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3291nm Low Power Benchtop ICL-DFB Tunable Continuous Wave Laser (Benchtop Light Source)
3291nm Low Power Benchtop ICL-DFB Tunable Continuous Wave Laser (Benchtop Light Source)
The 3291nm ICL-DFB laser is a tunable continuous wave laser developed by IdealPhotonics. It features narrow linewidth, high power, and low power consumption, making it ideal for gas sensing applications, especially for the detection of hydrocarbons and other related gases. The benchtop ICL-DFB laser module integrates a driver and temperature control module, and it can be controlled via software to adjust the laser's temperature and operating current, ensuring stable performance and accurate measurement values. Additionally, an FPGA is included within the module to facilitate the processing of gas concentration measurements.
Product features:Continuous Wave (CW) 、 Single-mode Spectrum 、 Tunable Light Source 、 Low Power Consumption 、 High-quality Beam 、 Narrow Linewidth 、 Intelligent Software Control 、 Compact Structure and Size
Application area:TDLAS Gas Measurement System Setup 、 Mid-Infrared System Light Source 、 Mid-Infrared Device Analysis
Unit Price
Please contact customer service for a discounted quote.
Part Number
LDC-MIR-ICL-W3291-3-DFB-05
Lead Time
Please contact customer service for lead time.
Stock
Please contact customer service for stock availability.
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General Parameters
Dimensional Drawing

General Parameters

Parameters

Unit

Specifications



Min.

Typ.

Max.



3291nm ICL-DFB

Laser Output Power

mW

0.5

5

8

Peak Operating Wavelength

nm


3291


Spectral Width FWHM

MHz


3


Side Mode Suppression Ratio SMSR

dB


20

30

Wavelength Tuning Range

nm

6

10

25

Wavelength Temperature Coefficient

nm/℃


0.32


Wavelength Current Coefficient

nm/mA


0.06


Output Power Stability for 8h

%


±1

±4

Adjustable Output Power Range

%

0


100

Operating Current

mA

40

80

140

Threshold Current

mA

25

40

80

Operating Voltage

V

7

9

12

Chip Operating Temperature

-20

10

40

Storage Temperature

15

20

65

Specifications and Dimensions

mm

340(L)×240(W)×100(H)

 

System setup diagram

2.1.png

  

 

Software control

1.3.jpg


 

2F signal acquisition interface

1.4.jpg

 

 

Algorithm calibration interface

2.4.png

 

 

Modulation signal linearity test (oscilloscope voltage signal effect diagram)

 2.5.jpg

 

 

Wavelength temperature current curve

2.6.png

 

 


Power curve (15°C)

2.7.jpg

 

 

Power stability (15°C, 80mA)

 2.8.jpg

 

 

Spectral graph

2.9.png

V%FVI5CE_$IW4ZT((A7O8D1.jpg


 2.12.png 

 

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