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AELAB ICP-700T Inductively Coupled Plasma Emission Spectrometer for Precise Multi-Element Analysis

The AELAB ICP-700T is a cutting-edge inductively coupled plasma emission spectrometer designed for rapid, simultaneous multi-element analysis. It offers ultra-low detection limits and patented dual-barrel atomizer technology, delivering unmatched precision for industries from petrochemicals to environmental testing.

Modles : ICP700T
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The ICP-700T Inductively Coupled Plasma Emission Spectrometer is a next-generation lab instrument for multi-element analysis, capable of measuring up to 70 elements with high speed and low detection limits. It is widely used in industries like rare earths, silicon, petrochemicals, metal smelting, geology, and environmental testing.

Equipped with a high-sensitivity photomultiplier tube, solid-state RF generator, and automatic tuning, it includes a cooling water system, argon conduit, and high-efficiency atomizer with patented dual-barrel technology for precise trace element analysis.

 

Feature:

Multiple testing elements
More than 70 elements can be measured, including all metallic elements and the vast majority of non-metallic elements.
Simultaneous testing of multiple elements
Test all elements at once and produce results at once.
Fast analysis speed
Approximately 5 elements per minute, expandable up to 10 elements per minute.
Low detection limit
The detection limit of most elements in solution samples can reach the ppb level.
Wide linear range
Up to 5-6 orders of magnitude, allowing for simultaneous testing of high and low content.
Less chemical interference
There is basically no chemical interference, real-time background deduction, and the test results are more accurate.

 

🔬 How It Works?

The ICP-700T operates by exciting samples with a high-frequency inductively coupled plasma torch, ionizing the atoms in the sample. Emitted light from excited atoms passes through a high-resolution optical system, where each element’s unique wavelength is detected by a sensitive photomultiplier tube. The system’s patented dual-barrel atomizer and advanced argon flow control ensure efficient sample nebulization and atomization, enabling simultaneous multi-element analysis with minimal chemical interference.

 

💡 Advantages

  • High Throughput: Simultaneous detection of over 70 elements speeds up laboratory workflows.

  • Ultra-Low Detection Limits: Capable of detecting elements at parts-per-billion levels for precise trace analysis.

  • Robust Stability: Maintains accuracy with low relative standard deviation for reliable results over time.

  • Patented Atomization Technology: Dual-barrel design improves precision and reduces interference.

  • Automatic Tuning & Plasma Control: Simplifies operation and optimizes performance.

  • Wide Linear Range: Tests elements across 5-6 orders of magnitude, suitable for samples with varying concentrations.

 

🔍 Recommended Models by Use Case

  • ICP-700T Standard: Ideal for research centers and quality control labs requiring comprehensive multi-element analysis.

  • ICP-700T with Hydrofluoric Acid Resistant Chamber: Suitable for petrochemical and silicon industry labs handling corrosive samples.

  • Compact ICP-700T: Tailored for educational institutions and smaller environmental testing labs needing cost-effective performance.

 

🧪 Ideal For

  • Rare earth element analysis

  • Silicon and semiconductor materials testing

  • Petrochemical industry quality control

  • Metal smelting and alloy characterization

  • Geology and mineral exploration labs

  • Environmental pollutant monitoring

Specifications :

Category Details
Main Technical Parameters Observation System: Desktop, Plasma Vertical Observation System
Precision: 2ppm Mixed Multi-element Solution, RSD ≤ 1.5%
Stability: 2 Hours RSD ≤ 2.0%, Detection Limit Meets the A-level Requirements of the National Standard
Flame Adjustment: The Plasma Flame Can Be Adjusted in Three Dimensions (Front, Back, Up, Down, Left, Right, Controlled by Computer)
Injection System Torch Tube: Integrated Integrated Integrated Quartz Torch Tube
Atomizer: Efficient Concentric Nebulizer, Injection Speed 2ml/min
Atomization Chamber: Patented Extended Atomization Chamber, Optional with Swirl Atomization Chamber and Hydrofluoric Acid Resistant Atomization Chamber
Split Sampling System: For Real-time Observation of Sample Injection Status
Mass Flow Controller: Controls the Argon Flow Rate, Continuously Adjustable and Provides Real-time Numerical Feedback
Peristaltic Pump: Fully Automatic Five-channel Sixteen Roller Shaft, Continuously Adjustable Speed
RF Generator and Plasma Frequency: 27.12MHz, Frequency Stability ≤ 0.01%
Type: Solid State High-frequency RF Generator, Fast Water Cooling, Automatic Tuning
Power: 500W - 1600W, Continuously Adjustable, Adjustment Accuracy ≤ 1W, Power Stability ≤ 0.01%, Using 99.99% Argon Gas
Equipped with Reverse Power Protection Function for RF Power Supply
Plasma Ignition Is Fully Automatic Control
Optical System Optical Stability: Designed on the Same Platform as the Injection System
System Type: Cheney Turner Type (C-T Type), Focal Length 1000mm
Constant Temperature of the Optical System, Temperature Stability: ±0.1°C
Minimum Step Distance of Scanning Motor: ≤ 0.0004nm
Resolution Ratio (Mn257.610nm): ≤0.005nm (4320line Grating); ≤0.008nm (3600line Grating); ≤0.015nm (2400line Grating)
Wavelength Range: 190 - 460nm (4320line Grating); 190 - 500nm (3600line Grating); 190 - 800nm (2400line Grating)
The Best Testing Conditions for Different Elements Can Be Set
Category Details
Main Technical Parameters Observation System: Desktop, Plasma Vertical Observation System
Precision: 2ppm Mixed Multi-element Solution, RSD ≤ 1.5%
Stability: 2 Hours RSD ≤ 2.0%, Detection Limit Meets the A-level Requirements of the National Standard
Flame Adjustment: The Plasma Flame Can Be Adjusted in Three Dimensions (Front, Back, Up, Down, Left, Right, Controlled by Computer)
Injection System Torch Tube: Integrated Integrated Integrated Quartz Torch Tube
Atomizer: Efficient Concentric Nebulizer, Injection Speed 2ml/min
Atomization Chamber: Patented Extended Atomization Chamber, Optional with Swirl Atomization Chamber and Hydrofluoric Acid Resistant Atomization Chamber
Split Sampling System: For Real-time Observation of Sample Injection Status
Mass Flow Controller: Controls the Argon Flow Rate, Continuously Adjustable and Provides Real-time Numerical Feedback
Peristaltic Pump: Fully Automatic Five-channel Sixteen Roller Shaft, Continuously Adjustable Speed
RF Generator and Plasma Frequency: 27.12MHz, Frequency Stability ≤ 0.01%
Type: Solid State High-frequency RF Generator, Fast Water Cooling, Automatic Tuning
Power: 500W - 1600W, Continuously Adjustable, Adjustment Accuracy ≤ 1W, Power Stability ≤ 0.01%, Using 99.99% Argon Gas
Equipped with Reverse Power Protection Function for RF Power Supply
Plasma Ignition Is Fully Automatic Control
Optical System Optical Stability: Designed on the Same Platform as the Injection System
System Type: Cheney Turner Type (C-T Type), Focal Length 1000mm
Constant Temperature of the Optical System, Temperature Stability: ±0.1°C
Minimum Step Distance of Scanning Motor: ≤ 0.0004nm
Resolution Ratio (Mn257.610nm): ≤0.005nm (4320line Grating); ≤0.008nm (3600line Grating); ≤0.015nm (2400line Grating)
Wavelength Range: 190 - 460nm (4320line Grating); 190 - 500nm (3600line Grating); 190 - 800nm (2400line Grating)
The Best Testing Conditions for Different Elements Can Be Set

Product Video:

Frequently Asked Questions

1How is calibration performed?
Calibration uses multi-element standard solutions with automatic plasma flame adjustment, ensuring accurate quantitative results.
2Is the device GMP compliant?
Yes, the ICP-700T meets GMP standards and national regulatory requirements for laboratory instrumentation.
3What is the warranty period?
The device comes with a standard 12-month warranty and extended service options available.

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