It is a common fact that sometimes in hydraulic actuation it is necessary to divide the flow in order to synchronize the movement of various mechanisms. In that case it is used a hydraulic flow divider that can be mechanically or electronically driven. Further we will refer only to the electronically driven hydraulic flow divider. Having a simple construction, the flow divider doesn't need a supplementary supply pump and uses a single rod that glides to the left or to the right according to the frequency ofthe driving signal.
The paper describes a systematic approach regarding the development of the electro hydraulic applications. The constantly increased number ofsensors used into this type ofsystems and the need ofa control equipment able to implement local regulation loops, contribute to the design ofa compact, multifunctional electronic module capable on one way to interface with the electro hydraulic system to measure it's functional parameters and to drive it's electro hydraulic constituent elements, and on the other, to interface with other control systems via a communication protocol implemented on a serial bus. The proposed module offers a high degree offlexibility both at the hardware level as an analogical input can be easily adapted to support voltage signals instead ofcurrent signals; and at the software level where it can be implemented various regulation algorithms depending on the electro hydraulic application. The microcontroller present into the module assures the usage of a reduced number of electronic components. This fact increases the robustness of the solution which is needed for the system to properly operate under heavy working environment conditions.
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