8-10kW High Power Single Mode Fiber Laser
  • Excellent Beam Quality

    The master laser adopts a single-stage MOPA amplification structure, and its oscillation stage generates high-quality seed beam that is injected to power amplification stage, achieving better beam quality under high power output.

  • High Brightness and Low Quantum Loss

    By adopting 1018nm fiber laser tandem pumping technology, the output power of the fiber laser can be improved, while the injection pump power can be higher, and the thermal effect of the fiber and devices can be lower.

  • Self-Development and Production

    Based on the self-developed optical fiber devices and optical fiber laser modules, the self-development and production of core devices and processes are fully realized.

  • Excellent Environmental Adaptability and Work Reliability

    The all-fiberized optical path greatly improves the environmental adaptability and working reliability of the laser.

  • High Integration and Compact Structure

    Modular design plus self-developed laser passive components makes the laser structure more compact and highly integrated.

Product Description

The 8-10kW single-mode fiber laser of STR Laser is based on its independently developed pump combining technology and adopts the single-stage MOPA structure, which make it possess excellent beam quality under high power output, featuring high brightness, small quantum loss, good environmental adaptability, high working reliability, compact structure and small size, and have bright application prospects in the industrial and military security fields.

Product Features
Excellent Beam Quality

The master laser adopts a single-stage MOPA amplification structure, and its oscillation stage generates high-quality seed beam that is injected to power amplification stage, achieving better beam quality under high power output.

High Brightness and Low Quantum Loss

By adopting 1018nm fiber laser tandem pumping technology, the output power of the fiber laser can be improved, while the injection pump power can be higher, and the thermal effect of the fiber and devices can be lower.

Self-Development and Production

Based on the self-developed optical fiber devices and optical fiber laser modules, the self-development and production of core devices and processes are fully realized.

Excellent Environmental Adaptability and Work Reliability

The all-fiberized optical path greatly improves the environmental adaptability and working reliability of the laser.

High Integration and Compact Structure

Modular design plus self-developed laser passive components makes the laser structure more compact and highly integrated.

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Product parameters

8kw Single Mode Fiber Laser

OpticalCharacteristics

Unit

Symbol

Test Condition

Min

Typical Value

Max

Remarks

Operating mode



Continuous


Output power

kW

P

I=100%

8




Center wavelength

nm

λ



1070



Spectral width

nm

Δλ

3dB


5



Output power instability

%





5


Red light power

mW



0.3


1.0


Output method



QBH


Beam quality





2


Size(Excluding water distribution pipeline)

mm


600*500*682.5


Weight

Kg





165


Working voltage

VDC


190-300VDC


Input power consumption

kW





28


Operating humidity range

%



10


85


Operating temperature range



-20


60

Customizable

Storage temperature range



-40


70

Customizable



10kw Single Mode Fiber Laser

OpticalCharacteristics

Unit

Symbol

Test Condition

Min

Typical Value

Max

Remarks

Operating mode



Continuous


Output power

kW

P

I=100%

10




Center wavelength

nm

λ



1070



Spectral width

nm

Δλ

3dB


5



Output power instability

%





5


Red light power

mW



0.3


1.0


Output method



QBH


Beam quality





2


Size(Excluding water distribution pipeline)

mm


600*500*682.5


Weight

Kg





165


Working voltage

VDC


190-300VDC


Input power consumption

kW





35


Operating humidity range

%



10


85


Operating temperature range



-20


60

Customizable

Storage temperature range



-40


70

Customizable


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