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8200-1300  WOODWARD  图形前面板人机界面   漳州风云

主营世界知名品牌的PLC,DCS系统备件,模块卡件控制器,各种冷门停产型号

8200-1300 WOODWARD 图形前面板人机界面 漳州风云

品牌:WOODWARD

P/ n:8200-1300

目录描述:图形前面板人机界面

原产地:美国

漳州风云提供8200-1300等DCS/PLC,漳州风云珊妮为您报价,并提供一年保修服务。

8200-1300质量高价格实惠有多种型号。

The Woodward 8200-1300 is an integrated graphical front panel HMI that is designed to control single or dual (split range) actuator steam turbines and features LVDC (18-32 Vdc) power.

  • 电话/Phone:17350880093 (微信同号)
  • 联系人:周工
  • 邮箱/Email:sales@fyplc.cn
  • QQ:671008040
  • 地址:漳州市龙文区朝阳北路1号办公楼205

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产品详细说明

产品细节说明:8200-1300 WOODWARD 图形前面板人机界面

  • 设计有五个PID控制器,包括速度/负载PID控制器、串级PID控制器以及AUX1和AUX2 PID控制器。
  • 提供热启动和冷启动的自动启动排序,具有温度输入选项。
  • 三速段的临界速度回避功能。
  • 十个外部报警输入和十个外部DI跳闸输入。
  • 带有相关RTC时间戳的跳闸和警报事件的跳闸指示。
  • 内部包括一个看门狗定时器和一个CPU故障电路,用于监控微处理器及其存储器的运行。
  • 可用于非危险场所,也适用于I类,Div. 2,组A/B/C/D位置。
  • 通常安装有额定温度至少为75摄氏度的绞合铜现场布线。

8200-1300

产品详情参数:8200-1300 WOODWARD 图形前面板人机界面

  1. 电源
    • 输入电压:符合LVDC(18–32 Vdc)标准。
  2. 工作环境
    • 工作温度:–30°C至+70°C(带显示器)。
    • 储存温度:–30°C至+70°C(推荐温度范围为0°C至40°C)。
  3. 显示与操作
    • 屏幕尺寸:8.4英寸。
    • 面板功能:包括紧急停止按钮、启动、停止、esc和主页按钮、数字键盘、向上/向下切换按钮以及带有上/下和左/右按钮的输入键。
    • LED指示灯:面板左侧有四个LED,分别用于显示CPU运行状况、IO锁定、摘要警报和摘要跳闸。
  4. 通信与连接
    • 支持以太网通信,用于连接工厂DCS(分布式控制系统)、维修工具和RemoteView操作员控制面板。
    • 适用于Woodward VariStroke执行机构和DSLC-II电源管理网络的CANOpen执行机构连接。

8200-1300 WOODWARD  应用领域:

WOODWARD 8200-1300图形前面板人机界面广泛应用于需要精确控制蒸汽轮机的工业场合,如发电厂、化工厂、石油和天然气行业等。其先进的控制算法和用户友好的界面使得操作人员能够轻松地对蒸汽轮机进行监控和调整,确保生产过程的稳定性和安全性。WOODWARD 8200-1300是一款功能强大、性能稳定的图形前面板人机界面,专为蒸汽轮机控制而设计。它集成了多种先进的控制功能和用户友好的界面,使得操作人员能够轻松地对蒸汽轮机进行监控和调整。同时,其高可靠性和适应性也使其在各种工业场合中得到了广泛的应用。

Product details: 8200-1300 WOODWARD graphic front panel human-machine interface
There are five PID controllers designed, including speed/load PID controller, cascade PID controller, and AUX1 and AUX2 PID controllers.
Provide automatic start sorting for hot start and cold start, with temperature input options.
The critical speed avoidance function in the three speed range.
Ten external alarm inputs and ten external DI trip inputs.
Trip indication with relevant RTC timestamps for trip and alarm events.
Internally, it includes a watchdog timer and a CPU fault circuit to monitor the operation of the microprocessor and its memory.
Can be used in non hazardous areas and is also suitable for Class I, Div. 2, Group A/B/C/D positions.
Usually, stranded copper field wiring with a rated temperature of at least 75 degrees Celsius is installed.
Product details and parameters: 8200-1300 WOODWARD graphic front panel human-machine interface
Power Supply:
Input voltage: Complies with LVDC (18-32 Vdc) standard.
Work environment:
Working temperature: -30 ° C to+70 ° C (with display).
Storage temperature: -30 ° C to+70 ° C (recommended temperature range is 0 ° C to 40 ° C).
Display and operation:
Screen size: 8.4 inches.
Panel functions: including emergency stop button, start, stop, ESC and home buttons, numeric keypad, up/down toggle button, and input keys with up/down and left/right buttons.
LED indicator lights: There are four LEDs on the left side of the panel, which are used to display CPU operating status, IO lockout, summary alarm, and summary trip.
Communication and Connection:
Supports Ethernet communication for connecting factory DCS (distributed control system), maintenance tools, and Remote View operator control panel.
CANOpen actuator connection for Woodward VariStroke actuators and DSLC-II power management network.
8200-1300 WOODWARD Application Fields:

The WOODWARD 8200-1300 graphical front panel human-machine interface is widely used in industrial applications that require precise control of steam turbines, such as power plants, chemical plants, and the oil and gas industry. Its advanced control algorithms and user-friendly interface enable operators to easily monitor and adjust the steam turbine, ensuring the stability and safety of the production process. WOODWARD 8200-1300 is a powerful and stable graphical front panel human-machine interface designed specifically for steam turbine control. It integrates multiple advanced control functions and user-friendly interfaces, allowing operators to easily monitor and adjust the steam turbine. Meanwhile, its high reliability and adaptability have also made it widely used in various industrial settings.

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