
( Brand: Spectra Physics ), ( Manufacturer Part Number: J20-BL10-106Q-NSI ), ( Model: BL10-106Q-NSI ), ( Part Type: Laser ), ( Country/region Of Manufacture: United States ), ( Wavelength: 1064nm ), ( Power: 3 Watts )
The Spectra-Physics J20-BL10-106Q-NSI Q-Switched Nd:YAG Laser is a high-performance, precisely engineered laser system, ideally suited for applications requiring ultra-short pulse durations and high energy output. This state-of-the-art device operates at a wavelength of 1064nm, making it highly efficient in a variety of material processing and research scenarios.
With a maximum output power of 3 watts, this laser system offers a significant energy source capable of delivering rapid and precise results. The ultra-short pulse duration of 11 nanoseconds ensures ultra-fast interactions with materials, offering exceptional precision and control. Each pulse delivers an energy of 120 microjoules, providing a versatile energy range suitable for a wide array of applications.
The J20-BL10-106Q-NSI laser is Q-switched, a technique that allows for the storage and rapid release of energy, resulting in high-powered pulses. This Q-switching mechanism results in a highly efficient and reliable device, making it an essential tool in fields such as material processing, micromachining, and scientific research.
The BL10-106Q-NSI laser head is designed with quality and durability in mind, ensuring long-term performance and minimal maintenance. The device is compatible with various types of delivery systems, offering flexibility in how the laser is integrated into your specific application setup.
In summary, the Spectra-Physics J20-BL10-106Q-NSI Q-Switched Nd:YAG Laser (1064nm, 3W, 11ns, 120uJ) is a high-quality, high-performance laser system, offering ultra-short pulse durations, high energy output, and exceptional precision. Ideal for a wide range of applications, this device is a valuable addition to any laboratory or industrial setting.
1. High Power: With a power output of 3W, this laser offers a significant amount of energy for various applications.
2. Short Pulse Duration: The 11ns pulse duration ensures intensity and precision, making it suitable for applications that require rapid energy delivery.
3. High Energy per Pulse: The 120uJ energy per pulse provides enough energy for efficient and effective results in many applications.
4. Quality Assurance: Spectra Physics, the manufacturer, is a reputable company known for their high-quality laser products.
5. Q-Switched: The Q-switched mechanism enables this laser to produce short, high-intensity pulses, which are ideal for many scientific and industrial applications.
Cons:1. Price: As a high-powered, Q-switched laser, it comes at a premium price, which may be prohibitive for some buyers.
2. Complexity: Due to its advanced features, this laser may require a certain level of expertise to operate and maintain effectively.
3. Safety Concerns: Like all lasers, this one must be handled with care to avoid eye and skin damage.
Conclusion:The J20-BL10-106Q-NSi Spectra Physics Switched DPSS Laser is a high-performance, Q-switched laser that offers significant power and precision. Its short pulse duration, high energy per pulse, and quality assurance from Spectra Physics make it an attractive choice for various applications. However, its premium price, complexity, and safety concerns are factors that potential buyers should consider before making a purchase.
Recommendation:If you are in need of a high-powered, Q-switched laser for scientific or industrial applications and have the necessary expertise and budget, the J20-BL10-106Q-NSi Spectra Physics Switched DPSS Laser could be an excellent choice. However, if you are a beginner or have a more limited budget, you may want to consider less powerful or simpler alternatives. Always ensure you have the necessary safety measures in place when using any laser.
Spectra Physics J20-BL10-106Q-NSI q-switched dpss laser 1064nm 3w 11NS 120UJ product features wave length : power avg: 0 energy pulse: 120UJ pulse rate: 1hz - 160khz 25khz nominal width .