Features and Benefits 

  • 4 Gigabit plus 24 Fast Ethernet ports for copper and fiber
  • Turbo Ring and Turbo Chain (recovery time < 20 ms @ 250 switches), RSTP/STP, and MSTP for network redundancy
  • TACACS+, SNMPv3, IEEE 802.1X, HTTPS, and SSH to enhance network security
  • Easy network management by web browser, CLI, Telnet/serial console, Windows utility, and ABC-01
  • Layer 3 routing interconnects multiple LAN segments
  • Supports MXstudio for easy, visualized industrial network management

Introduction

The EDS-828 modular Gigabit Ethernet switch features a versatile modular design that allows different combinations of fiber and copper modules, creating a wide array of connection options ideal for any automation network. The modular design lets you install up to 4 Gigabit ports and 24 Fast Ethernet ports. The EDS-828 is specially designed for redundant Gigabit network backbones and uses a modular configuration to provide a high degree of flexibility for network expansion. Top network performance, security, and reliability is assured through the EDS-828’s advanced management and ecurity features. The EDS-828 also features industrial-grade construction, a console port for automatic configuration backup, and an angled LED troubleshooting panel that can be conveniently viewed from both horizontal and vertical orientations. In addition to Layer 2 features, the EDS-828 is a high-performance Layer 3 Ethernet switch designed for network routing. The improved hardware technology built into the EDS-828 replaces the software logic used by traditional routers, offering better performance, and making the switch ideal for large-scale local area networks.

• Technology
StandardsIEEE 802.3 for 10BaseT
IEEE 802.3u for 100BaseT(X) and 100BaseFX
IEEE 802.3ab for 1000BaseT(X)
IEEE 802.3z for 1000BaseX
IEEE 802.3x for Flow Control
IEEE 802.1D-2004 for Spanning Tree Protocol
IEEE 802.1w for Rapid Spanning Tree Protocol
IEEE 802.1s for Multiple Spanning Tree Protocol
IEEE 802.1Q for VLAN Tagging
IEEE 802.1p for Class of Service
IEEE 802.1X for Authentication
IEEE 802.3ad for Port Trunk with LACP
• Software Features
ManagementIPv4, SNMP v1/v2c/v3, LLDP, Port Mirror, DDM, RMON, DHCP Server/Client, DHCP Option 66/67/82, BootP, TFTP, SMTP, RARP, Telnet, Syslog, SNMP Inform, Flow Control, Back Pressure Flow Control
Filter802.1Q VLAN, VLAN Unaware, Q-in-Q VLAN, GVRP, IGMP v1/v2, GMRP
Redundancy ProtocolsSTP, RSTP, MSTP, Turbo Ring v1/v2, Turbo Chain, Link Aggregation, VRRP
SecurityRADIUS, TACACS+, SSL, SSH, Broadcast Storm Protection, Port Lock, Access Control Lists
Multicast RoutingDVMRP, PIM-DM
Time ManagementSNTP, NTP Server/Client, IEEE 1588v2 PTP (software-based)
Industrial ProtocolsEtherNet/IP, Modbus/TCP
MIBMIB-II, Ethernet-like MIB, P-BRIDGE MIB, Q-BRIDGE MIB, Bridge MIB, RSTP MIB, RMON MIB Groups 1, 2, 3, 9
• Switch Properties
Priority Queues4
Max. Number of VLANs64
VLAN ID RangeVID 1 to 4094
IGMP Groups256
MAC Table Size16 K
Packet Buffer Size32 MB
• Interface
Fast Ethernet6 slots for any combination of 4-port interface modules, 10/100BaseT(X) or 100BaseFX
Gigabit Ethernet2 slots for any combination of 2-port interface modules, 10/100/1000BaseT(X) or 1000BaseSFP slot
Console PortRS-232 (RJ45 connector)
System LED IndicatorsSTAT, PWR1, PWR2, FAULT, MSTR/HEAD, CPLR/TAIL, T.RING
Mode LED IndicatorsLNK/ACT, FDX/HDX, RING PORT, COUPLER PORT, SPEED
Alarm Contact2 relay outputs with current carrying capacity of 1 A @ 24 VDC
Digital Inputs2 inputs with the same ground, but electrically isolated from the electronics.
• +13 to +30 V for state “1”
• -30 to +3 V for state “0”
• Max. input current: 8 mA
• Power Requirements
Input Voltage24 VDC, redundant dual inputs
Operating Voltage12 to 45 VDC
Input Current0.82 A @ 24 V
Overload Current ProtectionPresent
Connection2 removable 6-contact terminal blocks
Reverse Polarity ProtectionPresent
• Physical Characteristics
IP RatingIP30 protection
Dimensions362.4 x 142.5 x 128 mm (14.27 x 5.61 x 5.04 in)
Weight1950 g (4.30 lb)
InstallationDIN-rail mounting, wall mounting (with optional kit)
• Environmental Limits
Operating Temperature0 to 60°C (32 to 140°F)
Storage Temperature-40 to 85°C (-40 to 185°F)
Ambient Relative Humidity5 to 95% (non-condensing)
• Standards and Certifications
SafetyUL 508, UL 60950-1, CSA C22.2 No. 60950-1, EN 60950-1
EMCEN 55032/24
EMICISPR 32, FCC Part 15B Class A
EMSIEC 61000-4-2 ESD: Contact: 6 kV; Air: 8 kV
IEC 61000-4-3 RS: 80 MHz to 1 GHz: 10 V/m
IEC 61000-4-4 EFT: Power: 4 kV; Signal: 2 kV
IEC 61000-4-5 Surge: Power: 2 kV; Signal: 1 kV
IEC 61000-4-6 CS: 10 V
IEC 61000-4-8
MarineDNV, GL, LR, ABS, NK
ShockIEC 60068-2-27
FreefallIEC 60068-2-32
VibrationIEC 60068-2-6
• MTBF (mean time between failures)
Time191,203 hrs
StandardTelcordia (Bellcore), GB

Available Models

 Model No.Description
EDS-82810GLayer 3 modular managed Ethernet switch system with 6 slots for 4-port fast Ethernet interface modules and 2 slots for 2-port Gigabit interface modules, for a total of up to 24+4G ports, 0 to 60°C operating temperature

Compatible Modules

SFP-1G Series

 Model No.Description
SFP-1G10ALCWDM-type (BiDi) SFP module with 1 1000BaseSFP port with LC connector for 10 km transmission; TX 1310 nm, RX 1550 nm, 0 to 60°C operating temperature
SFP-1G10ALC-TWDM-type (BiDi) SFP module with 1 1000BaseSFP port with LC connector for 10 km transmission; TX 1310 nm, RX 1550 nm, -40 to 85°C operating temperature
SFP-1G10BLCWDM-type (BiDi) SFP module with 1 1000BaseSFP port with LC connector for 10 km transmission; TX 1550 nm, RX 1310 nm, 0 to 60°C operating temperature
SFP-1G10BLC-TWDM-type (BiDi) SFP module with 1 1000BaseSFP port with LC connector for 10 km transmission; TX 1550 nm, RX 1310 nm, -40 to 85°C operating temperature
SFP-1G20ALCWDM-type (BiDi) SFP module with 1 1000BaseSFP port with LC connector for 20 km transmission; TX 1310 nm, RX 1550 nm, 0 to 60°C operating temperature
SFP-1G20ALC-TWDM-type (BiDi) SFP module with 1 1000BaseSFP port with LC connector for 20 km transmission; TX 1310 nm, RX 1550 nm, -40 to 85°C operating temperature
SFP-1G20BLCWDM-type (BiDi) SFP module with 1 1000BaseSFP port with LC connector for 20 km transmission; TX 1550 nm, RX 1310 nm, 0 to 60°C operating temperature
SFP-1G20BLC-TWDM-type (BiDi) SFP module with 1 1000BaseSFP port with LC connector for 20 km transmission; TX 1550 nm, RX 1310 nm, -40 to 85°C operating temperature
SFP-1G40ALCWDM-type (BiDi) SFP module with 1 1000BaseSFP port with LC connector for 40 km transmission; TX 1310 nm, RX 1550 nm, 0 to 60°C operating temperature
SFP-1G40ALC-TWDM-type (BiDi) SFP module with 1 1000BaseSFP port with LC connector for 40 km transmission; TX 1310 nm, RX 1550 nm, -40 to 85°C operating temperature
SFP-1G40BLCWDM-type (BiDi) SFP module with 1 1000BaseSFP port with LC connector for 40 km transmission; TX 1550 nm, RX 1310 nm, 0 to 60°C operating temperature
SFP-1G40BLC-TWDM-type (BiDi) SFP module with 1 1000BaseSFP port with LC connector for 40 km transmission; TX 1550 nm, RX 1310 nm, -40 to 85°C operating temperature
SFP-1GEZXLCSFP module with 1 1000BaseEZX port with LC connector for 110 km transmission, 0 to 60°C operating temperature
SFP-1GLHLCSFP module with 1 1000BaseLH port with LC connector for 30 km transmission, 0 to 60°C operating temperature
SFP-1GLHLC-TSFP module with 1 1000BaseLH port with LC connector for 30 km transmission, -40 to 85°C operating temperature
SFP-1GLHXLCSFP module with 1 1000BaseLHX port with LC connector for 40 km transmission, 0 to 60°C operating temperature
SFP-1GLHXLC-TSFP module with 1 1000BaseLHX port with LC connector for 40 km transmission, -40 to 85°C operating temperature
SFP-1GLSXLCSFP module with 1 1000BaseLSX port with LC connector for 2 km transmission, 0 to 60°C operating temperature
SFP-1GLSXLC-TSFP module with 1 1000BaseLSX port with LC connector for 2 km transmission, -40 to 85°C operating temperature
SFP-1GLXLCSFP module with 1 1000BaseLX port with LC connector for 10 km transmission, 0 to 60°C operating temperature
SFP-1GLXLC-TSFP module with 1 1000BaseLX port with LC connector for 10 km transmission, -40 to 85°C operating temperature
SFP-1GSXLCSFP module with 1 1000BaseSX port with LC connector for 0.5 km transmission, 0 to 60°C operating temperature
SFP-1GSXLC-TSFP module with 1 1000BaseSX port with LC connector for 0.5 km transmission, -20 to 75°C operating temperature
SFP-1GZXLCSFP module with 1 1000BaseZX port with LC connector for 80 km transmission, 0 to 60°C operating temperature
SFP-1GZXLC-TSFP module with 1 1000BaseZX port with LC connector for 80 km transmission, -40 to 85°C operating temperature

IM Series

 Model No.Description
IM-2GSFPGigabit Ethernet interface module with 2 1000BaseSFP slots (see the SFP-1G series ordering information for available Gigabit Ethernet SFP modules), 0 to 60°C operating temperature
IM-4SSCFast Ethernet interface module with 4 100BaseFX single-mode ports (SC connectors), 0 to 60°C operating temperature
IM-2MST/2TXFast Ethernet interface module with 2 10/100BaseT(X) ports and 2 100BaseFX multi-mode ports (ST connectors), 0 to 60°C operating temperature
IM-1LSC/3TXFast Ethernet interfaceAC module with 3 10/100BaseT(X) ports and 1 100BaseFX single-mode port (SC connector for 80 km transmission), 0 to 60°C operating temperature
IM-4TXFast Ethernet interface module with 4 10/100BaseT(X) ports, 0 to 60°C operating temperature
IM-4MSTFast Ethernet interface module with 4 100BaseFX multi-mode ports (ST connectors), 0 to 60°C operating temperature
IM-4MSCFast Ethernet interface module with 4 100BaseFX multi-mode ports (SC connectors), 0 to 60°C operating temperature
IM-2SSC/2TXFast Ethernet interface module with 2 10/100BaseT(X) ports and 2 100BaseFX single-mode ports (SC connectors), 0 to 60°C operating temperature
IM-2MSC/2TXFast Ethernet interface module with 2 10/100BaseT(X) ports and 2 100BaseFX multi-mode ports (SC connectors), 0 to 60°C operating temperature
IM-2GTXGigabit Ethernet interface module with 2 10/100/1000BaseT(X) ports, 0 to 60°C operating temperature

Optional Accessories

Category

 Model No.Description
EDS-SNMP OPC Server ProOPC server for integrating SNMP devices into HMI/SCADA systems

DIN Rail Power Supplies

 Model No.Description
DR-452445W/2A DIN-rail 24 VDC power supply with universal 85 to 264 VAC or 120-370 VDC input, -10 to 50°C operating temperature
MDR-60-2460W/2.5A DIN-Rail 24 VDC power supply with universal 85 to 264 VAC or 120-370 VDC input, -20 to 70°C operating temperature
MDR-40-2440W/1.7A DIN-Rail 24 VDC power supply with universal 85 to 264 VAC or 120-370 VDC input , -20 to 70°C operating temperature
DR-75-2475W/3.2A DIN-rail 24 VDC power supply with universal 85 to 264 VAC or 120-370 VDC input, -10 to 60°C operating temperature
DR-120-24120W/5A DIN-rail 24 VDC power supply with universal 88 to 132 VAC or 176 to 264 VAC input by switch, or 248-370 VDC , -10 to 60°C operating temperature

Mounting Kits

 Model No.Description
WK-32Wall mount kit, 2 pcs of plate, 6 screws

Trial Software

 Model No.Description
MXviewIndustrial network management software designed for converged automation networks
MXconfigIndustrial network configuration tool

Brochure

Optimize Your Network Infrastructure for More Industrial IoT Opportunities

While the Industrial Internet of Things (IIoT) with its wave of innovation ushers in immense opportunities for businesses, it also opens the door to new threats. The underlying network infrastructure, therefore, must overcome this ever-growing number of challenges to sustain truly reliable connectivity. This brochure will introduce how Moxa helps its customers and partners optimize industrial network infrastructure to achieve operational efficiency, availability and reliability in various industrial environments

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White Paper

Five Future Challenges for Industrial Ethernet Switches

According to studies conducted by IMS Research, the global number of industrial Ethernet nodes at supervisory and control levels will continue to grow at an average rate of roughly 15% from 2010 to 2015. However, the number of field-level nodes for industrial Ethernet will grow at an average rate of approximately 36%. These projections confirm steady industry-wide acceptance of industrial Ethernet technology, but also pose hidden threats to industrial network availability resulting from inherent challenges found at field-level environments. This paper will discuss how future industrial Ethernet networks can introduce new challenges for industrial switch reliability, bandwidth availability, switch security, switch manageability and network redundancy.

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