Changes for page 02 Product Information
Last modified by Iris on 2025/07/21 10:02
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edited by Jim(Forgotten)
on 2022/08/24 09:47
on 2022/08/24 09:47
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... ... @@ -1,154 +3,205 @@ 1 - 2 - 3 3 = **Servo drives** = 4 4 5 -== **Model naming**==3 +== Model naming == 6 6 7 7 {{id name="OLE_LINK14"/}} 8 8 9 9 (% style="text-align:center" %) 10 -[[image:image-20220611113720-1.jpeg]] 8 +((( 9 +(% class="wikigeneratedid" style="display:inline-block" %) 10 +[[**~~ Figure 2-1 Servo drive model**>>image:image-20220611113720-1.jpeg||id="Iimage-20220611113720-1.jpeg"]] 11 +))) 11 11 12 - Figure 2-1 Servo drive model 13 13 14 - {{id name="OLE_LINK12"/}}Figure 2-2 (VD2A) and Figure 2-3 (VD2B) show the exterior and nameplate of the VD2 series absolute value servo drive.14 +Figure 2-2 (VD2A) and Figure 2-3 (VD2B) show the exterior and nameplate of the VD2 series absolute value servo drive. 15 15 16 - {{id name="OLE_LINK11"/}}Figure 2-4 shows the exterior and nameplate of the VD2F series absolute value servo drive.16 +Figure 2-4 shows the exterior and nameplate of the VD2F series absolute value servo drive. 17 17 18 -{{id name="_Ref80607254"/}} 19 - 20 20 (% style="text-align:center" %) 21 -[[image:image-20220611113747-1.jpeg||height="535" width="1000"]] 19 +((( 20 +(% class="wikigeneratedid" style="display:inline-block" %) 21 +[[**Figure 2-2 Exterior and nameplate of VD2A servo drive**>>image:image-20220611113747-1.jpeg||height="535" id="Iimage-20220611113747-1.jpeg" width="1000"]] 22 +))) 22 22 23 -{{id name="OLE_LINK13"/}}{{id name="_Ref13810"/}}Figure 2-2 Exterior and nameplate of VD2A servo drive 24 24 25 -{{id name="_Toc27523"/}} 26 - 27 27 (% style="text-align:center" %) 28 -[[image:image-20220611113753-2.jpeg||height="486" width="1000"]] 26 +((( 27 +(% class="wikigeneratedid" style="display:inline-block" %) 28 +[[**Figure 2-3 Exterior and nameplate of VD2B servo drive**>>image:image-20220611113753-2.jpeg||height="486" id="Iimage-20220611113753-2.jpeg" width="1000"]] 29 +))) 29 29 30 -{{id name="_Ref8250"/}}Figure 2-3 Exterior and nameplate of VD2B servo drive 31 31 32 32 (% style="text-align:center" %) 33 -[[image:image-20220611113800-3.jpeg||height="711" width="1000"]] 33 +((( 34 +(% class="wikigeneratedid" style="display:inline-block" %) 35 +[[Figure 2-4 Exterior and nameplate of VD2F servo drive>>image:image-20220611113800-3.jpeg||height="711" id="Iimage-20220611113800-3.jpeg" width="1000"]] 36 +))) 34 34 35 -{{id name="_Ref8394"/}}Figure 2-4 Exterior and nameplate of VD2F servo drive 36 36 37 -== **Composition**==39 +== Composition == 38 38 39 39 (% style="text-align:center" %) 40 -[[image:image-20220611113807-4.jpeg||height="725" width="1000"]] 42 +((( 43 +(% class="wikigeneratedid" style="display:inline-block" %) 44 +[[**Figure 2-5 Composition of VD2A servo drive**>>image:image-20220611113807-4.jpeg||height="725" id="Iimage-20220611113807-4.jpeg" width="1000"]] 45 +))) 41 41 42 -Figure 2-5 Composition of VD2A servo drive 43 - 44 44 (% style="text-align:center" %) 45 -[[image:image-20220704154526-2.jpeg||height="809" width="1104"]] 48 +((( 49 +(% class="wikigeneratedid" style="display:inline-block" %) 50 +[[**Figure 2-6 Composition of VD2B servo drive**>>image:image-20220704154526-2.jpeg||height="809" id="Iimage-20220704154526-2.jpeg" width="1104"]] 51 +))) 46 46 47 -Figure 2-6 Composition of VD2B servo drive 48 - 49 49 (% style="text-align:center" %) 50 -[[image:image-20220704160513-1.jpeg||height="1103" width="1165"]] 54 +((( 55 +(% class="wikigeneratedid" style="display:inline-block" %) 56 +[[**Figure 2-7 Composition of VD2F servo drive**>>image:image-20220704160513-1.jpeg||height="1103" id="Iimage-20220704160513-1.jpeg" width="1165"]] 57 +))) 51 51 52 -Figure 2-7 Composition of VD2F servo drive 53 - 54 54 (% style="text-align:center" %) 55 -[[image:3_html_4b8f9126cfc3a494.png||height="203" width="565"]] 60 +((( 61 +(% class="wikigeneratedid" style="display:inline-block" %) 62 +[[**Figure 2-8 Short connection of braking resistor**>>image:3_html_4b8f9126cfc3a494.png||height="203" id="I3_html_4b8f9126cfc3a494.png" width="565"]] 63 +))) 56 56 57 - Figure2-8Short connection ofbrakingresistor65 +== Specification == 58 58 59 - ==**Specification**==67 +**Electrical specifications** 60 60 61 -The specification of VD2 series servo drive is shown in Table 2-1 below. 69 +|=(% scope="row" %)Item|=(% colspan="2" %)**VD2A**|=(% colspan="2" %)**VD2B** 70 +|=Model|VD2-010SA1G|VD2-014SA1G|VD2-016SA1G|VD2-019SA1G 71 +|=Maximum output current|10A|14A|16A|19A 72 +|=Control power supply|(% colspan="2" %)-|(% colspan="2" rowspan="2" %)((( 73 +Single-phase AC 198 to 242V 62 62 63 -|((( 64 -**Electrical** 75 +50/60Hz 76 +))) 77 +|=Power supply|(% colspan="2" %)Single-phase AC 198 to 242V, 50/60Hz 78 +|=Braking resistor|External|Built-in and external|(% colspan="2" %)Built-in and external 65 65 66 - **specification**80 +Table 2-1 Electrical specification of single-phase 220V servo drive 67 67 68 -**Servo drive model** 69 -)))|**VD2A and VD2B servo drive**|**VD2F servo drive** 70 -|Power supply|((( 71 -{{id name="OLE_LINK17"/}}Under 750W: Use single-phase 200V to 240V, AC 50/60Hz power supply; 82 +|=(% scope="row" style="width: 297px;" %)**Item**|=(% colspan="3" style="width: 777px;" %)**VD2F** 83 +|=(% style="width: 297px;" %)Model|(% style="width:278px" %)VD2F-003SA1P|VD2F-010SA1P|VD2F-014SA1P 84 +|=(% style="width: 297px;" %)Maximum output current|(% style="width:278px" %)3A|10A|14A 85 +|=(% style="width: 297px;" %)Control power supply|(% colspan="3" style="width:777px" %)- 86 +|=(% style="width: 297px;" %)Power supply|(% colspan="3" style="width:777px" %)Single-phase AC 198 to 242V, 50/60Hz 87 +|=(% style="width: 297px;" %)Braking resistor|(% colspan="2" style="width:504px" %)External|Built-in and external 72 72 73 - 1.0kWto2.6kWcoulduse single-phaseAC220Vorthree-phase AC 220V ;89 +Table 2-2 Electrical specification of single-phase 220V servo drive 74 74 75 -It is recommended to use three-phase 220VAC power supply. 91 +|=(% scope="row" style="width: 295px;" %)**Item**|=(% colspan="3" style="width: 779px;" %)**VD2B** 92 +|=(% style="width: 295px;" %)Model|(% style="width:317px" %)VD2-021SA1G|VD2-025SA1G|VD2-030SA1G 93 +|=(% style="width: 295px;" %)Maximum output current|(% style="width:317px" %)21A|25A|30A 94 +|=(% style="width: 295px;" %)Control power supply|(% colspan="3" style="width:779px" %)Single-phase AC 198 to 242V, 50/60Hz 95 +|=(% style="width: 295px;" %)Power supply|(% colspan="3" style="width:779px" %)Three-phase AC 198 to 242V, 50/60Hz 96 +|=(% style="width: 295px;" %)Braking resistor|(% colspan="3" style="width:779px" %)External and built-in and external 76 76 77 -✎**Note:** 78 -~1. VD2-XXXTA1G is not recommended to work in industrial three-phase voltages of 440V and above. 98 +Table 2-3 Electrical specification of three-phase 220V servo drive 79 79 80 -2. For 380V operating voltage, the fluctuation range is 15% 81 -3. For 400V operating voltage, the fluctuation range is 10% 82 -)))|((( 83 -Single-phase 220V, -10% to 10%, 100 +|=(% scope="row" %)**Item**|=**VD2B** 101 +|=Model|VD2-021TA1G 102 +|=Maximum output current|21A 103 +|=Control power supply|Single-phase AC 342 to 440V, 50/60Hz 104 +|=Power supply|Three-phase AC 342 to 440V, 50/60Hz 105 +|=Braking resistor|External and built-in and external 84 84 85 -50/60Hz 86 -))) 87 -|Control power supply (**✎Note**)|Single-phase AC 200V to 240V, 50/60Hz.| 88 -|Braking method|(% colspan="2" %)Built-in braking resistor, and external braking resistor could be connected. 107 +Table 2-4 Electrical specification of three-phase 380V servo drive 89 89 90 - Table 2-1 Servo drive electricalspecifications109 +**Basic specifications** 91 91 92 -✎**Note:** 111 +|=(% colspan="3" scope="row" style="width: 465px;" %)**Item**|=(% style="width: 609px;" %)**Specification** 112 +|=(% rowspan="9" style="width: 165px;" %)Environment|(% rowspan="4" style="width:124px" %)Usage|(% style="width:176px" %)Temperature|(% style="width:609px" %)0℃ to 40℃ 113 +|(% scope="row" style="width:176px" %)Humidity|(% style="width:609px" %)5% to 95% (no condensation) 114 +|(% scope="row" style="width:176px" %)Shock|(% style="width:609px" %)3M4, 3mm (2 to 9Hz), Class 1 area 115 +|(% scope="row" style="width:176px" %)Vibration|(% style="width:609px" %)3M4, 1G (9 to 200Hz), Class 1 area 116 +|(% rowspan="3" scope="row" style="width:124px" %)Storage|(% style="width:176px" %)Temperature|(% style="width:609px" %)-25℃ to 70℃ 117 +|(% scope="row" style="width:176px" %)Humidity|(% style="width:609px" %)5% to 95%(no condensation) 118 +|(% scope="row" style="width:176px" %)Vibration|(% style="width:609px" %)2M2, 3.5mm (2 to 9Hz) 119 +|(% colspan="2" scope="row" style="width:300px" %)Protection|(% style="width:609px" %)IP10 120 +|(% colspan="2" scope="row" style="width:300px" %)Circumstance|(% style="width:609px" %)Places with no corrosive gas, flammable gas, combustible materials nearby; splash of water, oil, medicine and less dust, salt and metal powder. 121 +|=(% rowspan="2" style="width: 165px;" %)I/O signal|(% colspan="2" style="width:300px" %)((( 122 +Digital input (DI) signal 93 93 94 -Only VD2B drive support independent power supply for control power supply, and VD2A and VD2F drives do not require a separate control power supply. 124 + 125 +)))|(% style="width:609px" %)Up to 8 DI channels supported(only 4 channels for VD2F model). The supported DI functions are servo enable, fault clear and alarm, forward drive prohibition, reverse drive prohibition, zero speed bit, deviation counter clear, instruction reversal, emergency stop, electronic gear ratio switch, gain switch, instruction pulse input prohibition, internal speed instruction selection, mixed mode selection, internal multi-segment position enable signal and internal multi-segment position segment selection. 126 +|(% colspan="2" scope="row" style="width:300px" %)Digital output (DO) signal|(% style="width:609px" %)Up to 4 DO channels supported. The supported DO functions are servo ready, fault signal, warning signal, rotation detection, zero speed signal, positioning completion, positioning approach, speed consistence, speed approach, torque arrival, torque limiting, speed limiting, brake output, servo on state output, Z pulse output and communication VDO output. 127 +|=(% style="width: 165px;" %)Debug Interface|(% colspan="2" style="width:300px" %)RJ45|(% style="width:609px" %)RS485 and RS422 128 +|=(% rowspan="5" style="width: 165px;" %)Position control mode|(% rowspan="4" style="width:124px" %)Input signal|(% rowspan="3" style="width:176px" %)Pulse instruction|(% style="width:609px" %)Input pulse form: direction + pulse, CW/CCW, AB phase quadrature pulse 129 +|(% scope="row" style="width:609px" %)Input form: differential input, open collector 130 +|(% scope="row" style="width:609px" %)Input pulse frequency: differential input up to 500KHz; open collector up to 200KHz. 131 +|(% scope="row" style="width:176px" %)((( 132 +Internal multi-segment position instruction selection 133 +)))|(% style="width:609px" %)Configure 4 DI ports for INPOS1, INPOS2, INPOS3, and INPOS4 to select positions in segments 1 to 16 134 +|(% scope="row" style="width:124px" %)Position output|(% style="width:176px" %)Output form|(% style="width:609px" %)A phase, B phase, Z phase 135 +|=(% rowspan="2" style="width: 165px;" %)Speed control mode|(% style="width:124px" %)External instruction|(% style="width:176px" %)Analog voltage|(% style="width:609px" %)DC±10V, resolution 12 bits 136 +|(% scope="row" style="width:124px" %)Internal instruction|(% style="width:176px" %)Internal multi-segment speed instruction selection.|(% style="width:609px" %)Configure 3 DI ports for INPOS1, INPOS2, INPOS3, and INPOS4 to select speed in segments 1 to 16 137 +|=(% rowspan="2" style="width: 165px;" %)Torque control mode|(% style="width:124px" %)External instruction|(% style="width:176px" %)External instruction|(% style="width:609px" %)DC±10V, resolution 12 bits 138 +|(% scope="row" style="width:124px" %)Internal instruction|(% style="width:176px" %)Internal instruction|(% style="width:609px" %)Support torque instruction values -300% to 300% 95 95 140 +✎**Note:** Only VD2B drive support independent power supply for control power supply, and VD2A and VD2F drives do not require a separate control power supply. 141 + 96 96 = **Servo motors** = 97 97 98 98 == **Model naming** == 99 99 100 -[[image:image-20220705100027-1.jpeg]] 146 +(% style="text-align:center" %) 147 +((( 148 +(% class="wikigeneratedid" style="display:inline-block" %) 149 +[[**~~ Figure 2-9 Servo motor naming**>>image:image-20220705100027-1.jpeg||id="Iimage-20220705100027-1.jpeg"]] 150 +))) 101 101 102 - Figure 2-9 Servo motor naming 103 - 104 104 {{id name="_Toc8121"/}} 105 105 106 106 (% style="text-align:center" %) 107 -[[image:image-20220611113846-8.jpeg||height="203" width="851"]] 155 +((( 156 +(% class="wikigeneratedid" style="display:inline-block" %) 157 +[[**Figure 2-10 Servo motor nameplate**>>image:image-20220611113846-8.jpeg||height="203" id="Iimage-20220611113846-8.jpeg" width="851"]] 158 +))) 108 108 109 - Figure2-10 Servornameplate160 +== Composition == 110 110 111 -== **Composition** == 112 - 113 113 (% style="text-align:center" %) 114 -[[image:image-20220611113853-9.jpeg||height="578" width="657"]] 163 +((( 164 +(% class="wikigeneratedid" style="display:inline-block" %) 165 +[[Figure 2-11 Motor composition of 40, 60 and 80 flange>>image:image-20220611113853-9.jpeg||height="578" id="Iimage-20220611113853-9.jpeg" width="657"]] 166 +))) 115 115 116 -Figure 2-11 Motor composition of 40, 60 and 80 flange 117 - 118 118 (% style="text-align:center" %) 119 -[[image:image-20220611113858-10.jpeg||height="616" width="700"]] 169 +((( 170 +(% class="wikigeneratedid" style="display:inline-block" %) 171 +[[Figure 2-12 Motor composition of 110 and 130 flange>>image:image-20220611113858-10.jpeg||height="616" id="Iimage-20220611113858-10.jpeg" width="700"]] 172 +))) 120 120 121 - Figure2-12 Motor compositionof 110 and 130 flange174 +== Specification == 122 122 123 -== **Specification** == 124 - 125 -|**Wecon motor model**|((( 176 +|=(% style="width: 204px;" %)**Wecon motor model**|=(% style="width: 69px;" %)((( 126 126 **Motor** 127 127 128 128 **code** 129 -)))|**Flange size**|((( 180 +)))|=(% style="width: 72px;" %)**Flange size**|=((( 130 130 **Rated power** 131 131 132 132 **(KW)** 133 -)))|((( 184 +)))|=((( 134 134 **Rated torque** 135 135 136 136 **(N.m)** 137 -)))|((( 188 +)))|=((( 138 138 **Voltage** 139 139 140 140 **(V)** 141 -)))|((( 192 +)))|=((( 142 142 **Rated speed** 143 143 144 144 **(rpm)** 145 -)))|**Encoder type**|**Brake** 146 -|WE130M-10025S-A1F|A091|130|1.0|4.0|220|2500|17-bit single turn absolute magnetic|No 147 -|WE130M-15025S-A1G|A111|130|1.5|6.0|220|2500|17-bit single turn absolute magnetic|Yes 148 -|WE130M-26025S-C1F|C191|130|2.6|10|220|2500|17-bit multi turn absolute magnetic|No 149 -|WE80M-12030S-C1G|C231|80|1.2|4.0|220|3000|17-bit multi turn absolute magnetic|Yes 150 -|WE110M-18030S-D2G|D131|110|1.8|6.0|220|3000|23-bit multi turn absolute optical|Yes 151 -|WE130M-23015S-D2F|D161|130|2.3|15.0|220|1500|23-bit multi turn absolute optical|No 196 +)))|=**Encoder type**|=**Brake** 197 +|(% style="width:204px" %)WE130M-10025S-A1F|(% style="width:69px" %)A091|(% style="width:72px" %)130|1.0|4.0|220|2500|17-bit single turn absolute magnetic|No 198 +|(% style="width:204px" %)WE130M-15025S-A1G|(% style="width:69px" %)A111|(% style="width:72px" %)130|1.5|6.0|220|2500|17-bit single turn absolute magnetic|Yes 199 +|(% style="width:204px" %)WE130M-26025S-C1F|(% style="width:69px" %)C191|(% style="width:72px" %)130|2.6|10|220|2500|17-bit multi turn absolute magnetic|No 200 +|(% style="width:204px" %)WE80M-12030S-C1G|(% style="width:69px" %)C231|(% style="width:72px" %)80|1.2|4.0|220|3000|17-bit multi turn absolute magnetic|Yes 201 +|(% style="width:204px" %)WE110M-18030S-D2G|(% style="width:69px" %)D131|(% style="width:72px" %)110|1.8|6.0|220|3000|23-bit multi turn absolute optical|Yes 202 +|(% style="width:204px" %)WE130M-23015S-D2F|(% style="width:69px" %)D161|(% style="width:72px" %)130|2.3|15.0|220|1500|23-bit multi turn absolute optical|No 152 152 153 153 Table 2-1 Wecon Motor Specifications 154 154