Flow Control Valves

Frigate flow control valves use advanced flow profiling and precision actuators that maintain exact flow rates despite pressure or temperature fluctuations. This ensures your process stays stable and repeatable, eliminating costly variability. 

flow control valves

Our Clients

Trusted by Engineers and Purchasing Leaders 

Our Flow Control Valves Products

Explore our range of high-quality Flow Control Valves today.

Plug valve - IMG
Angle valve - IMG
Balancing Valve - IMG (2)

Words from Clients

See how global OEMs and sourcing heads describe their experience with our scalable execution.

We export to 10+ countries

Frigate’s Global Presence

Frigate takes pride in facilitating “Make in India for the globe“.  As our global network of Frigaters provides virtually limitless capacity, and through our IoT enabled platform your parts go directly into production. By digitally and technologically enabling “the silent pillars of the economy” MSME and SME manufacturing industries, we are able to tap the huge potential for manufacturing to bring the best results for our clients.

flow control valves

100,000+

Parts Manufactured

250+

Frigaters

2000+

Machines

450+

Materials

25+

Manufacturing Process

Industry Applications

Distributed Control Systems (DCS)

Integrate into automated process loops to dynamically regulate flow variables across complex industrial control architectures in real time. 

Cryogenic and LNG Systems

Handle ultra-low temperature fluids with precise flow modulation for storage, transport, and regasification of liquefied natural gases. 

Hydraulic Actuation Networks

Control fluid pressure and rate within closed-loop hydraulic circuits powering actuators, ensuring motion control in heavy machinery systems. 

Subsea Production Systems

Regulate oil, gas, and chemical injection flow under high-pressure, high-depth environments using remotely operated control architectures. 

High-Purity Semiconductor Fabrication

Manage ultrapure chemical and gas flow in photolithography and etching chambers under tightly controlled environmental conditions. 

Nuclear Reactor Cooling Loops

Control coolant flow through primary and secondary circuits to maintain core temperature and reactor thermal-hydraulic stability. 

Angle valves
flow control valves
flow control valves
Balancing Valves

Engineered for Fluid Versatility

Our flow control valves are built to handle the toughest fluids, from aggressive chemicals to high-temperature and particulate-laden media, ensuring reliable performance and long service life. 

Having Doubts? Our FAQ

Check all our Frequently Asked Questions

How do multi-stage trim designs in flow control valves mitigate pressure-induced erosion and cavitation?

Multi-stage trims divide the pressure drop across several stages, reducing velocity and energy at each step to prevent vapor bubble formation. This staged energy dissipation significantly lowers the risk of cavitation-induced pitting and erosion. Materials like tungsten carbide are often used on critical surfaces to resist wear. These features extend valve life and maintain stable flow control under high-pressure drops. 

What role does the valve’s flow coefficient (Cv) play in optimizing system performance?

The flow coefficient (Cv) quantifies the valve’s capacity to pass fluid at a given pressure drop, directly influencing sizing and control accuracy. Accurate Cv selection ensures the valve operates within its optimal range, preventing instability or excess wear. Using computational fluid dynamics (CFD), engineers optimize internal geometry to maximize Cv while minimizing turbulence. This leads to improved energy efficiency and precise flow regulation. 

How are advanced sealing technologies implemented to maintain leak-tight performance in high-cycle applications

High-cycle applications require seals that resist wear, thermal degradation, and chemical attack over millions of cycles. Metal-to-metal seals paired with resilient elastomers provide dual sealing redundancy, enhancing reliability. Seals are precision-machined and often coated with PTFE or graphite composites to reduce friction and wear. This combination ensures consistent sealing force, preventing leakage even under rapid, repeated valve actuation. 

In what ways does valve actuator selection impact dynamic flow control responsiveness?

Actuator type—pneumatic, electric, or hydraulic—determines response speed, accuracy, and control stability. Fast-acting pneumatic actuators are ideal for quick modulation but may require positioners for precise control. Electric actuators offer fine position resolution and integration with digital control systems, supporting complex automation. Proper actuator sizing and tuning minimize overshoot and hysteresis, enabling smooth, repeatable valve positioning.

How do surface finish and coating technology influence valve performance in abrasive slurry applications?

Surface finish reduces friction and erosion; a smoother finish minimizes particle impact damage and buildup. Advanced coatings such as tungsten carbide or ceramic layers provide hard, wear-resistant barriers on valve trims and seats. These coatings significantly extend component life by resisting abrasive wear and corrosion. Optimizing finish and coating results in reliable performance and lower maintenance in slurry environments. 

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LOCATIONS

Global Sales Office

818, Preakness lane, Coppell, Texas, USA – 75019

Registered Office

10-A, First Floor, V.V Complex, Prakash Nagar, Thiruverumbur, Trichy-620013, Tamil Nadu, India.

Operations Office

9/1, Poonthottam Nagar, Ramanandha Nagar, Saravanampatti, Coimbatore-641035, Tamil Nadu, India. ㅤ

Other Locations

GENERAL ENQUIRIES

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