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915nm, 370 W Laser Diode - High Power, 200μm Fiber-Coupled Module

  • 915nm, 370W, Multi-Single Emitter Laser Diode Module
  • High Power Laser Diode Warning Label
  • 370W Turn-Key 915nm Laser System

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sku / item#: RLS/915NM-370W
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Key Features
  • 370 Watts CW Output Power
  • 915 nm Center Wavelength
  • 95% power in 0.16 NA
  • High Reliability Multi-Single Emitter Design
  • Manufactured by Xinghan Laser Tech, Fulfilled by Laser Lab Source
  • Sold & Supported in North America by: LaserDiodeControl.com, part of the
    Laser Lab Source Marketplace Group

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Laser Specifications
  • Full Data Sheet Available on Request
  • Output Power: 370 Watts
  • Center Wavelength: 915 nm (+/- 15nm)
  • Fiber Core Diameter: 200 μm
  • Numerical Aperture: 95% Power in 0.16 NA
Preconfigured Turn-Key System
  • Laser Installed in Full-Featured Controller
  • Factory Configured and Calibrated
  • Inquire for Details: Part Number LDX-915NM-370W

Product Overview:

915nm, 370 W Laser Diode - High Power Fiber Coupled Module

This high power 915nm laser diode provides up to 370 Watts of CW optical output power into a 200 micrometer fiber pigtail. Advanced processes for coupling efficiency allows these modules to deliver up to 95% of their output power within 0.16 NA.

These devices are based on a high reliability multi-single emitter design. Their multi-single emitter design provides very good heat dissipation through the package, which leads to excellent thermal performance over a long lifetime.

Custom Turn-Key Solutions Available

The 370 Watt laser is available in a preconfigured, turn-key source solution. The turn-key solution is factory configured, validated, and calibrated, in order to maximize your productivity and reduce your set-up time.

The part number is LDX-915NM-370W. Please inquire for configuration options, pricing, and lead-time.

Proper Handling and Operation of Diode Lasers

Diode lasers are highly susceptible to damage from ESD and from temperatures exceeding their specified safe operating range. The user is advised to use care and proper ESD safety practices when handling them to avoid damage to the laser. A properly rated low noise current source, a low thermal resistance mount and a temperature controller should be used for optimal device performance and reliability.

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