The document discusses various communication options for connecting field instruments to automation systems. It covers traditional 4-20 mA connections with digital HART communication, as well as fieldbus systems like Profibus and Foundation Fieldbus. Wireless technologies such as Wireless HART and PLICSMOBILE radio are presented as options to reduce wiring costs. The document also introduces VEGA's signal conditioning instruments that interface sensors to control systems via different protocols and allow remote access to sensor data through Ethernet, modem, and wireless connections.
Reporte de lectura de yerma de federico garcía lorcaZdovval Orrtz
El documento resume la obra Yerma de Federico García Lorca. Narra la trama de la obra, la cual gira en torno a Yerma, una mujer casada que desea ser madre pero su marido Juan se muestra indiferente. A lo largo de la obra, Yerma sufre la presión social por no poder concebir y la frustración por la esterilidad que finalmente descubre que comparte con su marido. La obra critica el trato desigual hacia la mujer en la España de la época y muestra el gran valor que tenía la maternidad para algunas mujeres
El documento resume el Cantar de Mio Cid, la épica española del siglo XII sobre el héroe nacional Rodrigo Díaz de Vivar. Explica que es un poema anónimo en verso que narra las hazañas del Cid durante su destierro de Castilla y su conquista de Valencia. Resalta que aunque el Cid existió realmente, el poema contiene elementos ficticios y literarios que exaltan las cualidades del héroe y sus victorias sobre los enemigos de Castilla.
El resumen del documento en 3 oraciones o menos es:
El relato sigue las aventuras de Diego Alatriste, un espadachín madrileño del siglo XVII, y su paje Íñigo. Alatriste recibe el encargo de asaltar a unos ingleses pero decide salvarles la vida, descubriendo que son el príncipe de Gales y el marqués de Buckingham. La trama gira en torno a la conspiración para impedir la alianza matrimonial entre Inglaterra y España.
El documento resume la obra de Miguel de Cervantes, El Quijote. Describe la publicación de las dos partes en 1605 y 1615, respectivamente. Explica que la obra critica los libros de caballería y presenta las aventuras de Don Quijote y su escudero Sancho Panza, mostrando la dualidad entre lo ideal y lo material en la naturaleza humana.
La novela narra la historia de la comunidad andina de Rumi y su lucha contra el poderoso terrateniente Álvaro Amenábar, quien intenta apropiarse de sus tierras. El alcalde Rosendo Maqui lidera la defensa de la comunidad pero son engañados por su abogado. Finalmente, Rosendo muere en la cárcel y la comunidad es despojada de sus tierras. La obra describe la pobreza y explotación que sufrían los campesinos a manos de los terratenientes y la corrupción
libreto CRÓNICA DE UNA MUERTE ANUNCIADA.pdfjorgehernan25
Este resumen describe los eventos que rodean la muerte de Santiago Nasar a manos de los hermanos Vicario en la novela Crónica de una muerte anunciada de Gabriel García Márquez. Narra la boda fallida de Bayardo San Román y Ángela Vicario, la revelación de Ángela de que no era virgen, y su acusación de que Santiago Nasar fue el responsable. Esto lleva a los hermanos Vicario a buscar y asesinar a Santiago Nasar frente a su casa, a pesar de los intentos de otros por advertirle del peligro
Reporte de lectura de yerma de federico garcía lorcaZdovval Orrtz
El documento resume la obra Yerma de Federico García Lorca. Narra la trama de la obra, la cual gira en torno a Yerma, una mujer casada que desea ser madre pero su marido Juan se muestra indiferente. A lo largo de la obra, Yerma sufre la presión social por no poder concebir y la frustración por la esterilidad que finalmente descubre que comparte con su marido. La obra critica el trato desigual hacia la mujer en la España de la época y muestra el gran valor que tenía la maternidad para algunas mujeres
El documento resume el Cantar de Mio Cid, la épica española del siglo XII sobre el héroe nacional Rodrigo Díaz de Vivar. Explica que es un poema anónimo en verso que narra las hazañas del Cid durante su destierro de Castilla y su conquista de Valencia. Resalta que aunque el Cid existió realmente, el poema contiene elementos ficticios y literarios que exaltan las cualidades del héroe y sus victorias sobre los enemigos de Castilla.
El resumen del documento en 3 oraciones o menos es:
El relato sigue las aventuras de Diego Alatriste, un espadachín madrileño del siglo XVII, y su paje Íñigo. Alatriste recibe el encargo de asaltar a unos ingleses pero decide salvarles la vida, descubriendo que son el príncipe de Gales y el marqués de Buckingham. La trama gira en torno a la conspiración para impedir la alianza matrimonial entre Inglaterra y España.
El documento resume la obra de Miguel de Cervantes, El Quijote. Describe la publicación de las dos partes en 1605 y 1615, respectivamente. Explica que la obra critica los libros de caballería y presenta las aventuras de Don Quijote y su escudero Sancho Panza, mostrando la dualidad entre lo ideal y lo material en la naturaleza humana.
La novela narra la historia de la comunidad andina de Rumi y su lucha contra el poderoso terrateniente Álvaro Amenábar, quien intenta apropiarse de sus tierras. El alcalde Rosendo Maqui lidera la defensa de la comunidad pero son engañados por su abogado. Finalmente, Rosendo muere en la cárcel y la comunidad es despojada de sus tierras. La obra describe la pobreza y explotación que sufrían los campesinos a manos de los terratenientes y la corrupción
libreto CRÓNICA DE UNA MUERTE ANUNCIADA.pdfjorgehernan25
Este resumen describe los eventos que rodean la muerte de Santiago Nasar a manos de los hermanos Vicario en la novela Crónica de una muerte anunciada de Gabriel García Márquez. Narra la boda fallida de Bayardo San Román y Ángela Vicario, la revelación de Ángela de que no era virgen, y su acusación de que Santiago Nasar fue el responsable. Esto lleva a los hermanos Vicario a buscar y asesinar a Santiago Nasar frente a su casa, a pesar de los intentos de otros por advertirle del peligro
Highway Addressable Remote Transducer (HART) is an industrial standard protocol which is widely well established and used by most of the industries.Among the 45-50 Million industrial devices,48% devices are non-smart devices and 52% devices are smart devices.Among the 52% means around 25-26 million smart devices 26% means near about 12-13 million devices are HART based devices.
Highway Addressable Remote Transducer (HART) is an industrial standard protocol which is widely well established and used by most of the industries.Among the 45-50 Million industrial devices,48% devices are non-smart devices and 52% devices are smart devices.Among the 52% means around 25-26 million smart devices 26% means near about 12-13 million devices are HART based devices.
This document discusses smart transmitters, which are microprocessor-based transmitters that can be programmed and communicate digitally. It describes how smart transmitters offer advantages like improved accuracy and the ability to access data remotely compared to conventional transmitters. The document then provides details on the HART communication protocol that smart transmitters use to transmit process variables and additional data digitally over the same wires as the 4-20 mA analog signal. It also discusses calibrating smart transmitters, noting that calibration is still important for accuracy even though smart transmitters have digital communication.
Highway Addressable Remote Terminal(HART), one of the most modern technology used in process industries for communication between field instruments and DCS.
The document provides an overview of HART communication, including how it originated, its theory of operation, benefits, and conclusions. Some key points:
- HART allows digital communication over analog 4-20mA wiring, providing additional process data without disrupting existing infrastructure.
- It uses Frequency Shift Keying to encode digital signals which are superimposed on the analog current loop.
- HART provides bidirectional communication, device configuration/diagnostics, and supports point-to-point and multidrop network topologies.
- Benefits include improved operations, flexibility, and protection of existing instrumentation investments.
HART protocol for network data communicationAmol Dudhate
This document summarizes the key aspects of HART communication. It introduces HART as an open protocol that enables bidirectional digital communication over 4-20mA analog loops using FSK. It describes the main communication modes of HART including master-slave and burst modes. It also provides an overview of the HART protocol layers and details about the physical, data link and application layers.
VEGA Wireless Communication With PLICSRADIO - Technology BrochureThorne & Derrick UK
This document discusses wireless signal transmission using PLICSRADIO devices from VEGA. It provides an overview of the technical concepts and advantages of PLICSRADIO, including its ability to simplify installation works and reduce costs compared to wired solutions. Key features highlighted include high reliability, parameterization via radio link, effective transmission ranges up to 500m for 2.4GHz and 1600m for 900MHz, and sophisticated techniques to ensure reliable data transmission. Examples of applications where PLICSRADIO provides benefits are also presented.
The document discusses the HART communication protocol, which defines a standard for sending and receiving digital information across analog wires between smart field devices and host systems. It describes how HART works by superimposing digital signals on top of the standard 4-20mA analog signal, allowing bidirectional communication at 1200 bits per second without interrupting the analog signal. Benefits of HART include access to device parameters and diagnostics, compatibility with existing equipment, and open interoperable standards.
The document discusses the HART Communication Protocol, which allows for sending and receiving digital information across analog wires between field devices and control systems. Some key points:
- HART uses Frequency Shift Keying to superimpose digital signals on top of the standard 4-20 mA analog signal, allowing bidirectional communication without disrupting the existing infrastructure.
- It provides digital access to configuration, diagnostics, and additional process variables from field instruments.
- HART networks can operate in point-to-point or multidrop mode with up to 15 devices connected via a single pair of wires.
- Standard HART commands are used to communicate with devices from any manufacturer.
- The HART protocol allows devices to communicate digitally over analog 4-20mA loops, enabling both analog and digital communication over the same wiring.
- It uses frequency-shift keying to superimpose digital signals on top of the analog 4-20mA current without interfering with the analog signal.
- The HART protocol supports point-to-point and multidrop communication and can be used to access device configuration, diagnostics, and process variables.
unit 4 smartsensors and application.pptxAanshuSingh3
This document discusses smart sensors and their applications. It defines smart sensors as sensors that can perform ranging, calibration, and decision making for communication when combined with interface electronics. It describes the key components of smart sensors including primary sensors, excitation, amplification, filters, converters, compensation, information coding/processing, and data communication. It also discusses standards for smart sensor interfaces and gives examples of sensor applications in automobiles, homes, aerospace, manufacturing, and environmental monitoring.
Smart meters are advanced electric meters that allow two-way communication between the utility and customers. They provide benefits like more accurate billing, outage detection, and potential cost savings through time-based pricing programs. However, some are concerned about the health effects of the radiofrequency radiation emitted by smart meters and their mesh networks. Opponents argue that smart meters increase overall radiation exposure and fossil fuel usage compared to traditional analog meters. The World Health Organization has classified radiofrequency electromagnetic fields as possibly carcinogenic to humans based on some evidence of increased cancer risk from cell phone use.
SCADA.pptx supervisory control and data aquasitionRapidAcademy
The document discusses the history and components of SCADA (Supervisory Control and Data Acquisition) systems. It describes how early SCADA systems involved direct connections between sensors and control panels, while modern systems involve remote terminal units, programmable logic controllers, telemetry, and computer software. The key components of a SCADA system include remote terminal units that interface with field sensors, communication systems to transfer data, master stations to display and control the system, and software for user interfaces, alarms, data storage and more.
NIVELCO EasyTREK SP-500 Ultrasonic Level Transmitters for LiquidsArjay Automation
The newest generation EasyTREK SP-500 series level transmitters are based on NIVELCO’s 35 years of experience with ultrasonic level measurement. The IP68 rated units have their transducer and processing electronics incorporated in one single housing. The new EasyTREK transmitters utilize HART® 7 communication so they can be used in multidrop systems connected to MultiCONT process controller/display, or to a PC with the help of the UNICOMM HART®-USB modem or similar. The transmitters can be remotely programmed also with Handheld Field Communicator, and can be connected wirelessly to a PC with the SAT-504 Bluetooth® HART® modem.
Fieldbus is a digital communication network that replaces the existing 4-20 mA analog standard. It uses a bi-directional, multi-drop, serial-bus network to connect field devices like sensors, actuators, and controllers. Foundation fieldbus is an open architecture that uses digital communication over two wire pairs to connect intelligent field devices and distribute control applications across the network. It provides benefits like reduced wiring, self-diagnostics, improved control capability, and integration with information systems. While fieldbus offers advantages in cost savings and performance, it also has some disadvantages like increased complexity, higher component costs, and risks around standards.
The Siemens 7SD61 Cable Differential Protection Relay provides differential protection for power lines and cables at all voltage levels with phase-segregated measurement. It can protect up to two line ends and incorporates functions for transformers within the protected zone. Digital communication via fiber optic cables or other media allows the line ends to be located far apart. The relay also provides backup protection functions and easy local or remote access and control.
Everything You Need to Know About HART Communication ProtocolBrianCraig51
Today, HART protocol has become an industry standard for industrial automation. The pressure transmitters are configured to HART communicator for achieving desired performance. This post analyzes HART protocol, its working, benefits, and everything else you want to know about it.
This document discusses communications network requirements for substation automation. It describes how utilities are adopting IP and Ethernet-based intelligent electronic devices (IEDs) to improve grid performance and efficiency. This requires new communications network infrastructures within substations and between substations and control centers to handle increased traffic. The document outlines architectures that segment intra-substation and wide area network communications according to standards like IEC 61850. It also provides an example case study of a smart substation project in France where Nokia is implementing digital substations for grid improvements.
This document provides contact and location information for ROTRONIC Instrument Corp. and its subsidiaries and partners worldwide. ROTRONIC is a Swiss-owned company with headquarters in Switzerland and subsidiaries across Europe, North America, Asia, and elsewhere. Contact information is provided for ROTRONIC's offices and representatives in Switzerland, Germany, France, Italy, the UK, USA, Canada, Singapore, China, and elsewhere. The document also provides ROTRONIC's warranty terms and conditions.
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Highway Addressable Remote Transducer (HART) is an industrial standard protocol which is widely well established and used by most of the industries.Among the 45-50 Million industrial devices,48% devices are non-smart devices and 52% devices are smart devices.Among the 52% means around 25-26 million smart devices 26% means near about 12-13 million devices are HART based devices.
This document discusses smart transmitters, which are microprocessor-based transmitters that can be programmed and communicate digitally. It describes how smart transmitters offer advantages like improved accuracy and the ability to access data remotely compared to conventional transmitters. The document then provides details on the HART communication protocol that smart transmitters use to transmit process variables and additional data digitally over the same wires as the 4-20 mA analog signal. It also discusses calibrating smart transmitters, noting that calibration is still important for accuracy even though smart transmitters have digital communication.
Highway Addressable Remote Terminal(HART), one of the most modern technology used in process industries for communication between field instruments and DCS.
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- HART allows digital communication over analog 4-20mA wiring, providing additional process data without disrupting existing infrastructure.
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- HART provides bidirectional communication, device configuration/diagnostics, and supports point-to-point and multidrop network topologies.
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This document summarizes the key aspects of HART communication. It introduces HART as an open protocol that enables bidirectional digital communication over 4-20mA analog loops using FSK. It describes the main communication modes of HART including master-slave and burst modes. It also provides an overview of the HART protocol layers and details about the physical, data link and application layers.
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This document discusses wireless signal transmission using PLICSRADIO devices from VEGA. It provides an overview of the technical concepts and advantages of PLICSRADIO, including its ability to simplify installation works and reduce costs compared to wired solutions. Key features highlighted include high reliability, parameterization via radio link, effective transmission ranges up to 500m for 2.4GHz and 1600m for 900MHz, and sophisticated techniques to ensure reliable data transmission. Examples of applications where PLICSRADIO provides benefits are also presented.
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The document discusses the HART Communication Protocol, which allows for sending and receiving digital information across analog wires between field devices and control systems. Some key points:
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VEGA Communication for Process Automation - Technology Brochure
1. Communication for Process Automation
Tel:+44 (0)1914901547
Fax:+44(0)1914775371
Email:northernsales@thorneandderrick.co.uk
Website:www.heattracing.co.uk
www.thorneanderrick.co.uk
2. 2
Content
The world of communication 3
Communication interfaces – an overview 4
The classic connection of field instruments 6
Communication via fieldbus systems 8
VEGA interfaces between field and system level 10
Future-oriented wireless technologies 12
Data communication via Ethernet and Internet 14
Fieldbus and network-independent communication options 16
Configuration and parameter adjustment with PACTware 17
Parameter adjustment of VEGA sensors with DTM and EDD technology 18
VEGA quality management 20
Instrument overview 22
plics®
– easy is better 26
3. 3
The world of communication
The result: information exchange, for example with HART,
is not limited to setup and maintenance, but is now an
integral part of trend-setting automation concepts.
Fieldbus systems
Profibus PA and Foundation Fieldbus are fully developed,
efficient fieldbus systems. They fulfil the demand for a
standardized, international fieldbus for process engineer-
ing. Where previously thick cables and complex parallel
wirings between field instruments and the control centre
were necessary, one single cable now suffices in fieldbus
systems. Data and energy are transmitted simultaneously
over this generally two-wire cable, even in a hazardous
area. This simplifies not only installation and commission-
ing, but also later extensions or alterations.
Wireless data exchange
When cable connections are too costly or information
from mobile plant components needs to be transmitted,
then the solution is: wireless data exchange via radio
network.
Information from field instruments
Industrial production processes today are highly automated.
In order for this to work, measuring instruments have to
continuously deliver up-to-date, objective information about
the process to the control technology. There are different
solutions for smooth communication between measuring
instruments and process control: readings can be trans-
mitted via cables or by means of radio technology.
Analogue data transmission
The analogue, 4 … 20 mA standard signal was a break-
through for field instrument engineering: for the first time,
instruments from different manufacturers were exchange-
able and combinable. The point-to-point connections make
maintenance and diagnosis possible with simple means.
Digital communication
The rapid development of microelectronics has also
revolutionised data transmission from field instruments:
microprocessors make digital communication as well
as the exchange of large amounts of data between field
instrument and control system possible.
4. 4
Consistency through to the field device
Digital communication offers the possibility of inte-
grating field instruments into the automation system.
Information from the field instrument can be retrieved
and settings on the field instrument carried out from
the control level.
Fieldbus systems enable universal communication with field
instruments and thus also their setup and maintenance as
well as access to instrument-specific and diagnostic infor-
mation. Modern remote I/O systems also fulfil these require-
ments for 4 … 20 mA/HART field instruments.
Communication interfaces – an overview
5. 5
Standard interfaces to DCS, PLC and SCADA are
integrated, as well as web servers, modem controls
and notification functions via e-mail and SMS.
VEGA creates connections
Ethernet based communication systems in process auto-
mation combine automation engineering with information
technology. Signal conditioning instruments from VEGA link
sensors directly, without any detours, to this infrastructure.
6. 6
HART multiplexer
HART multiplexers enable digital access to the configu-
ration and diagnosis data of HART field instruments in
case existing remote I/O systems do not allow HART
communication. Coupling to the existing process control
system is carried out via standardised bus interfaces (for
example Profibus DP or Ethernet). HART multiplexers are
therefore ideally suited for expansion and modernisation
of plants with process automation.
Existing instrumentation and wiring can be used■
Independent service level■
Integration into diagnosis and asset management■
systems possible
Remote I/O systems
Modular remote I/O systems serve for transmitting
process data from safe or hazardous areas. They
connect a variety of binary and analogue sensors and
actuators with the control system via the bus interface
(for example Profibus DP). Some types of remote I/Os
can also communicate with HART-capable field instru-
ments. This has the advantage that parameter data
and diagnosis requests can be generated in the control
system and converted into HART commands for the
field instrument via the remote I/O.
Simple sensor wiring■
Simple fault diagnosis in the field■
Only one communication cable to the remote I/O■
(for example Profibus DP)
Remote I/O implementable in the field■
Sensor operation from the control room■
via signal line possible
The classic connection of field instruments
7. 7
Access to status and parameter data via HART multiplexer systems
Classic connection of 4 … 20 mA sensors via remote I/O systems
8. 8
Profibus PA
The basis for the intrinsically safe Profibus is the physical
layer specification according to IEC 61158-2 and the
Profibus DP protocol. Profibus PA uses the transmission
technology called MBP (Manchester Coded, Bus
Powered): data and power are transmitted over the same
wires, also in the Ex zone. The Profibus PA segments are
connected via segment couplers or DP/PA links to the
Profibus DP.
Foundation Fieldbus
The IEC 61158-2 transmission technology is also the basis
for the Ex capable Foundation Fieldbus (FF). It differs,
however, from Profibus PA when it comes to bus access
method and data protocol. Compared with the master
slave principle of Profibus, the FF bus access method
offers a number of advantages: data can be exchanged
Fieldbus communication with Profibus
Communication via fieldbus systems
Fieldbuses for process automation
Thanks to their integrated microprocessors, measuring
instruments with fieldbus technology provide additional
information about the quality of the measured value
and the status of the field instrument. With 4 … 20 mA
connections, such functions are not available at the
control level.
Since the signals are processed digitally, it seems
reasonable to avoid the digital-to-analogue conversion
in the sensor and the analogue-to-digital conversion
at the interface level and transmit the digital measure-
ment signal directly. Fieldbus does exactly that. Another
advantage: multiple field instruments can be connected
via a single two-wire connection, which reduces wiring
costs considerably.
9. 9
HART
HART holds a special position among the various
fieldbus protocols. HART technology works primarily
with the hybrid transmission method: the measured
value or the process variable is usually transmitted as
a 4 … 20 mA current signal via a point-to-point connec-
tion. To communicate with the field instrument, a digital
signal is modulated onto this analogue signal with the
FSK procedure (Frequency Shift Keying). In the so-called
multidrop mode, multiple field instruments can transmit
their measured values digitally.
Intrinsically safe supply for field instruments■
via the connection cable
Up to 15 field instruments on one two-wire cable■
in multidrop mode
Robust transmission technology■
Connection lengths up to 3,000 m■
directly between field instruments, which permits the
construction of servo loops. This use of distributed
intelligence makes decentralized automation systems
possible. A direct transfer to the fast Ethernet is carried
out via a linking device.
Fieldbus systems Profibus PA
and Foundation Fieldbus
Simple and reliable two-wire connection technology■
Intrinsically safe supply for field instruments■
Low wiring costs■
Up to 32 field instruments on one segment■
(10 field instruments with Ex applications)
Bus length up to 1,900 m■
Simple verification of intrinsic safety through the■
FISCO or Entity model
Fieldbus communication with Foundation Fieldbus
10. 10
VEGAMET for up to two sensors with current output for control functions
Thanks to its functions flow and flow volume measurement
as well as intelligent pump management, VEGAMET 391
is especially suitable for applications in water and sewage
systems. A SIL version is available for safety-oriented appli-
cations.
VEGAMET 625 lends itself well for applications in which the
measured values of two sensors are factored in together
(differential measurement, level in pressurized containers).
All settings can be conveniently carried out with PACTware
and a PC via the existing interfaces.
VEGASCAN 693
VEGASCAN 693 is designed for connection of up to 15 inde-
pendent HART sensors (5 in Ex applications). The sensors
operate in the HART multidrop mode and use a constant
4 mA supply current. Due to the simultaneous transmission of
energy and communication data on only one two-wire cable,
even in explosion-prone areas, the wiring costs are reduced
considerably.
VEGA interfaces between field and system level
HART and HART multidrop
4 … 20 mA/HART sensors also allow digital retrieval
of measured values. To do this, an appropriate request
telegram is sent to the sensor. VEGA signal conditioning
instruments use this functionality and thus avoid digital-to-
analogue and analogue-to-digital conversions. The signal
conditioning instrument can query all sensor features and
adapt the functional range automatically. This provides a
high degree of user-friendliness when standard sensors
are implemented. The control level has access to all
relevant field instrument information through the signal
conditioning instrument.
VEGAMET 391/624/625
The signal conditioning instruments VEGAMET carry out
the functions: measured value processing, sensor power
supply, separating barrier and gateway to Ethernet or
modem. The sensor values are transmitted digitally by
means of HART protocol. At the same time, the integrated
display module visualizes the measuring results. The
evaluation functions as well as the relay and current out-
puts allow the realisation of simple control tasks.
11. 11
Measured value storage with extensive trigger options and■
block-wise transmission
Complete setup and commissioning with PC■
and PACTware also via the interfaces
Remote parameter adjustment/remote diagnosis■
(for example PACTware) right down to the individual sensor
VEGAMET and VEGASCAN provide various
data evaluation options before data dispatch
VEGASCAN processes the data of up to 15 sensors (5 in Ex applications)
Remote data transmission with signal
conditioning instruments
A special feature of VEGA signal conditioning instruments is
the option of remote data transmission. The instruments are
equipped with a special interface for this purpose.
RS232 interface: The RS232 interface is particularly suit-
able for long-distance transmission of measured values
via simple modem connection. External analogue, ISDN
and GSM/GPRS modems are used here.
Ethernet interface: By means of the Ethernet interface, the
instruments can be connected directly to an existing PC
network or the Ethernet infrastructure of the control system.
The following functions are available:
Remote data transmission/data exchange to WEB-VV■
Simple visualization with a standard browser via inte-■
grated web server
Time and event-driven dispatch of e-mails and SMSs■
Direct communication with a controller or the control■
system via Modbus/TCP protocol
Simple signal processing with PC via ASCII protocol■
12. 12
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Flexibility through wireless signal transmission
PLICSRADIO (short distance)
With PLICSRADIO, sensors in the field can wirelessly
transmit the signals over distances of up to 1,000 m.
Remote parameter adjustment or remote diagnosis can
also be carried out without direct wire connection.
PLICSRADIO is a simple and reliable radio link for over-
coming obstacles, for expanding existing plants or for
integrating mobile plant components.
Integrated sensor power supply■
Additional display module in the field possible■
Connection of multiple sensors■
Very low wiring costs■
Protected data transmission■
Up to 7 radio frequencies in parallel operation possible■
Future-oriented wireless technologies
Wireless communication
Wireless signal transmission makes the deployment
of measuring instruments flexible as never before: the
instruments can be mounted in inaccessible locations
or on mobile system components with a minimum of
installation effort. With a new plant, this means shorter
servicing and shutdown periods from the very beginning.
With existing plants, extensions can be quickly and
unproblematically connected to existing infrastructure.
Modern wireless transmission systems work extremely
reliably and fulfil all industry requirements.
13. 13
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)))))))))))))))))
Wireless HART
The HART Communication Foundation (HCF) stand-
ardises future wireless communication solutions on the
basis of the HART protocol. Wireless HART sensors
communicate with each other and can therefore trans-
mit information serially over several hundred metres.
This system is preferably used for parameter adjustment
of sensors in the field as well as for diagnosis and for
asset management solutions.
Standardised wireless communication■
Networked communication■
Completely compatible to HART standard■
PLICSMOBILE (long distance)
The PLICSMOBILE with standard SIM card can send
data via a GSM/GPRS service provider. The integrated
energy management system has an autonomous standby
mode and sends the information in freely programmable
time intervals. A low operating voltage allows the device
to be supplied by an integrated rechargeable battery.
Parameter adjustment is carried out via a USB interface.
PLICSMOBILE is suitable for use with VEGA sensors with
HART, Profibus PA or Foundation Fieldbus interface.
Remote transmission of measured values■
Remote diagnosis and remote maintenance■
Data dispatch via public mobile phone network■
Quadband technology■
GSM/GPRS technology■
Power supply of the sensor■
14. 14
Data communication with VEGA signal conditioning instruments
Measured value transmission via e-mail
Via the e-mail server integrated in the signal condition-
ing instrument, current measured values can be sent at
freely definable times or intervals. A report can be sent
via e-mail when a level exceeds or falls below a certain
value. The instrument can also send status-driven
e-mails, for example when a fault occurs.
Calling up measured value and status files
Any http-capable software can be used to call up and
view measured value files. With Excel, for example,
the measured values can be read out automatically
and stored as a table at user-defined intervals. The
measured value and status files are available in
different formats.
Modern data communication with VEGA
signal conditioning instruments
Ethernet based communication systems today com-
bine automation engineering with information technol-
ogy. Beside their function as interface, devices at the
interface level also assume the task of providing the
field instruments with power and functioning as a bar-
rier for explosion protection. VEGA signal conditioning
instruments take over this gateway function between
4 … 20 mA/HART field instruments and the control
system. This technology provides all the possibilities
that fieldbus systems also offer.
Integrated web server
The available measured values can be displayed with
a standard browser (for example Internet Explorer) via
the web server integrated in the signal conditioning
instrument. Within a company network the query is
carried out via Ethernet. For remote querying, a signal
conditioning instrument with RS232 interface and
connected modem is implemented.
Data communication via Ethernet and Internet
15. 15
Simple inventory monitoring with WEB VV
User-friendly visualisation, long-term data storage, exten-
sive notification functions and interfaces to the most
common inventory management systems – that’s WEB-VV.
This modern, web technology-based VEGA software
makes simple and reliable inventory control of all tank data
possible both within the local network and worldwide over
the Internet. The possibilities reach from visualization of
levels for simple manual stock management, to completely
automatic recording and further processing of stock data in
inventory management systems.
The basis is perfect interaction with the on-site VEGA
measurement technology. Communication-capable signal
conditioning instruments like VEGAMET and VEGASCAN
are needed for this. If the data transmission is carried out via
telephone or mobile phone network, a fixed network or radio
modem is also required. When it comes to wireless data
exchange, PLICSRADIO and PLICSMOBILE are perfect
additions to the on-site equipment systems.
History graphic of measured values
Measured value graphic as bar chart
WEB-VV provides supply and demand information for manufacturers and buyers
16. 16
PLICSCOM – the multifunction talent
The indicating and adjustment module PLICSCOM is used
for measured value indication, adjustment and diagnosis.
It can be mounted on any plics®
instrument in four posi-
tions 90° apart. Adjustment is carried out via foil keys.
The structure of the menu is clearly arranged and allows
simple setup and commissioning. Status messages are
displayed in clear, easy-to-read text. All instrument data,
such as measuring range, process fitting and seal material,
can also be called up. When an instrument is exchanged,
PLICSCOM ensures that the measurement loop is
quickly up and running again: all sensor data is saved in
PLICSCOM and with a simple keypress it can be copied
into a replacement sensor.
External indicating and
adjustment unit VEGADIS
External indication and adjustment are carried out via
VEGADIS with integrated PLICSCOM. VEGADIS is
connected to the sensor through a standard cable up to
50 metres long.
VEGACONNECT
VEGACONNECT is an interface converter used to connect
communication capable VEGA instruments to the USB
interface of a PC. It can also be used as a universal HART
modem for sensors made by other manufacturers. An
adjustment software, like PACTware with appropriate DTM,
is required to set the parameters of these instruments.
All available electronics versions (HART, Profibus PA,
Foundation Fieldbus) are supported.
HART handheld terminals
HART handheld terminals enable on-site parameter
adjustment of sensors. To be able to access the HART
parameters of the sensors, the terminals must be
connected to the sensor cable via a minimum loop
resistance of 220 Ohm.
On-site parameter adjustment with VEGACONNECT (DTM)
and HART handheld terminal (EDD)
Indication and adjustment at eye level
Fieldbus and network-independent
communication options
17. 17
Different field instruments, one software
PACTware is a manufacturer and fieldbus independent
adjustment software for field instruments. Until now, several
manufacturer-specific programs often had to be run in paral-
lel to make use of the full range of functions of the different
field instruments. PACTware makes it possible to operate any
and all field instruments with only one software. In doing so,
PACTware implements a uniform interface between itself, the frame program, and
the individual software modules for instrument operation. This interface is called
FDT (Field Device Tool); the software modules for instrument operation are called
DTMs (Device Type Manager). This structure makes modern, user-friendly adjust-
ment strategies possible because the adjustment interface is optimally tuned to
each individual instrument. VEGA DTMs are developed according to the DTM
Style Guide, which ensures that all field instruments are operated via a standard-
ised adjustment interface.
What is more, PACTware can communicate via HART as well as all other current
fieldbus systems. Different communication DTMs are available for this purpose.
These instrument and communication DTMs can be combined in any way in
PACTware to meet specific requirements.
Configuration and parameter adjustment
with PACTware
18. 18
DTM
FDT Group and PACTware Consortium:
advocates of FDT technology
The FDT Group and the PACTware
Consortium strive to establish FDT
technology as a standard. In the
case of the FDT Group, the focus
is on the maintenance and further
development of FDT technology. The PACTware Consor-
tium, on the other hand, concentrates mainly on the FDT
framework application.
Parameter adjustment
of VEGA sensors with
DTM technology
Parameter adjustment of VEGA sensors
with DTM and EDD technology
Technical comparison of DTM and EDD
DTMs and EDDs are device descriptions that are
needed for integrating fieldbus instruments into auto-
mation systems. They follow different approaches to
realize that task. EDD (Enhanced Device Description) is
a textual description language that is interpreted by an
application software. It is a further development of the
description language previously known as DD. Different
types of devices can be operated and parameterised
with it. A DTM (Device Type Manager), on the other
hand, is a stand-alone software with a standardised
interface (FDT). The system environment ultimately
determines which of the two technologies is used.
19. 19
EDD
Parameter adjustment
of VEGA sensors with
EDD technology
The harmonisation and further development of the
language is advanced by the common interest group
EDDL Cooperation Team. To this group belong Fieldbus
Foundation, Profibus User Organisation, HART
Communication Foundation, OPC Foundation and the
FDT Group.
EDDL Cooperation Team:
advocate of EDD technology
HART Communication
Foundation, Profibus und
Foundation Fieldbus have
brought together and
extended their respective DDL description languages.
The result is a standardised description language called
Electronic Device Description Language (EDDL).
20. 20
Quality in development and service
VEGA pursues the objective of fulfilling all the require-
ments of a simple and stable Life Cycle Management
(LCM) as well as ensuring compatibility in device integra-
tion. That’s why, when it comes to software and hardware
development, VEGA orients itself with recommendation
NE 105, “Specifications for Integrating Fieldbus Devices
in Engineering Tools for Field Devices”, formulated by the
NAMUR task force. VEGA also supports the “Life Cycle
Policy” guideline drawn up by the FDT Group.
To ensure clear and comprehensible version relation-
ships, the instruments as well as the software of all
VEGA components are clearly labelled and provided
with version numbers.
Compatibility
When it develops new products or enhances existing
ones, VEGA guarantees complete downward compatibility.
Even new VEGA DTMs are globally downward compatible:
they work with both current instrument software and
with all previous software versions. Since an instrument
software version is not bound to defined DTM versions,
only one DTM version must be available for use on the PC.
Software update:■ A newly introduced instrument
software version with extended functionalities
also covers the older instrument generations
FDT/DTM:■ The current DTMs completely supersede
older DTM versions
VEGA quality management
21. 21
Download
VEGA software can be downloaded from the download
area of the VEGA website. This area is updated daily
and offers free of charge, at one central location, all
software packages required for VEGA instruments.
www.vega.com > Downloads > Software
Certificates
VEGA is an active member of the following research
groups and associations:
Profibus User Organisation■
Foundation Fieldbus■
HART Communication Foundation■
FDT Group■
PACTware Consortium e.V.■
All of our instruments are tested and certified
by neutral institutions:
HART Communication Foundation■
(HART instruments)
Profibus User Organisation (Profibus instruments)■
Foundation Fieldbus (FF instruments)■
DTMs and DDs are also checked and certified by
testing centres. Integration tests are regularly carried
out with manufacturers of control systems.
Interoperability test (HIST)
The Host Interoperability System Test (HIST) is a test
established by Foundation Fieldbus to assure that host
systems will interoperate correctly with registered field
instruments via the FF interface. VEGA sensors are
listed with all established FF control system suppliers
within the context of the HIST test conditions. The
current list of performed HISTs can be found in the
VEGA download area.
22. 22
VEGAMET 391
VEGAMET 624
VEGAMET 625
VEGASCAN 693
Signal conditioning instrument for up to 15 HART sensors
General level measurement and inventory recording with calibration function■
Integrated web server, time-controlled dispatch of levels via e-mail or SMS■
Signal conditioning instrument for up to 2 HART sensors
with integrated level switches
Extensive adjustment functions, such as e.g. scaling and linearisation■
Integrated web server, time-controlled dispatch of levels via e-mail or SMS■
Suitable for differential generation of two measuring points■
Signal conditioning instrument for continuous measurement
with integrated level switches
Extensive adjustment functions, such as e.g. scaling and linearisation■
Integrated web server, time-controlled dispatch of levels via e-mail or SMS■
Instrument overview
Signal conditioning instrument for continuous measurement
with integrated level switches
Extensive adjustment functions, such as e.g. scaling and linearisation■
Integrated web server, time-controlled dispatch of levels via e-mail or SMS■
Optionally available as SIL instrument according to IEC 61508■
Sensor input: 1 x 4 … 20 mA/HART
Current output: 1 x 0/4 … 20 mA
Relay output: 6 x spdt or 5 x spdt, 1 x fault indication
Sensor input: 1 x 4 … 20 mA/HART
Current output: 3 x 0/4 … 20 mA
Relay output: 3 x spdt, 1 x fault indication
Sensor input: 2 x HART (Multidrop mode)
Current output: 3 x 0/4 … 20 mA
Relay output: 3 x spdt, 1 x fault indication
Sensor input: 15 x HART or 5 x HART with Ex applications (Multidrop mode)
Relay output: 1 x fault indication
Interfaces: RS232 or Ethernet
23. 23
VEGADIS 61
PLICSCOM
PLICSMOBILE T61
VEGACONNECT 4
External indicating and adjustment unit including PLICSCOM
Suitable for external measured value indication and operation of plics■ ®
sensors
Digital and quasi-analogue indication of measured values■
Can be mounted separate from sensor and connected with up to 50 m long cable■
Pluggable indicating and adjustment unit for plics®
sensors
DOT matrix display with 4-key operation■
Clear text display with graphics support■
Display of echo curves■
Mountable in 90° increments■
External radio unit for plics®
sensors
GSM/GPRS radio module with quadband technology■
Integrated energy management with battery supply■
Suitable for data exchange with WEB-VV■
Operation via integrated USB interface■
Interface adapter between PC and communication-capable VEGA instruments
For use on PCs with USB interface■
Operated by means of DTM and adjustment program PACTware■
Particularly suitable for connecting to plics■ ®
sensors
Includes connection box with various connection cables and adapters■
24. 24
PLICSRADIO T61/T62
PLICSRADIO R61/R62
PLICSRADIO D61
PLICSRADIO C62
PLICSRADIO T61 Version for one HART sensor
PLICSRADIO T62 Version for up to 3 HART sensors, 2 digital inputs
Transmitting unit for wireless communication
Wireless communication for short distances up to 1,000 m■
2.4 GHz system (license and registration free)■
Particularly suitable for connection of plics■ ®
HART sensors
Suitable for supplying Ex sensors in the field■
Current output: 3 x 0/4 … 20 mA
Relay output: 3 x spdt, 1 x fault indication
Signal conditioning instrument for the wireless communication system PLICSRADIO
Standard signal conditioning instrument for 6 measuring points■
Suitable for connection of PLICSRADIO R62■
Remote query interfaces, web server, e-mail dispatch■
Indicating unit for wireless communication
On-site indicating unit, PLICSCOM included■
Can be used for distances up to 1,000 m■
Operation via PLICSCOM■
PLICSRADIO R61 Version with one 4 … 20 mA current output
PLICSRADIO R62 Version for use with PLICSRADIO C62
Receiving unit for wireless communication
Wireless communication for short distances up to 1,000 m■
2.4 GHz system (license and registration free)■
Indication of reception strength in PLICSCOM and DTM■
Instrument overview
25. 25
MoRoS
GSM/GPRS modem
Accessories
Switching cabinet VCCS11/VCCS14
Accessories for communication
Profibus DP/PA segment couplers■
Profibus T-distributor■
Profibus PC cards■
Ethernet switch■
Assembled, ready-to-operate switching cabinet
VCCS11:■ Suitable for one VEGAMET 391/624/625, VEGASCAN 693
or PLICSRADIO C62
VCCS14:■ Suitable for up to four VEGAMET 391/624/625, VEGASCAN 693
or PLICSRADIO C62
Simple integration of VEGA sensors into WEB-VV■
Free choice of communication interface■
GSM/GPRS modem for carrier rail mounting
Radio unit with quadband technology■
Suitable for connection of the signal conditioning instruments■
VEGAMET 391/624/625, VEGASCAN 693 and PLICSRADIO C62
Remote access via mobile phone network■
Serial RS232 interface■
Modem-router-switch for carrier rail mounting
Router functionality including 4-port switch■
Suitable for connection of the signal conditioning instruments■
VEGAMET 391/624/625, VEGASCAN 693 and PLICSRADIO C62
Connection via analogue, ISDN or GSM/GPRS modem■
26. 26
The modules
Every plics®
instrument is assembled from several modules:
the sensor is joined via a process fitting to a housing of
plastic, aluminium or stainless steel. Then comes the electro-
nics module, which is installed in the housing. The indicating
and adjustment module PLICSCOM is located on top of the
electronics, making it directly accessible after the lid is
unscrewed. Anyone who has once operated a plics®
instrument can operate all other plics®
instruments.
Easy is better
plics®
makes measurement technology simpler than ever
before: from selecting and ordering, setup and commis-
sioning, right through to maintenance and service. VEGA
has thought through this “easy is better” principle consis-
tently right down to the last detail. As a result, plics®
is
able to solve the most demanding measurement prob-
lems dealing with level, switching and pressure.
The plics®
modular concept
The idea behind plics®
is simple: after an order is
received, the measuring instrument is assembled from
prefabricated individual components. In this way, VEGA
customers get the optimal instrument for their particular
application requirements – custom-made and fast. The
modular principle also brings its cost advantage to bear,
because these instruments are simply more cost-effective
– throughout their entire life cycle.
plics®
– easy is better