Description
The Lumibird conduction-cooled QCW stacked arrays, including models QD-Q1yzz-A, QD-Q1yzz-B, QD-Q1yzz-BS, QD-Q1yzz-G, and QD-Q1yzz-K, represent a pinnacle of laser diode technology. These arrays are meticulously designed to deliver high performance and reliability through a variety of configurations, offering a range of power outputs from 60 W QCW to 400 W QCW per diode bar. The use of advanced technology in design and manufacturing ensures that these arrays provide enhanced efficiency and dependable operation in demanding environments.
Each laser diode bar array is constructed with a focus on minimizing thermal resistance, thanks to optimized packaging and heat-sink designs. The compact and rugged assembly, utilizing AuSn hard solder, facilitates seamless integration with heat exchangers for superior thermal management. This robust construction not only enhances operational stability but also ensures the arrays can withstand challenging conditions, making them ideal for applications in aerospace, industrial, and space sectors.
Furthermore, these laser diode stacks have undergone rigorous environmental testing, including long-life tests and endurance under vacuum, as required for space missions with agencies like NASA and ESA. Their proven track record in such tests underscores their suitability for use in severe conditions where reliability is paramount. Whether for pumping solid-state lasers or serving as illuminators, these stacks provide a versatile and dependable solution.
Conduction-Cooled QCW Laser Diode Stacked Array,
Specifications
| Center Wavelength: | 790 nm |
|---|---|
| Average Power: | 400 W |
| Pitch Between Diode Bars: | 330 to few 1000s µm |
| QCW Optical Power Per Diode Bar: | up to 400 W |
| Operationg Voltage: | < 2 / bar Volt |
| Wavelength: | 790 to 980 nm |
| Pulse Width: | 500 µs |
Features
- QCW Operation: Ensures efficient performance with pulsed operation.
- Power Range: 60 W to 400 W QCW per diode bar, allowing flexibility in applications.
- Wavelength Options: Standard range from 790 nm to 980 nm, suitable for various uses.
- Vacuum Qualified Technology: Designed to perform reliably in demanding environments.
- Low Thermal Resistance Assembly: Optimized packaging and heat-sink for better thermal management.
- Rugged and Reliable: Mechanically robust, shock, and vibration resistant, ideal for aerospace, industrial, and space applications.
- Environmental Testing: Successfully tested for long life and endurance under vacuum, including irradiations, in collaboration with NASA and ESA.
- Customizable Configurations: Options available from 1 to 19 diode bars, with various pitches and emitting areas.
- High Efficiency: Total efficiency of 58% at 808 nm and 65% at 940/980 nm.
- Precision Specifications: Tolerance on wavelength is +/- 3 nm, with tighter tolerances available on demand.
- Advanced Diode Bars: Double or triple quantum well bars available for enhanced performance.
Applications
- Pumping Rods or Slabs Solid-State Lasers: Ideal for enhancing the efficiency of solid-state lasers used in various industries.
- Illuminators: Suitable for high-intensity lighting applications in demanding environments.
- Aerospace Applications: Designed to withstand the rigorous conditions of aerospace environments.
- Industrial Applications: Provides robust and reliable performance for industrial laser systems.
- Space Applications: Qualified for space missions, having passed specific environmental tests such as long life-tests, endurance under vacuum, and irradiation tests.
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