Products & Services
See also: Categories | Featured Products | Technical Articles | More Information-
Supplier: CSC Scientific Company, Inc.
Description: The thermal conductivity of various samples such as block form or sheet in manufacturing, construction, handcraft, soil or food industry is possible to measure by placing a probe on the surface of sample with the uniform temperature. Thermal insulating material of fiber or
- Remote Interface: Computer Interface
- Display: Digital Readout
- Features: Other Analyzer
-
Supplier: Linseis Inc.
Description: The Linseis Transient Hot Bridge - Thermal Conductivity Meter enables thermal conductivity, thermal diffusivity and specific heat measurements on various sample geometries and materials. This Linseis measuring instrument provides the three material
- Temperature Range: -150 to 600 C
- Remote Interface: Application Software Included, Computer Interface
- Thermal Analyzer Type: Thermal Conductivity Analyzer
-
Supplier: M.A.E. Apparecchiature Elettroniche srl
Description: CTS45 is a probe for measuring the conductivity in laboratory on samples , length: 45 cm, that offers the possibility to perform a practical and fast measurement of the thermal conductivity (or thermal resistivity) of the medium in which it is inserted at a high accuracy
- Instrument Type: Conductivity / Resistivity
- Form Factor: Portable / Hand Held / Mobile
-
-
Supplier: M.A.E. Apparecchiature Elettroniche srl
Description: TCR24 is designed to measure soil heat transmission (soil tendency to transmit heat). This type of survey is usually carried out prior to install underground pipes, or prior to build geo-thermic wells to detect heat from the soil, for buildings heating or conditioning. Measurement can be done on
- Operating Temperature: -4 to 176 F
- Features and Functionality: Battery Powered
- User Controls: Digital Front Panel
- Water Quality Parameters: Measures Conductivity / Dissolved Solids
-
Supplier: M.A.E. Apparecchiature Elettroniche srl
Description: CTS120 is a probe, for measures in the soil (length = 120 cm), that offers the possibility to perform a practical and fast measurement of the thermal conductivity (or thermal resistivity) of the medium in which it is inserted at a high accuracy level. It works in compliance with
- Instrument Type: Conductivity / Resistivity
- Form Factor: Portable / Hand Held / Mobile
-
Supplier: NETZSCH-Gerätebau GmbH
Description: equilibrium, the built-in computer or external computer determines the thermal conductivity and thermal resistance of the sample. Automatic plate movement and determination of the sample thickness facilitate test preparation. The patented plate temperature control system
- Temperature Range: -30 to 100 C
- Accuracy: 1 (%)
- Remote Interface: Application Software Included, Computer Interface
- Features: Cooling Available, Temperature Control
-
Supplier: Accuris
Description: Standard Test Method for Determination of the Thermal Conductivity of Anode Carbons by the Guarded Heat Flow Meter Technique
-
Supplier: Accuris
Description: Standard Test Method for Determination of the Thermal Conductivity of Anode Carbons by the Guarded Heat Flow Meter Technique - INCLUDES STANDARD + REDLINE (PDF)
-
Supplier: ASTM International
Description: 1.1 This test method covers a steady-state technique for the determination of the thermal conductivity of carbon materials in thicknesses of less than 25 mm. The test method is useful for homogeneous materials having a thermal conductivity in the approximate range 1 30
-
Supplier: ASTM International
Description: 1.1 This practice covers a means of measuring the amount of heat transfer quantitatively through a material or system. 1.2 This practice is similar to the Heat Flow Meter System of Method C 518, but modified to accommodate small test samples of higher thermal conductance. 1.3 The
-
Supplier: Linseis Inc.
Description: The LINSEIS Heat Flow Meter provides a rapid and easy to use instrument to determine the thermal conductivity properties of low thermal conductivity insulation materials as well as all other materials with a high level of accuracy. The instrument is designed per
- Temperature Range: -30 to 90 C
- Accuracy: 3 (%)
- Remote Interface: Application Software Included, Computer Interface
- Features: Cooling Available
-
Supplier: ASTM International
Description: 1.1 This test method describes a steady-state technique for the determination of the resistance to thermal transmission (thermal resistance) of materials having a thickness of less than 25 mm. Thermal conductivity may be determined for homogeneous opaque solid specimens
-
Supplier: ASTM International
Description: 1.1 This test method covers a steady-state technique for the determination of the resistance to thermal transmission (thermal resistance) of materials in thicknesses of less than 25 mm. For homogeneous opaque solid specimens of a representative thickness, thermal
-
Supplier: AENOR
Description: THERMAL INSULATION MATERIALS. DETERMINATION OF THERMAL CONDUCTIVITY. HEAT FLOW METER METHOD
-
Supplier: AMPP Resources
Description: (PID) controller, smoke development index, solar absorptance, developed by TG 525, thermal aging, thermal conductivity, thermocouple wire, thermal efficiency, thermal properties, thermal test, test panel, STG 02.
-
Description: (PID) controller, smoke development index, solar absorptance, developed by TG 525, thermal aging, thermal conductivity, thermocouple wire, thermal efficiency, thermal properties, thermal test, test panel, STG 02.
-
Supplier: Cole-Parmer
Description: • Display offers both an electronic sweeping dial and a numerical readout Pirani vacuum gauge uses the Pirani Principle of thermal conductivity to measure in the fine vacuum range. It incorporates a new transducer that is substantially more chemically resistant and mechanically
- Display Type: Digital
- Signal Output: RS232 / RS485
-
Supplier: Matexcel
Description: Graphene Thickness: 11-15 nm Graphene Average Particle Diameter: 15 micron Graphene Surface Area: 50-80 m2/g Carbon: 99.5+% Electrical Conductivity (siemens/meter): 107 (parallel to surface), 102 (perpendicular to surface) Thermal Conductivity (watts/meter-K): 3000
- Specific Surface Area (SSA): 50 to 80 m2/g
- Application: Biomaterials / Life Sciences
- Material: Carbon
- Type: Nano Powder / Particulate
-
Supplier: Matexcel
Description: Graphene Thickness: 6-8 nm Graphene Average Particle Diameter: 15 micron Graphene Surface Area: 120-150 m2/g Graphene Carbon: 99.5+% Graphene Electrical Conductivity (siemens/meter): 107 (parallel to surface), 102 (perpendicular to surface) Graphene Thermal Conductivity
- Specific Surface Area (SSA): 120 to 150 m2/g
- Application: Biomaterials / Life Sciences
- Material: Carbon
- Type: Nano Powder / Particulate
-
Supplier: Siargo Ltd.
Description: FSC2000 series concentration sensors are specially designed OEM model of methanol concentration sensor utilizing Siargo's proprietary MEMS process and package technology. It measures the concentration by thermal conductivity principle with which the sensor is maintained at a constant
- Electrical Output: Analog Voltage
- Features: In-line
-
Supplier: BNB INT. Co., Ltd.
Description: t has the highest wear, chemical resistance, hardness, and thermal conductivity among ceramics. Production Range 0.8 mm-25.4 mm (25.4 mm or bigger, customizable) Applications Mechanical seal bearing, Burner nozzle, Pump parts, Semiconductor parts
- Diameter / OD: 0.03149608 to 1.00000054 inch
- Applications: Bearing / Power Transmission, Flow / Metering, Sprayers / Pumps
- Ball Type: Ceramic Balls
- Features: Corrosion Resistant, Dielectric / Electrically Insulating, Nonmagnetic, Refractory / High Temperature, Silicon Carbide, Specialty / Other, Wear Resistant (Bearing / Tool Grade)
-
Supplier: Cole-Parmer
Description: piezoresistive transducer is less sensitive to gas composition, making this meter incredibly versatile in the Torr vacuum range. For applications requiring milliTorr readings, calculation or recalibration is necessary for gases with thermal conductivity significantly different
-
Supplier: ABB Measurement & Analytics
Description: maintain. When the spot sample needs to be run, the unit is already powered up and stable, eliminating the wait at the meter site.
- Number of Injection Ports: 0
- User Interface: Digital Front Panel
- Display: Digital Readout
- Application: Energy
-
Supplier: Shimadzu Scientific Instruments, Inc.
Description: The reliable and compact GC-8A is Shimadzu's basic gas chromatograph model for dedicated applications. Economical and simple to use, the GC-8A supports a single detector, manual pressure or flow control, on column injection port(s), and analog output. Isothermal or single temperature ramp program
- Oven Temperature Range: 39.2 to 750.2 F
- Number of Injection Ports: 2
- User Interface: Analog Front Panel
- Display: Analog Meter, Digital Readout
-
Supplier: Nova Analytical Systems Inc.
Description: The Nova 337 Portable Process Analyzer has been designed for the detection of Sulfur Hexaflouride (SF6) primarily in air or Nitrogen (N2). However it can be used in some other applications with several background gases present. Consult Nova on these applications.The thermal
- Response Time: 10 seconds
- Operating Temperature: 55 to 120 F
- Measurement Type: %Volume
- Application: Ambient Air Monitoring, Personal Exposure Monitoring, Process Gas
-
Supplier: Nova Analytical Systems Inc.
Description: The Nova 334 Portable He Analyzer has been designed for the detection of He primarily in air or nitrogen. However it can be used in some other applications with several background gases present. Consult Nova on these applications.The thermal conductivity (T/C) cell provides a fast and
- Response Time: 10 seconds
- Operating Temperature: 55 to 120 F
- Measurement Type: %Volume
- Electrical Outputs: Analog Current, Analog Voltage
-
Supplier: Nova Analytical Systems Inc.
Description: The Nova 335 Portable Analyzer has been designed for the detection of hydrogen (H2) primarily in air or N2 However it can be used in some other applications with several background gases present. Consult Nova on these applications.The thermal conductivity (T/C) cell provides a fast and
- Response Time: 10 seconds
- Operating Temperature: 55 to 120 F
- Measurement Type: %Volume
- Electrical Outputs: Analog Current, Analog Voltage
-
Supplier: 3X Ceramic Parts Company Limited
Description: Strength MPa 5500 Flexural Strength MPa 1250 Modulus of Elasticity Gpa 200 Thermal Conductivity W/(m.k) 3(20-400℃) Thermal Expansivity Cofficient 10^-6K^-1 9.6 Facture Toughness Mpa.m0.5 8 Grain Size um 0.5
- Density: 5.99999621323765 g/cc
- Coeff. of Thermal Expansion (CTE): 9.6 µm/m-C
- MOR / Flexural Strength: 181,296.04919649626 psi
- Compressive / Crushing Strength: 797,702.6164645836 psi
-
Supplier: Nova Analytical Systems Inc.
Description: The Nova 7900 Series Heat Treat Analyzer System utilizes high stability infrared detectors for the simultaneous measurement of CO, CO2, and CH4. In addition, the analyzer can also be supplied with a non-consumable, long life thermal conductivity cell for hydrogen that is compensated
- Dew Point Range: -148 to 78.8 F
- Dew Point Accuracy: 1 F
- Operating Temperature: 32 to 122 F
- Electrical Outputs: Analog Current
-
Supplier: 3X Ceramic Parts Company Limited
Description: Strength(HV0.5) Mpa ≥2600 Modulus of Elasticity Mpa 410 Thermal Properties Maximum Working Temperature °C 1600 Thermal Conductivity (indoor temperature) W/m.K 2.5 Thermal Expansion Coefficient 10-6/°C 4
- Density: 3.149998011949766 g/cc
- Thermal Conductivity: 120 to 150 W/m-K
- Coeff. of Thermal Expansion (CTE): 4 µm/m-C
- Modulus of Elasticity: 59,465.10413645077 psi
-
Supplier: Cole-Parmer
Description: without compromising accuracy. Although calibrated in air at the factory, any dry noncorrosive gas is compatible. A correction factor based on the thermal conductivity of your gas is all that is required to convert readings. Or, recalibrate in the field to your specific gas
-
Supplier: Cole-Parmer
Description: without compromising accuracy. Although calibrated in air at the factory, any dry noncorrosive gas is compatible. A correction factor based on the thermal conductivity of your gas is all that is required to convert readings. Or, recalibrate in the field to your specific gas
-
Supplier: Micromeritics
Description: volume assures high resolution, fast detector response, and reduces error when calculating gas volumes. Highly sensitive linear thermal conductivity detector (TCD) assures the calibration volume remains constant over the full range of peak amplitudes so the area under the peak is
- Properties Analyzed: Adsorption / Desorption (Chemisorption/ Physisorption), Surface Area - Total
- Display & Special Features: Analog Meter
- Test Media: Chemicals, Metals
- Mounting / Loading Options: Laboratory / Batch
-
Supplier: Newport MKS
Description: The 925-31034 Micro Pirani™ Vacuum Transducer with MEMS-based Micro Pirani™ Vacuum Sensor is a thermal conductivity vacuum gauge with touchscreen display based on a unique, MEMS-based (Micro-Electro-Mechanical Systems) vacuum sensor. This 925 transducer offers a wide measurement range
- Features: Digital, Other
- Pressure Measurement: Gauge
Find Suppliers by Category Top
Featured Products Top
-
Air flow meters in ventilators are used to control the airflow, which is an important factor. Adults, for example, have different breathing volumes than younger persons, including children. As an alternative, temperature sensors have been used in ventilators to perform a simple air flow (read more)
Browse Gas Flow Meters Datasheets for Innovative Sensor Technology IST USA Division -
Innovacera’s Silicon Nitride (Si?N?) Substrates combine exceptional thermal conductivity, high mechanical strength, and excellent fracture toughness, providing outstanding (read more)
Browse Thermal and Refractory Ceramics Datasheets for Xiamen Innovacera Advanced Materials Co., Ltd. -
Innovacera’s Silicon Nitride Substrates combine exceptional thermal conductivity, high mechanical strength, and excellent fracture toughness, providing (read more)
Browse Ceramic Sheets and Boards Datasheets for Xiamen Innovacera Advanced Materials Co., Ltd. -
-power LEDs, and advanced heat dissipation components. Features • High thermal conductivity (170~230W/m.K), up to 9.5 times than alumina; • Thermal expansion coefficient close to silicon wafer, achieve high reliability of Silicon chip and thermal (read more)
Browse Ceramic Sheets and Boards Datasheets for Xiamen Innovacera Advanced Materials Co., Ltd. -
Silicon Nitride Ceramic Substrate INNOVACERA Silicon Nitride substrates, with a thermal conductivity rating of 90 Watts/meter Kelvin, at first (read more)
Browse Silicon Nitride and Silicon Nitride Ceramics Datasheets for Xiamen Innovacera Advanced Materials Co., Ltd. -
. Thermal conductivity ranges between 120 and 200 watts per meter-kelvin, allowing for excellent heat transfer in high-temperature environments. The tube operates stably at temperatures up to 1600 degrees Celsius (2912 degrees (read more)
Browse Industrial Ceramic Materials Datasheets for Shenzhen Great Precision Ceramic CO., LTD. -
Technology is applied in thermal flow sensors providing turnkey features for flow meters and flow switches. Custom designs are possible to be incorporated in order to interface with existing flow sensor devices and systems. Application Services Need some (read more)
Browse Resistive Temperature Devices (RTD) Elements Datasheets for Innovative Sensor Technology IST USA Division -
, mechanical and chemical behaviors. Reduced thermal conductivity of the polymer membrane leads to better thermal contrast and thus better sensitivity. Additionally, the sensor’s glass substrate allows for a much higher operating temperature, making the measurement of larger flow rates (read more)
Browse Flow Meters Datasheets for Innovative Sensor Technology IST USA Division -
parts under bending, cyclic load or contact stress. Fracture toughness Typical value or range: 4.5-6.0 MPa.m1/2 Engineering relevance: Helps resist crack growth compared with more brittle monolithic ceramics. Thermal conductivity (read more)
Browse Zirconium Oxide and Zirconia Ceramics Datasheets for Shenzhen Great Precision Ceramic CO., LTD. -
Thermal mass flow sensors utilize heat transfer principles to determine the flow velocity of a fluid. As fluid passes across the sensor, heat is carried from the sensor to the medium. This relationship is dependent upon the flow rate. As flow increases, so does the (read more)
Browse Flow Meters Datasheets for Innovative Sensor Technology IST USA Division
Conduct Research Top
-
The Challenges of Measuring Flare Gas
at start-up and will change over time, thus rendering the flow meter inaccurate at best and inoperable at worst. Achieving Flare Gas Measurement Accuracy Regardless of Changing Gas Composition. Recent innovations in immersible thermal flow meter technology provide a solution to this "what came first" problem
-
A Microfluidic System for Biological Particle Enrichment Using Contactless Dielectrophoresis
of the buffer was. 130 mS/cm and was measured with a Mettler-Toledo SevenGo. pro conductivity meter (Mettler-Toledo, Inc., Columbus,. OH) to ensure that its conductivity was 130 ms/cm. These cells were observed to be spherical, with a diameter. of w13 mm when in suspension. Carboxylate-modified polystyrene
-
MSilica Nanoparticles Treated by Cold Atmospheric-Pressure Plasmas Improve the Dielectric Performance of Organic-Inorganic Nanocomposites
. diameter beads that were carboxylate-modified polystyrene. microspheres (Invitrogen Molecular Probes, Eugene, OR,. USA) suspended in deionized water. The electrical conductivity. of the deionized water was determined using a MettlerToledo. SevenGo Pro conductivity meter (Mettler-Toledo,. Columbus, OH
More Information Top
-
A correction scheme for thermal conductivity measurement using the comparative cut-bar technique based on 3D numerical simulation
In the comparative cut-bar method, the sample with unknown thermal conductivity is sandwiched between two known thermal conductivity meter bars (comparators, reference bars), comprising the test stack (sample column).
-
An improved experimental reactor for applied kinetic studies
The time required for the recirculation system to reach a steady state could not be detected because it was less than the time required for the thermal conductivity meter to reach a constant reading.
-
Starch Foam Expansion in a Closed Mold
In addition, the thermal conductivity of the sample with pores and the sample after pressing was measured using a Kemtherm QTM PD3 thermal conductivity meter (Kyoto Electronics Manufacturing Co., Japan).
-
High-Performance Water-Based Insulating Packer Fluids
Such an experiment was performed utilizing the Thermal Conductivity Meter and the KD2-Pro Thermal Properties Analyzer.
-
Thermal resistance and compressive strain of underwater aerogel–syntactic foam hybrid insulation at atmospheric and elevated hydrostatic pressure
The experimental set-up consisted of a thermal conductivity meter (Anter Corp model Quickline 16) custom-modified to operate at elevated hydrostatic pressures.
-
Thermal conductivity and compressive strain of foam neoprene insulation under hydrostatic pressure
The experimental programme consisted of using a custom built thermal conductivity meter (Anter Corp model Quickline™ 16) placed inside a spherical hyperbaric chamber.
-
Advances in Energy Science and Technology
In Fig. 1, DRM-II thermal conductivity meter was used to measure the equivalent thermal conductivity of the material under different moisture contents.
-
Advances in Civil Infrastructure Engineering
In order to study thermal conductivity of straw board, multi-group models were quantitatively investigated by the CD-DR3030A thermal conductivity meter .
-
Thermal conductivities under high pressure in core samples from IODP NanTroSEIZE drilling site C0001
[10] The commercial thermal conductivity meter QTM‐500 we used is based on transient heating of a half‐space sample by a line source [Sass et al., 1984; Galson et al., 1987].
-
Biomedical Engineering and Design Handbook, Volume 2 > DESIGN OF RESPIRATORY DEVICES
Schematic drawing of a thermal conductivity meter .
Indicates content that may require registration and/or purchase.