Description
Anteryon’s diode laser modules are designed from the perspective of optical engineers, enabling our customers to have superior optical performance. Our customers receive high quality diode laser modules, manufactured and tested in our own factory. These are optimized for the required fit, form and function. Our aspherical lenses enable a beam divergence or spot size that is touching the boundaries of the laws of physics. The rigid mechanical design results in a high beam stability. A beam pointing stability of just a fraction of the beam divergence or spot size is common for our diode laser modules.
Customized High-Performance Diode Laser Modules
Specifications
| Center Wavelength: | Not Specified |
|---|---|
| Output Power: | Not Specified |
Features
- Superior optical performance
- Low beam divergence
- Small spot size possible
- High beam stability & pointing stability
- Fast customization
- Option for stable driver enclosed in housing for ESD protection
- Inhouse design/ simulation, manufacturing & test capabilities
Frequently Asked Questions
Can Anteryon's diode laser modules be customized?
Yes, Anteryon's diode laser modules can be customized for the required fit, form, and function. They also offer fast customization options.
Does Anteryon offer a stable driver enclosed in housing for ESD protection?
Yes, Anteryon offers an option for a stable driver enclosed in housing for ESD protection.
What are the manufacturing capabilities of Anteryon's diode laser modules?
Anteryon's diode laser modules are manufactured and tested in their own factory, with in-house design/simulation, manufacturing, and test capabilities.
What is the beam divergence of Anteryon's diode laser modules?
Anteryon's diode laser modules have a low beam divergence, and their aspherical lenses enable a beam divergence or spot size that is touching the boundaries of the laws of physics.
What is the beam pointing stability of Anteryon's diode laser modules?
Anteryon's diode laser modules have a high beam pointing stability, with just a fraction of the beam divergence or spot size being common.
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