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TVAC Thermal Vacuum Test Chamber
Guangdong Test EQ Equipment co., Ltd.
- Space Environment Simulation: Replicates orbital conditions: thermal cycling, vacuum, and solar radiation (via optional xenon-arc lamps).- Precision Control: PLC-based automation with real-time data logging, remote access via LabVIEW/Modbus protocols.- Durable Construction: 304L stainless steel chamber, multi-layer MLI (multi-layer insulation), and vibration-damping mounts.- Safety Systems: Emergency venting, over-pressure relief valves, and redundant leak detection sensors.- Modular Design: Expandable with solar simulation, outgassing analysis, or cryogenic shroud add-ons.
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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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Cryogenic Hygrometer
CR - 1A
Buck Research Instruments, LLC
The CR-1A is a high performance, cryogenically cooled hygrometer. CR-1 instruments have been routinely used aboard NASA aircraft and elsewhere for years. The CR-1A is a miniaturized version of the original CR-1, and uses a much smaller LN2 dewar. Operating time per filling of LN2 ranges from 6 to 8 hours, depending on the dew points being measured.
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Temperature Logger for PT1000 Probe
TV-4204
PT1000 probes are available with this logger and will record down to -200C making them suitable for cryogenic applications. The probes are of 3-wire construction and available probes are listed in the 'You will also need' section.
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Liquid Nitrogen Data Logging System
LNDS
MadgeTechs LNDS, Liquid Nitrogen Data Logging System, is an ultra-low temperature measurement system created specifically for the monitoring of temperature sensitive substances that need to be preserved at cryogenic temperatures.
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LHe/LN2 Cryostat System
129610A
Liquid nitrogen (LN2) or liquid helium (LHe) can be used as the cryogen depending on the required operating temperature range. This allows standard tests to be performed using relatively low cost LN2 as the cryogen. Higher cost LHe can be substituted for the duration of tests where very low temperature is required, providing an economical solution to your test requirements.
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Cryogenic Applications
Over the last 20 years the Celadon Engineering team has developed an expertise in cryogenic materials which has resulted in a solid reputation in the industry for producing extremely stable cryogenic on-wafer probe card as well as DUT probing solutions. These custom cryogenic probe card solutions are widely used to test Space, Military, Medical and Quantum Computing products. Celadon’s cryogenic solutions vary from standard VersaTile™ footprints which interface to positioners to innovative custom PCB based designs to allow for flexibility when testing at these very cold temperatures. Lakeshore cryogenic wire is used in standard DC solutions for high density cableout designs to support high pin count applications. During the development process, Celadon works closely with the cryogenic prober vendor to ensure the integrated solution is optimized for current and future testing needs.
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Controlled Environment Probe Station
CG-196
Everbeing controlled environment probe station allows vacuum and cryogenic probing down to 77K with liquid nitrogen or high temperature probing up to 1273K. Efficient in characterizing your devices at extreme temperatures, vacuum, specific gas, etc.
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AC Resistance Bridge
SIM921
Stanford Research Systems, Inc.
The SIM921 AC Resistance Bridge is a precision, low-noise instrument designed for cryogenic thermometry applications. With excitation power below 100 aW, thermistors and other resistive samples can be measured at temperatures below 50 mK with negligible self-heating errors
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Cryogenic Temperature Sensors
The sensors incorporate uniform sensing elements that exhibit precise, repeatable, monotonic temperature response over a wide range.
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Vibrating Sample Magnetometer
VSM
The Cryogenic Vibrating Sample Magnetometer (VSM) is designed for measurement of the DC magnetic moment of a sample with a noise floor sensitivity of 10-6 and at 10 seconds integration time.
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Hall probes
Axial, transverse, multi-axis, and tangential Hall probes for measuring magnetic flux density. Choose from a wide range of lengths and thicknesses—probes are also available for cryogenic applications.
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Cryogen Free Variable Temperature Cryostat for EPR
We offer a variable temperature cryostat with a sample space of 40mm designed to fit between the poles of a resistive electromagnet for EPR applications. The cryostat is designed to receive standard EPR probes.
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Cryogenic Temperature Sensors
Thermocouple wire
Thermocouple wire is used in a variety of cryogenic applications, but special techniques must be employed to approach temperature accuracies of 1% of temperature, even without consideration for the effects of high magnetic fields or high radiation fluxes. The problems are further complicated by exposure to variable gradient conditions at cryogenic temperatures.
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Endevco Cryogenic Charge Output Accelerometers
PCB's acquisition of Endevco's full line of testing sensors means all Endevco sensors are now backed by PCB's Total Customer Satisfaction (TCS) guarantee. Endevco® cryogenic piezoelectric accelerometers are built specifically for measuring vibration under cryogenic conditions down to -452° F (-269° C). Signal outputs of these units are very stable even at extremely low temperatures. Their rugged internal construction is designed to withstand multiple cycles of thermal shock with steep temperature gradient. The accelerometers are self-generating devices that require no external power source for operation and contain no electronics. This allows them to operate below the -320° F (-196° C) limit of ICP accelerometers, down to -452° F (-269° C).
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Helium Liquefiers, Purifiers and Recovery Systems
NexGen & ATL Liquefiers and Purifiers
Quantum Design's full line of liquefiers and innovative helium recovery, storage and purification systems allow you to recover and liquefy the helium gas currently being lost from the normal boil off and helium transfers of your cryogenic instruments. A perfect helium recycling solution for research and medical cryostats, Quantum Design’s helium liquefiers and recovery systems allow you to break your dependence on cryogen suppliers and no longer be subject to higher costs and undependable supply. You will also be doing your part to conserve a precious natural resource which is vital to scientific research and medical treatment.
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Vector Field and Multi-Axis Systems
Cryogenic vector magnet systems allow precise alignment of the magnetic field to an exact direction in a measurement sample. The system provides the capability of orienting the magnetic field to any vector direction. This is suitable for experiments where samples cannot be moved easily.
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Free Measurement System
CFMS
The Cryogen Free Measurement System (CFMS) from Cryogenic Ltd is a modular research system designed to enable the user to perform a wide range of material characterisation experiments in variable field and variable temperature environments.
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Cryogenic ICP® Accelerometers
Cryogenic ICP® accelerometers are specifically designed to operate at temperatures below the typical -65 ºF (-54 ºC) temperature limit of most voltage mode sensors. The use of specialized, built-in, cryogenic circuitry and quartz shear sensing technology promote survivability in demanding environments such as liquid nitrogen. Each sensor is hermetically sealed and individually tested to determine the thermal coefficient of sensitivity at -320 ºF (-196 ºC) ensuring reliable operation and accurate measurements. These sensors have been successfully used in the presence of liquid helium during structural testing of rocket boosters.
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Cryogenic Millimeter-Wave / Microwave Test Fixtures and Calibration Kits
upj10
KEYCOM''s cryogenic millimeter-wave / microwave test fixtures and calibration kits are specifically optimized for testing the performance of patterns between the edges of printed boards(edge type) and circuit testing on the printed boards(probe type). They are also designed to minimize heat capacity by miniaturizing their dimensions so they cool off efficiently, and materials with low coefficient of linear thermal expansion such as invar are used for major parts where high dimensional stability is required. Their operating frequency ranges from DC to 110GHz.
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Fast Ramping Magnet Systems
Cryogenic Ltd has developed a new range of fast-sweeping cryogen-free superconducting magnets using high-performance Nb3Sn coils. These magnets provide an ideal platform for XMCD and other polarity switching applications. No liquid cryogens are required offering superb economy and ease of use in comparison with liquid helium alternatives.
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Hall (Magnetic) Sensors
Small, compact axial and transverse Hall generators for measuring flux density. Available for use at cryogenic temperatures.
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Geo / Cryogenic / NDE Instrumentation
Tristan designs and fabricates custom magnetometer systems to study the magnetic properties of samples. SQUID systems are extremely sensitive instruments designed to detect small electromagnetic signals. By combining SQUID electronics with various special purpose probes and auxiliary electronics, laboratory systems having a variety of capabilities are made available. - See more at: http://www.tristantech.com/#sthash.JlYDZcjM.dpuf
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Cryogenic Probe Station
FWPX
Lake Shore’s FWPX probe station is designed for researchers who require large-size wafer probing. The FWPX accommodates wafers up to 102 mm (4 in) in diameter and can be modified to accept up to 152 mm (6 in) wafers. This general-purpose probe station is designed for researchers or engineers conducting material characterization tests over large samples. It is also an effective unit for measuring organic materials.
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Neutron Scattering and Beamline Systems
For optical, neutron and particle beam experiments, Cryogenic offers a range of split pair magnets. These allow strong magnetic fields to be produced in a small volume with maximum access to the working space. Split pair coils can be mounted to provide either a vertical field with horizontal access or a horizontal field offering horizontal or vertical access.
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Deep Cooled UV-VIS/NIR Scientific Cameras
TE and cryogenically cooled CCD and EMCCD scientific cameras for ultra sensitivity from 200 nm to 1100 nmHORIBA Scientific offers a complete line of spectroscopic multi-channel detectors for scientific research. For spectral detection from UV to near-IR, two dimensional CCDs and indium gallium arsenide linear arrays offer a faster acquisition option over single point detectors with relatively high sensitivity. Coupled with HORIBA’s range of aberration corrected, flat field imaging spectrographs, custom spectroscopy packages can be assembled for a variety of applications.
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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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High Precision Measuring Systems
Kaman Precision Products, Inc.
Kaman offers thousands of high-precision sensors for different measurement ranges, materials, environments, temperatures, and pressures. Our extensive offerings include handmade custom precision sensors to sensors manufactured in a fully automated environment. Kaman makes sensors capable of operating in temperatures from cryogenic to 1,100° F.





























