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LBTY-9000 All-Spectrum Spark Direct-Reading Spectrometer

The LBTY-9000 is a direct‑reading optical emission spectrometer capable of analyzing metals and their alloying elements. It offers excellent overall stability and convenient commissioning; software‑based adjustments allow users to easily modify or add channels, and even introduce an additional analytical matrix is remarkably straightforward.

Keywords:

LBTY-9000 All-Spectrum Spark Direct-Reading Spectrometer
LBTY-9000 All-Spectrum Spark Direct-Reading Spectrometer
LBTY-9000 All-Spectrum Spark Direct-Reading Spectrometer
LBTY-9000 All-Spectrum Spark Direct-Reading Spectrometer
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  • LBTY-9000 All-Spectrum Spark Direct-Reading Spectrometer
  • LBTY-9000 All-Spectrum Spark Direct-Reading Spectrometer
  • LBTY-9000 All-Spectrum Spark Direct-Reading Spectrometer
  • LBTY-9000 All-Spectrum Spark Direct-Reading Spectrometer

Description


Product Introduction:

LBTY-9000 It is a direct-reading spectrometer capable of analyzing metals and their alloying elements. It boasts excellent overall stability and convenient calibration; thanks to software‑based adjustments, users can easily modify or add channels, and even incorporate an additional analytical matrix with minimal effort.

  By employing modern optoelectronic and automation technologies—such as automated spectral line correction—the instrument’s level of automation has been significantly enhanced, resulting in simple, flexible operation. Vacuum‑pumping technology in the optical chamber minimizes O₂‑induced absorption of spectral lines with wavelengths below 200 nm, thereby improving the instrument’s stability and detection limits for elements like carbon, phosphorus, and sulfur. A high‑vacuum shut‑off valve prevents contamination of the optical components within the chamber by vacuum‑pump oil. A constant‑temperature system (set at 32°C) reduces sensitivity to ambient temperature fluctuations and ensures excellent long‑term stability. The highly integrated, maintenance‑free digital light source is a composite excitation source capable of generating multiple combined parameters—including sparks, arcs, and arc‑like discharges—enabling the analysis of major, high‑concentration, trace, and even ultra‑trace elements. The software features a Windows‑style interface, full Chinese‑language display, comprehensive functionality, and user‑friendly operation.

Each instrument is custom‑built to the user’s specifications, meticulously assembled and adjusted, and thoroughly calibrated. Therefore, LBTY-9000 The direct-reading optical emission spectrometer is a quality assurance tool for process control in metal smelting and an ideal analytical instrument for users.

Product Advantages

A 1,400 mm focal‑length grating design, with a Parabolic–Rowland configuration, operates under high vacuum and offers high resolution and sensitivity. Moreover, since mechanically ruled gratings can generate higher diffraction orders, wavelength selection is more flexible, thereby minimizing spectral interference.

2. The instrument features a well‑designed structure; its electronic system employs an internationally standardized chassis and a highly integrated circuit design, resulting in a low failure rate.

3. Fast analysis speed, good reproducibility, and excellent stability;

4. Suitable for analyzing a wide range of matrices, including Fe, Co, Cu, Ni, Al, Pb, Mg, Zn, Sn, and others;

5. The operating software runs on a pure Chinese-language Windows system, making it simple and easy to use.

6. The computer software is equipped with a database system, facilitating the retrieval and printing of measurement data, and enabling remote data transmission over the network for convenience and efficiency.

7. Each system is independently powered, forming modular units that are easy to use and simple to maintain.

8. The use of constant-temperature control in the optical section ensures stable instrument operation, thereby reducing environmental requirements.

9. Add or modify element channels directly through software settings—no additional hardware required, saving you time, effort, and money.

10. Rapid analysis: all elemental components across all channels are measured within 30 seconds. For different sample types, by adjusting the pre‑burn time and calibration lines, the instrument achieves optimal analytical performance in a short time.

11. The spectrometer’s optical system employs a vacuum‑sealed, temperature‑controlled chamber; the arc flame generated during excitation is directly coupled into the vacuum chamber via an optical lens, ensuring a straight‑through optical path that eliminates optical losses, lowers the detection limit, and delivers highly accurate results with excellent reproducibility and long-term stability.

12. Automatic optical path calibration: the optical system automatically performs spectral line scanning to ensure accurate signal acquisition, eliminating the need for tedious peak‑search procedures. The instrument automatically identifies specific spectral lines, compares them with the originally stored lines to determine the drift position, and then locates the current pixel position of the analytical line for measurement.

13. An open‑type electrode holder design with an adjustable sample clamp facilitates the analysis of samples of various shapes and sizes.

14. The working curve is constructed using international standard samples, with a preliminary calibration performed; the range can be extended as needed. Each curve is generated by exciting several dozen standard samples, and interferences are automatically corrected.

15. A fully digital solid-state light source with continuously tunable energy and frequency, adaptable to a wide range of materials;

16. Solid-state adsorption trap, preventing hydrocarbon contamination of the optical chamber and enhancing long-term operational stability;

17. An optimized argon gas‑delivery system reduces the argon purge time during sample excitation, helping users save on argon consumption—less than half that of conventional spectrometers.

18. Equipped with a high-performance DSP and an ARM processor, it delivers ultra‑high‑speed data acquisition and control, while automatically monitoring in real time the operating status of modules such as the optical chamber temperature, vacuum level, argon gas pressure, light source, and excitation chamber.

Technical Specifications:

Optical system Optical structure Full-spectrum optical system with a Paschen–Runge configuration (vacuum‑evacuated)
Wavelength range 140-800nm
Grating focal length 401mm
Grating ruling 2400i/mm
First-order spectral line dispersion rate 1.1 nm/mm
Photoelectric detector Multiple high-performance linear-array CCDs
Light Source System Type All-digital spark excitation light source
Frequency 100-1000Hz
Discharge current Pulse 1–100 A
Inspiration Platform This excitation station employs an argon‑flushing, jet‑type spark‑ignition structure and features an automatic purging function.
Excitation port opening size: 9 mm
Other Ambient temperature 10℃-30℃
Environmental humidity 20%-80%
Power supply AC220V/50Hz
Argon purity 99.999%
External dimensions (mm) 700×800×450 (desktop)
850×870×1175 (floor-standing)

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FAQs



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Customer Reviews


European Plastic Pipe Manufacturer|Purchase: Ring Stiffness & Hydrostatic Burst Tester

European Plastic Pipe Manufacturer|Purchase: Ring Stiffness & Hydrostatic Burst Tester

From Thomas Bennett, Quality Director, UK plastic pipe factory

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★★★★★

“We have purchased two sets of pipe testing equipment from Laibote (Tianjin) for 18 months. The ring stiffness and hydrostatic burst testing machines run stably for daily batch inspection, test data matches ISO standard requirements precisely, and the intelligent test software is easy for our operators to master. Their after-sales team offers timely remote technical guidance whenever we have operational problems, spare parts supply is efficient. We have arranged a second bulk order for our new production workshop and will recommend Laibote’s testing machines to our industry partners across Europe.”
Middle East Construction Lab|Purchase: Universal Electronic Testing Machine & Geotextile Test Equipment

Middle East Construction Lab|Purchase: Universal Electronic Testing Machine & Geotextile Test Equipment

From Mohamed Kareem, Lab Manager, UAE third-party construction inspection institute

2026.06.05

★★★★★

“We compared multiple testing equipment brands from Europe and China before cooperating with Laibote. Their WDW universal tester and full-set geotextile testing instruments meet local construction testing standards perfectly. Custom fixtures tailored per our specimen specifications save much testing time. Pre-sale technical communication was patient and professional; engineers provided online operation training after goods arrived. Stable machine performance greatly improves our laboratory’s detection efficiency, we are satisfied with cost performance and overall service.”
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From Tanaka Hiroshi, R&D Supervisor, Indonesia rubber materials enterprise

2026.06.05

★★★★★

“Laibote’s Vicat softening point tester and electronic tensile machine have been applied to our raw material incoming inspection and new formula development for over one year. High testing accuracy effectively controls our product defect rate. What impresses us most is their responsive after-sale service; technical staff reply our troubleshooting requests within 24 hours even for time zone differences. Compared with expensive European brands, Laibote’s equipment balances quality and price excellently, we plan to expand procurement of auxiliary testing instruments next quarter.”

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Keywords:

LBTY-9000 All-Spectrum Spark Direct-Reading Spectrometer


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