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AELAB CX-9800 Optical Emission Spectrometer for Metal Elemental Analysis

The AELAB CX-9800 Optical Emission Spectrometer performs rapid and precise elemental analysis of metallic materials using spark and plasma excitation. Designed for routine and production laboratory testing, the CX-9800 optical emission spectrometer combines Paschen-Runge optics with high-resolution CCD/CMOS detectors to deliver stable, multi-element analysis across 130–800 nm with high sensitivity and reproducibility.
Modles : CX Series Optical Emission Spectrometers
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The AELAB CX-9800 Optical Emission Spectrometer performs fast and accurate elemental analysis for metal manufacturing and quality control laboratories. Utilizing advanced CCD/CMOS detector technology, the CX-9800 optical emission spectrometer completes full-spectrum analysis within seconds while maintaining high analytical stability.

Designed for affordability and precision, the AELAB CX-9800 Optical Emission Spectrometer supports simultaneous multi-element detection across a wide wavelength range and allows additional analytical methods to be implemented through software without hardware modification.

 

⚙️ Design & Construction

The AELAB CX-9800 Optical Emission Spectrometer employs a Paschen-Runge optical structure with a 400 mm Rowland circle to ensure high spectral resolution. The optical chamber features automatic temperature control and vacuum regulation between 6–15 Pa. The instrument housing supports both benchtop and floor-standing configurations with integrated storage for consumables and spare parts.

 

🔬 Working Principle / Testing Method

The CX-9800 optical emission spectrometer excites metal samples using a controlled digital arc, spark, or plasma source. Emitted characteristic spectra are dispersed by the Paschen-Runge optical system and detected by high-resolution CCD/CMOS arrays. The system quantifies elemental concentrations by analyzing spectral intensities with calibrated software algorithms.

 

💡 Key Advantages

  • Simultaneous analysis of up to 31 elements across 130–800 nm
  • High sensitivity enabled by CCD/CMOS detector technology
  • Fast analysis time with results delivered within seconds
  • Supports minimum sample diameter of 1 mm for small samples
  • Automatic vacuum and temperature stabilization for optical consistency
  • Expandable analysis methods via software updates without hardware changes
  • Available in benchtop or floor module configurations

 

🔗 Connectivity & Integration

The AELAB CX-9800 Optical Emission Spectrometer integrates with laboratory information systems through PC-based analytical software. The platform supports data storage, method expansion, and long-term performance updates with free technology support and software upgrades.

 

🧠 Model Insight

Model Configuration Overview – AELAB CX-9800 Series
Model Pixel Resolution Power Consumption Configuration
CX-9800 30 pm 300 W Excitation Routine Metal Analysis
CX-9800PRO 10 pm 700 W Excitation High-Sensitivity Multi-Element Analysis

 

🧪 Testing Applications

The AELAB CX-9800 Optical Emission Spectrometer is widely used in metal production and processing industries, including primary metal producers, foundries, die casting facilities, and manufacturing plants. Typical applications include elemental analysis of iron, aluminum, copper, zinc, and alloy materials for quality control and process optimization.

 

AELAB CX-9800PRO spark optical emission analyzer              CX-9800 metal elemental analysis spectrometer AELAB

 

Compliance & Quality Assurance

The AELAB CX-9800 Optical Emission Spectrometer is manufactured under ISO-aligned quality systems and supports GLP-compliant laboratory workflows. Stable calibration, traceable measurement performance, and controlled operating conditions ensure consistent analytical reliability for industrial and laboratory environments.

 

Specifications :

TECHNICAL PARAMETER

 

Optical Structure

Paschen-Runge Mount

Diameter of Rowland Circle

400mm

Wavelength Range

130nm-800nm

Detector

Multi high resolution CCD/CMOS detectors

Degree Of Vacuum

Auto control within 6-15 Pa

Pixel Resolution

10pm

Full Spectrum

Optical Chamber temperature is controlled

automatically

Light Source

Digital arc and spark source/New plasma

generator

Spark Frequency

100-1000Hz

Plasma Current

1-80A

Ignition Voltage

>8000V

Analysis Matrix

Fe base. Al base. Cu base. Zn base, ect

Dimension

800*700*460mm(LxWxH) (Benchtop)

830*700*1230mm(LXWXH) (Floor Module)

Weight

80kg (Benchtop) 120kg (Floor Module)

Storage Temperature

0℃ -45℃

Operating Temperature

10 ℃ -30 ℃. 23±2 ℃ is recommended

Power

AC220V±10% , 50/60Hz

Power Consumption

Excitation: 700W / Stand by:40W

Argon Quality

99.999%. Argon Pressure >4MPa

Argon Consumption

5L/min during spark mode

 

TECHNICAL PARAMETER

 

Optical Structure

Paschen-Runge Mount

Diameter of Rowland Circle

400mm

Wavelength Range

130nm-800nm

Detector

Multi high resolution CCD/CMOS detectors

Degree Of Vacuum

Auto control within 6-15 Pa

Pixel Resolution

30pm

Full Spectrum Optical Chamber temperature is controlled

automatically

Light Source

Digital arc and spark source/New plasma

generator

Spark Frequency

100-1000Hz

Plasma Current

1-80A

Ignition Voltage

>8000V

Measurable Elements

Fe base. Al base. Cu base. Zn base, ect

Dimension

830*460mm(LxWxH) (Benchtop)

830*700*1230mm(LXWXH) (Floor Module)

Weight

80kg (Benchtop) 120kg (Floor Module)

Storage Temperature

0℃ -45℃

Operating Temperature

10 ℃ -30 ℃. 23±2 ℃ is recommended

Power

AC220V±10% , 50/60Hz

Power Consumption

Excitation: 300W / Stand by:100W

Argon Quality

99.999%. Argon Pressure >4MPa

Argon Consumption

5L/min during spark mode

TECHNICAL PARAMETER

 

Optical Structure

Paschen-Runge Mount

Diameter of Rowland Circle

400mm

Wavelength Range

130nm-800nm

Detector

Multi high resolution CCD/CMOS detectors

Degree Of Vacuum

Auto control within 6-15 Pa

Pixel Resolution

10pm

Full Spectrum

Optical Chamber temperature is controlled

automatically

Light Source

Digital arc and spark source/New plasma

generator

Spark Frequency

100-1000Hz

Plasma Current

1-80A

Ignition Voltage

>8000V

Analysis Matrix

Fe base. Al base. Cu base. Zn base, ect

Dimension

800*700*460mm(LxWxH) (Benchtop)

830*700*1230mm(LXWXH) (Floor Module)

Weight

80kg (Benchtop) 120kg (Floor Module)

Storage Temperature

0℃ -45℃

Operating Temperature

10 ℃ -30 ℃. 23±2 ℃ is recommended

Power

AC220V±10% , 50/60Hz

Power Consumption

Excitation: 700W / Stand by:40W

Argon Quality

99.999%. Argon Pressure >4MPa

Argon Consumption

5L/min during spark mode

 

TECHNICAL PARAMETER

 

Optical Structure

Paschen-Runge Mount

Diameter of Rowland Circle

400mm

Wavelength Range

130nm-800nm

Detector

Multi high resolution CCD/CMOS detectors

Degree Of Vacuum

Auto control within 6-15 Pa

Pixel Resolution

30pm

Full Spectrum Optical Chamber temperature is controlled

automatically

Light Source

Digital arc and spark source/New plasma

generator

Spark Frequency

100-1000Hz

Plasma Current

1-80A

Ignition Voltage

>8000V

Measurable Elements

Fe base. Al base. Cu base. Zn base, ect

Dimension

830*460mm(LxWxH) (Benchtop)

830*700*1230mm(LXWXH) (Floor Module)

Weight

80kg (Benchtop) 120kg (Floor Module)

Storage Temperature

0℃ -45℃

Operating Temperature

10 ℃ -30 ℃. 23±2 ℃ is recommended

Power

AC220V±10% , 50/60Hz

Power Consumption

Excitation: 300W / Stand by:100W

Argon Quality

99.999%. Argon Pressure >4MPa

Argon Consumption

5L/min during spark mode

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Frequently Asked Questions

1What materials can the AELAB CX-9800 Optical Emission Spectrometer analyze?
It analyzes metallic matrices including iron, aluminum, copper, zinc, and related alloys.
2How fast is the analysis process?
Complete elemental analysis is performed within a few seconds per sample.
3What is the minimum sample size supported?
Routine analysis is possible with a minimum sample diameter of 1 mm.
4What excitation methods are supported?
Digital arc, spark excitation, and plasma generation are supported.
5What are the recommended operating conditions?
Reliable operation between 10–30 °C, with 23 ±2 °C recommended.

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