1064nm Ultra-Narrow Linewidth Single-Frequency Laser Diode


Center Wavelength 1064nm, Output Optical Power 20mW, FWHM ≤20kHz, FC/APC

Part Number  :  PL-UNL-1064-20-SA
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The 1064 nm ultra-narrow linewidth single-frequency laser is a high-performance semiconductor laser that integrates silicon photonic chip technology, precise optical path design, and advanced packaging processes.

The product features ultra-narrow linewidth, high output power, stable wavelength, low noise, low power consumption, and high reliability.It is a semiconductor laser with outstanding performance.

This product can be used in LiDAR, coherent detection, fiber sensing, biomedical photonics, scientific research equipment, 3D mapping, and other fields, and can also be customized according to customer application requirements.

Optical and electrical parameters (TLD=25℃)

Specifications

Symbol

Condition

Min.

Typ.

Max.

Unit

Threshold Current

Ith

CW


35


mA

Center Wavelength

λC



1064


nm

Output Optical Power

Pf

CW


20


mW

Lorentz Linewidth*

FWHM

CW



20

kHz

Relative Intensity Noise

RIN

≥1kHz


-135


dB/Hz

Side Mode Suppression Ratio

SMSR

CW


60


dB

Polarization Extinction Ratio

PER

CW

20



dB

Optical Isolation

ISO



50


dB

TEC Setpoint Temperature

TTEC

CW

15


45

Operating Temperature

To


-20


60

Operating Humidity

%


5


85

%

*Determination of Lorentz Linewidth by Time-Delay Self-Heterodyne Method 


Absolute Maximum Ratings 

During operation, the environmental conditions and parameter settings must not exceed the following absolute maximum values; otherwise, it may result in degraded performance, reduced product lifetime, or permanent device damage. Any product issues arising from such conditions are not covered under warranty.  

Specifications

Symbol

Condition

Min.

Typ.

Max.

Unit

Storage Temperature

TS


-40


85

LD Forward Voltage

VLD



1.6

1.8

V

LD Forward Current

ILD




300

mA

TEC Current

ITEC




1.5

A

TEC Voltage

VTEC




3

V


Typical Lorentz linewidth (14 kHz)

1064UNL1.png



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