( Brand: Spectra-physics ), ( Manufacturer Part Number: 337999-01 ), ( Model: 337I-68 ), ( Part Type: Laser ), ( Country/region Of Manufacture: United States )
The Spectra-Physics 337i-68 Nitrogen Laser, model number 337999-01, is a high-performance laser system designed for advanced applications in the field of laserscience. This laser emits a monochromatic beam at a wavelength of 337 nanometers, which is within the ultraviolet spectrum.
The 337i-68 is a nitrogen-pumped dye laser, which means it uses a nitrogen gas discharge to pump an active dye medium, thereby creating the coherent light output. The dye medium is chosen for its ability to absorb at the 337nm wavelength and emit at longer wavelengths, thereby creating the output beam.
The laser's design includes a robust, compact, and lightweight housing, making it easy to transport and integrate into various research facilities. The system includes a user-friendly control interface, allowing for simple and intuitive operation. The laser also features a high energy output, allowing for a wide range of applications, including spectroscopy, holography, and photo-chemistry.
The Spectra-Physics 337i-68 Nitrogen Laser is built with durability and reliability in mind. It includes a high-quality, long-lasting optical system, ensuring consistent performance over time. The laser also includes safety features, such as a protective enclosure and warning indicators, to ensure user safety.
In summary, the Spectra-Physics 337i-68 Nitrogen Laser is a high-performance, compact, and reliable laser system, ideal for advanced applications in the field of laserscience. Its monochromatic 337nm output, combined with its high energy output and robust design, make it a versatile and powerful tool for researchers and scientists.
The Spectra-Physics Laserscience Thermo 337 337nm 337-i, model 337999-01, is a high-performance laser designed for various scientific applications. Here are some pros and cons to consider before making a purchase:
Pros:1. High-Precision: The laser emits light at a wavelength of 337nm, which is ideal for certain scientific experiments and applications.
2. High Power: With a power output of up to 100mW, this laser is capable of delivering a high-intensity beam for various experiments.
3. Stability: The laser has a built-in temperature control system that ensures stability and consistency in the output power.
4. Durability: The laser is built to last, with high-quality materials and construction that can withstand frequent use and harsh environmental conditions.
5. Customizable: The laser can be customized to meet the specific needs of your research or experiment, such as adjusting the power output or wavelength.
Cons:1. Cost: The Spectra-Physics Laserscience Thermo 337 337nm 337-i is a high-end laser, and its cost reflects its advanced features and capabilities.
2. Complexity: The laser is not a simple device and requires a good understanding of laser technology to operate and maintain properly.
3. Safety Concerns: Lasers can be dangerous if not used properly, and this laser is no exception. Proper safety measures, such as eye protection and handling guidelines, must be followed.
4. Maintenance: The laser requires regular maintenance to ensure it continues to operate at its best.
Conclusion:The Spectra-Physics Laserscience Thermo 337 337nm 337-i is a high-quality laser that is well-suited for scientific research and applications that require a high-precision, high-power beam. However, its cost and complexity should be taken into consideration before making a purchase. If you have the budget and the technical expertise, this laser is a great investment for your research or experiment. If not, there may be less expensive options available that meet your needs. Ultimately, the decision to purchase the Spectra-Physics Laserscience Thermo 337 337nm 337-i should be based on your specific research or experiment requirements and your available resources.
In excellent cosmetic condition.
Inanity Latham laserscience 337 I included1x 337 i1x power cable condition this unit was removed from a working system.