Changes for page 02 Product Information

Last modified by Iris on 2025/08/04 10:09

From version 72.7
edited by Iris
on 2025/07/19 14:02
Change comment: There is no comment for this version
To version 79.3
edited by Iris
on 2025/08/02 17:47
Change comment: There is no comment for this version

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5 5  (% style="text-align:center" %)
6 6  (((
7 7  (% style="display:inline-block" %)
8 -[[Figure 2-1 Servo drive model>>image:第二章-产品息20240222-2.png||alt="1718332124158-379.png"]]
8 +[[Figure 2-1 Servo drive model>>image:企业微截图_17530628352130.png]]
9 9  )))
10 10  
11 11  
12 -Figure 2-2 (VD2A) and Figure 2-3 (VD2B) show the exterior and nameplate of the VD2 series absolute value servo drive.
12 +The appearance and nameplate of the absolute value servo driver of the VIC VD2 series are shown in Figures 2-2 (type VD2A), 2-3 (type VD2B), and 2-4 (type VD2C), respectively;
13 13  
14 -Figure 2-5 shows the exterior and nameplate of the VD2F series absolute value servo drive.
14 + The appearance and nameplate of the absolute value servo driver of the VIC VD2F series are shown in Figure 2-5; the appearance and nameplate of the absolute value servo driver of the VIC VD2L series are shown in Figure 2-6.
15 15  
16 + With the same driving current size and the same power supply specifications, the appearance and nameplate of the VDC VD2-0xxSA1H absolute value servo driver are the same as those of the VD2A and VD2B drivers. Except for the inconsistent names of the servo drivers in the nameplate, the appearance composition and other parameters are completely consistent. For an appearance view of the VD2-0xxSA1H driver, please refer to Figure 2-2 and Figure 2-3.
17 +
16 16  (% style="text-align:center" %)
17 17  (((
18 18  (% class="wikigeneratedid" style="display:inline-block; width:1000px;" %)
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76 76  [[**Figure 2-10 Composition of VD2F servo drive**>>image:image-20220704160513-1.jpeg||height="743" id="Iimage-20220704160513-1.jpeg" width="785"]]
77 77  )))
78 78  
79 -
80 80  (% style="text-align:center" %)
81 81  (((
82 82  (% style="display:inline-block" %)
83 -[[Figure 2-11 Composition of VD2L servo drive>>image:2.png||alt="1718333307247-167.png"]]
84 +[[Figure 2-11 Composition of VD2L servo drive>>image:企业微信截图_17530633098071.png||alt="Figure 2-11 Composition of VD2L servo drive"]]
84 84  )))
85 85  
86 86  (% style="text-align:center" %)
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192 192  |Debug interface|(% colspan="2" %)RJ45|RS485 and RS422
193 193  |(% rowspan="5" %)Position control mode|(% rowspan="4" %)Input signal|(% rowspan="3" %)Pulse instruction|Input pulse mode: Direction+pulse, CW/CCW, AB phase quadrature pulse
194 194  |Input form: Differential input, open collector
195 -|Pulse input frequency: Differential input up to 500KHz, open collector up to 200KHz
196 +|Input pulse frequency: Differential input up to 500KHz, open collector up to 200KHz
196 196  |(((
197 197  Internal multi-segment position
198 198  
199 199  Instruction selection
200 -)))|Configure 4 DI ports to function as INPOS1, INPOS2, INPOS3, and INPOS4 to implement the first~~16-segment position selection
201 +)))|Configure 4 DI ports for INPOS1, INPOS2, INPOS3, and INPOS4 to (((
202 +select positions in segments 1 to 16
203 +)))
201 201  |Position output|Output form|Phase A, Phase B, Phase Z
202 202  |(% rowspan="2" %)Speed control mode|External instruction|Analog voltage|DC±10V, 12-bit resolution
203 203  |Internal instruction|(((
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204 204  Internal multi-segment speed
205 205  
206 206  Instruction selection
207 -)))|Configure 3 DI ports for INPOS1, INPOS2, INPOS3, and INPOS4 to select speed in segments 1 to 8
210 +)))|Configure 3 DI ports for INPOS1, INPOS2, INPOS3, and INPOS4 to select speed in segments 1 to 16
208 208  |(% rowspan="2" %)Torque control mode|External instruction|Analog voltage|DC±10V, 12-bit resolution
209 209  |Internal instruction|Internal torque instruction|Support torque instruction value -300% to 300%
210 210  
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232 232  (% style="text-align:center" %)
233 233  (((
234 234  (% class="wikigeneratedid img-thumbnail" style="display:inline-block; width:489px;" %)
235 -[[Figure 2-15 Motor(Wire type) composition of 40, 60 and 80 flange>>image:image-20220611113853-9.jpeg||height="430" id="Iimage-20220611113853-9.jpeg" width="489"]]
238 +[[Figure 2-15 Motor(Wire type) composition of 40/60 /80 flange>>image:image-20220611113853-9.jpeg||height="430" id="Iimage-20220611113853-9.jpeg" width="489"]]
236 236  )))
237 237  
238 238  (% style="text-align:center" %)
239 239  (((
240 240  (% style="display:inline-block" %)
241 -[[Figure 2-16 Motor(Connector type) composition of 40, 60 and 80 flange>>image:1721011941008-475.png]]
244 +[[Figure 2-16 Motor(Connector type) composition of 40/60 /80 flange>>image:1721011941008-475.png]]
242 242  )))
243 243  
244 244  
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278 278  |(% style="width:161px" %)WE110M-18030S-D2G|(% style="width:75px" %)D131|(% style="width:61px" %)110|(% style="width:88px" %)1.8|(% style="width:80px" %)6.0|(% style="width:72px" %)220|(% style="width:75px" %)3000|(% style="width:177px" %)23-bit multi turn absolute optical|Yes
279 279  |(% style="width:161px" %)WE130M-23015S-D2F|(% style="width:75px" %)D161|(% style="width:61px" %)130|(% style="width:88px" %)2.3|(% style="width:80px" %)15.0|(% style="width:72px" %)220|(% style="width:75px" %)1500|(% style="width:177px" %)23-bit multi turn absolute optical|No
280 280  
281 -Table 2-1 Wecon Motor Specifications
284 +Table 2-9 Wecon Motor Specifications
282 282  
283 283  ✎**Note:** Only part of the motor models are displayed, please refer to the “Model Selection Manual” for details.
企业微信截图_17530628352130.png
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