Meinberg GNS165XHS Manual
Meinberg GNS165XHS Manual

Meinberg GNS165XHS Manual

Din rail gnss receiver
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MANUAL
GNS165XHS
DIN Rail GNSS Receiver
5th June 2018
Meinberg Funkuhren GmbH & Co. KG

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Summary of Contents for Meinberg GNS165XHS

  • Page 1 MANUAL GNS165XHS DIN Rail GNSS Receiver 5th June 2018 Meinberg Funkuhren GmbH & Co. KG...
  • Page 3: Table Of Contents

    ......... . Meinberg Device Manager .
  • Page 4 ......8.2.11 Format of the Meinberg GPS Time String ......
  • Page 5: Imprint

    1 Imprint 1 Imprint Meinberg Funkuhren GmbH & Co. KG Lange Wand 9, 31812 Bad Pyrmont / Germany Phone: + 49 (0) 52 81 / 93 09 - 0 Fax: + 49 (0) 52 81 / 93 09 - 230 Internet: https://www.meinbergglobal.com...
  • Page 6: Safety Hints

    Meinberg Funkuhren shall not be responsible for any damage arising due to non-observance of these regulations.
  • Page 7: Used Symbols

    The manuals for a product are included in the scope of delivery of the device on a USB stick. The manu- als can also be obtained via the Internet. Enter www.meinbergglobal.com into your browser, then enter the corresponding device name in the search field at the top. GNS165XHS Date: 5th June 2018...
  • Page 8: Security During Installation

    Transport, Unpacking, The device must be protected Installation against mechanical stress such as If the unit is brought into the oper- vibration or shock. ating room from a cold environment, condensation may occur, wait until Date: 5th June 2018 GNS165XHS...
  • Page 9 The power supply should be con- Before operation, check that all nected with a short, low-inductance cables and lines work properly and line. are undamaged. Pay particular at- tention to the facts that the cables GNS165XHS Date: 5th June 2018...
  • Page 10 17 AWG - 13 AWG • Supply of the device must be carried out via a suitable disconnecting device (switch). The disconnecting device must be easily accessible, placed near the system and marked as a disconnecting device. Date: 5th June 2018 GNS165XHS...
  • Page 11: Safety During Operation

    Therefore, you must put the UPS out of op- Follow the steps below: eration according to the doc- umentation of the correspond- ing user documentation. • Switch off the device • Disconnect all power plugs GNS165XHS Date: 5th June 2018...
  • Page 12: Safety During Maintenance

    The battery must observe the local regulations for not be short-circuited or recharged. the disposal of hazardous waste. Replacement of the lithium battery may only be carried out by the manufacturer or authorized person- nel. Date: 5th June 2018 GNS165XHS...
  • Page 13: Antenna Mounting

    • Never work without effective • Do not carry out any work fall protection! on the antenna system if the safety distance to overhead WARNING! lines is not guaranteed. Working on the antenna system during thunderstorms GNS165XHS Date: 5th June 2018...
  • Page 14: Cleaning And Care

    ESD protective covers must not be low-resistance and metallically conductive if a lithium battery is installed on the assembly. Date: 5th June 2018 GNS165XHS...
  • Page 15: Return Of Electrical And Electronic Equipment

    Directive. domestic waste. Return and Collection Systems For returning your old equipment, please use the country-specific re- turn and collection systems avail- able to you or contact Meinberg. GNS165XHS Date: 5th June 2018...
  • Page 16: Content Of The Usb Stick

    Besides this manual, the provided USB stick includes a setup program for the monitor software mbgdevman (Meinberg Device Manager). This utility can be used to configure Meinberg receivers via their serial ports and to display status information of the module.
  • Page 17: General Information About Gns165

    4 General information about GNS165 4 General information about GNS165 The Meinberg satellite receiver clock of the GNS165 series is available with several options. This manual describes the following models: PhotoMos Optocoupler 20-60 V DC 100-240 V AC 100-240 V DC...
  • Page 18 Each satellite transmits its own set of ephemeris parameters and almanac parameters of all existing satellites. Date: 5th June 2018 GNS165XHS...
  • Page 19: Gns165 Features

    As standard the switchover times are set to the values of the European Union (Central Europe). The Manual describes how parameter setting for other locations is done. It is possible to deactivate the auto- matic switching to/from daylight saving. GNS165XHS Date: 5th June 2018...
  • Page 20: Pulse Outputs

    ASCII "?" only. The format of the output strings is ASCII, see the technical specifications for details. The corresponding parameters can be set up by mbgdevman (included Windows software) using serial port COM0. Date: 5th June 2018 GNS165XHS...
  • Page 21: Time Code Outputs

    IEEE1344 extensions for date, timezone, daylight saving and leap second in control functions (CF) segment. (also see table ’Assignment of CF segment in IEEE1344 mode’) C37.118 Like IEEE1344 - with turned sign bit for UTC-Offset GNS165XHS Date: 5th June 2018...
  • Page 22: Time Code Generation

    If the code must be available immediately after power-up, the software mbgdevman can be used to enable the time code output without synchronization of the GNS-receiver by setting the enable flag ’pulses’ to ’al- ways’. In this mode of operation the IRIG-code is not locked to UTC-second until synchronization. Date: 5th June 2018 GNS165XHS...
  • Page 23: Irig Standard Format

    5 GNS165 Features 5.4.4 IRIG Standard Format GNS165XHS Date: 5th June 2018...
  • Page 24: Afnor Standard Format

    5.4.5 AFNOR Standard Format Date: 5th June 2018 GNS165XHS...
  • Page 25: Assignment Of Cf Segment In Ieee1344 Code

    IRIG-B time 1.) current firmware does not support leap deletion of leap seconds 2.) TFOM is cleared, when clock is synchronized first after power up. see chapter Selection of generated timecode GNS165XHS Date: 5th June 2018...
  • Page 26: Dcf77 Emulation

    The time stamps can be provided via pulses outputs. Furthermore, the DCF77 signal is available via a BNC connector as an amplitude-modulated 77.5 kHz carrier. This output can be used for radio clocks as a replacement for a DCF77 antenna. Date: 5th June 2018 GNS165XHS...
  • Page 27: Installation

    To avoid potential differences between the signal ground of GNS165 and a post-connected unit installed on different DIN rails, the signal ground of the clock is insulated from the case. The case must be grounded by using the rear contact. GNS165XHS Date: 5th June 2018...
  • Page 28: 40Db Multi Gnss L1 Timing Antenna With Integrated Lightning Protection

    The antenna cable length can be up to 70 meters if a H155 low-loss coaxial cable is used. Mounting and Installation of the GNSS/L1 Antenna Date: 5th June 2018 GNS165XHS...
  • Page 29 6 Installation Multi GNSS Antenna free viwe to the sky! Type-N female Type-N male as short as possible MEINBERG GNSS Type SMA male female Connection to earth rail (Protective Earth) cable diameter ca. 1,5 mm Ø Figure: Schematic diagram of mounting the Multi GNSS Antenna...
  • Page 30: Gnss Antenna For Mobile Applications

    However, the maximum length of the antenna cable is limited depending on the cable type, e.g. 5 meters with RG174/U cable, so this antenna is less suitable for stationary installations. Figure: Installation drawing RV-76G antenna Date: 5th June 2018 GNS165XHS...
  • Page 31: Powering Up The System

    OCXO´s output frequency has been adjusted. Up to that time accuracy of frequency drops to 10 reducing the accuracy of pulses to +-3 s. GNS165XHS Date: 5th June 2018...
  • Page 32: Meinberg Device Manager

    6.5 Meinberg Device Manager The program serves the configuration of Meinberg Radio Clocks. The software can be run on the operating systems Windows 7 or higher. Documentation: https://www.meinbergglobal.com/download/docs/sw/english/mbgdevman.pdf Download: https://www.meinbergglobal.com/english/sw/mbg-devman.htm A connection between the system and the program can be produced by serial port. The configurations are described in the mbgdevman-documentation.
  • Page 33 "Apply Configuration" button. Use the "Restore Configuration" button to reset all settings back to their default values. For more information, please refer to the Meinberg Device Manager manual. GNS165XHS...
  • Page 34: The Front Panel Layout

    Ant. Fail: red: antenna faulty or not connected Fail Ant. Nav. Solved: green: positioning successfully Nav. Init Init: blue: while the receiver passes through the initialization phase green: the oscillator has warmed up Date: 5th June 2018 GNS165XHS...
  • Page 35: Assignment Of The Terminal Block

    Channel 3 PP 1 PP 1b PP 2 + PP 2a Channel 2 Channel 2 PP 2 PP 2b PP 3 + PP 3a Channel 1 Channel 1 PP 3 PP 3b Pulse generator Pulse generator GNS165XHS Date: 5th June 2018...
  • Page 36: Assignment Of The Dsub Connectors

    GNS/GPS: Number of channels: 72 Galileo/BeiDou Type of antenna: 40 dB Multi GNSS L1 GNSS Antenna Antenna with Integrated Lightning Protection Frequency band: L1 Antenna Gain: 3.5 dBic / 3 dBic Nominal Impedance: 50 ohms Date: 5th June 2018 GNS165XHS...
  • Page 37: Dcf77 Simulated Output

    BNC, female TC AM Out Cable: shielded coax line 7.8 Time Code DCLS Output Carrier frequency: 1kHz (IRIG-B) Signal outputs: DCLS: TTL, high and low active Connector: BNC, female Cable: shielded coax line TC DCLS Out GNS165XHS Date: 5th June 2018...
  • Page 38: Power Supply Connector

    , 50-60 Hz Nominal Current: 0.15 A Nominal Frequency Range: f 50-60 Hz Max. Frequency Range: 47-63 Hz Inrush Current: 50 A @ 230 V AC Output Parameter ——————————————————————————– Max. Power: 15 W Max. Heat: 51,19 BTU/h Date: 5th June 2018 GNS165XHS...
  • Page 39: Technical Specifications Gns165 Receiver

    Framing: 7N2, 7E1, 7E2, 8N1, 8N2, 8E1, 801 COM2 (RS-485) Baud Rate: 300 up to 19200 Framing: 7N2, 7E1, 7E2, 8N1, 8N2, 8E1, 801 time string selectable for COM0, COM1 and COM2 possible stringtypes in chapter: Time Stings GNS165XHS Date: 5th June 2018...
  • Page 40 COM0: 19200, 8N1 COM1, COM2: 9600, 8N1 ’standard Meinberg’ time string per second mode of operation ’if sync’ Time Code Outputs: modulated via BNC-connector: IRIG: (MARK), 1V (SPACE) into 50 AFNOR: 2.17V (MARK), 0.688V (SPACE) into 50 modulated via DSUB-connector: Field effect transistor with internal pull-up (470...
  • Page 41: Connection Data

    ; length: 8 mm ... 10 mm Cross-section: 0.34 mm ; length: 8 mm ... 10 mm Cross-section: 0.5 mm ; length: 8 mm ... 10 mm Cross-section: 0,75 mrn ; length: 8 mm ... 10 mm GNS165XHS Date: 5th June 2018...
  • Page 42: Time Strings

    8.2 Time Strings 8.2.1 Format of the Meinberg Standard Time String The Meinberg Standard Time String is a sequence of 32 ASCII characters starting with the STX (start-of-text) character and ending with the ETX (end-of-text) character. The format is: <STX>D:dd.mm.yy;T:w;U:hh.mm.ss;uvxy<ETX>...
  • Page 43: Format Of The Sat Time String

    ‘!’ announcement of start or end of daylight saving time ‘ ‘ (space, 20h) nothing announced <CR> Carriage Return, ASCII Code 0Dh <LF> Line Feed, ASCII Code 0Ah <ETX> End-Of-Text, ASCII Code 03h GNS165XHS Date: 5th June 2018...
  • Page 44: Format Of The Nmea 0183 String (Rmc)

    (01..31) month (01..12) year of the century (00..99) magnetic variation checksum (EXOR over all characters except ‘$’ and ‘*’) <CR> Carriage Return, ASCII Code 0Dh <LF> Line Feed, ASCII Code 0Ah Date: 5th June 2018 GNS165XHS...
  • Page 45: Format Of The Nmea 0183 String (Gga)

    Units, meters (fixed value) ggg.g Geoid Separation (altitude of WGS84 - MSL) Units, meters (fixed value) checksum (EXOR over all characters except ‘$’ and ‘*’) <CR> Carriage Return, ASCII Code 0Dh <LF> Line Feed, ASCII Code 0Ah GNS165XHS Date: 5th June 2018...
  • Page 46: Format Of The Nmea 0183 String (Zda)

    (00..59) dd,mm,yy the current date: day of month (01..31) month (01..12) yyyy year (0000..9999) checksum (EXOR over all characters except ‘$’ and ‘*’) <CR> Carriage Return, ASCII Code 0Dh <LF> Line Feed, ASCII Code 0Ah Date: 5th June 2018 GNS165XHS...
  • Page 47: Format Of The Uni Erlangen String (Ntp)

    ‘ ‘ (space, 20h) no leap second is inserted bbb.bbbb latitude of receiver position in degrees leading signs are replaced by a space character (20h) latitude, the following characters are possible: ‘N’ north of equator GNS165XHS Date: 5th June 2018...
  • Page 48 ‘E’ east of Greenwich ‘W’ west of Greenwich hhhh altitude above WGS84 ellipsoid in meters leading signs are replaced by a space character (20h) <ETX> End-Of-Text, ASCII Code 03h Date: 5th June 2018 GNS165XHS...
  • Page 49: Format Of The Computime Time String

    (01..07, 01 = monday) hh:mm:ss the current time: hours (00..23) minutes (00..59) seconds (00..59, or 60 while leap second) <CR> Carriage Return, ASCII Code 0Dh <LF> Line Feed, ASCII Code 0Ah GNS165XHS Date: 5th June 2018...
  • Page 50: Format Of The Sysplex-1 Time String

    (00..23) minutes (00..59) seconds (00..59, or 60 while leap second) Quality indicator (space) Time Sync (GPS lock) (?) no Time Sync (GPS fail) <CR> Carriage-return (ASCII code 0Dh) <LF> Line-Feed (ASCII code 0Ah) Date: 5th June 2018 GNS165XHS...
  • Page 51: Format Of The Spa Time String

    (00..59) seconds (00..59, or 60 while leap second) fff milliseconds (000..999) Checksum. EXCLUSIVE-OR result of the previous characters, displayed as a HEX byte (2 ASCII characters 0..9 or A..F) <CR> Carriage Return ASCII Code 0Dh GNS165XHS Date: 5th June 2018...
  • Page 52: Format Of The Racal Standard Time String

    (01..31) hh:mm:ss the current time: hours (00..23) minutes (00..59) seconds (00..59, or 60 while leap second) <CR> Carriage Return, ASCII code 0Dh Interface parameters: 7 Databits, 1 Stopbit, odd. Parity, 9600 Bd Date: 5th June 2018 GNS165XHS...
  • Page 53: Format Of The Meinberg Gps Time String

    8.2.11 Format of the Meinberg GPS Time String The Meinberg Standard Time String is a sequence of 36 ASCII characters starting with the STX (start-of-text) character and ending with the ETX (end-of-text) character. Contrary to the Meinberg Standard Telegram the Meinberg GPS Timestring carries no local timezone or UTC but the direct GPS time without conversion into UTC.
  • Page 54: Format Of The Ion Time String

    (00..23) minutes (00..59) seconds (00..59, or 60 while leap second) Quality indicator (space) Time Sync (GPS lock) (?) no Time Sync (GPS fail) <CR> Carriage-return (ASCII code 0Dh) <LF> Line-Feed (ASCII code 0Ah) Date: 5th June 2018 GNS165XHS...
  • Page 55: Format Of The Ion Blanked Time String

    (00..23) minutes (00..59) seconds (00..59, or 60 while leap second) Quality indicator (space) Time Sync (GPS lock) (?) no Time Sync (GPS fail) <CR> Carriage-return (ASCII code 0Dh) <LF> Line-Feed (ASCII code 0Ah) GNS165XHS Date: 5th June 2018...
  • Page 56: Format Of The Irig J Time String

    ASCII code „Start of Heading“ (0x01h) ordinal date, day of year (1 to 366) HH, MM, SS time of the start bit given in hour (HH), minute (MM), second (SS) ASCII code „Carriage Return“ (0x0Dh) ASCII code „Line Feed“ (0x0Ah) Date: 5th June 2018 GNS165XHS...
  • Page 57: Oscillator Specifications

    8 Technical Specifications GNS165 receiver 8.3 Oscillator specifications GNS165XHS Date: 5th June 2018...
  • Page 58: Declaration Of Conformity

    9 Declaration of Conformity Konformitätserklärung Doc ID: GNS165XHS-2017-12-18 Hersteller Meinberg Funkuhren GmbH & Co. KG Manufacturer Lange Wand 9, D-31812 Bad Pyrmont erklärt in alleiniger Verantwortung, dass das Produkt, declares under its sole responsibility, that the product Produktbezeichnung GNS165XHS Product Designation auf das sich diese Erklärung bezieht, mit den folgenden Normen übereinstimmt...

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