1. The world's most professional second-generation CCD full-spectrum spectrometer manufacturing technology (digital technology replaces the old bulky and bulky photomultiplier tube analog technology), with unlimited channels;
2. A manufacturer that introduces European technology, synchronizes with international spectrometer technology, and can produce vacuum CCD full spectrum technology spectrometers;
3. There is no charge for changing or adding channels within the base body.
4. It is convenient to upgrade multiple bases without changing or adding hardware;
5. Excellent data stability, the same sample can be analyzed in different time periods to obtain good data consistency;
6. Small size, light weight, easy to move and install;
7. High integration, high reliability and high stability;
8. Power saving, material saving, and energy consumption are only 50% of ordinary spectrometers.
1. It can measure trace amounts of carbon (C), phosphorus (P), and sulfur (S) elements, and is suitable for a variety of metal substrates, such as: iron-based, aluminum-based, copper-based, nickel-based, chromium-based, titanium-based, Magnesium based, zinc based, tin based and lead based. Full spectrum technology covers the entire elemental analysis range, and channel elements can be selected according to customer needs;
2. The analysis speed is fast, and the elemental components of all channels can be measured within 20 seconds. For different analysis materials, by setting the pre-ignition time and marking line, the instrument can achieve good analysis results in the shortest time;
3. The optical system adopts a vacuum constant-temperature optical chamber. The arc flame generated during excitation is directly introduced into the vacuum optical chamber through the lens, realizing a direct optical path, eliminating optical path loss, improving the detection limit, and providing accurate measurement results, high reproducibility and long-term stability. good;
4, The special optical chamber structural design makes the vacuum chamber volume smaller, and the vacuuming speed is less than half of that of ordinary spectrometers;
5. Automatic optical path calibration, the optical system automatically performs spectral line scanning to ensure the accuracy of reception and eliminate the tedious peak scanning work. The instrument automatically identifies specific spectral lines, compares them with the original stored lines, determines the drift position, and finds the current pixel position of the analysis line for measurement;
6. The open electrode holder design and adjustable sample clamp facilitate the analysis of samples of various shapes and sizes;
7. The working curve adopts international standard samples, and the working curve is pre-made. The range can be extended and expanded as needed. Each curve is stimulated and generated by up to dozens of standard samples, and interference is automatically deducted;
8. HEPS digital solid-state light source, adaptable to various materials;
9. Solid adsorption trap prevents oil and gas from contaminating the light chamber and improves long-term operation stability;
10. Copper spark table base improves heat dissipation and solid performance;
11. Reasonable argon gas path design shortens the argon gas flushing time when the sample is excited, saving argon gas for users, and the argon gas consumption is less than half of that of ordinary spectrometers;
12. Using tungsten material electrode, the electrode has a longer service life, and the electrode self-purging function is designed to make cleaning the electrode easier;
13. High-performance DSP and ARM processor, with ultra-high-speed data acquisition and control functions and automatic real-time monitoring of the operating conditions of light chamber temperature, vacuum degree, argon pressure, light source, excitation chamber and other modules;
14. The Ethernet connection is used between the instrument and the computer, which has good anti-interference performance. External computer upgrades have nothing to do with the instrument configuration, making the instrument more applicable;
15. All core components are imported with original packaging, ensuring the high quality of the instrument.
Optical system | |
Optical structure | Full-spectrum vacuum optical system with Paschen-Runge structure |
light chamber temperature | Automatically controlled constant temperature: 35℃±0.5℃ |
Wavelength range | 160-800nm |
grating focal length | 350mm |
grating lines | 3600l/mm |
First-order spectral line dispersion rate | 1.2nm/mm |
Detector | Multiple high-performance linear array CCDs |
average resolution | 10pm/pixel |
Excitation platform | |
Qi body | Argon flushing type |
Argon flow | 3-5L/min when activated, when in standby: no standby flow required |
Electrode | Tungsten spray electrode technology |
blow sweep | Click on the self-purging function |
compensate | Thermal deformation self-compensation design |
analysis gap | Sample stage analysis gap: 4mm |
excitation light source | |
type | HEPS digital solid state light source |
Frequency | 100-1000Hz |
Discharge current | 1-80A |
special technology | Discharge parameter optimization design |
pre-burn | High energy pre-ignition technology |
data collection system | |
processor | High-end ARM processor, high-speed data synchronous acquisition and processing |
Interface | Ethernet data transmission based on DM9000A |
Power and environmental requirements | |
input | 220VAC 50Hz |
power rate | Maximum 700W during analysis, 40W in standby state |
Operating temperature | 10-30℃ (the temperature change within this temperature range is not more than 5℃/h) |
Working humidity | 20-80% |
Dimensions and weight | |
Host size | 800*750*500mm |
weight | 120kg |
The second generation CCD spectrometer technology is widely used in production process control, pre-furnace testing, and central laboratory finished product inspection in the fields of metallurgy, casting, machinery, automobile manufacturing, aerospace, weapons, and metal processing. The CX-9800 (L) floor-standing full-spectrum direct-reading spectrometer has small size, good stability, low detection limit, fast analysis speed, low operating cost, and easy operation and maintenance. It is an excellent choice for controlling product quality.