FTIR Spectrometer

Fourier Transform Infrared Spectrometer

FTIR Spectrometer1 / 3
TS-10

FTIR Spectrometer

The TS10 FTIR Spectrometer combines advanced Fourier Transform Infrared technology with a compact, low-maintenance design to deliver accurate and consistent analytical performance.

Key Specifications

Spectral Range

7800–350 cm⁻¹

Resolution

< 1.0 cm⁻¹

Signal-to-Noise

30,000:1

Detector

Imported DLATGS

SpectrometryFTIR

Global Shipping

50+ countries

2-Year Warranty

Parts & service

Expert Support

Dedicated team

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Product Introduction

The TS10 FTIR Spectrometer is a compact and dependable analytical instrument engineered to deliver accurate and reliable infrared spectral analysis for laboratory and quality-control applications. Utilizing advanced Fourier Transform Infrared (FTIR) technology, the system enables rapid identification and characterization of materials across pharmaceuticals, petrochemicals, materials science, food safety, and academic research.

Designed with ease of use in mind, the TS10 FTIR Spectrometer features straightforward installation, intelligent operating software, and a low-maintenance modular design, making it suitable for both experienced analysts and first-time users. Its sealed optical system and stable performance ensure consistent analytical results, supporting routine quality control, teaching, research, and applied laboratory analysis.

The TS10 FTIR Spectrometer is an ideal solution for laboratories in the pharmaceutical, chemical, petrochemical, materials science, and food safety industries. It is equally valuable for universities and research institutions where dependable infrared spectroscopy is essential for scientific research, education, and quality assurance.

Technical Parameters

Instrument TypeFTIR Spectrometer (TS10)
Spectral Range7800–350 cm⁻¹
Spectral ResolutionBetter than 1.0 cm⁻¹
Noise Level< 2.2 × 10⁻⁵ A
DetectorHigh-sensitivity imported DLATGS detector
Beam SplitterMulti-layer coated potassium bromide (KBr) beam splitter with moisture-resistant coating
Signal-to-Noise Ratio30,000:1 (Peak-to-Peak, 4 cm⁻¹ resolution, 1-minute scan, at 2100 cm⁻¹)
Scanning SpeedMicrocomputer-controlled with continuously adjustable scanning speeds
Supported Operating SystemsWindows XP, Windows Vista, Windows 7, Windows 8, Windows 8.1, Windows 10
Data Transmission InterfaceHigh-Speed USB 2.0 (USB 3.0 compatible)
Infrared Light SourceImported long-life, high-intensity air-cooled ceramic infrared light source
Wavenumber Accuracy±0.01 cm⁻¹
Power Supply110–240 V AC, 50/60 Hz

Applications

Solid Powder Samples

The sample is ground and mixed with KBr, then pressed into a thin pellet for testing. This method is widely used in the pharmaceutical, materials, environmental protection, and scientific research fields, among others.

Liquid and Gaseous Samples

Liquid samples can be tested using a liquid cell or an ATR accessory. Gas samples are tested using a gas cell accessory. This approach is widely used in the pharmaceutical, chemical, and scientific research industries, among others. This versatile approach delivers reliable results for qualitative and quantitative analysis, making it ideal for applications in pharmaceuticals, chemicals, environmental monitoring, quality control, and scientific research.

Plastics and Other Polymers

This is achieved using either the ATR method or hot pressing. In the hot-pressing method, the sample is heated to the appropriate temperature in a hot-pressing mold and then pressed into a thin sheet. In the ATR method, the flattest surface of the sample is placed on the crystal and the knob is tightened before testing.

Note: for ATR testing, the crystal should be replaced when analyzing black samples or samples with a relatively high refractive index.

Other IR Applications

  • Infrared oil-testing applications, such as transformer insulating oil and oil-in-water analysis, using an infrared cuvette or liquid cell.
  • Determination of free silica content in dust, using a solids test kit, an α-quartz standard, and dedicated software.
  • Determination of hydroxyl content in quartz, using dedicated accessories and software for hydroxyl testing.
  • Rubber composition identification, using either the traditional pyrolysis method or ATR accessories.
  • Determination of carbon and oxygen impurities in monocrystalline silicon, using a dedicated holder and a standard silicon wafer sample.
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