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Siemens Sensformer IPS-601-20WGI User Manual
Siemens Sensformer IPS-601-20WGI User Manual

Siemens Sensformer IPS-601-20WGI User Manual

Connectivity device v3 indoor

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Siemens
Sensformer®
Connectivity
Device V3
User Manual
siemens-energy.com

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Table of Contents
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Summary of Contents for Siemens Sensformer IPS-601-20WGI

  • Page 1 Siemens Sensformer® Connectivity Device V3 User Manual siemens-energy.com...
  • Page 2 11.1 31.08.2020 Ladislav Takác Clarification • 11.2 10.09.2020 Ladislav Takác Clarification of technical data • 11.3 05.11.2020 Bence Bodnár Clarification of technical data of PT100 • 11.4 24.01.2021 Ladislav Takác FCC related information added © 2020 Siemens Energy Page 1...
  • Page 3 Changed the formats and design • 11.6 09.27.2021 Bence Bodnar Changed web GUI screenshots • Changed formats • Clarifications • 3.12.0 11.10.2021 Bence Bodnar Clarifications • Version format changed SIEMENS Sensformer Connectivity Device V3 Indoor IPS-601-20WGI © 2020 Siemens Energy Page 2...
  • Page 4: Table Of Contents

    5.2.5. Power supply ............25 5.2.6. Real Time Clock backup power......26 5.2.7. Communication ports ..........26 5.2.8. Antenna Connectors ..........26 The current manual is valid for the Sensformer Connectivity Device V3 version © 2020 Siemens Energy Page 3...
  • Page 5: Legal Provisions

    Requirements to be observed. be construed as a commitment by Siemens Energy. Siemens Energy assumes no responsibility for any errors that may appear in this document. If you have any suggestions for NOTE improvements or amendments or have found errors in this report, please notify us.
  • Page 6: Quick Start

    Power supply and digital inputs are not allowed to be connected during installing and/or wiring Sensformer Connectivity Device. Risk of electric shock! DANGER The digital inputs are not allowed to be powered when installing and/or wiring Sensformer Connectivity Device! Risk of electric shock! © 2020 Siemens Energy Page 5...
  • Page 7: Hardware Installation

    (line) and the N (neutral), but it cannot break the PE (protected earth). The circuit breaker device what it was chosen, it must be certified. It must satisfy the IEC 60947-1 and IEC 60947-3 standards. The circuit breaker device must be 240 VAC with 1A. © 2020 Siemens Energy Page 6...
  • Page 8: Installation

    ≥50mm above and below connected during installing and/or wiring Sensformer Connectivity Device! Make sure there is enough space between the Sensformer Risk of electric shock! Connectivity Device and high voltage and/or warming devices: • ≥50mm around © 2020 Siemens Energy Page 7...
  • Page 9 For more information, see the Installation requirements requirements chapter. chapter. REQUIREMENT The using cables on the analog inputs must be double insulated and must have UL 94 V-1 flammability classification and VW-1 flame rating. more information, Installation requirements chapter. © 2020 Siemens Energy Page 8...
  • Page 10 ModBus. It is a three-pole screw terminal (D+, D- and COM). If it Figure 6 – Example for connecting PT100 sensor is necessary, wired up the ModBus port. For example: Size of conductor: 1.5 mm © 2020 Siemens Energy Page 9...
  • Page 11 Connect the digital sensors to the digital inputs of the Sensformer Connectivity Device. D1A and D1B, D2A and D2B are The color of PE cable must be green-yellow. interchangeable connections. more information, Installation requirements chapter. © 2020 Siemens Energy Page 10...
  • Page 12 During the wiring make sure that the PE is break last. The PE cable must be longer with 2-3 cm like the L an N cables. The diameter of used PE cable must be 1.5mm © 2020 Siemens Energy Page 11...
  • Page 13: Parameter Settings

    Figure 11 - Set the APN I. 5. Set MQTT and M2M server parameters If the Siemens Energy MQTT and M2M servers are used, no settings have to be modified. Values only have to be modified in case not the Siemens Energy servers are used. More details on this topic can be found in later chapters.
  • Page 14 RTD – PT100 Top oil temperature (LIT) or Winding temperature (CRT) Table 1– Default sensor connections NOTE Improper settings cause false measurement results! Setting the wrong type value may cause the device to malfunction! © 2020 Siemens Energy Page 13...
  • Page 15: Configuration

    Device graphical user interface (GUI) is https://192.168.1.1 The web GUI can be reached with this address in web browsers. Analog sensors Digital sensors System values MQTT and M2M NTP Time servers LAN/WAN modes Calibration done © 2020 Siemens Energy Page 14...
  • Page 16: Analog Sensors

    200ms and more than 5ms. If the impulse width is greater than In DC mode, the sampling time is 1ms. 200ms, then the impulse width will be “0”, but the level value will be “1”. © 2020 Siemens Energy Page 15...
  • Page 17: System Values

    Publish topic: The data will be sent to this topic. If it is empty, it uses the MAC address. NOTE If the Siemens Energy MQTT and M2M servers are used, no settings have to be modified. Siemens Energy services settings are set by default. (MQTT host domain / address and M2M server address).
  • Page 18: Ntp Time Servers

    In WAN mode, the following services will not be working: • GSM connectivity, • ModBus over TCP, • DHCP server. When switch the LAN/WAN mode then the device will be rebooted automatically. After the reboot, the new LAN/WAN settings will be active. © 2020 Siemens Energy Page 17...
  • Page 19: Calibration Done

    Confirm password: the new password has to be repeated for confirmation CAUTION When set or changing the password, make sure to note the new password. If you forget your password the web interface won’t be accessible! © 2020 Siemens Energy Page 18...
  • Page 20: Technical Data

    Manual for installation of the Sensformer® Connectivity Device 4. Technical data The following chapter describes the general technical parameters of the Sensformer Connectivity Device. General Power supply Analog inputs Digital Inputs PT100 Inputs RS485 (ModBus) Ethernet Stored data © 2020 Siemens Energy Page 19...
  • Page 21: General

    Maximum supply current 120 mA (sum of all ports) (SMA female) 1 for GPS (SMA female) Size of conductor 1.5 mm Measurement resolution 12 bit Table 5 – Parameters of analog inputs Table 3 - Common specifications © 2020 Siemens Energy Page 20...
  • Page 22: Digital Inputs

    9600 (not configurable) Stopbits 2 (not configurable) Parity none (not configurable) Terminal type 3-wire Separation Class Class III (SELV) Terminal isolation AC 3 kV Size of conductor 1.5 mm Table 8 - Parameters of RS485 port © 2020 Siemens Energy Page 21...
  • Page 23: Architecture

    These blocks have different functions, and all of them are necessary to keep full functionality. In the following chapters the blocks are described based on the logical and physical architecture. Logical architecture Physical architecture © 2020 Siemens Energy Page 22...
  • Page 24: Logical Architecture

    This device complies with ISED’s license-exempt RSSs. Operation is designed to perform its functions efficiently without is subject to the following two conditions: unnecessary components. All components are equipped with the (1) This device may not cause interference; and © 2020 Siemens Energy Page 23...
  • Page 25: Analog Inputs

    CT that is capable of driving 40 Ohm load. Make sure the CT doesn`t overload the input. For example, using a 1020 current transformer with maximum input current 20A and turn ratio 1000:1, when the Sensformer Connectivity Device measures 20mA RMS current, the primer © 2020 Siemens Energy Page 24...
  • Page 26: Pt100 Input

    Polarity L: line, N: Neutral, PE: Protective The parameters of the digital input channels are the following: Earth Size of conductor 1.5 mm Table 15 - Parameters of power supply © 2020 Siemens Energy Page 25...
  • Page 27: Real Time Clock Backup Power

    • one for the GPS The name of the antenna ports are indicated besides the ports on device, showing which female SMA is for the mobile and which is for the GPS antenna connection. © 2020 Siemens Energy Page 26...
  • Page 28 Signal strength can be monitored via the web GUI, see Web GUI chapter. 5.2.8.2. GPS The GPS antenna port is intended for the connection of an outdoor GPS antenna for precise position. The connection port is a standard female SMA port. © 2020 Siemens Energy Page 27...
  • Page 29: System Functions

    Manual for installation of the Sensformer® Connectivity Device 6. System functions In this chapter the operation of the device is described at software level, including the sub components, their operation and implementation. Time Synchronization Data access Signal LEDs © 2020 Siemens Energy Page 28...
  • Page 30: Time Synchronization

    The MQTT communication can be configured to use any MQTT • To get from your Sensformer Connectivity Device every new broker, not just the standard Siemens Energy broker. The device pushed data on real-time: uses TLS v1.2 encryption. Subscribe to the topic and see if succeeded: NOTE $aws/things/<...
  • Page 31: Web Gui

    Figure 33 - Login page • Mobile technology • GPS coordinates: Longitude This is the main page before the login. The “login text” on the top Latitude of the page is configurable by admins. • Time • Uptime © 2020 Siemens Energy Page 30...
  • Page 32 It shows 1 hour time slides for normal operation Charts: • Displays the selected data in different colors, • The exact measured data is displayed at each point if the mouse is pointing to it. © 2020 Siemens Energy Page 31...
  • Page 33 On the Settings sheet, the main firmware and data processing parameters can be configured. After saving the modifications, the affected services are automatically restarted. System: Figure 44- System on Settings page Figure 41 - Settings page © 2020 Siemens Energy Page 32...
  • Page 34 Figure 46- NTP time servers on Settings page See the Modbus over TCP chapter to more information about ModBus – TCP functionality. • Server 1-5: Addresses of the used NTP servers ordered by priority. © 2020 Siemens Energy Page 33...
  • Page 35 • digit: minimum number of digit characters in the passwords, • lower case: minimum number of lower letter characters in the passwords, • upper case: minimum number of upper letter characters in the passwords, © 2020 Siemens Energy Page 34...
  • Page 36 MQTT. CAUTION The IP addresses must be set correctly when configured the LAN/WAN mode. The wrong IP addresses may cause malfunctions, or the device may will be inaccessible. © 2020 Siemens Energy Page 35...
  • Page 37: Modbus Over Tcp

    The TCP server port is configurable in settings page of web GUI. The default is 502 (because of Modbus protocol). The log level of ModBus over TCP is configurable in settings page of web GUI. © 2020 Siemens Energy Page 36...
  • Page 38 00 01 00 00 00 06 01 04 00 00 00 04 Transaction ID: 00 01 Protocol ID: 00 00 Length: 00 06 Unit ID: Function code: Address: 00 00 Quantity of register: 00 04 © 2020 Siemens Energy Page 37...
  • Page 39 0 (00 00) timestamp: 1562589076 (5d 23 37 94), date-time format: 2019. pulse width: 0 (00 00) July 8. 14:31:16 timestamp: 1562241523 (5d 1d e9 f3), date-time format: 2019. July 4. 13:58:43 © 2020 Siemens Energy Page 38...
  • Page 40: Signal Leds

    Len: Data: 00 00 08 cf 5d 1f 02 0e value: 2255 (00 00 08 cf) timestamp: 1562313230 (5d 1f 02 0e), date-time format: 2019. July 5. 9:53:50 © 2020 Siemens Energy Page 39...
  • Page 41: Maintenance

    There are no moving parts or battery. Do not open the cover! The Sensformer Connectivity Device does not require cleaning or decontamination. NOTE The safety level of the device is not reduced during servicing, repair or maintenance. System log Firmware © 2020 Siemens Energy Page 40...
  • Page 42: System Log

    Figure 58 – Debug levels setting and download log function 7.2. Firmware update For the Sensformer Connectivity Device the update of the firmware is possible using the M2M platform. For more information contact Siemens Energy Product Hotline: +49 911 6505 6505 support@siemens-energy.com © 2020 Siemens Energy...
  • Page 43: Model Variants

    Manual for installation of the Sensformer® Connectivity Device 8. Model variants The SIEMENS Sensformer Connectivity Device V3 has one UL certified model variant. The scheme for model numbers is the following: IPS-601-20WGI IPS-601- 20WG Product line Product family Indoor Table 26 – Scheme for model numbers 8.1.
  • Page 44: List Of Figures

    Figure 48- ModBus - TCP on Settings page ........33 Figure 49- ModBus - RTU on Settings page ........34 Figure 50- SSH logger on Settings page .........34 Figure 51 - Admin page ..............34 Figure 52- User management on the Admin page .......34 © 2020 Siemens Energy Page 43...
  • Page 45: List Of Tables

    Table 23 - Response to the request of location ......38 Table 24- Response to the request of external ModBus sensors ......................39 Table 25 - Signal LEDs ...............39 Table 26 – Scheme for model numbers..........42 © 2020 Siemens Energy Page 44...
  • Page 46: Overview To Applied Standards And Norms

    MSZ EN 61000-4-10:2017: Damped oscillatory magnetic field immunity test MSZ EN 61000-4-11:2018 and MSZ EN 61000-4-29:2002: Voltage dips test MSZ EN 61000-4-16:2007: Conducted common mode disturbances MSZ EN 61000-4-18:2007: 1 MHz and 100 kHz Damped oscillatory wave immunity test © 2020 Siemens Energy Page 45...
  • Page 47 Siemens Energy Global GmbH & Co. KG Freyeslebenstr. 1 91058 Erlangen, Germany For more information contact Siemens Hotline: +49 911 6505 6505 support@siemens-energy.com www.siemens.com/transformers All rights reserved. All used brands are property of Siemens Energy or their respective owners © 2020 Siemens Energy Page 46...

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