
GND2 Dry Contact2
GPI2
GND1 Dry Contact1
GPI1
GND0 Dry Contact0
GPI0
2.1.4.6 Master/Slave cable
Master Base Unit Connection place Slave Base unit
Tx + Rx +
Tx – Rx –
Rx + Tx +
Rx – Tx –
Rx–
Rx+
Tx–
Tx+
Rx–
Rx+
Tx–
Tx+
Slave Base Unit Surge Board
Master Base Unit Surge Board
GND1
GPI1
GND2
GPI2
GND0
GPI0
Customer
s UPS Base Unit Surge Board
Dry Contact2
Dry Contact1
Dry Contact0
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CONFIDENTIAL
2.2 Specifications
2.2.1 Hardware specifications
Number of antennas 12
PA unit
390 (W) x 256 (D) x 550 (H)
Shape
Dimensions
Weight
A
pprox. 40kg/unit
450W
/
unit
Dimensions 665 (W) x 665 (D) x 900 (H)
Weight
A
pprox. 100 kg
GPS unit
Dimensions 115 (diameter) x 96 (H)
Weight
A
pprox. 0.55kg/unit
Network I/F
Installation environment
Operating temperature
100Base-TX (Options are available.)
Outdoor/Indoor
-20°C to +50°C
Power consumption
Base unit
Power consumption 600W
Power consumption 1.8 W/unit
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CONFIDENTIAL
2.2.2 LED indicators
2.2.2.1 PA unit
Unit Module LED Name Status Mean Comments
Off Power Off Ready for replacement
Amber Initializing/operation
suspended
Green Normal operation
PA Unit
PA Control
STATUS
Red Abnormal
2.2.2.2 Base unit
Unit Module LED Name Status Mean Comments
Off
Board is ready for
removal
Amber Initializing/operation
suspended
Green Normal operation
TRx
STATUS
Red Abnormal
Off
Board is ready for
removal
Amber Initializing
Green Normal operation
STATUS
Red Abnormal
Off Slave is operating
Amber Initializing
MASTER
Green Master is operating
Off Network is abnormal
Amber Initializing
MoNerd
NETWORK
Green Network is alive
Off
Board is ready for
removal
Amber Initializing
Green Normal operation
STATUS
Red Abnormal
Off Slave is operating
LoCal
MASTER
Green Master is operating
Off Abnormal Power Supply
STATUS
Green Normal operation
Off Power is abnormal POWER
Green Power is normal
Amber Initializing
Green Normal operation
Base Unit
FAN
STATUS
Red Abnormal
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CONFIDENTIAL
2.2.3 Accessories
2.2.3.1 PA unit
2.2.3.2 Base unit
2.2.4 Cable specification
Reference value of cable attenuation: FSJ1-50A Æ 0.277dB/m, FSJ2-50 Æ 0.191dB/m,
FSJ4-50B Æ 0.171dB/m, at 1.9GHz made by Andrew
Type of cable Purpose of use Specifications Q’ty
Antenna cable
From PA unit to
Antenna
Recommend the attenuation less than 1dB.
e.g. The cable equivalent to
FSJ2-50 Æ Length: within 5m
12
PU-BU RF cable
From Base unit to
PA unit
Keep the attenuation less than 13dB.
e.g. The cable equivalent to
FSJ1-50A Æ Length: within 46.5m
FSJ2-50 Æ Length: within 68m
FSJ4-50B Æ Length: within 76m
12
From PA unit to
Breaker
Copper-shielded cable (3 lines)
Cross-section: 1.25 - 2.0mm2
Diameter over jacket: 7 - 10.5mm
4
AC power cable
From Base unit to
Breaker
Copper-shielded cable (3 lines)
Cross-section: 1.25 - 2.5mm2
Diameter over jacket: 7-10.5mm
1
From Base unit to
PA unit
Star connection
Keep the attenuation less than 21dB.
Disparity of the longest cable and the shortest cable
is kept within 3dB in attenuation.
e.g. The cable equivalent to
FSJ1-50A Æ Length: within 75.5m
4
Daisy-chain connection
Keep the attenuation less than 15dB.
Disparity of the longest cable and the shortest cable
is kept within 3dB in attenuation.
e.g. The cable equivalent to
FSJ1-50A Æ Length: within 54m
2
Calibration cable
From PA unit to PA
unit
(Daisy-chain
connection only.)
Keep the attenuation less than 3dB.
e.g. The cable equivalent to
FSJ1-50A Æ Length: within 10.5m
2
Accessory name Quantity Purpose of use
Eyebolt M10
2
Fixed on the top of PA Unit and used for transporting or fixing the
main body.
Cap bolt M10 2 Fixed on the top of PA Unit and used for waterproof.
Accessory name Quantity Purpose of use
Eyebolt M12
4
Fixed on the top of Base Unit and used for transporting
or fixing the main body.
TNC terminating connector 4 To terminate the unconnected portion of calibration cable.
FAN tray fixing screw 6 Screw for fixing FAN tray
BU door key 2 Key for locking Base Unit door
L-shaped wrench for
hexagonal hole
1 For tightening or removing a Base panel fixing screw.
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CONFIDENTIAL
PA control cable
From Base unit to
PA unit
Copper-shielded twist pair cable (4 pairs or more)
Diameter: 0.5mm or 0.65mm
Length: within 75m
Diameter over jacket: 7-10.5mm
4
Network cable
From Base unit to
Ethernet Switch or
Router
Copper-shielded twist pair cable (4 pairs or more)
Diameter: 0.5mm or 0.65mm
Length: within 100m
Diameter over jacket: 7-10.5mm
2
GPS cable
From Base unit to
GPS unit
Copper-shielded twist pair cable (4 pairs or more)
The maximum allowable end to end resistance is
5.4 or less.
AWG24 (7/0.203) or AWG26 (7/0.16)
Diameter over jacket: 7-10.5mm
The example of reference: The case of 84.21
(AWG24)/km is 64m or 133.9 (AWG26)/km is 40m.
2
GPI cable From UPS to Base
unit
Copper-shielded twist pair cable (3pairs or more)
Diameter: 0.5mm or 0.65mm
Diameter over jacket: 7-10.5mm
Length: within 100m
1
Master/Slave
cable
From Master Base
unit to Slave Base
unit
Copper-shielded twist pair cable (3pairs or more)
Diameter: 0.5mm or 0.65mm
Diameter over jacket: 7-10.5mm
Length: within 100m
1
PA unit to Ground Soft copper twist cable of more than 6mm2
Reference resistance: Less than 3.1/km (at 70
degrees in Celsius)
4
BU unit to Ground Soft copper twist cable of more than 6mm2
Reference resistance: Less than 3.1/km (at 70
degrees in Celsius)
1
Ground cable
GPS unit to Ground Soft copper twist cable of more than 6mm2
Reference resistance: Less than 3.1/km (at 70
degrees in Celsius)
2
2.2.5 Other Parts specification
Type of parts Purpose of use Specifications Q’ty
N type RF connector PU-BU RF cable
Antenna cable
N type Male 24
12
TNC type connector Calibration cable TNC type Male 8
TNC type Terminator PA unit CAL port (CAL OUT) TNC type Male 4
232D connector PA Control cable at both sides
Network cable in surge box of BU
GPS cable in surge box of BU
GPI cable in surge box of BU
M/S cable in surge box of BU
232D-02S1B-DA2 24
8
8
3
2
MMP connector
Plug
Contact
Boot
GPS cable at GPS side
Deutch
Plug: MMP26C-2212S1
Contact: 6862-201-22278,12pcs
Boot: 6810-204-2001
2
2
2
Surge Arrester
Equipment surge protection
N type Female/Female
λ /4 Stub type Arrester or
Gas Tube type Arrester
12
“O” shaped type
Terminal
Grounding cable for PA unit
Grounding cable for Base unit
Grounding cable for GPS unit
M6 type
M6 type
M6 type
4
1
2
GPS mount adaptor
Fixing and Grounding for GPS
Specification of a screw part:
1.00-14UNS-2A
2
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CONFIDENTIAL
Mounting pipe length: 520mm
(Including screw part)
Mounting pipe inside diameter:
20.5-21.5mm
Hot-dip galvanized steel
With Hex bolt (M6)
2.2.6 Handling of cables
Install cables considering the possible flexibility, pressure resistibility, and stretching
strength. Strength of the coaxial cable is shown below.
Items FSJ1-50A FSJ2-50 FSJ4-50B
Minimum Bending Radius More than 25mm More than 25mm More than 32mm
Tensile Strength 68kg 95kg 80kg
Bending Moment 1.1Nm 2.3Nm 2.7Nm
Others Don’t bend Cable below –10 degrees in Celsius
2.2.7 Tightening Torque
Appropriate cable diameters and Tightening Torque for Bushes and Connectors on each side
are shown below.
Connecting point Suitable diameter of the
Cable
Tightening Torque of the
Bush and Connector
Antenna connector (N type Connector) 1.96 to 2.94 Nm
Bush for AC power cable 7 to 10.5mm 2.45Nm
Bush for Network cable 7 to 10.5mm 2.45Nm
Bush for PA Control cable 7 to 10.5mm 2.45Nm
Bush for GPS cable 7 to 10.5mm 2.45Nm
Bush for GPI cable 7 to 10.5mm 2.45Nm
Bush for M/S cable 7 to 10.5mm 2.45Nm
PU-BU RF cable (N type connector) 1.96 to 2.94 Nm
Calibration cable (TNC type connector) 0.45 to 0.69Nm
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2.2.8 Tools
Tool name Specifications Purpose of use
Monkey wrench Max. opening 24 mm For fixing hex nuts, etc.
Torque wrench
Adjustable type torque wrench
1-5Nm
5-25Nm
Torque driver 1-5Nm
For torque control.
Flat-head screwdriver
3 mm wide
For holding the cage clamp when
connecting power cable to power
terminal board.
Cross-shaped (Philips) screwdriver
No.1
No.2
No.3
For tightening or removing
Cross-shaped (Phillips) screw.
3mm
For opening or closing the Lid of
PA Unit.
Allen wrench
10mm
For removing or installing Allen
screws of Base Unit.
Hex lobe screwdriver T30
T30
For tightening or removing a
tamper proof screw.
L-shaped wrench for hexagonal hole
Size 3 for M5
For tightening or removing a
Base panel fixing screw. *1
Wrist strap F-50
F-50
For preventing static electricity
when inserting or removing a
board.
M22520/7-01
M22520/7-06
GPS connector assembly tools
Crimping tool DANIELS MH860
Positioner
Insertion and removal tool M81969/14-01
For caulking MMP connector.
Soldering iron 150W Soldering a TNC type connector.
*1
Base panel fixing screw
Base unit
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3 Installation
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3.1 Installing Antenna System (Example)
Assemble the antenna base (H-section steel) on the place determined by site survey.
3.1.1 Installing the antenna pole
1) Fix the antenna base (H-section steel) by using bolts.
2) Fixing the antenna pole to the antenna base (H-section steel)
3) Fixing the mast to the antenna pole
Fix the H-section steel with bolts.
H-section steel
Fix it to the H-section steel
with bolts
Fix the mast with bolts.
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4) Fixing the antenna arm to the mast
5) Fixing the antenna to the antenna arm
Fix with a reinforcing plate and bolts.
Top view
Fix the antenna with bolts.
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6) Connecting the surge arrester
Connect the surge arrester between the antenna cable connector and the extension
cable.
ÆTightening torque: 1.96 to 2.94Nm
7) Waterproof treatment for the surge arrester connector
8) Connecting the surge arrester to the ground
Install a ground bar or use the grounding directly through the cable.
Ground bar
Fix the surge arrester to the ground bar.
Cold shrinkable tube
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3.2 Installing PA Unit
3.2.1 Mounting and removing the Eyebolt
1) Mounting the Eyebolt
Insert the Eyebolt to the screw hole for the Eyebolt (M10) at the upper portion of the
PA Unit and turn it to fix.
Eyebolt (M10)ÆTightening torque: 4.41 to 5.39Nm
Cap boltÆ Tightening torque: 2 to 3Nm
Screw hole for fixing the Eyebolt (M10) or
Cap bolt (M10)
ANT1
ANT2ANT3
Eyebolt (M10)
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3.2.2 Mounting the PA Unit (Example)
When fixing the PA Unit to a fitting, tighten it with a specified torque. (Seven or more
threads of the bolt must screw in and fit to the thread on the PA unit effectively.)
Recommending bolt: Hot-dip galvanized steel or Dacrotized finishing.
Tightening with excessive torque may cause broken screw.
1) Fixing the PA Unit and a mounting bracket
Put the PA Unit with its front down to prevent damage to the connector and attach the
mounting bracket.
Fix it with bolts supplied with the mounting bracket
for the PA Unit.
ÆTightening torque: 22Nm to 27Nm
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2) Fixing the mounting bracket
Attach the U bolts of the mounting bracket to the fixing plate and fix it with nuts.
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3.2.3 Connecting cables
3.2.3.1 Connecting the AC power supply cable
Before connecting the AC power supply cable, verify that the supply voltage of the
power distributor is within the range of ±15% of the nominal voltage.
And distribute the AC power supply cable so that the power for each PA unit can be
turned on or off separately through the breaker.
1) Opening/closing the Lid of the PA Unit
Loosen the hexagonal recessed bolts (2 places) on the Lid using a hexagon wrench (3
mm) and open it
2) Removing the cable clamp for the AC power supply cable
Remove the cable clamp fixing screw (M4) with a “+” screwdriver and remove the cable
clamp.
Lid open/close screw
ÆTightening torque: 1.5Nm
L
N
FS
+ RXD
+ TXD
+
Cable clamp
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3) Removing the dome nut for the AC power supply cable
Remove the dome nut for the AC power supply cable at the bottom of the PA Unit and
remove the cable packing.
4) Pre-finishing the AC power supply cable
Put the AC power supply cable through the cold shrinkable tube, the dome nut and the
cable packing in this order.
(See the following figure for the direction.)
Peel the sheath off the AC power supply cable to expose the conductor.
ÆPeeling length of the sheath: 15 to 20 cm
15 to 20cm
Cold shrinkable tube Dome nut Cable packing
Lid side
Cable packing
Dome nut
RF3 RF2 RF1
CAL OUT CAL IN
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Loosen the copper shield and coil it around the conductor at the shield root part by
more than 4 turns.
Peel the sheath off 3 conductors.
Æ Peeling length of the sheath: 10 mm
5) Inserting the AC power supply cable
Insert the AC power supply cable into the Lid through the bushing for the AC power
supply cable.
RF3 RF2 RF1
CAL OUT CAL IN
10mm
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6) Fixing the cable clamp
Position the copper shield of the cable at the arrow marking in the following figure and
fix it with the cable clamp and a fixing screw (M4).
ÆTightening torque: 1.5N·m
7) Tightening the dome nut
After inserting the cable packing, tighten the dome nut by hand and then retighten it
using a torque wrench.
ÆTightening torque: 2.45Nm
Dome nut
Fixing part of bushing
L
N
FS
+ RXD
+ TXD
+
Fix the cable clamp with a fixing screw
(M4).
The attachment position of a cable clamp
changes by the diameter of a cable.
When the diameter of a cable is from6 to
8mm, it attaches at A-side.
When the diameter of a cable is from7 to
10.5mm, it attaches at B-side.
A
B
B
A
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8) Connecting the AC power supply cable to the AC terminal
With keeping the AC terminal depressed by a finger, insert the AC power supply cable
and then release the finger.
After insertion, verify that the cable cannot be removed.
In the following figure, Neutral, Ground and Live cables are arranged in this order
from the right side.
9) Treatment of the AC power supply cable
Form the AC power supply cable along the inside of the Lid so that the Lid does not
clip the cable.
L
Press the AC terminal with a finger.
Insert the AC power supply cable until it reaches the far end of the inlet port.
N
FS
+
RXD
+
TXD
+
N
L
FS
+ RXD
+
TXD
+
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10) Waterproof treatment for the AC power supply cable connector
Cover the cold shrinkable tube over the root of the connector and shrink it.
3.2.3.2 Connecting the grounding cable.
Crimp the grounding cable (More than 6mm2) to the terminal and fix the bolt (M6) with
it.
Æ Tightening torque: 3.29 to 4.12Nm
Cold shrinkable tube
Clamping the lug
A
fter removing a Hex bolt at once, a
ground cable is fixed with a Hex bolt.
Bottom View
Grounding cable (More than 6mm2)
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3.2.3.3 Connecting the PA control cable
1) Removing the cable clamp for the PA control cable
Remove the cable clamp fixing screw with a “+” screwdriver and remove the cable
clamp.
2) Removing the dome nut for the PA control cable
Remove the dome nut for the PA control cable at the bottom of the PA Unit and remove
the cable packing.
Cable packing
Dome nut
N
L
FS
+
RXD
+
TXD
+
Cable clamp
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3) Pre-finishing the PA contorol cable
Put the PA control cable through the cold shrinkable tube, the dome nut and the cable
packing in this order.
(See the following figure for the direction.)
Peel the sheath off the PA control cable to expose the conductor.
ÆPeeling length of the sheath: 10 to 15 cm
Loosen the copper shield and coil it around the conductor at the shield root part by
more than 4 turns.
For PA control cable, 3 pairs of twisted-pair cables are used.
If there are 4 pairs of cables, coil the cable with a tape to prevent the extra one pair
from short circuit.
Cold shrinkable tube Dome nut Cable packing
Lid side
10 to 15cm
Coil the cable with a tape to
prevent from short circuit.
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4) Inserting the PA control cable
While bending the PA control cable along the direction of the Lid interior beforehand,
insert it into the Lid inside.
5) Unstitch the conductor (3 pairs = 6 conductors) and connect them to the specified
crimping connector.
For the assignment of inserting conductor 1pin and 2pin to the connector, refer to the
following figure.
Press the connector while inserting the conductors to the far end.
Recommended connector: Press-contact connector manufactured by DDK (DDK Ltd.)
Product No: 232D-02S1B-DA2
TXD+ 2 pin Green
TXD- 1 pin Green/spiral
RXD+ 2 pin Orange
RXD- 1 pin Orange/spiral
FS+ 2 pin Blue
FS- 1 pin Blue/spiral
Twisted pair line Press-contact connector
2 pin
1 pin
Before pressing
A
fter pressing
Press
1 pin
2 pin
2 pin
2 pin
1 pin
1 pin
Press connector while the conductors are inserted to the far end.
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6) Fixing the cable clamp
Position the copper shield part of the cable at the arrow marking in the following
figure and fix it with the cable clamp and fixing screw (M4).
ÆTightening torque: 1.5Nm
Note)
If fixing of the shield is incomplete, noise may be caused during communication or
interference may be caused on other electronic devices.
7) Tightening the dome nut
After inserting the cable packing, tighten the dome nut by hand and then retighten it
using a torque wrench.
ÆTightening torque: 2.45Nm
Dome nut
Fixing part of bushing
Fix the cable clamp with a fixing screw (M4).
The attachment position of a cable clamp changes by the diameter of a cable.
When the diameter of a cable is from 6 to 8mm, it attaches at A-side.
When the diameter of a cable is from 7 to 10.5mm, it attaches at B-side.
A
B
A
B
FS RXD TXD
+ – + – +
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8) Inserting the press-contact connector
Insert the press-contacted connector to the (232D) connector for the PA control in the
Lid.
9) Treatment of the PA control cable
Form the AC power supply cable along the inside of the Lid so that the Lid does not
clip the cable.
10) Waterproof treatment for the PA control cable
Cover the cold shrinkable tube over the root of the connector and shrink it.
+-
FS RXD TXD
+-+-
Cold shrinkable tube
FS RXD TXD
– + – + – +
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3.2.3.4 Connecting the antenna cable
1) Pre-finishing the antenna cable
Put antenna cable through cold shrinkable tube.
(See the following figure for the direction.)
2) Removing the antenna connector dustproof cap
Remove the dustproof cap attached to the antenna connector of the PA unit.
3) Connecting the antenna cable to PA unit
Mate each antenna cable with the antenna connector of the PA unit and fasten them
by hand, and then tighten them with the torque specified for the connector by using a
torque wrench.
ÆTightening torque: 20 to 25Nm
(Note)
Insert the connector straightforward. Excessive force to the connector may cause
connector broken.
Dustproof cap
Cold shrinkable tube
N connector
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4) Waterproof treatment for the antenna cable connector
Cover the cold shrinkable tube over the root of the connector and shrink it.
5) Forming the antenna cable
After all the cables have been connected, form the cable so that no permanent load is
applied to the junction of the antenna connector, the surge arrester and the antenna
cable.
In addition, fix cables between antenna and PA unit to the structure at some portions
with fixing bands so as not to prevent cables from drooping or swinging.
Form the cable so that no load is applied to the
j
unction. Fix cables with fixing bands.
Cover the root
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3.2.3.5 Connecting the Calibration cable
There are two methods in connecting the Calibration cable.
3.2.3.5.1 Star connection
Refer to figure of 2.1.3.2.1
1) Connecting to the PA Unit 1
Remove the dustproof caps attached to CAL IN and CAL ONT of the PA Unit 1.
2) Pre-finishing the Calibration cable (CAL IN)
Put the Calibration cable through the cold shrinkable tube.
(See the following figure for the direction.)
3) Connecting to CAL IN
Connect the Calibration cable to the connector of CAL IN on the PA Unit 1 with the
specified torque.
ÆTightening torque: 0.45 to 0.69Nm
Cold shrinkable tube
TNC connector
RF3 RF2 RF1
CAL OUT CAL IN
Dustproof cap
PA unit 1
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4) Waterproof treatment of the Calibration cable (CAL IN)
Cover the cold shrinkable tube over the root of the connector and shrink it.
5) Mounting the terminator
Mount the terminator to CAL OUT of the PA Unit 1.
ÆTightening torque: 0.45 to 0.69Nm
6) Waterproof treatment of the terminator
Wind a self-fusing rubber tape and then a vinyl tape around the terminator.
RF3 RF2 RF1
CAL OUT CAL IN
Cover it over the root o
f
the connector.
RF3 RF2 RF1
CAL OUT CAL IN
Cover it over the root o
f
the connector.
RF3 RF2 RF1
CAL OUT CAL IN
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7) Connecting to PA Unit 2, PA Unit 3 and PA Unit 4
Connect to PA Unit 2, 3 and 4 as same sequence as of PA Unit 1.
8) Routing the Calibration cable
Lead the Calibration cable from CAL IN of the PA Unit 1, 2,3 and 4 to the location of
the Base Unit determined by the site survey.
3.2.3.5.2 Daisy-chain connection
Refer to figure of 2.1.3.2.2
1) Connecting to the PA unit 1
Remove the dustproof cap attached to the CAL IN and CAL ONT of the PA Unit 1.
2) Pre-finishing the Calibration cable (CAL IN)
Put the Calibration cable through the cold shrinkable tube.
(See the following figure for the direction.)
Cold shrinkable tube
TNC connector
Dustproof cap
PA Unit 1
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3) Connecting to CAL IN
Connect the Calibration cable to the connector of CAL IN on the PA Unit 1 with the
specified torque.
ÆTightening torque: 0.45 to 0.69Nm
4) Waterproof treatment of the Calibration cable (CAL IN)
Cover the cold shrinkable tube over the root of the connector and shrink it.
5) Pre-finishing the Calibration cable (CAL OUT)
Put Calibration cable through the cold shrinkable tube.
(See the following figure for the direction.)
Cold shrinkable tube
TNC connector
RF3 RF2 RF1
CAL OUT CAL IN
Cover it over the root o
f
the connector.
RF3 RF2 RF1
CAL OUT CAL IN
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6) Connecting to CAL OUT
Connect the Calibration cable to the connector of CAL OUT on the PA Unit 1 with the
specified torque.
ÆTightening torque: 0.45 to 0.69Nm
7) Waterproof treatment of the Calibration cable (CAL OUT)
Cover the cold shrinkable tube over the root of the connector and shrink it.
8) Connecting to the PA Unit 2
Remove the dustproof caps attached to the CAL IN and CAL ONT of the PA Unit 2.
RF3
RF2
RF1
CAL OUT
CAL IN
Cover it over the root
of the connector.
RF3 RF2 RF1
CAL OUT CAL IN
Dustproof cap
PA Unit 2
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9) Pre-finishing the Calibration cable (CAL OUT cable from the PA unit 1)
Put the Calibration cable from CAL OUT on the PA Unit 1 through the cold shrinkable
tube.
(See the following figure for the direction.)
10) Connecting the Calibration cable
Connect the Calibration cable to the connector of CAL IN on the PA Unit 2 with the
specified torque.
ÆTightening torque: 0.45 to 0.69Nm
11) Waterproof treatment of the Calibration cable (CAL IN)
Cover the cold shrinkable tube over the root of the connector and shrink it.
Cold shrinkable tube
TNC connector
RF3 RF2 RF1
CAL OUT CAL IN
Cover it over the root
of the connector.
RF3 RF2 RF1
CAL OUT CAL IN
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12) Mounting the terminator
Mount the terminator to CAL OUT of the PA Unit 2.
ÆTightening torque: 0.45 to 0.69Nm
13) Waterproof treatment of the terminator
Wind a self-fusing rubber tape and then a vinyl tape around the terminator.
14) Connecting to the PA unit 3, the PA unit 4
Connect to the PA Unit 3 as same sequence as of the PA Unit 1, and connect the PA
Unit 4 as same sequence as of the PA Unit 2.
15) Routing the Calibration cable
Lead the Calibration cable from CAL IN of the PA Unit 1 and the PA Unit 3 to the
location of the Base Unit determined by the site survey.
RF3 RF2 RF1
CAL OUT CAL IN
RF3 RF2 RF1
CAL OUT CAL IN
Cover it over the root o
f
the connector.
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3.2.3.6 Connecting the PU-BU RF cable
Connect the PU-BU RF cable to the PA Units, from the PA Unit 1 to the PA unit 4, in
order.
1) Pre-finishing the PU-BU RF cable
Put PU-BU RF cable through cold shrinkable tube.
(See the following figure for the direction.)
2) Connecting the PU-BU RF cable
Connect the PU-BU RF cable to the connector of the RF 1 on PA Unit 1 with the
specified torque.
ÆTightening torque: 1.96 to 2.94Nm
3) Waterproof treatment of the PU-BU RF cable
Cover the cold shrinkable tube over the root of the connector and shrink it.
Cold shrinkable tube
N type connector
RF3 RF2 RF1
CAL OUT CAL IN
Cover it over
the root of the
connector.
RF3 RF2 RF1
CAL OUT CAL IN
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4) Pre-finishing the PU-BU RF cable
Put the PU-BU RF cable through the cold shrinkable tube.
(See the following figure for the direction.)
5) Connecting the PU-BU RF cable
Connect the PU-BU RF cable to the connector of RF 2 on the PA Unit 1 with the
specified torque.
ÆTightening torque: 1.96 to 2.94Nm
6) Waterproof treatment of the PU-BU RF cable
Cover the cold shrinkable tube over the root of the connector and shrink it.
Cold shrinkable tube
N type connector
RF3 RF2 RF1
CAL OUT CAL IN
Cover it over
the root of the
connector.
RF3 RF2 RF1
CAL OUT CAL IN
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7) Pre-finishing the PU-BU RF cable
Put the PU-BU RF cable through the cold shrinkable tube.
(See the following figure for the direction.)
8) Connecting the PU-BU RF cable
Connect the PU-BU RF cable to the connector of RF 3 on the PA Unit 1 with the
specified torque.
ÆTightening torque: 1.96 to 2.94Nm
9) Waterproof treatment of the PU-BU RF cable
Cover the cold shrinkable tube over the root of the connector and shrink it.
10) Connecting to the PA Unit 2, the PA Unit 3 and the PA Unit4
Connect to the PA Unit 2, 3 and 4 as same sequence as of the PA Unit 1.
11) Routing the PU-BU RF cable
Lead the PU-BU RF cable from RF 1 to RF 3 on each PA Unit, PA Unit 1, 2, 3 and 4 to
the location of the Base Unit determined by the site survey.
Cold shrinkable tube
N type connector
Cover it over the root
of the connector.
RF3 RF2 RF1
CAL OUT CAL IN
RF3 RF2 RF1
CAL OUT CAL IN
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3.3 Installing the GPS Unit
As for MMP connector assembling, refer to the manual “Assembly instructions by DEUTSCH
ECD”.
1) Put the GPS cable through the mount adaptor
2) Put the GPS cable through the cold shrinkable tube
3) Connect the GPS Unit cable connector and the GPS cable connector
4) Cover the connector with the cold shrinkable tube and then shrink it
The cold shrinkable tube is made smaller than the diameter of inner of the mount
adapter.
5) The length of the cable is measured
Mount adaptor GPS cable with MMP connector
(460mm)
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6) Peel the sheath off 30mm in width
7) Screw the mount adaptor to the GPS Unit
8) Place FG fixing plate on the outer conductor and tighten screw on the mount
adaptor.
ÆTightening torque: 0.88 to 1.08Nm
(460mm)
(30mm)
FG fixing plate
Outer conductor
Not turn GPS unit, but turn Mount Adaptor, because the cable twists.
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9) Waterproofing
10) Mount adaptor is fixed
Temporarily fix the mount adaptor to the place determined by site survey.
At the same time, connect a grounding cable to the mount adaptor.
Spread out silicone caulking material
around the connection part of a GPS
unit and a Mount adaptor one turn.
Waterproofing at the opening of a mount
adaptor is carried out in the following
procedure so that outer conductor and FG
fixing plate may not corrode.
Silicone caulking material
1
Cover the outer conductor and FG fixing plate with silicone caulking
material and airtight processing is completely carried out so that no air
penetrates into it.
2
A
butyl rubber tape and a vinyl tape or a butyl rubber tape and a cold
shrinkable tube are wrapped, and waterproofing processing is carried
out completely.
Temporarily fix
Waterproofing processing is carried out to a
mount adaptor after attaching a ground cable
using a self-fusing tape and a vinyl tape.
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11) Adjust it perpendicularity to be within 4.5°.
12) Firmly tighten the mount adaptor
13) Routing the GPS cable
Lead the GPS cable to the location of the Base Unit determined by the site survey.
Within 4.5°
Fixed here
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3.4 Installing the Base Unit
Install the Base Unit at the place determined by the site survey.
3.4.1 Mounting and removing the Eyebolt
1) Removing the top plate
Open the front door and remove 2 crosshead screws (M6) fixing the top plate with a
crosshead screwdriver. (See the following figure.)
2) Slide the top plate toward front side and lift it. (note: bottom side of the top plate is
connected with chassis of the Base Unit by a grounding cable.)
3) Remove a screw (M6) of either the top plate or the Base Unit. Never lose a removed
screw.
Crosshead screws (M6)
ÆTightening torque: 2Nm
Grounding cable
Screw connecting grounding cable
ÆTightening torque: 1.5Nm
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4) Remove 4 hexagon socket bolts (M12) from the top plate with hex wrench (10mm).
ÆTightening torque: 5Nm
(Note)
When the Eyebolts are not used, hexagon socket bolts must be attached instead of the
Eyebolts. Be sure not to let it be lost.
5) Mounting the Eyebolt
Mount the Eyebolt (M12) where the hexagon socket bolt was located.
6) Removing the Eyebolt(M12)
To remove the Eyebolt (M12), reverse the procedure for mounting.
Eyebolt (M12)
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3.4.2 Fixing the Base Unit
1) Before installation, remove all panel covers for the mounting base and the Base
Unit.
When fixing the Panel cover
tighten screws
ÆTightening torque: 1.5Nm
2) Fixing the mounting base to anchor bolts
Fix 4 corners of the mounting base to the anchor bolts.
3) Fixing the Base Unit
Mount the Base Unit on the mounting base and fix 4 corners of the Base Unit with flat
washer, spring washer and bolts.
Remove screws, then covers
Panel cover
Recommendation bolt: M12 (hot- dip galvanized steel)
Recommendation tightening torque: 19.6Nm
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3.4.3 Connecting cables
Lead all the cables to the mounting base.
And open the front door.
3.4.3.1 Connecting the AC power supply cable
1) Removing the AC terminal cover
Loosen a fixing screw and remove the AC terminal cover.
Cable
A
C terminal cover
Screw
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2) Removing the dome nut for th AC power supply cable
Remove the dome nut for the AC power supply cable at the bottom of the Base Unit
and remove the cable packing.
3) Pre-finishing the AC power supply cable
Put the AC power supply cable through the cold shrinkable tube, the dome nut and the
cable packing in this order.
(See the following figure for the direction.)
Peel the sheath off the AC power supply cable to expose the conductor.
Peeling length of the sheath: 15 to 20 cm
A
C INPUT
Cable packing
Dome nut
15 to 20cm
Cold shrinkable tube Dome nut Cable packing
Lid side
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Loosen the copper shield and coil it around the conductor at the shield root part by
more than 4 turns.
Peel the sheath off the 3 conductors.
Æ Peeling length of the sheath: 10 mm
4) Inserting the AC power supply cable
Insert the AC power supply cable through the bushing into the Base unit.
10mm
A
C INPUT
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5) Fixing the cable clamp
Detach the one of the screws fixing the cable clamp for the AC power supply cable and
then loosen the other screw. Adjust the cable clamp to the copper shield and tighten
the screw again so as to make no space between the copper shield and the cable clamp.
ÆTightening torque: 1.5Nm
Note)
If fixing of the shield is incomplete, noise may be caused during communication or
interference may be caused on other electronic devices.
6) Connecting the AC power supply cable to the AC terminal
With keeping the red arrowed point of the AC terminal depressed by a flat-head
screwdriver (width: 3mm), insert the AC power supply cable and then release the
cabinet screwdriver.
After insertion, verify that the cable cannot be removed.
2 contact ports for each cable, Live, Neutral and GND, are available.
Cable clam
p
Screw
L
L
N
N
ETH
FG
Live GND
Neutral
Flat-head screwdriver depress here
A
C power supply cable insert here
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7) Tightening the dome nut
After inserting the cable packing, tighten the dome nut by hand and then retighten it
with a torque wrench.
Æ Tightening torque: 2.45Nm
8) Waterproof treatment for the AC power supply cable
Cover the cold shrinkable tube over the root of the connector and shrink it.
9) Mounting the AC terminal cover
Mount the AC terminal cover and tighten the AC terminal fixing screw with a specified
torque.
Æ Tightening torque: 1.5Nm
Dome nut Fixing part of bushing
Cold shrinkable tube
Holes for AC terminal cover
Screw
A
C terminal cover
Put the hook into the hole
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3.4.3.2 Fixing the grounding cable
1) Removing the bolt
Remove the bolt (M6) for fixing the grounding cable at the bottom of the Base Unit.
2) Fixing the grounding cable
Crimp the grounding cable (More than 6 mm2) to the terminal and fix the bolt (M6)
with it.
Æ Tightening torque: 1.5Nm
3) Connect the grounding cable to the place determined by the site survey.
Press the terminal with tool
Front side Grounding cable is fixed here
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3.4.3.3 Connecting the PA control cable
1) Removing the dome nut for the PA control cable
Remove the dome nut for the PA control cable at the bottom of the Base Unit and
remove the cable packing.
2) Pre-finishing the PA control cable
Put the PA control cable through the cold shrinkable tube, the dome nut and the cable
packing in this order.
(See the following figure for the direction.)
Peel the sheath off the PA control cable to expose the conductor.
ÆPeeling length of the sheath: 10 to 15 cm
Cable packing
Dome nut
PA
Unit1
Cold shrinkable tube Dome nut Cable packing
Lid side
10 to 15cm
PA
Unit4
PA
Unit3
PA
Unit2
PA
Unit1
PA Control
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Loosen the copper shield and coil it around the conductor at the shield root part by
more than 4 turns.
For the PA control cable, 3 pairs of twisted-pair cables are used.
If there are 4 pairs of cables, coil the cable with a tape to prevent the extra one pair
from short circuit.
3) Removing the surge box cover for the PA control cable
Loosen 2 fixing screws and remove the surge box cover for the PA control cable.
4) Removing the cable clamp for the PA control cable
Remove 2 screws fixing the cable clamp for the PA control cable and then remove the
cable clamp.
Coil the cable with a tape to
prevent from short circuit.
Surge box cover
Screw
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5) Inserting the PA control cable
Insert the PA control cable through the bushing into the Base Unit.
6) Fixing the cable clamp for the PA control cable
Adjust the cable clamp to the copper shield and fix the screws so as to make no space
between the copper shield and the cable clamp.
ÆTightening torque: 1.5Nm
7) Press-connecting 232D connector
Unstitch the conductor (3 pairs = 6 conductors) and connect them to the specified
crimping connector.
For the assignment of inserting conductor’s 1pin and 2pin to the connector, refer to the
following figure.
Press the connector while inserting the conductors to the far end.
Recommended connector: Press-contact connector manufactured by DDK (DDK Ltd.)
Product No: 232D-02S1B-DA2
Frame- 2 pin Blue / spiral
Frame+ 1 pin Blue
Rx- 2 pin Green / spiral
Rx+ 1 pin Green
Tx- 2 pin Orange / spiral
Tx+ 1 pin Orange
Twisted pair line Press-contact connector
2 pin
1 pin
Before pressing
A
fter pressing
Press
PA
Unit 1
Press connector while the conductors are inserted to the far end.
1 pin
2 pin
2 pin
2 pin
1 pin
1 pin
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8) Connecting the press-contact connector to the surge board
Insert the press-contacted connector to the (232D) connector on the surge board.
9) Forming the conductor
Form the conductor not to extend over the surge box.
10) Tightening the dome nut
After inserting the cable packing, tighten the dome nut by hand and then retighten it
using a torque wrench.
ÆTightening torque: 2.45Nm
11) Waterproof treatment for the PA control cable
Cover the cold shrinkable tube over the root of the connector and shrink it.
Dome nut Fixing part of bushing
Cold shrinkable tube
Tx
Tx+
Rx
Rx+
Frame
Frame+
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12) Apply the above PA control cable connecting steps for PA1 through PA4.
13) Mounting the surge box cover
Mount the surge box cover and tighten the surge box cover fixing screw with a
specified torque.
Æ Tightening torque: 1.5 Nm
Screw
Surge box cover
Put the cover in the hole
Holes for surge box cover
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3.4.3.4 Connecting the GPS cable
1) Removing the dome nut for the GPS cable
Remove the dome nut for the GPS cable at the bottom of the Base Unit and remove the
cable packing.
2) Pre-finishing the GPS cable
Put the GPS cable through the cold shrinkable tube, the dome nut and the cable
packing in this order.
(See the following figure for the direction.)
Peel the sheath off the PA control cable to expose the conductor.
ÆPeeling length of the sheath: 10 to 15 cm
Cable packing
Dome nut
GPS1
10 to 15cm
Cold shrinkable tube Dome nut Cable packing
Lid side
GPS1
GPS2
GPS
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Loosen the copper shield and coil it around the conductor at the shield root part by
more than 4 turns.
3) Removing the surge box cover for the GPS cable
Loosen 2 fixing screws and remove the surge box cover for the GPS cable.
4) Removing the cable clamp for the GPS cable
Remove 2 screws fixing the cable clamp for the GPS cable and then remove the cable
clamp.
Surge box cover
Screw
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5) Inserting the GPS cable
Insert the GPS cable through the bushing into the Base Unit.
6) Fixing the cable clamp for th GPS cable
Adjust the cable clamp to the copper shield and fix the screws so as to make no space
between the copper shield and the cable clamp.
ÆTightening torque: 1.5Nm
7) Press-connecting 232D connector
Unstitch the conductor (4 pairs = 8 conductors) and connect them to the specified
crimping connector.
For the assignment of inserting conductor’s 1pin and 2pin to the connector, refer to the
following figure.
Press the connector while inserting the conductors to the far end.
Recommended connector: Press-contact connector manufactured by DDK (DDK Ltd.)
Product No: 232D-02S1B-DA2
GND 2 pin Brown
+12V 1 pin Brown/spiral
RxD- 2 pin Blue
RxD+ 1 pin Blue/spiral
TxD- 2 pin Orange
TxD+ 1 pin Orange/spiral
1PPS- 2 pin Green
1PPS+ 1 pin Green/spiral
Twisted pair line Press-contact connector
2 pin
1 pin
Before pressing
A
fter pressing
Press
GPS1
1 pin
2 pin
1 pin
2 pin
1 pin
2 pin
1 pin
2 pin
Press connector while the conductors are inserted to the far end.
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8) Connecting the press-contact connector to the surge board
Insert the press-contacted connector to the (232D) connector on surge board.
9) Forming the conductor
Form the conductor not to extend over the surge box.
10) Tightening the dome nut
After inserting the cable packing, tighten the dome nut by hand and then retighten it
using a torque wrench.
ÆTightening torque: 2.45Nm
11) Waterproof treatment for the PA control cable
Cover the cold shrinkable tube over the root of the connector and shrink it.
Dome nut Fixing part of bushing
Cold shrinkable tube
Note)
The color of cables in the left photo defers from
the table in “3.4.3.47) Press-connecting 232D
connector”.
1PPS–
1PPS+
GND
+12V
TxD–
TxD+
RxD–
RxD+
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12) Apply the above GPS cable connecting steps for GPS1 through GPS2.
13) Mounting the surge box cover
Mount the surge box cover and tighten the surge box cover fixing screw with a
specified torque.
Æ Tightening torque: 1.5Nm
Note)
The color of cables in the left photo defers from
the table in “3.4.3.47) Press-connecting 232D
connector”.
Note)
The color of cables in the left photo defers from
the table in “3.4.3.47) Press-connecting 232D
connector”.
Holes for surge box cover
Surge box cover
Screw
Put the cover in the hole
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3.4.3.5 Connecting the Calibration cable
There are two methods in connecting the Calibration cable.
3.4.3.5.1 Star connection
Refer to figure of 2.1.3.2.1
1) Removing the dustproof cap
Remove the dustproof cap attached to CAL1, 2, 3 and 4 at the bottom of the Base Unit.
2) Pre-finishing the Calibration cable
Put the Calibration cable from the PA unit 1 through the cold shrinkable tube.
(See the following figure for the direction.)
3) Connecting to CAL connector
Connect the Calibration cable to the connector of CAL1 on the Base Unit with the
specified torque.
ÆTightening torque: 0.45 to 0.69Nm
Cold shrinkable tube
TNC connector
CAL1
CAL1
CAL2
CAL3
CAL4
Calibration
CAL1
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4) Waterproof treatment of the Calibration cable
Cover the cold shrinkable tube over the root of the connector and shrink it.
5) Connecting to CAL2, CAL3 and CAL4
Connect to CAL2, 3 and 4 as same sequence as of CAL1.
CAL1
Cover it over the root o
f
the connector.
CAL1
CAL
CAL3
CAL4
Calibration
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3.4.3.5.2 Daisy-chain connection
Refer to figure of 2.1.3.2.2
1) Removing the dustproof caps
Remove the dustproof cap attached to CAL1, 2, 3 and 4 at the bottom of the Base Unit.
2) Pre-finishing the Calibration cable from the PA Unit 1
Put the Calibration cable from the PA Unit 1 through the cold shrinkable tube.
(See the following figure for the direction.)
3) Connecting to CAL1
Connect the Calibration cable to the connector of CAL1 on the Base Unit with the
specified torque.
ÆTightening torque: 0.45 to 0.69Nm
CAL1
Cold shrinkable tube
TNC connector
CAL1
CAL1
CAL2
CAL3
CAL4
Calibration
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4) Waterproof treatment of the Calibration cable
Cover the cold shrinkable tube over the root of the connector and shrink it.
5) Connecting to CAL3
Connect the Calibration cable from PA Unit 3 to CAL3 as same sequence as of CAL1.
6) Mounting the terminator to CAL2
Mount the terminator to CAL2 on the Base Unit.
ÆTightening torque: 0.45 to 0.69Nm
CAL2
CAL1
Cover it over the root o
f
the connector.
CAL1
CAL2
CAL3
CAL4
Calibration
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7) Waterproof treatment of the terminator
Wind a self-fusing rubber tape and then a vinyl tape around the terminator.
8) Connecting the terminator to CAL4
Connect the terminator to CAL4 as same sequence as of CAL2.
Cover it over the root of the connector.
CAL2
CAL1
CAL2
CAL3
CAL4
Calibration
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3.4.3.6 Connecting the PU-BU RF cable
Connect the PU-BU RF cable of the PA unit, from PA unit 1 to PA unit 4, in order.
1) Removing the dustproof cap
Remove the dustproof cap attached to RF1, 2 and 3of the PA Unit 1, 2, 3 and 4 at the
bottom of the Base Unit.
2) Pre-finishing the PU-BU RF cable
Put the PU-BU RF cable from RF1 of the PA Unit 1 through the cold shrinkable tube.
(See the following figure for the direction.)
3) Connecting the PU-BU RF cable
Connect the PU-BU RF cable to the connector of RF1 on the Base Unit with the
specified torque.
ÆTightening torque: 1.96 to 2.94Nm
RF1
Cold shrinkable tube
N type connector
RF1
RF2
RF3
RF1
RF2
RF3
RF1
RF2
RF3
RF1
RF2
RF3
PA Unit 3
PA Unit 4
PA Unit 1
PA Unit 2
RF1
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4) Waterproof treatment of the PU-BU RF cable
Cover the cold shrinkable tube over the root of the connector and shrink it.
5) Pre-finishing the PU-BU RF cable
Put the PU-BU RF cable from RF2 of the PA Unit 1 through the cold shrinkable tube.
(See the following figure for the direction.)
6) Connecting the PU-BU RF cable
Connect the PU-BU RF cable to the connector of RF2 on the Base Unit with the
specified torque.
ÆTightening torque: 1.96 to 2.94Nm
RF1
Cover it over the root of the
connector.
Cold shrinkable tube
N type connector
RF3
RF2 RF1
PA Unit 1
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7) Waterproof treatment of the PU-BU RF cable
Cover the cold shrinkable tube over the root of the connector and shrink it.
8) Pre-finishing the PU-BU RF cable
Put the PU-BU RF cable from RF3 of the PA Unit 1 through the cold shrinkable tube.
(See the following figure for the direction.)
9) Connecting the PU-BU RF cable
Connect the PU-BU RF cable to the connector of RF3 on the Base Unit with the
specified torque.
ÆTightening torque: 1.96 to 2.94Nm
Cold shrinkable tube
N type connector
Cover it over the root
of the connector.
RF3
RF2 RF1
PA Unit 1
RF3
RF2 RF1
PA Unit 1
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10) Waterproof treatment of the PU-BU RF cable
Cover the cold shrinkable tube over the root of the connector and shrink it.
11) Connecting the PU-BU RF cable from the PA Unit 2, the PA Unit 3 and the PA
Unit4
Connect the PU-BU RF cable from RF1, 2 and 3 of Each PA Unit, from the PA Unit 2 to
the PA Unit 4, to RF1, 2 and 3 of the Base Unit (marked from PA Unit 2, to PA Unit 4)
as same sequence as the PU-BU RF cable from the PA Unit 1.
Cover it over the root o
f
the connector.
RF3
RF2 RF1
PA Unit 1
RF1
RF2
RF3
RF1
RF2
RF3
RF1
RF2
RF3
RF1
RF2
RF3
PA Unit 3
PA Unit 4
PA Unit 1
PA Unit 2
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3.4.3.7 Connecting the Network cable
1) Removing the dome nut for the Network cable
Remove the dome nut for the Network cable at the bottom of the Base Unit and
remove the cable packing.
2) Pre-finishing the Network cable
Put the Network cable through the cold shrinkable tube, the dome nut and the cable
packing in this order.
(See the following figure for the direction.)
Peel the sheath off the Network cable to expose the conductor.
ÆPeeling length of the sheath: 10 to 15 cm
Cable packing
Dome nut
LAN1
10 to 15cm
Cold shrinkable tube Dome nut Cable packing
Lid side
LAN2 LAN1
100Base-TX
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Loosen the copper shield and coil it around the conductor at the shield root part by
more than 4 turns.
3) Removing the surge box cover for the Network cable
Loosen 2 fixing screws and remove the surge box cover for the Network cable.
4) Removing the cable clamp for the Network cable
Remove 2 screws fixing the cable clamp for the Network cable and then remove the
cable clamp.
Surge box cover
Screw
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5) Inserting the Network cable
Insert the Network cable through the bushing into the Base Unit.
6) Fixing the cable clamp for the Network cable
Adjust the cable clamp to the copper shield and fix the screws so as to make no space
between the copper shield and the cable clamp.
ÆTightening torque: 1.5Nm
7) Press-connecting 232D connector
Unstitch the conductor (4 pairs = 8 conductors) and connect them to the specified
crimping connector.
For the assignment of inserting conductor’s 1pin and 2pin to the connector, refer to the
following figure.
Press the connector while inserting the conductors to the far end.
Recommended connector: Press-contact connector manufactured by DDK (DDK Ltd.)
Product No: 232D-02S1B-DA2
Reserve1- 2 pin Brown
Reserve1+ 1 pin Brown/ spiral
Reserve2- 2 pin Blue
Reserve2+ 1 pin Blue/ spiral
RxD- 2 pin Orange
RxD+ 1 pin Orange/ spiral
TxD- 2 pin Green
TxD+ 1 pin Green/ spiral
Twisted pair line Press-contact connector
2 pin
1 pin
Before pressing
A
fter pressing
Press
Press connector while the conductors are inserted to the far end.
1 pin
2 pin
1 pin
2 pin
1 pin
2 pin
1 pin
2 pin
LAN1
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8) Connecting the press-contact connector to the surge board
Insert the press-contacted connector to the (232D) connector on the surge board.
9) Forming the conductor
Form the conductor not to extend over the surge box.
10) Tightening the dome nut
After inserting the cable packing, tighten the dome nut by hand and then retighten it
using a torque wrench.
ÆTightening torque: 2.45Nm
11) Waterproof treatment for the Network cable
Cover the cold shrinkable tube over the root of the connector and shrink it.
Dome nut Fixing part of bushing
Cold shrinkable tube
RxD–
RxD+
TxD–
TxD+
Reserve1–
Reserve1+
Reserve2–
Reserve2+
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12) Apply the above Network cable connecting steps for LAN1 through LAN2.
13) Mounting the surge box cover
Mount the surge box cover and tighten the surge box cover fixing screw with a
specified torque.
Æ Tightening torque: 1.5Nm
Holes for surge box cover
Surge box cover
Screw
Put the cover in the hole
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3.4.3.7.2 Connecting the GPI cable
1) Removing the dome nut for the GPI cable
Remove the dome nut for the GPI cable at the bottom of the Base Unit and remove the
cable packing.
2) Pre-finishing the GPI cable
Put the GPI cable through the cold shrinkable tube, the dome nut and the cable
packing in this order.
(See the following figure for the direction.)
Peel the sheath off the GPI control cable to expose the conductor.
ÆPeeling length of the sheath: 10 to 15 cm
10 to 15cm
Cable packing
Dome nut
GPI
Cold shrinkable tube Dome nut Cable packing
Lid side
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Loosen the copper shield and coil it around the conductor at the shield root part by
more than 4 turns.
For the GPI control cable, 3 pairs of twisted-pair cables are used.
If there are 4 pairs of cables, coil the cable with a tape to prevent the extra one pair
from short circuit.
3) Removing the surge box cover for the GPI cable
Loosen 2 fixing screws and remove the surge box cover for the GPI cable.
4) Removing the cable clamp for the GPI cable
Remove 2 screws fixing the cable clamp for the GPI cable and then remove the cable
clamp.
Coil the cable with a tape to
prevent from short circuit.
Surge box cover
Screw
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5) Inserting the GPI cable
Insert the GPI cable through the bushing into the Base Unit.
6) Fixing the cable clamp for the GPI cable
Adjust the cable clamp to the copper shield and fix the screws so as to make no space
between the copper shield and the cable clamp.
ÆTightening torque: 1.5Nm
7) Press-connecting 232D connector
Unstitch the conductor (3 pairs = 6 conductors) and connect them to the specified
crimping connector.
For the assignment of inserting conductor’s 1pin and 2pin to the connector, refer to the
following figure.
Press the connector while inserting the conductors to the far end.
Recommended connector: Press-contact connector manufactured by DDK (DDK Ltd.)
Product No: 232D-02S1B-DA2
GND 2 pin Blue / spiral
GPI2 1 pin Blue
GND 2 pin Green / spiral
GPI1 1 pin Green
GND 2 pin Orange / spiral
GPI0 1 pin Orange
GPI
Twisted pair line Press-contact connector
2 pin
1 pin
Before pressing
A
fter pressing
Press
Press connector while the conductors are inserted to the far end.
2 pin
1 pin
2 pin
1 pin
2 pin
1 pin
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8) Connecting the press-contact connector to the surge board
Insert the press-contacted connector to the (232D) connector on the surge board.
9) Forming the conductor
Form the conductor not to extend over the surge box.
10) Tightening the dome nut
After inserting the cable packing, tighten the dome nut by hand and then retighten it
using a torque wrench.
ÆTightening torque: 2.45Nm
11) Waterproof treatment for the GPI cable
Cover the cold shrinkable tube over the root of the connector and shrink it.
Dome nut Fixing part of bushing
Cold shrinkable tube
GND0
GPI0
GND1
GPI1
GND2
GPI2
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12) Mounting the surge box cover
Mount the surge box cover and tighten the surge box cover fixing screw with a
specified torque.
Æ Tightening torque: 1.5 Nm
3.4.3.8 Connecting the Master/Slave cable
3.4.3.8.1 Master Base Unit
1) Removing the dome nut for the Master/Slave cable
Remove the dome nut for the Master/Slave cable at the bottom of the Base Unit and
remove the cable packing.
Holes for surge box cover
Surge box cover
Screw
Put the cover in the hole
Cable packing
Dome nut
Master
Slave
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2) Pre-finishing the Master/Slave cable
Put the Master/Slave cable through the cold shrinkable tube, the dome nut and the
cable packing in this order.
(See the following figure for the direction.)
Peel the sheath off the Master/Slave control cable to expose the conductor.
ÆPeeling length of the sheath: 10 to 15 cm
Loosen the copper shield and coil it around the conductor at the shield root part by
more than 4 turns.
For the Master/Slave control cable, 2 pairs of twisted-pair cables are used.
If there are 4 pairs of cables, coil the cable with a tape to prevent the extra two pairs
from short circuit.
10 to 15cm
Cold shrinkable tube Dome nut Cable packing
Lid side
Coil the cable with a tape to
prevent from short circuit.
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CONFIDENTIAL
3) Removing the surge box cover for the Master/Slave cable
Loosen 2 fixing screws and remove the surge box cover for the Master/Slave cable.
4) Removing the cable clamp for the Master/Slave cable
Remove 2 screws fixing the cable clamp for the Master/Slave cable and then remove
the cable clamp.
5) Inserting the Master/Slave cable
Insert the Master/Slave cable through the bushing into the Base Unit.
Master
Slave
Surge box cover
Screw
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CONFIDENTIAL
6) Fixing the cable clamp for the Master/Slave cable
Adjust the cable clamp to the copper shield and fix the screws so as to make no space
between the copper shield and the cable clamp.
ÆTightening torque: 1.5Nm
7) Press-connecting 232D connector
Unstitch the conductor (2 pairs = 4 conductors) and connect them to the specified
crimping connector.
For the assignment of inserting conductor’s 1pin and 2pin to the connector, refer to the
following figure.
Press the connector while inserting the conductors to the far end.
Recommended connector: Press-contact connector manufactured by DDK (DDK Ltd.)
Product No: 232D-02S1B-DA2
Master Base Unit
Rx - 2 pin Green / spiral
Rx + 1 pin Green
Tx - 2 pin Orange / spiral
Tx + 1 pin Orange
Twisted pair line Press-contact connector
2 pin
1 pin
Before pressing
A
fter pressing
Press
1 pin
2 pin
1 pin
2 pin
Press connector while the conductors are inserted to the far end.
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CONFIDENTIAL
8) Connecting the press-contact connector to the surge board
Insert the press-contacted connector to the (232D) connector on the surge board.
9) Forming the conductor
Form the conductor not to extend over the surge box.
10) Tightening the dome nut
After inserting the cable packing, tighten the dome nut by hand and then retighten it
using a torque wrench.
ÆTightening torque: 2.45Nm
11) Waterproof treatment for the Master/Slave cable
Cover the cold shrinkable tube over the root of the connector and shrink it.
Tx –
Tx +
Rx –
Rx +
Dome nut Fixing part of bushing
Cold shrinkable tube
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CONFIDENTIAL
12) Mounting the surge box cover
Mount the surge box cover and tighten the surge box cover fixing screw with a
specified torque.
Æ Tightening torque: 1.5 Nm
3.4.3.8.2 Slave Base Unit
The work of 1) to 6), and 10)-12) is omitted for the same work as a Master Base unit,
and indicates 7) to 9).
1)
2)
3)
4)
5)
6)
Surge box cover
Screw
Put the cover in the hole
Holes for surge box cover
The same work as a Master Base unit is done.
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CONFIDENTIAL
7) Press-connecting 232D connector
Unstitch the conductor (2 pairs = 4 conductors) and connect them to the specified
crimping connector.
For the assignment of inserting conductor’s 1pin and 2pin to the connector, refer to the
following figure.
Press the connector while inserting the conductors to the far end.
Recommended connector: Press-contact connector manufactured by DDK (DDK Ltd.)
Product No: 232D-02S1B-DA2
Slave Base Unit
Rx - 2 pin Orange / spiral
Rx + 1 pin Orange
Tx - 2 pin Green / spiral
Tx + 1 pin Green
8) Connecting the press-contact connector to the surge board
Insert the press-contacted connector to the (232D) connector on the surge board.
9) Forming the conductor
Form the conductor not to extend over the surge box.
10), 11), and 12) do the same work as a Master Base unit.
Tx –
Tx +
Rx –
Rx +
Twisted pair line Press-contact connector
2 pin
1 pin
Before pressing
A
fter pressing
Press
Press connector while the conductors are inserted to the far end.
1 pin
2 pin
1 pin
2 pin
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CONFIDENTIAL
3.4.3.9 Attachment of Grounding Kit
According to maker's installation manual, Grounding Kit is attached on a PU-BU RF
cable and a Calibration cable. When a Base unit is indoor, it is at an outside of the
entrance and in the case of the outdoors, it is near the Base unit.
3.4.4 Inserting the board
Make sure what all AC power supply Switch is turn off.
Before touching the board, be sure to take an antistatic measure such as wearing a
wristband for preventing static electricity.
Inserting position of the Power supply, the Fan tray and other boards is the following
figure.
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
CAL
LoCal
STATUS
MASTER
CAL
LoCal
STATUS
MASTER
MoNerd
STATU S
MASTER
NETWORK
COM
100Base-TX
MoNerd
STATUS
MASTER
NETWORK
COM
100Base-TX
Power Supply
POWER
AC INPUT
Power Supply
POWER
AC INPUT
Power Supply
POWER
AC INPUT
FAN
POWER
STATUS
TRx Board 4 slots Power supply 3 slots
FAN tray 1 slot
MoNerd Board 2 slots LoCal Board 2 slots
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CONFIDENTIAL
3.4.4.1 Notes at setting Boards and Power supply
3.4.4.1.1 Procedure of board inserting
1) Confirm that both upper and lower handles are surely un-locked. If thay are in
locked condition, press a red “PRESS” button and make it un-locked.
2) Insert a board along the board guide while holding cables down so as cables to
disturb inserting. Confirm both handles to be un-locked again, then stop inserting
the board at when lock part of the board attaches the frame of the Base unit.
3) Lean both upper and lower handle inside at a same time and lock them. Leaning
handles inside leads the board getting in automatically and mechanically. If the
board does not get in automatically, the lock part may not lock on adequately.
Therefore stop leaning handle inside by force.
Un-locked
“PRESS” button
Locking
Handle
Hook
To be locked
adequately
Frame
Lock part
Side view of a handle part
Insert a board while holding cables down.
Lock part
Frame of the Base unit
Stop inserting the
board at when lock
part attaches the
frame.
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CONFIDENTIAL
4) Confirmation
Both upper and lower hooks must be securely locked.
3.4.4.1.2 Prohibitionary work
Never insert a board by pressing itself.
It damages a hook and a sensor damage. A sensor is attached on a lower handle.
3.4.4.1.3 Handling if miss-inserting
In case of inserting a board or a power supply in a condition that a handle is locked by
mistake and giving a stress to the frame.
Un-locking the miss-locked handle by force damages a lock part and a sensor part.
Therefore pull the miss-locked handle side as it is.
A
lower handle miss-locks and
gives a stress to the frame.
A
n upper handle locks
adequately
Example
Un-lock the handle.
Don’t un-lock handle and
pull it as it is.
A
sensor is at this point
of a lower handle.
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CONFIDENTIAL
3.4.4.2 Inserting the Power supply
1) Insert the Power supply along the both upper and lower guide rail at the
determined position so that the bezel character can be read correctly.
2) Turn the upper and lower handles inside and lock them. The handles should be set
firmly.
3) Tighten the 4 fixing screws
Æ Tightening torque: 0.4Nm
3.4.4.3 Inserting the LoCal board
1) Insert the LoCal board along the both upper and lower guide rail at the determined
position so that the bezel character can be read correctly as same work as of the
Power supply.
2) Turn the upper and lower handles inside and lock them. The handles should be set
firmly as same work as of Power supply.
3) Tighten the 2 fixing screws
ÆTightening torque: 0.4Nm
Guide rail
Handle
Fixing screw
Guide rail
Handle
Fixing screw
Fixing screw
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CONFIDENTIAL
3.4.4.4 Inserting the MoNerd board
1) Insert the MoNerd board along the both upper and lower guide rail at the
determined position so that the bezel character can be read correctly as same work
as of the Power supply.
2) Turn the upper and lower handles inside and lock them. The handles should be set
firmly as same work as of the Power supply.
3) Tighten the 2 fixing screws
Æ Tightening torque: 0.4Nm
3.4.4.5 Inserting the TRx board
1) Insert the TRx board along the both upper and lower guide rail at the determined
position so that the bezel character can be read correctly as same work as of the
Power supply.
2) Turn the upper and lower handles inside and lock them. The handles should be set
firmly as same work as of the Power supply.
3) Tighten the 2 fixing screws
ÆTightening torque: 0.4Nm
3.4.4.6 Inserting the FAN tray
1) Insert the FAN Tray along the guide rail at the determined position so that the
bezel character can be read correctly.
.
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CONFIDENTIAL
2) Tighten the 6 fixing screws
Æ Tightening torque: 0.4Nm
3.4.4.7 Removing the Power supply and other boards
1) Loosen upper and lower fixing screws.
2) Press the red “PRESS” part of both handles and release locking.
3) Turn the upper and lower handles outside and release connecting.
Fixing screw
Press “PRESS” part
Fixing screw
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CONFIDENTIAL
3.4.5 Connecting cables to the Power supply and boards
3.4.5.1 Power supply
1) Insert the power supply cable to the Power supply.
There are 3 power supply cables. It is not regulated that any of the power supply cable
connects any of the Power supply.
2) Lock the power supply cable with the lock.
Power supply cable lock
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
CAL
LoCal
STATUS
MASTER
CAL
LoCal
STATUS
MASTER
MoNerd
STATUS
MASTER
NETWORK
COM
100Base-TX
MoNerd
STATUS
MASTER
NETWORK
COM
100Base-TX
Power Supply
POWER
AC INPUT
Power Supply
POWER
AC INPUT
Power Supply
POWER
AC INPUT
FAN
POWER
STATUS
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CONFIDENTIAL
3.4.5.2 LoCal board
Insert the cable to LoCal board along the label on the cable.
3.4.5.3 MoNerd board
Insert the cable to MoNerd board along the label on the cable.
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
CAL
LoCal
STATUS
MASTER
CAL
LoCal
STATUS
MASTER
MoNerd
STATUS
MASTER
NETWORK
COM
100Base-TX
MoNerd
STATUS
MASTER
NETWORK
COM
100Base-TX
Power Supply
POWER
AC INPUT
Power Supply
POWER
AC INPUT
Power Supply
POWER
AC INPUT
FAN
POWER
STATUS
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
CAL
LoCal
STATUS
MASTER
CAL
LoCal
STATUS
MASTER
MoNerd
STATUS
MASTER
NETWORK
COM
100Base-TX
MoNerd
STATUS
MASTER
NETWORK
COM
100Base-TX
Power Supply
POWER
AC INPUT
Power Supply
POWER
AC INPUT
Power Supply
POWER
AC INPUT
FAN
POWER
STATUS
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CONFIDENTIAL
3.4.5.4 TRx the board
Insert the cable to TRx board along the label on the cable.
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
RF1
RF2
RF3
TRx
STATUS
CAL
LoCal
STATUS
MASTER
CAL
LoCal
STATUS
MASTER
MoNerd
STATUS
MASTER
NETWORK
COM
100Base-TX
MoNerd
STATUS
MASTER
NETWORK
COM
100Base-TX
Power Supply
POWER
AC INPUT
Power Supply
POWER
AC INPUT
Power Supply
POWER
AC INPUT
FAN
POWER
STATUS

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