Showing results: 31 - 45 of 55 items found.
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Thermal Engineering Associates, Inc.
A system for the measurement of thermal conductivity of a wide range of thermal interface materials - grease, pads, foils, etc. - with a measurement range of of roughly 0.1 to 500W/m-K. (>500W/m-K available on custom basis.)
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G6 LEONARDO -
Bruker microCT
The high-end thermal conductivity detector used for hydrogen and nitrogen analysis allows detection limits in a sub-ppm range (based on 1g sample mass)
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G4 PHOENIX DH -
Bruker microCT
The highly sensitive thermal conductivity detector allows analysis down to a sub-ppm range, while the optional mass spectrometer allows detection limits in the low ng/g range.
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Analysis Tech Inc.
The Analysis Tech TIM Tester 1300 is an automated test system for measurement of thermal impedance and conductivity on thin, thermally conductive materials of the type frequently used for electronic packaging, as well as a wide variety of flexible or rigid solids and semi-liquid or viscous materials. Generally, the TIM Tester 1300 can accommodate samples with high-to-medium thermal conductivity with contact pressures ranging from 10 to 550 psi (70-3800 kpa) and at sample temperature ranging from 15C to 70C.
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Fuzhou Zhongtuo Optoelectronic Co.,Ltd
A diamond tester is a portable device used to check the authenticity of diamonds and test materials for their thermal and electrical conductivity. It can accurately indicate if the stone is a real diamond based on the gem's physical properties.
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HS-HCTT -
HenergySolar
It is strictly designed according to the requirements of the hot-probe thermal EMF conductivity type test in standard ASTM F42: Standard Test Methods for Conductivity Type of Extrinsic Semiconductor Materials. A temperature controlling heating element is installed inside the hot probe so that the hot probe is heated automatically and its temperature is maintained in the range 40-60℃.
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Process Sensing Technologies
PST offer a range of hydrogen (H2) and binary gas analyzers utilising the thermal conductivity property of gases to determine the concentration of a Target Gas (hydrogen for example) within a known Background Gas such as oxygen, nitrogen or argon.
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Naprotek, LLC.
Ultra-precise patterning of thin film metals on dielectrics with high thermal conductivity are used for diode submount applications. Via the acquisition of Ion Beam Milling, Inc., SemiGen is the industry leader for laser diode submount fabrication. As each application is different, we work with customers to develop a custom design that perfectly fits their requirements. We have experience producing circuits utilizing substrates of varying thicknesses with high thermal conductivity such as alumina (Al), aluminum nitride (AlN), and beryllium oxide (BeO). SemiGen can deliver laser diode submounts with or without Au/Sn pads depending on your needs.
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ELEMENTRAC OH‑p 2 -
ELTRA GmbH
The new ELEMENTRAC OH-p 2 is a powerful and robust elemental analyzer for measurement of oxygen and hydrogen concentrations in inorganic samples like steel, iron, copper or ceramics. The highly sensitive NDIR and thermal conductivity detectors reliably detect element concentrations from low ppm content to high percentages.
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ELEMENTRAC ON‑p 2 -
ELTRA GmbH
The new ELEMENTRAC ON-p 2 is a powerful and robust elemental analyzer for measurement of oxygen and nitrogen concentrations in inorganic materials like steel, iron, copper or ceramics. The highly sensitive NDIR and thermal conductivity detectors reliably detect element concentrations from low ppm content to high percentages.
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ELEMENTRAC ONH‑p 2 -
ELTRA GmbH
The new ELEMENTRAC ONH-p 2 is a powerful and robust elemental analyzer for measurement of oxygen, nitrogen and hydrogen concentrations in inorganic materials like steel, iron, copper or ceramics. The highly sensitive NDIR and thermal conductivity detectors reliably detect element concentrations from low ppm content to high percentages.
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Elemental Analysis, Inc.
Carbon, Hydrogen, Nitrogen are determined using a 2400 Perkin-Elmer CHN Analyzer. This analyzer uses combustion to convert the sample elements to simple gasses, i.e. CO2, H2O, & N2. Upon entering the analyzer, the sample is combusted in pure oxygen environment at temperatures in the range of 1200-1500 F. The product gasses are separated under steady state conditions, and measured as a function of thermal conductivity.
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LT GasAnalyzer -
LT Gasetechnik
Highly performant analyzer for measuring the concentration of technical gases based on a thermal conductivity sensor, an infrared sensor a para magnetic sensor or combinations of these sensors. Sensors are precise, robust and have a low cross-sensitivity. Extractive online measurement of the concentration of flammable or non-flammable gas components in gas mixtures. Can measure trace oxygen (O2) levels in the parts per million (ppm) range.
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TP01 -
Hukseflux Thermal Sensors B.V.
TP01 is designed for long term (permanent) installation in soils. It covers the thermal conductivity (λ) range of 0.3 to 4 W/m.K, which is sufficient for most inorganic soil types. The core of TP01 is a differential temperature sensor (2 thermopiles) (1) measuring the radial differential temperature with record breaking sensitivity. The sensor performs a temperature measurement around a heating wire (2).
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TA Instruments
The Light Flash technique provides information on a material’s ability to store and transfer heat through measurements of thermal diffusivity, thermal conductivity, and specific heat capacity. Thorough understanding of these properties is critical for any process or material which experiences a large or fast temperature gradient, or for which the tolerance for temperature change is exacting. Accurate values of these properties are essential for modeling and managing heat, whether the component of interest is called on to insulate, conduct, or simply withstand temperature changes. Information about these properties is routinely used in heat transfer models of all complexities. Heat transfer property measurements also reflect important information about material composition, purity and structure, as well as secondary performance characteristics such as tolerance to thermal shock.