In the upgrading of industrial equipment, achieving more complex control with less hardware has always been a core challenge. In the past, multi-axis motion control often relied on multiple controllers or mechanical linkages, which was not only costly and space-consuming but also cumbersome to debug and maintain. Today, a single MPLC controller can simultaneously manage 16-axis EtherCAT bus servos and 8 pulse axes, integrating functions like multi-axis synergy and high-precision motion into one device, making control simpler and production more flexible.
In traditional solutions, controlling multiple servos and pulse axes requires multiple PLCs or additional expansion modules. However, a single MPLC directly supports 16-axis EtherCAT bus servos and 8 pulse axes.
This highly integrated design not only saves hardware costs but also reduces communication latency between devices, making multi-axis synergy more efficient while simplifying the complexity of wiring, debugging, and later maintenance.
Through the electronic cam function, MPLC can easily achieve processes that require precise synchronization, such as flying shear and rotary shear. Users can freely configure cam curves, completely replacing the gear and clutch structures in traditional machinery, avoiding wear and improving flexibility.
Supports multi-axis synergistic motion modes such as linear, circular, and 3D spiral interpolation. Whether it's cutting and engraving complex trajectories or linkage in precision assembly, it achieves smooth operation and reduces reliance on dedicated machinery.
Combined with external sensor signals, it can achieve fixed-length or fixed-angle interrupt control. In processes like feeding and cutting, real-time detection of material positions precisely triggers actions, which is particularly suitable for processes with strict positioning requirements like edge banding and grinding.
A single MPLC breaks the limitations of numerous devices and complex mechanical structures in traditional solutions through its integrated multi-axis control capabilities.
Whether it's synchronous control, electronic cams, multi-axis interpolation, or high-precision interrupt positioning, everything can be efficiently completed by one device. This design not only reduces hardware costs and maintenance difficulty but also makes motion control more flexible and responsive, providing a simpler and more reliable solution for the intelligent upgrading of industrial equipment.
在工業設備升級中,如何以更少硬體實現更複雜控制始終是核心挑戰。過去,多軸運動控制常需依賴多台控制器或機械聯動裝置,不僅成本高、佔地多,調試與維護亦十分繁瑣。如今,單台M PLC控制器即可同時管理16軸EtherCAT總線伺服與8軸脈衝軸,將多軸協同、高精度運動等功能整合於單一設備,讓控制更簡易、生產更靈活。.png)
傳統方案中,控制多台伺服與脈衝軸需多台PLC或額外擴展模組,而單台M PLC直接支援16軸EtherCAT總線伺服與8軸脈衝軸。此高度整合化設計不僅節省硬體成本,更減少設備間通訊延遲,提升多軸協同效率,同時簡化佈線、調試與後期維護的複雜度。
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透過電子凸輪功能,M PLC可輕鬆實現追剪、飛剪等需精準同步的工藝。用戶可自由配置凸輪曲線、調整運動點位,完全取代傳統機械的齒輪、離合器或軸系結構。此設計不僅避免機械磨損與定期維護問題,更能透過軟體隨時調整參數,快速適應不同生產需求,提升設備靈活性。
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M PLC支援直線、圓弧、3D螺旋插補等多軸協同運動模式。無論是複雜軌跡的切割、雕刻,或精密組裝中的多軸聯動,皆可透過插補算法實現平滑運行。此功能滿足高精度、多維度運動場景需求,同時減少對專用機械結構的依賴,讓設備設計更簡潔。
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結合外部感測器訊號,M PLC可實現定長或定角中斷控制。例如於送料、切割或加工環節,透過即時偵測物料位置或角度,精準觸發動作,確保加工精度與連續性。此功能特別適用於定位要求嚴苛的場景(如封邊、磨邊等工藝),既能提升效率,又能減少人工干預。
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M PLC透過整合化多軸控制能力,打破傳統方案中設備數量多、機械結構複雜的限制。無論是同步控制、電子凸輪、多軸插補,或高精度中斷定位,皆可透過單一設備高效完成。此設計不僅降低硬體成本與維護難度,更讓運動控制更靈活、響應更快速,為工業設備的智能化升級提供更簡潔、更可靠的解決方案。