Version 20.1 by Theodore Xu on 2023/12/18 16:43

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1 == **1.Modbus** ==
2
3 **Communication specifications**
4
5 |(% colspan="2" %)Item|Content
6 |(% colspan="2" %)Communication protocol|Modbus protocol
7 |(% colspan="2" %)Standard specifications|Modbus-RTU slave station communication protocol
8 |(% colspan="2" %)Maximum connections|247
9 |(% colspan="2" %)Topological structure|Bus type
10 |Slave station function|Number of messages that can be received and requested at the same time|1
11
12 **Hardware configuration**
13
14 |Terminal identification|Terminal name|Function description|Jumper/dialing position
15 |J5|485 communication terminal resistance setting jumper|Match terminal resistance|(((
16 (% style="text-align:center" %)
17 [[image:modbus 跳线帽.png]]
18 )))
19
20 Modbus communication port of this product is located on the control panel, as shown in the following figure:
21
22
23 (% style="text-align:center" %)
24 [[image:modbus 电路.png]]
25
26 **RS485 Connection Topology**
27
28 RS485 bus connection topology is shown in the following figure. 485 bus is recommended to use shielded twisted pair (STP), 485+, 485-: Adopt twisted pair to connect; Only 120 Ω terminal matching resistors are connected at both ends of the bus to prevent signal reflection; All node 485 signal grounds are connected together; Connect 128 nodes at most, and the distance between branches of each node should be less than 3m.
29
30 **Multi-node connection mode**
31
32 When the number of nodes is large, 485 bus must be daisy chain connection. If branch connection is needed, the branch length from bus to node had better be short. It is recommended that it should not exceed 3m. **Star connection should be forbidden**. The diagram of common bus structure is as follows:
33
34 Figure1 Daisy chain connection
35
36 (% style="text-align:center" %)
37 [[image:菊花链接.png||alt="Daisy chain connection"]]
38
39 Figure2 Branch connection
40
41 (% style="text-align:center" %)
42 [[image:分支链接.png]]
43
44 Figure3  Star connection **(Forbidden) **
45
46 (% style="text-align:center" %)
47 [[image:星型链接.png]]
48
49
50 **Transmission distance**
51
52 The maximum number of nodes and transmission distance supported by our standard RS485 circuit at different rates are shown in the following table.
53
54 |Transmission distance (m)|Rate (kbps)|Number of nodes|Wire diameter
55 |100|115.2|128|AWG26
56 |1000|19.2|128|AWG26
57
58 == **2.PNP/NPN** ==
59
60 === **VM series** ===
61
62 (% class="box infomessage" %)
63 (((
64 **✎Note:VM series manufactured after April 2023 can support this feature!!**
65 )))
66
67 NPN/PNP switching has been added to the VM series machines, enabling fast switching between the two modes.
68
69
70 (% style="text-align:center" %)
71 [[image:原理图.png]]
72
73 The NPN/PNP mode can be switched manually at the illustration to realize the compatibility of external signals. Where the upper two pins are shorted for NPN, the lower two pins are shorted for PNP mode.
74
75 **Product model**
76
77 0.75~~2.2(KW)
78
79 (% style="text-align:center" %)
80 [[image:VM小功率.png]]
81
82 (% class="wikigeneratedid" id="H47E7.528KW29" %)
83 4~~7.5(KW)
84
85 (% style="text-align:center" %)
86 [[image:VM大功率.png]]
87
88 (% class="wikigeneratedid" id="HVMPNPmode" %)
89 **VM PNP mode**
90
91 (% style="text-align:center" %)
92 [[image:VM pnp 改.png||height="406" width="1099"]]
93
94 (% class="wikigeneratedid" id="HVMNPNmode" %)
95 **VM NPN mode**
96
97 (% class="box infomessage" %)
98 (((
99 **✎Note:VM NPN external DC does not suppot.**
100 )))
101
102 (% style="text-align:center" %)
103 [[image:VM PNP 内部改.png]]
104
105 === **VB series** ===
106
107 The control signals of VB series products are compatible with both NPN and PNP signal types.
108
109 (% class="wikigeneratedid" id="HScheme" %)
110 **Scheme**
111
112 |=**Function**|=**Address definition**|=**Data meaning**
113 |Adapted power|(((
114 220V:0.75-2.2kW
115
116 380V:0.75-7.5kW
117 )))|380V:11-400kW
118 |NPN signal|Default Compatible|Default Compatible
119 |PNP signal|Add expansion board|(((
120 Changing OP terminal
121 )))
122
123 Add an expansion card for PNP signal compatibility for small control board.
124
125 (% class="wikigeneratedid" id="HIntroduceofexpansionmodule" %)
126 **Introduce of expansion module**
127
128 (1)Name:PNP signal compatible expansion board
129
130 (2)Picture:
131
132 (% style="text-align:center" %)
133 [[image:PNP 模块.png]]
134
135 (3)Application Principle:**VB 0.75kW-7.5kW PNP mode**
136
137 (% style="text-align:center" %)
138 [[image:VB 小功率 PNP.png]]
139
140 **VB 0.75kW-7.5kW NPN mode**
141
142 (% class="box infomessage" %)
143 (((
144 **✎Note:VB 0.75kW-11kW NPN external DC does not suppot.**
145 )))
146
147 (% style="text-align:center" %)
148 [[image:VB 小功率NPN 改.png]]
149
150 **VB 11kW-400kW PNP mode**
151
152 (% style="text-align:center" %)
153 [[image:VB 大功率 PNP 改1.1.png||height="395" width="1113"]]
154
155 **VB 11kW-400kW NPN mode**
156
157 (% style="text-align:center" %)
158 [[image:VB 大功率 NPN 改.png||height="399" width="1082"]]
159
160 === **3.Wiring instructions for common control methods** ===
161
162 (1)Two-wire type 1 mode controls forward and reverse rotation
163
164 |**Correlation parameter**|**Name**|**Set value**|**Function description**
165 |F5.16|(((
166 Terminal
167
168 command mode
169 )))|0|Two-wire type 1
170 |F5.00|(((
171 DI1 Terminal
172
173 Function Selected
174 )))|1|Forward running( FWD)
175 |F5.01|(((
176 DI2 Terminal
177
178 Function Selected
179 )))|2|Reverses run( REV)
180
181 **Two-wire mode 1**: This mode is the most commonly used two-wire mode. For example, the DI1 terminal is assigned the forward running function, and the DI2 terminal is assigned the reverse running function. Connect the forward running switch to DI1 terminal and the reverse running switch to DI2 terminal.
182
183 (% style="text-align:center" %)
184 [[image:Two-wire mode 2图片.png||height="310" width="407"]]
185
186 Refer to the following table for running commands corresponding to switching signals:
187
188 |**K1**|**K2**|**Run command**
189 |0|0|STOP
190 |1|1|STOP
191 |1|0|Forward running
192 |0|1|Reverses running
193
194 (2)Two-wire type 2 mode controls forward and reverse rotation
195
196 |**Correlation parameter**|**Name**|**Set value**|**Function description**
197 |F5.16|(((
198 Terminal
199
200 command mode
201 )))|1|Two-wire type 2
202 |F5.00|DI1 Terminal Function    Selected|1|Run command
203 |F5.01|DI2 Terminal Function    Selected|2|Forward and reverse direction
204
205 Two-wire mode 2:In this mode,the DI1 terminal assigns the command function, and the DI2 terminal assigns the forward and reverse direction function.
206
207
208 (% style="text-align:center" %)
209 [[image:Two-wire mode 2图片.png||height="326" width="428"]]
210
211 Refer to the following table for running commands corresponding to switching signals:
212
213 |**K1**|**K2**|**Run command**
214 |0|0|STOP
215 |0|1|STOP
216 |1|0|Forward running
217 |1|1|Reverses running
218
219 (3)Three-wire type 1 mode controls forward and reverse rotation
220
221 |**Correlation parameter**|**Name**|**Set value**|**Function description**
222 |F5.16|(((
223 Terminal
224
225 command mode
226 )))|2|Three-wire type 1
227 |F5.00|DI1 Terminal Function    Selected|1|Forward running( FWD)
228 |F5.01|DI2 Terminal Function    Selected|2|Reverses run( REV)
229 |F5.02|DI3 Terminal Function    Selected|3|Three-wire operation control
230
231 Three-wire control mode 1: In this mode,the DI3 terminal allocates the three-wire operation control function, the DI1 terminal allocates the forward operation function, and the DI2 terminal allocates the reverse operation function. This control mode requires the frequency converter to use an external button as the start-stop switch of the frequency converter. Connect the start-stop button to DI3 terminal, the forward running button to DI1 terminal, and the reverse running button to DI2 terminal.
232
233
234 (% style="text-align:center" %)
235 [[image:Three-wire control mode 1.png||height="328" width="431"]]
236
237 **Among them: **SB1 forward button; SB2 reverse button; SB3 Stop button;
238
239 (4)Three-wire type 2 mode controls forward and reverse rotation
240
241 |**Correlation parameter**|**Name**|**Set value**|**Function description**
242 |F5.16|(((
243 Terminal
244
245 command mode
246 )))|3|Three-wire type 2
247 |F5.00|DI1 Terminal Function    Selected|1|Run command
248 |F5.01|DI2 Terminal Function    Selected|2|Forward and reverse direction
249 |F5.02|DI3 Terminal Function    Selected|3|Three-wire operation control
250
251 Three-wire control mode 2: For example, the DI3 terminal allocates the three-wire running control function, the DI1 terminal allocates the command function, and the DI2 terminal allocates the forward/reverse running direction function. Connect the start-stop button to DI3 terminal, and enable the operation to connect to DI1 terminal; Connect the forward/reverse operation button to the DI2 terminal.
252
253 (% style="text-align:center" %)
254 [[image:Three-wire control mode 2.png||height="332" width="436"]]
255
256 **Among them: **SB1 Stop button;SB2 Reverse and reverse control buttons SB3 Run button;