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4.6um low power benchtop DFB-QCL mid-infrared quantum cascade laser 20mW (TDLAS integrated control module)
4.6um low power benchtop DFB-QCL mid-infrared quantum cascade laser 20mW (TDLAS integrated control module)
QCL4660-4.6um low-power benchtop DFB-QCL mid-infrared quantum cascade laser is a domestically advanced ultra-low-power QCL DFB laser developed by Idealphotonics in the first half of 2018. The tunable range exceeds 100nm, and the output power is greater than 20mw to meet the industrial needs of customers testing gas sensors. Our laser collimated output has stable output power and high temperature and wavelength stability, which is several orders of magnitude higher than the stability of traditional high-power quantum cascade lasers. It provides an excellent test light source for our mid-infrared test customers.
Product features:Low power consumption, high power、 Narrow line width、 Compact structure、 Intelligent software control、 Built-in FPGA
Application area:TDLAS CO high-precision trace analysis、 Mid-infrared test light source、 Mid-infrared device analysis
Unit Price
Please contact customer service for a discounted quote.
Part Number
TDLAS-MIR-QCL-W4600-1-DFB-020
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


图片1.png


Parameter

Parameter

Unit

Indicators



Min.

Typical value

Max.

PN#


QCL4600

Output power 1

mW

20

-

40

Peak operating wavelength 2

um

4.5

4.6

4.7

Spectral width (FWHM)

MHZ

-

3

-

Output side mode suppression ratio (SMSR)

dB

20

-

-

Output isolation 3


-

30

-

Wavelength temperature coefficient

Mrad


0.6


Wavelength current coefficient

mm


0.2


Output power stability (15 minutes) 4

nm/K


±0.5

±1.0

Output power stability (8 hours) 4

nm/A


±1.0

±2.0

Output power adjustable range

%

0

-

100

Output power adjustment mode


Soft control

TEC stability

-

±0.1

±0.2

TEC operating range

0

30

50

Operating voltage

VAC

100

220

240

Electrical power consumption 5

W

-

-

2

Operating temperature

0

-

55

Storage temperature

-20

-

65

Specifications and dimensions

mm

290(L)×108(W)×168(H) mm

Technical Specifications

1. Output power is optional;

2. Peak operating wavelength can be specified;

3. Output power stability test condition is 25 degrees, after 30 minutes of preheating;

4. Maximum power consumption refers to the overall power consumption under extreme working conditions;


5becbfd04a9d3.png


 

Modulation signal linearity test (oscilloscope voltage signal effect diagram)

 5e79b9d598432.jpg

 

 

Algorithm calibration interface

 1.png

 

 

QCL laser characteristic curve (taking 4.6um typical wavelength as an example) Output power characteristic curve

5cb316a78785e.png

 

 

Laser spectrum (CW) laser working at 10℃

5cb31bf5e6681.jpg

 


Absorption spectrum simulation curve

5ed0adc783d79.png

 

Quantum cascade laser output spot

 

The pixel size of the test camera is 5 μm, and the Gaussian fitting spot diameter is 320 μm.



Control software

 5e79b8a85f4d2.png

 

2F signal acquisition interface:

5e79b9beab830.png

 

 

QCL laser power stability test curve

5dc8c0e78c45c.png

 


Ordering Information

MIR-QCL- W □-☆-△-XX

W□□□□: Wavelength

4600: 4600nm

5260: 5260nm

7400: 7400nm

10530: 10530nm

☆: collimator

1:  with

0:  without

△:  laser type

FP: QCL-FP

DFB: QCL-DFB

XX:  output power

001=1mw

010=10mw

020=20mw

100=100mw

1000=1000mw

 

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