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- Cryogen-free cryostats
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- Vacuum Equipment
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CCR vacuum cryostat features
Lake Shore closed-cycle refrigerator cryostats cool the sample in vacuum and are bottom-loading. With a wide range of electrical feedthrough and window options, they are a versatile choice for making cryogenic measurements without using liquid helium.
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CCR exchange gas cryostats
Lake Shore closed-cycle refrigerator cryostats cool the sample in exchange gas. With a wide range of electrical feedthrough and window options, they are a versatile choice for making cryogenic measurements without using liquid helium.
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CCR UHV cryostats
Lake Shore closed-cycle refrigerator ultra-high vacuum cryostats cool the sample in vacuum and are top-loading. With a wide range of electrical feedthrough options, they are a versatile choice for making cryogenic measurements without using liquid helium.
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CCR Mössbauer cryostats
Lake Shore CCS-800 provides uniform cooling of powders and irregularly shaped solid samples without introducing vibrations (and subsequent line broadening). Samples are top‑loaded into static helium thermal exchange gas, eliminating the need for careful thermal anchoring. The CCS-800 is supplied with an integrated pneumatically isolated mounting stand.
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CCR cryogenic cold trap cryostats
Lake Shore offers cryogenic cold traps (CCTs) that use mechanical coolers. These traps are primarily used in the adsorption of noble gases, including helium, neon, argon, krypton, and xenon. CCTs aid in the extraction of such gases from geological materials collected from volcanic hot springs to get insight into the planetary evolution of the Earth. They are also used to adsorb various oxygen isotopes from meteorites and polar ice caps, and ocean island olivines.
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CCR low-temperature cryostats
Lake Shore closed-cycle refrigerator cryostats cool the sample in exchange gas. Helium circulates through an independent cooling loop to cool samples to temperatures as low as 1.5 K, allowing nearly unlimited operation. The sample space is separate from the cooling loop, minimizing the risk of blockages. With a wide range of electrical feedthrough and window options, they are a versatile choice for making cryogenic measurements without using liquid helium.
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