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CLS208 用于输入 温度和过程控制器 WATLOW ANAFAZE

型号: CLS208  分类: foxboro
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  • CLS208
  • CLS208
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产品标题:CLS208 用于输入 温度和过程控制器 WATLOW ANAFAZE

型号:CLS208 用于输入 温度和过程控制器  

品牌:  WATLOW ANAFAZE

质保:七天验收期,质保期一年
发货期:1-3个工作日

 

 

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CLS208 用于输入 温度和过程控制器 WATLOW ANAFAZE  

 

产品详情资料

注:
如果驱动器的旋转方向正确(如有必要,通过交换现场连接进行纠正),则在启动过程中可能会出现转速计错误信息。
如果具有正参考,则转速计脉冲
信号(带软件21.xxx:参数12104)
看起来不像下图,然后跟踪
A和A必须与具有反转信号的编码器相互交换,并且轨道A和B具有
没有反转信号的编码器。
如果TACHO_PULSES信号缺失或非线性,则编码器的脉冲未被正确读取。可能的原因可能是编码器电源、编码器本身或接线。

增量编码器
两种不同的增量编码器连接为:
可获得的
-差动连接;脉冲编码器生成
可以使用电压或电流信号
-单端(推拉)连接;电压信号
使用跳线S1:或S10的限制:取决于
船上
通过S1/S10的线路终端:2-3/8-9/14-15应
不适用于12V或24V编码器,因为
编码器的功耗。如果脉冲
使用内置电流源的编码器
120的负载电阻器通过跳线S1激活/
S10:1-2 a.s.o。
图6.3/6脉冲编码器连接原理
如果使用单端12 V/24 V编码器,S1/S10
应根据设置为5-6/11-12/17-18
电路板的布局。此设置将导致内部
接近阈值。5 V.如果是单端5 V
编码器:跳线将被设置到中性位置S1/
S10:4-5/10-11/16-17.获得低于5的阈值
V每个端子X5:2/X5:4/X5:6/X5:
根据下表通过电阻器连接。
r1k1.5 2.2k
U阈值1.2 V 1.8 V 2.3 V
保留三个差分输入,用于连接
脉冲编码器。通道A和通道B为正常脉冲
具有标称90°相移的信道
频道。
通道CH A-(CH B-)是反向通道CH A
(CH B)。chz是零脉冲 Note:
If the drive’s direction of rotation is correct (if necessary, correct by exchanging the field connections), the Tacho error message may appear during start-up.
If with a positive reference the TACHO_PULSES
signal (with software 21.xxx: parameter 12104)
does not look like the illustration below, then tracks
A and A must be mutually exchanged with encoders with inverted signals, and tracks A and B with
encoders without inverted signals.
If the TACHO_PULSES signal is missing or non-linear, the encoder’s pulses are not being read correctly. Possible reasons for this may be the encoder supply, the encoder itself, or the wiring.

Incremental encoder
Two different incremental encoder connections are
available.
- differential connection; pulse encoders generating
either voltage or current signals can be used
- single-ended (push pull) connection; voltage signals
Restrictions using jumper S1: or S10: depending
on the board
Line termination via S1/S10: 2-3 / 8-9 / 14-15 should
not be used at 12 V or 24 V encoders, because of the
power consumption taken from the encoder. If a pulse
encoder with a build in current source is used a
burden resistor of 120  is activated via jumper S1/
S10: 1-2 a.s.o.
Fig. 6.3/6 Pulse encoder connection principles
If a single ended 12 V / 24 V encoder is used S1/S10
should be set to 5-6 / 11-12 / 17-18 according to the
layouts of the boards. This setting results in an internal
threshold of appr. 5 V. In case of a single ended 5 V
encoder the jumpers will be set to a neutral position S1/
S10: 4-5 / 10-11 / 16-17. To get a threshold lower than 5
V each terminal X5:2 / X5:4 / X5:6 / X5:7 must be
connected via a resistor according to the table below.
 R 1 k 1.5  2.2 k
 U thresh 1.2 V 1.8 V 2.3 V
Three differential inputs are reserved for connecting the
pulse encoder. CH A and CH B are the normal pulse
channels having nominal 90° phase shift between the
channels.
The channel CH A- (CH B-) is the inversed channel CH A
(CH B). CH Z is the zero pulse 

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专注于DCSPLC、机器人控制系统、大型伺服四大系统领域。

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