HIMA F3213A工控DCS系統(tǒng)備件
報(bào)警和低低報(bào)警:當(dāng)達(dá)到或超過(guò)配置值時(shí),將觸發(fā)低低報(bào)警或高高報(bào)警。配置值必須低于/高于相應(yīng)的低/高報(bào)警限值。高報(bào)警和低報(bào)警:當(dāng)達(dá)到或低于(高于)配置值時(shí),將觸發(fā)低(高)報(bào)警。高報(bào)警死區(qū)和低報(bào)警死區(qū):工程單位中高于報(bào)警條件(低死區(qū))或低于報(bào)警條件(高死區(qū))的范圍,即使報(bào)警條件消失,報(bào)警狀態(tài)位也可以保持設(shè)置。要清除報(bào)警狀態(tài),通道輸入必須超出死區(qū)范圍。報(bào)警死區(qū)不應(yīng)導(dǎo)致報(bào)警清除條件超出工程單位用戶限制范圍。例如,如果通道的工程單位范圍為-1000.0至+1000.0,且高報(bào)警設(shè)置為+100.00,則高報(bào)警死區(qū)值范圍為0.0至小于1100.0。1100.0或更大的死區(qū)將使高報(bào)警清除條件低于–1000.0單位,從而使報(bào)警無(wú)法在限制范圍內(nèi)清除。高報(bào)警(Eng單位)低報(bào)警(Eng單位)低-低報(bào)警(Eng單位)高-高報(bào)警死區(qū)(Eng單元)高-低報(bào)警死區(qū)(Eng單元)低-報(bào)警死區(qū)(Eng單元)用戶偏移16位整數(shù)范圍:-32768到32768 32位浮點(diǎn),范圍:-3.40282e+38到3.40282e+38。0.0(默認(rèn)值)工程單位偏移以更改輸入通道的基礎(chǔ)。該值在報(bào)警檢查之前添加到通道上的縮放值。軟件過(guò)濾已禁用(默認(rèn))或已啟用控制是否對(duì)輸入執(zhí)行軟件過(guò)濾。PACSystems*RX3i系統(tǒng)手冊(cè)第10節(jié)GFK-2314T 2019年9月模擬輸入模塊403積分時(shí)間(ms)0(默認(rèn)值)到4294967295 ms指定軟件濾波器達(dá)到輸入值63.2%的時(shí)間量(毫秒)。值為0表示軟件過(guò)濾器已禁用。值為100表示數(shù)據(jù)將在100毫秒內(nèi)達(dá)到其值的63.2%。診斷報(bào)告啟用禁用(默認(rèn))或啟用(僅當(dāng)在設(shè)置選項(xiàng)卡上啟用模塊級(jí)診斷報(bào)告時(shí)可用)。如果啟用了診斷報(bào)告,模塊將在診斷參考存儲(chǔ)器中報(bào)告通道報(bào)警??梢詥为?dú)啟用通道報(bào)警。故障報(bào)告啟用如果啟用了故障報(bào)告,則模塊會(huì)在I/O故障表中記錄每次發(fā)生通道報(bào)警的故障日志??梢詥为?dú)啟用通道報(bào)警的故障報(bào)告。9.9.5.3輸入縮放:ALG233在4至20 mA范圍內(nèi),輸入數(shù)據(jù)進(jìn)行縮放,使4 mA對(duì)應(yīng)于0的計(jì)數(shù),20 mA對(duì)應(yīng)于32000的計(jì)數(shù)。在0至20mA范圍內(nèi),
Alarm and Low-Low Alarm: When the configured value is reached or passed, a Low-Low Alarm or High-High Alarm is triggered. The configured values must be lower than/higher than the corresponding low/high alarm limits. High Alarm and Low Alarm: When the configured value is reached or below (above), a Low (High) Alarm is triggered. High and Low Alarm Deadbands: A range in Engineering Units above the alarm condition (low deadband) or below the alarm condition (high deadband) where the alarm status bit can remain set even after the alarm condition goes away. For the alarm status to clear, the channel input must fall outside the deadband range. Alarm Deadbands should not cause the alarm clear condition to be outside the Engineering Unit User Limits range. For example, if the engineering unit range for a channel is -1000.0 to +1000.0 and a High Alarm is set at +100.0, the High Alarm Deadband value range is 0.0 to less than 1100.0. A deadband of 1100.0 or more would put the High Alarm clear condition below –1000.0 units making the alarm impossible to clear within the limits. High Alarm (Eng Units) Low Alarm (Eng Units) Low-Low Alarm (Eng Units) High-High Alarm Deadband (Eng Units) High Alarm Deadband (Eng Units) Low Alarm Deadband (Eng Units) Low-Low Alarm Deadband (Eng Units) User Offset 16-bit Integer range: -32768 through 32768 32-bit Floating-point, range: -3.40282e+38 through 3.40282e+38. 0.0 (default) Engineering Units offset to change the base of the input channel. This value is added to the scaled value on the channel prior to alarm checking. Software Filtering Disabled (default) or Enabled Controls whether software filtering will be performed on the inputs. PACSystems* RX3i System Manual Section 10 GFK-2314T Sept. 2019 Analog Input Modules 403 Integration Time (ms) 0 (default) through 4,294,967,295 ms Specifies the amount of time in milliseconds for the software filter to reach 63.2% of the input value. A value of 0 indicates software filter is disabled. A value of 100 indicates data will achieve 63.2% of its value in 100ms. Diagnostic Reporting Enable Disabled (default) or Enabled (Available only if Module Level Diagnostic Reporting is enabled on the Settings tab.) If Diagnostic Reporting is enabled, the module reports channel alarms in the Diagnostic Reference memory. Channel alarms can be individually enabled. Fault Reporting Enable If Fault Reporting is enabled, the module logs a fault log in the I/O Fault table for each occurrence of a channel alarm. Fault reporting for channel alarms can be individually enabled. 9.9.5.3 Input Scaling: ALG233 In the 4 to 20 mA range, input data is scaled so that 4 mA corresponds to a count of 0 and 20 mA corresponds to a count of 32000. In the 0 to 20 mA range,