FPYL-445-XXXT-LN
Manufacturer/Distributor: FLC
Laser Type: Laser-Diode-Systems
Blue Low Noise Diode Laser System
Description:
Manufacturer/Distributor: FLC
The Frankfurt Laser Company (FLC) is a global supplier of laser technologies, offering a range of products including laser diodes and laser modules for various industrial and scientific applications. Founded in 1994, FLC serves industries such as machine vision, manufacturing, medicine, and aerospace.
Laser Type: Laser-Diode-Systems
Laser diode systems are versatile and widely adopted due to their efficiency, compactness, and precision, playing a crucial role in numerous technological advancements and industries. The advantages of laser diode systems include their high efficiency in converting electrical energy into light, compact size, precision in producing focused beams, and low power consumption.
Wavelength Range: Visible
Visible wavelengths in lasers refer to the range of electromagnetic waves that can be detected by the human eye, typically spanning from about 400 to 700 nanometers (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: multimode
When a laser operates in multimode, it supports and emits multiple transverse and/or longitudinal modes simultaneously. In the case of transverse multimode, the laser beam comprises a mixture of different spatial modes, leading to a more complex and often less desirable beam profile compared to a single-mode beam.
This article refers to: FPYL-445-XXXT-LN (Manufacturer/Distributor: FLC Laser Type: Laser-Diode-Systems Wavelength Range: Low-Noise Mode: multimode ) - FPYL-445-XXXT-LN - multimode Laser-Diode-Systems Wavelength 445nm (Nanometer) Power 0.5W (Watt)
- FLC
- Laser-Diode-Systems
- Low-Noise
- multimode