Description
(2) Open control function
The system controller uses a RISC processor chip, and the program adopts a task running mode. Each task can set the running cycle and running priority. Therefore, it can not only meet the
control requirements of complex regulating loops (generally requiring a long control period), but also meet the fast electrical switching control requirements, so that one controller can cover
the control requirements of all aspects of the factory. A large number of user-defined control function blocks are reserved during programming. Users can add or subtract functions according to future production needs
. The application of the IEC61131-3 programming standard allows users to quickly become familiar with it as long as they have some basic knowledge. The system is programmed.
(3) System global database technology
The core technology of the system”s global database is “decentralized storage , global management”. The system programming software only generates a project file for the project
. Although each controller opens up a certain space as a data variable storage area, there is only a global system variable table on the system programming software for data exchange between the
operator station and the process station. There is no need to convert the database to direct access programming. The modification and inspection of variables are also global to the system.
The configuration of the system”s process station and operator station is a set of software. The installation, commissioning and start-up of the automatic control part of the entire project only took two or three weeks, which is a very important factor.
(4) Open TCP/IP protocol
Ethernet technology uses TCP/IP protocol Ethernet modules in the operator station, engineering station and process, so that the system can be connected to the factory LAN without adding additional
equipment. Since the system supports standard DDE and OPC data exchange standards, the system can be connected with various Data exchange with third-party databases or software will be easier.
(5) The system is easy to expand
The system software has no resource limit. If the user needs technical transformation in the future, new control points, process stations,
and engineering station software do not need to be purchased again. During programming, only a few resources can be added under the original project file project tree
, which will facilitate the user”s future system development. expansion and long-term development.
(6) Chinese interface
The system menu, operation panel, system character table and system prompt information are all in Chinese.
4. Characteristics of S800 I/O station
Industrial IT”s I/O modules are all intelligent modules with their own CPUs. Their main functions are signal conditioning and A/D, D/A conversion,
and completing various data including linearization and engineering unit conversion. preprocessing.
As a distributed process I/O station, S800 I/O is modular in design, economical, flexible, easy to install and wire, and can be directly connected to the
drive system. Its modules and terminal blocks can be combined at will to suit different space and application requirements.
Excitation system ABB module IMASO11
Excitation system ABB module IMASO01
Excitation system ABB module IMASM04
Excitation system ABB module IMASM03
Excitation system ABB module IMASM02S
Excitation system ABB module IMASM02
Excitation system ABB module IMASM01
Excitation system ABB module IMASI23
Excitation system ABB module IMASI23
Excitation system ABB module IMASI23
Excitation system ABB module IMASI23
Excitation system ABB module IMASI13
Excitation system ABB module IMASI13
Excitation system ABB module IMASI03
Excitation system ABB module IMASI02S
Excitation system ABB module IMASI02
Excitation system ABB module IMASI02
Excitation system ABB module IMAS113
Excitation system ABB module IMAS011
Excitation system ABB module IMAS011
Excitation system ABB module IMAS001
Excitation system ABB module IMAOM01
Excitation system ABB module IMAMM03
Excitation system ABB module IMAMI01
Excitation system ABB module IKTU02-3
Excitation system ABB module IKTU01-6.6
Excitation system ABB module IKLS01-2.2
Excitation system ABB module IKLM01-5
Excitation system ABB module IKLM01-3
Excitation system ABB module IKAS01-6.4
Excitation system ABB module IISACO1
Excitation system ABB module IISAC01
Excitation system ABB module IISAC01
Excitation system ABB module IIPLM01
Excitation system ABB module IIMTM01
Excitation system ABB module IIMSM01
Excitation system ABB module IIMRM02
Excitation system ABB module IIMRM01
Excitation system ABB module IIMPM02
Excitation system ABB module IIMPM01
Excitation system ABB module IIMLM01
Excitation system ABB module IIMKM02A
Excitation system ABB module IIMKM02
Excitation system ABB module IIMKM01A
Excitation system ABB module IIMKM01
Excitation system ABB module IIMGC04
Excitation system ABB module IIMGC03
Excitation system ABB module IIMGC02
Excitation system ABB module IIMGC01
Excitation system ABB module IIMCP02
Excitation system ABB module IIMCP01
Excitation system ABB module IIMCL01
Excitation system ABB module IIEDI01
Excitation system ABB module IIAMS01
Excitation system ABB module IIADP02
Excitation system ABB module IIADP01
Excitation system ABB module IEPWM02
Excitation system ABB module IEPU02
Excitation system ABB module IEPRD01
Excitation system ABB module IEPMU01
Excitation system ABB module IEPEP07
Excitation system ABB module IEPEP04
Excitation system ABB module IEPEP03
Excitation system ABB module IEPEP01
Excitation system ABB module IEPDS02
Excitation system ABB module IEPDS01
Excitation system ABB module IEPDP01
Excitation system ABB module IEPBM01
Excitation system ABB module IEPAS02
Excitation system ABB module IEPAS02
Excitation system ABB module IEPAS01
Excitation system ABB module IEPAS01
Excitation system ABB module IEPAF02
Excitation system ABB module IEPAF01
Excitation system ABB module IEMMU22
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