Stradus 488-150
Manufacturer/Distributor: Vortran
Laser Type: Laser-Diode-Modules
Blue Laser Diode Module
Description:
Manufacturer/Distributor: Vortran
Vortran Laser Technology, Inc. delivers lasers for applications spanning UV to near IR. Their Stradus® laser series features fully integrated, high-performance modules with essential regulation and connectivity features. The modules are single mode TEM00 lasers, ensuring precision and reliability. For selecting the appropriate laser and customizing solutions, Frankfurt Laser Company's sales and engineering personnel offer invaluable assistance and expertise to help you choose the right laser and collaborate on custom OEM solutions to meet specific application needs.
Laser Type: Laser-Diode-Modules
Laser diode modules are compact devices that integrate a laser diode, optical components, and often a driver circuit into a single package. These modules are designed to produce coherent light with high intensity and precision. The core component of these modules is the laser diode, a semiconductor device that emits laser radiation when electrically biased. To ensure the laser beam is focused and directed as needed, the module includes various optical components such as lenses, collimators, and beam shaping optics.
Wavelength Range: Visible
Lasers operating within the visible spectrum emit light that appears as colors ranging from violet (at the shorter wavelength end) to red (at the longer wavelength end). For instance, violet light falls within the 380-450 nm range, blue from 450-495 nm, green from 495-570 nm, yellow from 570-590 nm, orange from 590-620 nm, and red from 620-750 nm.
Wavelength Range: Low-Noise
Low noise in lasers is important because it enhances the performance and reliability of laser-based systems across a wide range of applications. By minimizing fluctuations in intensity, frequency, and phase, low-noise lasers enable precise measurements, high-quality communication, and accurate scientific and industrial processes.
Mode: singlemode
Singlemode lasers are particularly useful in applications requiring precise control of the light beam. In optical communication, their high coherence and narrow beam allow for efficient coupling into optical fibers, which reduces signal loss and enables long-distance communication. In high-precision measurement systems, singlemode lasers provide the accuracy needed for applications such as interferometry, spectroscopy, and metrology. They are also ideal for sensing and imaging applications due to their focused and coherent beam, making them suitable for high-resolution imaging and precise sensing applications, including LIDAR and biomedical imaging. Furthermore, singlemode lasers are frequently used in scientific research, particularly in laboratories for experiments requiring precise and stable light sources, such as atomic and molecular spectroscopy. The design of singlemode lasers typically involves specific structural considerations, such as a small core size or a precise refractive index profile, to support only the fundamental transverse mode and ensure high beam quality and coherence.
Application: Medical
Lasers have revolutionized medicine by enabling precise, minimally invasive procedures across various specialties. In surgery, dermatology, ophthalmology, and oncology, lasers enhance treatment outcomes by targeting specific tissues with minimal damage to surrounding areas. They are crucial in procedures such as LASIK, tumor removal, skin resurfacing, and photodynamic therapy. Additionally, lasers are widely used in dentistry, urology, gynecology, cardiology, ENT, pain management, orthopedics, and neurology, providing effective solutions with reduced recovery times.
This article refers to: Stradus 488-150 (Manufacturer/Distributor: Vortran Laser Type: Laser-Diode-Modules Wavelength Range: Low-Noise Mode: singlemode Application: Medical ) - Stradus 488-150 - singlemode Laser-Diode-Modules Wavelength 488nm (Nanometer) Power 0.15W (Watt)
- Vortran
- Laser-Diode-Modules
- Low-Noise
- singlemode
- Medical