Products
φ2*2mm Titanium Getter For Gas Impurity Adsorption
Optimized Surface Area
Thermal Stability
Non-Evaporable Properties
TOPTITECH's φ2*2mm Titanium Getter is a high-performance gas adsorption solution designed for precision vacuum systems. Crafted from ultra-high-purity titanium powder, this getter exhibits exceptional adsorption capacity for reactive gases such as hydrogen (H₂), nitrogen (N₂), carbon monoxide (CO), and water vapor (H₂O). Its compact cylindrical form, optimized for high surface-area-to-volume ratio, ensures efficient gas capture through chemisorption and diffusion mechanisms. Ideal for applications in vacuum heat treatment, semiconductor manufacturing, and sealed electronic devices, this titanium getter operates effectively in temperatures ranging from 650°C to 760°C, preventing oxidation and maintaining ultra-high vacuum (UHV) conditions below 10⁻¹⁰ mbar.
Engineered for durability and reliability, TOPTITECH's φ2*2mm Titanium Getter leverages advanced powder metallurgy techniques, including cold pressing and high-temperature sintering, to achieve superior mechanical strength and thermal stability. Its non-evaporable properties make it a sustainable choice, capable of repeated regeneration through controlled bake-out processes. Compatible with titanium alloy processing, this getter minimizes surface contamination and discoloration, ensuring pristine component quality. Whether integrated into vacuum furnace hot zones or used in conjunction with IV-group alloys, this titanium getter delivers unmatched performance in gas impurity removal, making it an indispensable component for high-precision industrial and scientific applications.
Products Specifications
| Material |
titanium |
|||
|
Filtration grade/Pore size |
2um |
|||
|
Size |
φ2*2mm |
|||
|
Technique |
Sintering |
|||

Products Features

High Adsorption Capacity: The φ2*2mm Titanium Getter achieves exceptional gas adsorption performance, capable of capturing reactive gases such as hydrogen (H₂), nitrogen (N₂), carbon monoxide (CO), and water vapor (H₂O) with an adsorption capacity of up to 500 cm³/g, ensuring ultra-high vacuum (UHV) conditions below 10⁻¹⁰ mbar.
Optimized Surface Area: Engineered with a compact cylindrical design, this getter maximizes surface-area-to-volume ratio, enhancing chemisorption and diffusion efficiency for superior gas impurity removal in vacuum systems.
Thermal Stability: Withstanding operational temperatures ranging from 650°C to 760°C, the titanium getter maintains structural integrity and adsorption performance, making it ideal for high-temperature vacuum heat treatment and semiconductor manufacturing.

Non-Evaporable Properties: Unlike traditional getters, this titanium-based solution does not evaporate, ensuring long-term stability and reducing contamination risks in sensitive environments such as sealed electronic devices and particle accelerators.
Regenerative Capability: Designed for sustainability, the getter can be regenerated through controlled bake-out processes, allowing repeated use and reducing operational costs in industrial applications.
Material Purity: Manufactured from 99.9% ultra-high-purity titanium powder, the getter ensures minimal outgassing and consistent performance, critical for maintaining vacuum integrity in precision systems.
applications
Vacuum Heat Treatment: The φ2*2mm Titanium Getter is essential in vacuum furnaces for heat treating titanium alloys, preventing oxidation and discoloration at temperatures between 650°C and 760°C, ensuring pristine surface quality in aerospace and medical components.
Semiconductor Manufacturing: Used in ultra-high vacuum (UHV) environments, this getter maintains pressures below 10⁻¹⁰ mbar, critical for wafer processing, thin-film deposition, and lithography in semiconductor fabrication.
Sealed Electronic Devices: Integrated into cathode ray tubes (CRTs), X-ray tubes, and vacuum interrupters, the getter effectively adsorbs residual gases, enhancing device performance and longevity.
Particle Accelerators: In high-energy physics research, the titanium getter ensures ultra-clean vacuum conditions, minimizing gas interference in particle beam operations and experimental accuracy.
Optical Coatings: Applied in vacuum coating systems, the getter removes impurities during the deposition of anti-reflective, protective, and decorative coatings on lenses, mirrors, and precision optics.
Aerospace Components: Used in the production of titanium-based aerospace parts, the getter prevents contamination during vacuum brazing and annealing, ensuring structural integrity and performance.
Medical Device Manufacturing: Critical for producing high-purity titanium implants and surgical instruments, the getter eliminates gas impurities during vacuum sintering and sterilization processes.
Research and Development: Ideal for laboratory-scale vacuum systems, the getter supports experiments in material science, surface physics, and nanotechnology by maintaining stable, contamination-free environments.
Energy Storage Systems: In lithium-ion battery production, the getter ensures clean vacuum conditions during electrode manufacturing, improving battery efficiency and lifespan.
Photonics and Lasers: Used in the fabrication of laser diodes and optical fibers, the getter maintains low gas partial pressures, enhancing device reliability and output stability.

Contact us
Tel: 0917-3873009
Phone: +86 18992731201
Email: zhangjixia@bjygti.com
Fax: 0917-3873009
Address: No. 195, Gaoxin Avenue, High-tech Development Zone, Baoji City, Shaanxi, China
Whatsapp: +86 18992731201
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