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— 葡萄酒 | 威士忌 | 白兰地 | 啤酒 —
— 葡萄酒 | 威士忌 | 白兰地 | 啤酒 —
In today's rapidly evolving digital landscape, the industrial 5G LTE router serves as a pivotal link between devices and networks, increasingly becoming a core component of industrial automation, the Internet of Things (IoT), and smart manufacturing. This article delves into the unique features, interfaces, protocols, parameters, and a specific use case of the industrial 5G LTE router, helping readers gain a comprehensive understanding of the value of this essential device.
The design of the industrial 5G LTE router is tailored to meet the demanding requirements of industrial environments. They possess high reliability, resistance to high temperatures, humidity, and vibrations. These routers are typically constructed with industrial-grade materials, ensuring stable operation even under extreme conditions.
The industrial 5G LTE router offers ultra-fast data transmission rates that surpass those of traditional 4G LTE routers. Utilizing 5G networks, the communication latency between devices is significantly reduced, enabling real-time data processing and remote control. This feature is particularly crucial for industrial applications that require high-frequency data updates.
The low latency characteristic of the industrial 5G LTE router allows it to support real-time applications such as autonomous driving, remote monitoring, and industrial robot control. This rapid response capability enhances the efficiency and safety of operations in industrial settings.
Security is a vital consideration in the design of the industrial 5G LTE router. These routers are often equipped with a variety of security protocols and encryption technologies to ensure secure and reliable data transmission, preventing data breaches and network attacks.
The interface design of the industrial 5G LTE router is typically quite comprehensive, accommodating the needs of various devices and applications.
The industrial 5G LTE router supports a variety of network protocols, including but not limited to:
Through these protocols, the industrial 5G LTE router can seamlessly integrate with various devices and platforms, forming an efficient industrial network.
When selecting an industrial 5G LTE router, understanding its technical parameters is crucial. Here are some key parameters:
In the realm of smart manufacturing, the application of the industrial 5G LTE router is transforming traditional production methods. For example, in a modern automotive manufacturing plant, the industrial 5G LTE router can be used to connect various machines, sensors, and control systems.
Imagine an automotive manufacturing facility where multiple automated robots and sensors are deployed. By deploying industrial 5G LTE routers, all machine devices can interconnect in real-time, facilitating rapid data transmission and processing. For instance, when a sensor detects an anomaly in machine operation, the industrial 5G LTE router can immediately send the data to the central control system, triggering an alarm and initiating troubleshooting protocols.This kind of real-time data exchange not only enhances production efficiency but also significantly reduces equipment failure rates, ensuring smooth operations on the production line. This low-latency, high-reliability connectivity is a powerful advantage of the industrial 5G LTE router.
Hardware Performance | ||
Memory | 512MB | |
FLASH | 4GB EMMC | |
WIFI | Supports 2.4G/5.8G dual-band, with a theoretical maximum rate of 866.7Mbps. Optional WIFI6, with a theoretical maximum rate of 1774Mbps | |
Network support | Industrial-grade 5G module | |
System time | Time synchronization using NTP technology, with built-in RTC | |
Interfaces | ||
Ethernet ports | 4 (10M/100M/1000M adaptive MDI/MDIX port), LAN/WAN configurable | |
Optical ports | 2 SFP | |
SIM Card Interfaces | 2 (drawer-type card slots, supporting 1.8V/3V SIM/UIM cards) | |
USB interface | 1*USB2.0 | |
Reset | 1 (reset button). | |
Antenna interface | 4 (4G/5G antennas, impedance 50 ohms, SMA male interfaces) | |
2 (2.4G/5.8 antennas, impedance 50 ohms, SMA interface), optional 4 | ||
Power terminals | 1 (2-pin 3.81mm pitch connector), 1 DC power jack | |
ConsolePort | 1 (5-pin 3.5mm pitch connector, 1 RS232/RS485) | |
Indicators | 9 (1 PWR, 1 SYS, 3 signal strength, sim1, sim2, 1 WiFi, 1 NET) | |
Power Characteristics | ||
power supply | External power adapter (12V 2A) | |
Operating voltage | Wide power input DC 9~36V | |
Standby power consumption | 300~500mA@12V DC | |
Operating power consumption | 500~700mA@12V DC | |
Operating Conditions | ||
Operating temperature | -35~+75℃ (-31~+167℉) | |
Storage temperature | -40~+85℃ (-40~+185℉) | |
Operating humidity | 5%~95% (non-condensing) | |
Device Ventilation | Natural heat dissipation, noise-free | |
Physical Characteristics | ||
Chassis | Full metal chassis | |
Dimensions | Length*Width*Height: 126*44*166mm (excluding antenna mounting parts) | |
Installation Methods | Desktop placement, rail installation, wall-mounted | |
Weight | Net weight: 0.67KG (excluding antennas and mounting parts) | |
Gross weight: 0.95KG (with accessories and packaging box) | ||
Device Security and Reliability | ||
Security and Reliability | Reverse polarity protection, overvoltage protection, overcurrent protection; Ethernet interface built-in 1.5KV electromagnetic isolation protection; RS232/RS485 interface built-in 15KV ESD protection; SIM/UIM card interface built-in 15KV ESD protection | |
Protection Level | IP30 | |
Certifications | Compliant with CCC, RoHS | |
MTBF | ≥ 100,000 hours | |
Software Features | ||
Network access | Supports APN/VPDN/slice network | |
Access authentication | Supports CHAP/PAP authentication | |
Network modes | 5G Sub-6 SA/NSA/LTE/WCDMA | |
LAN protocols | Support ARP, Ethernet | |
WAN protocols | Supports static IP, DHCP, PPPoE, PPP | |
IP applications | Supports Ping, Trace, DHCP Server, DHCP Relay, DHCP Client, DNS relay, DDNS, Telnet | |
IP routing | Supports routing | |
NAT function | Supports Network Address Translation | |
Industrial Protocols | Support environmental protection 212 protocol, support MQTT, MUDBUS and other industrial protocols | |
Network Security | ||
Firewall | Full state packet inspection (SPI), prevention of denial of service (DoS) attacks, filtering multicast Ping packets, access control lists (ACL), content URL filtering, port mapping, virtual IP mapping, IP-MAC binding | |
Data Security | IPsec VPN/L2TP/PPTP/GRE/OpenVPN/CA certificate | |
Reliability | ||
Backup function | Supports wired, 5G, optical fiber, and WIFI backup | |
Link online monitoring | Sends heartbeat packets for detection, automatically reconnects after disconnection | |
Embedded Watchdog | Device self-checking technology, device fault self-repair | |
WLAN | ||
Protocol Standards | IEEE 802.11b/g/n/ac/wifi6 ax (optional). | |
Rate | Up to 1774Mbps | |
Security features | Open system, shared key, WPA/WPA2 authentication, WEP/TKIP/AES encryption | |
Operating modes | AP, Client operating modes | |
Transmission distance | 100m (actual transmission distance depends on the environment) | |
Intelligence | ||
Integrated DTU Function | Supports TCP, UDP transparent transmission mode, TCP Server mode, supports Modbus RTU to Modbus TCP bridge, supports DCUDP, DCTCP mode | |
Network Management | ||
QOS Management | Supports bandwidth limitation, IP speed limit | |
Configuration Methods | Supports telnet, web, ssh, and console configuration methods | |
Upgrade method | Supports web upgrade, supports FOTA (Firmware Over The Air) | |
Logging Function | Supports local system logs, remote logs, serial port output logs | |
Network Management Function | Supports STAR Device Manager platform batch management | |
Simple network management function | Supports SNMP v1/v2/v3 supports SNMP TRAP function | |
Traffic management | It supports the setting of flow thresholds, flow statistics and flow alarms | |
Maintenance tools | Ping, route tracing | |
Status query | System status, modem status, network connection status, route status |
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