Monitoring Solutions PRODUCTS - KOREC Group · 2017-09-08 · 7 Monitoring Solutions they are...

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Infrastructure Division, 10368 Westmoor Drive, Suite #100, Westminster, CO 80021, USA © 2014, Trimble Navigation Limited. All rights reserved. Trimble, the Globe & Triangle logo are trademarks of Trimble Navigation Limited, registered in the United States and in other countries. All other trademarks are the property of their respective owners. www.trimble.com Monitoring Solutions TRIMBLE MONITORING PRODUCTS CONTENT 1. TRIMBLE 4D CONTROL SOFTWARE 1.1 Trimble 4D Control software applications .....………………………………………………....…………………………… 4 1.2 Trimble Pivot Platform T4D module descriptions ………………………….…..…….…………………......……….… 9 1.3 Trimble 4D Control application and module overview ………………………...….………………..…......……... 16 1.4 Sensor licenses ………..…..……………………….………….…………………………………………………….…………...…… 17 1.5 Extended warranty and On-Site Support……...…………………………………...…………………..…………………. 17 1.6 Examples for possible configurations ………………………………………………………………..……………..……….. 18 1.7 Trimble 4D Lite ………………………..………………………………………………………………………………...……….……. 19

Transcript of Monitoring Solutions PRODUCTS - KOREC Group · 2017-09-08 · 7 Monitoring Solutions they are...

Page 1: Monitoring Solutions PRODUCTS - KOREC Group · 2017-09-08 · 7 Monitoring Solutions they are needed. Add the same time tilt sensor information can be used to compensate for inclination

Infrastructure Division, 10368 Westmoor Drive, Suite #100, Westminster, CO 80021, USA

© 2014, Trimble Navigation Limited. All rights reserved. Trimble, the Globe & Triangle logo are trademarks of Trimble Navigation Limited, registered in the United States and in other countries. All other trademarks are the property of their respective owners.

www.trimble.com

Monitoring Solutions TRIMBLE MONITORING

PRODUCTS

CONTENT

1. TRIMBLE 4D CONTROL SOFTWARE

1.1 Trimble 4D Control software applications .....………………………………………………....…………………………… 4 1.2 Trimble Pivot Platform T4D module descriptions ………………………….…..…….…………………......……….… 9 1.3 Trimble 4D Control application and module overview ………………………...….………………..…......……... 16 1.4 Sensor licenses ………..…..……………………….………….…………………………………………………….…………...…… 17 1.5 Extended warranty and On-Site Support……...…………………………………...…………………..…………………. 17 1.6 Examples for possible configurations ………………………………………………………………..……………..……….. 18 1.7 Trimble 4D Lite ………………………..………………………………………………………………………………...……….……. 19

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2. TRIMBLE TOTAL STATIONS

2.1 The Trimble S8 total station series …………………………………………………………………..……………………..... 20 2.1.1 Trimble S8 Autolock/Robotic instruments ……………………………..……………………....……………..…. 20 2.1.2 Overview of Trimble S8 models………………………………………………………………………………………….. 21

2.2 Radio communication …………………………………………………………………………………….…………………………. 22 2.3 Power supplies ……………………………………………………….....……………………..……………….……….………..….. 22 2.4 Cables …………………………………………………………………………………………………….…………………………………. 22 2.5 Temperature sensors ……………………………………………………………...…………………………………………..……. 23 2.6 Extended warranties ………………....................................................…………………………………………...…. 24

3. TRIMBLE GNSS RECEIVERS

3.1 Trimble Infrastructure GNSS receivers …...…………………………………...………………………………………...… 25

3.1.1 Description and key features …………………………………………………………………...……………………..… 25 3.1.2 Overview of infrastructure receiver models ………………………………………….……………………….….. 26 3.1.3 Warranties and upgrades for infrastructure receivers ……………………………….…………………….… 27

3.2 GNSS antennas …………………………………………………………………………………………….…………………………... 28 3.2.1 Description and key features ………………………………………………….……………..………………………….. 28 3.2.2 Overview of Trimble GNSS antenna models …………………………………………………………………...…. 30

4. TRIMBLE SEISMOGEODETIC SYSTEMS

4.1 The Trimble SG160-09 SeismoGeodetic System …..…..……………………………..……..……………………….… 31

5. TRIMBLE REF TEK SEISMIC SENSORS

5.1 Accelerometers …………………………………………………………………………………………………………………………. 32 5.2 Accelerographs …………………………………………………………………………………………………………………………. 32 5.3 Broadband seismometers ……………………………………………………………………………………………………..….. 33 5.4 Seismic data recorders ………………………………………………………………………………………………………………. 33

6. GEOTECHNICAL SENSORS

6.1 Sensors …………………………………………….………..…………………………………………………..……………………….… 34 6.2 Data loggers ..…………………......………………………………………………………………………………………………….... 34

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7. ACCESSORIES

6.1 Prisms ………………………………………………………………………………………….………………………………………….… 35 6.2 Tribrachs, mounts, etc. ……………………………………………………………………………………………………………... 35 6.3 Device servers for Trimble total stations …………………………………………………………………………………… 36

8. TRIMBLE ACCESS SOFTWARE

8.1 Trimble Access General Survey ……………………………………………………………….…………………………………. 37 8.2 Trimble Access Monitoring App ……………………………………………………………....……………………………….. 38 8.3 Trimble Access T4D Site Setup App ……………………………………………………………………………………………. 38 8.4 Trimble Access control units ………………………………………………………………………………....………………….. 39 8.5 Overview of Trimble Access ……………………………………………………………………………..…………………….…. 40

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1. TRIMBLE 4D CONTROL SOFTWARE

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1.1 TRIMBLE 4D CONTROL SOFTWARE APPLICATIONS The Trimble 4D Control software provides different applications for different monitoring requirements. Each application offers a number of modules and functionalities for specific monitoring operations such as instrument controls, data collection, data processing, data analysis and alarming. New applications can be added to existing installations at any time. TRIMBLE 4D CONTROL BASE (P/N 96801-15) The basic software frame comes with Trimble 4D Control Base. It includes the Trimble Pivot Platform (previously T4D Server), the TPP database (prev. T4D database), the user interface, the Trimble Report Generator and the basic data management modules.* * Note: No data collection or data processing modules are included. At least one of the Trimble Pivot Platform T4D Apps listed below has to be added to the configuration.

TRIMBLE INTEGRITY MANAGER POST-PROCESSING APP (P/N 96806-11) The Trimble Integrity Manager Post-Processing App includes all functionality which is required to down-load and/or create raw data files from a GNSS receiver using a real-time connection or remote down-load. Raw data files can be processed automatically according to a schedule. Multiple processing sessions with different observation times, data rates, etc. can be run in parallel. Automated data adjustment and displacement computation is also included. According to the number of direct connections to GNSS re-ceivers, the appropriate number of GNSS receiver licenses has to be added (see chapter Sensor Licenses). This is a Trimble Pivot Platform T4D App and it requires Trimble 4D Control Base. TRIMBLE INTEGRITY MANAGER REAL-TIME APP (P/N 96806-10) The Trimble Integrity Manager Real-Time App offers multiple real-time GNSS processing engines for dif-ferent monitoring tasks including a server-based RTK engine. All of them require real-time data connec-tions to the GNSS receivers. Supported data formats are the Trimble Real-Time format, CMRx, BINEX, RTCM 3 and NMEA. Automated data adjustment and displacement computation is also included. Accord-ing to the number of GNSS receivers to be used with these engines, the appropriate number of GNSS receiver licenses has to be added (see chapter Sensor Licenses). This is a Trimble Pivot Platform T4D App and it requires Trimble 4D Control Base. TRIMBLE RTX POST-PROCESSING APP (P/N 96807-10) The Trimble RTX Post-Processing App contains a module which logs RINEX, T01 or T02 files on the server and uploads them to a Trimble-hosted web service. Your observation file will be processed against data collected by the service and a processed vector will be transferred back to your T4D server. No base sta-tion is required. This technology from Trimble leverages data from a global tracking station network along with innovative positioning and compression algorithms to compute and relay satellite orbit, satel-lite clock and other system corrections to the receiver, resulting in the high accuracies. Automated data adjustment and displacement computation is also included. According to the number of direct connec-

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tions to GNSS receivers, the appropriate number of GNSS receiver licenses has to be added (see chapter Sensor Licenses). This is a Trimble Pivot Platform T4D App and it requires Trimble 4D Control Base. TRIMBLE RTX REAL-TIME APP (P/N 96807-00) The Trimble RTX Real-Time App contains a module which receives a correction data stream from a Trim-ble server to process positions in real-time. No base own base station is required. This technology from Trimble leverages real-time data from a global tracking station network along with innovative positioning and compression algorithms to compute and relay satellite orbit, satellite clock and other system correc-tions to the receiver, resulting in the high accuracies. These corrections are transmitted to T4D via a TCP/IP connection. Automated data adjustment and displacement computation is also included. Accord-ing to the number of GNSS receivers to be used with this service, the appropriate number of GNSS re-ceiver licenses has to be added (see chapter Sensor Licenses). This is a Trimble Pivot Platform T4D App and it requires Trimble 4D Control Base. TRIMBLE 4D CONTROL TERRESTRIAL CONTROL PP APP (P/N 96813-20) The Trimble 4D Control Terrestrial Control Post-Processing App processes and analyses field data collect-ed by using a TSC 3 or TCU. This either can be done with the Measure rounds function of Trimble Access General Survey with the Trimble Access Monitoring module. It includes deformation analysis, reports and charts. Sensor licenses are not required. This is a Trimble Pivot Platform T4D App and it requires Trimble 4D Control Base. TRIMBLE 4D CONTROL TERRESTRIAL CONTROL RT APP (P/N 96813-21) The Trimble 4D Control Terrestrial Control Real-Time App contains all modules which are required for an automated, real-time monitoring system with total stations. Perform your site setup, configure the scheduler and the system will operate the instrument and take the observations. Automated data ad-justment and displacement computation is also included. According to the number of total stations to be used, the appropriate number of total station licenses has to be added (see chapter Sensor Licenses). This is a Trimble Pivot Platform T4D App and it requires Trimble 4D Control Base. TRIMBLE 4D CONTROL GEOTECHNICAL APP (P/N 96813-22) The Trimble 4D Control Geotechnical App supports all kinds of geotechnical sensors and weather station. It also supports REF TEK accelerometers, seismometers and data recorders. According to the number of geotechnical sensors/accelerometers to be used, the appropriate number of geotechnical sensor licenses has to be added (see chapter Sensor Licenses). This is a Trimble Pivot Platform T4D App and it requires Trimble 4D Control Base.

TRIMBLE 4D CONTROL HIGH RISE APP (P/N 96813-29) Whenever large bridges or high structures are being constructed it is a challenge to create a proper net-work of control points which can be used for total station setups on the top level of the structure. The Trimble 4D Control High Rise App utilizes advanced GNSS real-time processing results and total station observations in an integrated adjustment process to provide high accuracy control coordinates where

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they are needed. Add the same time tilt sensor information can be used to compensate for inclination caused by wind, sun or cranes mounted at the structure. This app also requires Trimble 4D Control Base, the Trimble Integrity Manager Real-time App, the Trimble 4D Control Geotechnical App and the Trimble 4D Control Web App. According to the number of tilt sensors and GNSS receivers to be used, the appro-priate number of geotechnical sensor and GNSS receiver licenses has to be added (see chapter Sensor Licenses). TRIMBLE 4D CONTROL SEISMOGEODETIC APP (P/N 96813-30) The Trimble 4D Control SeismoGeodetic App allows the integration of standard frequency GNSS data (1 – 20 Hz) and high frequency acceleration data (100 – 500 Hz) for processing of high frequency displace-ments (up to 500 Hz). The SeismoGeodetic module manages the data from both sources and does the integrated computations. Real-time and post-processing is possible. The results will be stored using the High Frequency Displacement Storage module. This app also requires Trimble 4D Control Base the Trim-ble 4D Control Geotechnical App and the Trimble 4D Control Web App. According to the number of ac-celerometers and GNSS receivers or SeismoGeodetic sensors to be used, the appropriate number of geo-technical sensor and GNSS receiver licenses or SeismoGeodetic sensor licenses has to be added (see chapter Sensor Licenses). TRIMBLE 4D CONTROL 3D VISUALISATION APP (P/N 96813-03) The Trimble 4D Control 3D Visualisation App is utilising height maps and raster map overlays to create 3D models of the monitoring site. Sensor positions and sensor information can be displayed on the 3D scenes. This app also requires Trimble 4D Control Base, Trimble 4D Control Web App and a processing app to calculate sensor data. According to the number of sensors to be used, the appropriate number of sensor licenses has to be added (see chapter Sensor Licenses). TRIMBLE 4D CONTROL RADAR APP (P/N 96813-31) The Trimble 4D Control Radar App imports, processes and visualises data from ground based radar de-vices. It generates colour coded, geo-referenced raster maps. This app also requires Trimble 4D Control Base, the Trimble 4D Control Web App and the Trimble 4D Control 3D Visualisation App. According to the number of radar devices to be used, the appropriate number of radar sensor licenses has to be added (see chapter Sensor Licenses). TRIMBLE 4D CONTROL 3RD PARTY IMPORTER (P/N 96813-04) The Trimble 4D Control 3rd Party Importer allows the user to import data from other databases (e.g. Leica GeoMos database) into the T4D Monitoring database. It includes a user interface to configure import data sources. TRIMBLE 4D LEVEL IMPORT (P/N 96813-05) The Trimble 4D Control Level Import is a facility which can import pre-adjusted elevations or heights by using CSV files with coordinates. Point number, elevations/heights and coordinates can be edited on im-port. The time stamp can be entered manually.

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TRIMBLE 4D CONTROL WEB APP (P/N 96813-15) The Trimble 4D Control Web App (T4D Web) is a web front-end which offers comprehensive tools for da-ta visualization, data analysis, event logging and alarming. It is optimized for fast response and live data visualization in map and custom views. It contains simple, fast charting facilities and colour coded scatter plots for quick data analysis as well as high-level analysis tools for detailed inspections. A log facility automatically records all alarm events and can also be used to manually log any project re-lated information. E-Mail, SMS and batch file execution can be triggered in alarm situations. Web cams and other web content can be integrated into T4D Web. A very flexible account management facility en-sures individual function and project access.

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1.2 TRIMBLE PIVOT PLATFORM T4D MODULE DESCRIPTION

ACCELEROMETER MANAGER The Accelerometer Manager module comes with the Trimble Geotechnical Sensors App as a part of the Trimble 4D Control Server installation. It is used for the following purposes:

Receiving REFTEK accelerometer data streams provided by a REFTEK Data Acquisition (DAS) unit from the connected RTPD Service.

Decoding the high frequency (typically 200 Hz, and up to 1000 Hz) data.

Calculating the peak acceleration from the data.

Providing the data to the monitoring database. ALARM MANAGER The automatic alarm system is an essential part of Trimble 4D Control. If one of the modules in the Trimble 4D Control system reports that it is in a status defined as an alarm condition, it issues an alarm message. When this status disappears, it issues another message. The Alarm Manager mod-ule receives the messages and, if configured accordingly, reacts to them with performing a user-defined action. Alarms come in several levels (information, warning, alert). Some of them require to be acknowledged. DATA COLLECTOR The Data Collector module is used to specify the site setup of a Trimble S8 total station. It allows performing reference measurements and setting up schedules for repeated round measurements using Autolock™, Finelock™ or LongRange Finelock™ mode. The module stores the raw measure-ments in the central database. DATA LOGGER The Data Logger module reads measurements of the connected geotechnical sensors from a CSV file. The CSV file is usually written by a data logger e .g. a Campbell Scientific Data Logger. Multiple instances of the Data Logger module, representing multiple Campbell Scientific Data Loggers, may be inserted into Trimble 4D Control, each with its own set of geotechnical sensors. DATA RECEIVER The Data Receiver module reads raw measurement data from an incoming data stream. It receives the data (native GKA format or enhanced GNV format), converts it and stores it as raw measure-ments in the central database. This module can be used to import data from Non-Trimble total stations into Trimble 4D Control in real-time.

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INTEGRITY MONITOR The Integrity Monitor (previously Deformation Monitor) module analyses the data which has been processed by a processing engine. This can be terrestrial, GNSS or combined data. The module lists the numerical deformation values, provides map and chart views, adjustment results and allows defining reference axes for offsets. It also keeps the alarming thresholds. DEVICE MANAGER The Device Manager module is the main tool for configuring and viewing your reference station network. Use it to add the connections to reference stations to the network and to get an over-view on most of the properties of the connected reference receivers. Each reference station re-ceiver that is connected to Trimble 4D Control is represented by a GNSS Receiver or an NMEA Re-ceiver module. DISK WATCH The Disk Watch module lets you administrate and maintain the data storage on a permanent and automatic basis. Trimble 4D Control needs (and accepts) only one Disk Watch module for the whole system, since Disk Watch lets you control all computers and hard disks in your system. The Disk Watch module monitors the hard disks of specified computers for remaining disk space or for files of a specified file age. If it detects that disk space is too low or files are too old, it removes files according to the deletion criteria. You can specify the deletion criteria in multiple jobs. EPHEMERIS DOWNLOAD Predicted Ultra Rapid Orbits are used in Trimble 4D Control to improve the geometric modeling and to determine the quality of orbits used in the system. The Ephemeris Download module helps you to automate the download of predicted orbit files from the Internet. Use the Ephemeris Download module to select the protocol for data transfer and to provide the download addresses and the target folder. For redundancy purposes you can specify two different download URLs. EPHEMERIS MANAGER The Ephemeris Manager module collects orbit information and provides it to all other modules in Trimble 4D Control. The information is stored to improve the startup behavior of the system. The Ephemeris Manager module manages the broadcast and predicted satellite orbits as well as the satellite almanac. It writes the last valid orbit and almanac values into the registry and deletes the former ones. FTP MIRROR The FTP Mirror module is an enhanced built-in FTP client which lets you transfer files of a local hard drive folder (including its subfolders) to a predefined folder on a FTP server located at an ar-bitrary position. Trimble 4D Control needs only one FTP Mirror module for the whole system.

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GKA STORAGE The GKA Storage module archives total station data in the GKA format. GNSS RECEIVER A GNSS Receiver module controls the data received by the respective connected receiver. It also analyses the consistency of dual-frequency data for each satellite. It detects receiver errors, such as data drifts, outliers or cycle-slips, and generates pseudo-range and range rate corrections. If a cycle slip has been detected, the module tries to correct it. Data, which cannot be corrected, is removed from the data set, before it is passed on to other modules. With active connections, ex-ternal sensor data (weather, tilt data) can be stored. HIGH FREQUENCY DISPLACEMENT STORAGE The High Frequency Displacement Storage module stores the high frequency displacement files which have been created by the SeismoGeodetic module into a selected folder structure. The files will be accessed by the T4D Web App and the data can be visualized in the High Frequency Chart analysis. HIGH RISE The High Rise module delivers on demand precise and reliable coordinates which are not influ-enced by building movements at the top of any structure such as a tall building. For achieving this goal it hosts the High Rise module which combines GNSS and inclination data. IN-PLACE INCLINOMETER To calculate inclination correction for the High Rise module the In-Place Inclinometer module uses arrays of tilt sensors. Each tilt sensor will be associated with a specific section of the high rise structure. The sections may vary in length. INSTRUMENT MANAGER The Instrument Manager module controls all Data Collector modules of a system configuration. It visualizes the settings of the Data Collector schedulers. It helps to detect bad configurations (e.g. time overlaps) and makes it easy to adjust scheduler settings. INTEGRATED SURVEY ENGINE The Integrated Survey Engine is used to process different data types in an integrated approach. The optical raw measurements of a total station mission will be provided by one or several Data Collector modules in a real-time system. GNSS baseline data will be pre-processed by the whole variety of GNSS processing engines. The Integrated Survey Engine processes and adjusts terrestrial data and GNSS data from a GNSS processing engine together in the GNSS reference frame.

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NETWORK MOTION ENGINE The Network Motion Engine module performs a continuous analysis of the reference coordinates as defined in the global station list. This allows the system to countercheck for errors in defined coordinates, wrong definition of antenna heights or antenna types. The method is based on a mul-ti-station delta (with respect to time) difference approach to allow a very robust and reliable posi-tion estimation. Preferably use the Network Motion Engine for large-scale networks when high ac-curacy is required, but reaction time to position changes plays a minor role in your setup. NMEA ENGINE The NMEA Engine module collects the NMEA baseline data of the latest epoch from all selected NMEA Receiver stations, synchronizes the data as one epoch and possibly applies a filter upon it. The data can then be passed on to a Deformation Monitor module. The NMEA Engine module au-tomatically recognizes when NMEA Receiver modules are removed and adapts itself accordingly. NMEA RECEIVER The NMEA Receiver module receives the NMEA records from the connected station and uses them to compute a vector from a selected base station to the connected station. The NMEA GGA and GGK formats are supported. POST-PROCESSING ENGINE This processing of stored observation data with arbitrary session length results in highest-precision coordinates and is preferable, if the time to react to the measurement is of less importance. The Post-processing Engine module uses stored raw receiver data (RINEX, DAT, T0x) for automated po-sition estimation from baseline combinations with overlapping time sequences. It should be used, if the baselines within the network are of arbitrary length. For obtaining optimum results, longer processing periods should be covered the longer the baselines are. The processing results are passed on to dependent modules for filtering, adjustment, and data display. RADAR ENGINE The Trimble Radar (Radar App) app includes the Radar Engine module. This module feeds ground-based radar data into the system on schedule, monitors the scheduled data, and processes it. It makes the results available for a geo-referenced integration with a digital terrain model.

RAPID MOTION ENGINE The Rapid Motion Engine module accurately tracks the positions of GNSS antennas within a net-work that is established for the purpose of monitoring slow deformations but with occasional rap-id motion due to events such as earthquakes or landslides. It is specified to detect fast motion of 3 cm per second or greater. The module is able to handle small networks of a few kilometers in ex-tent as well as much larger networks spanning countries.

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REPORT GENERATOR The Trimble Report Generator (TRG) is an application that allows creating reports based on the monitoring data or the system logs that are stored in the system-wide Trimble 4D Control data-base. These reports are based on a XML format that allows different output formats such as HTML or PDF. Report generation works in two ways, automatically by schedule or manually on demand. You can customize the report types created by the Trimble Report Generator. A report consists of a header and data, including graphics. ROUTER A Router module receives data from any source (any input connection) and distributes it to any target (any output connection). The Router functionality lets you distribute unknown data. You do not have to provide the information on the type of data to the receiving module before it can work. Using this feature, expensive external routing may become obsolete. ROUTER MANAGER The Router Manager module is the main tool for configuring and viewing your assembly of Router modules. Use the Router Manager for the following: Adding Router modules to the system Grouping Router modules in a hierarchical structure. Thus, Router modules can pass on

their data to several targets. Getting an overview on the most important properties of each managed Router module. Quickly move the focus to a specific module and / or open its properties in the Properties

view. RTK ENGINE The RTK Engine module takes the receiver observations and processes baselines to determine and pass on high quality coordinates for a given set of stations in your network. It should be used, if the baseline lengths within the network are of small to medium size (not longer than 35 km), and very fast reaction (real-time) together with medium accuracy is required. RTX ENGINE The RTX Engine module takes receiver observations and connects to the Trimble CenterPoint™ RTX™ service (using the Ephemeris Manager module). The module provides station positions de-rived from RTK solutions which are based on highly accurate clock and orbit messages provided by the Trimble global tracking network. It does not need a network of reference stations providing VRS data. The RTX Engine module should be used:

If very fast reaction (real-time) together with medium accuracy is required

If network-independent stations are to be monitored

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If access to the very precise, globally available Trimble RTX corrections is permitted. The Ephemer-

is Manager module must be set up to use real-time orbits and clocks from the Trimble global serv-

er.

RTX-PP ENGINE The RTX-PP Engine is a post processing tool that uses the Trimble RTX™ Post-Processing service to calculate highest-precision coordinates using locally stored observation data. The module takes observation files (in a specified file format, such as RINEX v2.xx and higher, Compact RINEX, DAT, TGD, T01 or T02) and sends them to the Trimble RTX™ Post-Processing service, where absolute positions using precise orbits are calculated using the raw observation data. These absolute posi-tions as well as the number of usable epochs are then returned to the RTX-PP Engine, where they are compared to the known reference coordinates of the respective station. The processing results are passed on to dependent modules for filtering, adjustment, and data display. The RTX-PP Engine works in static mode. SCENE ENGINE The purpose of the Scene Engine module is to enable the three-dimensional visualization of moni-toring sites for users of the Trimble 4D Control Web application. For this purpose, it manages the Scene Engine database and closely cooperates with other Trimble Pivot Platform modules, with the Monitoring database, and with the Trimble 4D Control Web application. STORAGE (RINEX, DAT, T0X) To analyze or post-process the network GNSS data it is necessary to store the receiver's data. The Storage (RINEX, DAT, T0x) module collects the data received from the parent GNSS Receiver mod-ule, converts it into data files into different output formats and saves the files to specified folders on the local computer. A storage integrity functionality ensures full reliability of file collection for post-processing. If data gaps exist in the stored data at a Trimble 4D Control server (for example, due to network downtime or instability of the communication links/devices), the Storage module can retrieve the data logged at the remote receiver. SEISMOGEODETIC Trimble 4D Control allows the integration of standard frequency GNSS data (1 – 20 Hz) and high frequency acceleration data (100 – 500 Hz) for processing of high frequency displacements (up to 500 Hz). The SeismoGeodetic module manages the data from both sources and does the integrat-ed computations. Real-time and post-processing is possible. The results will be stored using the High Frequency Displacement Storage module.

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SYNCHRONIZER The Synchronizer module collects and synchronizes the data of all (selected) GNSS Receiver mod-ules and sends it to the processing engines epoch by epoch. Synchronizers must be started before adding a real-time processing engines. It automatically recognizes when GNSS Receiver modules are removed and adapts itself accordingly. TEMPERATURE SENSOR The Temperature Sensor module connects Trimble 4D Control to a Papouch s.r.o. digital tempera-ture sensor device, which measures and transmits temperature values in degrees Celsius [°C]. Use this module to put the current temperature value into the system every minute, provide these pe-riodically measured temperature values to Terrestrial Engine RT modules and store the data in the central database. TERRESTRIAL ENGINE PP The Terrestrial Engine PP is used to import total station measurements from files, to process the raw measurements (Trimble Survey Controller or Trimble Access) and to compute the target point coordinates. It stores the raw measurements and the computed point coordinates in the central database. TERRESTRIAL ENGINE RT The Terrestrial Engine RT is used to process the raw measurements of a mission provided by one or several Data Collector or Data Receiver modules in a real-time system. It is used to compute target point coordinates. It stores the computed point coordinates in the central database.

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1.3 TRIMBLE 4D CONTROL APP AND MODULE OVERVIEW

Trimble 4D Control

Module/Function

Base

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SS

PP

GN

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RT

RT

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RT

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ial

Co

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PP

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RT

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Hig

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Web

3rd

Part

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Imp

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Seis

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Geo

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3D

Vis

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Rad

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Accelerometer Manager x

Alarm Manager x

Data Collector x

Data Logger x

Data Receiver x

Device Manager x x x x

Disk Watch x

Ephemeries Download x

Ephemeries Manager x

FTP Mirror x

GKA Storage x

GNSS Receiver x x x x

High Freq. Disp. Storage x

High Rise x

In-Place Inclinometer x

Integrity Monitor x x x x x x x

Instrument Manager x

Integrated Survey Engine x

Network Motion Engine x

NMEA Engine x x

NMEA Receiver x x

Post-Processing Engine x

Radar Engine x

Rapid Motion Engine x

Report Generator x

Router x

Router Manager x

RTK Engine x

RTX Engine x

RTX PP Engine x

Scene Engine x

SeismoGeodetic x

Storage (RINEX, DAT, T0x) x x x x

Synchronizer x x

Temperature Sensor x

Terrestrial Engine PP x

Terrestrial Engine RT x

T4D Desktop x x x

3rd Party DB Import x

Level Data Import x

Web Interface x

App

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1.4 SENSOR LICENSES In addition to the Trimble 4D Control software configuration sensor licenses are required for real-time data collection and automated data processing. One license is required for each sensor which is used in the actual configuration. Manual data processing of total station data does not require any sensor li-censes.

P/N Trimble 4D Control Sensor Licenses

96813-11 1 add Sensor License - Trimble S8 TS to Dongle Configuration

96801-49 1 add Sensor License - Trimble GNSS Rcvr. to Dongle Configuration

96813-12 1 add Sensor License – Geotechnical Sensor to Dongle Configuration

96811-25 1 add Sensor License - Trimble SeismoGeodetic Sensor to Dongle Configuration

96813-32 1 add Sensor License - Radar Device to Dongle Configuration

1.5 EXTENDED WARRANTY AND ON-SITE SUPPORT

P/N Trimble 4D Control Upgrades, EW and Support

EWINF-T4D-SW T4D Extended Warranty (1 year)

OSSINFRA On-Site Support

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1.6 EXAMPLES FOR POSSIBLE CONFIGURATIONS TOTAL STATIONS ONLY: GNSS ONLY: INTEGRATED:

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1.7 TRIMBLE 4D LITE

Trimble 4D Lite is designed for surveyors, engineers and scientists to perform campaign monitoring of data/time series without the need to integrate directly with onsite hardware and sensors. T4D Lite can be used to meet campaign monitoring needs of installations on dams, bridges, mines, landslides, build-ings and other natural and man-made hazards or structures using sensors to monitor health. Data can be integrated from a wide range of sensors. The data can be visualized and analyzed on a variety of interac-tive charts and scatter plots and the sensors can be viewed in context with the structure using a variety of backdrops including maps, plans or photographs. Trimble 4D Lite is a subscription based service hosted by Trimble. For more information about features and registration please visit http://www.t4dlite.com.

P/N Trimble 4D Lite

96813-50 T4D Lite Standard License - Annual subscription

96813-51 T4D Lite Enterprise License - Annual subscription

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2. TRIMBLE TOTAL STATIONS This chapter describes all total stations that are supported by the Data Collector module of the Trimble 4D Control software. As the Data Collector module only supports Trimble S8 instruments with FineLock™ sensor, no other types of total stations are listed. To use any other kind of real-time total station data, collected by a Trimble or non-Trimble instrument, it is necessary to stream the data to a Data Receiver module in GKA format. The Terrestrial Engine PP module can post-process any kind of data which has been collected by the Measure Rounds function of Trimble Survey Controller, the Measure Rounds func-tion of Trimble Access (General Survey) or the Trimble Access Monitoring module. Both, Trimble Survey Controller and Trimble Access, support various types of Trimble and non-Trimble total stations.

2.1 THE TRIMBLE S8 TOTAL STATION SERIES The Trimble S8 instruments are available with 0.5”or 1” angular accuracy and with a distance accuracy of 0.8 mm + 1 ppm (HP EDM) or 1 mm + 2 ppm (DR Plus EDM) on prisms. They are all equipped with the silent, frictionless Trimble MagDrive™ servo technology, the Trimble MultiTrack™ technology and the Trimble SurePoint™ technology. Other standard features are the coaxial laser pointer, reflectorless EDM function and optical plummet. For more technical details please check the Trimble S8 data sheet at the Trimble website. 2.1.1 TRIMBLE S8 AUTOLOCK/ROBOTIC INSTRUMENTS The Trimble S8 Robotic/Autolock instrument with FineLock™ sensor is the perfect total station for moni-toring applications. The Trimble FineLock sensor ensures absolute precise aiming whenever there is a demand for a high density of targets and/or very high accuracy. FineLock requires a minimum separation of only 80 cm at 200 m between the prisms to identify the correct target. The aiming accuracy is better than 1 mm at 300 m.

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The Trimble S8 instrument with Long Range Finelock™ is designed for tasks where monitoring over long distances is necessary, conditions which are typically found e.g. in large open pit mines. The Long Range FineLock™ sensor works with an accuracy of better than 10 mm at a distance of 2,500 m. 2.1.2 OVERVIEW OF TRIMBLE S8 MODELS

P/N Trimble S8 Instruments with FineLock Sensor

S8022100 Trimble S8 0.5" DR HP- Autolock, FineLock

S8022200 Trimble S8 0.5" DR HP- Robotic (global radio), FineLock

S8023100 Trimble S8 0.5" DR HP- Autolock, FineLock, Trimble Vision

S8023200 Trimble S8 0.5" DR HP- Robotic (global radio), FineLock, Trimble Vision

S8122100 Trimble S8 1" DR HP- Autolock, FineLock

S8122200 Trimble S8 1" DR HP- Robotic (global radio), FineLock

S8123100 Trimble S8 1" DR HP- Autolock, FineLock, Trimble Vision

S8123200 Trimble S8 1" DR HP- Robotic (global radio), FineLock, Trimble Vision

S8124100 Trimble S8 1" DR HP- Autolock, FineLock, Long Range FineLock

S8124200 Trimble S8 1" DR HP- Robotic (global radio), FineLock, Long Range FineLock

S8153200 Trimble S8 1" DR Plus - Robotic (global radio), FineLock, Trimble Vision

S8154100 Trimble S8 1" DR Plus - Autolock, FineLock, Long Range FineLock

S8154200 Trimble S8 1" DR Plus - Robotic (global radio), FineLock, Long Range FineLock

Note: All Trimble S8 Robotic instruments have the Autolock sensor included.

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2.2 RADIO COMMUNICATION To use the internal radio of a Trimble S8 Robotic instrument for real-time data collection with Trimble 4D Control an external 2.4 GHz radio module at the PC is required. One radio module can control up to five Trimble S8 instruments simultaneously.

RADIO – EXTERNAL RADIO 2.4 GHZ, GLOBAL (P/N 58050019)

2.3 POWER SUPPLIES

POWER SUPPLY – 6 PIN HIROSE, 12 V (P/N 78600019)

→ For S series instruments and external 2.4 GHz radio 2.4 CABLES

CABLE – 2.5, HIROSE 6 PIN MALE TO PC USB (P/N 73840019) → Connects a Trimble S8 instrument directly to a PC CABLE – 2.5, HIROSE 6 PIN MALE TO PC D-SUB 9 PIN (P/N 53002021) → Connects a Trimble S8 instrument directly to a PC CABLE – 2.5 M, Y-CABLE, HIROSE 12 PIN MALE TO D-SUB 9 PIN AND HIROSE 6 PIN FEMALE (P/N 53020019) → Connects an external 2.4 GHz radio to a PC and to an external power

supply (P/N 78600019-MON)

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CABLE – 0.1 M, HIROSE 6 PIN MALE TO HIROSE 6 PIN FEMALE, FOR AUTO START-UP (P/N 53094001) → When plugged into the COM port of a Trimble S8, the instrument will au-

tomatically start-up when power is supplied CABLE - 3.0 M, CIGARETTE LIGHTER TO HIROSE 6 PIN (P/N 73835019) → Connects a Trimble S8 to the 12 V car power socket CABLE - 3.0 M, CAR BATTERY (CROC CLIPS) TO HIROSE 6 PIN (P/N 73836019) → Connects a Trimble S8 to the 12 V car battery

2.5 TEMPERATURE SENSORS To correct EDM distance for atmospheric influences (and also for other purposes) temperature sensor can be added to a T4D installation directly the Temperature Sensor module which is part of the Trimble 4D Control Terrestrial Control RT App supports these sensors. A sensor license is not required.

RS232 THERMOMETER (P/N 58008051-TM) ETHERNET THERMOMETER POE (P/N 58008052-TME_POE)

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2.5 EXTENDED WARRANTIES

P/N Extended Warranties - Trimble S8

EWINF-TS-AUTO Warranty - AutoLock TS Hardware Extended Warranty

EWINF-TS-AUTO-SYSTEM Warranty - AutoLock TS System HW & Field SW Extended Warranty

EWINF-TS-ROBOT Warranty - Robotic TS Hardware Extended Warranty

EWINF-TS-ROBOT-SYSTEM Warranty - Robotic TS System HW & Field SW Extended Warranty

Note: Not all part numbers are available in every country.

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3. TRIMBLE GNSS RECEIVERS The Trimble 4D Control software supports a wide range of Trimble and non-Trimble dual-frequency GNSS receivers, some Trimble survey GNSS receivers and all of the Trimble NetRx series GNSS receivers. All supported receivers are equipped with the Trimble R-Track™ technology for robust and reliable satellite tracking using Maxwell chip sets. As T4D GNSS computation relies on the accuracy of at least dual fre-quency signals, no single frequency receiver are currently supported. Note: Only the standard product numbers and packages are listed in this document. For additional pack-ages and special promotions please contact your local Trimble distributor.

3.1 TRIMBLE INFRASTRUCTURE GNSS RECEIVERS 3.1.1 DESCRIPTION AND KEY FEATURES The Trimble infrastructure receivers of the NetRx series have proven their high performance in uncount-ed reference networks all over the world. They are working as continuously operating reference stations (CORS) in VRS networks and deliver high quality correction data to thousands of customers. This makes them the perfect receivers for many monitoring applications. All receivers of the NetRx series can be easily configured via the front panel or the web interface which includes Ntrip server, caster and client. The units can be combined with different GNSS antennas. A de-scription of the Trimble GNSS antennas can be found in the GNSS antennas chapter of this document. For more technical details please check the data sheets at the Trimble website. The following models are available:

TRIMBLE NETR9 TI-M GNSS RECEIVER → Non- upgradable monitoring receiver → GPS → GLONASS → 440 channels → 2 GB internal memory → Internal battery for 15 h operation → Power over Ethernet

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TRIMBLE NETR9 TI-1, TI-2, TI-3 GNSS RECEIVERS → Fully upgradable unit → GPS → L2C → L5 → GLONASS → Galileo → 440 channels → 8 GB internal memory → 50 Hz positioning → Internal battery for 15 h operation → Power over Ethernet → External frequency input → Trimble NetR9 Data Sheet

3.1.2 OVERVIEW OF INFRASTRUCTURE RECEIVER MODELS

P/N Trimble Infrastructure GNSS Receivers

97505-40 Trimble NetR9 Ti-M GNSS RCVR with Monitoring Antenna

97501-00 Trimble NetR9 Ti-1 GNSS RCVR without Antenna

97501-10 Trimble NetR9 Ti-1 GNSS RCVR with Zephyr Geodetic 2 Antenna

97501-20 Trimble NetR9 Ti-1 GNSS RCVR with GNSS Choke Ring Antenna

97501-30 Trimble NetR9 Ti-1 GNSS RCVR with GNSS-Ti Choke Ring Antenna

97502-00 Trimble NetR9 Ti-2 GNSS RCVR without Antenna

97502-10 Trimble NetR9 Ti-2 GNSS RCVR with Zephyr Geodetic 2 Antenna

97502-20 Trimble NetR9 Ti-2 GNSS RCVR with GNSS Choke Ring Antenna

97502-30 Trimble NetR9 Ti-2 GNSS RCVR with GNSS-Ti Choke Ring Antenna

97503-00 Trimble NetR9 Ti-3 GNSS RCVR without Antenna

97503-10 Trimble NetR9 Ti-3 GNSS RCVR with Zephyr Geodetic 2 Antenna

97503-20 Trimble NetR9 Ti-3 GNSS RCVR with GNSS Choke Ring Antenna

97503-30 Trimble NetR9 Ti-3 GNSS RCVR with GNSS-Ti Choke Ring Antenna

Note: Not all part numbers are available in every country.

Some part numbers include GNSS antennas.

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3.1.3 WARRANTIES AND UPGRADES FOR INFRASTRUCTURE RECEIVERS

P/N Warranties And Upgrades - Infrastructure Units

EWINF-GPS Infrastructure Net* Receiver Hardware Extended Warranty

EWINF-GPS-FW Software Maintenance - Infrastructure Net* Receiver FW

EWINF-GPS-RENEW Software Maintenance - Infrastructure Net* Receiver FW (Reinstat.)

97501-50 Trimble NetR9 Ti-3 Upgrade - Enable CMR/CMR+ Input

97501-51 Trimble NetR9 Ti-3 Upgrade - Enable CMR/CMR+ Output

97501-52 Trimble NetR9 Ti-3 Upgrade - Enable CMRx Input

97501-53 Trimble NetR9 Ti-3 Upgrade - Enable CMRx Output

97501-54 Trimble NetR9 Ti-3 Upgrade - Enable RTCM Input

97501-55 Trimble NetR9 Ti-3 Upgrade - Enable RTCM Output

97501-56 Trimble NetR9 Ti-3 Upgrade - Enable Advanced RTCM Output

97501-57 Trimble NetR9 Ti-3 Upgrade - Enable Event Marker

97501-58 Trimble NetR9 Ti-3 Upgrade - Enable NMEA

97501-59 Trimble NetR9 Ti-3 Upgrade - Enable Bluetooth

97501-60 Trimble NetR9 Ti-3 Upgrade - Enable L2C

97501-61 Trimble NetR9 Ti-3 Upgrade - Enable External USB Drive

97501-62 Trimble NetR9 Ti-3 Upgrade - Enable RTKNote (requires input)

97501-63 Trimble NetR9 Ti-3 Upgrade - Enable GPS L5

97501-64 Trimble NetR9 Ti-3 Upgrade - Enable GLONASS

97501-65 Trimble NetR9 Ti-2/3 Upgrade - Enable Programmatic Interface

97501-66 Trimble NetR9 Ti-2/3 Upgrade - 2 GB Int. Memory (Max. 8 GB)

97501-67 Trimble NetR9 Ti-2/3 Upgrade - Increase data rate (1x = 20, 2x = 50 Hz)

97501-68 Trimble NetR9 Ti-2/3 Upgrade - Enable Galileo

97501-69 Trimble NetR9 Ti-2/3 Upgrade - Enable Compass

97501-70 Trimble NetR9 Ti-2/3 Upgrade - Enable QZSS

97501-71 Trimble NetR9 Ti-1/2/3 Upgrade - Enable RTX

97501-99 Trimble NetR9 Accessory Kit

Note: Not all part numbers are available in every country.

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3.2 TRIMBLE GNSS ANTENNAS 3.2.1 DESCRIPTION AND KEY FEATURES Trimble GNSS antennas conform to strict standards of consistency and performance to deliver the best possible low elevation tracking. Trimble antennas meet or exceed phase-center eccentricity standards of 2 mm, and offer industry-leading multipath mitigation. Trimble’s quality antennas maximize positioning performance and consistency through tightly controlled manufacturing practices, extensive testing and innovative engineering. For more technical details please check the data sheets at the Trimble website. The following models are available:

TRIMBLE ZEPHYR GEODETIC 2 GNSS ANTENNA → Broad GNSS frequency tracking band:

GPS: L1, L2, L5 GLONASS: L1, L2, L3 Galileo: E1, E2, E5, E6 SBAS: WAAS, EGNOS, QZSS, Gagan, MSAS, OmniStar

→ Trimble Stealth™ ground plane → TNC female connector → 13 dB amplifier margin → 50 db signal gain → Input voltage: 3.5 V – 20 V DC → Dimensions: 34.3 cm diameter x 7.6 cm height → Weight: 1.36 kg → Trimble Zephyr Data Sheet → Trimble Geodetic Antennas Brochure TRIMBLE GNSS/GNSS-TI CHOKE RING ANTENNA → Broad GNSS frequency tracking band:

GPS: L1, L2, L5 GLONASS: L1, L2, L3 Galileo: E1, E2, E5, E6 SBAS: WAAS, EGNOS, QZSS, Gagan, MSAS, OmniStar

→ TNC female connector → 13 dB amplifier margin → 50 db signal gain → Input voltage: 3.5 V – 20 V DC → Dimensions: 38 cm diameter x 14 cm height → Weight: 4.3 kg → Trimble Geodetic Antennas Brochure

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TRIMBLE AG25 MONITORING ANTENNA → Broad GNSS frequency tracking band:

GPS: L1, L2, L5 GLONASS: L1, L2, L3 SBAS: WAAS, EGNOS, MSAS, OmniStar

→ TNC female connector → 13 dB amplifier margin → 50 db signal gain → Input voltage: 3.5 V – 20 V DC → Compact and rugged housing TRIMBLE ZEPHYR 2 GNSS ANTENNA → Broad GNSS frequency tracking band:

GPS: L1, L2, L5 GLONASS: L1, L2, L3 Galileo: E1, E2, E5, E6 SBAS: WAAS, EGNOS, QZSS, Gagan, MSAS, OmniStar

→ TNC female connector → 13 dB amplifier margin → 50 db signal gain → Input voltage: 3.5 V – 20 V DC → Dimensions: 16.5 cm diameter x 7.6 cm height → Weight: 0.64 kg → Trimble Zephyr Data Sheet

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3.2.2 OVERVIEW OF TRIMBLE GNSS ANTENNAS MODELS

P/N Trimble GNSS Antennas

58927-00 Trimble Ag25 Monitoring Antenna Kit

44169-00 Trimble Zephyr 2 GNSS Antenna

58295-00 Trimble Zephyr Geodetic 2 GNSS Antenna Kit

58295-50 Trimble Zephyr Geodetic 2 GNSS Antenna w/o Cable

29487-20 Trimble GNSS Choke Ring Antenna

29587-20 Trimble GNSS-Ti Choke Ring Antenna

EWINF-ANT Infrastructure External Antenna Hardware

46291-00 Radome for Trimble Zephyr Geodetic 2 Antenna

59314 Radome for Trimble Choke Ring Antenna

Note: Not all part numbers are available in every country.

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4. TRIMBLE SEISMOGEODETIC SYSTEMS

4.1 TRIMBLE SG160-09 SEISMOGEODETIC SYSTEM The SG160-09 provides the user with high rate GNSS and accelerometer data, full epoch-by-epoch meas-urement integrity and, using the Trimble Pivot™ SeismoGeodetic App, the ability to create combined GNSS and accelerometer highrate (200 Hz) displacement time series in real-time. The SG160-09 com-bines seismic recording with GNSS geodetic measurement in a single compact, ruggedized package. The system includes a low-power, 220-channel GNSS receiver powered by the latest Trimble-precise Max-well™6 technology and and supports tracking of both GPS and GLONASS signals plus the Galileo E1 fre-quency. The receiver incorporates on-board GNSS Precise Point Positioning (PPP) using Trimble Center-Point™ RTX™ technology with satellite clock and orbit corrections delivered over IP.

TRIMBLE SG160-09 SEISMOGEODETIC SYSTEM → 220 Channel GNSS Receiver → Adv. National Seismic System (ANSS) Class A Triaxial Accelerometer → GNSS Precise Point Positioning (PPP) Correction → Data Sheet

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5. TRIMBLE REF TEK SEISMIC SENSORS Seismic sensors play a vital role in many monitoring projects. They are not limited to detect and record e.g. earthquakes or volcanic activities, they are also widely used for structural health monitoring of bridges, dams, buildings and other structures. The Trimble REF TEK product family provides a wide range of seismic sensors and data recorders for any seismic application.

5.1 ACCELEROMETERS TRIMBLE REF TEK STRONG MOTION ACCELEROMETER MODEL 131B-01/3

→ Data Sheet TRIMBLE REF TEK STRONG MOTION ACCELEROMETER MODEL 131A-02/BH

→ Data Sheet TRIMBLE REF TEK STRONG MOTION ACCELEROMETER MODEL 147-01/3

→ Data Sheet

5.2 ACCELEROGRAPHS TRIMBLE REF TEK STRONG MOTION ACCELEROGRAPH MODEL 130-SMHR

→ Data Sheet

TRIMBLE REF TEK STRONG MOTION ACCELEROGRAPH MODEL 130-SMA

→ Data Sheet

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5.3 BROADBAND SEISMOMETERS TRIMBLE REF TEK BROADBAND SEISMOMETER MODEL 151B “OBSERVER”

→ Data Sheet

5.4 SEISMIC DATA RECORDERS TRIMBLE REF TEK BROADBAND SEISMIC RECORDER MODEL 130S-01

→ Data Sheet

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6. GEOTECHNICAL SENSORS Various geotechnical sensors and weather stations can provide redundant and complimentary infor-mation to geodetic monitoring projects. Geotechnical sensors deliver values such as voltage, resistance, current or frequency. These values have to be measured and written into a readable format. Data log-gers write-out ASCII strings containing the scientific or the converted engineering values which can be read by the Trimble 4D Control software. Trimble 4D Control can read any geo-technical or other sensors data which has been written in a CSV file format. Trimble 4D Control is not limited to specific manufac-turers of geotechnical equipment.

6.1 SENSORS For more information on geotechnical sensors visit the Geokon web site: For more information on weather stations visit the Lufft web site:

6.2 DATA LOGGERS For more information on data loggers visit the Campbell Scientific web site:

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7. ACCESSORIES

7.1 PRISMS

TRIMBLE 25 MM MONITORING PRISM, BOX 25, PRISM CONST.: -17 MM (P/N 58008030) TRIMBLE TILTING 62 MM CONTROL POINT PRISM W/ GNSS ANTENNA MT., PRISM CONST.: -40 MM (P/N 58008040) TRIMBLE 62 MM MONITORING BACKSIGHT PRISM W/ MOUNTING ASSEMBLY, PRISM CONST.: -40 MM (P/N 58008042) SECO TILTING TRIPLE 62 MM PRISM ASSEMBLY (P/N 6341-00)

7.2 TRIBRACHS, MOUNTS, ETC. TRIBRACH WITH OPTICAL PLUMET (P/N 78607007) SECO ADJUSTABLE TILT MONUMENT MOUNT (P/N 2072-30)

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7.3 DEVICE SERVERS FOR TRIMBLE TOTAL STATIONS To establish a TCP/IP connection with a Trimble S8 total station a device server is required. A device server converts the USB or serial communication into TCP protocol. This allows communication with the instrument via Network/Internet.

SETTOP M1 (W/O GNSS RECEIVER)

→ USB connection to Trimble S8 → Watch dog for instrument → 4G modem → LAN/WLAN/Bluetooth → Powers instrument → IP 67 → Serial port for temperature sensor → Data sheet

FOR SERIAL DEVICE SERVERS VISIT THE MOXA WEB SITE.

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8. TRIMBLE ACCESS SOFTWARE

The Trimble Access software is a scalable field solution for every survey task. It consists of a basic survey module and can be extended by additional optional survey modules for special application as well as ser-vices for real-time data office data synchronization, etc.. For further information on the Trimble Access software please check the Trimble website (Trimble Access).

8.1 TRIMBLE ACCESS GENERAL SURVEY

Trimble Access General Survey is the basic survey module of the Trimble Access software. It contains all survey functions and calculation routines which are needed for the day-to-day survey work. By using the Measure Rounds function of the General Survey module the user can collect monitoring data which then can be processed by the Terrestrial Engine PP of the Trimble 4D Control software.

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8.2 TRIMBLE ACCESS MONITORING APP

In addition to the General Survey module different optional modules for special applications are availa-ble. The Trimble Access Monitoring module is a dedicated module for deformation analysis and monitor-ing. Its streamlined workflows make monitoring surveys fast and easy and give the user security and con-fidence in the field. Data collected with the Monitoring module of Trimble Access can be further pro-cessed by the Terrestrial Engine PP of the Trimble 4D Control software.

8.3 TRIMBLE ACCESS T4D SITE SETUP APP

This application for Trimble® Access™ field software allows you to create or modify a total station Site Setup for Trimble 4D Control™ monitoring software by using a Trimble field controller running Trimble Access. A step-by-step workflow guides the user through the Site Setup process. Once the Site Setup has been transferred to Trimble 4D Control, round measurements can be performed immediately without the need to run the Site Setup functionality on the server. All instrument functions known from other Trimble Access applications are available including Trimble VISION™ support.

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8.4 TRIMBLE ACCESS CONTROL UNITS Ergonomically designed and built for the demanding conditions surveyors face, Trimble controllers per-form like a trusted member of the team. With a range of connectivity and communications options, set up and data delivery is fast and streamlined. Paired with the industry's most sophisticated field software solutions, you have the flexibility you need to do more, do it faster and do it effortlessly. For further in-formation on the Trimble field controllers please check the Trimble website.

TRIMBLE TSC3 CONTROLLER → 800 MHz ARM Cortex-A8 → 8 GB internal memory → SD card slot → Windows Mobile OS → Optional internal 2.4 GHz radio → Integrated Wireless LAN 802.11b → Bluetooth, RS232, USB Client, USB Host → Trimble TSC3 Data Sheet TRIMBLE CONTROL UNIT (TCU) → Attachable control unit

Direct: S6, S8, VX, GPS Holder, Robotic Holder Via Trimble CU Adapter: 3600, 5500, 5600

→ 400 MHz Intel® PXA 255 ARM-XScale CPU → 1 GB internal memory → Windows CE.Net OS → Bluetooth → Trimble CU Data Sheet TRIMBLE TABLET RUGGED PC → Fully rugged construction including Gorilla® Glass panel display → 7 inch capacitive touch dual technology display system delivers enhanced

sunlight readability → Windows 7 Operating system brings the office to the field → Built-In 5MP camera for unprecedented image documentation → Integrated communication technology provides increased connectivity → Optimized for Trimble Access field software for survey workflow support → Trimble Tablet Rugged PC Data Sheet

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8.5 OVERVIEW OF TRIMBLE ACCESS

P/N Trimble Access Software & Controllers

TSC3101-001 Trimble Access Incl. TSC3, No Internal Radio, ABCD Keypad

TSC3102-001 Trimble Access Incl. TSC3, No Internal Radio, QWERTY Keypad

TSC3111-001 Trimble Access Incl. TSC3, Internal 2.4GHz Radio, Global, ABCD Keypad

TSC3112-001 Trimble Access Incl. TSC3, Internal 2.4GHz Radio, Global, QWERTY Keypad

TSC3121-001 Trimble Access Incl. TSC3, Internal 2.4GHz Radio, France, ABCD Keypad

TSC3122-001 Trimble Access Incl. TSC3, Internal 2.4GHz Radio, France, QWERTY Keypad

TA-TCU3 Trimble Access Incl. Trimble CU

TAB-01-1100 Trimble Tablet Rugged PC, w/Trimble Access, no int. radio, ext. batteries

TAB-01-1110 Trimble Tablet Rugged PC, w/Trimble Access, Cirronet radio, ext. batteries

SA-MINES Specialized Application Mines - Perpetual License

SA-SUB-MINES Specialized Application Mines - Monthly Subscription (12 M. Contr.)

SA-MON Specialized Application Monitoring - Perpetual License

SA-SUB-MON Specialized Application Monitoring - Monthly Subscription (12 M. Contr.)

TAA-T4DSSA-P Trimble Access Application - T4D Site Setup - Perpetual License

SA-ROADS Specialized Application Roads - Perpetual License

SA-SUB-ROADS Specialized Application Roads - Monthly Subscription (12 M. Contr.)

SA-TUNNELS Specialized Application Tunnels - Perpetual License

SA-SUB-TUNNELS Specialized Application Tunnels - Monthly Subscription (12 M. Contr.)

TAS-1 Trimble Access Services For One Controller (12 Month Contract)

EWLS-CUWarranty - Survey Control Unit (not Tablet) Hardware and Field Software

Maintenance

EWLS-CU-SW Software Maintenance - Survey Control Unit Field Software

EWLS-CU-RENEWSoftware Maintenance - Survey Control Unit Field Software Maintenance

Reinstatement

Note: Not all part numbers are available in every country.