A system that facilitates the operation of hydraulic methods utilizing compressed air. This strategy transforms pneumatic stress into hydraulic stress, permitting for the utilization of hydraulic energy in environments the place solely compressed air is available. For instance, in cell functions, a automobile’s air brake system may be tailored to energy hydraulic actuators via such a conversion.
This technique gives a number of benefits. It eliminates the necessity for separate hydraulic energy items, lowering complexity, weight, and upkeep necessities. Moreover, it permits for exact and managed hydraulic power, which is helpful in functions demanding accuracy and repeatability. Traditionally, this integration has been prevalent in industries the place pneumatic methods are already commonplace, reminiscent of automotive, industrial automation, and heavy equipment.