GE Vernova’s Reason S20 series of managed Ethernet switches are designed to enable an IEC 61850 digital substation network, including IEEE 1588v2 (PTP), in harsh environments within power systems and industry applications. Using the Reason S20, packet switching between substation devices is flexible, reliable and robust, even in situations where routing is necessary.

A flexible, modular design allows the Reason S20 series to support a wide range of network architectures. The Reason S20 series includes the following models:

Reason S20

Managed Ethernet Switches

GE Vernova’s Reason S20 series of managed Ethernet switches are designed to enable an IEC 61850 digital substation network, including IEEE 1588v2 (PTP), in harsh environments within power systems and industry applications. Using the Reason S20, packet switching between substation devices is flexible, reliable and robust, even in situations where routing is necessary.

A flexible, modular design allows the Reason S20 series to support a wide range of network architectures. The Reason S20 series includes the following models:

S20 industrial Managed Ethernet Switch

The firmware 07A07 versions adds Digital Diagnostics Monitoring (DDM) functionality for optical SFP transceivers as well as new alarms using the dry-contact relay or SNMP traps were add based on DDM measurements. For the full list of enhancements, please refer to the firmware release notes.

S20 Hardware version C

GE Vernova’s Reason S20 design has been enhanced with hardware version C, delivering a brand-new High Voltage power supply and other updates, enabling:

  • Full compliance with environment and EMC requirements of IEC 61850-3 edition 2
  • Full compliance with environment and EMC requirements of IEEE 1613:2009 and its extension IEEE 1613.1:2013.
  • UL 60950-1 recognition
  • Real Time Clock (RTC) along with a supercapacitor activity for 2 days after S20 is powered-off.
Reason S20 integrates with MDS PulseNET (FW 07A03)

MDS PulseNET (v4.5.0) network management software has been modified to include configuration management and backups, syslog servers and numerous other features specific to GE Vernova Reason products. Switches can now be discovered and managed quickly and easily as part of the overall Industrial Communications eco-system.

Main NMS features:

  • System monitoring (alarms, ports, health status)
  • Centralized Configuration Management (including backup)
  • Automatic system discovery based on a range of IP addresses
Layer 3 functionalities (FW 07A)

S20 supports Layer 3 capabilities, featuring the following protocols:

  • Routing Information Protocol (RIP) version 1 and 2 - RFC 1058 and RFC 2453
  • Open Shortest Path First (OSPF) version 2 - RFC 2328
  • Virtual Router Redundancy Protocol (VRRP) - RFC 2338
  • Static Routing

Key Benefits

The flexible and robust Reason S20 Ethernet switches provide customers with a variety of benefits, including:

  • Network Management Software (NMS) integration with MDS PulseNET (v4.5.0)
  • Layer 2 and 3 Managed Ethernet Switch
  • Fully flexible Ethernet switch for industrial applications, including PRP redundant networks
  • Ready for IEC 61850 networks (tests performed by KEMA)
  • Store-and-forward packet switching
  • Media Access Control (MAC) bridges and Spanning Tree Protocol as standardized by the IEEE 802.1D
  • IP Routing functionalities: Static, Routing Information Protocol (RIP) and Open Shortest Path First (OSPF)
  • Virtual Router Redundancy Protocol (VRRP) to eliminate a single point of failure in static routed environments
  • UltraRSTP (Rapid Spanning Tree Protocol - IEEE 802.1W) with fault recovery time less than 5 ms per hop, meeting IEC 61850-90-4 specifications
  • Bridge Protocol Data Unit (BPDU) guard and filtering to prevent external interference in Spanning Tree networks
  • Cyber Security enhancements, been ready for NERC CIP requirements
  • Support for IPv4 and IPv6 protocols (Multicast, Unicast and Broadcast operation)
  • Internal clock synchronization using NTP protocol
  • Operation as NTP server using IEEE 1588v2 as source of time
  • Alarm contacts for detection of critical events
  • Standard USB 2.0 configuration port

Cybersecurity

The Reason S20 delivers advanced cyber security features The Reason S20 delivers advanced cyber security features

The Reason S20 delivers advanced cyber security features that help operators to comply with NERC CIP guidelines and regulations. These features are standard with firmware 06A02 and greater.

AAA Server Support (Radius/TACACS+)

Enables integration with centrally managed authentication and accounting of all user activities and uses modern industry best practices and standards that meet and exceed NERC CIP requirements for authentication and password management.

Role Based Access Control (RBAC)

Efficiently administrate users and their privileges within S20 devices. Multiple users account with independent passwords and privilege levels (roles) may be created, and with an advanced function leveling it is possible to define the access level required for each predefined function. Attempts to log-in (either successful or failed) are stored in a persistent flash memory syslog. After three failed log-in attempts, the user account gets locked out and must wait 1 minute to retry new three attempts.

Password Complexity, Encryption and Expiration

Factory default password is different for each manufactured device and after the first login, users must change the password with at least 8 characters including lower/uppercase alphabetic, numeric and special non alphabetic characters (e.g. #, $, @, &). Passwords are encrypted using SHA256 and by default, it may expire after 6 months (user-configurable).

Firmware digitally signed and secure communications

To perform a secure firmware update, S20 uses the checksum algorithm to check firmware integrity and a digital signature to ensure its authenticity. In addition, only the encrypted Secure File Transfer Protocol (SFTP) is enabled to transfer the firmware file. By default, only secure protocols such as SSH (CLI) and HTTPS (graphic web interface) are activated to establish remote access to S20, and if desired they may be deactivated as well as unused Ethernet ports, leaving only the local USB Serial communication through SSH available.

Design

The flexible design of Reason S20 allows the user to customize each group of 4 ports interfaces to either electrical (RJ45 fixed/SFP) or optical (SFP), Fast Ethernet or Gigabit. In addition, S20 may have a redundant power supply which does not need to be identical to the main one. The power supply options are the full range high voltage 125-250 VDC / 110-240 VAC (50/60 Hz) or the low voltage 24/48 VDC.

Field proven design backed by extensive type testing to ensure the robustness of the S20’s fanless design for harsh substation environments. The EMC and Environmental tests are in accordance with IEC 60255-26, IEC 61850-3 Ed. 2, IEEE 1613 and its extension IEEE 1613.1. Safety requirements are in accordance with IEC 60255-27 and UL 60950-1.

flexible design - front and rear photos

IEC 61850 Networks

The Reason S20 is compliant with IEC 61850 for applications in substations, proven by an extensive type testing to demonstrate the EMC and environment robustness and a functional and performance test report issued by KEMA. The test scope included . The test scope included VLAN function, QoS function for GOOSE messages, network recovery performance (RSTP) and booting time. The Reason S20 UltraRSTP achieves a fault recovery time of less than 5ms per hop, reducing packets loss while maintaining interoperability with others standard RSTP devices. For zero recovery time, S20 is ready for PRP networks schemes.

Reason S20 operates either as a transparent clock or boundary clock to ensure time accuracy for PTP-aware IEDs in the network Reason S20 operates either as a transparent clock or boundary clock to ensure time accuracy for PTP-aware IEDs in the network

IEEE 1588v2

Precision Time Protocol (PTP) is defined in the IEEE 1588 standard, which describes the precision clock synchronization protocol for networked measurement and control systems. Reason S20 complies with IEEE1588v2, and can operate either as transparent clock or boundary clock to ensure time accuracy for PTP-aware IEDs in the network. All S20 interface ports may operate as PTP-aware, achieving the nanosecond accuracy given the hardware based implementation.

S20 clock flow Reason S20 operates either as a transparent clock or boundary clock to ensure time accuracy for PTP-aware IEDs in the network

SFP Transceivers

If you have free SFP slots, or require replacing SFP transceivers, GE Vernova offers the following:

CodeDescription
SFP1GFO20KSFP Transceiver 1000Mbps LC single mode, 1310nm wavelength, 20km
SFP1GFO40KSFP Transceiver 1000Mbps LC single mode, 1310nm wavelength, 40km
SFP1GFO80KSFP Transceiver 1000Mbps LC single mode, 1550nm wavelength, 80km
SFP1GFO05KSFP Transceiver 1000Mbps LC multi mode, 850nm wavelength, 500m
SFP01GFO2KSFP Transceiver 100Mbps LC multi mode, 1310nm wavelength, 2km
SFP1GCU02KSFP Transceiver 10/100/1000Mbps, RJ45 connector
The following models have been discontinued as of November 2023. View last-time buy announcements.
SFP1GFO120KSFP Transceiver 1000Mbps LC single mode, 1550nm wavelength, 120km 
SFP01GFO20KSFP Transceiver 100 Mbps LC single mode, 1310 nm wavelength, 20 km
Multiplexing Solutions for Critical Communications

The Lentronics™ E1MXe Multiplexer is a powerful, flexible and reliable solution for converged service networks. The E1MXe extends critical channel access into harsh utility environments over microwave radio, leased line and dedicated fiber optic or copper cable networks.

Lentronics E1MXe

Multiplexer
Multiplexing Solutions for Critical Communications

The Lentronics™ E1MXe Multiplexer is a powerful, flexible and reliable solution for converged service networks. The E1MXe extends critical channel access into harsh utility environments over microwave radio, leased line and dedicated fiber optic or copper cable networks.

Protecting your critical assets after a fault is crucial to maintaining power system stability and safety. Existing technologies are becoming harder to implement with telephone companies suspending their connection leases.

What’s need is a standards-based communications solution that is simple to implement, provides fault protection in harsh operating conditions and provides the reliability needed to address teleprotection, including Direct Transfer Trip, Permissive Transfer Trip, blocking and unblocking applications.

TTMX Teleprotection Terminal

Fast and Secure Teleprotection for Transmission and Distribution Grids

Protecting your critical assets after a fault is crucial to maintaining power system stability and safety. Existing technologies are becoming harder to implement with telephone companies suspending their connection leases.

What’s need is a standards-based communications solution that is simple to implement, provides fault protection in harsh operating conditions and provides the reliability needed to address teleprotection, including Direct Transfer Trip, Permissive Transfer Trip, blocking and unblocking applications.

The TTMX platform offers 15 shelf slots with capability of adding optional expansion chassis. Compact digital access controllers offer four E1 interfaces to support fiber-optic or copper connections when connected to a higher-order transport system (microwave/SDH/MPLS).

TTMX offers a whole spectrum of modular options flexibly added to base platform. The solution is powered through 48/130 vDC station batteries with a bank of modular and hot-swappable interface units, available in the following options:

Base Teleprotection platform
  • Chassis
  • Power supply
  • CDAX
  • DTT-XMT/RCV
Channel Options
  • 2/4 Wire VF
  • FXO/FXS
  • RS 232
  • PTM Data
  • G.703 Data
  • NX64 Data (Optical & Electrical)
  • Contact I/O
  • Ethernet (64 – 768kb/s)
NMS & Security Options
  • NMX module
  • VistaNET element manager
  • Advanced NMS

Typical Configurations

P2P Configuration – Direct Fiber Interface

Simplest configuration—point-to-point over a dedicated fiber connection.

P2P Configuration – Established Link
P2P Configuration – Established Link

With a high capacity point-to-point established link, such as a Multiplexer or Microwave, you can connect the TTMX to standard interfaces.

P2P Configuration – Established Link
P2P Configuration – Transport Media Redundancy

With two transport media options available, the TTMX can provide a redundant solution.

P2P Configuration – Transport Media Redundancy
P2P Configuration – Multi-terminal

Add/Drop flexibility provides point-to-point connectivity between any two sites on the network.

P2P Configuration – Multi-terminal

What is the CDAX ?

CDAX is the E1 interface card on the Lentronics Teleprotection platform, operating as a Compact Digital Access X-connect (CDAX)

Supports configurable drop-port modes
  • Channelized E1
  • Channel bus (CBUS)
Integrated 64 kbps level cross connect
  • Grooms and consolidate 64 kb/s to/from multiple E1s or CBUS ports
  • Hairpin 64 kb/s traffic between E1/64 kb/s signals
CDAX Diagram

Direct Transfer Trip (DTT) Unit B86441-42 DTT-Tx/Rx UNIT

Transmit Functions
  • 2 Transmit commands
  • End-to-End trip time <3ms
  • Dual keying loops for improved dependability
  • Continuous integrity monitoring
  • Spurious trip immunity (software)
  • Transmit Minimum Trip Time and Trip Extension Time (software adjustable)
  • “Active Tripping” contacts for local monitoring (SER)
  • BC-96 Code format for high dependability and security
  • Form C alarm relay
  • Keying loops operate 48, 130, 250 VDC station battery
  • Adjustable spurious trip immunity, 1ms increment to 20ms
  • Two firmware images, active and standby
Receive Functions
  • 2 Receive commands
  • Main trip output
    • Dual series drivers for trip output security
    • Continuous integrity monitoring
    • 1A, 150 VDC output relays (continuous)
  • Aux trip output @ same rating
  • Receive Minimum Trip Time and Trip Extension Time (software adjustable)
  • Immune to single component failures (no false trip)
  • Form-C alarm relay for unit and per loop Form-C relay for port monitoring
  • Dielectrically isolated outputs for SWC immunity
  • RFI immunity
DTT-TxRx

DTT signals connected to the relay can be tested by a dedicated test panel (B86429) which allows complete end-to-end testing without disconnecting the protection relays.

ttmx1
B86466 DATA-G703 Unit
  • Synchronous data transmission at 64 kb/s
  • G.703 Interface with codirectional timing
  • Visual indication of data port activity
  • Provides “Yellow” alarm to help troubleshooting
  • Circuit addressing
  • Supports local loopback, line loopback, local and line loopback
  • Built-in PRBS generator and analyzer
  • Form-C alarm relay
ttmx2
B86464 DATA-NX64F Unit
  • Provides an interface for interference-free intra-substation data link between TTMX node and Relay (high RFI immunity)
  • Complies to IEEE C37.94 Standard
  • Operates with up to 2 km long multimode duplex fiber (50µm or 62.5µm) using ST connector
  • Provides “Yellow” alarm to help troubleshooting
  • Alerts for loss of either fiber
  • Supports 64 kb/s, 128 kb/s,… 768 kb/s data transmission (software configurable)
  • Visual indication of data port activity
  • Circuit Addressing
  • Supports local, line and local+line loopbacks
  • Built-in PRBS generator and analyzer
  • End-to-End compatible with 86464-01 unit (V.35)

B86464 DATA - NX64 Unit

  • Synchronous data transmission at rates from 64 kb/s to 768 kb/s in increments of 64 kb/s
  • V.35 Interface or 10/100Mbps Ethernet
  • Visual indication of data port activity
  • Supports clock polarity inversion
  • Software configurable as DCE or DTE
  • Internal or External transmit clock timing
  • Circuit Addressing
  • Supports local loopback, line loopback, local+line loopback
  • Built-in PRBS generator and analyzer
  • IN and OUT control lines (all local)
ttmx3
86448 DATA-LS Unit
  • Supports point-to-point RS-232 asynchronous data circuits
  • Configured for one, two or four active data ports per card
    • Maximum baud rates of 38.4 kb/s, 19.2 kb/s or 9.6 kb/s
  • All data ports accept sub-multiple rates of the configured Maximum Baud Rate (MBR / 2n, n=0,1,2…)
  • Visual indication of data port activity
  • Supports local loopback, line loopback, local + line loopback
  • Four Control Lines accompany data ports
  • Built-in PRBS generator and analyzer for testing individual data circuits

B86445-32 2W VF FXS UNIT (2-Channel)
  • Software adjustable VF levels in 0.1 dB steps
    • -9.5 dBm to +5.0 dBm (Transmit)
    • -15.0 dBm to +5.0 dBm (Receive)
  • Supports Loop Start, Ground Start and PLAR signalling applications
  • Selectable Line Impedance and Network Build-Out Capacitance (software only)
  • Bantam jack allows access to VF signal
    • Programmable for “Splitting” or “Bridging”
  • Loopback commands for VF testing
  • On-board ringing generator & Talk Battery

B86445-42 2W VF FXO UNIT (4-Channel)

  • Software adjustable VF levels in 0.1 dB steps
    • -10.0 dBm to +3.0 dBm (Transmit)
    • -12.0 dBm to +2.0 dBm (Receive)
  • Supports Loop Start and Ground Start signaling
  • Selectable Line Impedance (software only)
  • Bantam jack allows bridging access to any of the four VF signals
    • NOTE: VF tests require presence of loop current
  • Loopback commands for VF testing

86445

ttmx
B86444 -08/-28 4W VF UNIT (1 or 4-Channel)
  • 4WVF circuits, with Type I-V E&M
  • Transmit and Receive levels software adjustable in 0.1 dB steps
    • -17.5 dBm to +6.5 dBm (Transmit)
    • -11.0 dBm to +10.0 dBm (Receive)
  • Custom signal pattern
  • Test features:
    • Local and Line Loopbacks
    • Synthesized 1 kHz tone can be sent to far or near end for test purposes
    • Forced off-hook state on E-lead at near or far end
  • Two firmware images, active and standby

VistaNET™ EMS for GE Vernova Multiplexers

  • A Windows PC/Server-based NMS that provides 24/7 monitoring, configuration and administration of your Teleprotection Terminal Multiplexers (TTMX)
  • Interfaces to GE Vernova’s advanced NMS solution via SNMPv1, 2c and 3 offering security and confidentiality
  • Connectivity to the TTMX network can be serial or Ethernet
NMX Unit

NMX units enables Ethernet-based connectivity for Network Management traffic between VistaNET and the TTMX hardware. The NMX unit can be optionally additionally secured through a TLS-based encryption module.

Ethernet connectivity for NMS
network management
Redundancy

Optional redundant NMX unit at an alternate location is possible. VistaNET monitors and controls the network through both the nodes and chooses primary / back-up dynamically.

Specifications

E1 Interfaces
Line Rate2.048 Mb/s ± 50 ppm
Line Code OptionsHDB3 and AMI
Framing FormatCRC multi-frame
 Signaling multi-frame (CAS)
 Per ITU-T G.704
PRBS Generator211-1, 215-1
Pulse ShapeITU-T G.703 compliant
Nominal Line Impedance120 Ω balanced ± 5% resistive
ConnectorsRJ-48C for electrical E1 (balanced)
 SFP cages for optical E1
 3-pin header for both major and minor shelf alarm contact outputs
 3-pin header for shelf power supply(s) alarm contact input
Teleprotection Interfaces
Transfer TripSeparate transmit and receive units
Nx64 kb/s Data OpticalN=1 to 12 64kb/s channels
 IEEE C.37.94 standard for fiber optical connection to protection relays
G.703 Data64 kb/s channel supporting co-directional timing and Form-C relay alarm output
Environmental
Operating Temperature-20°C to +60°C (-4°F to +140°F)
Storage Temperature-40°C to +70°C (-40°F to +158°F)
Humidity5-95% non-condensing
EarthquakeEarthquake Risk Zone-4 shock and vibration
Environmental – Electric Power Substation
EMI/RFIDesigned to meet ANSI/IEEE C37.90.2 RFI
SWC/ISOLATIONDesigned to meet ANSI/IEEE C37.90.1 SWC
Physical Data
Height133 mm (5.25 inches)
Width483 mm (19 inches)
Depth413 mm (16.25 inches)
WeightDependent upon configuration
Optional Interfaces
DATA INTERFACES
Low Speed DataRS232 interface
 Sub-rate multiplexing
 Point-to-point and multi-point
 Synchronous and asynchronous
High Speed Data64 (56) kb/s rates
 RS422, V.35, G.703 and OCUDP interfaces
Nx64 kb/s Data ElectricalN = 1 to 12 64 kb/s channels
TELEMETRY INTERFACES
Contact Input/OutputTransport of contact closure
VOICE INTERFACES
4W VFOptional E&M signaling
 Point-to-point and multi-point
2W VFOptional E&M signaling
2W Foreign ExchangeLoop, ground or PLAR signaling
System Alarms
MajorForm-C alarm relay (singular)
MinorForm-C alarm relay (singular)
Power
48 VDC or 130 VDC
Optional redundant power supply units
Certifications
IEC 60834-1 Teleprotection Performance
Network Management
VistaNET, operating on MS-Windows based PCs, allows network access via E1 or SDH Multiplexer nodes for system monitoring and diagnostics
Alarm logging and time stamping
Simple troubleshooting and network maintenance
RS-232 serial and IP LAN access, as well as SNMP software license choices

Multiplexing Solutions for Critical Communications

The Lentronics™ JungleMUX T1 Multiplexer (T1MX) is a powerful, flexible and reliable solution for converged service networks. The T1MX extends critical channel access into harsh utility environments over microwave radio, leased line and dedicated fiber optic or copper cable networks.

Lentronics T1 Multiplexer

Multiplexing Solutions for Critical Communications

The Lentronics™ JungleMUX T1 Multiplexer (T1MX) is a powerful, flexible and reliable solution for converged service networks. The T1MX extends critical channel access into harsh utility environments over microwave radio, leased line and dedicated fiber optic or copper cable networks.

Powerful and Flexible Multiplexing Solution

The Lentronics™ JungleMUX SONET Multiplexer delivers powerful optical networking solutions for critical communications applications. With a wide range of tributary interface units, the JungleMUX provides both transport and access capabilities for voice, data, IP/Ethernet WAN, video and utility teleprotection traffic in a single package. Harsh environment ready, the modular JungleMUX delivers flexible, secure and reliable communications.

Lentronics JungleMUX

SONET Multiplexer
Powerful and Flexible Multiplexing Solution

The Lentronics™ JungleMUX SONET Multiplexer delivers powerful optical networking solutions for critical communications applications. With a wide range of tributary interface units, the JungleMUX provides both transport and access capabilities for voice, data, IP/Ethernet WAN, video and utility teleprotection traffic in a single package. Harsh environment ready, the modular JungleMUX delivers flexible, secure and reliable communications.

MDS I/O Solutions

Expanding the Possibilities for Data Acquisition

Explore our latest MDS I/O Solutions

GE Vernova’s MDS I/O Solutions offers Push-In Technology to simplify field wiring of the I/O signals, including an RJ45 interface or an optional fiber interface for digital protocols. The portfolio includes ready to install, configurable options to meet different requirements.  Easily install the wall mountable solution into an existing rack or indoor location. In the case of hard to reach places, an enclosure mounted solution may be installed into an existing enclosure or into a new customized MDS-designed enclosure.

Configurable I/O
  • 16 DI/DO
  • 8 Analog In
  • 2 Analog Out
Configuration Simplicity
  • Web Interface for easy I/O configuration
  • Labeled with circuit diagram
  • Push-In Technology for quick assembly

MDS I/O Solutions Application Advantages

 

Water Tank/Well Sites and Wastewater
  • Suction/Discharge Pressure
  • Flow Rate
  • Alarms
  • Effluent Monitoring
  • Open Channel Flow
  • Collection System Monitoring
 
Tank Farm Monitoring
  • Product Inventory
  • Overspill Protection
  • Temperature Monitoring
 
  
Communications
  • Door Alarms
  • Temperature Monitoring
  • Generator/Fuel Level
 

I/O Mirroring

I/O Mirroring

The IOX-M Series platform is designed as both a point-to-point or point-to-multipoint solution for high I/O count systems. The device allows connections of all remote digital and analog input signals from the IOX-R product and converts those signals into output signals to send over a wireless or fiber IP network. The IOX-M series also can I/O mirror up to 26 I/O points from a single location connected to a local Host, PLC or DCS controller at the control center or head end of any system. To reduce field deployment time, the IOX-M series ships preconfigured in 3 different I/O options and ready for install with minimal setup.

For applications that require I/O signal mirroring or splitting from different locations, the IOX-M series can provide the point-to-multipoint I/O mirroring connectivity to collect I/O signals from remote locations and then aggregate them to a single location. The IOX-M series can be custom configured for any I/O combination from any number of remote sites.

IOX OfferingIOX-MQIOX-MHIOX-MF
 IOX-MQ modulesIOX-MH modulesIOX-MF modules
Total Modules468
Power Supply Module111
CPU Module111
Relay Module1 (8 Relays)2 (16 Relays)3 (24 Relays)
Analog Output Module1 (4 Analog Outputs)2 (8 Analog Outputs)3 (12 Analog Outputs)
MDS IOx Mirroring System Example

NETio Migration

NETio-migration

MDS I/O Solutions presents a clear migration for legacy MDS NETio installations. MDS I/O Solutions takes NETio Expansion Modules Types 1-7 and converges them into one solution. These signals can be sent over wireless or fiber communications to the IOX-N module at a local host, PLC or DCS controller. On the edge, the I/O module (IOX-R) offers Modbus TCP to be used for your digital and analog I/O connections.

Upgradeable Simplicity
  • Solutions created for 1:1 replacement of NETio products.
  • IOX Module programmed for needs
  • Web interface for easy I/O configuration
  • Push-In Technology for quick assembly
  • Force I/O for digital testing
  • Force analog inputs / outputs testing
  • Communication Status Screen
  • Point-to-point I/O Mirroring
Flexible Mounting
  • DIN rail
  • Rack mount
  • Enclosure mountable (sold separately)
    • Fiberglass Enclosure either 20x16 or 24x20
    • 12, 24, 48, 125 VDC and AC with and without battery backup available

Upgrade your aging NETio systems with MDS IOX Family of Products.

The GE Vernova’s MDS LaunchNET™ configuration and provisioning platform is an automated device provisioning solution that ensures quick and consistent initial device configuration to begin device’s life cycle. It helps minimize deployment errors with coding-free customizable device configuration templates. GE Vernova MDS LaunchNET is currently the ONLY automated software solution for all GE Vernova MDS Orbit devices. Designed for managing and deploying any number of devices with minimal effort in a fully automated and rapid way.

MDS LaunchNET™

Configuration and Provisioning platform

The GE Vernova’s MDS LaunchNET™ configuration and provisioning platform is an automated device provisioning solution that ensures quick and consistent initial device configuration to begin device’s life cycle. It helps minimize deployment errors with coding-free customizable device configuration templates. GE Vernova MDS LaunchNET is currently the ONLY automated software solution for all GE Vernova MDS Orbit devices. Designed for managing and deploying any number of devices with minimal effort in a fully automated and rapid way.

Ease of use and fast provisioning

Intuitive User Interface

An easy-to-use Graphical User Interface (GUI) that enables management of external interfaces for user authentication using LDAP/Radius and Microsoft PKI for X.509 device certificate enrollment, device inventory database, creation and staging of device configuration templates and viewing deployment reports.

Zero-touch

Zero-touch provisioning driven by device itself. The provisioning can be done in a secure staging environment over a local network and/or in the field over the field network.

One-touch (In-band or out-of-band)

LaunchNET client can either use the existing network infrastructure for accessing the server (out-of-band) or device’s cellular link for devices equipped with 4G/3G/2G modems. No knowledge is required by the field technician, who only has to enter his/her user authentication credentials in the client software on computer or tablet. The client provides electronic report with the results of the provisioning process.

 
launchnet config diagram

Lean and intuitive provisioning process

Advanced Network Management for Hardened Optical Multiplexers and PACKET solutions providing:

  • A real-time synchronized architecture to meet five 9s.
  • High performance engine supports hundreds of users, thousands of network elements, and numerous protocols, all concurrently!
 
Lean and intuitive provisioning process

The MDS Mercury Series is a highly secure, industrial-grade WiMAX communications platform for mission critical, industrial applications. The Mercury product line provides a global licensed and unlicensed solution designed to facilitate high throughput wireless networking requirements in the 3650MHz frequency band.

MDS Mercury 3650

High Throughput, Standards Based Networking

The MDS Mercury Series is a highly secure, industrial-grade WiMAX communications platform for mission critical, industrial applications. The Mercury product line provides a global licensed and unlicensed solution designed to facilitate high throughput wireless networking requirements in the 3650MHz frequency band.

The MDS Mercury Series has been specifically designed in three special packaging options for application flexibility and ease-of-use installation and have been designed and tested to meet stringent industrial specifications.

Application: Advanced Metering Infrastructure

Below is an example of a Smart Grid Advanced Metering Infrastructure (AMI) private wireless network utilizing MDS Mercury 3650s.

Application
Application: Oil & Gas Facilities

Below is an example of an oil well-head application utilizing Mercury Base Stations and indoor and outdoor Subscribers as a point-to-multipoint solution for SCADA and video traffic at well-head sites.

oil and gas Applications
Application Example: Mining

Mining operations involve multiple rail yard loading and unloading processes. High efficiency is critical and seamless communication hand-offs between the Base Stations and Subscribers is necessary. The Mercury Series handles mobility applications and provides the necessary bandwidth for video monitoring of unloading bin sites. The WiFi option provides local WiFi coverage for workforce automation and direct connection to the fiber ring can be achieved via GE Vernova's Lentronics fiber optic multiplexers.

mining applications
Application: Water & Wastewater Facilities

Below is an example of a wireless network utilizing MDS Mercury 3650s to monitor various assets and processes in a water and wastewater facility. MDS Mercury can be used to aggregate data from devices that monitor vital flow, pressure and temperature measurements, and video surveillance.

water & wastewater facilities applications

Key Features

Ease-of-Use Network
  • Out-of-the-box system installation
  • Web-enabled configuration services
  • Advanced network management capability
Designed for Industrial Applications
  • Sub-channelization for optimization
  • Quality of Service (QoS) profiles
  • Hybrid Automatic Repeat reQuest (Hybrid ARQ)
  • Time-Division Duplexing (TDD) synchronization
  • Subscriber RF robustness (23 or 30 dBm Tx, depending on model)
  • -40° C to +70° C operating range
  • IDU CSA Class 1 / Div 2 and IEEE 1613
    DU General Safety by CSA / UL 60950
  • ETSI/CE on specific frequencies
Advanced Security
  • AES 128-bit encryption
  • RADIUS and 802.1x EAP/TLS authentication
  • VLAN tagging
System Solution Flexibility
  • Multiple packaging options
  • Multiple-In, Multiple-Out (MIMO) technology
  • Ethernet, serial and WiFi options
  • Field-ready outdoor unit with Power over Ethernet (PoE)
  • Uplink biasing for AMI, SCADA, and substation or distribution automation

Cabinet Mount Base Station & Subscriber Unit - IDU

MDS Mercury Series has been specifically designed and tested to meet stringent industrial specifications and is offered in three packaging options for application flexibility and ease-of-use installation.

  • 2 x 30 dBm
  • 2 Ethernet ports, 1 serial port, USB, GPS
  • IEEE 1613 compliant
  • CSA Class 1 / Div 2 certification
  • MIMO matrix A/B
  • -40° C to +70° C
  • Optional built-in WiFi (Subscriber unit only)
Rear view

Cabinet Mount Subscriber Unit

Mounting

The MDS Mercury Series has been specifically designed in three special packaging options for application flexibility and ease-of-use installation and have been designed and tested to meet stringent industrial specifications.

  • 2 x 30 dBm
  • 2 Ethernet ports, 1 serial port, USB, GPS
  • Optional built-in WiFi (Subscriber unit only)
  • A/C input and 8-hour battery backup
  • Hardened NEMA 4X enclosure
  • Pole mount ready
  • MIMO matrix A/B
  • -40° C to +70° C
  • Physical tamper alarm
  • Flexible configuration

Outdoor Subscriber Unit - ODU

Subscriber unit

The MDS Mercury radios are equipped with an embedded spectrum analyzer to assist in deployment and troubleshooting.

  • 2 x 23 dBm
  • 1 Ethernet port, 1 serial port, 1 USB host
  • Optional built-in WiFi
  • Integrated antenna
  • Power over Ethernet (PoE)
  • 10-60 VDC option
  • MIMO matrix A/B
  • -40° C to +70° C
  • IEEE 1613 compliant
  • General Safety by CSA / UL 60950

Technical Specifications

Technical Specifications * Requires an external DC to DC converter having floating DC inputs (neither side grounded)

The MDS NETio is an integrated, scalable family of wireless solutions that provide long distance unlicensed communications, allowing users to interface both analog and digital I/O including sensors for pressure and flow as well as controls for pumps or alarms. NETio can wirelessly regenerate I/O signals or use standard IP/Ethernet and serial protocols to communicate with controllers such as PLCs, RTUs and SCADA systems.

MANUFACTURING FOR THIS PRODUCT HAS BEEN DISCONTINUED.

MDS NETio

Analog and digital I/O

The MDS NETio is an integrated, scalable family of wireless solutions that provide long distance unlicensed communications, allowing users to interface both analog and digital I/O including sensors for pressure and flow as well as controls for pumps or alarms. NETio can wirelessly regenerate I/O signals or use standard IP/Ethernet and serial protocols to communicate with controllers such as PLCs, RTUs and SCADA systems.

MANUFACTURING FOR THIS PRODUCT HAS BEEN DISCONTINUED.

NETio Application Advantages

NETio Diagram
Industrially Hardened
  • Operation in extreme temperatures from –40°C to 70°C
  • Class I, Div 2 hazardous location approval
  • Fully-isolated I/O
Application Flexibility
  • Handles diverse I/O configurations including analog 4-20 mA, 0-5 V or 0-10 V and digital 5-36 VDC
  • Long range wireless communication up to 30 miles (900 MHz) and 15 miles (2.4 GHz)
  • Wirelessly expand I/O coverage 3,000 feet using the 802.15.4 wireless option
  • IP/Ethernet, serial and I/O functions simultaneously on the same network
  • Backwards compatible with entraNET and TransNET networks
Reliable Scalable
  • License-free spread spectrum technology in both 900 MHz and 2.4 GHz bands
  • Point-to-Multipoint, 2-way communication
  • High receive sensitivity for noisy environments and long distances
  • Handles multiple industry protocols including Modbus, Modbus-TCP, and DNP3
Secure
  • Authorized access point and remote lists prevent unauthorized access
  • Password protected access and lockdown
  • Built-in 128-bit encryption

MDS Protocol Addressability

MDS protocol

NETio interfaces I/O from sensors and devices using multiple industrial protocols including Modbus RTU, Modbus TCP and DNP3. This allows a SCADA system or host controller to communicate directly with NETio using IP/Ethernet or serial protocols when PLCs and RTUs are not necessary. NETio allows serial communication using DNP3 or Modbus RTU without the need for an access point for simple point-to-multipoint applications between remotes or over WeXP.

I/O Extension

MDS IO extension

Using I/O extension, NETio regenerates analog and digital signals between multiple field devices and controllers resulting in significant savings on wiring and termination costs. NETio supports cost-effective remote to remote communication for small point-to-point or point-to-multipoint requirements that do not require an access point.

Remote

MDS Remote

NETio is available in the 900 MHz or 2.4 GHz frequency bands for IP/Ethernet and serial communication. Each NETio has built-in connections for one analog input, one analog output, two digital inputs and two digital outputs. Each NETio can be configured for multiple operating modes including I/O extension for regenerating I/O signals between devices, protocol addressability for interfacing I/O using industry-standard protocols (e.g., Modbus-TCP), and SCADA communications to remote RTUs and PLCs using IP/Ethernet and a NETio Access Point.

Remote

MDS Remote

Expansion Modules expand the number of I/O points to meet your requirements. Expansion Modules can be connected directly to the NETio via a fully integrated power/communication backplane connector or they can be located up to 3,000 feet away and wirelessly connect to NETio over WeXP. Expansion Modules are available in 6 different configurations and deliver connectivity for up to 128 I/O signals at any one location.

The MDS entraNET™ is an ultra long range, industrial, wireless IP/Ethernet solution, with a high level of cyber-security. It allows the connection of Ethernet and/or serial devices to an IP network. This includes mission-critical, revenue-generating remote devices monitoring and controlling fixed assets such as oil and gas wells, compressor stations, pipelines, fluid storage tanks and utility meters. The entraNET has also been optimized for mobility allowing it to be used in vehicles when applications require mobile network access.

MDS entraNET

MDS entraNET Extended Range IP/Ethernet

The MDS entraNET™ is an ultra long range, industrial, wireless IP/Ethernet solution, with a high level of cyber-security. It allows the connection of Ethernet and/or serial devices to an IP network. This includes mission-critical, revenue-generating remote devices monitoring and controlling fixed assets such as oil and gas wells, compressor stations, pipelines, fluid storage tanks and utility meters. The entraNET has also been optimized for mobility allowing it to be used in vehicles when applications require mobile network access.