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Emerson CSI A6120 Enclosure Seismic Vibration Monitor

CSI A6120 Enclosure Seismic Vibration Monitor for CSI 6500 Machinery Health Monitor

The Case Seismic Vibration Monitor for use with electromechanical seismic sensors is designed for high reliability on the plant’s most critical rotating machinery.

This 1-slot monitor is used in conjunction with other CSI 6500 monitors to form a complete API 670 machinery protection monitor.

Applications include steam, gas, compressors and hydraulic turbines. Casing measurements are common in nuclear power applications.

The primary function of the casing seismic vibration monitor is to accurately monitor casing seismic vibration, the

and to reliably protect machinery by comparing vibration parameters with alarm set points, actuated alarms and relays.

A case seismic vibration sensor, sometimes referred to as a case absolute vibration sensor (not to be confused with a shaft absolute vibration sensor), is an electrodynamic, internally spring-loaded, and magnetically actuated vibration sensor.

It is an electrodynamic, internal spring and magnet, velocity output type sensor.

A housing seismic vibration monitor monitors the overall vibration of a bearing housing at millimetres per second (inches per second).

Since the sensor is mounted on the bearing housing, vibration in the housing can be affected by many different sources.

These include rotor motion, foundation and bearing box stiffness, blade vibration, adjacent machinery, etc.

When replacing ffeld sensors, many are being updated to piezoelectric sensors, which provide internal integration from acceleration to velocity.

Piezoelectric sensors are a new type of electronic www.cniacs.com sensor rather than the older electromechanical type.

Case Seismic Vibration Monitors are backward compatible with electromechanical sensors installed in the ffeld.

The CSI 6500 Machinery Health Monitor is an integral part of PlantWeb® and the AMS Suite.

PlantWeb combines Ovation® and DeltaV™ process control systems to provide operators with an integrated view of machinery health.

The AMS Suite provides maintenance personnel with advanced predictive and performance diagnostic tools to accurately determine machine failures at an early stage.

Features:

Dual-channel, 3U-sized, 1-slot plug-in module that cuts cabinet space requirements in half compared to traditional four-channel 6U cards

API 670-compliant hot-swappable modules

Remotely selectable limit multiplication and trip bypass

Pre- and post-buffered and proportional outputs, 0/4-20 mA outputs, 0 – 10 V outputs

Use with electric (electromechanical) sensors 9266. 9267. or 9268

Emerson A6824 Rack Interface Module

The ModBus and Rack Interface Module is designed to provide high reliability for the plant’s most critical rotating machinery.

It reads parameters from all AMS 6500 modules and outputs them via ModBus TCP/IP and/or ModBus RTU (serial).

This 1-slot monitor can be used with www.cniacs.com other AMS 6500 monitors to form a complete API 670 machinery protection monitor.

Applications include steam, gas, compressor and hydraulic turbine machinery.

Operators have access to machinery health parameters in the control environment for seamless integration.

The module powers a local graphical display on the protection rack for reading machine and instrument information.

It can be configured with ModBus TCP/IP or ModBus RTU, or both with redundant paths.

The AMS 6500 is an integral part of PlantWeb® and AMS software.

PlantWeb combines the Ovation® and DeltaV™ process control systems to provide operators with an integrated view of machine health.

AMS software provides maintenance personnel with advanced predictive and performance diagnostic tools to accurately determine machine failures at an early stage.

3U-sized, 1-slot plug-in module reduces cabinet space requirements by half compared to traditional 6U cards

API 670-compliant hot-swappable modules

Password protected user configuration

Self-test features include monitoring of hardware, power inputs and hardware temperature

A6824 module can be used in multiple 19’ racks

A6824 is a 6TE wide module with no redundancy option for IMR6000 series 19’ racks

Kongsberg RDIOR420 Remote Digital Input/Output and Relay

The RDIOR420 is a combined I/O module with 16 solid-state DI/DO and 16 relay channels for KM automation systems.

The 32 I/O channels are connected to the host control computer (RCU) via a redundant I/O process bus.

Functions

– 16 individually configurable solid-state digital input or output channels

– 16 relay channels, NC/NO.

– Dual remote I/O process bus interfaces (RBUS A and RBUS B) for www.cniacs.com redundant communication with the host computer.

– Communication ports are insulated from other module circuits.

– Short-circuit protected I/O loops on solid-state output channels.

– Loop monitoring for 16 solid-state channels.

– Communication ports are isolated from other module circuits.

Advantages

– Overvoltage protection

– Extensive module diagnostics

– Input/output channels can be configured on-line

– Soft and hard fault protection

– Line fault detection (solid-state I/O only)

– Fail-safe activation of outputs in case of loss of communication with host computer

– Self-test function

– Easy to install and replace

– Simple and safe FW upgrade

– Status LEDs

Kongsberg RCU602 Remote Controller Unit

The RCU602 is a high performance general purpose real-time process control computer for a wide range of KM systems in onshore and offshore facilities.

The processor core is based on the embedded Power PCTM architecture. The unit is available in single, dual and triple redundant topologies.

Application Types

– Dynamic positioning systems

– Propulsion control/steering systems

– Navigation sensor integrators

– Integrated process control systems

– Alarm and monitoring systems

Advantages

– Extended built-in self-test (BIST)

– Ready for online remote diagnostics

– Easy firmware upgrades

– Bootable from file server or local flash memory

– Easy to install and replace

1. DIN rail mounting

2. All connections are pluggable

3. 3-position address switch

– Hot-swap, dual and triple HotStandby redundancy, www.cniacs.com 1oo2 redundancy for redundant applications

– Run/Error status LEDs

Function

– Dual Ethernet LAN processing network

– Dual redundant network interfaces for redundant RCUs

Configuration

– Dual field network interfaces for connecting third-party Ethernet field devices

Devices

– Dual Remote I/O Process Bus (RBUS)

– Four universal digital input channels

– Four general-purpose digital output channels

– One watchdog digital output channel

– 24 serial lines for third-party interfaces via RSER200

– Two PROFIBUS bus channels for third-party interfaces

– Two CANBUS bus channels for third-party interfaces

Kongsberg RL542A Radio Link

The RL542A provides up to 100 Mbit/s (aggregated 200 Mbit/s) in harsh Electronic Warfare (EW) environments for

full-duplex, reliable and secure point-to-point communications in harsh EW environments. IP and TDM interfaces are available.

Unique ECCM/EPM methodology ensures communication in harsh environments.

The RL542A can also operate in point-to-multipoint configurations.

ECM/EPM

– Frequency Hopping – Conventional and Adaptive. Frequency hopping speeds up to 1000 times/second.

– Automatic power control

– Automatic frequency avoidance

– Pulse Jammer Protection – Advanced jammer detection algorithms.

– FEC, channel coding and interleaving.

The RL542A mounts on top of the mast near the antenna and connects directly to the IP router.

No indoor or baseband unit is required.

The RL542A can be remotely located via a fibre optic interface.

The radio can be fully configured and remotely managed via the KONGSBERG Communication Management System (CMS).

The RL542A is a software-defined radio with additional analogue filtering to provide excellent tactical performance, ensuring long range and good positioning capability.

Communication Carrier

The RL542A is ideally suited as a communications carrier for tactical wide area networks connecting command posts to advanced weapon systems such as NASAMS air defence systems.

Fast link establishment combined with a robust www.cniacs.com waveform ensures a stable and reliable connection.

Features

– Point-to-Point

– Point-to-Multipoint

– Lightweight, compact and easy to operate

– Field-proven equipment with rugged design

– Frequency hopping

– Flexible data interface and SNMP-based management

– Spectrum-efficient modulation

– Communication carrier in IP-based tactical systems

– AES256 encryption (optional)

A-B 2094-BC07-M05 Integrated Axis Module Multi-axis Servo Drive Kinetix 6000

Description

The 2094-BC07-M05 is an n integrated axis module that is part of the Kinetix 6000 multi-axis drive.

The module is 400 V class with converter and inverter ratings of 45 kW and 49 a. The module has a power consumption of 71-226 watts. It does not have an integrated Safe Torque Off (STO) feature.

About 2094-BC07-M05

The 2094-BC07-M05 is a multi-axis servo www.cniacs.com drive that belongs to the Kinetix 6000 product category.

The drive has an input voltage range of 324-528 Vrms, 3-phase, a nominal power supply range of 360 VAC-480 VAC, and an input frequency of 47-63 Hz.

And the control power supply AC voltage is designed for 95-264 VACrms, 1 phase, with a nominal supply range of 110-240 VACrms.

It has a maximum input current of 71.0 (rms) amps and a maximum inrush current (0-pk) of 62.2 amps.

The module’s DC input voltage range (common bus follower) is 458-747 V DC, while the DC input current (common bus follower) is 67.7 A. The module has a maximum input current of 71.0 (rms) amps, while the maximum inrush current (0-pk) is 62.2 amps.

The servo drive has a continuous output power to the bus of 45 kW, while the a-series drives have a peak output power of 90 kW.

The B, S and D series drives have a maximum output power of 135 kW and an efficiency of 97 per cent.

Similarly, the drives have a continuous output current to the bus of 67.7 amps and a peak output current to the bus of 135 amps.

Series A drives are 4 amps and Series B, C and D drives are 203.2 amps.

The bus voltage rating for this driver is 825 VDC with a bus undervoltage of 275 VDC. the internal circuits have a continuous power rating of 200 W and a peak power rating of 22.5 kW.

The appropriate internal circuit resistor has a resistance value of 28.75 . It is symmetrical with a converter inductance of 75H, an inverter capacitance of 1410F and a short-circuit current rating of 200.000 A (rms).

A-B 1785-L80B Enhanced PLC-5 Series Programmable Logic Controller

Description.

The 1785-L80B is an Allen-Bradley Enhanced PLC5 programmable logic controller (PLC).

The controller has 100.000 words of embedded user memory and is equipped with several communication interfaces.

Examples include four (4) DH/Remote I/O (adapters or scanners), one (1) configurable RS-232. -423. and RS-422A compatible serial port, and two (2) programming terminals.

It can accommodate up to 3072 arbitrary www.cniacs.com mixes or 3072 inputs and 3072 outputs in free mode!

About the 1785-L80B

The Programmable Controller 1785-L80B is the core component of every control system based on the Allen-Bradley PLC-5 Series.

The 1785-L80B connects local, expansion, and remote I/O modules on a variety of communication interfaces into a single control system.

There are four built-in ports on the 1785-L80B controller. The ports are labelled Channel 1A, Channel 1B, Channel 2A and Channel 2B.

All ports can be configured as remote I/O scanners, remote I/O adapters, and DH communication interfaces.

DH communications can be used both for remote programming and monitoring of the 1785-L80B and for creating peer-to-peer communication networks between various PLC-5 controllers.

The Remote I/O connection is used for real-time data exchange between the controller and I/O, operator interface and other functions.

All four channels on the 1785-L80B can be used as either remote I/O scanners or remote I/O communications adapters.

A-B 1394-SJT22-A GMC Standard System Module

DESCRIPTION

The Allen-Bradley 1394-SJT22-A is a GMC standard system module with a /-10VDC input.

The module requires an input voltage of 380/460 volts AC, three phase, an input frequency of 50/60 Hz, and a current of 28.6 amps.

It has an electrical output voltage of 530/680 V DC and a continuous power output of 17/22 kW with a peak power of 136 kW.

The continuous current output is 33.8 A and the peak current is 200.0 amps.

About the 1394-SJT22-A

The 1394-SJT22-A is a 1394 GMC Turbo system module that is part of the Allen-Bradley 1394 multi-axis motion control system.

The system module is primarily used for analogue servo systems and provides digital servo drives with a /-10VDC interface.

The system module is mounted on the far left side of the 1394 assembly, which includes the axis modules, bus connectors, and termination resistors.

Each module is mounted via a slide-lock mechanism and fasteners that are precisely aligned with each other.

The system module uses RS232/422 communication and supports the DH485 communication protocol. It can optionally be fitted with Remote I/O communication (RIO) and AxisLink communication interfaces.

When installing this system module or any www.cniacs.com other product in a 1394 system, the ambient temperature of the mounting location must be no higher than 50.0 degrees Celsius and mounted on a flat, stable vertical surface.

The mounting panel must have minimal shock and vibration, and the environment must be free of moisture, oil, dust, and corrosive gases.

This system module is not equipped with an internal shunt resistor. An external shunt module must be installed.

Compatible shunt resistors include the 1394-SR9A, -SR9AF, -SR36A, or -SR36AF manufactured by Allen-Bradley.

The shunt module generates a significant amount of heat. Because hot air rises naturally, instruments or components that may be affected by hot air must not be mounted on top of the external shunt module.

The top clearance must be 254 mm (10.0 inches) and 155 mm (6.1 inches) on both sides, including the bottom area of the system module.

The 1394-SJT22-A module is an Allen-Bradley/Rockwell Automation GMC-Turbo system module.

Woodward 2301E Digital Load Sharing and Speed Controller

The 2301E provides load distribution and speed control for generators driven by diesel or gas engines.

Using the built-in flexible configuration software, application variants can now be selected using an external computer (PC).

Changing the application www.cniacs.com to suit the engine speed range, gear teeth and selecting forward or reverse action is just a software setup away.

The 2301E controller is backward compatible with the existing 2301D product as it has the same footprint and mounting configuration.

The new controller ensures the continued availability of a proven and versatile product with enhanced features:

-Separate RS-232 and RS-422 serial ports, both with 9-pin connectors

-Additional status LEDs for power and RS-422 communication

-Failure data logging feature that collects 16 seconds of data every 10 milliseconds during shutdown, peak speed, and load detection events

-Low current PWM output for driving Woodward L-Series, F-Series, P-Series and PISC actuators

-New terminal block accommodates additional I/O, with most terminals located in the same location as the 2301D model.

-Major compliance approvals

-Engine/generator or pump applications

-Multiple dynamics

-Manifold Air Pressure (MAP) limiter

-Torque limiter

-Low speed sensing capability

-Remote speed and load reference

-Soft load transfer

-Automatic idle to rated switching

-Load dump/load pulse option

-Idle down function

-Optional Modbus® serial communication

-Adaptive speed sensing algorithm

-Two serial ports

-Data logging function

-2301E ToolKit service tool or Control Assistant programmable

-Common or hazardous location chassis

Replacements:

8273-1012 is a direct replacement for 8273-139 and 8273-141

The Woodward 2301E microprocessor-based controller has the same functionality as the 2301A Load Sharing and Speed Controller and the 2301D Load Sharing and Speed Controller.

The control unit is housed in a sheet metal enclosure for general and hazardous locations and consists of a single printed circuit board.

The 2301E is configured using a computer equipped with Control Assistant software or the Woodward ToolKit service tool.

The computer is connected to the 2301E via a 9-pin connector (RS-232 port). Modbus control is available through a second serial port (RS-422).

The controller is powered by a 24 Vdc power supply.

The 2301E includes

 1 load cell circuit

 1 actuator driver, 4-20 mA, 0-20 mA, 0-200 mA or PWM

 1 MPU speed sensor

 1 configurable analogue output

 2 configurable analogue inputs

 8 discrete (switching) inputs

 4 discrete (relay driver) outputs

The 2301E has an operating temperature range of -40 to +70 °C (-40 to +158 °F).

ABB AC 800PEC High Performance Control System

High-performance applications with extremely fast control algorithms

– Cycle times ranging from 100 μs (microseconds) for fast control loops to several seconds for long-term transient operation require specialised control equipment.

Dual-core processor units combine these high-speed controls with low-speed process control tasks normally performed by stand-alone PLC (Programmable Logic Controller) units.

The dual-core processor unit www.cniacs.com takes the technology a step further by combining these high-speed control and low-speed process control tasks normally performed by a separate PLC (Programmable Logic Controller) unit.

The AC 800PEC embedded system is unique in the field of industrial process controllers for its robust and flexible architecture and integrated standard communication functions.

The AC 800PEC is the ultimate way to fulfil high demands.

The AC 800PEC offers a unique combination of functions for demanding applications:

– Short cycle times, down to 100 μs

– High processing power

– Fast communication and input/output via optical links

– Programming tools:

– System engineering using ABB Control Builder’s IEC61131-3 language.

Compact and specialised

– Product and control development using MATLAB®/Simulink® for model-based design, easily bridging the gap from simulation to implementation

– Fully integrated with ABB Ability™ System 800xA

– Innovative and flexible use of FPGAs to include protocol and application functionality in the device without creating an additional processor load

– Optical communications

– Industrial grade hardware with no moving parts

– Long life and easily upgradable

– Robust file-dependent system, unaffected by power failures

Built for power control in the process industry

ABB has global expertise and know-how in the field of process control for industrial, marine and other applications.

As a result, the AC 800PEC is a key controller for ABB industrial applications as well as third-party products and systems.

The AC 800PEC is an efficient and flexible controller family. With short cycle times, fast (input/output) I/O,

processing power and advanced control using MATLAB®/Simulink®:

– Increased process quality and throughput

– Savings in development and engineering costs

– Reduced product energy consumption

– Reduced time-to-market for development projects

– Savings in engineering and software development labour and resources

– Improved return on assets (ROA)

– Hardware back-up trips for integration with fast COMBI I/Os

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