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PROSOFT 6104-WA-PDPM模块备件

型号: PROSOFT 6104-WA-PDPM  分类: foxboro
  • PROSOFT 6104-WA-PDPM
  • PROSOFT 6104-WA-PDPM
  • PROSOFT 6104-WA-PDPM
  • PROSOFT 6104-WA-PDPM
  • PROSOFT 6104-WA-PDPM


PROSOFT 6104-WA-PDPM

如果主模块是主模块,则“主模块为活动”通道设置为非零
当前活动模块,即活动模块位于定义的机箱和插槽编号中
在OEM参数内。
如果激活模块正在运行,“激活模块已模拟”通道设置为非零
模拟,仅当模块不存在或模拟启用已启用时才会设置
已在系统中的模块配置中设置。INI文件。
3.可信TMR 24Vdc数字输出模块的应用–40信道
2414期罗克韦尔自动化出版物ICSTT-RM280N-EN-P
3.3.事件顺序配置
可以为自动事件序列(SOE)配置每个布尔输出变量
登录中。这适用于输出状态和线路故障状态变量。布尔变量
在数据字典编辑器中的变量定义期间为SOE配置。选择
在SOE中,按“布尔变量定义”对话框中的“扩展”按钮以打开
扩展定义对话框。然后选中事件序列框以启用
用于自动SOE日志记录的变量。
在运行期间,输出模块自动报告带时间戳的状态变化
输出数据的信息。TMR处理器会自动记录设备的状态变化
在系统SOE日志中配置SOE变量。可以监视SOE日志
使用运行在EWS上的SOE和Process Historian包检索。该软件
包在可信事件序列和过程历史包中描述,
出版物ICSTT-RM243(PD-T8013)。
3.4.系统。INI文件配置
输出模块有许多操作特性,可针对不同的需求进行定制
这是一个特殊的应用。系统配置管理器是一种工具,允许用户:
配置每个模块的具体操作特性。项目说明
包含可为受信任的24 Vdc数字输出模块T8451配置的输出电压
在可信工具集套件中,发布了ICSTT-RM249(PD-T8082)。
某些特性适用于整个模块,并被视为模块可配置
项目。其他特性适用于单个输出信道,并被视为信道
可配置项。每个可配置项都有特定的默认设置。如果
默认设置适用于给定的应用程序、模块的自定义
不需要系统配置管理器中的定义。
为了在输出断电时短路检测起作用
需要检测模板。
可信TMR 24Vdc数字输出模块–40信道4.运行
罗克韦尔自动化出版物ICSTT-RM280N-EN-P14-25期
4.操作
4.1.前面板
模块前面板上的状态指示灯可提供以下信息的视觉指示:
模块的运行状态和现场输出状态。每个指示器都是双色LED。
每个模块的顶部和底部都有一个推料器操纵杆,用于拆卸
从机箱中卸下模块。限位开关检测推料器的打开/关闭位置
杠杆。推料器操纵杆通常为l形

PROSOFT 6104-WA-PDPM

PROSOFT 6104-WA-PDPM模块备件

PROSOFT 6104-WA-PDPM

The ‘Primary Module is active’ channel is set to non-zero if the primary Module is the current Active Module, i.e. the Active Module is in the chassis and slot numbers defined within the OEM parameters. The ‘Active Module is simulated’ channel is set to non-zero if the Active Module is being simulated, this will only be set if the Module is not present or the simulation enable has been set within the Module’s configuration in the System.INI file. 3. Application Trusted TMR 24Vdc Digital Output Module – 40 Channel 24 Issue 14 Rockwell Automation Publication ICSTT-RM280N-EN-P 3.3. Sequence of Events Configuration Each Boolean Output Variable can be configured for automatic Sequence of Events (SOE) logging. This applies to the Output Status and Line Fault Status variables. A Boolean variable is configured for SOE during the variable definition in the Data Dictionary Editor. To select SOE, press the Extended Button in the Boolean Variable Definition Dialog Box to open the Extended Definition Dialog. Then check the box for Sequence of Events to enable the variable for automatic SOE logging. During operation, the Output Module automatically reports time-stamped change of state information for the output data. The TMR Processor automatically logs change of state for configured SOE variables into the system SOE Log. The SOE Log can be monitored and retrieved using the SOE and Process Historian Package running on the EWS. This software package is described in Trusted Sequence of Events and Process Historian Package, publication ICSTT-RM243 (PD-T8013). 3.4. System.INI File Configuration There are many operating characteristics of the Output Module that can be customised for a particular application. The System Configuration Manager is a tool that allows the user to configure the specific operating characteristics for each Module. Descriptions of the items that may be configured for the Trusted 24 Vdc Digital Output Module T8451 are contained in Trusted Toolset Suite, publication ICSTT-RM249 (PD-T8082). Certain characteristics apply to the entire Module and are considered Module Configurable Items. Other characteristics apply to individual output channels and are considered Channel Configurable Items. There are specific default settings for each of the configurable items. If the default settings are appropriate for a given application, customization of the Module definition in the System Configuration Manager is not required. In order for short circuit detection to function while outputs are de-energised, a short circuit detection template is required. Trusted TMR 24Vdc Digital Output Module – 40 Channel 4. Operation Rockwell Automation Publication ICSTT-RM280N-EN-P Issue 14 25 4. Operation 4.1. Front Panel Status indicators on the Front Panel of the Module provide visual indications of the Module’s operational status and field output status. Each indicator is a bi-colour LED. Located at the top and bottom of each Module is an ejector lever that is used to remove the Module from the Chassis. Limit switches detect the open/closed position of the ejector levers. The ejector levers are normally l



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