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Glossary

Industrial Ethernet

Introduction of Industrial Ethernet

Industrial Ethernet represents a pivotal adaptation of standard Ethernet technology, tailored to meet the rigorous demands of industrial environments. Unlike its commercial counterpart, Industrial Ethernet is fortified with protocols that ensure determinism and real-time control, essential for automation systems where timing is critical. For this reason, industrial Ethernet is also referred to as Real-Time Ethernet (RTE).

It has become an important communication technology in industrial automation and control systems and offers specific modifications to standard Ethernet to ensure timely and accurate data transmission for industrial processes. Industrial Ethernet comprises several protocols that have been developed on the initiative of various automation manufacturers and fieldbus organizations. These protocols enable reliable communication and seamless integration into industrial automation systems.

In terms of hardware, Industrial Ethernet necessitates more robust components than standard ethernet, including cables and connectors, to withstand the harsh conditions typical of industrial sites. These environments may expose network infrastructure to extreme temperatures, vibration, liquids, dust, chemicals, and electromagnetic interference, necessitating the use of specially constructed cables and connectivity solutions.

Technical Functionalities

Industrial Ethernet offers a range of technical functionalities that make it particularly suited for industrial automation and communication. It incorporates real-time protocols, prioritization mechanisms, and Quality of Service (QoS) techniques to ensure timely and predictable data delivery, which is critical in applications where precise timing is required.

The deterministic behavior of this technology guarantees that data packets are transmitted and received within predictable timeframes, ensuring consistent performance even under heavy network loads. Industrial Ethernet protocols achieve determinism through mechanisms such as time synchronization, prioritized communication channels, and cyclic data exchange, which are essential for time-critical applications in industrial communication and automation technology.

Support for high-speed data exchange is another hallmark, enabling rapid transfer of large volumes of data between devices and systems. This capability is essential for applications such as motion control, machine vision, and high-throughput manufacturing processes, where real-time data acquisition and processing are required for optimal performance.

These networks further employ redundancy and failover mechanisms to enhance reliability and fault tolerance. Redundant network paths, link aggregation, and redundant power supplies ensure uninterrupted operation and minimize the impact of network failures on industrial processes.

Flexible scaling with the number of network nodes is a key feature of Industrial Ethernet, which is particularly beneficial in industrial settings where the network may need to expand or change configuration over time.

Applications of Industrial Ethernet

  • Machine-to-Machine Communication

    Industrial Ethernet acts as a facilitator for machine-to-machine (M2M) interaction, allowing multiple machines on the factory floor to communicate directly without human intervention. This enables seamless collaboration between different machines and subsystems within a production line or manufacturing cell, improving efficiency and productivity.

  • Real-time Communication

    Industrial Ethernet enables real-time communication between PLCs (Programmable Logic Controllers), HMIs (Human-Machine Interfaces), sensors, actuators, and other automation devices. In automated environments, precise timing and control over equipment are necessary to maintain high-quality standards. 

  • SCADA Systems

    With the implementation of Industrial Ethernet, Supervisory Control and Data Acquisition (SCADA) systems can efficiently monitor, gather, and process data from sensors and actuators, PLCs, and other devices, spread across vast geographical locations. It provides operators with insights into process variables, alarms, and historical trends for decision-making and process optimization.

  • Distributed Control Systems (DCS)

    Industrial Ethernet supports distributed control architectures, where control functions are distributed across multiple devices and systems within a manufacturing facility or industrial plant. This decentralized approach allows for flexibility, scalability, and fault tolerance in industrial automation systems.

  • Safety Systems

    In automation, it's imperative to have reliable emergency stop systems such as emergency stop circuits, safety interlocks, and safety monitoring systems. Industrial Ethernet supports integrated safety protocols that ensure instant communication if a risk is detected, prompting immediate actions to safeguard personnel and equipment.

  • Integration with Enterprise Systems

    Industrial Ethernet enables integration with enterprise IT systems, including MES (Manufacturing Execution Systems), ERP (Enterprise Resource Planning) systems, and supply chain management systems. This integration facilitates data exchange between production systems and business processes, enabling better coordination, visibility, and decision-making across the entire value chain. 

  • Integration with Industry 4.0

    Industrial Ethernet also provides a way to integrate older equipment and protocols into modern, more sophisticated networks, facilitating the transition towards Industry 4.0.

Protocols of Industrial Ethernet

Industrial Ethernet protocols such as PROFINET, EtherNet/IP, Modbus TCP, EtherCAT, CC-Link IE and Ethernet POWERLINK play crucial roles in industrial communication, enabling reliable and efficient data exchange. They address the need for consistent and synchronized automation, integrating real-time control with device interoperability and diagnostics, essential for industries like automotive and material handling.

The various protocols differ both in terms of their technological structure and their performance characteristics. More detailed information on the individual protocols can be found on the corresponding subpages.

Hilscher & Industrial Ethernet

Hilscher offers a wide range of products for industrial communication in Industrial Ethernet networks. The netX technology and the multiprotocol-capable SoCs (System on Chips) based on it are at the forefront. These can be integrated into industrial components - such as controllers, sensors or actuators - as highly integrated communication interfaces. Thanks to the associated firmware, which can be loaded onto the chip as required for the required protocol stack, Hilscher supports component manufacturers and automation specialists in the development of flexible solutions for use in a wide variety of Industrial Ethernet networks – for example for PROFINET, EtherCAT, EtherNet/IP, CC-Link IE or Ethernet POWERLINK.

Based on the netX communication controllers, Hilscher developed different embedded modules and the PC and fieldbus cards of the cifX family (which are available in all common form factors - from PCI and PCIe to the smallest multiprotocol-capable PC cards on the automation market in M.2 format). These communication interfaces already include the necessary chip peripherals and are therefore faster to integrate.

In addition, gateways, switches and network and communication diagnostic devices support the smooth operation of fieldbus networks.

Next to conventional Industrial Ethernet systems, Hilscher's components for industrial communication networks also support the most common fieldbus protocols - such as PROFIBUS, Modbus, CC-Link or DeviceNet.

The portfolio is rounded off by the netFIELD ecosystem for Managed Industrial IoT. From the edge gateway to the cloud platform for centralized container and device management, netFIELD offers everything you need to develop modern applications in line with Industry 4.0.

Our products

AIFX-V2-RE

用于基于 PC 的自动化通讯板卡

CIFX 104-RE\F

用于基于 PC 的自动化通讯板卡

CIFX M223090AE-RE\F

用于基于 PC 的自动化通讯板卡

CIFX 90E-RE\MR\F

用于基于 PC 的自动化通讯板卡

NIC 50-RE

用于无自带主处理器的简单从站设备的通讯

COMX 51CN-RE

用于自动化的灵活通讯模块

EU5C-SWD-ETHERCAT

SmartWire-DT 连接到实时以太网 EtherCAT 系统

CIFX 104-RE-R

用于基于 PC 的自动化通讯板卡

NRPLFW-ECS

用于 NRP 52-RE 和 NRP 51-RE 的完整版,含 6 小时支持

NJEB-E

适用于任何带有 PCI Express 的 netJACK

NT 100-RE-DP

用于高要求转换的高端网关

NJ 100DN-RE

可随时安装在输送链中

AIFX-RE

用于基于 PC 的自动化通讯板卡

NRP 52-RE

即可焊锡的 netX 设计,邮票大小

NT 100-RE-DN

用于高要求转换的高端网关

CIFX 50-RE

用于基于 PC 的自动化通讯板卡

NRP H90

经过全面测试的超紧凑 NETX 90设计

NRPLFW-PLS

用于 NRP 52-RE 和 NRP 51-RE 的完整版,含 6 小时支持

NHST-T100-EN/EIM

用于 DIN 导轨的 LAN 控制 EtherNet/IP 扫描器

CIFX 50E-CCIES

用于基于 PC 的自动化通讯板卡

NIC 50-RE/NHS

用于无自带主处理器的简单从站设备的通讯

NT 100-RE-CC

用于高要求转换的高端网关

AIFX-RE\M12

用于基于 PC 的自动化通讯板卡

NIC 52-RE

用于无自带主处理器的简单从站设备的通讯

CIFX 80-RE

用于基于 PC 的自动化通讯板卡

NT 50-DP-EN

经济的入门级网关,用于简单转换

CIFX 104-RE-R\F

用于基于 PC 的自动化通讯板卡

NRPLFW-EIS-IOT

用于 NRP 51-RE 的完整版,含 6 小时支持

NICEB-REFO

带光纤电缆的评估平台netIC

NT 100-RE-EN

用于高要求转换的高端网关

CIFX 104C-RE-R\F

用于基于 PC 的自动化通讯板卡

CIFX 90E-RE\MR\ET\F

用于基于 PC 的自动化通讯板卡

CIFX 70E-RE

用于基于 PC 的自动化通讯板卡

NXHX 500-ETM

NT 50-CO-EN

经济的入门级网关,用于简单转换

CIFX 104C-RE

用于基于 PC 的自动化通讯板卡

CIFX 90E-RE\ET\F

用于基于 PC 的自动化通讯板卡

NIC 50-REFO/PNS

用于带有光纤电缆连接的简单从站设备的通讯

COMX 51CA-RE

用于自动化的灵活通讯模块

NT 151-RE-RE

两个实时以太网网络之间的数据传输

NT 100-RE-RS

用于高要求转换的高端网关

NJEB-D

适用于具有双端口内存或SPI的每个netJACK

NRPEB 51-RE

配备 NRP 51-RE

NXHX 51-ETM

NICEB-RE

单个评估平台,适用于所有实时以太网协议

COMX 51CA-RE\R/ECS

用于半导体制造设备市场的模块

LIC/SCP

NetANALYZER 的完美扩展

NT 50-DN-EN

经济的入门级网关,用于简单转换

CIFX HPCIE90-RE\F

用于基于 PC 的自动化通讯板卡

NRP H90(预加载)

经过全面测试和加载的超紧凑 netX 90 设计

COMX 100CA-RE

用于自动化的灵活通讯模块

EU5C-SWD-POWERLINK

SmartWire-DT 连接到实时以太网 POWERLINK 系统

NMR-TFE-RE

永久诊断接入点

CIFX 70E-CCIES

用于基于 PC 的自动化通讯板卡

NXHX 90-JTAG

NIC 52-REFO

用于带有光纤电缆连接的简单从站设备的通讯

NANL-B500G-RE

以太网分析变得更便捷

NXHX 52-JTAG

NRP 51-RE

即可焊锡的 netX 设计,邮票大小

NRP H90\F8D8

经过全面测试的超紧凑 netX 90设计

NFD-3090-ECS-IOLM\W

netFIELD IO-Link Wireless Master – 通过灵活连接实现简单解决方案

NFD-3090-EIS-IOLM\W

netFIELD IO-Link Wireless Master – 通过灵活连接实现简单解决方案

CIFX 104C-RE\F

用于基于 PC 的自动化通讯板卡

CIFX 50E-RE\ET

用于基于 PC 的自动化通讯板卡

CIFX 104-RE

用于基于 PC 的自动化通讯板卡

CIFX 90E-RE\F

用于基于 PC 的自动化通讯板卡

NRP H90\F8D8(预加载)

经过全面测试和预加载的超紧凑 netX 90 设计

NT 100-RE-CO

用于高要求转换的高端网关

CIFX 104C-RE-R

用于基于 PC 的自动化通讯板卡

CIFX M3042100BM-RE\F

用于基于 PC 的自动化通讯板卡

CIFX 70E-RE\MR

用于基于 PC 的自动化通讯板卡

NRPLFW-EIS

用于 NRP 52-RE 和 NRP 51-RE 的完整版,含 6 小时支持

NT 151-CCIES-RE/PNS

CC-Link IE Field与PROFINET之间的数据耦合

CIFX 90E-RE\NHS\F

用于基于 PC 的自动化通讯板卡

NXHX 90-MC

NFD-3090-PNS-IOLM\W

netFIELD IO-Link Wireless Master – 通过灵活连接实现简单解决方案

NT 50-RS-EN

经济的入门级网关,用于简单转换

CIFX 50E-RE

用于基于 PC 的自动化通讯板卡

NRPLFW-PNS

用于 NRP 52-RE 和 NRP 51-RE 的完整版,含 6 小时支持

COMX 100CN-RE

用于自动化的灵活通讯模块

EU5C-SWD-PROFINET

SmartWire-DT 连接到实时以太网 PROFINET 系统

NRPLFW-PNS-IOT

用于 NRP 51-RE 的完整版,含 6 小时支持

COMXEB

适用于所有 comX 类型的开发平台

NHST-T100-EN/PNM

用于 DIN 导轨的 LAN 控制 PROFINET IO 控制器

NT 50-CC-EN

经济的入门级网关,用于简单转换

NJ 100EN-RE

可随时安装在输送链中

NXHX 50-ETM

NL 51N-DPL

升级 PROFIBUS 从站到 PROFINET

NHST-T100-EN/ECM

用于 DIN 导轨的 LAN 控制 EtherCAT 主站

CIFX 90-RE\F

用于基于 PC 的自动化通讯板卡

NHST-T100-EN

用于DIN导轨的局域网控制实时以太网主站

NJ 51D-RE/PNS

可随时安装在输送链中

NS 90-RE-SPE

单对以太网转换为工业以太网

CIFX M224290BM-RE\F

用于基于 PC 的自动化通讯板卡

NFA-PND-OTP

通过智能 IO 设备使 PROFINET 系统支持工业物联网

NXEB 90-SPE

NANL-B500G-RE BUNDLE

用于以太网分析的完整软件包

NSHIELD 90-RE

PROFINET IO-Device RT pre-certification CC-B

Exclusively for netX-based developments

PROFINET IO-Device RT & IRT pre-certification CC-C

Exclusively for netX-based developments

EtherNet/IP Adapter pre-certification

Exclusively for netX-based developments

EtherCAT Slave pre-certification

Exclusively for netX-based developments

COMX 90CA-RE

Flexible communication module for automation

CIFX PCIE90-RE

CRA-compliant communication for PC-based automation

CIFX LPCIE90-RE

CRA-compliant communication for PC-based automation

NRP H90IC\F8D8

netX 90 chip carrier

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