8250-570 WOODWARD 2301A Speed Control Controller

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Description


8250-570 WOODWARD 2301A Speed Control Controller

8250-570 Product Introduction

 
8250-570 Details:
 
 
The WOODWARD 8250-570 speed controller has a series of significant product features that make it an ideal choice for engine or generator speed control in industrial applications. The following are its main characteristics:
 
Wide application range: This speed controller can be used in diesel engines, gas engines, steam turbines, or gas turbines, with a wide range of applicability.
Flexible signal input: This controller can set the speed or load of the device based on computer control signals of 4-20mA or 1-5 Vdc, providing users with multiple options to meet different control needs.
Multiple working modes: This controller has two working modes: zero difference adjustment and differential adjustment.
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.
Highly integrated: This speed controller can be used in conjunction with a range of Woodward devices, such as power automatic transferors, input-output controllers, generator load controllers, etc., to achieve more comprehensive system control.
Rich additional functions: In addition to basic speed or load control functions, the controller also has functions such as synchronous or deceleration control, high and low speed adjustment, and fuel limit for override start,
further enhancing its performance and application range.
High precision output signal: The output signal provided by the controller is proportional to the fuel setting required to achieve the desired speed/load, ensuring precise control.
Durable and sturdy: The design takes into account the complexity of industrial environments, allowing the controller to operate stably under various harsh conditions.
In summary, the WOODWARD 8250-570 speed controller plays an important role in industrial applications due to its wide application range, flexible signal input, multiple working modes, high integration,
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.

8250-570 is manufactured by Woodward in the company”s easyYgen 3000XT series. The XT series has some updated features on the older 3000 series. Some new features include plug-in replacement,
power measurement level 1, editable screen, multi interface toolkit connection, etc. All details can be found in Woodward easyYgen manual 37582A
This model is the 3200XT-P1 (Package 1) version. A significant difference between the 8250-570 and similar 3200XT-P1-LT models is their operating temperature range.
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.
8250-570 is equipped with a monitor (not available on the 3100 model) and is designed for front panel installation.
The toolkit software used for controlling the generator set has multilingual functionality. English, French, German, and Japanese are just a few of the fourteen supported languages.
The built-in HMI has a color LCD and soft keys (now with dedicated buttons) for direct control of the 8250-570 device. Multi level password protection can prevent unauthorized changes.
The easyYgen 3000XT model 8250-570 has three freely configurable PID controllers. It provides input and output control (kW and kvar), as well as MCB and GCB synchronization (sliding/phase matching).
The generator set has four operating modes and the option to configure a manual circuit breaker control device.

How to use 8250-570?
What is 8250-570  used for?
8250-570 Customs Code

Contact Us
 
Mobile phone: 18350224834
 
E-mail: sauldcsplc@outlook.com
 
WhatsApp:+86 18350224834

The communication bus can be changed according to user needs without changing the communication interface. This is a flexible choice based on ABB”s unique FBP bus technology. Different bus protocols can be changed by simply changing FBP bus adapters of different types of buses (bus types) on the same FBP bus adapter (neutral bus interface). For example Profibus or DeviceNet. This change does not require the user to make any special settings. It only requires changing to the corresponding FBP bus adapter and making some simple configurations in the software. The control system automatically recognizes changes in the communication protocol of the connected electrical equipment. This brings convenience to users when changing between standard fieldbuses. ABB”s AC500 series PLC can also run as a fieldbus slave station through the FBP adapter.image 33.2 Simplify the entire fieldbusThe FBP bus adapter can easily and quickly connect to any bus system to simplify the entire fieldbus. ABB is now able to offer a bus-independent interface plug-in, which means that suppliers no longer need to redesign their products for different target bus markets. Each automation device can be connected to the bus through the corresponding bus plug-in, and one bus protocol corresponds to one bus plug-in. For example, to connect a motor starter to the DeviceNet bus, you only need to connect the DeviceNet bus plug-in to a standard motor starter.This fieldbus plug-in meets all electronic data transmission needs by converting data on the connected bus into a neutral data format recognized by standard automation devices and vice versa.ABB”s motor controllers and motor starters are equipped with a bus-independent FBP interface. All installation engineers only need to hang the prepared FBP connection cable corresponding to the corresponding bus interface directly to the field bus.The FBP fieldbus plug can complete the connection between some special switches and automation equipment and the process controller. The design of the plug-in is also very simple. One end is a universal interface that has nothing to do with the bus type, and the other end is an interface that conforms to a specific bus standard. The compact interface is equipped with an intelligent electronic conversion device, which can convert neutral device data into a language form that can be understood by buses such as AS-i or DeviceNet.4. FBP bus adapter is used in hardware configuration of intelligent motor controller (UMC)In order to better illustrate the flexible application of ABB FBP fieldbus adapter in intelligent motor controllers, we use ABB”s AC500 series programmable controller and Profibus bus adapter for illustration.Application of ABB FBP bus adapter in intelligent motor controller 1:Figure 4 Application of FBP bus adapter in smart motorsIn Figure 4, the automation control management units (PLCs) use ABB”s AC500 series PM581 as the programmable controller CPU . The CPU has: LCD display, a set of operation buttons, an SD card expansion port and two integrated Serial communication port, CPU base plate integrates Ethernet interface , and retains CS31 communication interface, which has the characteristics of good compatibility with AC31 series PLC.FBP fieldbus adapter: PDP22-FBP.xxx; related cables and accessories: PDA11-FBP.xxx and PDR11-FBP.150 terminating resistor . The PLC communication master station connects simply and quickly through the FBP bus adapter to the intelligent motor controller UMC22 with neutral interface, soft starter and other field devices, thereby achieving a seamless connection from the control layer to the field layer. FBP bus adapters are also widely used in situations where equipment is relatively scattered. Some sites are far apart, especially some on-site sites, which are more than 100 meters apart. Therefore, the transmission rates of all networks are set to the same to ensure reliable communication. In addition to distributed I/O , circuit breakers and sensors located at the production site, the bus network system of intelligent motor controllers and frequency converters is distributed in the motor control center (IMCC) room, which realizes centralized control of the motor and unified manage.

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