Description
UR6PH Multi channel module
высотой 3U, расположенный в раме управления под DSPX.
волоконно – оптический разъем на передней панели и передаются в модуль обнаружения заземления.
ABB: Запасные части для промышленных роботов серии DSQC, Bailey INFI 90, IGCT, например: 5SHY6545L0001 AC1027001R0101 5SXE10 – 0181, 5SHY3545 L0009, 5SHI3545L0010 3BHB013088 R0001 3BHE009681R0101 GVC750BE101, PM866, PM861K01, PM864, PM510V16, PPD512, PPPD113, PP836A, P865A, 877, PPP881, PPPP885, PPSL500000 4 3BHL00390P0104 5SGY35L4510 и т.д.
General Electric: запасные части, такие как модули, карты и приводы. Например: VMVME – 7807, VMVME – 7750, WES532 – 111, UR6UH, SR469 – P5 – HI – A20, IS230SRTDH2A, IS220PPDAH1B, IS215UCVEH2A, IC698CPE010, IS200SRTDH2ACB и т.д.
Система Bently Nevada: 350 / 3300 / 1900, предохранительные зонды и т.д., например: 3500 / 22M, 3500 / 32, 3500 / 15, 3500 / 23500 / 42M, 1900 / 27 и т.д.
Системы Invis Foxboro: Серия I / A, управление последовательностью FBM, трапециевидное логическое управление, обработка отзыва событий, DAC,
обработка входных / выходных сигналов, передача и обработка данных, такие как FCP270 и FCP280, P0904HA, E69F – TI2 – S, FBM230 / P0926GU, FEM100 / P0973CA и т.д.
Invis Triconex: Модуль питания, модуль CPU, модуль связи, модуль ввода – вывода, например 300830937214351B, 3805E, 831235114355X и т.д.
Вудворд: контроллер местоположения SPC, цифровой контроллер PEAK150, например 8521 – 0312 UG – 10D, 9907 – 149, 9907 – 162, 9907 – 164, 9907 – 167, TG – 13 (8516 – 038), 8440 – 1713 / D, 9907 – 018 2301A, 5466 – 258, 8200 – 226 и т.д.
Hima: модули безопасности, такие как F8650E, F8652X, F8627X, F8678X, F3236, F6217, F6214, Z7138, F8651X, F8650X и т.д.
Honeywell: Все платы DCS, модули, процессоры, такие как: CC – MCAR01, CC – PAIH01, CC – PAIH02, CC – PAIH51, CC – PAIX02, CC – PAON01, CC – PCF901, TC – CR014, TC – PD011, CC – PCNT02 и т.д.
Motorola: серии MVME162, MVME167, MVME172, MVME177, такие как MVME5100, MVME5500 – 0163, VME172PA – 652SE, VME162PA – 344SE – 2G и другие.
Xycom: I / O, платы VME и процессоры, такие как XVME – 530, XVME – 674, XVME – 957, XVME – 976 и т.д.
Коул Морган: Сервоприводы и двигатели, такие как S72402 – NANA, S6201 – 550, S20330 – SRS, CB06551 / PRD – B040SSIB – 63 и т. Д.
Bosch / Luxer / Indramat: модуль ввода / вывода, контроллер PLC, приводной модуль, MSK060C – 0600 – NN – S1 – UP1 – NNN, VT2000 – 52 / R900033828, MHD041B – 144 – PG1 – UN и т.д.
3Configuring Siemens PLC
For PLC, Siemens S-1200PLC is used. Siemens PLC needs to be configured and programmed in Botu software.
After the program
is completed, the communication settings between the robot and PLC can be set. First, select the device and
network in the Porto software, then add a new device and select the controller model as Siemens 1212, as shown
in Figure 5. After adding the device, you need to set up
the PLC network. The computer and PLC must set corresponding IP addresses in the same network segment to
facilitate downloading and uploading PLC programs. After the settings are completed, click on the project tree
on the left to select the program block, and then enter
program writing. After the entire program is written, you can check whether the robot has received the signal from
the PLC through the input and output menu call in the ABB industrial robot teaching pendant, or you
can check online whether the PLC has received the signal from the
robot through the Botu software. When the line connection is good, the operator can set some signals to
complete the test work. If the test communication is normal, further PLC programming can be performed.
Figure 5 Botu software configures new equipment
4 Conclusion
This article explains in detail the communication setting process between ABB industrial robots and Siemens
PLC, making full use of the characteristics of industrial fieldbus technology. During the communication process
, signal settings are based on DeviceNet fieldbus technology. The actual operation verifies the content described
in this article. feasibility. In communication settings, special attention should be paid to the process of setting parameters such as address signals. Based on
DeviceNet fieldbus technology, communication between ABB industrial robots and PLCs can be completed more
quickly and conveniently.
In modern industry, the communication technology between industrial robots and PLC has improved the level
of production line automation and can better utilize the flexible and expandable characteristics of industrial robots.
Therefore, it is foreseeable that the application of communication technology in the production line will continue to
increase, thus exerting a great influence on industrial production. greater effect.
P0916AC FOXBORO
P0916AE FOXBORO
P0916AG FOXBORO
P0916AW FOXBORO
P0916BX FOXBORO
P0916DB FOXBORO
P0916DC FOXBORO
P0916DV FOXBORO
P0916FH FOXBORO
P0916FK FOXBORO
P0916FL FOXBORO
P0916GG FOXBORO
P0916JP FOXBORO
P0916JQ FOXBORO
P0916JW FOXBORO
P0916Js FOXBORO
P0916KM FOXBORO
P0916KN FOXBORO
P0916NG FOXBORO
P0916NK FOXBORO
P0916PH P0916AL FOXBORO
P0916PH P0916JS FOXBORO
P0916VB FOXBORO
P0916VC FOXBORO
P0916VM FOXBORO
P0916WE FOXBORO
P0916WF FOXBORO
P0916WG FOXBORO
P0917XV FOXBORO
P0922XS FOXBORO
P0923DB FOXBORO
P0923NG FOXBORO
P0923ZJ FOXBORO
P0924AU FOXBORO
P0924AW FOXBORO
P0924JH FOXBORO
P0926AH-B FOXBORO
P0926CC FOXBORO
P0926GH FOXBORO
P0926HW FOXBORO
P0926JM FOXBORO
P0926KK FOXBORO
P0926KL FOXBORO
P0926KN FOXBORO
P0926KQ FOXBORO
P0926AH P0926MX FOXBORO
P0926AH FOXBORO
P0926MX FOXBORO
P0926PA FOXBORO
P0926TM FOXBORO
P0926TP FOXBORO
P0928AY FOXBORO
P0950CA FOXBORO
P0960AH FOXBORO
P0960HA FOXBORO
P0960JA-CP40 FOXBORO
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