High-Speed Dual 4G LTE & LTE + Wi-Fi 6 Network ・Dual Core High-Speed Processor ・LTE Cat.4, 2x2 MIMO, 150M downlink and 50M uplink ・4G/3G/2G full cellular network compatibility ・Dual SIM Dual Active ensures dual LTE redundancy with non-stop carrier switch time ・Support GPS for location services (model with GPS) ・Support LTE + WLAN 6 network, features IEEE 802.11ax and backward compatible 802.11ac/n/g/b/a ・Dual Band Dual Concurrent 5GHz + 2.4GHz Wi-Fi frequency for local coverage, up to 1774(1200Mbps + 574Mbps) PHY Rate capacity ・Support OFDMA, Downlink/Uplink MU-MIMO, BSS Coloring, up to 80MHz channel bandwidth, WLAN AP and Client mode ・802.11r Fast Roaming ・Serial port with RS232/422/485 full functions for serial over LTE/Wi-Fi/Ethernet data switching ・2-port Gigabit Ethernet supports routing and bridging mode ・Close to wire-speed NAT routing performance ・Hardware NAT for CPU utilization saving Dynamic Routing with Redundancy Protection ・RIPv1&v2, OSPFv1&v2 for intra-domain routing within an autonomous system ・Efficient unicast/multicast* static routing ・VRRP guarantees sustainable routing in a single point of failure Rugged Design for Wayside Surveillance, ITS Application
・EN50121-4 railway trackside EMC compliant for Industrial IoT, ITS applications ・Effective heat dissipation design for operating in -40~70oC environments ・CE Marking ・IEC61000-6-2/IEC61000-6-4 heavy industrial EMC compliance
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Enhanced Cyber Security & Redundancy
・Firewall for inbound/outbound traffic ・OpenVPN (server/client), and IPSec support AES256 for secure remote connection (not available for EurAsEC countries) ・L2TP with PPP, PAP, CHAP(LCP, IPCP) ・GRE tunnel ・HTTPs/SSH secure login ・TACACS+ multi-user authentication for privileged user management ・Cellular to WAN redundancy, dual SIM backup ・RSTP spanning tree protocol* Industrial IoT LAN & Cloud Management ・Embedded Amazon AWS & Microsoft Azure cloud service ・Various configuration paths, including CGI WebGUI, CLI, SNMP and RMON* ・1:1 NAT, port forwarding and NAPT for local traffic protection ・Support SNMPv3 and entity-MIB (RFC4133), MIB II (RFC1213) ・NTP v3 time management ・WoMaster Software Utilities -NetMaster: Network Management System with VLAN visualization* and ERPS* Ring -ViewMaster: Configuration Management -ThingMaster OTA: Realtime map showing the status, signal strength, location of the remote devices, over-the-air batch device registration, configuration and firmware upgrade*, alerts on critical events to prevent downtime ・Support MQTTS/CoAP protocol, ready to use AWS/Azure and Private Cloud Agent for cloud management ・USB for easy field configuration and firmware update ・ Diagnostic tool includes Ping, TFTP, SNMP Trap, E-mail Alert and System Log |

WR322GR-WLAN6-LTE 3D

- Built-in Microsoft Azure and Amazon AWS agent

- Secured Remote Access by VPN
- Cyber Security Guard

- Secure IoT Modbus Tags
- Tag-based data acquisition with MQTT support
- MQTT client acting as publisher and subscriber
- The latest TLS encryption and X.509 authentication
- Selectable serial port and data type. Sensor alive check and display sensor value
- Secured Multiple Sites Management
- ThingsMaster OTA (device management over the air)
Dual Band Dual Concurrent WLAN 6




802.11ax Powerful Performance

OFDMA
OFDMA is applied in Wi-Fi 6 (IEEE 802.11ax). It is a user access technology that allows spectrum to be simultaneously allocated to multiple users or devices, enabling the transmission of multiple data streams on the same frequency band, thereby enhancing network efficiency.
It can also be adjusted according to demand or priority, achieving more flexible network resource management. By dividing the spectrum into small subcarriers, OFDMA can also reduce interference between adjacent users, making the signal more reliable and stable. This is one of the latest key technologies in Wi-Fi 6.
Downlink & Uplink MU-MIMO
In 802.11ac, basic Downlink MU-MIMO was introduced, allowing wireless access points (such as routers) to simultaneously transmit data to multiple client devices.
However, in Wi-Fi 6, MU-MIMO technology has been further developed to communicate simultaneously with multiple devices in both the Downlink and Uplink directions.
This means that whether sending data from the access point to devices or from devices to the access point, multiple device data streams can be processed simultaneously.
This enables faster and more reliable wireless connections, while also improving network throughput and efficiency.

BSS Coloring
BSS Coloring is a feature introduced in the 802.11ax Wi-Fi standard, which helps reduce interference from neighboring Access Points (APs) and improves coexistence between multiple APs.
The basic idea behind BSS Coloring is that each BSS or AP is assigned a unique color, which is added to the preamble of each transmitted data packet. When a client device receives a packet, it can check the color of the received preamble and use this information to differentiate signals from different APs.
BSS Coloring helps prevent unnecessary retransmissions and conflicts caused by neighboring networks, thereby improving overall network efficiency and potentially extending the available range of IoT devices.