
( Brand: Process Instruments Inc ), ( Manufacturer Part Number: PI-ECL-785-1500-FC ), ( Part Type: Laser ), ( Country/region Of Manufacture: United States )
The Pi-ECL-785-1500-FC is a cutting-edge hyper-spectral spectroscopy frequency diode laser process imaging system, designed for advanced applications in material analysis and characterization. This state-of-the-art device is equipped with a Raman stabilized diode laser, which provides exceptional stability and performance, ensuring highly accurate and reliable spectral data.
The system operates at a wavelength of 785nm, which is ideally suited for a wide range of materials, including polymers, metals, and biological samples. The hyper-spectral imaging capability allows for the simultaneous acquisition of spectral data across a broad range of wavelengths, providing a rich and detailed picture of the sample's chemical composition.
The Pi-ECL-785-1500-FC features a powerful and sensitive detection system, enabling the detection of even the faintest spectral signals. This, combined with the high spatial resolution of the imaging system, allows for the identification and mapping of chemical features with sub-micron accuracy.
The system is also designed for easy integration with other instruments, such as microscopes and robotic systems, making it a versatile tool for a wide range of applications, from basic research to industrial process control. It is also equipped with user-friendly software, allowing for easy data acquisition, analysis, and visualization.
In summary, the Pi-ECL-785-1500-FC is a high-performance, Raman stabilized diode laser process imaging system with hyper-spectral imaging capability, ideal for advanced material analysis and characterization. Its exceptional stability, sensitivity, and versatility make it an invaluable tool for researchers and industrial professionals in a variety of fields.
Pros of buying a Pi-ECL-785-1500-FC hyper-spectral spectroscopy frequency diode laser process imaging Raman stabilized system:1. High resolution: The system provides high-resolution hyper-spectral imaging, which allows for detailed analysis of materials.
2. Stabilized Raman: The Raman stabilization feature ensures consistent and reliable Raman spectra, which is essential for accurate material analysis.
3. Frequency diode laser: The frequency diode laser provides a stable and powerful light source for Raman spectroscopy, which improves the signal-to-noise ratio and increases the sensitivity of the system.
4. Process imaging: The system can be used for in-situ process imaging, which allows for real-time monitoring of material properties during manufacturing or processing.
5. Wide range of applications: The system can be used for a wide range of applications, including material characterization, quality control, and research in fields such as chemistry, physics, and biology.
Cons of buying a Pi-ECL-785-1500-FC hyper-spectral spectroscopy frequency diode laser process imaging Raman stabilized system:1. High cost: The system is expensive and may not be within the budget of some organizations or individuals.
2. Complexity: The system is complex and may require specialized training to operate and maintain.
3. Size and weight: The system is large and heavy, which may make it difficult to transport or use in certain applications.
4. Limited availability: The system may not be widely available in all regions, which may limit access to potential users.
Conclusion:The Pi-ECL-785-1500-FC hyper-spectral spectroscopy frequency diode laser process imaging Raman stabilized system is a powerful and versatile tool for material analysis and process imaging. While it has some limitations, such as high cost, complexity, size, and limited availability, its high resolution, stabilized Raman, and frequency diode laser make it a valuable asset for organizations and individuals in fields such as chemistry, physics, and biology.
Recommendation:If you have the budget and the need for a high-resolution, stable, and versatile hyper-spectral spectroscopy system, the Pi-ECL-785-1500-FC may be a worthwhile investment. However, it is important to carefully consider the system's limitations and potential applications before making a purchase decision. Additionally, it may be beneficial to seek out training or technical support to ensure proper operation and maintenance of the system.
Standard wave lengths 785 NM. Ambient operating temperature c thermal shutdown protection for over temperature cm x 6 cm x 11 cm weight spatial mode single transverse the laser has a narrow line width , long lifetime, as well as excellent frequency and intensity stability.
The laser is powered with a dc power supply Included. Polarization vertically polarized. No ase filtering or optical isolation is required for most applications.
15 cm 1 line width 1 cm 1 output beam free space fs. 25 x Wave length accuracy lbs. Frequency stabilized high power laser for laboratory, research, and oem raman instrumentation.
Estimated lifetime 9,000 hours or one year temperature controlled via te coolers. Power output 745 measured for this unit MW power monitor photo diode power requirements 1 NM wave length repeatability on off std kg.
Process Instruments, Inc.