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Emerson AMS 2140 Mechanical Health™ Analyser

Vibration analyser offers powerful user experience

AMS 2140 Machinery Health™ Analyser The AMS 2140 is the most comprehensive tool for assessing and predicting machinery health

The AMS 2140 builds on Emerson’s industry-leading CSI 2130 to make path-based maintenance more efficient and predictive diagnostics more practical.

predictive diagnostics more practical. the AMS 2140 is guided by human-centred design principles.

The AMS 2140 follows human-centred design principles and is user-focused to meet the availability and advanced diagnostic requirements of reliability engineers.

With more than 25 years of expertise in vibration analysis, Emerson’s portable analysers provide the most powerful user experience for predicting equipment problems.

Routes can be executed more efficiently with faster data acquisition and four-channel acquisition capabilities.

The extra time is then used for higher value tasks such as data analysis, root cause analysis and maintenance planning.

Use a wireless hotspot in the device to send data directly from ffeld back to the maintenance shop.

When you start another route, analysts in the maintenance shop can start analysing the data, so you can collect and analyse data at the same time.

Or send data back to a central database from a remote plant location so that it can be viewed by key stakeholders within your organisation.

Designed for you

Four-channel data collection makes bearing analysis easier and faster

Better understanding of shaft motion and machine transients with four-channel diagnostics

Longer battery life for a full shift (or more) without recharging

Full-colour touchscreen for easy navigation and detailed fault analysis, even when wearing gloves

Large screen automatically adjusts to ambient light so you can see what you need to see, wherever you are

Slim housing for comfortable one-handed operation

Fastest data acquisition speed on the market, so you spend less time in harsh environments

Advanced analysis tools, including cross-channel and transient analysis, help identify root causes

Comfortable shoulder strap and built-in stand make the analyser easy to use

Bluetooth wireless communication with headset for ease of use

Predictive diagnostics help you determine the root cause of equipment problems

Versatile advanced diagnostics improve machine health

The AMS 2140 offers the industry’s most complete set of features to quickly and accurately assess the health of rotating machinery.

Even the most complex machinery in your facility. With the AMS 2140

You can perform single-, dual-, or quad-channel vibration analysis, cross-channel analysis, transient analysis, structural analysis, balancing, and motor monitoring.

The analyser’s embedded intelligence guides you through advanced diagnostic tools, providing pre-configured menus and preset technology settings.

Troubleshooting documentation in the AMS 2140 helps with initial analysis, and AMS Suite integrates with the analyser for more in-depth analysis of data.

Emerson DeltaV™ Smart Switches Plug and Play Industrial Switches

DeltaV™ switches are plug-and-play industrial switches with enhanced security features

New and improved hardware and software platforms with increased focus on security and improved performance

Fully managed by the DeltaV™ system

Automatically reports network alarms and diagnostic information to DeltaV workstations

Can be installed on the network between DeltaV workstations and Emerson’s Intelligent Firewall (DeltaV 2.5 network)

Plug-and-play installation

Automatic security lockout

Full range of industrial-grade fanless switches

Fully supported by Emerson

Introduction

The new DeltaV™ network “smart” switches are the next generation in the use of commercial off-the-shelf (COTS) components in control systems.

These switches combine the low cost of off-the-shelf components with DeltaV-specified software and features that

making it more integrated and plug-and-play in the DeltaV Area Control Network (ACN) and other DeltaV networks outside the ACN.

The DeltaV Smart Switch requires no configuration to operate in a DeltaV network.

Access to advanced features requires minimal configuration and is easily accomplished using the DeltaV Network Device Command Centre.

This ensures that all Smart Switches on the network are configured consistently and securely, and that the performance of the DeltaV system is not compromised by misconfiguring any switch function.

This dedicated switch allows the DeltaV system to provide an advanced security feature of automatic port lockout, which can be easily implemented by the control system user.

Control system users can easily implement this feature: an increasingly important product feature in today’s harsh environments.

The DeltaV Smart Switch is also pre-configured to utilise features in the latest software releases, such as ARP sniffing and enhanced security features.

(The DeltaV Smart Switch is also preconfigured to detect certain man-in-the-middle attacks using features in the latest version of the software, such as ARP sniffing and enhanced port locking algorithms: ARP spooffng detection and enhanced port locking algorithms.

A-B 1444-DYN04-01RA Measuring Module

Description:

The Allen Bradley 1444-DYN04-01RA module is part of the Allen-Bradley Dynamax family of intelligent I/O modules.

It is designed to provide the integrated and distributed solution needed to monitor and control critical industrial machinery.

The 1444-DYN04-01RA module monitors and protects pumps, motors, gearboxes, fans, gas and steam turbines, high-speed compressors, and other reciprocating or rotating machines.

About 1444-DYN04-01RA

The Allen-Bradley 1444-DYN04-01RA module is part of the Allen-Bradley Dynamax family of intelligent I/O modules.

It is used to provide the integrated and distributed solution needed to monitor and control critical machinery.

The 1444-DYN04-01RA module monitors and protects pumps, motors, gearboxes, fans, gas and steam turbines,

high-speed compressors, and other reciprocating or rotating machines. In addition to this, the 1444-DYN04-01RA module measures strain or pressure,

In addition, the 1444-DYN04-01RA module can also measure dynamic signals such as strain or pressure, vibration, and position measurement signals such as rod position, differential expansion or thrust.

The 1444-DYN04-01RA module allows real-time measurements to protect machinery from imminent failure.

In addition, the measurement results can be further processed to calculate the acute fault indication parameters required to assess the current and predicted health of the machine.

The 1444-DYN04-01RA module can be managed and configured via a Logix controller and connected via an EtherNet/IP industrial network.

As with the rest of the Allen-Bradley/Rockwell Automation Integrated Architecture system, the

As with other parts of the Allen-Bradley/Rockwell Automation Integrated Architecture system, other system components such as visualisation products, controllers, and I/O products can be applied to the 1444-DYN04-01RA module to meet specific needs and applications.

Expansion modules for the 1444-DYN04-01RA module include a relay module, a tachometer signal conditioner and an analogue output module.

A-B 1746SC-INO4I Analogue Pure Current Output Module

About the 1746SC-INO4I

The 1746sc-INO4I is Spectrum Controls’ analogue pure current output module. The module has four (4) isolated channel outputs.The 1746sc-INO4I occupies one slot in the 1746 Input/Output Chassis.The 1746sc-INO4I draws 120 milliamps of current from the backplane at 5 volts DC, but in order to minimise current loading on the backplane, the 1746sc-INO4I can be interfaced with an external power supply rated at 24 volts DC. The 1746sc-INO4I has a DIP switch that specifies whether the module is to be powered from the backplane or from an external power supply. When the DIP switch on the 1746sc-INO4I is set to the rack position, the module is powered from the backplane, and when the module is powered from an external 24 Vdc power supply, the DIP switch should be set to the EXT position.

The 1746sc-INO4I draws 5 volts DC from the backplane. This consumption rating is the same when the module is powered externally. The module has a removable 16-bit terminal block that accommodates Belden 8761 shielded twisted-pair cable. 1746sc-INO4I has 16-bit resolution, 366 nano-amps per count, and 320 microvolts per count. 1746sc-INO4I isolated channel analogue output models have auto-calibrating programmable limits and safety states, and are optically isolated for The 1746sc-INO4I isolated channel analogue output model has auto-calibrated programmable limits and safety states, and is opto-isolated to 750 volts DC (channel-to-channel, field wiring to backplane). 1746sc-INO4I is rated for thermal power dissipation up to 4.5 watts, with a maximum update time of 33.7 milliseconds for all 4 parallel channels, and a step response time of 1 millisecond. In addition, the 1746sc-INO4I is UL/CUL Class I, Division 2. Groups A, B, C, D, and CE listed.

Part number 1746sc-INO4I SLC 500 compatible module is an analogue output module manufactured by spectrum control. This module is manufactured by Spectrum Controls, an Allen-Bradley partner.

Encompass Partners is an Allen-Bradley approved and certified partner to provide Allen-Bradley compatible products.

Prosoft PTQ-PDPS PROFIBUS DP Slave Network Interface Module for Quantum

The PTQ-PDPS PROFIBUS DP Slave Communication Module allows compatible processors to connect easily with PROFIBUS DP master devices.

The PROFIBUS DP slave protocol driver supports PROFIBUS V0 slave implementations.

Provides robust data transfer between the module and the processor.

User-configurable data mapping and DP port operation make the interface an easy-to-use and powerful data transfer tool.

The PTQ module’s configuration/debug serial port connects a PC to the module for configuration, status, monitoring and troubleshooting (serial cable shipped with product).

After editing on the PC, the configuration file is downloaded and stored on the PTQ module.

PROFIBUS DP slaves have access to the input and output images of the device, with up to 244 bytes of input and output data, for a total of up to 400 bytes.

The user can map these input and output data blocks into the module’s data memory for maximum flexibility and data transfer with other protocols.

Features Benefits

PROFIBUS DP-V0 slave protocol interface

 Adds PROFIBUS DP slave device monitoring to the network

 Simple configuration – GSD file available

 122 word input/122 word output, max. 200 word input/output

Licensed Backplane Technology  Manufactured under licence from Rockwell Automation®.

 High-speed data transfer between PTQ module and processor

 Installed as a generic 1756 module, includes ladder logic example

 View module data and status in RSLogix™ 5000 controller tags and UDTs

Includes ProSoft Configuration Builder software

 Graphical drag-and-drop configuration tool for simple module configuration

 Easy-to-use diagnostic window with menu-driven hardware and protocol diagnostics

 View module database contents via serial connection to a desktop PC

Backed by ProSoft technology

 20-year history of providing high-quality, reliable solutions

 Free, unlimited worldwide technical support over the phone, including pre-sales, setup or troubleshooting support, to help you get up and running quickly and stay up and running longer

 Three-year warranty to ensure reliability and protect against equipment failure

 Free ProSoft software tools are tightly integrated with our hardware …… Quick and easy total solutions to help you tailor our products to your application needs.

Configuration

ProSoft Configuration Builder (PCB) provides a PC-based software configuration solution that

for quickly and easily managing module configuration files, as well as viewing communications and network diagnostics.

PCB is a powerful solution not only for new configuration files, but also for importing configuration information from previous installations (known jobs) into new projects.

Motorola MVME147S MPU VME Module

Features

The MVME147S features include

MC68030 microprocessor

Floating point coprocessor (MC68882)

Shared DRAM with parity (no parity on MVME147SRF)

Four serial ports with RS-232C buffers

Small Computer System Interface (SCSI) bus interface with DMA channel

Timer/calendar with battery backup

2K by 8 CMOS RAM with battery backup

Four ROM/PROM/EPROM/EPROM sockets (16-bit wide)

VMEbus interrupter

VMEbus system controller functions

VMEbus master interface (A32/D32. A24/D16 compatible)

VMEbus Requestor

SCON, DUAL, FAIL and STATUS status indicators

Reset and abort switches

Centronics Printer Port

Two 16-bit ticking timers for periodic interrupts

Watchdog timer

Ethernet transceiver interface (except MVME147SRF)

Cooling Requirements

Motorola VME modules are specified, designed, and tested to operate with forced air cooling from

Reliable operation over the incoming air temperature range of 0 degrees Celsius to 55 degrees Celsius (32 degrees Fahrenheit to 131 degrees Fahrenheit).

Temperature qualification was performed in a standard Motorola VMEsystem 1000 chassis.

A 25-watt load board was inserted in two card slots, one on each side, adjacent to the board under test to simulate a high power density system configuration.

Three axial fans, each rated at 100 CFM, were mounted directly below the MVME card box.

The temperature of the incoming airflow was measured between the fan assembly and the card box, where the airflow first encountered the module under test.

The test software is executed when the module is subjected to a change in ambient temperature. The test software is executed when the ambient temperature changes.

Case temperatures of critical high power density integrated circuits are monitored to ensure that component supplier specifications are not exceeded.

While the exact amount of airflow required for cooling depends on the ambient air temperature as well as the type, number, and location of boards and other heat sources.

However, typically as little as 10 CFM of airflow through the module is sufficient for cooling.

In environments with lower maximum ambient temperatures, less airflow is required to cool the module.

Under more favourable thermal conditions, increased airflow will allow the module to operate reliably at ambient temperatures above 55 degrees Celsius.

It is important to note that in addition to the rated CFM of the air pusher, there are several factors that determine the actual amount of air flowing through the module.

GE 531X307LTBAJG1 LAN Terminal Block 531X Series

Product Description

General Electric designed the 531X307LTBAJG1 as a local area network (LAN) termination board.

It is located under the 531X Series Replacement Board.GE Series drives and exciters can have this card installed in their enclosures.

With this card installed, there will be an interface system between the external devices and the control drive.

Peripheral devices such as interlocks, pushbuttons, and indicators can use the card as an interface.

When the 531X307LTBAJG1 board is installed, the LAN signals are distributed through the interface platform.

When the board is installed, eight configurable control input plugs are available for the drive.

The board accepts input voltages rated from 2 to 240 V, both AC and DC.

The input voltage sent to the control board is converted to a 24 VDC logic signal acceptable to the control board.

The signals generated by the control board can be easily transmitted through the LAN terminals, the drive control board, and the NTB terminal board.

The seven integrated control outputs of the control board consist of low-current and low-voltage C-type relay contact connectors.

The user should observe the installation parameters provided by the device manufacturer. These guidelines may prevent some damage to the equipment.

Only trained personnel qualified to install the board should be allowed to operate the 531X307LTBAJG1 LAN terminal.

Detailed instructions on wiring procedures can be found in the board’s data sheet and manual.

As with all other members of the 531X family, technical support for this card is initially provided by the manufacturer, General Electric.

GE DS200ADPBG1ABB Genius Adapter Board

Product Description.

This DS200ADPBG1ABB Genius Adapter Board is a circuit board product from General Electric.

In addition to its functional description as a Genius Adapter Board and a Mark V series turbine control system originally attributed to General Electric, there is some mystery surrounding this product.

There is a bit of mystery surrounding this product. While it could be loosely defined as a General Electric product.

Although loosely defined as a General Electric product, it is likely that this Mark V series product was originally manufactured by a subsidiary of General Electric, such as General Electric Transmission Systems, Inc.

such as GE Drive Systems or GE Industrial Control Systems.

Before deciding to purchase a DS200ADPBG1ABB Mark V Genius Adapter Board.

Consider that this product has used all three of its possible major product revisions, which may have significantly changed its originally labelled performance specifications and dimensions.

Hardware tips and specifications

As with any Mark V Series product, the DS200ADPBG1ABB Genius Adapter Board uses a unique set of advanced hardware components and component specifications

to achieve its intended functionality. First, the Genius I/O Adapter Board DS200ADPBG1ABB features a configuration board consisting of eight switches.

The Genius I/O Adapter Board DS200ADPBG1ABB is also equipped with a 40-pin connector and a 26-pin connector.

The third and final intuitively recognisable hardware element is critical to the DS200ADPBG1ABB Genius Adapter Board.

That is its array of manually removable hardware jumpers, which are included in its assembly for the highest customisation purposes.

The information stored on this personalised DS200ADPBG1ABB product page is the extent of the information that can be retrieved when checking the available DS200ADPBG1ABB manual data.

Nevertheless, a great deal of information can still be retrieved from the DS200ADPBG1ABB product number itself (beginning with the DS200 series label).

The series label has a double naming responsibility for this Mark V series product, indicating that it is a domestically produced General Electric product with a normal type of assembly.

GE IC695CPE305 PACSystem RX3i Controller Module

About the IC695CPE305

The IC695CPE305 programmable automation controller (PAC) is part of the PACSystems RX3i automation platform.

The controller was manufactured by then GE Fanuc Automation (now Emerson Automation).

The IC695CPE305 has advanced features that are superior to most of today’s PACs.

The controller has the capability of Ethernet communication via one (1) Ethernet communication port.

The port supports 10/100 Mbps communication rates and can be used to communicate with programming workstations, Human Machine Interfaces (HMIs), Supervisory Control and Data Acquisition (SCADA) systems.

third-party hardware and software products, and controllers on the same platform for messaging and inter-controller data exchange.

In addition, the Ethernet port supports OPC UA, allowing connection to third-party devices via the OPC protocol.

The IC695CPE305 is not limited to Ethernet communication as the controller also integrates two (2) serial ports that support RS232 and RS485 communication standards.

It is also equipped with one (1) USB 2.0 master port that allows downloading and uploading of user programmes from a smartphone’s thumb drive.

The IC695CPE305 5MB RAM and 5MB non-volatile user memory has a processor speed of 1.1 GHz and a typical scan rate of 0.72 milliseconds per 1.000 Boolean instructions.

It supports a variety of network protocols such as Ethernet (PROFINET, Ethernet Global Data, Channel, Modbus TCP server and client),

Genius, PROFIBUS DP, and DeviceNet.The IC695CPE305 allows control of up to eight (8) racks, including CPU racks.

This controller supports the installation of additional communication cards that support Serial, Genius, CMX (Reflective Memory), and Ethernet.

This single-slot controller supports up to eight local racks.

GE IC670MDL644 Field Control Logic Fast Input Module

The IC670MDL644 24-volt DC positive/negative input module has a parallel-to-serial converter.

This converts the data in the data buffer to a serial format that can be used with the Bus Interface Module.

When the Bus Interface Module is properly connected, the module’s power LED indicates the power status.

The Bus Interface Module starts reading the processed and converted input data.

The Bus Interface Module has both positive and negative inputs. The positive input is used in order to receive the current from the input device.

The negative input is used to supply current to the input device.

Efficient field wiring of the IC670MDL644 input module can be performed using a terminal block with box terminals or isolated terminals.

The internal circuitry of the module is equipped with a network of resistors and capacitors to provide input thresholding and filtering.

The IC670MDL644 24-volt DC positive/negative input module is a field control logic fast input module manufactured by GE Fanuc.

It provides a set of discrete inputs that can be driven by both positive and negative logic.

The IC670MDL644 24-volt DC positive/negative input module has 16 inputs,

separate LEDs for logic-side inputs and a “PWR” indication LED for monitoring power status.

The bus interface unit provides the power needed to drive the 5-volt logic, and the input devices require power from an external 24-volt DC power supply.

It also provides isolation ratings such as 250 volt AC continuous user input to logic isolation and 1500 volt AC user input to frame ground isolation for 1 minute.

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