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#Wi-Fi#LoRaWAN#NB-IoT / LTE-M #Wireless I/O#Condition Monitoring

Industrial Wireless Devices

Connect industrial assets with versatile wireless connectivity.

From wireless I/O and smart sensors to industrial access points and gateways, Advantech helps collect field data reliably and connect it with OT, IT, and cloud systems.

Advantech industrial wireless product family — nodes, sensors, access points and gateways
The WISE Advantage

Choose the Right Wireless Solution for Every Site

Flexible Wireless Connectivity

Use high-throughput Wi-Fi for local industrial networks or long-range, low-power Sub-G connectivity for distributed and hard-to-wire assets.

LPWAN
LoRaWAN
NB-IoT
LTE-M
4G-LTE
5G
Wi-Fi

Diverse Sensing Capabilities

Monitor vibration, temperature, humidity, current, water leakage, and machine status with ready-to-deploy wireless sensors and I/O.

Vibration

3-axis sensing with eight calculated values.

Temperature

Ambient or probe sensing from −70°C to 200°C.

Humidity

Temperature and humidity sensing up to 90% RH.

Current

Three-phase clamp-on current measurement.

Water Leakage

Water-line detection with alarm output.

Machine Status

DI and RS-485 machine-state acquisition.

Ecosystem Integration

Connect field data with SCADA, MES, cloud, and partner platforms through widely used industrial protocols. Selected LoRaWAN gateways integrate with third-party network servers such as The Things Network and ChirpStack, as well as AWS IoT Core, with built-in MQTT, Modbus/TCP, and Node-RED.

MQTTModbus/TCPNode-REDBACnet/IP*OPC UA*

*EdgeLink (-EL) models only.

ChirpStack
Actility
The Things Network
Application layerIndustrial and cloud platforms
Local or external
Network edgeLoRaWAN Gateway Series
Edge aggregation
Field layerSensors and wireless I/O
Battery / solar / DC
Portfolio Capabilities

Explore Wireless Solutions by Product Category

Deployment Context

Map each function to your acquisition, monitoring, connectivity and scaling needs before SKU comparison.

Wi-Fi I/O Modules

Connect field I/O through industrial Wi-Fi

Wi-Fi I/O modules bring analog, digital, relay, and serial signals onto existing plant networks.

  • Analog, digital and relay I/O in one node
  • Wi-Fi, LoRaWAN, sub-GHz or cellular uplink
  • MQTT, RESTful and Modbus data publishing
Wi-Fi AP / Client

Build reliable plant-floor Wi-Fi links

Industrial access points, clients, and device servers connect mobile assets and legacy equipment.

  • Built-in environmental and vibration sensing
  • Battery-efficient long-range or wired options
  • Direct feed to dashboards and analytics
LoRaWAN Sensors

Monitor distributed assets with low-power sensing

LoRaWAN sensors capture vibration, temperature, humidity, current, and water leakage across hard-to-wire sites.

  • Industrial Wi-Fi AP, client and device servers
  • LoRaWAN and sub-GHz gateways / concentrators
  • Protocol handoff to SCADA, MES and cloud
LoRaWAN Edge Connectivity

Aggregate LoRaWAN data at the network edge

Industrial LoRaWAN gateways connect field nodes with local OT systems, partner network servers, and cloud platforms.

  • Protects initial engineering investment
  • Simplifies staged procurement strategy
  • Supports long-term architecture continuity
Product Selection Guide

Find the right wireless hardware

Evaluate field constraints through our guided architecture selector, or filter technical specifications directly across our portfolio.

Guided Architecture Selector

Evaluate optimal wireless hardware across range, signal density, and field conditions in 4 guided steps.

Showing 0 products

Wi-FiNodeWISE-4250-S251

WISE-4250-S251

6DI + 1× RS-485, dry and wet contact input.

  • WPA3 / TLS 1.3
  • Fail Safe Value on comms loss
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Wi-FiNodeWISE-4060-B

WISE-4060-B

4DI + 4 relay, 2.4 GHz — the cost-down switching node.

  • Relay 3 A @ 30 VDC
  • 110 m line-of-sight
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Wi-FiNetworkEKI-6333AC-2GD-A

EKI-6333AC-2GD-A

Dual-band 2T2R AP / Client / Bridged Repeater, DIN rail.

  • 802.11r Fast Roaming · Site Survey
  • IP30 · −20–70°C · 24 VDC redundant
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Wi-FiNetworkEKI-6333AC-1GPO-JA

EKI-6333AC-1GPO-JA

Outdoor Wave 2 MU-MIMO access point.

  • IP67 · 802.3af/at PoE
  • −20–60°C
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Wi-FiNetworkEKI-1361-CE

EKI-1361-CE

1-port RS-232/422/485 to 802.11 WLAN device server.

  • Modbus TCP / RTU / ASCII
  • IP30 · −40–70°C
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LoRaWANNodeWISE-2410

WISE-2410

3-axis vibration + temperature, eight values computed on board.

  • IP66 · ISO 10816 / 20816
  • 10–1,000 Hz · 2× 3.6 V AA
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LoRaWANNodeEVA-2310

EVA-2310

Ambient temperature and humidity, QR-code setup.

  • ±1°C / ±4 %RH
  • 5 yr @ 15 min interval
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LoRaWANNodeEVA-2210

EVA-2210

3-phase current, 3 × 75 A clamp-on CT.

  • 100 mA–75 A, <±1 %
  • 3.5 yr @ 60 min interval
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LoRaWANNodeEVA-2510

EVA-2510

Water leakage detection to a 3.5 mm water line.

  • 3.5 mm water line detection
  • 5 yr @ 15 min interval
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LoRaWANNetworkWISE-6610

WISE-6610-EB

SX1302 gateway, embedded LoRaWAN network server, Node-RED.

  • Up to 500 nodes · −40–75°C
  • 2× Ethernet · 10–30 VDC
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LoRaWANNetworkWISE-4610-NA

WISE-4610-NA

Outdoor modular LoRaWAN I/O, solar rechargeable or 10–50 VDC.

  • IP65 anti-UV · M12
  • Private LoRa selectable
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LoRaWANNetworkWISE-2200-M

WISE-2200-MEA

LoRaWAN to 1× RS-485, Modbus/RTU bridge.

  • 128 addresses · 30 rules
  • 5–50 VDC
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NB-IoT / LTE-MNodeWISE-4671-UA

WISE-4671-UA

NB-IoT / LTE-M modular I/O, solar rechargeable, GNSS.

  • IP65 · 3GPP Rel. 13
  • MQTT / CoAP / LwM2M
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NB-IoT / LTE-MNodeWISE-4471

WISE-4471

NB-IoT / LTE-M modular I/O, DC powered.

  • IP65 · Micro SIM
  • M12 optional
Contact us
Sub-GNodeWISE-4210

WISE-4210

Proprietary sub-G modular I/O, up to 5 km range.

  • 868/923 MHz · 625 bps–50 kbps
  • 3× 3.6 V AA, 5 years
Contact us
Sub-GNetworkWISE-4210-AP

WISE-4210-AP

Sub-G LPWAN to Ethernet access point.

  • 64 clients
  • Modbus/TCP + MQTT
Contact us
Sub-GNodeWISE-2210

WISE-2210

Self-powered 3-channel CT node — powered by the CT.

  • 0–100 mA AC · ±0.2 % FSR
  • No battery, no power wiring
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No products match this combination.

Proven Field Deployments

Key Industrial Wireless Applications

LoRaWAN vibration monitoring for mission-critical industrial assets
Smart Manufacturing

Factory-wide LoRaWAN coverage enables scalable vibration monitoring and early fault detection across critical machines.

Requirement
Capture continuous vibration data from hard-to-reach, mission-critical machines and motors across multiple industrial sites.
Architecture
Battery-powered WISE-2410 sensors monitor vibration and temperature through a private MeshedX LoRaWAN network, supporting early-warning analytics and condition-based maintenance.
Outcome
The deployment expanded from an initial 50 sensors to more than 2,000 units across Australia, Asia Pacific, and the United States.
WISE-2410MeshedX LoRaWAN
LoRaWAN heat meter monitoring at a petrochemical facility
Energy & Utilities

Long-range LoRaWAN monitoring for distributed energy assets.

Requirement
Improve heat-meter connectivity across a steel-, concrete-, and pipeline-dense European petrochemical site while reducing SIM management and field maintenance.
Architecture
WISE-2200-M modules convert Modbus RTU heat-meter data to LoRaWAN. Six WISE-6610P gateways provide local Node-RED access and central SCADA or historian connectivity.
Outcome
The new architecture reduced approximately 150 cellular routers to six gateways and maintained coverage at distances up to 700 meters in adverse site conditions.
WISE-2200-MWISE-6610PNode-RED
Fast-roaming Wi-Fi connectivity for AGVs in automobile assembly
Warehousing & Logistics

Fast roaming supports reliable connectivity for AGVs and AMRs in motion.

Requirement
Maintain real-time AGV control data as vehicles move through overlapping access-point coverage in a large automobile assembly plant.
Architecture
EKI-1361 wireless clients connect onboard PLCs over serial or Ethernet, while EKI-6333AC dual-band access points provide plant-floor Wi-Fi coverage.
Outcome
802.11r and 100 ms roaming support enabled fast signal switching, with 2.4 and 5 GHz operation increasing available wireless capacity.
EKI-1361EKI-6333AC-2G802.11r
LoRaWAN monitoring for data center cooling systems
Data Center Facilities

Proactive wireless monitoring for critical cooling systems.

Requirement
Detect developing fan and pump faults earlier, reduce manual inspections, and centralize visibility across distributed cooling assets.
Architecture
WISE-2410X sensors monitor vibration, WISE-4610P with WISE-S617-A collects temperature, flow, and alarm signals, and WISE-6610P aggregates the LoRaWAN data.
Outcome
Real-time vibration and I/O monitoring supports predictive maintenance, remote diagnostics, automated alerts, and integration with BMS or cloud dashboards.
WISE-2410XWISE-4610PWISE-S617-AWISE-6610P
Deployment Insights

Frequently asked deployment questions

How do I select the optimal wireless technology (Wi-Fi, LoRaWAN, Cellular, or Sub-GHz) for my application?

Selection depends on transmission distance, power availability, and network ownership models. Industrial Wi-Fi excels in plant-floor environments where high sampling throughput and direct MQTT/RESTful publishing over DC power are required. Private LoRaWAN delivers long-range, battery-powered telemetry across sprawling facilities without recurring carrier fees. Proprietary Sub-GHz offers a lightweight, energy-harvesting solution for targeted point-to-point links. For geographically dispersed assets across multiple sites, Cellular (NB-IoT/LTE-M) connects directly to public operator networks, eliminating on-site gateway infrastructure.

Can Advantech LoRaWAN gateways integrate with third-party Network Servers and Enterprise Cloud platforms?

Yes. WISE-6610 can use its embedded LoRaWAN network server, supporting up to 500 nodes, or operate in gateway mode and forward packets to a compatible external LNS. Depending on the installed software and configuration, external LNS options may include Actility ThingPark, ChirpStack, and The Things Network. Verify the required forwarding interface and upstream platform before finalizing the intended regional deployment architecture.

Which products support local data buffering during temporary network interruptions?

Selected WISE-4000 Wi-Fi I/O modules support RTC-stamped local data logging for up to 10,000 samples. This capability can help preserve readings during temporary network interruptions, subject to the model, logging settings, and network configuration. Do not assume the same buffering and recovery behavior for LoRaWAN or other wireless nodes; verify the selected model before deployment.

How are regional RF frequencies and regulatory compliance managed across global deployments?

LoRaWAN and sub-GHz frequency plans, product suffixes, and certifications vary by model and destination market. Before ordering, verify the exact part number, supported frequency band, and current local regulatory approvals in the product datasheet and with your Advantech representative. A suffix used for one product family should not be assumed to have the same meaning across the entire portfolio.

Are self-powered or energy-harvesting options available for hard-to-wire locations?

Yes. The WISE-2210 is a self-powered Sub-GHz current-monitoring node that harvests operating power through connected current transformers, eliminating batteries and separate power wiring. It sends three-channel current measurements through a WISE-4210 access point. Confirm current product availability, compatible CT specifications, regional frequency, and the required access-point architecture with your Advantech representative before specifying it for a project.

Can the wireless system operate in air-gapped or fully on-premise industrial architectures?

Yes. WISE-6610 can support local LoRaWAN deployments using its embedded network server, Node-RED workflows, MQTT, and Modbus/TCP. WISE-6610 models equipped with EdgeLink add integration options such as BACnet/IP and OPC UA. Final connectivity to an isolated OT network, DCS, or SCADA system depends on the selected model and system configuration.

What best practices should be followed when planning industrial RF coverage and gateway density?

Published line-of-sight (LoS) ranges represent ideal conditions; industrial indoor environments with dense steel structures, concrete barriers, and high EMI require realistic propagation planning. Advantech recommends conducting an initial on-site RF survey and deploying dual-gateway redundancy in mission-critical facilities. Overlapping gateway coverage provides automatic spatial diversity (multicast/ADR), mitigates multipath fading, and prevents single-point-of-failure risks.

How do regional spectrum regulations impact sampling rates and reporting intervals?

Regional spectrum rules can affect channel plans, transmit power, payload sizes, reporting intervals, and supported LoRaWAN settings. Requirements vary by frequency plan and destination market, so confirm current local regulations with the applicable authority or a qualified local specialist. Then configure the channel plan, payload size, reporting interval, and spreading factor for the approved product and operating region.

How do Advantech smart vibration sensors implement ISO 10816 / 20816 condition monitoring standards?

The WISE-2410 performs onboard edge computing, calculating 8 statistical feature parameters (including RMS velocity, peak acceleration, displacement, and kurtosis) aligned with ISO 10816/20816 vibration severity standards for rotating machinery (>600 RPM). While ISO zones provide standardized baseline severity classes based on machine scale and mounting stiffness, users can define customized multi-tier warning/alarm thresholds and dynamic anomaly triggers suited to specific equipment baselines.

Resources

Go deeper

  • Wireless IoT Sensing Solutions

    The full product-line catalog, selection guide, spec tables and six case studies.

    Download PDF →
  • Remote I/O & Wireless Sensing Modules

    The IIoT master catalog chapter.

    Download PDF →
  • Wireless Architecture Consultation

    Discuss field parameters, networking topology, and power constraints with an industrial IoT specialist.

    Contact us →
Industrial Wi-Fi 7 in Practice case study guide

Industrial Wi-Fi 7 in Practice

Explore real-world deployments, learn when 6 GHz capacity and Multi-Link Operation add practical value, and review what to validate before upgrading.

Download the Case Study Guide