- Whitworth pipe thread - Thread G2 for manual override - Chambered O-ring - Sealing: NBR - Material: brass nickel plated, Al black anodized - Allowable medium: air - Temperature range 14 to 158 °F (-10 to +70 °C) - Working pressure range 14,5 to 145 psi (1 to 10 bar) - Nominal flow rate measured when throttle is open at 87 psi (6 bar) and 14,5 psi (1 bar) pressure drop between inlet and exhaust
Germany
The sliding gate motor valve type 8038 in reinforced design with highresolution fast actuatoris suitable for a wide range of process applications. Media such as steam, liquids, gases, etc. can be handled precisely. The interaction of highprecision control electronics with the precise stepper motor results in a positioning accuracy of ± 0.2% even with a valve stroke of only 6 mm. By means of supercapacitor technology, in the event of a power supply failure, the valve returns to its defined basic position. Metal bellows Position electronics Analog stroke feedback Limit switch Fail safe feature
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These valves can be supplied in a wide variety of standard versions, e.g.: in three different base shapes (standard, flange and screw-in base), with connection for plug-in socket prefabricated or with flying leads, as 2/2 way NC or 3/2 way NO/NC, also available as low watt version and with nominal orifice of 0.5, 1 or 1.5 mm. For plug-in sockets, current indication and erasing diode please see valve accessories.
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KAMAT's in-house manufactured control valves are the ideal solution when you are looking for a continuous, trouble-free solution for controlling the direction of fluid flow. The combination of our various valves, such as directional, on/off and switching valves, transforms complex tasks into easily controlled functions of your high pressure unit. All of our control solutions can be remotely controlled using either electric, hydraulic, mechanical or pneumatic access, making our solutions even more versatile and adaptable to different demanding environments. All of these solutions can be manufactured using special materials, further enhancing their versatility and making them suitable for use in combination with demanding media such as chemicals.
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