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Hitachi Energy 560PSU40 Current Isolated DIN Rail Power Supply

DIN rail mounted power supply module

– Input voltage: 85…. .264 V AC or 85… .375 V DC

– Output voltage: 24 V DC, max. 2.5 A, 60 W 2.5 A, 60 W

– Power supply for up to 8 interconnected modules

Modules 23BEx0 / 23BA40 / 560FSMxx / 560MPR01 / 560CVDxx / RTU540 / RTU520

Applications

The power supply unit 560PSU40 is a galvanically isolated DIN rail power supply.

It is designed to power DIN rail I/O modules, mounting boards and communication modules.

The 560PSU40 is designed to power DIN rail I/O modules, mounting boards and communication modules of the RTU500 series.

For increased availability, two power supplies can be run in parallel. No external diodes are required.

Features

– Ultra-compact plastic housing

– Reliable DIN rail snap-in mounting

– Universal input: 85 – 264 V AC, 50/60 Hz, or 85 – 375 V DC

– Adjustable output voltage

– Good power supply signal

– Low ripple and low noise

– Overload and short-circuit protection

– Worldwide safety approvals

– Parallel operation possible

Hitachi Energy 560PSU41 Power Module RTU500 Series

560PSU41 DIN rail power supply for 24…. .60 V DC

Power supply module for DIN rail mounting

Output voltage: 24 V DC, max. 2.5 A, 60 W

Suitable for up to 8 plug-in modules 23BEx0/23BA40/560FSMxx/560MPR01

Power supply module for DIN rail mounting

– Input voltage: 24…. .60 V DC

– Output voltage: 24 V DC, max. 2.5 A, 60 W 2.5 A, 60 W

– 24 V DC power supply for DIN rail mounting

APPLICATIONS

The power supply unit 560PSU41 is a galvanically isolated DIN rail power supply.

It is designed to power DIN rail I/O modules and communication modules of the RTU500 series.

Features

– Ultra-compact plastic housing

– Reliable DIN rail snap-in mounting

– Universal input 24 – 60 V DC

– Adjustable output voltage

Hitachi Energy 560CVD03 Multimeter

560CVD03 Multimeter, 1A/5A, 3U3I

CT/VT Interface with 3 Voltage and 3 Current Inputs for Direct Monitoring of 3-Wire 85…. .400 VAC

1/5 A input for AC transformer

RTU500 serial interface (RS-485)

APPLICATIONS

The multimeter 560CVD03 is used to monitor input signals from three independently phased 3-wire or 4-wire connections.

Voltage, current and power can be measured directly for each phase and a number of other parameters can be derived via software. The measurement results are transmitted to the RTU560.

Power measurement display

It automatically switches the screens of the measurement page and displays each screen for 6 seconds.

Six seconds.

If changed to key mode, each screen will automatically display 240 seconds. Scroll mode can be set with the RTUtil560.

Features

Multimeters are microprocessor-based Intelligent Electronic Devices (IEDs) used to measure current, voltage, power, and energy.

Derived parameters are calculated once in 500 milliseconds and then scaled according to user-programmed constants for current and voltage transformers.

The current and voltage inputs of the 560CVD03 are connected only through the appropriate transformers (see Figures 3 and 4).

The multimeter can be mounted on a 35 mm DIN rail.

Meter Operation

The following metering parameters are available

Instantaneous Meter Value

Measured by true RMS conversion and transmitted to the RTU560 with the following values

Hitachi Energy 560CID11 DIN Rail

New Product Launch for RTU540 Series

The new DIN rail RTU 560CID11 extends the RTU540 product line and is now available for sale and shipment.

This product complements the RTU540 product line with integrated input/output (I/O) modules as well as two Ethernet ports and four serial interfaces.

It is available in R0001 (24…. .60 V DC) and R0002 (110…125 VDC). . 125 VDC) for different process voltages.

The 560CID11 is a compact unit consisting of a communication unit (CMU), a multi-input/output module and a power supply (24 V DC).

It is mounted in a metal DIN rail housing. Various interfaces offer flexible and reliable communication possibilities.

Technical features

The main tasks of the 560CID11 are

– Acquisition of 8 analogue input signals (mA or V signals, 2 inputs for 100 ms fast scan)

– Acquisition of 16 digital input signals (1 input for a 16 kHz high-speed counter)

– Output 8 binary commands (via relays)

– Output 8 binary commands (via relay)

– Management and control of the I/O modules via 10-pole wired-OR-bus (WRB).

– Reads process events from the input board.

– Reads process events from the input board. Writes commands to the output board.

– Communication with the control system and the local HMI system via 4 integrated serial line interfaces and 2 Ethernet 10/100 BaseT LAN interfaces.

The 10/100 BaseT Ethernet LAN interface communicates with the control system and the local HMI system.

– Manages the time base of the RTU station and synchronises the I/O modules.

– Handles the dialogue between the RTU and the web browser via the Ethernet interface.

The main functions of the integrated I/O unit include

8 analogue inputs, 16 binary inputs and 8 binary outputs. Fault current detection is available as an option.

For more technical information, please refer to the 560CID11 datasheet.

Hitachi Energy 560CVD11 Multimeter

560CVD11 Multimeter with FCD, 4U/4I

Can be set to automatically change the screen of the measurement page every 6 seconds and to display each screen once.

CT/VT interface with 3 voltage and 3 current inputs for direct monitoring of 3-wire 85…. .400 VAC

1 A/5 A input for AC transformers

RTU500 serial interface (RS-485)

Display on the front

Applications

The multimeter 560CVD11 is used to measure analog AC input signals from three independent phases with additional inputs for neutral current and voltage.

The module measures the voltage and current per phase directly and generates a series of calculated values.

In addition, the module can detect fault currents and the direction of overcurrent. The modules support configurations with 3 or 4 voltage transformers.

Features

The multimeter is a microprocessor-based intelligent electronic device (IED) for measuring current, voltage, power and energy.

Fault current detection and overcurrent indication are also provided.

The current and voltage inputs are connected via transformers only (see Wiring). The modules support configurations with 3 or 4 voltage transformers and 3 or 4 current transformers.

The calculated values are scaled according to the constants programmed by the user for the current and voltage transformers. All values are updated after 200 ms.

Fault current can be measured up to 20 times the rated current.

The current input can withstand 50 times the rated current for 1 second.

The multimeter is equipped with two binary outputs, which are not supported in the RTU500 series configuration.

ABB Trip circuit supervision relay TCS

Continuous supervision of complete trip circuit independent of circuit breaker position

The supervision relay type TCS is intended for a continuous supervision of circuit breaker trip circuit and gives an alarm for loss of auxiliary supply, faults on the trip coil or its wires independent of the breaker position, faults on the breaker auxiliary contacts and faults in the supervision relay. The trip circuit supervision is a crucial requirements as its failure can cause disconnect of possible network fault and eventually have to be cleared by another upstream protection.

In normal condition, the indicator LE D glows green and output relays are in picked-up condition. In the event of a fault, the supervision relay operates (drops-off)after a delay of 0.6 sec and the indicator LED turns red.

TCS relay product range

• Rated voltage: 24V DC, 30V DC, 48V DC, 100-125V AC/DC, 220-250V AC/DC

• Contact configuration: 1NO+1NC+2C/O

Main benefits

• Highly reliable

• Personnel as well as power system safety

• Easy site installation

Main features

• Continuous supervision of trip circuit independent of the circuit breaker position

• Galvanic isolation between auxiliary supply and supervision circuit

• Delayed operation to avoid spurious signals during circuit breaker operation

• Enables use in sensitive or high resistance circuits

• Extremely low burden on auxiliary source

• Complete range of rated voltages either AC/DC

Features

• Continuous supervision of trip circuit independent of the circuit breaker position

• Extremely low burden on auxiliary source

•  Complete range of rated AC / DC voltage

•  Operation indication for trip circuit healthy and unhealthy

•  Low-level measuring current enables application of relay for high burden circuits

•  Delayed operation to avoid spurious signals during circuit breaker operation

•  Galvanic isolation between auxiliary supply and supervision circuit

Motorola MC-Edge Intelligent Gateway

Your gateway to mission-critical IoT

Now, more than ever, systems operating inmission-critical environments require a new level of connectivity and security. Whether it’s a natural disaster or a man-made emergency, IoTdevices are often on the first line of defense. 

MC-Edge® is an intelligent gateway designed for IoT applications.

MC-Edge’s extensive security, ultra-reliable communication capabilities and reliability of transport across two-way radio, LTE, and analog radio modes make it easy for you to implement, support and grow your IoT systems to fully support all your mission-critical operations. 

Built for versatility, MC-Edge has you covered today, and prepared for tomorrow.

MC-Edge works with ThingPark, Actility’s LoRaWAN Network and is fully configurable 

and manageable from the ThingPark Enterprise console. This addresses the need for the strictest requirements in security and operational continuity.

Expand reach with wireless built-in

Expand your operations that currently have no power or communication coverage with MC-Edge, wireless LoRaWAN gateways and servers. MC-Edge is used as a data aggregator for LoRaWAN IoT devices that can span wide areas with minimal power consumption. Utilize MC-Edge to backhaul LoRa data over two-way radio or wireless broadband to your IoT applications.

Motorola ACE3600 Remote Terminal Unit

 KEY BENEFITS:

 • High-performance, real-time processing for complex control and automation applications

 • Robust communication media and protocol support for greater interoperability

 • MDLC protocol support for more efficient data communication over narrowband or broadband

 • Enhanced security features internationally tested and certified

ACE3600 REMOTE TERMINAL UNIT

Supervisory control and data acquisition (SCADA) systems are continuously relied on to support the most demanding industrial applications and keep your operations running efficiently. Keep your assets connected to enhance productivity and safety across your operations with the ACE3600 Remote Terminal Unit (RTU). 

The ACE3600 aims to make automation and monitoring of your complex processes robust and cohesive by connecting across a variety of communication media and data processing protocols. Enhanced security features also ensure your operations aren’t compromised and productivity doesn’t cease. 

Modular design and abundant customization enables the ACE3600 to fit your specific SCADA needs. You can start small and grow, confident that the powerful processor can handle complex applications and keep your operations connected even as your needs or technologies evolve.

HIGH-PERFORMANCE, REAL-TIME PROCESSING POWER

 Whether caused by a storm, theft or just aging infrastructure, disruptions to performance and the inability to pinpoint abnormalities decreases your productivity and can put personnel in harm’s way. The ACE3600’s processing power provides accurate data analysis and communication for the most critical, and demanding SCADA applications to ensure optimal operation.

 A 32-bit processor, running at 200 MHz, delivers real-time processing with support for up to 110 I/O modules, while the substantial Flash and DRAM memory capacity provides plenty of storage for alarms, events, live data, historical reports and files. Both polling and event-based reporting are supported, peer-to-peer or RTU-to-host.

 The ACE3600 can also be redundantly configured with a simple Ethernet interconnection. This ensures continuous operation if one CPU or power supply were to fail.

Hitachi Energy 560FSM10 Modem Connectivity and Setup

RTU560

Remote Terminal Unit

Connectivity and Setup

Modem 560FSM10

Operation

The 560FSM10 modem is a CCITT V.23 modem with snap-in DIN rail mounting.

The V.23 uses the frequency shift keying (FSK) method. The modem operates in both 2-wire and 4-wire connections.

The operating mode is set by a 12-fold DIP switch. Figure 1 shows the front view of the modem with the components described in the next chapter from top to bottom.

The power connector X1 consists of three terminals for connection to the supply voltages shown in Table 1.

The PE pin must be connected to ground at the installation. The power indicator lights up when power is supplied.

The RJ45 connector X2 forms the RS232-D interface with the signals in Table 2. If the modem is connected to a communication device, the

If the modem is connected to a communication device, an adapter cable must be used to connect the pairs of lines in Table 2.

The RTS indicator lights up when the end device requests to send via the modem.

The DCD indicator lights when the 560FSM10 detects a carrier signal on the line interface. The CTS indicator lights when a carrier is being established.

CTS will be set at the same time. The 20-30ms transmit delay time must be adjusted in the CMU settings.

DIP switch S1 determines the operating mode of the modem. Switch C-1 is reserved for future use.

C-2 establishes a permanent carrier on the line, which is useful in a four-wire full-duplex connection. Table 3 summarises the above carrier modes.

ABB Ethernet Communications offers managed and unmanaged switches for Ethernet communications

Ethernet Communications

Innovative Products for Ethernet Data Transfer in SCADA Applications

Innovative products for Ethernet data transmission in applications

Ethernet communication Managed and unmanaged switches for Ethernet communication are available. the DSL technology and the tunnelling capability of the serial protocols make it possible to switch directly from conventional serial Voice Frequency Telegram (VFT) transmission to Ethernet communication while retaining the existing copper wires without having to adapt the serial terminals, e.g. for remote control technology.

Features such as Rapid Spanning Tree Protocol (RSTP), bypass circuits such as those found in UMTS or Tetra modems, and the use of optical communication lines are also available for increased usability.

Managed Ethernet Switches

Highlights

– Connects over copper wires:

– DSL coverage of up to 20 km based on (S(H)DSL)

– DSL connection via 2-wire at speeds from 192 to 11400 kbps

– Automatic speed adjustment according to line quality

– Compatible with other S(H)DSL modems via IEEE EFM (IEEE 802.3)

– DSL transmission quality (signal vs. noise level) monitoring/messaging

– 560NMS24 can automatically connect lines in case of power failure

– Optical connection:

– SFF slot for insertion of SFP modules

– Supports SFP modules for multimode and singlemode fibre cables

– Transmission speed of 100 Mbps

– Coverage of up to 40 km, depending on the SFP module

– Transmission of serial protocols on up to two serial interfaces

– Point-to-point, split-wire and signal sampling

– Each interface can have a different data rate

– 4-port 10/100 BaseT switch for connecting devices (VLAN assignable)

– Network topologies supported: point-to-point, point-to-multipoint and ring

– Redundant transport routing over copper, optical fibre and bypass circuits to external TCP/IP modems (e.g. UMTS or Tetra)

– Fast Spanning Tree Protocol, link aggregation, VLANs, QoS, port mirroring, static and dynamic routing (RIP)

– Repeater functionality

– Transmission of system events from the switch via IEC 60870-5-101/104

– Configurable alarm relays

– 2 binary inputs/outputs per serial interface (requires external circuitry)

– Configuration via RS232. Simple Network Management Protocol (SNMP), Telnet, Secure Shell (SSH), Web interface, optional login via Radius server

– Easy device replacement via configuration flash drive

– Suitable for harsh environmental conditions:

– High Electromagnetic Compatibility (EMC) safety.

– High electromagnetic compatibility (EMC) safety -25… + 70 °C

– Integrated overvoltage protection

– No fans or moving parts

– Supply voltage: 24…. . 60 VDC

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