OL(S) Series, Micro Channel Cooling, Housed Vertical Diode Stacks

Oriental-Laser (Beijing) Technology Co., Ltd.

Specifications

Center Wavelength: 0.808 um
Output Power: 40000 mW
Operation Mode: CW
Power Per Sub-mounts: 40 W
Central Wavelength³ At 25℃: 808 ±3 nm
Number Of Sub-mounts In One Stack²: 24 to 50
Typical Pitch Per Bar: 1.8 mm
Fast Axis Divergence (90%): <70 or FAC <1 degrees
Slow Axis Divergence (90%): <10 degrees
Spectral Width (FWHM): <3 nm
Operating Current: <40 A
Operating Voltage Per Bar: <2 V
Expected Lifetime: 10000 hours
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Features

  • Microchannel Cooling Technology: Utilizes advanced microchannel cooling for efficient heat dissipation.
  • Sealed Structure: Fully sealed against dust and water condensation for enhanced durability.
  • Customizable Bar Configuration: Up to 64 bars vertically, with other quantities available upon request.
  • High Optical Output Power: Continuous optical output power ranging from 960W to 3000W per single device.
  • Powerful Single Bar Output: Single bar output power up to 500W, with maximum power of a single device reaching up to 25KW.
  • Wide Range of Models: Various models available to suit different power and duty cycle requirements, including CW and QCW operation modes.
  • Central Wavelength: 808±3 nm, with rainbow wavelengths selectable from 792 nm to 814 nm upon request.
  • Efficient Cooling Requirements: Requires a flow rate of 1.5 L/min with deionized water, ensuring optimal performance.
  • Long Lifetime: Expected lifetime of 10,000 hours or 10⁹ shots, providing reliable and long-lasting performance.
  • Customizable Structural Options: Based on OL(S)-24 and OL(S)-50 structural designs, with customized options available for specific needs.

Applications

  • Medical Applications: The diode stacks are suitable for various medical laser systems that require high precision and reliability.
  • Industrial Applications: Ideal for materials processing, including cutting, welding, and engraving due to their high power output and durability.
  • Scientific Research: Used in laboratories for experiments requiring consistent and precise optical power.
  • Defense and Aerospace: Applicable in systems needing robust and reliable laser sources for targeting and communication.
  • Telecommunications: Utilized in fiber optic communication systems for efficient signal transmission.
  • Entertainment and Display: Suitable for laser shows and projection systems requiring high brightness and color precision.