Single-drive piston, each operating cycle achieves one time boost, compact and lightweight.

Single-drive Single-acting Air Driven Gas Boosters

Single-drive Double-acting Air Driven Gas Boosters
Single-drive piston, each operating cycle achieves two times boost, offering a larger flow rate compared to single-drive single-acting types under the same pressure ratio.

Single-drive Two-stage Air Driven Gas Boosters
Single-drive piston, each operating cycle achieves two stages of boosting, capable of boosting lower pressure gases than single-drive double-acting types under the same pressure ratio.

Double-drive Single-acting Air Driven Gas Boosters
Double-drive piston, each operating cycle achieves one time boost, offering a larger flow rate compared to single-drive single-acting types under the same pressure ratio, but with higher compressed air consumption.

Double-drive Double-acting Air Driven Gas Boosters
Double-drive piston, each operating cycle achieves two times boost. offering a higher flow rate compared to double-drive single-acting types under the same pressure ratio.

Double-drive Two-stage Air Driven Gas Boosters
Double-drive piston, each operating cycle achieves two stages of boosting, capable of boosting lower pressure gases than double-drive double-acting types under the same pressure ratio.
Single-drive Single-acting Air Driven Gas Boosters
Single-drive Double-acting Air Driven Gas Boosters
Single-drive Two-stage Air Driven Gas Boosters
Double-drive Single-acting Air Driven Gas Boosters
Double-drive Double-acting Air Driven Gas Boosters
Double-drive Two-stage Air Driven Gas Boosters
· The gas-driven medium generates no heat, sparks, or flames during the pressurization process, ensuring safe boosting.
· Special sealing and pump body design, with extended maintenance intervals.
· Single and double-acting as well as two-stage pressurization modes, balancing pressure and flow rate.
· Complete separation between the air drive and medium pressurization sections, ensuring the cleanliness of the medium.
· Capable of automatically stopping pressure retention at any pressure level without energy loss.
HiFluid Air Driven Gas Boosters are suitable for gas filling, boosting, and transportation in various industrial fields, with a maximum output pressure of up to 1,500bar.
· Gas Leak Testing — Provides high-pressure gas for leak testing of components to detect any leaks.
· Gas Filling — Used to fill gas into containers, equipment, or systems to ensure the required pressure is achieved.
· Gas Recovery — Facilitates the recovery, reuse, or refilling of gas to improve resource utilization efficiency.
· Gas-Assisted Molding — Assists in processes such as plastic molding by providing high-pressure gas for better molding results.
· Gas Compressors — Acts as part of gas compression systems to increase the pressure of specific gases.