Hiter Controls is a Brazilian company pioneering in the development of control valve solutions for the oil and gas sector. We offer solutions for a wide range of applications, from exploration (upstream) and transport (midstream) to oil and gas refining (downstream).
Control valve solutions for off-shore (FPSO) or on-shore applications. Typical products in our portfolio for this industry are globe or rotary control valves made with special materials such as duplex or super duplex stainless steel and valves with special internals for cavitation control in unclean fluids.
Special internals for noise and cavitation control are also available in the many different configurations to match each specific process. Compressor anti-surge valves, injection valves, valves for separators and distillation towers and emergency shut-off valves are just some of the applications we offer in the oil and gas industry.
Hiter's globe valves provide excellent sensitivity, precise control, and easy adjustment, with significantly reduced weight and size.
The self-operated reducing valves, with precise adjustment, are designed to relieve and reduce pressure in lines of steam, water oil, air, gas and other liquids. They are used to regulate the pressure upstream or downstream of the valve and ensure its stability.
Rotary valves feature a more compact design compared to globe valves, offering an excellent cost-benefit ratio for large diameters. Additionally, they provide greater flow capacity, high rangeability, and superior sealing capability.
Hiter Controls 为化工和石化行业的过程控制提供完整的解决方案。
Hiter Controls offers a complete range of control valves for the mining and steel industry, with high-performance equipment to perform consistently and efficiently in typically corrosive and erosive environments. Our complete range of double and triple eccentricity butterfly valves, eccentric plug valves and segmented ball valves are made from special materials to withstand the heavy-duty services of the steel and mining industry, providing high durability even in the most critical conditions.