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  • Proucts Nname: NB - 800 full spectrum direct reading spectrometer
  • Product number: a001
  • Views : 69

A、product overview
High performance, flexibility, desktop full spectrum direct reading spectrometer
NB - 800 desktop full spectrum direct reading spectrometer, streamline design new desktop spectrometer, meet the smelting, metal manufacturing and machining of user requirements, using computer-controlled digital spark light source, using CCD detection technology and unique vacuum light chamber can be accurate determination of C, P, S in nonmetallic elements and a variety of alloy element content, realization of full spectrum analysis. The determination results accuracy, good reproducibility and long-term stability;
B、the product configuration and characteristic
1, adopts the unique design of the vacuum chamber, light can be accurate determination of C, P, S in nonmetallic elements and a variety of alloy element content, the determination results accuracy, good reproducibility and long-term stability.
2, the unique structure of vacuum optical chamber design, vacuum chamber volume smaller, vacuumizing speed less than half the normal spectrometer. The incident from vacuum chamber makes the incident window daily cleaning maintenance convenient and quick.
3, scanning optical system, automatically spectral lines, automatic light path calibration, ensure the correctness of the receiving of the spectrum, from tedious wave scanning.
4, unique excitation and argon gas circuit design, greatly reduces the usage of argon. The sample of the flexible clamp design, to meet customer on-site analysis of the various shapes the size of the sample.
5, under the condition of without increasing the hardware facilities, matrix analysis can be realized. Compared with photomultiplier spectrometer can significantly reduce customer cost and scope of use.
6, using the most advanced injection electrode technology. Under the excited state, electrode formed around the argon gas jet stream, so that in the process of excitation excitation around not contact with outside air, improve precision of the excitation; Deserve to go up
7, special spectrum of operating software fully compatible with Windows system. At the same time can be equipped with a variety of language version according to customer's requirements. Software is simple without any knowledge and experiences of personnel only by simple knowledge training can be started to use.
8, the adoption of high performance FPGA, DSP and ARM processor, has the ultra high speed data collection and analysis function, and can automatic real-time monitoring control light room temperature, vacuum, argon pressure, such as, excitation light source module running status.
9, fully digital, and so on ion excitation light source, overstable energy release in the argon gas environment samples. Digital excitation pulse, ensure that stimulate plasma sample quantity output high resolution and high stability. Meet the requirements of various materials of excitation.
10, sample excitation using copper spark machine base, tungsten electrode materials; Copper table base for excitation spark with good heat dissipation and strong features, at the same time, tungsten electrodes have long service life, high temperature resistance and other properties also improves the performance of excitation; Electrode from scavenging function design, create a good environment for excitation, also make it easier to stimulate Taiwan cleaning electrode.
C、Technical parameters
Analysis matrix, Fe, Cu, Al, Ni, Ti, Co, zinc, Sn, Mg, Pb, etc
Optical structure: Mr Xing - runge Roland YuanQuan spectrum type vacuum optical system
Wavelength range: 160-650 nm
Focal length: 400 mm
Grating groove: 3000 / mm
Detector performance: the CCD array
Electrode: tungsten material injection electrode
Clearance gap analysis: the sample analysis: 3.4 mm
Light source type: a new digital adjustable light, high energy precombustion technology (HEPS)
Excitation frequency: 100-1000 hz
The maximum discharge current: 400 a
Vacuum software system: automatic control and monitoring