Description
8200-1301 WOODWARD 2301A Speed Control Controller
Non differential regulation is mainly used for constant speed control and is suitable for single machine operation or multiple prime movers working together in an isolated power grid. Differential regulation provides more control flexibility.
further enhancing its performance and application range.
rich additional functions, and high-precision output signals. Whether it is in the fields of generator sets, compressors, pump stations, or ships and locomotives, it can effectively ensure the stable operation of equipment within the set range.
power measurement level 1, editable screen, multi interface toolkit connection, etc. All details can be found in Woodward easyYgen manual 37582A
The rated operating temperature range of this model is -20 to 70 ° C; the rated temperature range of the LT model is -40 to 70 ° C, suitable for outdoor use.
8200-1301 is equipped with a monitor (not available on the 3100 model) and is designed for front panel installation.
The built-in HMI has a color LCD and soft keys (now with dedicated buttons) for direct control of the 8200-1301 device. Multi level password protection can prevent unauthorized changes.
The generator set has four operating modes and the option to configure a manual circuit breaker control device.
How to use 8200-1301?
What is 8200-1301 used for?
8200-1301 Customs Code
1. introductionabb dcs is a distributed control system designed and developed by Swiss Asea Brown Boveri Company (abbreviated as abb company). It has a wide range of applications and can be used in discrete manufacturing industries , such as machine tools, automobiles, aircraft manufacturing and other industries, as well as in large and medium-sized enterprises. Small-scale continuous production process industries, such as petroleum, chemical industry, thermal power units, steelmaking, building materials and other industries. abb dcs system adopts international standards from hardware design to software design and communication. The software programming language ampl (asea mas ter pi ece language) of abb dcs is a programming mode of the control system. This article introduces the architecture of abb dcs and its fieldbus network.2 abb dcs distributed industrial control computer system architectureabb dcs distributed control system uses advanced microprocessors (33mhz motorola 68020 and 33mhz intel 80386, 80486 chips), crt graphic display technology, high-speed safety communication technology and modern control theory to form an on-site control station (mp200, ac410 , ac450 series and local and remote i/o series), operator station (as500 series), engineer station (master ai d series), information management system station (advant station series ), computer and network interface station (master gate series), computer network (master bus series) and other computer communication equipment, it is a large-scale intelligent network with dispersed physical locations, dispersed system functions, dispersed control functions, and centralized operation display management for process control and process decision-making management. The communication network structure of abb dcs is divided into three layers:3 Information Management Network LayerIt can be connected to 9 control networks. The network is composed of type mb300 bus, and the bus transmission rate reaches 10mbps.4 Control network layerThe control network layer consists of 9 buses of type mb300. A control network may include 99 stations (including stations in local control networks). Each mp200/1 or ac450 station in the control network can be connected to a local control network. A local control network can include 9 buses of type mb300. mb300 is a high-performance, serial, synchronous, half-duplex high-speed bus with large data volume. It adopts ieee 802.2 logical link control (llc) protocol and ieee 802.3 carrier frame listening multiple access with conflict detection (csma/cd) media access control (mac) protocol. It is an ethernet type LAN and the bus can carry loads . 45 nodes. When no repeater is used, the maximum communication node distance is 500m; when using 3 coaxial segments, 4 repeaters and 2 point-to-point links, the maximum communication node distance is 2500m, and the bus transmission rate is 10mbps.mb300 realizes the connection to the host computer and communication with PLC systems such as MP200 through each node . It generally follows the 543 rule, that is, it is composed of 5 sections and 4 repeaters (repeater) connections, 3 of which can be connected to equipment. It must be noted that only the marked prescription of the cable can be connected through the transceiver ( tranceiver ) Equipment, different equipment connections use different connection cables, such as tk526 cable to the pu510 operating station, and tk576 cable to the control station. The tranceiver can only be installed at the 2.5-meter mark on the main cable section. The spacing between the tranceivers on the coaxial cable section between the two line joints should be an integer multiple of 25 meters. The connection method is as shown in the figure.t1 and t2 are terminal resistors . As long as one end is grounded, the terminal resistance is 50 ohms. The mb300 bus is a coaxial cable. It is divided into thick cable, thin cable and optical cable. Their functions are different. When laying the coaxial cable, you need to pay attention to it. Isolation from other signal cables, such as 30cm away from signal cables, 50cm away from 380v low-voltage cables, and 5m away from high-voltage cables. The mb300 bus uses the cs513 interface card. The three dial switches s1, s2, and s3 are used to set the network number, node number, and protocol number respectively. The low four bits of s1 are used to set the master/slave station selection. The high four bits are used to set the protocol number, s2 is used to set the node number, and s3 is used to set the network number. When it is necessary to modify or find out the cause of the fault through fault information, you can enter the engineering station to modify the data or know the fault location of the mb300 bus through the fault code. Understand the communication factors that affect mb300 and analyze these factors one by one.
3462-757 Controller debugger generator WOODWARD
9905-969 WOODWARD Speed Sensor Full Series
9905-973 Controller debugger generator WOODWARD
8440-1849 From Woodward, USA
5437-092 WOODWARD Speed Sensor Full Series
5464-538 Generator Parts Speed Controller 2301A Speed
8272-447 WOODWARD Speed Sensor Full Series
5501-469 WOODWARD generator set speed control board
5466-329 Controller debugger generator WOODWARD
5461-944 WOODWARD generator set speed control board
5462-532 WOODWARD 2301A Speed Control Controller
8516-038 WOODWARD Speed Sensor Full Series
5464-332 Controller debugger generator WOODWARD
5461-653 WOODWARD 2301A Speed Control Controller
8923-811 WOODWARD generator set speed control board
5464-836 WOODWARD generator set speed control board
5462-520 WOODWARD generator set speed control board
8236-144 WOODWARD Speed Sensor Full Series
5415-737 WOODWARD Speed Sensor Full Series
5463-750 WOODWARD 2301A Speed Control Controller
1886-313 WOODWARD Speed Sensor Full Series
8516-039 WOODWARD Speed Sensor Full Series
5500-018 WOODWARD generator set speed control board
8273-126 WOODWARD 2301A Speed Control Controller
8440-2150 From Woodward, USA
5437-860 Generator Parts Speed Controller 2301A Speed
A9904-060 Generator Parts Speed Controller 2301A Speed
5463-482 From Woodward, USA
5463-408 WOODWARD Speed Sensor Full Series
5463-034 From Woodward, USA
5464-542 WOODWARD 2301A Speed Control Controller
9907-1198 Generator Parts Speed Controller 2301A Speed
9907-1183 WOODWARD Speed Sensor Full Series
5501-466 WOODWARD generator set speed control board