Linde Hydraulics is a global developer and supplier of modular drive systems consisting of hydraulics, power transmissions and electronics. A leading technology provider in the field of high pressure hydraulics, systems produced by Linde Hydraulics set the standard in terms of significantly reducing fuel consumption and CO2. The product range comprises hydraulic pumps and motors, valves, electronic controls, peripheral devices, rotary drives and electric motors. Linde Hydraulics is the development partner and supplier of a number of reputable manufacturers of mobile work machinery, including construction, mining, agricultural, forestry and municipal utility machines, as well as manufacturers of industrial machinery.
Based in Aschaffenburg. Around 1300 employees work at 4 production sites in Germany, at a fifth production site in China and at the subsidiaries in Europe, the US and China. Linde Hydraulics is represented in more than 50 countries by a around 80 sales and service partners.
Linde is a manufacturer of axial piston pumps for open and closed circuits. The company’s offerings include variable and self regulating pumps. The products are suitable for a peak pressure of up to 580 bar in heavy duty hydraulic applications.
Series 02 motors from Linde Hydraulics are different from those common in the market. They are able to provide the required torque even at low speeds and make it possible to start smoothly and sensitively. Therefore, additional gear ratios for rpm reduction are not necessary. This reduces the amount of parts going into the component and also increases the overall mechanical efficiency, minimizes windage losses as well as the noise level of the machine.
Linde directional control valves are designed for the use in the Linde Synchron Control (LSC) System which offers superior performance and increased efficiency. As a pioneer of load sensing technology, Linde has more than 25 years of experience in challenging applications in open circuits. Compared to other systems, LSC enhances fuel economy up to 10%. Flow control of the regulating pump and elimination of bypass flow losses due to the "closed-centre" design prevent wasting energy and fuel.
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