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5X00594G01模块备件

型号: 5X00594G01  分类: foxboro
  • 5X00594G01
  • 5X00594G01
  • 5X00594G01
  • 5X00594G01
  • 5X00594G01


 

5X00594G01

机组位置:PLC运行模式
0:禁用
PLC操作模式被禁用。
1: 单循环后停止
如图5-23所示,驱动器在以下情况下自动停止
一个运行周期,并在接收运行时开始
再次发出命令。

命令
F1
f2
F3
f 4
f 5
f6
F7
T1 T2 T3 T4 T5 T6 T7
a1
a2
a3
d3
a4
d5
a5
a6
d7
d7
图5-23 PLC单循环后的停止模式
2: 单循环运行后保持终值
如图5-24所示,驱动器将保持
后级工作频率和方向
完成一个操作周期。

命令
F1
f2
F3
f 4
f 5
f6
F7
T1 T2 T3 T4 T5 T6 T7
a1
a2
a3
d3
a4
d5
a5
a6
d7
图5-24单周期后保持频率
3(连续运行):参见图5-25,驱动器将
之后自动开始下一个操作周期
完成一个操作循环,直到接收停止
命令

命令
停止
命令
f1
f2
f3
f4
f5
f6
f7
T1
PLC
活动
f1
f2
f3
f4
f5
f6
f7
f1
d1
d1d2
一个周期和二个周期。。。
T2 T3 T4 T5 T6 T7 T1 T2 T3 T3 T5 T4 T6 T1
图5-25 PLC连续运行
十位:PLC操作暂停后重新启动
0:从一节开始操作
如果在PLC运行过程中,由于接收
停止命令、故障或电源故障,它将从
重启后的一阶段。
1: 从驱动器停止的阶段继续
在PLC运行期间,由于以下原因,驱动器停止:
接收到停止命令或故障时,将记录
运行时间,并将从以下阶段开始继续:
驱动器在以定义的频率重新启动后停止
如图5-26所示。
停止信号
...
一阶段
F1
a1
输出频率Hz
剩余时间
二阶段
f2
d2
a2
…f3
a3
a1:1阶段Acc时间2:2阶段Acc
a3:三阶段的Acc时间2:二阶段的Dec时间
f 1:1阶段的频率2:2阶段的频率
f 3:3阶段的频率
操作
时间
二阶段
时间

d
f
图5-26 PLC启动模式1
2: 继续以驱动时的频率运行
停止
在PLC运行期间,由于以下原因,驱动器停止:
接收到停止命令或故障时,将记录
操作时间和当前频率。它将继续下去
以记录的频率从以下阶段开始运行:
如图5-27所示,它只是在重新启动时停止。
注:
模式1和模式2的区别在于:
2、驱动器可以记录工作频率,当
545章参数介绍
EV2000系列通用变速驱动用户手册
之后,驱动器停止并将以记录的频率运行
重新启动。
a 1:阶段1的Acc时间2:阶段2的Acc
a 3:3阶段的Acc时间2:2阶段的Dec时间
f 1:1阶段的频率2:2阶段的频率
f 3:3阶段的频率
停止信号
...
一阶段
F1
a1
操作
时间
二阶段
剩余时间
二阶段
输出频率Hz
时间
f2
d2
a2…F3 a3 d2


f
图5-27 PLC启动模式2
百家场所:通电后存储PLC状态
失败
0:不保存
之后,驱动器不保存PLC运行状态
断电后一阶段开始运行
重新启动。
1: 保存
记忆PLC操作的操作参数
在电源故障(包括操作阶段)之后,
操作频率和操作时间。驱动器将
继续在“十”定义的模式下运行
位置
千位:时间单位
0:秒
1: 分钟
该单元仅适用于定义PLC运行时间。
确定PLC运行中的Acc/Dec时间单位
通过F9.09。
注:
1.如果PLC的该阶段的时间
操作设置为0。
2.您可以使用终端暂停和禁用PLC
并清除存储的参数。看
F7组参数介绍。
F4.011阶段设定范围:000~323【000】
F4.021阶段时间范围:0~6500s(min)【20.0s】
F4.03二阶段设定范围:000~323【000】
F4.04二阶段时间范围:0~6500s(min)【20.0s】
F4.05三阶段设定范围:000~323【000】
F4.06三阶段时间范围:0~6500s(min)【20.0s】
F4.074阶段设置范围:000~323【000】
F4.08四阶段时间范围:0~6500s(min)【20.0s】
F4.095阶段设置范围:000~323【000】
F4.105阶段时间范围:0~6500s(min)【20.0s】
F4.116阶段设置范围:000~323【000】
F4.126阶段的时间范围:0~6500s(min)【20.0s】
F4.137阶段设置范围:000~323【000】
F4.147阶段的时间范围:0~6500s(min)【20.0s】
F4.01、F4.03、F4/05、F4-07、F4:09、F4=11和F4:13为
用于配置工作频率、方向和
每个PLC操作阶段的Acc/Dec时间。这些
功能均按数字选择,如图5-28所示。
PLC的7个阶段可以对应于MS或close
循环正在运行。
A、B、C、D
频率设置
0:预设频率i
1: 由F0.00确定
2: 预设闭环参考i
3: 由F5.01确定
Acc/Dec时间选择
0:Acc/12月1日
1: Acc/12月2日
2: Acc/12月3日
3: Acc/12月4日
运行方向选择
0:转发
1: 逆转
2: 由操作决定
命令
保留
图5-28 PLC一阶段设置(I=1~7)
哪里
A: 千人之地B:百人之地

5X00594G01
5X00594G01模块备件

5X00594G01

Unit’s place: PLC operation mode
0:disabled
PLC operation mode is disabled.
1: Stop after single cycle
As shown in Fig. 5-23, the drive stops automatically after
one cycle of operation and will start when receiving RUN
command again.
RUN
command
f 1
f 2
f 3
f 4
f 5
f 6
f 7
T1 T2 T3 T4 T5 T6 T7
a1
a2
a3
d3
a4
d5
a5
a6
d7
d7
Fig. 5-23 Stopping mode after single cycle of PLC
2: Maintain the final value after single cycle of operation
As shown in Fig. 5-24, the drive will maintain the
operating frequency and direction of last stage after
completing one cycle of operation.
RUN
command
f 1
f 2
f 3
f 4
f 5
f 6
f 7
T1 T2 T3 T4 T5 T6 T7
a1
a2
a3
d3
a4
d5
a5
a6
d7
Fig. 5-24 Maintaining the frequency after single cycle
3 (continuous operation): See Fig. 5-25, the drive will
start next cycle of operation automatically after
completing one cycle of operation until receiving STOP
command.
RUN
command
STOP
command
f1
f2
f3
f4
f5
f6
f7
T1
PLC
operation
f1
f2
f3
f4
f5
f6
f7
f1
d1
d1d2
First cycle Second cycle ...
T2 T3 T4 T5 T6 T7 T1 T2 T3 T4 T5 T6 T7 T1
Fig. 5-25 Continuous operation of PLC
Tens’ place: Restart after PLC operation pause
0: Operate from first section
If the drive stops during PLC operation due to receiving
STOP command, fault or power failure, it will run from
the first stage after restarting.
1: Continue from the stage where the drive stops
When the drive stops during PLC operation due to
receiving STOP command or fault, it will record the
operating time and will continue from the stage where
the drive stops after restart at the frequency defined for
this stage, as shown in Fig. 5-26.
Stopping signal
...
Stage 1
f 1
a1
Output freq.Hz
Remnant time of
stage 2
f 2
d2
a2
... f3
a3
a1: Acc time of stage 1 2: Acc time of stage 2
a3: Acc time of stage 3 2: Dec time of stage 2
f 1: Freq. of stage 1 2 : Freq. of stage 2
f 3: Freq. of stage 3
Operating
time of
stage 2
Time
a
d
f
Fig. 5-26 PLC start mode 1
2: Continue to operate at the frequency when the drive
stops
When the drive stops during PLC operation due to
receiving STOP command or fault, it will record the
operating time and the current frequency. It will continue
running at the recorded frequency from the stage where
it just stops upon restart, as shown in Fig. 5-27.
     Note:
The difference between mode 1 and mode 2 is that in mode
2, the drive can record the operating frequency when the 
54 Chapter 5 Parameter Introductions
EV2000 Series Universal Variable Speed Drive User Manual
drive stops and will run at the recorded frequency after
restart.
a 1: Acc time of stage 1 2 : Acc time of stage 2
a 3: Acc time of stage 3 2 : Dec time of stage 2
f 1: Freq. of stage 1 2 : Freq. of stage 2
f 3: Freq. of stage 3
Stopping signal
...
Stage 1
f 1
a1
Operating
time of
stage 2
Remnant time of
stage 2
Output freq. Hz
Time
f 2
d2
a2 ... f 3 a3 d2
a
a
f
Fig. 5-27 PLC starting mode 2
Hundred’s place: Store the PLC status after power
failure
0: Not save
The drive does not save the PLC operating status after
power failure and start operating in first stage after
restart.
1: Save
Memorize the operating parameters of PLC operation
after power failure, including the operating stage,
operating frequency, and operating time. The drive will
continue to operate in the mode defined by the ten’s
place.
Thousand’s place: time unit
0: Second
1: Minute
This unit is only valid for defining the PLC operating time.
The unit of Acc/Dec time in PLC operation is determined
by F9.09.
     Note:
1. The stage is ineffective if the time of this stage of PLC
operation is set to 0.
2. You can use terminals to pause and disable PLC
operation, and clear the memorized parameters. See the
introductions to group F7 parameters.
F4.01 Stage 1 setting Range: 000~323【000】
F4.02 Time of stage 1 Range: 0~6500s(min)【20.0s】
F4.03 Stage 2 setting Range: 000~323【000】
F4.04 Time of stage 2 Range: 0~6500s(min)【20.0s】
F4.05 Stage 3 setting Range: 000~323【000】
F4.06 Time of stage 3 Range: 0~6500s(min)【20.0s】
F4.07 Stage 4 setting Range: 000~323【000】
F4.08 Time of stage 4 Range: 0~6500s(min)【20.0s】
F4.09 Stage 5 setting Range: 000~323【000】
F4.10 Time of stage 5 Range: 0~6500s(min)【20.0s】
F4.11 Stage 6 setting Range: 000~323【000】
F4.12 Time of stage 6 Range: 0~6500s(min)【20.0s】
F4.13 Stage 7 setting Range: 000~323【000】
F4.14 Time of stage 7 Range: 0~6500s(min)【20.0s】
F4.01, F4.03, F4.05, F4.07, F4.09, F4.11 and F4.13 are
used to configure the operating frequency, direction and
Acc/Dec time of each PLC operating stage. These
functions are all selected by digits, as shown in Fig. 5-28.
The 7 stages of PLC can correspond to MS or close
loop running.
A B C D
Frequency setting
0: Preset frequency i
1: Determined by F0.00
2: Preset close-loop reference i
3: Determined by F5.01
Acc/Dec time selection
0: Acc/Dec 1
1: Acc/Dec 2
2: Acc/Dec 3
3: Acc/Dec 4
Running direction selection
0: Forward
1: Reverse
2: Determined by operating
command
Reserved
Fig. 5-28 Settings of PLC stage I(i=1~7)
Where,
A: thousand’s place B: Hundred’s place
C: Ten’s place D: Unit’s place
Units’ place for setting stage i:
0: Select preset frequency i, for example: F4.01 sets the
parameter of stage 1, so the reference frequency is
preset frequency 1 set by F3.23. Please refer to
F3.23~F3.29 for definitions of preset frequencies.
1: The frequency is determined by parameter F0.00
2: Preset close-loop reference i, for example: F4.03 sets
the parameter of stage 2, so the reference frequency is
close-loop frequency 2 set by F5.21. Please refer to
F5.20~F5.26 for definitions of preset close-loop
reference.
3: Determined by Parameter F5.01
PLC can realize close-loop operation in a certain stage.
Close-loop reference selectors can be preset close-loop
reference i or determined by parameter F5.01; and the
feedback is determined by F5.02. When the reference
selector is determined by parameter 



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