41 1 4MB
HLD-ECDIS 600 Installation Manual
Beijing Highlander Digital Technology Co., Ltd. C1902, SP Tower, Tsinghua Science Park Haidian District, Beijing, 100084, China
HLD-ECDIS 600 Installation Manual
Copyright: © Highlander. All rights reserved. The information contained herein is proprietary to Highlander and shall not be duplicated in whole or in part. The technical details contained in this manual are accurate at the date of issue but are subject to change without notice. Highlander pursues a policy of continuous development. This may mean that the product delivered has additional enhancements not yet covered by the latest version of this manual. The names of actual companies and products mentioned herein may be the trademarks of their respective owners.
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Safety Message
High Voltages are located over many areas in the systems!
Caution during Operations: NEVER touch or have any body contact with active electrical circuits! All relevant safety regulations and safety standards must be closely observed.
Maintenance and repairs must only be carried out by trained and qualified personal with knowledge for electrical devices.
Observe handling regulations! Removal or insertion of a subgroup or printed wiring board with live voltage can lead to severe damage.
Never insert fuses with other values than those stipulated!
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List of Figures
Figure 1 Block Diagram of ECDIS ..................................................................................................... 10 Figure 2 Architecture of ECDIS 600 software .................................................................................. 12 Figure 3Cable inlet consisting of a hole with brackets ................................................................... 15 Figure 4 Front of Main Unit ............................................................................................................ 17 Figure 5 Back of Main Unit.............................................................................................................. 18 Figure 6 Outline drawing of Main Unit ........................................................................................... 19 Figure 7 Details of Mounting Diagram of Main Unit ...................................................................... 20 Figure 8 Mounting diagram of Main Unit ....................................................................................... 21 Figure 9 Front of 24 Inch Display Unit ............................................................................................ 22 Figure 10 Back of 24 Inch Display Unit ........................................................................................... 23 Figure 11 Outline drawing of 24-inch Display Unit ......................................................................... 24 Figure 12 Mounting Bar and Screw of 24 Inch Display Unit ........................................................... 25 Figure 13 Back Mounting of 24 Inch Display Unit........................................................................... 25 Figure 14 Mounting Diagram of 24-inch Display Unit .................................................................... 26 Figure 15 Outline of Human Interface Unit .................................................................................... 27 Figure 16 Mounting Diagram of Human Interface Unit .................................................................. 28 Figure 17 Human Interface Unit with two mounting plates ........................................................... 29 Figure 18 Outline drawing of Power Conversion Unit .................................................................... 30 Figure 19 Mounting Diagram of Power Conversion Unit ................................................................ 31 Figure 20 Front of Power Conversion Unit ..................................................................................... 32 Figure 21 Outline of LAN Switch ..................................................................................................... 33 Figure 22 Mounting Diagram of LAN Switch ................................................................................... 34 Figure 24 System Wiring Diagram-1 ............................................................................................... 66 Figure 25 System Wiring Diagram-2 ............................................................................................... 67 Figure 26 System Wiring Diagram-3 ............................................................................................... 68 Figure 27 System Wiring Diagram-4 ............................................................................................... 69 Figure 28 System Wiring Diagram-5 ............................................................................................... 70 Figure 29 System Wiring Diagram-6 ............................................................................................... 71 Figure 30 System Wiring Diagram-7 ............................................................................................... 72 Figure 31 System Wiring Diagram-8 ............................................................................................... 73 Figure 32 System Wiring Diagram-9 ............................................................................................... 74
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List of Tables
Table 1 Equipment list .....................................................................................................................11 Table 2 Typical configuration of ECDIS 600 .....................................................................................16 Table 3 Parameters status of BIOS ..................................................................................................45 Table 4 Recommend configuration of INSStartAPP ........................................................................57 Table 5 Value list of Show................................................................................................................57 Table 6 Group IP and Port of Sensor ...............................................................................................60 Table 7 Default workstations configuration of SNGF ......................................................................61 Table 8 List of Common Inspection Methods .................................................................................63 Table 9 Specifications of Installation Tools......................................................................................64 Table 10 Category of Ship/carft.......................................................................................................65
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Content
Installation Manual ................................................................................................................................... 1 Safety Message ......................................................................................................................................... 3 List of Figures ............................................................................................................................................ 4 List of Tables.............................................................................................................................................. 5 Content ..................................................................................................................................................... 6 1 System Introduction........................................................................................................................... 8 1.1. Overview ................................................................................................................................. 8 1.2. Design Principles ..................................................................................................................... 8 2 System Composition ........................................................................................................................ 10 2.1. System Architecture ................................................................................................................. 10 2.2. System Hardware ..................................................................................................................... 10 2.3. System Software ...................................................................................................................... 12 3 Installation Recommendations ........................................................................................................ 14 3.1 General Recommendations ................................................................................................... 14 3.2 Cables .................................................................................................................................... 15 3.3 Typical Configurations ........................................................................................................... 16 4 Hardware Installation ...................................................................................................................... 17 4.1. Task Workstation ...................................................................................................................... 17 4.1.1. Main Unit ...................................................................................................................... 17 4.1.2. Display Unit ................................................................................................................... 22 4.1.3. Human Interface Unit ................................................................................................... 27 4.1.4. Power Conversion Unit ................................................................................................. 29 4.2 LAN Switch............................................................................................................................. 33 4.2.1 Tools for installation .................................................................................................... 33 4.2.2 Basic Information ........................................................................................................ 33 4.2.3 Installation Position .................................................................................................... 33 4.2.4 Installation Procedure ................................................................................................. 33 4.2. Signal Convert Unit .................................................................................... 错误!未定义书签。 4.3. Wiring....................................................................................................................................... 35 5 Software Installation ........................................................................................................................ 36 5.1 Support Software .................................................................................................................. 36 5.2 Configuration Before Installation .......................................................................................... 37 5.2.1 Services ....................................................................................................................... 37 5.2.2 Optimum Performance ............................................................................................... 39 5.2.3 Taskbar ........................................................................................................................ 41 5.2.4 Set time check............................................................................................................. 42 5.2.5 Set BIOS Display .......................................................................................................... 44 5.2.6 Computer Name ......................................................................................................... 45 5.3 Software Installation ............................................................................................................. 48 5.3.1 QT ................................................................................................................................ 49
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5.3.2 Redis ............................................................................................................................51 5.3.3 CouchDB ......................................................................................................................52 5.3.4 HLD Chart ....................................................................................................................56 5.3.5 INSStartAPP .................................................................................................................56 5.3.6 Decider ........................................................................................................................58 5.3.7 ETS ...............................................................................................................................58 5.3.8 SNGF ............................................................................................................................58 5.3.9 Capture VDR ................................................................................................................60 5.3.10 INS Client .....................................................................................................................62 6 Post-installation Inspection ..............................................................................................................63 Appendix A Specifications of Tools for Installation .................................................................................64 Appendix B Category of ship/craft ..........................................................................................................65 Appendix C Wiring of HLD-ECDIS 600 .....................................................................................................66
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1 System Introduction
1.1.Overview ECDIS 600 is designed to display vessel information received from on board sensors such as GPS, Gyro, Log, radar and AIS together with geographical information retrieved from Electronic Charts, and to secure navigation at sea by combining the vessel information from several sensors, information from Electronic Charts in the area and the use of powerful navigation functions.
1.2.Design Principles The design of ECDIS 600 shall meet the following principles (or standards): (1) IEC 60945, Maritime Navigation and Radiocommunication Equipment and Systems - General Requirements - Methods of Testing and Required Test Results (2) IEC 61162 (All Parts), Maritime Navigation and Radiocommunication Equipment and Systems Digital Interfaces (3) IEC 61162-1:2010, Maritime Navigation and Radiocommunication Equipment and Systems – Digital Interfaces – Part 1: Single Talker and Multiple Listeners (4) IEC 61162-2, Maritime Navigation and Radiocommunication Equipment and Systems - Digital Interfaces - Part 2: Single Talker and Multiple Listeners, High-speed Transmission (5) IEC 61162-3, Maritime Navigation and Radiocommunication Equipment and Systems - Digital Interfaces - Part 3: Serial Data Instrument Network (6) IEC 61162-450:2011, Maritime Navigation and Radiocommunication Equipment and Systems Digital Interfaces - Part 450: Multiple Talkers and Multiple Listeners - Ethernet Interconnection (7) IEC 61174:20015, Maritime Navigation and Radiocommunication Equipment and Systems Electronic Chart Display and Information System (ECDIS) - Operational and Performance Requirements, Methods of Testing and Required Test Results (8) IEC 62065:2002, Maritime Navigation and Radiocommunication Equipment and Systems - Track Control Systems - Operational and Performance Requirements, Methods of Testing and Required Test Results (9) IEC 62288:2014, Maritime Navigation and Radiocommunication Equipment and Systems -
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Presentation of Navigation-related Information on Shipborne Navigational Displays - General Requirements, Methods of Testing and Required Test Results (10) IEC 62388:2013, Maritime Navigation and Radiocommunication Equipment and Systems Shipborne Radar - Performance Requirements, Methods of Testing and Required Test Results (11) IEC 62616:2010, Maritime Navigation and Radiocommunication Equipment and Systems - Bridge Navigational Watch Alarm System (BNWAS) (12) IMO Resolution A.694(17):1991, General Requirements for Shipborne Radio Equipment Forming Part of the Global Maritime Distress and Safety System (GMDSS) and for Electronic Navigational Aids (13) IMO/ICAO, Handbook of International Aeronautical and Maritime Search and Rescue (IAMSAR Handbook) Volume III (14) IMO MSC/Circ.982:2000, Guidelines on Ergonomic Criteria for Bridge Equipment and Layout (15) IMO Resolution MSC. 191(79):2004, Performance Standards for the Presentation of Navigationrelated Information on Shipborne Navigational Displays (16) IMO MSC.232(82), Adoption of the Revised Performance Standards for Electronic Chart Display and Information Systems (ECDIS) (17) IMO MSC.252(83), Adoption of the Revised Performance Standards for INSs (INS) (18) IMO MSC.302(87), Performance Standards for Bridge Alert Management (BAM) (19) ISO 11674:2006, Ships and Marine Technology - Heading Control Systems (20) IEC 61924-2, Maritime Navigation and Radiocommunication Equipment and Systems - INSs Operational and Performance Requirements, Methods of Testing and Required Test Results
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2 System Composition
2.1. System Architecture
Figure 1 Block Diagram of ECDIS
As shown in Figure 1, ECDIS 600 contains two independent workstations, one is working as Planning Application, and the other is working as Monitoring Application. Two workstations are connected by a fixed wired interface based on IEC 61162-450. The main purpose of the ECDIS 600 task is to: display on the electronic charts; display the ship position on the electronic chart; monitoring of approach to the dangers to navigation plotted on electronic vector charts or on map created by navigator; route planning and drawing up the schedule of proceeding along this route; solution of various kinds of navigational tasks (NAVTEX database, Tide & Currents database, SAR routes).
2.2. System Hardware The system is composed of the following hardware: Part name Main Unit Display Unit
Model HLD-MCU600 HLD-DU134 HLD-DU135
Human Interface HLD-IU600 Unit Power HLD-PCU600 10 / 75
Description shipborne PC 24.0-inch, shipborne LCD, 1920x1080 26.0-inch, shipborne LCD, 1920x1200 Trackball and keyboard 24V DC shipborne Power HLD3400AZ Rev1.0
HLD-ECDIS 600 Installation Manual
Conversion Unit LAN Switch
HLD-LS600
LAN
Table 1 Equipment list
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2.3. System Software LAN
Workstation 1 (ECDIS planning)
Workstation 2 (ECDIS Monitoring)
Decider (master)
Decider (slave)
Client
Client
ECDIS Monitoring
ECDIS Monitoring
ECDIS Planning
ECDIS Planning
Conning Display
Conning Display
SNGF 1
SNGF 1
SNGF 2 ...
SNGF 2 ...
Redis DB
Redis DB
Couch DB
Couch DB
Figure 2 Architecture of ECDIS 600 software
Following applications run in each workstation: Decider –is responsible for handling the incoming navigational data, targets, alerts and the Common Distributed Database (Redis DB) INS Client –represents Conning Display and ECDIS in one module. The functionality of referenced modules must be compliant with specific regulations SNGF (Serial to Network Gateway Function) - convert the serial NMEA data to the Ethernet representation and backward. Redis DB, Couch DB. The colors used in Figure 2 have following meaning: Green – the applications and services needed for the ECDIS data distribution (not visible to navigator). In the current system architecture these are the Decider application and Redis database. Light green means Master mode. Master Decider makes all decisions about navigational data selection
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and puts all values into Redis DB. The slave Decider applications only monitor the system and check if they need to become Master instead of disappeared one. The Master Redis DB is the only DB, where all applications can write the data. It distributes then the data to all slave Redis DBs in the LAN. So far, all applications can read the data locally, but write only to the Master Redis, at the same computer, where the Master Decider is running. Dark green is related to slave Decider applications and slave Redis DB instances. White – applications, functions and services able to run at any workstation of INS, but (currently) not visible to navigator. Yellow – functions currently represented to navigator. Could be changed by navigator's selection. Handling of Navigational data Initially the navigational data are coming to SNGF modules through serial line. The SNGF modules convert the data to Ethernet based protocol. One of Decider applications, selected as MASTER collects all navigational data from the LAN, provides their complete verification and puts the result into Redis database in RAM, which is automatically replicated to all other computers in the LAN. The Client application could access the actual navigational data and history through the database. Handling of AIS targets The information from AIS receiver is first delivered to SNGF module and then transferred to Ethernet. The MASTER Decider application captures the messages from the LAN and puts the AIS targets into Common Distributed Database. The Client application retrieves the AIS targets from database and draws them on Radar or ECDIS working area if the referenced function is currently active. The active AIS targets are regularly reported out by Decider. Handling of Alerts Alerts could be generated by any of INS applications, except the SNGF. MASTER Decider application captures all alert messages from the LAN and puts the alert information into Actual Alert Table in Common Distributed database. Client represents the currently active alerts in alert list of ECDIS or CAM accordingly to currently active function. The Alert History table is stored for 24 hours at least in the Couch DB. The out of date alerts are automatically removed from the database. Handling of Statuses and commands All commands and statuses are represented in Redis DB. The applications responsible for handling the commands must be subscribed on changes by referenced keys. Also, the client applications representing the status need to follow the changes in the Redis DB.
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3 Installation Recommendations
3.1 General Recommendations Dimensions, weights, spaces required by service and mounting and special installation instructions are stated in the outline drawings and installation drawings of corresponding unit. In general, the following instructions should be applied: • The useful life of the components of all Electronics Units generally decreases with increasing ambient temperature, therefore, it is advisable to install such units in air-conditioned rooms. • For most Electronics Units, cooling takes place via the surface of the casing. The cooling must not be installed in a confined cabinet. Furthermore, the distance from the ceiling to a unit situated underneath must be at least 500 mm. • In the area of the wheel house, the distance of each Electronics Unit from the magnetic standard compass or the magnetic steering compass must not be less than the permitted magnetic protection distance. This distance is measured from the centre of the magnetic system of the compass to the nearest point on the corresponding unit concerned. • Units which are to be used on the bridge wing must be installed inside the "wing control console" -- protected against the weather. • When selecting the site of a unit, the maximum cable lengths have to be considered according to the notes in Maximum Cable Length of 3.2. •
The accessibility for maintenance and service must be considered.
• Disturbing reflections on the screen of a display caused by pilot lamps and illuminated signs must be prevented by suitable measures (screening or relocating). • When a unit is being installed, the base, floor or bulkhead must be checked to ensure that it is flat in order to avoid twisting of the unit when the fixing screws are tightened, because such twisting would impair mechanical functions. Any unevenness should be compensated for by means of spacing-washers. • The grounding screws of the units must be connected to the body of the ship (ground); the wire used should have a cross sectional area of at least 3 mm. Aboard fiberglass (GRP) vessels, a "grounding network" with a high conductance must be provided in order to achieve satisfactory EMC (electromagnetic compatibility).
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• The equipment should never be switched on by the electricians who did the installation work -not even just for a moment! This is a job for the authorized Highlander Electronics service engineer. • After handing over of the equipment in good operating condition to the customer, the Installation Report (Annex of the Warranty Certificate) should be filled in completely and then forwarded to Highlander as proof of such fulfilment. It is important that these requirements be fulfilled in order to avoid the risk of losing the warranty.
3.2 Cables Cable types, cable data, special instructions for cable laying and connection details are defined in the Connection Diagram. For each project, the Connection Diagram is customized, so customers need to fill in the questionnaire and send to Highlander with the order. The interface connections should be discussed and agreed by Highlander, and then Highlander will give the connection diagrams. The cable type and the connection need to be according to the Connection Diagram. In general, the following points must be taken into account: •
Cables for navigational equipment should never run through the radio transmitter room.
• The cables must be marked by the electrician at both ends with the cable numbers corresponding to the Connection Diagram. Where necessary, particular cable glands - marked with letters and/or numbers - are assigned to the cables. • It must be ensured that all cables - including their screens - are passed into the units in continuous lengths and are not terminated before reaching the destination unit. • With the use of cable glands without grounding inserts, the screen braiding need to place outside the unit and plaited to form a "pigtail", terminated by a cable terminal, and connected to the prescribed grounding terminal. It must be ensured that the grounding lead is kept as short as possible. • In the case of a unit whose cable inlet consists of a hole with brackets attached on the outside, the cable must be dressed as shown in Figure 3. 100
Crimp Connector 40.00
Shielding layer Power cable from distribution board
Corrosion proof jacket
Figure 3Cable inlet consisting of a hole with brackets
• All cable connections must be carefully checked after completion of the cable work and all cable screens must be grounded via the shortest possible connections - if not stated otherwise in the Connection Diagram. •
All cables must be secured by means of suitable clamps (wire tie) before entering the units.
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•
It must be ensured that cables do not block any moving parts within a unit.
•
Power leads must be protected by "slow-blow" fuses according to their cross section.
Maximum Cable Length The wire cabling between LAN Switch and other units must not exceed a length of 100 m.
3.3 Typical Configurations ECDIS 600 contains two workstations. No. Part name Qty. Model Planning and Multifunction Workstation 1 Power Conversion Unit 1 HLD-PCU600 2 Display Unit 1 HLD-DU134/HLD-DU135 3 Main Unit 1 HLD-MCU600 4 Human Interface Unit 1 HLD-IU600 Monitoring and Multifunction Workstation 1 Power Conversion Unit 1 HLD-PCU600 2 Display Unit 1 HLD-DU134/HLD-DU135 3 Main Unit 1 HLD-MCU600 4 Human Interface Unit 1 HLD-IU600 Other Components 1 LAN switch (24 ports) 1 HLD-LS600 Table 2 Typical configuration of ECDIS 600
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4 Hardware Installation
4.1. Task Workstation 4.1.1. Main Unit Tools for installation Flat head screwdriver, inner hexagonal screw driver tool set, adjustable spanner. The specifications of the tools are listed in Appendix A. Basic Information
Figure 4 Front of Main Unit
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Figure 5 Back of Main Unit
For more details, see the outline drawing of Main Unit as following.
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250.00
142.20
135.00
Figure 6 Outline drawing of Main Unit
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Installation Position Installed in the ECDIS 600 wheelhouse control console. Necessary space for maintenance is reserved according to the design layout of equipment in "Mounting diagram of Main Unit". Refer to the "Mounting diagram of Main Unit" for installation.
Min .50mm clearance min.50 clearance
Mounting holes ? 4.5×6
10.0
99.25
198.5
min.30 clearance
Min .30mm clearance min.30 clearance
Min .30mm clearance 271.0 min.60 clearance
Min .60mm clearance
Figure 7 Details of Mounting Diagram of Main Unit
Installation Procedure Use eight three-combination screws with M3*8 cross recessed pan head to mount two host mounting supports to the host unit, as shown in Figure 7. Open holes on the wheelhouse control console according to the installation size of industrial personal computer, and then mount the industrial personal computer to the wheelhouse control console with six three-combination screws with M4*8 cross recessed pan head.
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m i n .6 0 c l e a ra n c e
2 5 0 .0
m i n .3 0 c l e a ra n c e
最小30mm 内无障碍物
说明(Note):
2 7 1 .0
1.图中给出了安装所需余留空间(用Min.表示); Installation clearance requirement has been indicated using Min.; 2.依据安装手册的安装步骤进行安装。 Mounts according to the process of installation manual.
m i n .3 0 c l e a ra n c e
1 0 .0
最小60mm 内无障碍物
1 9 8 .5
9 9 .2 5
最小30mm 内无障碍物
Mounting holes
? 4 .5 ×6
安装孔
m i n .5 0 c l e a ra n c e
最小50mm 内无障碍物
2 8 3 .2 2 0 0
135
150
Figure 8 Mounting diagram of Main Unit
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4.1.2. Display Unit 4.1.1.1HLD-DU134 (24-inch) Tools for installation Flat head screwdriver, inner hexagonal screw driver tool set, adjustable spanner. The specifications of the tools are listed in Appendix A. Basic Information
Figure 9 Front of 24 Inch Display Unit
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Figure 10 Back of 24 Inch Display Unit
Installation Position Installed on the ECDIS 600 wheelhouse control console. Necessary space for maintenance is reserved according to the design layout of equipment in Figure14 "Mounting Diagram of 24-inch Display Unit". Refer to the "Mounting Diagram of 24-inch Display Unit" to finish the installation.
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签名
)
日期
格式(
底图总号
旧底图总号
HLD3202.13WX
版本号
HD24T21 STD-MA1-FAGA
490,0576,9
制图:
标准化 批 准 描图:
标记 数量 更改单号 签名 日期 设 计 审 核 工 艺
张
质量 比例
张 共
标记
幅面:A3
北京海兰信数据科技股份有限公司
第
版本
HLD3202.13WX
HLD-ECDIS 600 Installation Manual
Figure 11 Outline drawing of 24-inch Display Unit
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Installation Procedure As shown in Figure 12 and Figure 13, open fixing hole on wheelhouse control console, and then mount the Display Unit on the wheelhouse control console with eight three-combination screws with M5*12 cross recessed pan head.
Figure 12 Mounting Bar and Screw of 24 Inch Display Unit
Figure 13 Back Mounting of 24 Inch Display Unit
Warning Brightness control may make the information invisible, especially those in night color list are used. Therefore, it shall be careful to use brightness control. NOTE: see profile mounting diagram provided by Highlander for the installation mode of other display sizes.
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签名
)
日期
格式(
底图总号
旧底图总号
HLD3202.13AZ
版本号
制图:
HD24T21 STD-MA1-FAGA
标准化 批 准 描图:
标记 数量 更改单号 签名 日期 设 计 审 核 工 艺
1.Installation clearance requirement has been indicated using Min.; 2.Mounts according to the process of installation manual.
(Note):
张
质量 比例
张 共
标记
幅面:A3
北京海兰信数据科技股份有限公司
第
版本
HLD3202.13AZ
HLD-ECDIS 600 Installation Manual
490,0576,9
Figure 14 Mounting Diagram of 24-inch Display Unit
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4.1.3. Human Interface Unit Tools for installation Flat head screwdriver, inner hexagonal screw driver tool set, adjustable spanner. The specifications of the tools are listed in Appendix A. Basic Information
Figure 15 Outline of Human Interface Unit
Installation Position Installed on the ECDIS 600 wheelhouse control console. Necessary space for maintenance is reserved according to the design layout of equipment in Figure 19 “Mounting Diagram of Human Interface Unit”. Refer to the “Mounting Diagram of Human Interface Unit”.
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签名
)
日期
格式(
制图:
描图:
第
V1.0
张
共
质量
张
1:4
比例
幅面:A3
北京海兰信
阶段 标记
Put the keyboard in a good hole in advance,and then fixed use the two mounting plates.
1.先将键盘放入提前开好的孔内,再安装安装条加以固定;
标记 数量 更改单号 签名 日期 设 计 审 核 工 艺 标准化 批 准
87.8
说明(Note):
184
底图总号
194 386
6-M4安装孔
388±0.5
30
120
164
旧底图总号
媒体编号
23 43
82
Mounting Hole
404
121.6
2*安装板 (Mounting plate)
Mounting holes
HLD-ECDIS 600 Installation Manual
186±0.5
Figure 16 Mounting Diagram of Human Interface Unit
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Installation Procedure As shown in Figure 18 "Mounting Diagram of Human Interface Unit", open a 186mm×388mm rectangular hole on the wheelhouse control console, and place the keyboard from the upside of the hole. In case of edge-folded mounting block, please pay attention to that the folded size is not greater than 20mm to avoid affecting the installation.
Figure 17 Human Interface Unit with two mounting plates
As shown in Figure 17, fix the Human Interface Unit to the wheelhouse control console with two mounting plates and six three-combination screws with M4*10 cross recessed pan head.
4.1.4. Power Conversion Unit
Tools for installation Flat head screwdriver, inner hexagonal screw driver tool set, adjustable spanner. The specifications of the tools are listed in Appendix A. Basic Information
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Figure 18 Outline drawing of Power Conversion Unit
Installation Position Installed in the ECDIS 600 wheelhouse control console. Necessary space for maintenance is reserved according to the design layout of equipment in “Mounting Diagram of Power Conversion Unit”. Refer to the “Mounting Diagram of Power Conversion Unit”. Installation Procedure As shown in Figure 21, mount the accessories of Power Conversion Unit with six M4 internal hexagon screws and then fix to the designated position.
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格式(
)
签名
制图:
105.00
日期
136.00
165.00
? 4.5(6*)
底图总号
Mounting holes
说明(Note):
标准化 批 准 描图:
标记 数量 更改单号 签名 日期 设 计 审 核 工 艺
第
V1.3
张
共
质量
张
1:2
比例
幅面:A3
北京海兰信
阶段 标记
HLD5106AZ
1.图中给出了安装所需余留空间(用Min.表示); Installation clearance requirement has been indicated using Min. ; 2.依据安装手册的安装步骤进行安装。 Mounts according to the process of installation manual.
min.110 clearance
旧底图总号
HLD5106AZ
媒体编号
145.00
min.50 clearance
179.00
HLD-ECDIS 600 Installation Manual
269.00
105.00
min.50 clearance
Figure 19 Mounting Diagram of Power Conversion Unit
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Contact output
Switch
Power output
Power input
Figure 20 Front of Power Conversion Unit
Caution! ECDIS and the following sensors:
At least two position sensor; At least one velocity sensor; At least one depth sensor; At least one heading sensor;
A switching power which lasts for at least 45s shall be provided.
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4.2 LAN Switch 4.2.1 Tools for installation Flat head screwdriver, inner hexagonal screw driver tool set, adjustable spanner. The specifications of the tools are listed in Appendix A.
4.2.2 Basic Information
Figure 21 Outline of LAN Switch
4.2.3 Installation Position Installed in the ECDIS 600 wheelhouse control console and necessary space for maintenance is reserved according to the design layout of equipment in "Mounting Diagram of LAN Switch". Refer to the "Mounting Diagram of LAN Switch" for installation.
4.2.4 Installation Procedure Set four apertures which are approximately 6mm in the wheelhouse control console according to the installation diagram of LAN Switch as shown in Figure 4.37 and use four M5 screws to fix them.
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签名
)
日期
格式(
120.00±0.20 制图:
1.图中给出尺寸单位均为mm; All dimensions in mm;
说明(Note):
304 289±0.20 274 5.50
标准化 批 准 描图:
标记 数量 更改单号 签名 日期 设 计 审 核 工 艺
8.50
底图总号
18.50
旧底图总号
媒体编号
HLD 5101 AZ
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综合导航系统网络交换机安 装图
68
Mounting holes
接地螺柱M5 Ground Stud M5 5.5x8.5(4xM5)安装孔
电缆接入孔,最大电缆直径φ18.0 Cable access hole, Max. diameter of the cable is φ18.0
第
V1.1
张
共
质量
张
1:2
比例
幅面:A3
北京海兰信
阶段 标记
HLD 5101 AZ
HLD-ECDIS 600 Installation Manual
282
Figure 22 Mounting Diagram of LAN Switch
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HLD-ECDIS 600 Installation Manual
4.2. Wiring See the wiring drawing on Appendix C wiring of HLD-ECDIS 600.
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5 Software Installation
5.1 Support Software INS software need the support of the following software: QT Redis CouchDB HLD Decider ETS SNGF INSAPP Script-wjw INS Client Capture VDR
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5.2 Configuration Before Installation 5.2.1 Services When the WIN7 is installed, a few services may be shut down to improve the operating speed. Right click the computer icon and select the Manage.
Select the Services of the Services and Applications.
The services in the red rectangle should be shut down. Adobe Acrobat Update Service ASP .NET State Service Background Intelligent Transfer Service
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Computer Browser Disk Defragmenter Distributed Link Tracking Client DNS Client Highlander Decider Service Inter(R) HD Graphics Control Panel Service Internet Connection Sharing (ICS) IP Helper Media Center Extender Service Microsoft .NET Framework NGEN v2.0.50727_X64 Microsoft .NET Framework NGEN v2.0.50727_X86 Net.Msmq Listener Adapter Net.Pipe Listener Adapter Net.Tcp Listener Adapter Net.Tcp Port Sharing Service Offline Files Print Spooler Routing and Remote Access Shell Hardware Detection Windows Audio Endpoint Builder Windows Defender Windows Search Windows Update
Double click the required service, the property of which will open up as following:
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Select the status of Startup type to Disabled.
Click the
button to confirm the change you have made. The service will be shut down.
5.2.2 Optimum Performance Right click the computer icon and select the Properties.
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Select the Advanced system settings of the System.
Click the
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button of Performance group on Advanced page.
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Select the Adjust for best performance on the Visual Effects page.
Click the
button to confirm the change you have made.
5.2.3 Taskbar Right click on the taskbar. Select the Properties.
Select the Lock the taskbar and Auto-hide the taskbar on Taskbar page.
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Click the
button to confirm the change you have made.
5.2.4 Set time check Enter “msconfig” on the search box of the Start Menu.
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Press the ENTER button to open the System Configuration window. Select the No GUI boot and set the timeout value as 3 seconds on Boot page.
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Click the
button to confirm the change you have made.
5.2.5 Set BIOS Display Continue pressing the Del button when the work station is restarting. Then BIOS interface will come out. Using ←, →, ↑ and ↓ buttons to select the Chipset page.
Select the Graphics Configuration line and press the ENTER button to confirm to open.
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Use ←, →, ↑, ↓ and ENTER buttons to set the parameters as following: Parameters Primary Display Internal Graphics GTT Size Aperture Size DVMT Pre-Allocated DVMT Total Gfx Mem Gfx Low Power Mode Graphics Performance Analyzers
status Auto Auto 2MB 512mb 1024m MAX Enabled Disabled
Table 3 Parameters status of BIOS
5.2.6 Computer Name Right click the computer icon and select the Properties.
Select the Advanced system settings of the System window.
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Click the
button on Computer Name page.
Rename the Computer Name as INS1, INS2, INS3, INS4 and INS5.
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Click the
button of Computer Name/Domain Changes window to confirm.
Click the
button of System Properties window to confirm the change you have made
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5.3 Software Installation The compressed package got from Highlander consists of the following items: INS folder, QT folder, Redis folder, setup-couchdb-1.6.1_R16B02.exe, CouchDB folder, HLD folder, INS Client folder (Custom name such as MaWei_R_1.0.0.8002). Copy INS folder to D:\.
Follow the procedures below to install each sequentially.
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5.3.1 QT Copy the QT folder from the Installation folder to C:\. There are three paths needed to be added to system variables:
The addition can be finished as following procedures: 1) Right click the computer icon and select the Properties.
2) Select the Advanced system settings of the System window.
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3) Click the
button of the Advanced page.
4) Select and double click the Path from the System variables group
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5) Copy the path of three bin folders of QT by right clicking on the address bar of the folder.
6) Paste the path to Variable value input box of Edit System Variable window
7) Repeat the 5) and 6) until the paths of three bin folders are added. Use semicolon to separate different path. (To type semicolon, use the external keyboard or soft keyboard by searching osk in Start Menu.) 8) Click the button of Edit System Variable window, Environment Variables window and System Properties window to confirm the change you have made. The QT will be successfully installed.
5.3.2 Redis Copy the Redis folder from the Installation folder to C:\. Double click the Cinstall.bat to start installation. (Double click the uninstall.bat to uninstall) If Redis is successfully installed, the window will show as following:
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Press any key to exit the window.
5.3.3 CouchDB Double click setup-couchdb-1.6.1_R16B02.exe to start installation. Change the path as “D:\Program Files\CouchDB” and click
next to continue.
Copy the files on Couch folder to D:\Program Files\CouchDB\var\lib\couchdb.
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Follow the procedures below to restart the Apache CouchDB when the installation is finished. Move the cursor down to call the taskbar. Right click on taskbar and select Start Task Manager to open task manager.
Select to Services page, right click Apache CouchDB and select Stop Service.
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Wait until PID is clear. Right click Apache CouchDB and select Start Service.
Or Click the
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button on the right lower of the task manager to open Services window.
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Right click Apache CouchDB and select Restart. Expand all programs of Start Menu by clicking the Funton(CouchDB web interface) and press the left trackball button.
button, select
Select the Configuration of Tools.
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Change the value of bind_address to “0.0.0.0”. Click the
icon to confirm the change.
The CouchDB is successfully installed.
5.3.4 HLD Chart Copy HLD folder to D:\. Create a folder named HLD under C:\ProgramData. Copy BridgeClient.ini from D:\HLD to C:\ProgramData\HLD.
5.3.5 INSStartAPP Edit INSStartApp.ini by notepad on D:\INS\INSStartApp.
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Set the custom number, path, delay time and show status of software which will start automatically (no more than 4) by as following:
The recommend configurations of software are listed as following. User can adjust them according to the environment of working site. Software Delay time (s) Show Location INS Client 50 1 Each work station ETS 25 2 RADAR work station only Decider 40 1 Each work station Captrue VDR 10 2 Each work station Table 4 Recommend configuration of INSStartAPP
The mean of show value is listed as following: Value Show = 1 Show = 2 Show = -1
Show status Desktop, taskbar and processes. Taskbar and processes. Processes only.
Table 5 Value list of Show
Restart INSApp service when the edition is finished. The means to restart is the same with Apache CouchDB, see 5.3.3. Double click 0install.bat.
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Press any key to exit the window.
5.3.6 Decider Follow 5.3.5 to set Decider to start automatically. Decider folder is located on D:\INS. (See 5.3)
5.3.7 ETS Follow 5.3.5 to set ETS to start automatically. ETS folder is located on D:\INS. (See 5.3)
5.3.8 SNGF
5.3.8.1Script-wjw
Click SNGF_CONF.EXE which is located on D:\INS\SNGF to start SNGF_CONF_DEBUG.
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Click the
button of SNGF Service group to start or stop SNGF.
The status of SNGF is indicated above the button. /
5.3.8.2Configurate Serial Ports
Click SNGF_CONF.EXE to start SNGF_CONF_DEBUG. Select the workstation. (Select “4” when the current workstation is “INS4”.)
Click
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Set the Baudrate, Group IP and Group Port of each port according to custom configuration. The default configurations are list as following: Sensor GYRO AIS DIM and Alerts Other sensors
Group IP 239.192.0.3 239.192.0.2 239.192.0.10 239.192.0.4
Group Port 60003 60002 60010 60004
Table 6 Group IP and Port of Sensor
Restart SNGF service when the edition is finished. The means to restart is the same with Apache CouchDB, see 5.3.3.
5.3.9 Capture VDR Follow 5.3.5 to set Capture VDR to start automatically. InsRecorder.exe is located on D:\INS Client\Captrue. (The path is “D:\MaWei_R_1.0.0.7865\Capture\InsRecorder.exe.”)
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Double click InsRecorder.exe to start the configuration on Manually send set group.
The default configurations are listed as following: Work station SrcID ECDIS Planning EI8192 RADAR-X-BAND EI8193 ECIDS Monitoring EI8194 RADAR-S-BAND EI8195 Conning EI8196
IP Address 239.192.0.26 239.192.0.27 239.192.0.28 239.192.0.29 239.192.0.30
Port 60026 60027 60028 60029 60030
Table 7 Default workstations configuration of SNGF
Select Auto Start, click
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5.3.10 INS Client Copy INS Client folder to D:\. Follow 5.3.5 to set INS Client to start automatically.
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6 Post-installation Inspection
See Table 4 for the common inspection method. No.
Inspection item
Procedure
1
Cabinet appearance
Visual observation
2
Cleanness in cabinets
Cleaning
3
Wiring of cabinets
Inspect by reference to the wiring technology
4
Short circuit
5
Fuse
6
Insulation resistance
7
Earth wire
Inspect whether all parts are correctly earthed.
8
On-off state
On-off state of all parts before the system is power-on
9
Wiring terminals
Inspect whether the cable connection is reliably contacted
10
Cable connection
Inspect whether the power sections is short-circuited with a multimeter Inspect the fuse parameters and its switching with multimeter The resistance to ground of wave filter at input end is greater than 100 megohm
Inspect whether the wiring terminals is correctly connected by reference to the wiring diagram
Table 8 List of Common Inspection Methods
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Appendix A Specifications of Tools for Installation
No.
Name
Specifications
Inner hexagonal tool set
(1) Flat head screwdriver
1 / 2 / 3 / 4 mm
(2) Phillips head screwdriver
2 / 3 / 4 / 5 mm
(3) Allen driver
2 / 3 / 4 / 5 / 6 mm
(4) Sleeves
4 / 4.5 / 5 / 5.5 / 6 / 7 / 8 / 9 mm
2
Flat Terminal Crimping Pliers
0.25 to 1.5 / 1.5 to 2.5 / 4 to 6 mm²
3
Cast Terminal Crimping Pliers 0.08 to 6 mm²
4
Adjustable Spanner
1
250 mm×30 mm
Table 9 Specifications of Installation Tools
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Appendix B Category of ship/craft
CAT 3
CAT 2 CAT 1 500 gross tonnage to 10 000 All ships/craft ≥10 Size of ship/craft 500 gross tonnage gross tonnage and HSC 10 000 000 gross tonnage gross tonnage Minimum operational display area diameter 180 mm 250 mm 320 mm Auto acquisition of targets – – Yes Minimum acquired radar target capacity 20 30 40 Minimum activated AIS target capacity 20 30 40 Minimum sleeping AIS target capacity 100 150 200 Minimum total AIS target and reports capacity 120 180 240 Trial manoeuvre – – Yes NOTE The minimum display area requirement in the first edition of this standard has been removed as it is no a requirement of the display standards given in Resolution MSC.191(79) Table 10 Category of Ship/carft
Figure 23 System Wiring Diagram-1
S02
W/G
G/W
W/B
B/W
1. Sxx Is Cable Number; 2.* Shipyard Supply; 3. NO Marking HLD Supply; 4.Cable Diameter Not Marked Was 1mm.
NOTE:
Coxial Cable
S01
*≥4mm2
HLD-TU130
Coxial Cable
S03
W/B
B/W
30 KW Transceiver 收发单元 Unit
33M, SYP 75-5-2
HLD-TU125
33M, SYP 75-5-2
O/W
33M,24AWG*5PRS
W/O
Data Cable
L
N 33M,3*1.5 Power Cable POWER IN 220VAC, 1PH
O/W
W/O
S04
33M,24AWG*5PRS Data Cable
HLD5100JL
25 KW Transceiver 收发单元 Unit
Y
B
2015.11.23 2015.11.23 2015.11.23 2015.11.23
覃善兴
R
张超
B
郑方
R
张睿
POWER IN 220V/380VAC, 3 Ph
HLD-INS 600
综合导航系统
*3x2.5
12VDC Power Cable
33M,3*1.5
33M,4*2.5 3PHZ Power Cable
*≥4mm2
L
N 33M,3*1.5 Power Cable
Y
B
R
R
B
Y
B
R
V 1.1 1/9
HLD5100JL
HLD-SCU100
A3
Scanner Isolated Controller 隔离控制器
POWER IN 220VAC, 1Ph
Appendix C Wiring of HLD-ECDIS 600
W/G
G/W
*1X2X0.75
GND
TXD
RXD
1B
1A
1B
1A
1. Sxx Is Cable Number; 2.* Shipyard Supply; 3. NO Marking HLD Supply; 4.Cable Diameter Not Marked Was 1mm.
NOTE:
To Display Unit S05
GPS(D)
GPS
33M Coxial Cable
*1X2X0.75
S01
O\W W\O B\W W\B
Data Cable W\G G\W
33M
1B
1A
1B
1A
1B
1A
1B
1A
1B
1A
1B
1A
2
1
1B
1A
1.5M USB
Human Interface 人机交互单元 HLD-IU600
1.9M DVI Cable
1A 1B
*1X2X0.75
*1X2X0.75
*1X2X0.75
*1X2X0.75
*1X2X0.75
AIS
NAVTEX
ANEMOMETER
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郑方 张超 覃善兴
To Main Unit
张睿
ECHO SOUNDER
SPEED LOG
GYRO
S10To 1# LAN Switch S11 To 2# LAN Switch
*1X2X0.75
*CAT-5e
*CAT-5e
To VDR
* 1X2X0.75
S05
*2X1.5
S02
*2X1.5
1.5M RS232 Cable
1 2 1 2
HLD-MCU600
*TB-1
1 23 4
*2X1.5
*2X1.5
X-RADAR
L N L N L N *2X1.5
HLD5100JL
HLD5100AZ Rev 1.0 L N 1 2
Main Unit 主控单元
HLD-INS 600
综合导航系统
*≥1mm2
POWER IN 24VDC
POWER IN 220VAC,1PH
HLD-DU 13X
显示单元 Display Unit
V 1.1
*≥1mm2
2 1
2/9
HLD5100JL
1.7m Cable taken by Display Unit
A3
HLD-INS600 Installation Manual
Figure 24 System Wiring Diagram-2
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*1X2X0.75
GND
TXD
RXD
1B
1A
1B
1A
1. Sxx Is Cable Number; 2.* Shipyard Supply; 3. NO Marking HLD Supply; 4.Cable Diameter Not Marked Was 1mm.
NOTE:
33M Coxial Cable
*1X2X0.75
To Display Unit S06
GPS(D)
GPS
S03
O\W W\O B\W 33M W\B Data Cable W\G G\W
1B
1A
1B
1A
1B
1A
1B
1A
1B
1A
1B
1A
2
1
1B
1A
1.5M USB
*1X2X0.75
*1X2X0.75
*1X2X0.75
*1X2X0.75
*1X2X0.75
Human Interface 人机交互单元 HLD-IU600
To 1# LAN Switch
1.9M DVI Cable
1A 1B
AIS
NAVTEX
ANEMOMETER
2015.11.23 2015.11.23 2015.11.23 2015.11.23
郑方 张超 覃善兴
To Main Unit
张睿
ECHO SOUNDER
SPEED LOG
GYRO
S13 To 2# LAN Switch
S12
*1X2X0.75
*CAT-5e
*CAT-5e
To VDR
* 1X2X0.75
S06
*2X1.5
S04
*2X1.5
1.5M RS232 Cable
1 2 1 2
HLD-MCU600
*TB-2
1 23 4
*2X1.5
*2X1.5
S-RADAR
L N L N L N *2X1.5
L N 1 2
HLD5100JL
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HLD-INS 600
综合导航系统
*≥1mm2
POWER IN 24VDC
POWER IN 220VAC,1PH
HLD-DU 131
显示单元 Display Unit
V 1.1
*≥1mm2
2 1
3/9
HLD5100JL
1.7m Cable taken by Display Unit
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HLD-ECDIS 600 Installation Manual
Figure 25 System Wiring Diagram-3
HLD5100AZ Rev 1.0
*1X2X0.75
*1X2X0.75
GND
TXD
RXD
1B
1A
1B
1A
1. Sxx Is Cable Number; 2.* Shipyard Supply; 3. NO Marking HLD Supply; 4.Cable Diameter Not Marked Was 1mm.
NOTE:
To Display Unit S07
GPS(D)
GPS
1B
1A
1B
1A
1B
1A
1B
1A
1B
1A
1B
1A
2
1
1B
1.5M USB
*1X2X0.75
*1X2X0.75
*1X2X0.75
*1X2X0.75
*1X2X0.75
AIS
NAVTEX
ANEMOMETER
ECHO SOUNDER
SPEED LOG
GYRO
2015.11.23 2015.11.23 2015.11.23 2015.11.23
郑方 张超 覃善兴
To Main Unit
张睿
Human Interface 人机交互单元 HLD-IU600
1.9M DVI Cable
1A 1B
S14 To 1# LAN Switch S15 To 2# LAN Switch
*1X2X0.75
*CAT-5e
*CAT-5e
To VDR
* 1X2X0.75
S07
*2X1.5
1A
1.5M RS232 Cable
*2X1.5
1 2 1 2
HLD-MCU600
*TB-3
1 23 4
*2X1.5
*2X1.5
ECDIS 1#
L N L N L N *2X1.5
HLD5100JL
HLD5100AZ Rev 1.0 L N 1 2
Main Unit 主控单元
HLD-INS 600
综合导航系统
*≥1mm2
POWER IN 24VDC
POWER IN 220VAC,1PH
HLD-DU 13X
显示单元 Display Unit
V 1.1
*≥1mm2
2 1
4/9
HLD5100JL
1.7m Cable taken by Display Unit
A3
HLD-INS600 Installation Manual
Figure 26 System Wiring Diagram-4
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*1X2X0.75
*1X2X0.75
GND
TXD
RXD
1B
1A
1B
1A
1. Sxx Is Cable Number; 2.* Shipyard Supply; 3. NO Marking HLD Supply; 4.Cable Diameter Not Marked Was 1mm.
NOTE:
To Display Unit S08
GPS(D)
GPS
1B
1A
1B
1A
1B
1A
1B
1A
1B
1A
1B
1A
2
1
1B
1.5M USB
*1X2X0.75
*1X2X0.75
*1X2X0.75
*1X2X0.75
*1X2X0.75
AIS
NAVTEX
ANEMOMETER
ECHO SOUNDER
SPEED LOG
GYRO
S17 To 2# LAN Switch
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郑方 张超 覃善兴
To Main Unit
张睿
Human Interface 人机交互单元 HLD-IU600
1.9M DVI Cable
1A 1B
S16 To 1# LAN Switch
*1X2X0.75
*CAT-5e
*CAT-5e
To VDR
* 1X2X0.75
S08
*2X1.5
1A
*2X1.5
1 2 1 2
HLD-MCU600
1.5M RS232 Cable
*TB-4
1 2 3 4
*2X1.5
*2X1.5
ECDIS 2#
L N L N L N *2X1.5
L N 1 2
HLD5100JL
70 / 75 Main Unit 主控单元
HLD-INS 600
综合导航系统
*≥1mm2
POWER IN 24VDC
POWER IN 220VAC,1PH
HLD-DU 13X
显示单元 Display Unit
V 1.1
*≥1mm2
2 1
5/9
HLD5100JL
1.7m Cable taken by Display Unit
A3
HLD-ECDIS 600 Installation Manual
Figure 27 System Wiring Diagram-5
HLD5100AZ Rev 1.0
*1X2X0.75
*1X2X0.75
GND
TXD
RXD
1B
1A
1B
1A
1. Sxx Is Cable Number; 2.* Shipyard Supply; 3. NO Marking HLD Supply; 4.Cable Diameter Not Marked Was 1mm.
NOTE:
To Display Unit S09
GPS(D)
GPS
1B
1A
1B
1A
1B
1A
1B
1A
1B
1A
1B
1A
2
1
1B
1.5M USB 1A 1B
1.9M DVI Cable
*1X2X0.75
*1X2X0.75
*1X2X0.75
*1X2X0.75
*1X2X0.75
AIS
NAVTEX
ANEMOMETER
ECHO SOUNDER
SPEED LOG
GYRO
S19 To 2# LAN Switch
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郑方 张超 覃善兴
To Main Unit
张睿
Human Interface 人机交互单元 HLD-IU600
S18 To 1# LAN Switch
*1X2X0.75
*CAT-5e
*CAT-5e
To VDR
* 1X2X0.75
S09
*2X1.5
1A
*2X1.5
1 2 1 2
HLD-MCU600
1.5M RS232 Cable
*TB-5
1 23 4
*2X1.5
*2X1.5
CONNING
L N L N L N *2X1.5
HLD5100JL
HLD5100AZ Rev 1.0 L N 1 2
Main Unit 主控单元
HLD-INS 600
综合导航系统
*≥1mm2
POWER IN 24VDC
POWER IN 220VAC,1PH
HLD-DU 132
显示单元 Display Unit
V 1.1
*≥1mm2
2 1
6/9
HLD5100JL
1.7m Cable taken by Display Unit
A3
HLD-INS600 Installation Manual
Figure 28 System Wiring Diagram-6
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1B
1A
1B
1A
1B
1B 1A
1A * 1X2X0.75
Reset Contact Output
* 1X2X0.75
Way Point Messages Output
* 1X2X0.75
Autopilot Messages Output
* 1X2X0.75
INS Status Messages Output
To BNWAS600 INU TB9(9.10)
To SC200 ACU B4(Rx)
To SC200 ACU B4(Tx)
To SC200 ACU B3
LAN Switch HLD-LS600
S12 S14 S16 S18 S20
*CAT-5e 2015.11.23 2015.11.23 2015.11.23 2015.11.23
张睿 郑方 张超 覃善兴
X-RADAR
*CAT-5e S-RADAR
S10
*CAT-5e
2#
ECDIS1#
*CAT-5e
POWER IN 24VDC
*CAT-5e ECDIS2#
*CAT-5e
*CAT-5e CONNING
*2X1.5
*CAT-5e
*CAT-5e CONNING(NAU600)
*CAT-5e VDR(Highlander)
2
1. Sxx Is Cable Number ; 2.* Shipyard Supply; 3. NO Marking HLD Supply; 4.Cable Diameter Not Marked Was 1mm.
NOTE:
HLD-SCU600
1#
LAN Switch HLD-LS600
2 *2X1.5 1
S13 S15 S17 S19 S11
HLD-INS 600
综合导航系统 V 1.1
POWER IN 24VDC
*CAT-5e X-RADAR
1
*CAT-5e
*CAT-5e S-RADAR
*CAT-5e ECDIS1#
Signal Conversion Unit 信号转换单元
*CAT-5e ECDIS2#
HLD5100JL
72 / 75 CONNING
*CAT-5e
2 1
7/9
A3
POWER IN 24VDC
HLD5100JL
*2X1.5
HLD-ECDIS 600 Installation Manual
Figure 29 System Wiring Diagram-7
HLD5100AZ Rev 1.0
POWER IN 24VDC 1 2
*2X1.5 DC 24V
S20
To 1# LAN Swtich *CAT-5e
HLD5100AZ Rev 1.0 O G/W G
HLD5100JL
OPTION
HLD-NAU600
2015.11.23 2015.11.23 2015.11.23 2015.11.23
张睿 郑方 张超 覃善兴
非标数据采集单元 NON-STANDARD DATA ACQUISITION UNIT
HLD-INS 600
综合导航系统 V 1.1
8/9
HLD5100JL
A3
HLD-INS600 Installation Manual
Figure 30 System Wiring Diagram-8
73 / 75
O/W
74 / 75
HLD5100AZ Rev 1.0
HLD5100JL
Figure 31 System Wiring Diagram-9 OPTION
2015.11.23
2015.11.23
2015.11.23
2015.11.23
张睿
郑方
张超
覃善兴
1A 1B 1A 1B
HLD-INS 600
综合导航系统
1A 1B
*1X2x0.75 ANALOG SIGNAL
ANALOG SIG1
1A 1B
*1X2x0.75 ANALOG SIGNAL
ANALOG SIG1
1A 1B
*1X2x0.75 ANALOG SIGNAL
ANALOG SIG1
1A 1B
*1X2x0.75 ANALOG SIGNAL
ANALOG SIG1
1A 1B
*1X2x0.75 ANALOG SIGNAL
ANALOG SIG1
1 1B 1A
*1X2x0.75 ANALOG SIGNAL
ANALOG SIG1
HLD-NAU600
*1X2x0.75 ANALOG SIGNAL
ANALOG SIG1
非标数据采集单元 NON-STANDARD DATA ACQUISITION UNIT
*1X2x0.75 ANALOG SIGNAL
ANALOG SIG1
V 1.1 9/9
HLD5100JL
*≥1.5mm2
A3
HLD-ECDIS 600 Installation Manual
HLD-INS600 Installation Manual
HLD5100AZ Rev 1.0
75 / 75