FEATURES & BENEFITS APPLICATIONS
Combined drive and control Microfluidic chip irradiation
Good power stability and low noise Bioluminescence, synthetic white light
Near flat top distribution and low speckle of output beam DNA sequencing
Confocal imaging
Wavelength | Wavelength tolerance (nm) | Max power output (mW) |
375nm | ±5 | 200 |
405nm | ±5 | 10000 |
450nm | ±5 | 3000 |
488nm | ±5 | 2000 |
525nm | ±5 | 1200 |
532nm | ±5 | 10000 |
638nm | ±3 | 10000 |
660nm | ±5 | 10000 |
785nm | ±5 | 1000 |
808nm | ±5 | 5000 |
980nm | ±5 | 220 |
Application cases
1. Second generation gene sequencing
2. Synthetic white light and fluorescence detection of endoscope
3. Microfluidic chip irradiation
The above application is multi-wavelength beam combining through space or combiner, multi-mode fiber output (such as 400um / 0.22n. A), multi-mode fiber output end through spot homogenization and speckle elimination measures, to obtain a uniform near flat top spot. In some applications, such as irradiating microfluidic chip biological samples, it can completely replace single-mode fiber laser.
The laser integrates drive and control, and can communicate with the upper computer of the system.
It can be designed according to the application requirements and meet the application requirements in terms of size and function.