Infrared Microscope

Infrared microscopy combines microscopy with infrared spectroscopy to analyze the chemical composition of samples based on their absorption of infrared light. It is used for detecting components in tiny regions and finds applications in material identification and contaminant analysis.
Selection
When selecting an infrared microscope, considerations include detection requirements, sample characteristics, spectral range, spatial resolution, ease of operation, maintenance costs, and manufacturer technical support.

Terms

Standards

Instruments

Heavy-duty stainless steel structure ensures stable support, equipped with 3 strong magnets for firm adsorption, maintaining the vertical state of Microscope, suitable for various metal surface fixing needs.

$ 339.00

Provides 40x magnification and a 0.60 numerical aperture to ensure high resolution and long working distances for a variety of Microscope applications.

$ 138.00

Measurement range 0-40000W/m ², Light spectrum Response 1000-1700nm, can automatically calculate and display infrared barrier rate, photosensitive aperture 10mm, suitable for performance testing of various Infrared sources and thermal insulation materials.

$ 149.00

Made of aluminum, Dimension 150 * 220 * 290mm, support 360 ° swirl/spin adjustment and arm adjustable, suitable for a variety of Microscope models.

$ 154.00

Support capillary tubing and hot stage two measurement methods, temperature range RT +~ 320 ℃, Microscope 40 times magnification observation, sexual repeability +/- 1 ℃ (≤ 200 ℃), to meet the melting point of crystalline organic compounds determination needs.

$ 624.00

Adopting a non-light infrared NDIR Sensor, with a range of 0~ 1000ppm, Response Time ≤ 15 seconds, supports a variety of signal output and remote transmission, and has overvoltage protection and automatic recovery functions.

$ 2494.00

Adopt non-light infrared NDIR Sensor, Response Time ≤ 15s, detection accuracy ≤ +/- 2%, support PPM,% VOL, mg/m ³ Unit switch, with overvoltage protection and automatic recovery function.

$ 2494.00

Microscope observation mode, support capillary method and hot table method, temperature range RT +~ 320 ℃, resolution 0.1 ℃, repeability +/- 1 ℃ (≤ 200 ℃), Draft Shield design to reduce environmental impact.

$ 749.00

Adopt non-light infrared NDIR Sensor, Response Time ≤ 15s, accuracy ≤ +/- 2%, support a variety of signal output and remote transmission, with overvoltage, lightning protection and other protection functions to ensure stable and reliable monitoring.

$ 2368.00

Using binocular stereo Microscope observation, support capillary method and hot table method two measurement methods, temperature resolution of 0.1 ℃, repeability +/- 1 ℃ (≤ 200 ℃), with Draft Shield to reduce environmental impact.

$ 875.00

Far infrared radiation heating technology, Temperature range RT +~ 300 ℃, Temperature Fluctuation +/- 2 ℃, equipped with thermistor control thermoMeter, fast low consumption adjustment is convenient.

$ 507.00

Far infrared radiation heating technology, temperature control accuracy +/- 2 ℃, equipped with thermistor control thermoMeter, rapid low consumption drying, Inner Chamber dimensions 320 * 380 * 320mm.

$ 391.00

Using infrared Light spectrum measurement technology, the temperature measurement range covers -18 to 1150 ° C, the accuracy is +/- 2%, with 20:1 object distance ratio and 500ms fast Response, support Data storage and USB connection function.

$ 153.00

Far infrared radiation heating technology, equipped with thermistor control thermoMeter, Temperature range RT +~ 300 ℃, Temperature Fluctuation +/- 2 ℃, with fast drying and low energy consumption characteristics, suitable for a variety of Sample Handling.

$ 586.00

Far infrared radiation heating technology, Temperature range RT +~ 300 ℃, temperature fluctuation +/- 2 ℃, equipped with thermistor control thermoMeter, with fast, low consumption, easy adjustment and other advantages, suitable for drying a variety of samples.

$ 465.00

Articles

The use of gravure proofing machines in the comprehensive evaluation of gravure ink printability and drying performance.
This article explores how a gravure proofing press can be used to comprehensively evaluate the printability and drying properties of gravure inks. The experiment tested the dot sharpness, transfer rate, and leveling properties of different inks using standard equipment, while recording drying times through the filter paper method and infrared temperature measurement.
UV-Vis-NIR spectrophotometer measures the transmittance of anti-reflection coatings.
This article introduces the method of measuring the transmittance of anti-reflective coatings using a UV-Vis-NIR spectrophotometer. The instrument is based on the Beer-Lambert law, calculating transmittance by comparing the light intensity of the sample and the reference, covering a wide spectral range from ultraviolet to near-infrared.
Performance Comparison of Electrochemical Sensors and Infrared Sensors in Multi-Gas Detectors
This article compares the performance of electrochemical sensors and infrared sensors in multi-gas detectors.
Xenon lamp aging test chamber for testing coating weatherability.
Xenon lamp aging test chambers accelerate the testing of weather resistance for materials such as coatings in the laboratory by simulating the ultraviolet, visible, and infrared portions of sunlight, while controlling conditions like temperature, humidity, and water spray.
How to Choose the Right Spectrophotometer
When selecting a spectrophotometer, it is essential to start from the actual analytical needs, clearly defining the required wavelength range (ultraviolet, visible, or infrared) and the type of detection. Key evaluations should focus on core specifications of the optical system, such as wavelength accuracy, beam type, and stray light levels.