Lake Shore Cryotronics, Inc. Superconducting Magnet Systems SuperVariMag

Description
SuperVariMag superconducting magnet systems — SVM Series The standard SuperVariMag systems offer magnetic fields of 6 to 9 T (niobium-titanium coils) and 10 to 14 T (niobium-tin coils), sample tubes of 1.0 in to 1.5 in diameter, and a 20 L useful capacity open neck helium reservoir in a vapor shielded superinsulated Dewar. Standard configuration While the standard systems offer a vertical magnetic field and split pair coils, double or triple coil configurations are also offered in various field strengths for horizontal field directions or rotating vector fields. Please contact us for a list of available designs or for a custom-designed magnet system. SuperVariMag systems can also be supplied in larger helium capacity Dewars, where a "belly" in the helium reservoir provides an increased helium capacity above the magnet. They can also be supplied in an ultra-low loss (ULL) cryostat that offers a static loss rate between 4 and 5 L/day with the magnet and variable temperature insert in position. The high-efficiency systems usually incorporate a low current magnet design and a cryostat with a nitrogen reservoir, superinsulation, and an additional radiation shield between the helium and nitrogen reservoirs to provide the ultimate efficiency in a top-loading system. When required, we also offer 9 T/11 T up to 14 T/16 T magnets with a Lambda point refrigerator (LPR) for operation at the higher field with the reservoir at atmospheric pressure. SuperVariMag systems offer efficient cost-effective systems with static hold times that range from two to ten days and are available with field homogeneities of 0.5% and 0.1% over a 1 cm diameter sphere. Larger sample tubes (3 to 4 in OD), higher field homogeneities (0.01 % or better over 1 cm diameter sphere), and special field profiles are available. Non-optical experiments such as critical current, resistivity, specific heat, Hall effect, etc. are easily performed with a SuperVariMag system. With the addition of appropriate gradient, modulation, and pick-up coils, the SuperVariMag system is easily adapted for use in Faraday balance susceptometry, vibrating sample magnetometry, etc. The SuperVariMag series may be used in conjunction with an optional independent magnet support and wiring system, thus allowing a magnet to be used with more than one insert. In this configuration, the SVT insert can be introduced and removed without disturbing the magnet.
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Description
SuperVariMag superconducting magnet systems — SVM Series The standard SuperVariMag systems offer magnetic fields of 6 to 9 T (niobium-titanium coils) and 10 to 14 T (niobium-tin coils), sample tubes of 1.0 in to 1.5 in diameter, and a 20 L useful capacity open neck helium reservoir in a vapor shielded superinsulated Dewar. Standard configuration While the standard systems offer a vertical magnetic field and split pair coils, double or triple coil configurations are also offered in various field strengths for horizontal field directions or rotating vector fields. Please contact us for a list of available designs or for a custom-designed magnet system. SuperVariMag systems can also be supplied in larger helium capacity Dewars, where a "belly" in the helium reservoir provides an increased helium capacity above the magnet. They can also be supplied in an ultra-low loss (ULL) cryostat that offers a static loss rate between 4 and 5 L/day with the magnet and variable temperature insert in position. The high-efficiency systems usually incorporate a low current magnet design and a cryostat with a nitrogen reservoir, superinsulation, and an additional radiation shield between the helium and nitrogen reservoirs to provide the ultimate efficiency in a top-loading system. When required, we also offer 9 T/11 T up to 14 T/16 T magnets with a Lambda point refrigerator (LPR) for operation at the higher field with the reservoir at atmospheric pressure. SuperVariMag systems offer efficient cost-effective systems with static hold times that range from two to ten days and are available with field homogeneities of 0.5% and 0.1% over a 1 cm diameter sphere. Larger sample tubes (3 to 4 in OD), higher field homogeneities (0.01 % or better over 1 cm diameter sphere), and special field profiles are available. Non-optical experiments such as critical current, resistivity, specific heat, Hall effect, etc. are easily performed with a SuperVariMag system. With the addition of appropriate gradient, modulation, and pick-up coils, the SuperVariMag system is easily adapted for use in Faraday balance susceptometry, vibrating sample magnetometry, etc. The SuperVariMag series may be used in conjunction with an optional independent magnet support and wiring system, thus allowing a magnet to be used with more than one insert. In this configuration, the SVT insert can be introduced and removed without disturbing the magnet.
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Superconducting Magnet Systems - SuperVariMag - Lake Shore Cryotronics, Inc.
Westerville, OH, United States
Superconducting Magnet Systems
SuperVariMag
Superconducting Magnet Systems SuperVariMag
SuperVariMag superconducting magnet systems — SVM Series The standard SuperVariMag systems offer magnetic fields of 6 to 9 T (niobium-titanium coils) and 10 to 14 T (niobium-tin coils), sample tubes of 1.0 in to 1.5 in diameter, and a 20 L useful capacity open neck helium reservoir in a vapor shielded superinsulated Dewar. Standard configuration While the standard systems offer a vertical magnetic field and split pair coils, double or triple coil configurations are also offered in various field strengths for horizontal field directions or rotating vector fields. Please contact us for a list of available designs or for a custom-designed magnet system. SuperVariMag systems can also be supplied in larger helium capacity Dewars, where a "belly" in the helium reservoir provides an increased helium capacity above the magnet. They can also be supplied in an ultra-low loss (ULL) cryostat that offers a static loss rate between 4 and 5 L/day with the magnet and variable temperature insert in position. The high-efficiency systems usually incorporate a low current magnet design and a cryostat with a nitrogen reservoir, superinsulation, and an additional radiation shield between the helium and nitrogen reservoirs to provide the ultimate efficiency in a top-loading system. When required, we also offer 9 T/11 T up to 14 T/16 T magnets with a Lambda point refrigerator (LPR) for operation at the higher field with the reservoir at atmospheric pressure. SuperVariMag systems offer efficient cost-effective systems with static hold times that range from two to ten days and are available with field homogeneities of 0.5% and 0.1% over a 1 cm diameter sphere. Larger sample tubes (3 to 4 in OD), higher field homogeneities (0.01 % or better over 1 cm diameter sphere), and special field profiles are available. Non-optical experiments such as critical current, resistivity, specific heat, Hall effect, etc. are easily performed with a SuperVariMag system. With the addition of appropriate gradient, modulation, and pick-up coils, the SuperVariMag system is easily adapted for use in Faraday balance susceptometry, vibrating sample magnetometry, etc. The SuperVariMag series may be used in conjunction with an optional independent magnet support and wiring system, thus allowing a magnet to be used with more than one insert. In this configuration, the SVT insert can be introduced and removed without disturbing the magnet.

SuperVariMag superconducting magnet systems — SVM Series

The standard SuperVariMag systems offer magnetic fields of 6 to 9 T (niobium-titanium coils) and 10 to 14 T (niobium-tin coils), sample tubes of 1.0 in to 1.5 in diameter, and a 20 L useful capacity open neck helium reservoir in a vapor shielded superinsulated Dewar.

Standard configuration

While the standard systems offer a vertical magnetic field and split pair coils, double or triple coil configurations are also offered in various field strengths for horizontal field directions or rotating vector fields. Please contact us for a list of available designs or for a custom-designed magnet system.

SuperVariMag systems can also be supplied in larger helium capacity Dewars, where a "belly" in the helium reservoir provides an increased helium capacity above the magnet. They can also be supplied in an ultra-low loss (ULL) cryostat that offers a static loss rate between 4 and 5 L/day with the magnet and variable temperature insert in position. The high-efficiency systems usually incorporate a low current magnet design and a cryostat with a nitrogen reservoir, superinsulation, and an additional radiation shield between the helium and nitrogen reservoirs to provide the ultimate efficiency in a top-loading system.

When required, we also offer 9 T/11 T up to 14 T/16 T magnets with a Lambda point refrigerator (LPR) for operation at the higher field with the reservoir at atmospheric pressure. SuperVariMag systems offer efficient cost-effective systems with static hold times that range from two to ten days and are available with field homogeneities of 0.5% and 0.1% over a 1 cm diameter sphere. Larger sample tubes (3 to 4 in OD), higher field homogeneities (0.01 % or better over 1 cm diameter sphere), and special field profiles are available. Non-optical experiments such as critical current, resistivity, specific heat, Hall effect, etc. are easily performed with a SuperVariMag system. With the addition of appropriate gradient, modulation, and pick-up coils, the SuperVariMag system is easily adapted for use in Faraday balance susceptometry, vibrating sample magnetometry, etc.

The SuperVariMag series may be used in conjunction with an optional independent magnet support and wiring system, thus allowing a magnet to be used with more than one insert. In this configuration, the SVT insert can be introduced and removed without disturbing the magnet.

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Technical Specifications

  Lake Shore Cryotronics, Inc.
Product Category Magnetic Field Instruments
Product Number SuperVariMag
Product Name Superconducting Magnet Systems
Device Type Magnetic Field Sensor
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