Stradus 940-40
Manufacturer/Distributor: Vortran
Laser Type: Laser-Diode-Modules
Infrared Laser Diode Module
Description:
Manufacturer/Distributor: Vortran
Vortran Laser Technology, Inc. provides laser solutions across the UV to near IR range. The Stradus® series, fully compliant with CDRH standards, offers high-performance, circularized laser diode modules with integrated optical and temperature regulation, and connectivity via USB and RS-232. Frankfurt Laser Company's experienced team is ready to help you find the right laser for your application and work on custom OEM projects to meet unique requirements.
Laser Type: Laser-Diode-Modules
Laser diode modules offer several advantages. Their compact size makes them easy to integrate into various devices and systems. They are highly efficient, converting electrical energy into light with minimal loss. Laser diode modules are also known for their reliability and long operational life when properly managed. Additionally, they can produce highly focused and coherent light, which is essential for many precise applications. Overall, laser diode modules provide a versatile and efficient solution for generating laser light across a broad spectrum of uses.
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.
Wavelength Range: IR
Infrared (IR) radiation is a type of electromagnetic radiation with wavelengths longer than visible light but shorter than microwave radiation.
Mode: singlemode
This article refers to: Stradus 940-40 (Manufacturer/Distributor: Vortran Laser Type: Laser-Diode-Modules Wavelength Range: IR Mode: singlemode ) - Stradus 940-40 - singlemode Laser-Diode-Modules Wavelength 940nm (Nanometer) Power 0.04W (Watt)
- Vortran
- Laser-Diode-Modules
- IR
- singlemode