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

Emerson Rosemount 4088 Multivariable Transmitter

Rosemount 4088 Product Overview

Industry-Leading Performance and Functionality

Designed for optimal flow performance, the Rosemount 4088 uses superior sensor technology to deliver unmatched accuracy in a wide range of operating conditions.

Superior performance allows you to better control your operations and maximise profits.

Flexible communication with Modbus® or Bristol® standards 

Asynchronous/Synchronous Protocol (BSAP)/MVS

Designed to integrate easily with existing or new systems, the Rosemount 4088 can 

communicate using Modbus or BSAP/MVS protocols. Baud rates up to 19200 allow traffic computers to communicate faster and more efficiently.

The Rosemount 4088’s local LCD display shows both measurement data and the results of the flow computer’s calculations.

such as “Instantaneous Flow” or “Accumulated Flow for the last 24 hours”. This not only simplifies maintenance, but also makes well operations clearer.

Plunger Lift Measurement Range Expanded

The Rosemount 4088 extended range option incorporates new sensor technology that ensures peak flow rates are captured without compromising performance in the normal operating range.

This helps eliminate accounting discrepancies that can lead to disputes.

Reduced Power Consumption

The advanced electronics in the Rosemount 4088 consume less power, which means a single power supply or solar panel can run more transmitters.

Reverse wiring protection also ensures that transmitters are not damaged if the power supply is incorrectly connected.

Accurate RTD measurements through sensor matching

The Rosemount 4088 reduces process temperature and flow errors by using Callendar-Van Dusen constants to define the unique characteristics of RTD.

Seamless Transition from Legacy Products

To ensure a smooth transition from Emerson legacy products, the Rosemount 4088 will communicate using the same protocols as direct replacements.

This will allow users to quickly replace legacy products with the Rosemount 4088, minimising downtime and reducing engineering and installation costs.

Reduced engineering and installation costs

Excellent Warranty and Stability

The Rosemount 4088 is built to last, with a stability specification of up to 5 years and a 12-year warranty. This helps ensure that your investment in Rosemount technology continues to pay off for years to come.

Emerson CSI A6620 Four-Channel Process Input Monitor

The main function of the Process Input Monitor is to accurately monitor process parameters and reliably protect machinery.

parameters and reliably protect the machine by comparing the parameters to alarm setpoints, actuating alarm and

Setpoints, actuate alarms and relays to accurately monitor process parameters and reliably protect the machine.

Process inputs can be ±1 V, ±10 V, or 0/4-20 mA.

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

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

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

Features:

Four-channel, 3U size, 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

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

For IMR600020 chassis

Emerson A6500-UM Universal Measurement Card

The A6500-UM Universal Measurement Card is an integral part of the AMS 6500 ATG machine protection system.

The card is equipped with 2 sensor input channels (independent or combined, depending on the selected measurement mode).

The most common sensors can be used, such as eddy current, piezoelectric (accelerometers or velocimeters), seismic (electrodynamic),

LF (Low Frequency Bearing Vibration), Hall Effect and LVDT (in combination with A6500-LC) sensors.

In addition, the card contains five digital inputs and six digital outputs.

Measurement signals are transferred to the A6500-CC Com card via the internal RS 485 bus and converted to Modbus RTU and

The measurement signals are transferred to the A6500-CC Com Card via the internal RS 485 bus and converted to the Modbus RTU and Modbus TCP/IP protocols for further transmission to a host computer or analysis system.

Additionally, the Com Card can communicate www.cniacs.com with a PC/laptop connection via the USB interface on the panel, allowing the card to be configured and measurements to be displayed.

This allows the card to be configured and the measurement results to be displayed. Measurement results can also be output via 0/4 – 20 mA analogue outputs.

These outputs have a common ground and are electrically isolated from the system power supply.

The A6500-UM Universal Measurement Card operates in the A6500-SR system rack, which also provides the supply voltage and signal connections.

The A6500-UM Universal Measurement Card provides the following functions:

Absolute shaft vibration

Relative shaft vibration

Shaft eccentricity

Housing piezoelectric vibration

Thrust and rod position, differential and shell expansion, valve position

Velocity and keys

Emerson A6500-UM Universal Measurement Card

The A6500-UM Universal Measurement Card is an integral part of the AMS 6500 ATG machine protection system.

The card is equipped with 2 sensor input channels (independent or combined, depending on the selected measurement mode).

The most common sensors can be used, such as eddy current, piezoelectric (accelerometers or velocimeters), seismic (electrodynamic),

LF (Low Frequency Bearing Vibration), Hall Effect and LVDT (in combination with A6500-LC) sensors.

In addition, the card contains five digital inputs and six digital outputs.

Measurement signals are transferred to the A6500-CC Com card via the internal RS 485 bus and converted to Modbus RTU and

The measurement signals are transferred to the A6500-CC Com Card via the internal RS 485 bus and converted to the Modbus RTU and Modbus TCP/IP protocols for further transmission to a host computer or analysis system.

Additionally, the Com Card can communicate with a PC/laptop connection via the USB interface on the panel, allowing the card to be configured and measurements to be displayed.

This allows the card to be configured and the measurement results to be displayed. Measurement results can also be output via 0/4 – 20 mA analogue outputs.

These outputs have a common ground and are electrically isolated from the system power supply.

The A6500-UM Universal Measurement Card operates in the A6500-SR system rack, which also provides the supply voltage and signal connections.

The A6500-UM Universal Measurement Card provides the following functions:

Absolute shaft vibration

Relative shaft vibration

Shaft eccentricity

Housing piezoelectric vibration

Thrust and rod position, differential and shell expansion, valve position

Velocity and keys

Emerson A6140 Dual Channel Shaft Absolute Vibration Monitor

Functional Features:

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

API 670-compliant, hot-swappable modules

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

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

Used to connect a displacement sensor and a seismic or piezoelectric sensor

or piezoelectric sensor so that the combined output is an absolute value of the axis relative to free space

For use with displacement transducers 6422. 6423. 6424. and 6425 as well as actuators CON 011/91. 021/91. 041/91. and case-mounted piezoelectric velocity sensors

The Shaft Absolute Vibration Monitor is designed for high reliability in the plant’s most critical rotating machinery.

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

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

The primary function of the absolute shaft vibration monitoring module is to accurately monitor absolute shaft vibration, to

The main function of the shaft absolute vibration monitoring module is to accurately monitor shaft absolute vibration and reliably protect the machinery by comparing the vibration parameters to alarm setpoints and actuating alarms and relays.

The shaft absolute sensor system consists of a relative displacement sensor and a vibration sensor mounted in the same housing.

The displacement sensor is a non-contact sensor that measures shaft position and movement relative to the housing, the

while the vibration sensor mounted in the housing is used to measure the absolute position of the housing relative to free space.

The two sensors are phase compensated for different units and mathematically subtracted to obtain the absolute displacement of the shaft relative to free space.

Absolute shaft vibration is an important measurement used for prediction and protection monitoring on all sleeve bearing machines.

Absolute shaft vibration should be selected when the bearing box and rotor masses are closely matched, as the bearing box may move significantly during machine operation.

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

PlantWeb provides comprehensive machine health in conjunction with the Ovation® and DeltaV™ process control systems.

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

Emerson PR 6423 Non-Contact Eddy Current Sensor

Examples include steam, gas, compressor and water turbomachinery, blowers and fans.

The purpose of the displacement probe is to measure position or shaft motion without contacting the surface under test (rotor).

In sleeve bearing machines, a thin film of oil separates the shaft from the bearing material.

The oil acts as a damping agent so that shaft vibrations and position are not transmitted through the bearing to the bearing housing.

Vibrations due to shaft movement or position are greatly attenuated by the action of the bearing oil film.

The use of housing vibration sensors to monitor sleeve bearing machines is therefore discouraged.

The ideal method of monitoring shaft position and motion is through the bearing or a non-contact eddy current sensor mounted inside the bearing.

PR 6423 is commonly used to measure machine shaft vibration, eccentricity, thrust (axial displacement), differential expansion, valve position and air gap.

Non-contact measurement of static and dynamic shaft displacements

– Shaft and radial displacement (position)

– Shaft eccentricity

– Shaft vibration (motion)

Meets international standards DIN 45670. ISO 10817-1 and API 670

Rated for use in explosive areas, Eex ib IIC T6/T4

Other displacement transducer options include PR 6422. PR 6423. PR 6424. and PR 6425

Choose from CON 011/91. 021/91. 041/91 and other converters and cables for a complete transducer system

Emerson DeltaV™ VerticalPlus Input/Output Subsystem Carrier

Functional features:

Designed for SIS

Modular design for flexible installation

Allows for online expansion

Increased I/O density

I/O density for cabinet-mounted systems

Introduction to the DeltaV™ VerticalPlus I/O Rack

Keep your I/O subsystems running efficiently with DeltaV™ VerticalPlus I/O Racks.

The VerticalPlus platform allows you to integrate DeltaV SIS logic solvers vertically, giving you the flexibility you need for cabinet design.

Power supplies/controllers and I/O carriers are modular.

You buy only what you need, but rest assured that as your system grows, you can add plug-and-play carriers-it’s easy!

The Advantage

Designed specifically for SIS. The redesigned carrier supports simplex and redundant SLS modules.

These modules communicate via a redundant safety bus, which is separate from the BPCS communications.

The VerticalPlus carrier also communicates with other SIS nodes on the vertical and horizontal carriers via redundant SISNet repeaters.

The modular design allows for flexible installation. A single T-shaped DIN rail is all that is needed to mount the power/controller carrier in place.

Fieldbus power is now independent for each individual card.

The modular design approach of the DeltaV system allows you to add I/O carriers as needed.

Allows you to expand online. Additional carriers can be added online as needed.

Increases the density of the cabinet-mounted system. Six I/O carriers can be mounted on one side of a standard 1200mm x 600mm x 2200mm cabinet.

Emerson AMS 6500 Protection Monitor Configuration

Pre-configured user-selectable measurement types simplify software configuration

Password protection with 4 user login levels and customisable access rights

Context-sensitive help information to quickly resolve set-up issues

Includes trending, time functions, order analyses and start/stop data for comprehensive setup.

Configuration includes setup of basic predictive functions, including troubleshooting and diagnostics

Applications

The AMS 6500 Configuration Software for Machinery Protection allows you to configure protection modules, view real-time vibration monitoring systems and sensor health.

The intuitive configuration process begins with the selection of the card type. Next, the configuration software displays a simple table view.

All configuration settings are clearly visible. Tabs help you categorise information between inputs, outputs, advanced machine diagnostics and management tasks.

diagnostic and management tasks. The allowable range for each required entry is clearly visible to help you understand the range of the parameter.

Preset parameters are automatically loaded when using Emerson sensors and transducers.

Real-time data can be displayed during system configuration to verify that wiring, card settings, and instrumentation are healthy and properly connected.

Real-time information such as gap voltage, waveform data, and overall vibration data can be viewed.

Ongoing maintenance functions such as resetting latching relays or loading saved configurations can be easily performed via software.

The software can be run on a PC or laptop.

The System Configuration Software allows you to configure the following monitors of the A6000 series

The following monitors of the A6000 series can be configured:

a6110. a6120. a6125. a6140. a6150. a6151. a6210. a6220. a6310. a6312. a6312-8.

a6410. a6620. a6630. a6740.a6740-10. a6824. a6824r

Basic Predictive Features

The AMS 6500 Configuration Software has a number of built-in trending functions that allow basic troubleshooting and prediction of the machine.

Master value trends are graphically represented, showing both card health and alarm values. The software can display vibration signals as a function of time,

The software displays the vibration signal as a function of time, the date of the FFT analysis with a resolution of up to 400 lines, and the FFT phase data. The software also displays the last time the machine was started or stopped.

The configuration software visualises the data and displays velocity over time and vibration over velocity for each channel.

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.

Search for products

Back to Top
Product has been added to your cart