Changes for page 06 Operation
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... ... @@ -1018,8 +1018,7 @@ 1018 1018 1019 1019 **(2) Setting steps of electronic gear ratio** 1020 1020 1021 -(% style="text-align:center" %) 1022 -[[image:image-20220608153230-4.png||height="567" width="290"]] 1021 +[[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_9af279e6d5253d7a.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_9af279e6d5253d7a.gif"]] 1023 1023 1024 1024 Figure 6-24 Setting steps of electronic gear ratio 1025 1025 ... ... @@ -1121,7 +1121,6 @@ 1121 1121 1122 1122 Reasonable setting of the position loop filter time constant can operate the motor more smoothly, so that the motor speed will not overshoot before reaching the stable point. This setting has no effect on the number of instruction pulses. The filter time is not as long as possible. If the filter time is longer, the delay time will be longer too, and the response time will be correspondingly longer. It is an illustration of several kinds of position filtering. 1123 1123 1124 -(% style="text-align:center" %) 1125 1125 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_58c73e15d14818f5.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_58c73e15d14818f5.gif"]] 1126 1126 1127 1127 Figure 6-25 Position instruction filtering diagram ... ... @@ -1166,7 +1166,6 @@ 1166 1166 (% class="wikigeneratedid" %) 1167 1167 the positioning completion function means that when the position deviation meets the value set by P05-12, it could be considered that the positioning is complete in position control mode. At this time, servo drive could output the positioning completion signal, and the host computer could confirm the completion of the positioning of servo drive after receiving the signal. 1168 1168 1169 -(% style="text-align:center" %) 1170 1170 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_a317d1e7b69d9f5.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_a317d1e7b69d9f5.gif"]] 1171 1171 1172 1172 Figure 6-26 Positioning completion signal output diagram ... ... @@ -1175,7 +1175,6 @@ 1175 1175 1176 1176 To use the positioning completion/positioning approach function, a DO terminal of the servo drive should be assigned to the function 134 (P-COIN, positioning completion)/ 135 (P-NEAR, positioning approach). The related code parameters and DO function codes are shown as __[[Table 6-24>>http://13.229.109.52:8080/wiki/servo/view/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20(Full%20V1.1)/06%20Operation/#HPosition-relatedDOoutputfunction]]__. 1177 1177 1178 -(% style="text-align:center" %) 1179 1179 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_135bb12a3465fd06.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_135bb12a3465fd06.gif"]] 1180 1180 1181 1181 Figure 6-27 Positioning completion signal output with increased window filter time diagram ... ... @@ -1448,7 +1448,6 @@ 1448 1448 1449 1449 Table 6-29 Correspondence between INSPD bits and segment numbers 1450 1450 1451 -(% style="text-align:center" %) 1452 1452 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_f54c42ea2d098bf8.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_f54c42ea2d098bf8.gif"]] 1453 1453 1454 1454 Figure 6-29 Multi-segment speed running curve ... ... @@ -1457,14 +1457,12 @@ 1457 1457 1458 1458 The servo drive processes the analog voltage signal output by the host computer or other equipment as a speed instruction. VD2A and VD2B series servo drives have 2 analog input channels: AI_1 and AI_2. AI_1 is analog speed input, and AI_2 is analog speed limit. 1459 1459 1460 -(% style="text-align:center" %) 1461 -[[image:image-20220608153341-5.png]] 1455 +[[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_a3f8a734b72fcc10.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_a3f8a734b72fcc10.gif"]] 1462 1462 1463 1463 Figure 6-30 Analog input circuit 1464 1464 1465 1465 Taking AI_1 as an example, the method of setting the speed instruction of analog voltage is illustrated as below. 1466 1466 1467 -(% style="text-align:center" %) 1468 1468 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_43da944efa0a6a10.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_43da944efa0a6a10.gif"]] 1469 1469 1470 1470 Figure 6-31 Analog voltage speed instruction setting steps ... ... @@ -1477,7 +1477,6 @@ 1477 1477 1478 1478 Dead zone: It is the corresponding analog input voltage interval when the sample voltage is 0. 1479 1479 1480 -(% style="text-align:center" %) 1481 1481 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_4bcfc7a8548b6252.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_4bcfc7a8548b6252.gif"]] 1482 1482 1483 1483 Figure 6-32 AI_1 diagram before and after bias ... ... @@ -1499,7 +1499,6 @@ 1499 1499 1500 1500 In the speed control mode, excessive acceleration of the speed instruction will cause the motor to jump or vibrate. Therefore, a suitable acceleration and deceleration time can realize the smooth speed change of the motor and avoid the occurrence of mechanical damage caused by the above situation. 1501 1501 1502 -(% style="text-align:center" %) 1503 1503 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_68d514ca1c1b327.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_68d514ca1c1b327.gif"]] 1504 1504 1505 1505 Figure 6-33 of acceleration and deceleration time diagram ... ... @@ -1605,7 +1605,6 @@ 1605 1605 1606 1606 Table 6-33 Zero-speed clamp related parameters 1607 1607 1608 -(% style="text-align:center" %) 1609 1609 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_bc1d29f8fdb299dc.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_bc1d29f8fdb299dc.gif"]] 1610 1610 1611 1611 Figure 6-34 Zero-speed clamp diagram ... ... @@ -1618,7 +1618,6 @@ 1618 1618 1619 1619 After the speed instruction is filtered, the absolute value of the actual speed absolute value of the servo motor reaches P05-16 (rotation detection speed threshold), it could be considered that the motor is rotating. At this time, the servo drive outputs a rotation detection signal (TGON), which can be used to confirm that the motor has rotated. On the contrary, when the absolute value of the actual rotation speed of the servo motor is less than P05-16, it is considered that the motor is not rotating. 1620 1620 1621 -(% style="text-align:center" %) 1622 1622 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_fb8cfa4f5903d0f1.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_fb8cfa4f5903d0f1.gif"]] 1623 1623 1624 1624 Figure 6-35 Rotation detection signal diagram ... ... @@ -1661,7 +1661,6 @@ 1661 1661 1662 1662 If the absolute value of the actual speed of servo motor is less than a certain threshold P05-19, it is considered that servo motor stops rotating (close to a standstill), and the servo drive outputs a zero speed signal (ZSP) at this time. On the contrary, if the absolute value of the actual speed of the servo motor is not less than this value, it is considered that the motor is not at a standstill and the zero-speed signal is invalid. 1663 1663 1664 -(% style="text-align:center" %) 1665 1665 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_5e35c1aad6d8dfbe.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_5e35c1aad6d8dfbe.gif"]] 1666 1666 1667 1667 Figure 6-36 Zero-speed signal diagram ... ... @@ -1694,7 +1694,6 @@ 1694 1694 1695 1695 When the absolute value of the deviation between the actual speed of the servo motor after filtering and the speed instruction meets a certain threshold P05-17, it is considered that the actual speed of the motor has reached the set value, and the servo drive outputs a speed coincidence signal (V-COIN) at this time. Conversely, if the absolute value of the deviation between the actual speed of the servo motor and the set speed instruction after filtering exceeds the threshold, the speed consistent signal is invalid. 1696 1696 1697 -(% style="text-align:center" %) 1698 1698 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_2b53a916c8f09d5.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_2b53a916c8f09d5.gif"]] 1699 1699 1700 1700 Figure 6-37 Speed consistent signal diagram ... ... @@ -1727,7 +1727,6 @@ 1727 1727 1728 1728 After filtering, the absolute value of the actual speed of the servo motor exceeds a certain threshold [P05-17], and it is considered that the actual speed of the servo motor has reached the expected value. At this time, the servo drive can output a speed close signal (V-NEAR) through the DO terminal. Conversely, if the absolute value of the actual speed of the servo motor after filtering is not greater than this value, the speed approach signal is invalid. 1729 1729 1730 -(% style="text-align:center" %) 1731 1731 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_46c88547b24e8a4b.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_46c88547b24e8a4b.gif"]] 1732 1732 1733 1733 Figure 6-38 Speed approaching signal diagram ... ... @@ -1760,7 +1760,6 @@ 1760 1760 1761 1761 The current of the servo motor has a linear relationship with the torque. Therefore, the control of the current can realize the control of the torque. Torque control refers to controlling the output torque of the motor through torque instructions. Torque instruction could be given by internal instruction and analog voltage. 1762 1762 1763 -(% style="text-align:center" %) 1764 1764 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_fa7e410ad05cf1a6.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_fa7e410ad05cf1a6.gif"]] 1765 1765 1766 1766 Figure 6-39 Torque mode diagram ... ... @@ -1809,14 +1809,12 @@ 1809 1809 1810 1810 The servo drive processes the analog voltage signal output by host computer or other equipment as torque instruction. VD2A and VD2B series servo drives have 2 analog input channels: AI_1 and AI_2. AI_1 is analog torque input, and AI_2 is analog torque limit. 1811 1811 1812 -(% style="text-align:center" %) 1813 -[[image:image-20220608153646-7.png||height="213" width="408"]] 1797 +[[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_bd6a9cba37c8c87e.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_bd6a9cba37c8c87e.gif"]] 1814 1814 1815 1815 Figure 6-40 Analog input circuit 1816 1816 1817 1817 Taking AI_1 as an example, the method of setting torque instruction of analog voltage is as below. 1818 1818 1819 -(% style="text-align:center" %) 1820 1820 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_186332b32f148c60.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_186332b32f148c60.gif"]] 1821 1821 1822 1822 Figure 6-41 Analog voltage torque instruction setting steps ... ... @@ -1829,7 +1829,6 @@ 1829 1829 1830 1830 Dead zone: It is the corresponding analog input voltage interval when the sample voltage is 0. 1831 1831 1832 -(% style="text-align:center" %) 1833 1833 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_9e37dbf27a47694a.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_9e37dbf27a47694a.gif"]] 1834 1834 1835 1835 Figure 6-42 AI_1 diagram before and after bias ... ... @@ -1865,7 +1865,6 @@ 1865 1865 1866 1866 ✎**Note: **If the filter time constant is set too large, the responsiveness will be reduced. Please set it while confirming the responsiveness. 1867 1867 1868 -(% style="text-align:center" %) 1869 1869 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_205df0eae349c586.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_205df0eae349c586.gif"]] 1870 1870 1871 1871 Figure 6-43 Torque instruction-first-order filtering diagram ... ... @@ -1876,7 +1876,6 @@ 1876 1876 1877 1877 At any time, there is only one valid torque limit value. And the positive and negative torque limit values do not exceed the maximum torque of drive and motor and ±300.0% of the rated torque. 1878 1878 1879 -(% style="text-align:center" %) 1880 1880 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_5150cab591eac5bc.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_5150cab591eac5bc.gif"]] 1881 1881 1882 1882 Figure 6-44 Torque instruction limit diagram ... ... @@ -1954,13 +1954,7 @@ 1954 1954 1955 1955 In torque mode, the actual motor speed would be in the limited speed. After the speed limit is reached, the motor runs at a constant speed at the speed limit. The running curves are shown as __[[Figure 6-45>>http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_e1eced3568bc22d7.gif?rev=1.1]]__ and __[[Figure 6-46>>http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_79d479af8534745f.gif?rev=1.1]]__. 1956 1956 1957 -|((( 1958 -(% style="text-align:center" %) 1959 -[[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_e1eced3568bc22d7.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_e1eced3568bc22d7.gif"]] 1960 -)))|((( 1961 -(% style="text-align:center" %) 1962 -[[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_79d479af8534745f.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_79d479af8534745f.gif"]] 1963 -))) 1937 +|[[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_e1eced3568bc22d7.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_e1eced3568bc22d7.gif"]]|[[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_79d479af8534745f.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_79d479af8534745f.gif"]] 1964 1964 |Figure 6-45 Forward running curve|Figure 6-46 Reverse running curve 1965 1965 1966 1966 (% class="table-bordered" %) ... ... @@ -2008,7 +2008,6 @@ 2008 2008 2009 2009 The torque arrival function is used to determine whether the actual torque instruction reaches the set interval. When the actual torque instruction reaches the torque instruction threshold, the servo drive outputs a torque arrival signal (T-COIN) for the host computer use. 2010 2010 2011 -(% style="text-align:center" %) 2012 2012 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_c5aa33a1ea3666a9.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_c5aa33a1ea3666a9.gif"]] 2013 2013 2014 2014 Figure 6-47 Torque arrival output diagram ... ... @@ -2133,7 +2133,6 @@ 2133 2133 2134 2134 The relationship between encoder feedback position and rotating load position is shown in the figure below. (take a 17-bit encoder as an example). 2135 2135 2136 -(% style="text-align:center" %) 2137 2137 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_f1dd9e5d93d026de.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_f1dd9e5d93d026de.gif"]] 2138 2138 2139 2139 Figure 6-48 Diagram of relationship between encoder feedback position and rotating load position ... ... @@ -2151,7 +2151,6 @@ 2151 2151 2152 2152 The relationship between encoder feedback position and rotating load multi-turn is shown in the figure below (take a 23-bit encoder as an example). 2153 2153 2154 -(% style="text-align:center" %) 2155 2155 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_e6f0ac4930ba15b8.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_e6f0ac4930ba15b8.gif"]] 2156 2156 2157 2157 Figure 6-49 The relationship between encoder feedback position and rotating load position ... ... @@ -2172,7 +2172,6 @@ 2172 2172 2173 2173 Er.40 (Encoder battery failure) will occur when the battery is turned on for the first time, and the function code P10-03 must be set to 1 to clear the encoder fault to operate the absolute value system again. 2174 2174 2175 -(% style="text-align:center" %) 2176 2176 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_e9fac7759607dce6.png?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_e9fac7759607dce6.png"]] 2177 2177 2178 2178 Figure 6-50 the encoder battery box ... ... @@ -2219,7 +2219,6 @@ 2219 2219 2220 2220 Take the VDI_1 terminal assignment forward drive prohibition (03-POT) as an example, and the use steps of VDI are as the figure below. 2221 2221 2222 -(% style="text-align:center" %) 2223 2223 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_d237b43521f07beb.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_d237b43521f07beb.gif"]] 2224 2224 2225 2225 Figure 6-51 VDI_1 setting steps ... ... @@ -2324,7 +2324,6 @@ 2324 2324 2325 2325 Take the DO_2 terminal as communication VDO, and the use steps of VDI are as the figure below. 2326 2326 2327 -(% style="text-align:center" %) 2328 2328 [[image:http://docs.we-con.com.cn/wiki/servo/download/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/WebHome/Wecon%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29_html_571b1f09b2ec0199.gif?rev=1.1||alt="Wecon VD2 SA Series Servo Drives Manual (Full V1.1)_html_571b1f09b2ec0199.gif"]] 2329 2329 2330 2330 Figure 6-52 VDO_2 setting steps
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