Wiki source code of LX3V-16EYRT
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3.1 | 1 | This manual is applied to LX3V-8EY and LX3V-16EY digital output expansion modules. |
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1.1 | 2 | |
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3.1 | 3 | = **1 Naming rule** = |
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1.1 | 4 | |
5 | Naming rule of LX3V I/O output expansion module: | ||
6 | |||
7 | (% style="text-align:center" %) | ||
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3.1 | 8 | [[image:image-20220704141604-1.png||height="82" width="300"]] |
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1.1 | 9 | |
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3.1 | 10 | |
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1.1 | 11 | 1. WECON PLC; |
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3.1 | 12 | 1. Main model; |
13 | 1. The number of output points | ||
14 | 1. Product type: E means expansion; | ||
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1.1 | 15 | 1. Expansion output(Y); |
16 | 1. T: transistor, R: relay; | ||
17 | |||
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3.1 | 18 | = **2 Dimensions** = |
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1.1 | 19 | |
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3.1 | 20 | [[image:image-20220704141653-8.jpeg]] [[image:image-20220704141658-9.jpeg]] |
21 | |||
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1.1 | 22 | (% style="text-align:center" %) |
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3.1 | 23 | [[image:image-20220704141707-10.jpeg||height="895" width="1054"]] |
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1.1 | 24 | |
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3.1 | 25 | 1. Extension cable |
26 | 1. Input indicator light of each channel | ||
27 | 1. LINK: Communication indicator between PLC and expansion module | ||
28 | 1. Expansion module name | ||
29 | 1. Digital signal output terminal | ||
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1.1 | 30 | 1. Extension module interface |
31 | 1. DIN rail mounting slot | ||
32 | 1. DIN rail hook | ||
33 | 1. Mounting holes (φ4.5) | ||
34 | |||
35 | |||
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3.1 | 36 | |Name|(% style="width:517px" %)Description|(% style="width:123px" %)Status|(% style="width:487px" %)Event status |
37 | |(% rowspan="3" %)LINK|(% rowspan="3" style="width:517px" %)Communication indicator between PLC and expansion module|(% style="width:123px" %)Flashes|(% style="width:487px" %)Normal data transmission(normal communication) | ||
38 | |(% style="width:123px" %)OFF|(% style="width:487px" %)Data transmission is abnormal, stopped, or failed | ||
39 | |(% style="width:123px" %)ON|(% style="width:487px" %)Software is abnormal or hardware is faulty | ||
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1.1 | 40 | |
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3.1 | 41 | **✎Note:** Except different I/O input points, LX3V-8EY and LX3V-16EY have the same dimensions and the same other functions. |
42 | |||
43 | == **2.1 Crimp terminations** == | ||
44 | |||
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1.1 | 45 | (% style="text-align:center" %) |
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3.1 | 46 | [[image:image-20220704141604-3.png]] |
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1.1 | 47 | |
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3.1 | 48 | 1. Please use crimp terminals as indicated on the graph. |
49 | 1. The tightening torque should be applied 5 to 8 Kg.cm. | ||
50 | 1. Other terminals should be empty but only wiring terminals mention in this manual. | ||
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1.1 | 51 | |
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3.1 | 52 | = **3 Output specification** = |
53 | |||
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1.1 | 54 | |(% colspan="2" %)**Item**|**Relay output**|**Transistor output** |
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3.1 | 55 | |(% colspan="2" %)ModeL|LX3V-8EYR/16EYR|LX3V-8EYT/16EYT |
56 | |(% colspan="2" %)Output circuit|[[image:image-20220704141604-4.png]]|[[image:image-20220704141604-5.png]] | ||
57 | |(% colspan="2" %)Power supply|Less than AC250V or DC 30V|DC 5V to 30V | ||
58 | |(% colspan="2" %)Circuit insulation|Mechanical|Optocoupler insulation | ||
59 | |(% colspan="2" %)LED|Light when relay is energized|Light when optocoupler is energized | ||
60 | |(% rowspan="3" %)((( | ||
61 | Max | ||
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1.1 | 62 | |
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3.1 | 63 | Load |
64 | )))|Resistance|((( | ||
65 | 2A/one point | ||
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1.1 | 66 | |
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3.1 | 67 | 8A/four points |
68 | |||
69 | 8A/eight points | ||
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1.1 | 70 | )))|((( |
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3.1 | 71 | 0.5A/one point |
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1.1 | 72 | |
73 | 0.8A/ four points | ||
74 | |||
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3.1 | 75 | 1.6A/eight points |
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1.1 | 76 | ))) |
77 | |Inductance|80VA|12W/DC24V | ||
78 | |Lamp|100W|1.5W/DC24V | ||
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3.1 | 79 | |(% colspan="2" %)Leakage current|-|0.1mA/ DC 30V |
80 | |(% colspan="2" %)Minimum load|-|DC 5V 2mA | ||
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1.1 | 81 | |(% colspan="2" %)OFF->ON|About 10ms|Less than 0.2ms |
82 | |(% colspan="2" %)ON-> OFF|About 10ms|Less than 0.2ms | ||
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3.1 | 83 | |
84 | = **4 Instructions** = | ||
85 | |||
86 | The I/O output points on the module are named from the next Y point, using the points on the host as endpoints. For example: | ||
87 | |||
88 | 1. If the host is LX3V-1212MR-A and there are 12 output points (Y0 to Y7, Y10 to Y13). | ||
89 | 1. If you expand an LX3V-16EY module on the host , the Y points defined in the module on the host computer are X20 to X27 and X30 to X37. | ||
90 | 1. If you expand multiple I/O output point modules on the host, the I/Os on the module will be named in the same order. | ||
91 | |||
92 | **✎Note: **When adding IO expansion modules to the host, in principle, the number of all output points Y must not exceed 256 points. When adding IO expansion modules to the host, if the host needs to connect multiple IO modules, it is recommended to add a separate power supply board to the module for power supply. | ||
93 | |||
94 | = **5 Program** = | ||
95 | |||
96 | [[image:image-20220704141847-12.jpeg]] | ||
97 | |||
98 | As shown in the example above, it is LX3V-3624MT with two LX3V-16EY modules and one LX3V-4DA module. The host has 24 output points Y: Y0 to Y7, Y10 to Y17, Y20 to Y27. The output point in the module ① called by host are Y30 to Y37 and Y40 to Y43, and the output points in the module ③ called by host are Y50 to Y57 and Y60 to Y67. | ||
99 | |||
100 | [[image:image-20220704141840-11.jpeg]] | ||
101 | |||
102 | As shown in the example above, it is the LX3V-3624MT with one LX3V-16EYR and two LX3V-4DA modules. The host has24 output points Y: Y0 to YX7, Y10 to Y17, Y20 to Y27. The output point in the module ③ called by host are Y30 to Y37 and Y40 to Y47. |