Contributes to maintaining vacuum levels in various devices with a versatile range of sizes and getter characteristics.
Pill-type getters are produced by compressing Saes getter alloys through a controlled and stable manufacturing process. The compressed pills come in a variety of sizes and configurations, allowing for the optimal selection of vacuum equipment models based on the expected gas load. As other non-evaporable getters, the pills effectively absorb active gases (H2, H2O, CO, CO2, O2, etc.) and maintain a high vacuum state within various sealing devices. 【Features】 ○ High adsorption capacity for H2, H2O, CO, CO2, and O2 ○ Available in various sizes, structures, and getter materials ○ Activation of getter materials at low to medium temperatures (St2002), medium temperatures (St707, St787, and St777), or high temperatures (St101) ○ Excellent mechanical stability.
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basic information
Saes' getter technology has been closely involved in the revolution of vacuum technology and related devices for over the past 50 years. The development of various getter alloys and different shapes and structures of non-evaporable getters has been encouraged to fit all possible vacuum devices, addressing specific process conditions (such as process temperature, special needs for adsorption force, and adsorption force at different temperatures).
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Applications/Examples of results
【Applications】 ● Concentrated Solar Power (CSP) tubes ● Thermos and vacuum insulation devices ● Water vapor injection ● Low-temperature containers ● Vacuum circuit breakers
Company information
The "Saes Getters Group," a global pioneer in getter technology, has been providing solutions for various applications, such as high and ultra-high vacuum environments and the deposition of pure metals, since its founding in the 1940s (including gas/moisture adsorbents, mercury/alkali metal deposition sources, etc.). Additionally, the company has actively invested in research and development, and since 2004, it has expanded its business into the Nitinol market. The superelastic properties of Nitinol are applied in medical devices, while its shape memory characteristics are utilized in industrial and household electrical appliances.