High-Power 808nm / 1064nm COB Module Solutions for NIR Optical Systems
We provide 808nm / 1064nm COB modules, dual-wavelength COB, Laser Stack Modules, Nd:YAG diode pump modules and custom NIR source support for handheld / desktop hair removal systems and OEM optical modules.
808nm single-chip options can be discussed in 8W or 60W power classes. COB total power is configured by chip class and quantity. Available COB directions include 808nm 66W, 1064nm 60W and 808nm + 1064nm dual-wavelength COB.
High-power 808nm and 1064nm COB module platform for handheld and desktop NIR optical source systems.
COB MODULE PLATFORM
Module Design Around High-Power COB, Optical Output and Thermal Path
A high-power NIR COB module is not only about chip power. It requires system-level matching between chip power class, COB configuration, thermal path, optical output, drive condition, cooling structure and final device integration.
808nm and 1064nm COB modules can support laser hair removal devices and high-power NIR module projects. 808nm fits common diode hair removal module designs, while 1064nm supports longer-wavelength NIR module discussions. Dual-wavelength COB is available by project.
PRODUCT DIRECTIONS
808nm, 1064nm and Dual-Wavelength High-Power COB Module Directions
This page focuses on high-power 808nm / 1064nm COB modules, with extended discussions around dual-wavelength COB, Laser Stack, Nd:YAG pump modules and custom NIR optical modules.
808nm COB1
808nm High-Power COB Module
808nm is a core direction for high-power NIR COB modules. 808nm single-chip options can be discussed in 8W or 60W power classes, while total COB output power can be configured by chip quantity, chip power class and package structure. Available 808nm COB direction includes a 66W module.
808NM / 8W-60W CHIP / CUSTOM COB POWER
1064nm COB2
1064nm High-Power COB Module
1064nm COB modules can support longer-wavelength NIR source projects. Available 1064nm COB direction includes a 60W module, with further discussion based on optical power, package size, thermal path and system structure.
1064NM / 60W COB / NIR MODULE
Dual-Wavelength3
808nm + 1064nm Dual-Wavelength COB
808nm + 1064nm dual-wavelength COB can be discussed for laser hair removal devices, high-power NIR modules and OEM optical source platforms. Final design should be confirmed according to chip quantity, thermal management, drive method and optical structure.
808NM + 1064NM / DUAL-WAVELENGTH COB
Hair Removal Module4
Handheld and Desktop Hair Removal Module
808nm / 1064nm high-power COB modules are suitable for handheld and desktop laser hair removal device directions. Project discussions can include handpiece structure, sapphire window, cooling method, output power and laser safety documentation path.
HANDHELD / DESKTOP / HAIR REMOVAL
Pump Source5
Laser Stack and Nd:YAG Pump Modules
In addition to VCSEL / COB modules, selected EEL, Laser Stack Modules and Nd:YAG diode pump laser modules can be discussed for high-power projects requiring edge-emitting or pump source directions.
LASER STACK / ND:YAG PUMP / EEL
Custom Module6
Custom NIR Optical Module
Custom NIR optical modules can be discussed according to customer projects, including COB packaging, beam collimation, diffuser, output window, coupling structure, thermal path and module form-factor integration.
CUSTOM NIR MODULE / OPTICS / THERMAL
EVALUATION & MODULE SUPPORT
High-Power COB Module Evaluation and Custom Development Support
High-power COB projects should first confirm optical power, wavelength, chip power class, chip quantity, operating mode, package size, cooling method, optical structure and application direction before sample, module or custom development discussion.
For 808nm / 1064nm COB, dual-wavelength COB, Laser Stack or Nd:YAG pump module projects, we can discuss samples, prototypes, output power, package size, operating mode, beam angle, cooling method and module-level integration according to the customer’s target product.
NEXT STEP
Ready to Discuss a High-Power NIR or COB Module Project?
Send us your target wavelength, target total power, chip power class, chip quantity, single- or dual-wavelength requirement, COB or Laser Stack direction, duty cycle, cooling method, package size, beam angle, collimation or diffuser needs, application direction and current project stage.