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Advantech WISE Series User Manual
Advantech WISE Series User Manual

Advantech WISE Series User Manual

Industrial lorawan wireless i/o module

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User Manual
WISE-4610(P)
Industrial LoRaWAN Wireless I/O
Module

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Summary of Contents for Advantech WISE Series

  • Page 1 User Manual WISE-4610(P) Industrial LoRaWAN Wireless I/O Module...
  • Page 2: Product Warranty (2 Years)

    The documentation and the software included with this product are copyrighted 2024 by Advantech Co., Ltd. All rights are reserved. Advantech Co., Ltd. also reserves the right to improve the products described in this manual at any time without notice. No part of this manual may be reproduced, copied, translated, or transmitted in any form or by any means without the prior written permission of Advantech Co., Ltd.
  • Page 3: Declaration Of Conformity

    This product has passed the CE test for environmental specifications when shielded cables are used for external wiring. We recommend the use of shielded cables. This type of cable is available from Advantech. Please contact your local supplier for ordering information.
  • Page 4: Warnings, Cautions, And Notes

    Discard used batteries according to the manufacturer's instructions.” Note! Notes provide additional optional information. Document Feedback To assist us with improving this manual, we welcome all comments and constructive criticism. Please send all feedback in writing to support@advantech.com. WISE-4610(P) User Manual...
  • Page 5: Packing List

    Packing List Before system installation, check that the items listed below are included and in good condition. If any item is missing or damaged, contact your dealer immediately: 1 x WISE-4610 module  1 x Antenna  1 x Mount bracket ...
  • Page 6: Safety Instructions

    Safety Instructions Read these safety instructions carefully. Retain this user manual for future reference. Disconnect the equipment from all AC outlets before cleaning. Use only a damp cloth for cleaning. Do not use liquid or spray detergents. For pluggable equipment, the power outlet socket must be located near the equipment and easily accessible.
  • Page 7: Federal Communication Commission Interference Statement

    NCC 警语 根據低功率電波輻射性電機管理辦法 第十二條 經型式認證合格之低功率射頻電機,非經許可,公司、商號或使用者均不得 擅自變更頻率、加大功率或變更原設計之特性及功能。 第十四條 低功率射頻電機之使用不得影響飛航安全及干擾合法通信;經發現有干擾 現象時,應立即停用,並改善至無干擾時方得繼續使用。前項合法通信,指依電信法 規定作業之無線電通信。低功率射頻電機須忍受合法通信或工業、科學及醫療用電波 輻射性電機設備之干擾。 Federal Communication Commission Interference Statement This device complies with Part 15 of the FCC Rules. Operation is subject to the fol- lowing two conditions: (1) the device may not cause harmful interference, and (2) the device must accept any interference received, including interference that may cause undesired operation.
  • Page 8 WISE-4610(P) User Manual viii...
  • Page 9: Table Of Contents

    ......1 LoRa and LoRaWAN................. 2 WISE-4610 Feature Highlights..............2 WISE Series Family .................. 2 Table 1.1: WISE Series Family............ 2 System Diagram..................3 Figure 1.1 WISE-4610 System Diagram........3 Battery Switch ................... 3 Figure 1.2 WISE-4610 Battery Switch ......... 3 LED Indicators...................
  • Page 10 Figure 3.2 WISE-S614 I/O Application Wiring ......23 3.8.2 WISE-S615 I/O Application Wiring ..........23 Figure 3.3 WISE-S615 I/O Application Wiring ......23 3.8.3 WISE-S617 I/O Application Wiring ..........24 Figure 3.4 WISE-S617 I/O Application Wiring Diagram .... 24 3.8.4 WISE-S672 Application Wiring ...........
  • Page 11: Chapter 1 Product Introduction

    Chapter Product Introduction...
  • Page 12: Lora And Lorawan

    WISE-4610 Feature Highlights Advantech’s WISE-4610 LoRa wireless I/O module can be configured to support either a public or private LoRa using the WISE Studio utility via a USB port. For outdoor applications, WISE-4610 can be equipped with optional GPS, a solar rechargeable battery, and an IP65-rated enclosure to protect from water and dust ingress.
  • Page 13: System Diagram

    System Diagram Figure 1.1 WISE-4610 System Diagram Battery Switch The WISE-4610 module is equipped with a switch to turn the battery ON/OFF. This switch is located at the side of the WISE-4610 module. Simply open the rubber cover and flick the switch to turn ON/OFF the battery power. Figure 1.2 WISE-4610 Battery Switch WISE-4610(P) User Manual...
  • Page 14: Led Indicators

    LED Indicators Figure 1.3 WISE-4610 LED Indicators Table 1.2: LED Indicators Color State Description Fast blink Waiting for connection or connecting (0.2 sec ON, 0.3 sec OFF) Status Green Slow blink Connecting and operating normally (0.2 sec ON, 1.8 sec OFF) Application errors.
  • Page 15: Membrane Button

    *Note 1 Table 1.3: Signal LEDs Error LED Description (poor) (Okay) (Good) (Full) Fast Blink RF related Error Fast Blink Fast Blink OFF I/O Error Error FW error Slow Blink OFF Battery related Error No error Note! If WISE-4610 is powered by the battery, the LED indicators will turn off after 15 seconds to save power.
  • Page 16: Packing List

    Packing List WISE-4610 LoRa Wireless I/O Module 1 x WISE-4610 module  1 x Antenna  1 x Mount bracket  1 x WISE-4610 startup manual  WISE-S614/WISE-S614T 4AI/4DI I/O Module 1 x WISE-S614 module  1 x I/O information label ...
  • Page 17: Chapter 2 Hardware Installation

    Chapter Hardware Installation...
  • Page 18: Modular Design

    The wireless sensor nodes for WISE-4610, like those for all WISE-4000 series mod- ules, are designed as separate units. The procedure for installing these nodes in the module is explained in the following sections. Modular Design WISE-4610 features a modular design that supports various I/O configurations. The benefit of a modular design is that the same wireless board can be leveraged by different I/O modules via a board-to-board connector.
  • Page 19: System Dimensions

    System Dimensions Figure 2.2 WISE-4610 Dimensions WISE-4610(P) User Manual...
  • Page 20: Din-Rail Mounting

    Figure 2.3 WISE-S600 Series I/O Module Dimensions DIN-Rail Mounting WISE-4610 modules can be fixed to a cabinet with mount rails. Use a flathead screw- driver to affix the DIN rail mounting adapter to the module. Then attach the end brackets provided with the product to prevent sliding. Figure 2.4 WISE-4000 Series Mount Kit Dimensions WISE-4610(P) User Manual...
  • Page 21 Figure 2.5 DIN-Rail Mounting Adapter Installation Figure 2.6 DIN-Rail Mounting (Front View) WISE-4610(P) User Manual...
  • Page 22: Wall Mounting

    Figure 2.7 DIN-Rail Mounting (Rear View) Wall Mounting The plastic wall-mount bracket provided with the product, can be used to mount WISE-4610 on a wall, panel, or cabinet. Figure 2.8 Wall Mount Bracket Installation WISE-4610(P) User Manual...
  • Page 23: Pole Mounting

    Pole Mounting For pole mounting, feed the pole-mounting ring through the hole in the middle of the module. The pole-mounting ring must be unlocked with a screwdriver before inserting it into the module. To mount the module on the pole, tightly lock the pole-mounting ring.
  • Page 24 WISE-4610(P) User Manual...
  • Page 25: Chapter 3 Hardware Specifications

    Chapter Hardware Specifications...
  • Page 26: Lora (Model: Wise-4610P)

    LoRa (Model: WISE-4610P) Frequency Band: EU 863-870 (MHz)/US 902-928 (MHz)/AU 915-928 (MHz)/  AS 919-924 (MHz)/JP 920-928 (MHz) Spreading Factor: 7~12  Transmit Power: Up to +18 dBm  Receiver Sensitivity: Up to -136 dBm at SF = 12/125 KHz ...
  • Page 27: Power

    Note! WISE-4610 modules can withstand operation in environments with less than 30% humidity. However, environments with low relative humidity are prone to causing electrostatic discharge issues. Therefore, users should take adequate precautions and use grounding straps, anti-static floor coverings, or similar equipment when manually handling the mod- ules, especially in low-humidity environments.
  • Page 28: Wise-S615/Wise-S615T Rtd I/O Module

    3.5.1.2 Analog Inputs Channels: 4  Resolution: 16 bit  Sampling Rate: 1 Hz per channel  Accuracy:  – ±0.1% of FSR (voltage) – ±0.2% of FSR (current) Input Range: ±150 mV, ±500 mV, ±1 V, ±5 V, ±10 V, 0 ~ 150 mV, 0 ~ 500 mV, 0 ...
  • Page 29: Wise-S672 I/O Module

    3.5.3.2 Analog Input Channels: 2  Resolution: 16 bit  Sampling Rate: 1 Hz per channel  Accuracy:  – ±0.1% of FSR (Voltage) – ±0.2% of FSR (Current) Input Range: ±1 V, ±5 V, ±10 V, 0 ~ 1 V, 0 ~ 5 V, 0 ~10 V, 0 ~ 20 mA, 4 ~ 20 mA, ...
  • Page 30 3.5.4.2 COM Port #1 Port Type: RS-485  Baud Rate (bps): 1200, 2400, 4800, 9600, 19200, 38400, 57600, 115200  Data Bits: 7, 8  Stop Bits: 1, 2  Parity: None, Odd, Even  Flow Control: Auto flow control ...
  • Page 31: I/O Pin Assignment

    I/O Pin Assignment Figure 3.1 WISE-S600 Pin Out Table 3.1: I/O Pin Assignment Model Name M12 Cable WISE-S672 WISE-S614 WISE-S615 WISE-S617 Number 4Pin: 1700028162-01 PCB P/N 19A3DC7200-01 19A3DB1402-01 19A3DC1500-01 19A3DC1700-01 8Pin: 1700028163-01 Version A101-1 (M/P) A101-3 (M/P) A101-1 (ES1) A101-1 (ES1) White DI 0 DI 0...
  • Page 32: Pin Assignment Of Wise-S600T I/O Module With Terminal Block Connectors

    Pin Assignment of WISE-S600T I/O Module with Terminal Block Connectors WISE-4610(P) User Manual...
  • Page 33: Application Wiring Of Wise-S600 I/O Module With M12 Connectors

    Application Wiring of WISE-S600 I/O Module with M12 Connectors 3.8.1 WISE-S614 I/O Application Wiring Figure 3.2 WISE-S614 I/O Application Wiring 3.8.2 WISE-S615 I/O Application Wiring Figure 3.3 WISE-S615 I/O Application Wiring WISE-4610(P) User Manual...
  • Page 34: Wise-S617 I/O Application Wiring

    3.8.3 WISE-S617 I/O Application Wiring Figure 3.4 WISE-S617 I/O Application Wiring Diagram 3.8.4 WISE-S672 Application Wiring Figure 3.5 WISE-S672 Application Wiring Diagram WISE-4610(P) User Manual...
  • Page 35: Application Wiring Of Wise-S600T I/O Module With Terminal Block

    Application Wiring of WISE-S600T I/O Module with Terminal Block 3.9.1 WISE-S614T I/O Application Wiring Figure 3.6 WISE-S614T I/O Application Wiring Diagram 3.9.2 WISE-S617T I/O Application Wiring Figure 3.7 WISE-S617T I/O Application Wiring Diagram WISE-4610(P) User Manual...
  • Page 36: Power Supply Wiring

    3.10 Power Supply Wiring WISE-4610 modules are designed to support a standard unregulated 24-V indus- trial power supply. However, they can also accept 10 ~ 50 V input with a peak-to- peak power ripple of 200 mV. The immediate ripple voltage should be maintained at 10 ~ 50 V .
  • Page 37: Chapter 4 Software Functions

    Chapter Software Functions...
  • Page 38: System Structure

    System Structure LoRaWAN (Long Range Wide Area Network) system structure consists of several key components that work together to enable long-range communication between IoT devices. Here's an overview: End Devices (WISE-4610) Function: WISE-4610 Industrial Wireless I/O solution can connect to any kinds ...
  • Page 39 This structure enables LoRaWAN to provide long-range, low-power communication, making it ideal for various IoT applications, including smart cities, agriculture, and industrial monitoring. WISE-4610(P) User Manual...
  • Page 40: Interface Design

    Interface Design 4.2.1 LoRaWAN Functions WISE-4610 can be configured via WISE-Studio to establish a LoRaWAN. Table 4.1: LoRaWAN Functions Item Description Device Operating LoRaWAN Mode (Default: 1) Device Class 1: Class A 3: Class C (Default: 2) Activation Mode 1: OTAA (Over-The-Air Activation) 2: ABP (Activation By Personalization) FPort values 1.223 (0x01.0xDF) are application-specific and any Port Field...
  • Page 41: Positioning

    4.2.2 Positioning 4.2.2.1 General Description WISE-4610 accesses the u-blox EVA-M8M-0 GNSS module via the I2C interface. This GNSS module can provide geolocation and time information. The features of EVA-M8M are listed below: Table 4.3: Features 72-channel u-blox M8 engine GPS/QZSS L1 C/A, GLONASS L10F, Receiver Type BeiDou B1 SBAS L1 C/A: WAAS, EGNOS, MSAS...
  • Page 42: Led Indicator Behaviors

    Configurations  Table 4.5: Configurations Item Description Positioning Enable or disable the GNSS module. (Default: Disable) Enable/Disable Position Update Time between two position fix attempts (15 sec ~ 1 day, unit: second) Period (Default: 1 hr) Specify which GNSS signals should be processed Value GNSS combination (Reserved)
  • Page 43: Battery Charging

    *Note 1 Table 4.7: Signal LEDs Error LED Description (poor) (Okay) (Good) (Full) Fast Blink RF related Error Fast Blink Fast Blink OFF I/O Error FW error Error Slow Blink OFF Battery related Error No error 4.2.4 Battery Charging The battery IC serves as a gauge for estimating the remaining battery capacity. Table 4.8: Items Values...
  • Page 44 Table 4.9: Flag Bit Definitions Content BATHI BATLOW CHG_INH RSVD OCVTAKEN SOC1 Operating Flags SOCF Status OTC = Over Temperature in Charge condition detected. True when set. OTD = Over Temperature in Discharge condition detected. True when set. BATHI = Battery High bit, indicating a high battery voltage condition. BATLOW = Battery Low bit, indicating a low battery voltage condition.
  • Page 45: Membrane Button

    Battery Temperature and Charging  Table 4.11: Battery Temperature and Charging Battery Temp. T (°C) Battery Level % Charging T < 0 Stop charging ≤ ≤ Allow charging > 10% Stop charging ≤ 45 < T ≤ Charge to 20% only T >...
  • Page 46: Multiple Power Sources

    4.2.6 Multiple Power Sources WISE-4610 is compatible with three sources of power: batteries, DC power, and solar panels. The power source detection, power fail (remove cable and solar power), low- battery, and suspend LEDs will vary depending on the power source: Low-Battery Indicator - When the remaining battery capacity is 20% or less, the ...
  • Page 47: Connection Setting On Wise-4610

     Internet Explorer 10 or later  4.3.1.2 Installing WISE-Studio The latest version of WISE-Studio is available on the Advantech support website http://support.advantech.com/. To install the software, download the installation file and execute it locally. 4.3.1.3 Introduction to WISE-Studio WISE-Studio is a tool for configuring WISE modules. The software provides a web- based interface that is similar for different models.
  • Page 48 4.3.1.4 Information Page Module Information This page displays the name of the module and related information. Click Go to Con- figuration to view or change the settings. Model Name: Model of WISE module Customized Name/UUID: Refer to the model name and UUID of the module. The default UUID is a combination of the model name and IMEI.
  • Page 49 As shown below, the GNSS System field features a dropdown menu with different GPS system combination options. Users can select the system combination accord- ing to their usage requirements. 4.3.1.5 I/O Status Configuration Digital Input Status The value of all digital input channels can be determined from the LED indicators on the DI tab (green LED = logic high;...
  • Page 50 Configuration The digital input channels support several operation modes and can be configured from this page. Channel: Select the channel to be configured.  Tag Name: Each channel can be given a name for identification.  Mode: This item allows users to configure the operating mode for each channel. ...
  • Page 51 Counter: When counter mode is selected for a given channel, the number of  pulses in the digital signal from that channel are counted and recorded to the register. On the Status page, the current count value of the selected channel is displayed in the Counter Value field.
  • Page 52 Low-to-High Latch: Under low-to-high latch mode, once a digital input channel  detects that the logic level has changed from low to high, the logic status will remain as “logic high” until the latch is cleared manually, which will return the logic status to “logic low”.
  • Page 53 For a writable bit or word, users can click Edit to switch to edit mode to change the value. Then click Apply to write the Modbus addresses individually. Modbus Configuration - Common Settings Tab The options on this tab allow users to configure the RS-485 port parameters. Baud Rate: 1200, 2400, 4800, 9600, 19200, 38400, 57600, 115200 bps ...
  • Page 54 Modbus Configuration - Rule Setting Tab The items on this tab allow users to configure the Modbus address of end devices to be polled. Rule: Each COM port can support a maximum of 8 rules. Each rule can be for a ...
  • Page 55 Note! After changing the rule configurations, the data logger is cleared of all data to accommodate the new data structure under the new configura- tion. Note! Move the mouse cursor over the table title rows to view tips. Diagnostician Because every device has a different response time, the WISE-4610 module sup- ports a diagnostics function for testing the response time of each rule.
  • Page 56 Firmware To update the firmware, go to the Firmware page in System Configuration and click the update file. The latest official firmware releases are available on the Advantech support website (http://support.advantech.com/). Users can also upload or export the configuration file.
  • Page 57: Appendix A Modbus Table With Wise-4610

    Appendix Modbus Table with WISE-4610...
  • Page 58 Table A.1: WISE-4610-S617 (for WISE-6610 LoRaWAN GW) Serial Port Address 0X Description Attribute Address 4X Description Attribute Counter/ 00001 DI Value Read 40017~40018 Read Frequency 00002 40019~40020 Read Read Value 00033 40301 DI Value Read Counter Start (1)/Stop(0) 00034 00041 Write Clear Counter (1)
  • Page 59 00141 40121 Read AI Low Alarm Historical 00142 40122 Read Flag Min. AI Value Average Average 00143 40123 Read Ch 0~1 Ch 0~1 40201 Read Type Code (The type codes of 40202 channels for Read average value can't be changed.) Average 40203 Read...
  • Page 60 GPS - Latitude 45401~45402 (degree Read *10^5), N(+)/ S(-) GPS - Longitude 45403~45404 Read (degree *10^5), E(+)/ W(-) Table A.2: *AI Status: (1st Register at Low Address) Bit Order Description I/O Type Fail to provide AI value AI, AO Over Range Under Range Open Circuit (Burnout) Reserved...
  • Page 61 Table A.5: WISE-4610-S615 (for WISE-6610 LoRaWAN GW) RTD (AI) Address 0X Description Attribute Address 4X Description Attribute 00101 Write 40001 Read 00102 Write 40002 Read Reset Histor- 00103 Write 40003 Read ical Max. AI AI Value Value 00104 40004 Write Read Average Average...
  • Page 62 (Main) 5002 45006 Power source Battery Low Read Read (*4) Event (Upper 45011 Read word) Timestamp (Lower 45012 Read word) RSSI 45301 Read (unit: - dBm) 45302 Read (unit: dB) 45311~45314 Device EUI Read Frame 45315~45316 Read FCntUp Frame 45317~45318 Read FCntDown Packet Loss...
  • Page 63 Table A.7: *4 Power source Bit Order Description Line power Battery Solar panel 3~15 Reserved Table A.8: Modbus Type Code 0x0103 -150mv~150mv 0x0104 -500mv~500mv 0x0140 -1v~1v 0x0142 -5v~5v 0x0143 -10v~10v 0x0105 0~150mv 0x0106 0~500mv 0x0145 0~1v 0x0147 0~5v 0x0148 0~10v 0x0180 4mA~20mA 0x0181...
  • Page 64 No part of this publication may be reproduced in any form or by any means, such as electronically, by photocopying, recording, or otherwise, without prior written permission of the publisher. All brand and product names are trademarks or registered trademarks of their respective companies. © Advantech Co., Ltd. 2024...