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ICP Spectrometer FM-ICP-A200

ICP Spectrometer FM-ICP-A200

ICP Spectrometer FM-ICP-A200 with 160 to 1000 nm wavelength and 12 MHz±0.05% RF frequency ensures stable excitation performance. Its solid-state power design delivers consistent high-energy plasma generation. Optimized sampling system enhances atomization through precision geometry. Advanced optical configuration supports accurate multi-element detection. Reliable analytical structure guarantees repeatable spectrometric outcomes.

$62,437.00


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ICP Spectrometer FM-ICP-A200 - Specifications

Wavelength Range 160 to 1000 nm
Grating Middle step grating, 52.67 lp/mm, 64° sparkle angle
Numerical Aperture F less than 8, ultra-high luminous flux
Target Size 27.6 mm x 27.6 mm, 1024 x 1024 addressing detection units
Resolution less than 0.0065 nm at 200 nm
Astigmatism Equivalent background concentration of 10000 ppm Ca solution at As 189.042 nm less than 2 ppm
Light Chamber Precision constant temperature, 35 ± 0.1°C, nitrogen purging (normal: 1.8 L/min, fast: 3.8 L/min)
Plasma Argon Flowmeter 100 to 1000 L/h (1.6 to 16 L/min)
Auxiliary Argon Flowmeter 100 to 1000 L/h (0.16 to 1.6 L/min)
Auxiliary Carrier Argon Flowmeter 100 to 1000 L/h (0.16 to 1.6 L/min)
Pressure Maintaining Value 0 to 0.4 MPa
Cooling Water Temperature 20 to 25°C
Cooling Water Flow Rate greater than 5 L/min
Cooling Water Hydraulic Pressure greater than 0.1 MPa
Output Working Coil Inner Diameter 25 mm
Torque Tube Three concentric, external diameter 20 mm
Coaxial Nebulizer Outer diameter 6 mm
Double Barrel Atomizing Chamber Outer diameter 34 mm
Circuit Type Solid-state RF Power supply, with auto match function
Frequency 27.12 MHz ± 0.05%
Frequency Stability less than 0.1%
Power Output Stability less than 0.3%
Escaped RF Radiation 30 cm away from instrument, Electric Field: E less than 2 V/m
Power Consumption 800 to 1500 W
Power Supply 220V, 30A
Dimension (L × B × H) 1050 × 793 × 745 mm
Packaging Dimension (L × B × H) 1250 × 950 × 900 mm
Net weight 105 Kg
Gross weight 120 Kg

ICP Spectrometer FM-ICP-A200 - Features

  1. Dual-stage atomizing
  2. Nitrogen-purged optics
  3. Precision grating system
  4. High-flux illumination

ICP Spectrometer FM-ICP-A200 - Applications

  • ICP Spectrometer FM-ICP-A200 is used for high-precision elemental analysis in laboratories requiring multi-element detection across environmental samples, metallurgical materials, geological specimens, petrochemical substances, pharmaceutical raw materials, and industrial quality-control workflows.

ICP Spectrometer FM-ICP-A200 - Accessories

  • Cable  

    1 line

    Plastic drum 

    1 pc

    Argon Gas Reduction 

    2 pcs

    PU tube 30 m 

    1 pc

    PU tube 10 m 

    1 pc

    PVC transparent tube 

    1 meter

    Plug  

    1 pc

    Ground copper braided wire 

    15 lines

    Brass tube 

    1 pc

    Filter element of filter tank 

    4 pcs

    Capillary tube

    0.5 meter

    Torch pipe 

    2 pcs

    Double cylinder fog chamber

    2 pcs

    Atomizer

    1 pc

    Pump head hose of Peristaltic Pump (Ф1.65 L45cm)

    3 lines

    Electronic Fuses(10A,250V,6×30mm)

    2 lines

    Electronic Fuses (6.3A,250V,5×20mm)

    2 lines

    Cylindric atomizer 

    2 pcs

    Silicone tube (Inner 2mm, outer 4mm, hardness:55HRC) 

    0.3 lines

    Hose adapter (ZCJH-2*6 INNER 6-2) 

    4 pcs

    Hose adapter (ZC-1/16*3/32 INNER 1.6-2.4) 

    4 pcs

    Spherical connector clamp 

    1 pc

    O shape seal ring (32.5×3.55) 

    2 pcs

    O shape seal ring (5.6×1.8) 

    4 pcs

    Quick Connector(Φ6) 

    2 pcs

    Raw material belt (26mm×20m, thin:0.1~0.2mm) 

    1 roll

    Ribbon  

    30 lines

    Toolkit

    1 set

    Computer (Lenovo) 

    1 set

    Displayer (Lenovo) 

    1 set

    Canon Printer (Laser printer) 

    1 set

    Cooling water tank 

    1 set

ICP Spectrometer FM-ICP-A200 - Accessories Optional

  • Automatic Sampler 

    1

Alternative Models Of ICP Spectrometer

Fison’s Inductively Coupled Plasma (ICP) Spectrometers deliver high-precision multi-element analysis with exceptionally low detection limits. They utilize robust plasma generation to ensure stable atomization and excitation of complex sample matrices. Advanced optical systems combined with intelligent wavelength selection enhance spectral accuracy and analytical consistency. Automated control technology, digital calibration, and integrated diagnostics support reliable operation and long-term stability. Built for demanding analytical environments, these instruments provide consistent performance with superior reproducibility.