
( Brand: Jdsu ), ( Manufacturer Part Number: 27-8052-190 ), ( Part Type: Laser ), ( Wavelength: 980nm )
The JDSU Stabilized 980nm Fiber Bragg Grating Laser Diode (Part No. 27-8052-190) is an exceptional optical component that offers a high-performance solution for various applications. This 980nm laser diode, designed by the renowned JDSU (now part of Viavi Solutions), is a testament to the company's commitment to innovation and quality.
The 27-8052-190 model is equipped with a stabilized fiber Bragg grating (FBG) design, which ensures superior wavelength stability and eliminates the need for external feedback control. This feature makes it an ideal choice for applications requiring precise wavelength stability, such as optical sensing, spectroscopy, and bio-imaging.
With a maximum power output of 170mW, this laser diode delivers a robust and reliable performance. It is housed in a compact and rugged package, designed to withstand the rigors of real-world applications, making it suitable for both lab and field use.
The 27-8052-190 JDSU laser diode operates at a center wavelength of 980nm, which falls within the critical absorption band of many materials, making it a popular choice for pump sources in fiber lasers and optical amplifiers. Its single-mode operation ensures minimal spectral broadening and maintains a high beam quality, ensuring optimal performance in these applications.
In conclusion, the JDSU Stabilized 980nm Fiber Bragg Grating Laser Diode (Part No. 27-8052-190) is a versatile and powerful optical component, offering superior wavelength stability, high power output, and single-mode operation. Its compact design, robust construction, and suitability for various applications make it an invaluable tool for researchers, engineers, and technicians in the fields of optical sensing, spectroscopy, and bio-imaging.
Product: JDSU Stabilized 980nm Fiber Bragg Grating Laser Diode (Model: 27-8052-190) with 170mW Sheet
Pros:1. High Power Output: With a power output of 170mW, this laser diode provides a significant amount of power for various applications.
2. Stabilized: The stabilized feature ensures consistent and reliable operation, reducing the need for constant adjustments.
3. Fiber Bragg Grating (FBG) Technology: FBG technology offers excellent wavelength stability and immunity to polarization-dependent losses, making it suitable for precise applications.
4. Wide Applications: This product can be used in a variety of fields such as telecommunications, sensing, and medical devices due to its 980nm wavelength.
Cons:1. High Cost: Given its specialized nature and high power output, this laser diode is priced higher than general-purpose laser diodes.
2. Requires Specific Knowledge: Proper operation and maintenance of this device require a good understanding of laser diodes and FBG technology, which may not be accessible for all users.
3. Limited Availability: Due to its specific nature and high demand in certain industries, availability may be limited, leading to potential delays in delivery or higher prices.
Conclusion:The JDSU Stabilized 980nm Fiber Bragg Grating Laser Diode (Model: 27-8052-190) with 170mW Sheet is a high-performance product suitable for applications that require consistent, high-power output and wavelength stability. However, its high cost, specialized nature, and need for specific knowledge may make it less accessible for some users. If you have the necessary expertise and budget, this product could be a valuable addition to your equipment. Otherwise, it's essential to consider if the benefits justify the investment.
Recommendation:If you are looking for a high-performance laser diode for specific applications in telecommunications, sensing, or medical devices, the JDSU Stabilized 980nm Fiber Bragg Grating Laser Diode (Model: 27-8052-190) with 170mW Sheet could be a good choice. Ensure you have the necessary expertise and budget to fully utilize its capabilities. If you're unsure or need a more general-purpose laser diode, you might want to consider other models with lower power output and simpler operation.