MS-T5 full-spectrum optical emission spectrometer adopts international standard design and manufacturing process technology, and uses the most advanced CMOS signal acquisition component of Japan's Hamamatsu company. Each CMOS can independently set the number of sparks, which is synchronized with the international first-class spectrometer technology , Using vacuum light chamber design and full digital excitation light source. This CMOS spectrometer not only includes the full spectrum characteristics of CCD spectrometer, but also has the extremely low detection limit of non-metal elements by PMT spectrometer. The design of the whole machine is reasonable, the operation is easy to learn, the data is accurate, and the long-term stability is good.
Product feature
●The special design of the excitation chamber makes the cleaning of the sample chamber / excitation chamber more convenient;
●Optimized argon gas path design ensures effective cooling of the excitation table and metal dust generated during the excitation process effectively enters the filter; makes the sample excitation more stable, and greatly reduces the human body's intake of metal dust, which is beneficial to protect the operator Health and safety;
●Small excitation space makes argon consumption smaller;
●Easy-to-use sample holder;
●13 mm excitation aperture is more convenient for sample analysis;
●The open sample excitation table can adapt to the analysis of samples of various sizes and more shapes;
●The structural design of the lens part makes the lens disassembly and cleaning more convenient, and the argon flushing design can extend the lens cleaning cycle.
●Pulse synthesis full digital light source (programmable pulse full digital light source), the highest frequency can reach 1000Hz;
●Optimized design of control and power circuits, perfect excitation safety protection function;
●Provide optimal spark, arc, or combined excitation waveforms for different analysis targets;
●High-performance DSP processor with ultra-high-speed data acquisition and control functions;
●Single spark acquisition and spectral delay acquisition to achieve more optimized element content measurement Single spark acquisition and spectral delay acquisition to achieve more optimized element content measurement.
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MS-T5
Mikrosize
90273000.00
Product Description
High-performanc e optical system | The arc flame generated when the optical system is excited is directly introduced into the vacuum optical chamber by the lens, so that the optical pathis directly passed and the optical path loss is effectively reduced; |
The use of high-precision CMOS elements can accurately determine the content of non-metal elements such as C, P, S and various metal elements; | |
Accurate measurement results, excellent repeatability and long-term stability. | |
Open fire station | Automatic optical path calibration, the optical system automatically scans the spectral lines to ensure the correctness of the reception, and eliminates tedious peak scanning work; |
The instrument automatically recognizes the specific spectral line and compares it with the original storage line, determines the drift position, finds out the current pixel position of the analysis line for measurement. | |
Plug-in lens design | The vacuum optical system uses a unique entrance window and vacuum isolation, which can be operated in the working state of the vacuum system. The optical lens uses a plug-in lens structure, which is convenient and fast for daily cleaning and maintenance. |
Vacuum chamber integration | The unique design of the light chamber structure makes the volume of the vacuum chamber smaller, and the evacuation time is only 1/2 of the ordinary spectrometer; |
The integrated design of the vacuum chamber and high-precision processing make the vacuum more durable. | |
Vacuum anti-return oil technology | Multi-stage isolated vacuum anti-return oil technology, using vacuum differential pressure valve to ensure that the vacuum chamber is completely isolated from the vacuum when the vacuum pump is not working. |
A vacuum oil filtering device is added in the middle to ensure that the oil in the vacuum pump does not enter the vacuum chamber, and to ensure that the CMOS detector and optical components work in a reliable environment. | |
Open exciter | The flexible sample holder design of the open-type excitation machine meets the sample analysis of various shapes and sizes at the customer's site; With the use of a small sample holder, the minimum wire analysis can reach 3mm. |
Jet electrode technology | Adopting the world's most advanced spray electrode technology, using tungsten material electrodes, in the excitation state, an argon gas jet will be formed around the electrode, so that the excitation point will not be in contact with the outside air during the excitation process, which will improve the accuracy |
Coupled with a unique argon gas path design, greatly reducing the amount of argon gas used, and also reducing the cost of use for customers. | |
Integrated pneumatic module | The pneumatic system uses a pneumatic module maintenance-free design to replace the solenoid valve and flow meter, and the electrode self-purge function creates a good environment for excitation. |
Digital excitation light source | Digital excitation light source, using the world's most advanced plasma excitation light source, super stable energy release to excite the sample in an argon environment; |
Full digital excitation pulse to ensure ultra-high resolution and high stability rate output of the excited sample plasma; | |
The parameters of the light source can be arbitrarily adjusted to meet the excitation requirements of various materials. | |
High-speed data acquisition | The instrument uses high-performance CMOS detection elements, each CMOS has a separate ultra-high-speed data acquisition and analysis function, and can automatically monitor and control the operating status of modules such as light chamber temperature, vacuum, argon pressure, light source, and excitation chamber. |
Ethernet data transmission | The Ethernet card and TCP / IP protocol are used between the computer and the spectrometer to avoid electromagnetic interference and the disadvantages of fiber aging. At the same time, the computer and printer are completely external, which is convenient for upgrade and replacement. |
The instrument status can be monitored remotely, and the multi-channel control system controls and monitors all instrument parameters. | |
Prefabricated working curve | There are standard sample libraries of different materials and brands, and the factory prefabricated working curve when the instrument leaves the factory, which is convenient for installation and debugging and put into production in time; |
There are slight differences according to the analysis program corresponding to the elements and materials. The excitation and test parameters have been adjusted at the factory. The optimal test conditions can be automatically selected according to the analysis program. | |
The analysis scope is attached to the technical specifications (and the working curve can be drawn or extended for free according to the standard samples provided by the user). | |
Fast analysis | For different analysis materials, by setting the pre-burn time and measurement time, the instrument can achieve the best analysis effect in the shortest time. |
Fast analysis speed, only one analysis can be completed in 20 seconds; | |
Multi-matrix analysis | The optical path design adopts the Roland circular structure, and the detectors are arranged alternately up and down to ensure that all spectral lines are received. Multi-matrix analysis can be achieved without adding hardware facilities; |
It is easy to add substrates and materials and analysis elements according to production needs (no hardware cost). | |
Software Chinese and English system | Instrument operating software is fully compatible with Windows 7/8/10 system; |
The software is easy to operate, even those who don ’ t have any knowledge and operation experience of the spectrometer can get started with simple knowledge training. |