Pump Laser Diode Cooler
Pump Laser Diode Cooler

Pump Laser Diode Cooler

Precision Thermal Coolers for Pump Laser Diode Modules
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Precision Thermal Coolers for Pump Laser Diode Modules

 

Key Features

 

  • Efficient Heat Removal: Stabilizes wavelength and power output.
  • Optimized CTE Behavior: Minimizes thermal stress on laser diode chips.
  • High-Precision Cavities & Steps: Supports precise optical alignment.
  • Material Stability: Maintains properties under rapid thermal changes.
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  • Near-Net Shape PM Processing: Reduces machining and supports complex geometries.
  • Bonding/Plating Compatibility: AuSn soldering and Au/Ni finishes.
  • PM vs. Traditional Fabrication: Achieves intricate shapes, uniform density, and reduces waste compared to milling or die-casting.
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Overview

 

NEWLIFE Pump Laser Diode Coolers provide precision thermal management for high-power pump laser diodes, fiber-lasers, and photonics modules. Designed with W–Cu alloys, high-purity copper, and composite PM materials, these coolers offer high thermal conductivity, low thermal deformation, and precise dimensional stability, critical for maintaining wavelength, power output, and optical coupling.

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Produced via Powder Metallurgy (PM), infiltration, and precision CNC machining, NEWLIFE coolers utilize near-net-shape capabilities to create stepped bases, micro-cavities, and LD mounting geometries that are difficult or costly to fabricate using traditional machining or casting. Proprietary NEWLIFE powders provide uniform density, tailored CTE, and long-term mechanical stability, ensuring performance under rapid thermal cycling and high-power operation.

 

Compared to conventional copper machining, PM-based W–Cu and copper coolers deliver superior thermal spreading, minimized warpage, and the flexibility to integrate optical mounting features while reducing material waste and post-processing.

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Applications

 

  • Pump laser diodes (fiber lasers, solid-state lasers)
  • High-power LD arrays and submounts
  • Photonics cooling platforms for industrial, medical, and telecom lasers
  • Precision optical assemblies requiring thermal and dimensional stability
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