Products > Fiber Coupled > Pearl™ Modules
PEARL™ MATERIAL PROCESSING SERIES
The Pearl Materials Processing Series is optimized to meet the demanding industrial requirements of continuous performance with ease of integration.
nLIGHT’s proprietary single-emitter integration technology enables industry-leading efficiency and reliability, thus minimizing system footprint and maximizing reliability.
These pump lasers use a revolutionary fiber technology, PowerCore™, which eliminates mode sensitive to fiber motion, which maximizes consistency of light on part performance.
- Patented nXLT™ diode protection for extended life
- Low-current, fault-tolerant architecture
- Industry-leading wall-plug efficiency >50%
- PowerCore™ mode-stable fiber
- Plug and play compatibility with OptoTools™ DL system
- Electrically isolated housing
- Plastic Welding
- Soldering
- ACF Bonding
- PV Annealing
- FPD Annealing
- Marking
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| | P10 | P16 | | Optical | | Wavelength | nm | 810 / 9xx | | Wavelength tolerance | nm | ± 10 | | CW output power | W | 40 / 60 | 80 / 110 | | Fiber core diameter | µm | 400-600 / 200-600 | | Beam divergence | NA1 | 0.17 | 0.18 | | Slope efficiency | W / A | 8.5 | 14.8 | | Pilot Beam (640nm) | mW | 1 | | Electrical | | Power conversion efficiency | % | 50 / 58 | | Threshold current | A | 1.0 / 0.6 | | Operating current | A | 5.8 | 7.0 | | Operating voltage | V | 14.5 | 23.5 | | Series resistance | Ω | 0.2 | 0.4 | | Pilot Beam Drive Requirements | | 1.0A and 2.2V | | Mechanical | | Storage temperature range2 | °C | -40 to +80 | | Mass | g | 100 | 180 | | Thermal | | Thermal resistance3 | °C / W | 0.4 | 0.3 | | Operating temperature | °C | +20 to +35 | | Wavelength temperature coefficient4 | nm / °C | 0.28 / 0.33 | | Accessories | Line Generator Optic Modules Collimator and Spot Generator Optic Modules Monitor Photo Diode PPS™ OEM Diode Controller DL System with DiodeSafe™ protection | 1 Numerical aperture (NA) is the sine of the half-angle encircling 90% of the optical energy from the fiber. 2 A non-condensing environment is required for storage and operation. 3 Thermal resistance is the diode junction temperature shift per incremental Watt of heat load. 4 The wavelength temperature coefficient is the wavelength shift per °C change at the diode junction. 
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