Welcome to the official website of CNIACS Automation Technology Co., Ltd!

Hitachi 560FSM11 Wideband Range VFT Modem

Serial Communications

Reliable products for analogue data transfer in SCADA applications

Reliable products for analogue data transmission in applications

560FSM11 – VFT Modem with Wide Bandwidth Range

(300-22000 Hz)

Applications

The DIN rail device 560FSM11 is a serial telegram modem that transmits data using the binary frequency keying (FSK) principle at a baud rate of 9600.

The 560FSM11 is functionally compatible with the 23WT24 modem (Rack Plug-In Module) and can be operated as a compatible counterpart.

The module’s Voice Frequency (VF) output can be switched to high impedance, so that up to 10 remote stations can be arranged on multiple plug-in lines.

Description

– VFT modem with wide bandwidth (300-22000 Hz)

– Point-to-point coverage up to 20 km and multipoint lines up to 10 km with 0.8 mm cable diameter

– Duplex operation via 4-wire connection, half-duplex operation via 2/4-wire connection

– Point-to-point, point-to-multipoint and multipoint topologies for up to 10 remote stations

– Baud rate of 9600 baud

– Configurable via DIP switches on the front of the unit

– Serial data signalling is completely transparent and requires no parameterisation

– Simple, space-saving DIN rail mounting

– Supply voltage: 24…. . 60 V DC ±20

– Functionally compatible with 23WT24 plug-in modules

Ethernet communication

Application example – mesh copper/optical fibre ring

Multiline™ 345 3 Series Protective Relays

Intuitive transformer protection

The Multiline™ 345 is a member of the Multilin 3 series of protective relay platforms designed for the protection, control and management of power transformers as primary or standby protection.

The Multiline™ 345 provides advanced transformer protection, control and monitoring in an economical withdrawable or non-withdrawable design.

The 345 contains a full range of independent protection and control elements as well as advanced communications, metering, monitoring and diagnostics.

Key Benefits

-Safe, high-speed protection with improved energisation suppression

-Field-proven algorithms and reliable protection against unintentional tripping or inadequate protection

-Integrated transformer thermal monitoring for asset management maintenance optimisation

-Earth current monitoring sensitive earth fault protection for detecting 5% of earth fault windings

-Temperature monitoring via remote RTDs using RMIO modules supporting up to 12 RTDs

Easy to use and flexible with one-step setup, universal CT inputs and assignable CT inputs

-Flexible communications with multiple ports and protocols for seamless integration

-Strong security and hierarchical password control for centralised management

Pull-out design simplifies testing, commissioning and maintenance for increased process uptime

-Application flexibility with programmable logic elements

-Switchgear diagnostics and simple troubleshooting output test modes via trip/close circuit monitoring and LEDs and digits

-Environmental monitoring system for monitoring operating conditions and planning preventive maintenance

-Rugged design that exceeds industry standards with automotive-grade components and advanced test procedures such as accelerated life cycle testing

-Available in pull-out or non-withdraw-out options

-Simplifies migration of legacy MII Series relays to Series 3 platforms

-Intuitive configuration software and user-friendly logic configuration tools

Multiline™ 469 Motor Management Relay

This digital relay shall be capable of providing motor protection and management functions.

Its main protection function shall be thermal modelling, which consists of the following 4 main components:

– Overload curve

– Negative sequence unbalance/single phase offset

– RTD offset (hot/cold motor compensation)

– Motor cooling time constant

Special attention should be paid to the protection of the rotor during stall and acceleration. If the rotor is to be protected during stall and acceleration, the

The stall/acceleration curve must be voltage compensated and must be equipped with a speed switch input.

The stator protection thermal model should combine positive and negative sequence currents and RTD winding feedback inputs.

This allows the model to be dynamic at all times, thus allowing the motor load and temperature to be tracked.

The protection functions should include:

– Stall

– Mechanical blocking

– 12 RTD inputs

– Ground overcurrent

– Short circuit

– Differential protection (using CT inputs from both ends of the motor winding (6))

– Voltage transformer input (to provide over-voltage, under-voltage, reverse-phase, over-frequency and under-frequency functions)

The motor management relay shall be fully equipped for power measurement. The event log shall be capable of storing the last 40 events.

It shall be capable of storing 16 cycles of waveform data for each trip occurrence. The relay shall be equipped with an analogue function which is used to test the relay.

The user interface includes:

– A 40 byte vacuum phosphor screen and keypad for access to actual and set values.

– An RS232 port on the front panel for programming the set values.

– an RS485 port using open protocol (selectable baud rate up to 19.200 bps)

– A separate auxiliary RS485 port for increased security or for the exclusive use of maintenance personnel.

– The interface software should be in Windows® format

The relays are of extractable construction for easy testing, maintenance and replacement of parts.

Multilin 745 Transformer Management Relay

These instructions are not intended to cover all details or variations in the equipment, nor do they provide whether installation, operation or maintenance requires further information or presents special problems

For the buyer, those not adequately covered shall refer to General Electric Company.

To the extent required, the products described herein comply with applicable ANSI, IEEE, and NEMA standards; however, with respect to local codes and ordinances, as they vary widely.

The 745 Transformer Protection System™ is a high-speed, multiprocessor-based three-phase, two-winding or three-winding transformer management relay.

for the protection and management of primary small, medium and large power transformers.

The 745 combines percentage differential, overcurrent, frequency and overexcitation protection elements as well as individual harmonic and total harmonic distortion (THD) monitoring in one economical package.

The relay offers a variety of adaptive relaying functions:

-Adaptive harmonic suppression, which resolves in inflow

-Adaptive time overcurrent element, which can be based on the harmonic content of the transformer capacity calculated when supplying high load currents

-Multiple set point groups that allow the user to enter and dynamically select from up to four relay settings to address different protection requirements for power system configurations

Dynamic CT ratio mismatch correction for monitoring on-load tap positions and automatically correcting CT ratio mismatches.

FlexLogic™ which allows PLC-style equations based on logic inputs and protections to be assigned to any of the 745’s output elements.

The 745 also includes powerful test and simulation capabilities.

This allows protection designs to be based on captured or computer-generated relay operation test capability waveform data, which can be converted to a digital format and downloaded to the 745.

The 745’s analogue buffer can be used for “playback”. The recorded waveform capture feature also provides waveform data for fault, surge or alarm conditions.

The auto-configuration feature eliminates the need for any special CT connections by eliminating the need for all CTs with Y-connections.

Omron SRM1 Distributed I/O Controller Master and Remote Terminals

Omron’s unique SRM1 Distributed I/O Controller breaks away from traditional PLC control with a completely revolutionary design.

The SRM1 Distributed I/O Controller puts all the processing power and control in a master unit and allows the designer to distribute up to 256 I/O points over a twisted pair network.

Designers can create a remote I/O network with up to 32 nodes at distances up to 500 metres away.

This reduces wiring costs, increases flexibility, lowers system costs and achieves optimum efficiency when I/O must be located away from the CPU.

-Distributed I/O system supports up to 256 I/O points

-The SRM1 host will communicate with 32 nodes up to 500 metres away.

-Twisted pair network allows easy addition of devices and reduces cabling costs

-High speed communication up to 750Kbps

-Multiple remote I/O options, including discrete and analogue I/O devices

-4K programme memory

-2K word data memory

-Utilises CX programmer

-UL/CSA/CE

The CompoBus/S network allows users to remotely centralise CPUs and distribute I/O over high-speed communication networks.

This provides the best solution for applications where I/O must be distributed over long distances and offers incredible flexibility and efficiency.

Many types of remote devices can be added to the CompoBus/S network, including Discreet or analogue I/O, sensor terminals, sensor amplifiers.

even Omron micro PLCs, creating wide-area control systems not possible with standard PLCs.

A-B 1757-FFLDC4 Fieldbus Link Device

The Allen-Bradley 1757-FFLDC4 is a ControlNet Foundation fieldbus link device.

The module has four (4) Foundation Fieldbus interfaces and one (1) redundant ControlNet interface.

It supports connection to four (4) H1 Foundation Fieldbus networks, each supporting up to sixteen (16) devices.

This link device supports up to 64 fieldbus devices per link device.

The Allen-Bradley 1757-FFLDC4 device is a ControlNet Foundation fieldbus link device.

has four (4) Foundation fieldbus H1 network connections, allowing up to 64 different fieldbus devices to interact in the Foundation network.

It has an additional ControlNet interface for integrating the device into a ControlNet network for monitoring and control purposes.

The ControlNet address of the device should be manually configured using the two rotary switches located on the front left side of the linked device.

The Allen-Bradley 1757-FFLDC4 ControlNet Foundation fieldbus-connected device requires connection to a rated voltage of 24 volts DC (/-10%)

An external power supply rated at 450 mA. It has an inrush current rating of 1.5 amps and a power consumption of 9.6 watts.

A forced ventilation system or climate control system may be required depending on the total heat emitted by all components mounted within the same panel.

Maximum operating temperature should be kept below 60 degrees Celsius (140 degrees Fahrenheit).

The Allen-Bradley 1757-FFLDC4 ControlNet Foundation Fieldbus Connection Device is sized for easy installation on a DIN rail or in any conventional NEMA 4/12 type enclosure.

The most common DIN rails used to mount this connection device are 35 x 7.5 or 35 x 15 DIN rails.

The 1757-FFLDC4 is a panel mount device and is mounted using M4 or #8 screws.

The unit specifically features four (4) Foundation Fieldbus interfaces and one (1) redundant ControlNet interface.

Up to four (4) H1 Foundation Fieldbus networks can be bridged via ControlNet media, each supporting up to sixteen (16) devices.

In total, one (1) 1757-FFLDC4 is capable of connecting up to sixty-four (64) fieldbus devices.

A-B 2711-K10G9L1 Standard Operator Terminal

Description

Allen-Bradley PLC 5 high resolution TC/millivolt inputs, natural binary data format, 750 mA backplane current, no external power supply required.

The Allen-Bradley 1771-IXHR is a PLC 5 analogue input module. It is a high-resolution thermocouple/millivolt input module that

used to transfer input data words from its memory to the PLC processor’s data table and to transfer configuration words using block transfer programming.

The 1771-IXHR requires a slot in the 1771 I/O chassis and does not require an external power supply.

The 1771-IXHR module has eight floating differential inputs for thermocouple or millivolt input ranges.

Includes thermocouple types B, E, J, K, T, R, and S and ±100 millivolts. Allows 8 inputs of the same type or allows 4 inputs of different types.

The 1771-IXHR includes cold-end compensation with an accuracy range of 0-60°C and ±0.5°C. It has selectable temperature scales of °C or °F with a temperature resolution of 0.1°C or 0.1°F and a millivolt resolution of 1µV.

It requires a backplane current load of 750mA at 5V and has a channel update time of 25ms per 8 channels.

Its wiring is connected to the 1771-WI field wiring arm, eliminating the need to disconnect the wiring when replacing the module.

The 1771-IXHR has a maximum power consumption of 4.255W and a maximum heat dissipation of 14.5 BTU/hour.

The keying strap must be placed between pins 20-22 and pins 24-26 to accept only this module.

The 1771-IXHR module has user-selectable high and low temperature alarms.

It contains a green RUN indicator and a red FLT indicator on the front panel to indicate power and fault status.

When powered on, it performs self-diagnostics and reports status.1771-IXHR provides open-circuit detection in the event of a thermocouple failure.

It automatically calibrates the offset and gain of each channel without potentiometers.

A-B 2711-K10G9L1 Standard Operator Terminal

Description

The Allen-Bradley 2711-K10G9L1 terminal is a standard operator terminal produced as part of the Allen-Bradley/Rockwell Automation Panelview 1000 series.

The 2711-K10G9L1 terminal is a standard operator terminal manufactured as part of the Allen-Bradley/Rockwell Automation Panelview 1000 series. It is a DC-powered operator terminal that supports greyscale graphics only.

The 2711-K10G9L1 operator terminal has a 10-inch wide screen. This terminal is a keypad type terminal.

The 2711-K10G9L1 operator terminal’s keypad includes several different keys such as navigation keys, numeric keys, and function keys.

The Allen-Bradley 2711-K10G9L1 terminal is a keypad/touch operator interface terminal that is part of the PanelView family of standard terminals.

Specifically, the 1000 terminal sub-series is dcs-sis.com used to control and supervise any industrial application activity.

The terminal provides supervisors with all the information they need to check the status of the different devices in the network, send and receive data, and make on-the-fly changes to processes.

The device was developed by Allen-Bradley. the key benefits of the 2711-K10G9L1 Interface Terminal are.

Operators can monitor different processes from a specific location, saving travel time and inventory costs.

It is important that its installation and programming process is carried out by a qualified expert to avoid problems during operation.

It is also important to follow all the steps mentioned in the installation manual.

The keypad of the Allen-Bradley 2711-K10G9L1 Keypad/Touch Operator Interface Terminal is made of stainless steel film.

It includes navigation and function keys, all of which have a press count of 1 million.

Notably, the keypad makes monitoring and inserting new variables and data very easy.

The communication option for the Allen-Bradley 2711-K10G9L1 Keypad/Touch Operator Interface Terminal is an RS-232 (DH-485) port with printer.

It has 310 kilobytes of RAM and 1008 kilobytes of nonvolatile memory.

A-B 5069-OB16 Compact 5000 Discrete Output Module

Description of the Allen-Bradley 5069-OB16 Discrete Output Module

The Allen-Bradley 5069-OB16 is a compact 5000 discrete output module.

The module has sixteen (16) single gang source output channels and operates over a 10-32VDC voltage range.

At 10…. .32V DC, each channel provides 0.5 A resistive output current; at 10…. .32V DC, each module can provide a maximum of 8 A resistive output current.

The module can be used as a local I/O or distributed I/O component. It uses the 5069-RTB18-SPRING RTB and 5069-RTB18-SCREW RTB.

The Allen-Bradley 5069-OB16 is a discrete output module that is part of the Compact 5000 I/O product family.

It has an output voltage range of 10-32VDC and a nominal output of 24VDC.

Output current is rated at 0.5 A resistor per channel (10…. .32V DC) per channel and 8 A resistive (10…32V DC) per module. .32V DC) per module.

Each channel can withstand a maximum inrush current of 1 A at 10 ms per point, repeated every 2 seconds.

Similar to other output modules, this module is primarily used to energise and drive electrical loads. However, the 5069-OB16 is compatible with devices operating at 12/24VDC.

The module has a minimum on-state voltage of 10VDC, a maximum of 32VDC, and a minimum on-state current of 1 mA per channel.

The output delay time for each channel is 100 µs, ±10 µs @ 25 °C (77 °F) @ 0.5 A for ‘on’ to ‘off’ and ‘off’ to ‘on’ transitions.

The minimum pulse width of the module output is 200 µs @ 0.5 A @ 25 °C (77 °F).

A-B 6180W-15BPXPH VersaView Industrial Workstation

Product Description

The Allen-Bradley 6180W-15BPXPH is a VersaView industrial workstation.

It is a high performance computer with touch and keyboard inputs, Intel Pentium 4 Celeron 2GHz processor,

512 MB of Random Access Memory (RAM), 15-inch screen, and 90½-264V AC auto or 19-32V DC external power supply.

The 6180W-15BPXPH is a VersaView industrial workstation manufactured by Allen-Bradley. The workstation is a complete system that can be used as an operator or engineering workstation.

The 6180W-15BPXPH is equipped with a 15-inch colour active matrix thin-film transistor (TFT) with a display area of 305 x 229 mm (12 x 9 inches).

It has dual input interfaces such as an analogue resistive touchscreen and 32 function, numeric and alphabetic keys.

It also has various interfaces such as printer port, audio output, Ethernet communication port, PS2 keyboard, mouse, USB and VGA port. It also has a 3.5-inch floppy drive and an optical drive.

It also has a hard disc drive (HDD) with 80 GB of storage capacity and 512 MB of random access memory (RAM) installed.

The industrial workstation requires an external power supply of 90-264VAC (with automatic switching) or a DC voltage source of 19-32VDC.

The industrial workstation has an operating dcs-sis.com temperature of 0-50 °C (32-122 °F) and an operating vibration of 0.006 inches p-p (10…57 Hz). .57 Hz).

.57 Hz); 1 g peak (57….500 Hz), and an operating vibration of 0.006 in. .500 Hz), with an operating shock of 15 g (1/2 sine wave, 11 ms).

The 6180W-15BPXPH touch screen supports calibration for more sensitive and accurate operation.

The 6180W-15BPXPH also has a Basic Input/Output System (BIOS) that can be updated, but make sure that the power supply is not interrupted while the BIOS update is being performed.

Search for products

Back to Top
Product has been added to your cart