CGX-104 Handheld Detectors
CGX-104 Handheld Detectors

CGX-104 Handheld Detectors

CGX-104 Handheld Detectors Specification

  • Dimension (L*W*H)
  • 242 (L) x 78 (W) x 230 (H) Millimeter (mm)
  • Test Range
  • -
  • Product Type
  • -
  • Material
  • -
  • Classification
  • -
  • Color
  • -
  • Weight
  • 12 Kilograms (kg)
  • Port Size
  • -
  • Operate Method
  • -
  • Application
  • -
  • Humidity
  • -
  • Power Supply
  • -
  • Usage
  • used in the lab or in the field
  • Number of Specimens
  • -
  • Machine Weight
  • 12 Kilograms (kg)
  • Test Speed
  • -
  • Test Stroke
  • -
  • Control Mode
  • -
 

CGX-104 Handheld Detectors Trade Information

  • Minimum Order Quantity
  • 50 Units
  • FOB Port
  • JNPT Navi Mumbai
  • Payment Terms
  • Others
  • Supply Ability
  • 2 Units Per Week
  • Delivery Time
  • 2 Week
  • Sample Policy
  • Contact us for information regarding our sample policy
  • Packaging Details
  • Export Quality Packing
  • Main Export Market(s)
  • Asia
  • Main Domestic Market
  • All India
  • Certifications
  • ISO,CE
 

About CGX-104 Handheld Detectors

X-Ray Fluorescence Spectrometer Handheld Detectors (Si-PIN / SDD) CGX-104

XRF is used to detect and analyze noble metals like Gold ( Au), Silver (Ag), Platinum (Pt),Iridium (Ir), Osmium (Os), Palladium (Pd), Rhodium (Rh), Ruthenium (Ru), Copper (Cu), Zinc (Zn), Nickel (Ni), Cadmium (Cd), Iron (Fe), Cobalt (Co), Indium (In), Tin (Sn), in the Jewellery Industry.

Energy Dispersive X-ray Fluorescence (EDXRF) technique relies on the detector and the detection circuit capability to resolve spectral peaks due to different energy X-Rays emitted when a primary X-Ray beam strikes a metal alloy corresponding to different elements in the sample, intensity of the spectrum radiation proportional to the concentration of element. The spectrum is then processed through the powerful computer software which calculates and reports the various elements & their composition in the sample.

XRF Gold Purity Tester consists of X-Ray tube, high voltage power supply for X-Ray source,X-Ray tube filters, X-Ray fluorescence Detector, processing electronics and system interface& an external computer. A camera is incorporated in the system to view the sample on the computer screen.

Handheld X-ray analyzer works on a rechargeable 7.2VLi-ion battery ith  backup period of 8 hours under normal use. XRF analyzer has a detectable range from Ti TO U. CGX-104 operates under control of the HP iPAQ PDA with 4 inch high resolution touch-screen display. The optional lab stand allows using of handheld analyzer as a tabletop instrument under PC or laptop control.

Specifications :

X-ray tube

Tungsten anode, 40 kV , 100 A with 5 filter positions

Detector type

solid state Si-pin-diode with thermo-electrical cooling (optional SDD)

Active Area

6 mm2

Energy resolution

<165 eV at 5.9 keV (<140 eV for SDD)

Display

High resolution 4 inch color touch-screen

Supported operating systems

Windows CE/Mobile for PDA
Windows XP/Vista/7 for PC

  • Battery Operation Time : Up to 8 hours
  • Dimensions : 242 mm (L) x 78 mm (W) x 230 mm (H)
  • Weight (with battery) : 1230 g (1440 g)
XRF is a reference technique, hence standards are required for quantitative results. Standards are analyzed, spectral intensities generated are used to obtain a intensity v/s concentration plot for calibration. This calibration is used to evaluate the spectral intensities of unknown samples.

How to get best results from XRF Spectrometer :
  • XRF is a reference method, proper standardization of the equipment is required for accurate results.
  • In order to get most appropriate results, testing at different points is necessary especially when the jewellery design is intricate.
  • Adequate warm up period, sturdy working surface, stable power supply, proper grounding and conditioned atmosphere is required to achieve the best product performance.
  • For powder sample, proper grinding of sample minimizes scattering effect.
  • For solid sample, surface polishing minimizes the scattering effect.
  • Flat surface of the sample yields the best results.
  • Due to different melting points, atomic structure and crafting techniques, not all the elements can be melted with noble metals.
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