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Cryocoolers
Space Cryocoolers
As of Dec. 5th, 2018, there have been a total of 82 successful Sunpower cryocooler launches into space. The Sunpower cryocooler in the RHESSI satellite was launched February 5th, 2002 and has been in continuous operation since. We believe this speaks volumes about the robustness of the CryoTel line of cryocoolers.
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Cryocoolers
Cryogenic uses various cryocoolers with cooling powers to suit different cryogen free magnet systems and applications. The Gifford-McMahon cycle cryocooler has the advantage of greater thermodynamic efficiency. The pulse-tube cryocooler is vibrationally quieter, has a longer service interval and cools faster from room temperature.
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Cryocoolers
CryoTel® Active Vibration Cancellation (AVC)
Sunpower, Inc. introduces the Active Vibration Cancellation (AVC) system for the CryoTel® MT, CT, and GT cryocoolers. The active balancer uses a feedback signal from an accelerometer to cancel the first 10 harmonics of the 60 Hz operation of the cryocooler, minimizing vibration at the cold tip as well as exported vibration to its mounting structure.
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Cryocoolers
DS Mini
The DS Mini cryocooler brings gas bearing technology to the mini-cryocooler market. The DS (Dual Split) features dual-opposed pressure wave generator pistons and a split cold head to reduce exported vibration and acoustic noise. The optional passive balancer will further reduce cold head vibration for sensitive applications. Both the cold head and wave generator can be mounted in any orientation. Using gas bearings in the pistons as well as the displacer, the DS maintains the core technologies of the well-established integral CryoTel MT, CT and GT cryocoolers. The DS Mini represents an advantage over flexure bearings due to its higher power density, while still offering a longer lifetime compared to rotary compressors and contact seals.
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Cryocoolers
CT
The CT Cooler was brought to commercialization in 2001 after 10 years of cryocooler development at Sunpower. The CT stands for CryoTel®, as the first commercial application was for the telecommunications industry. The CT has been used successfully in applications such as High Temperature Superconductivity (HTS) filters, high altitude balloons, refrigeration, germanium detectors, IR detectors, radio telescopes, laser diode cooling, and research among others. We believe the customer will agree that the CryoTel® CT is the smallest 11W @77K cooler available at an attractive price point with a Mean Time to Failure of over 200,000 hours.
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Cryocooler
CryoTel® DS30
The CryoTel® DS 30 Stirling cryocooler offers efficient, reliable, compact and high power cooling to the market in the temperature range of 35 to 250 Kelvin. The DS30 was optimized for applications in which SWAP (size, weight and power) and reliability are concerns. The DS30 consumes considerably less power than other cooling alternatives and requires no maintenance, making it ideal for strategic as well as industrial applications. Both the cold head and the pressure wave generator can be mounted in any orientation. Application examples include semiconductor manufacturing, large infrared detectors, RF receivers or antennas, astronomical telescopes, laser cooling, high-temperature superconductivity, cold traps, and others.
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Cryocoolers
MT
The MT cooler has been in production since 2003 and is based on the CT cooler design. It was developed for the customer who did not need the lift of the CT cryocooler and wanted size and weight reduction for their application. The MT has been used successfully in applications such as High Temperature Superconductivity (HTS) filters, high altitude balloons, refrigeration, germanium detectors, IR detectors, radio telescopes, laser diode cooling, and research among others. We believe the customer will agree that the CryoTel® MT is the smallest 5W @77K cooler available at an attractive price point with a Mean Time to Failure of over 200,000 hours.
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Cryocoolers
CryoTel® Generation II Controller
The Generation II Controller is backward compatible with Generation I, so any setups which are communicating with Sunpower’s Generation I Controller will work with the new controller. Users switching from Generation I to Generation II may need to increase the DC voltage to the controller 1-2 volts to match the maximum power they attained with the Generation I Controller. The mass of the Generation II Controller is 490 grams.
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Cryocoolers
GT
The GT Cooler was brought to commercialization in 2005. The GT has been used successfully in applications such as High Temperature Superconductivity (HTS) filters, high altitude balloons, refrigeration, germanium detectors, IR detectors, radio telescopes, laser diode cooling, and research among others. We believe the customer will agree that the CryoTel® GT is the smallest 16W @77K cooler available at an attractive price point with a Mean Time to Failure of over 200,000 hours. The GT currently utilizes the Generation 2 controller.
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Stirling Cryocoolers
CryoTel®
With Sunpower’s reputation for quality and performance, the CryoTel® family of cryocoolers is increasingly used in the medical, instrumentation, security, astronomy, telecommunications, and pharmaceuticals markets. Sunpower’s cryocoolers integrate with and support technologies such as high-temperature superconductivity, radiation detection, optics, CCD, LNA, gas liquefaction, and more. The CryoTel® cryocoolers provide cost advantages during product development and during volume production. Our customers also benefit from the unsurpassed reliability, efficiency, and power density of our superior cryocooler technology.
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Primary VoltageE Standard: Cryocooler (Closed- Cycle Refridgerator) System
The Hypres Primary Voltage Standard System with cryocooler (closed-cycle refrigerator) is a complete, computer controlled system implementing a variety of voltage calibration functions. This system configuration is a cryogen-free complete Primary Voltage Standard System with parameters that are identical to the liquid helium version.
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Cryogen-Free DR With Integrated Magnet
Magnet thermally linked to cryocooler 2nd stage Ideal for smaller magnets up to 17 T or small vector magnets up to 7T / 2T / 2TSingle pulse tube cryocooler for cooling both magnet and DRMagnet operation at 700 mK or 4 KUse with top-loading probeFast Sample Change
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Free Room Temperature Bore Systems
The cryomagnetic system contains the cryogen free room temperature bore superconducting magnet, cryostat, cryocooler and compressor, temperature monitor unit (nominally Lakeshore) and HTS current leads. The cooling for the magnet and cryostat housing is provided by a standard cryocooler with a base temperature of 4K. The magnet is designed to operate safely at the guaranteed field without quenching.
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Cryogenic Hygrometer
CR - 3
Buck Research Instruments, LLC
The new CR-3, like the CR-2, utilizes a closed cycle cryocooler, but differs in that it cannot be used on aircraft. The CR-3 is specifically designed for long-term, continuous-use applications where the instrument will mounted in a fixed location such as a laboratory.
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Cryogen-Free Cryostats
Our cryogen-free cryostats use both 10 K and 4 K cryocoolers, covering a temperature range of 1.5 K to 800 K. Choose from top- or bottom-loading designs suited for an extensive range of applications.
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Ultra-Low-Noise CCD and X-Ray Cameras
SOPHIA® Family
Teledyne Princeton Instruments
SOPHIA® has ultra-low-noise electronics, with high sensitivity (>95% QE), speed and flexibility with multi-port readout capabilities up to 16 MHz and high frame rates. ArcTec™ technology allows for thermoelectric cooling without chillers or cryo-coolers.
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Mini Cryogen Free Systems
mCFMS
Cryogenic offers cryogen free measurement systems, which include a cryocooler, cryostat with superconducting magnet (3, 5, 7 or 9 Tesla), variable temperature sample space, a selection of special probes for measurements of different physical properties, as well as electronics, computer and measurement software.
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Cryogenic Hygrometer
CR - 2
Buck Research Instruments, LLC
The CR-2 exhibits the same wide range, fast response and high reliability as the CR-1A, but it is designed specifically for aircraft and similar high-stress applications. Instead of using Liquid Nitrogen (LN2), mirror cooling is accomplished using a tactical cryocooler, which is a high-tech device used primarily to cool IR detectors in missiles and tank turrets to LN2 temperatures.