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MSK060C-0300-NN-S1-UG0-NNNN R911307219模块现货

型号: R911307219  分类: foxboro
  • R911307219
  • R911307219
  • R911307219
  • R911307219
  • R911307219


MSK060C-0300-NN-S1-UG0-NNNN R911307219模块现货 MSK060C-0300-NN-S1-UG0-NNNN R911307219模块现货 MSK060C-0300-NN-S1-UG0-NNNN R911307219模块现货 MSK060C-0300-NN-S1-UG0-NNNN R911307219模块现货 MSK060C-0300-NN-S1-UG0-NNNN R911307219模块现货




 

MSK060C-0300-NN-S1-UG0-NNNN R911307219

注:当前面板开关处于以下状态时,CPU硬件默认为桥接模式
设置为RTU或ASCII模式。连接控制器时,面板设备连接
到CPU,Modbus端口可以与控制器通信
连接,以及登录Modbus Plus网络上的任何节点。
ASCII通信端口参数
波特率2400
奇偶
数据位7
停止位1
设备地址后面板旋转开关设置
RTU通信端口参数
波特率9600
奇偶
数据位8
停止位1
设备地址后面板旋转开关设置
ASCII码
RTU
不使用mem

记忆
prt
CPU模块
840使用100 00 2002年9月199
将滑动开关设置为底部位置可使您能够分配:
软件中端口的通信参数;以下参数为:
有效的
有效通信端口参数
波特率19200 1200
9,600 600
7,200 300
4,800 150
3,600 134.5
2,400 110
2,000 75
1,800 50
奇偶校验启用/禁用
奇数/偶数
数据位7/8
停止位1/2
设备地址1…247
CPU模块
200 840使用100 00 2002年9月
后面板
开关
两个旋转开关(请参阅下图和下表)位于后部
CPU的面板。它们用于设置Modbus Plus节点和Modbus端口
地址。
SW1(顶部开关)设置地址的高位(十位);SW2(底部
开关)设置地址的低位数字。下图显示了
示例地址11的正确设置。
下图显示了SW1和SW2。
下表显示了SW1和SW2地址设置。
注:这些开关可设置的高地址为64。
节点地址SW1和SW2
1 ... 9 0 1 ... 9
10 ... 19 1 0 ... 9
20 ... 29 2 0 ... 9
30 ... 39 3 0 ... 9
40 ... 49 4 0 ... 9
50 ... 59 5 0 ... 9
60 ... 64 6 0 ... 4
注:如果选择“0”或大于64的地址,Modbus+LED将
“on”稳定,表示选择了无效地址。
1.
3.
0 9
2.
6.
4 5
8 7 1
3.
0 9
2.
6.
4 5
8 7
SW1(顶部)
SW2(底部)
CPU模块
840使用100 00 2002年9月201
按键开关:按键开关用于在
控制器正在运行。下图显示了按键开关。
注:开关旁边显示的钥匙开关位置(上图)仅供参考
仅和标记在模块上,如右图所示。
停止
记忆
Prt
开始
停止
记忆
Prt
开始
CPU模块
202 840使用100 00 2002年9月
钥匙开关
描述
下表提供了钥匙开关信息的说明。
Modbus端口
调制解调器支持
Modbus端口1具有完整的调制解调器接口能力。Modbus端口2 RTS/CTS
对于正常的非调制解调器通信,连接功能正常,但不正常
支持调制解调器。
钥匙开关说明
钥匙开关
位置
控制器状态存储器
保护
程序员
变化
接受
程序员
停止或开始
钥匙开关
过渡
停止控制器停止
并禁用
程序员
变化。
Y N从开始或
内存保护:
停止控制器,如果
运行,以及
禁用
程序员
变化
Mem Prt控制器可以是:
要么停止,要么
运行和
程序员
变化是
残废用户
无法写信给
未定位的变量。
从停止或开始的Y N:
阻止
程序员
更改,控制器
运行状态不是
改变
启动控制器可以是:
要么停止,要么
跑步
程序员可以
作出改变和
启动/停止
控制器
N Y从停止:启用
程序员
变化,开始
控制器。
凭记忆
保护:启用
程序员
变化,开始
控制器如果停止。
CPU模块
840使用100 00 2002年9月203
Modbus
连接器
皮诺特
所有Quantum CPU均配备9针RS-232C连接器,支持:
Modicon的专有Modbus通信协议。以下是Modbus:
9针和25针连接的端口引脚连接。
Modbus端口
皮诺特
连接
下图显示了9针和25针的Modbus端口引脚连接
连接。
注:尽管Modbus端口在电气上支持现有的Modbus电缆,但
建议使用Modbus编程电缆(零件号990NAA26320或
990NAA26350)。该电缆设计用于安装在
量子CPU或NOM模块。

MSK060C-0300-NN-S1-UG0-NNNN R911307219

MSK060C-0300-NN-S1-UG0-NNNN R911307219模块现货

MSK060C-0300-NN-S1-UG0-NNNN R911307219

Note: The CPU hardware defaults to bridge mode when the front panel switch is
set to RTU or ASCII mode. When networking controllers, a panel device connected
to the CPU Modbus port can communicate with the controller to which it is
connected, as well as log into any nodes on the Modbus Plus network.
ASCII Communication Port Parameters
Baud 2,400
Parity Even
Data Bits 7
Stop Bits 1
Device Address Rear panel rotary switch setting
RTU Communication Port Parameters
Baud 9,600
Parity Even
Data Bits 8
Stop Bits 1
Device Address Rear panel rotary switch setting
ASCII
RTU
not used mem
off
mem
prt
CPU Modules
840 USE 100 00 September 2002 199
Setting the slide switch to the bottom position gives you the ability to assign
communication parameters to the port in software; the following parameters are
valid.
Valid Communication Port Parameters
Baud 19,200 1,200
9,600 600
7,200 300
4,800 150
3,600 134.5
2,400 110
2,000 75
1,800 50
Parity Enable/Disable
Odd/Even
Data Bits 7 / 8
Stop Bits 1 / 2
Device Address 1 ... 247
CPU Modules
200 840 USE 100 00 September 2002
Rear Panel
Switches
Two rotary switches (refer to the illustration and table below) are located on the rear
panel of the CPU. They are used for setting Modbus Plus node and Modbus port
addresses.
SW1 (the top switch) sets the upper digit (tens) of the address; SW2 (the bottom
switch) sets the lower digit (ones) of the address. The illustration below shows the
correct setting for an example address of 11.
The following figure shows SW1 and SW2.
The following table shows the SW1 and SW2 address settings.
Note: The highest address that may be set with these switches is 64.
Node Address SW1 SW2
1 ... 9 0 1 ... 9
10 ... 19 1 0 ... 9
20 ... 29 2 0 ... 9
30 ... 39 3 0 ... 9
40 ... 49 4 0 ... 9
50 ... 59 5 0 ... 9
60 ... 64 6 0 ... 4
Note: If "0" or an address greater than 64 is selected, the Modbus + LED will be
"on" steady, to indicate the selection of an invalid address.
1
3
0 9
2
6
4 5
8 7 1
3
0 9
2
6
4 5
8 7
SW1 (TOP)
SW2 (BOTTOM)
CPU Modules
840 USE 100 00 September 2002 201
Key Switch The key switch is used to protect memory from programming changes while the
controller is in operation. The following figure shows the key switch.
Note: The key switch positions shown next to the switch (above) are for reference
only and are marked on the module as indicated on the right.
Stop
Mem
Prt
Start
Stop
Mem
Prt
Start
CPU Modules
202 840 USE 100 00 September 2002
Key Switch
Description
The following table provides descriptions of the key switch information.
Modbus Port
Modem Support
Modbus Port 1 has full modem interfacing ability. Modbus Port 2 RTS/CTS
connections function properly for normal non-modem communications but do not
support modems.
Key Swich Description
Key switch
Position
Controller Status Memory
Protected From
Programmer
Changes
Will Accept
Programmer
Stop or Start
Key switch
Transition
Stop Controller is stopped
and disables
Programmer
changes.
Y N From Start or
Memory Protect:
Stops controller, if
running, and
disables
Programmer
changes
Mem Prt Controller may be
either stopped or
running and
Programmer
changes are
disabled. The user
cannot write to
unlocated variables.
Y N From Stop or Start:
Prevents
Programmer
changes, controller
run status is not
changed
Start Controller may be
either stopped or
running.
Programmer may
make changes and
start/stop the
controller
N Y From Stop: Enables
Programmer
changes, starts
controller.
From Memory
Protect: Enables
programmer
changes, starts
controller if stopped.
CPU Modules
840 USE 100 00 September 2002 203
Modbus
Connector
Pinouts
All Quantum CPUs are equipped with a 9-pin RS-232C connector that supports
Modicon’s proprietary Modbus communication protocol. The following is the Modbus
port pinout connections for 9-pin and 25-pin connections.
Modbus Ports
Pinout
Connections
The following figure shows the Modbus port pinout connections for 9-pin and 25-pin
connections.
Note: Although the Modbus ports electrically support existing Modbus cables, it is
recommended that a Modbus programming cable (Part # 990NAA26320 or
990NAA26350) be used. This cable has been designed to fit under the door of a
Quantum CPU or NOM module.



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