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 Double-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 Double-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 Double-stage Air Driven Gas Boosters
Double-drive Single-acting Air Driven Gas Boosters
Double-drive Double-acting Air Driven Gas Boosters
Double-drive Double-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.
· 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.