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Overview

ICP Mass Spectrometer LMICP-A301 offers microscale, trace, and ultra trace elemental analysis. It boasts low detection limits, high accuracy, wide linear range, and minimal interference, making it suitable for demanding applications. The instrument features an easy-to-operate software interface, eliminating the need for specialized training. Additionally, it offers one click plasma setting for convenient plasma optimization. Its open-type inlet system ensures hassle-free operation.

Features :

Plasma shielding enhances performance
ICP mass spectrometer with rapid data acquisition and processing
Quartz glass concentric atomizer
Low pulse peristaltic pump
High-performance ICP source
Computer-controlled torch tube adjustment
Comprehensive gas control system
High-efficiency ion lens system
Hexapole ion guiding system
ETP dual mode detector
Multichannel signal analyzer
Versatile software compatibility

Specifications :

Mass range 2 to 255 amu
Linear range ≥ 108
Sensitivity Be ≥ 2 × 106, In ≥ 35 × 106, U ≥ 30 × 106(cps/mg/L)
Detection Limit Be ≤ 10, In≤ 2, U ≤ 2 (ng/L)
Resolution 0.6 to 0.8 amu
Signal to Noise Ratio 50 × 106
Background Noise 2 cps
Mass Axis Stability ≤ 0.05 amu/24 h
Stability RSD Short period ≤ 3%, Long period ≤ 4%
Oxide Ion Ratio CeO+/Ce+ ≤ 3%
Divalent Ions 69Ba 2+/138Ba+≤ 3%
Isotope Ratio 107 Ag/ 109 Ag ≤0.3%
Abundance Sensitivity ≤1 × 10-6 low mass number, 5 × 10-7high mass number
Gross weight 400 Kg

Applications :

ICP Mass Spectrometer is widely used across pharmaceuticals, clinical, biomedical research, material science, agriculture, etc.

Selection Guide :

ICP Mass Spectrometer LMICP-A301 is a high-performance analytical instrument ideal for trace elemental analysis in research, environmental monitoring, clinical, and industrial applications. Its wide mass range of 2 to 255 amu enables the detection of both light and heavy isotopes, making it suitable for multi-elemental analysis. With a linear dynamic range ≥ 10⁸, the spectrometer can accurately quantify elements across a broad concentration scale without signal saturation. Its high sensitivity (Be ≥ 2 × 10⁶, In ≥ 35 × 10⁶, U ≥ 30 × 10⁶ cps/mg/L) ensures accurate detection even at ultra-trace levels, supported by detection limits as low as 10 ng/L for Be and 2 ng/L for In and U. This makes it especially suitable for applications like geochemical mapping, nuclear forensics, pharmaceutical quality control, and toxicological studies. Additionally, compliance with international certifications ensures reliability and standardization in regulated environments. Researchers seeking high-throughput, low-detection-limit elemental analysis will find this model an optimal choice for advanced and sensitive analytical workflows.

Labmate Scientific LLC