1510nm DFB Butterfly Fiber Coupled Laser Diode
  • 1510nm DFB Butterfly Fiber Coupled Laser Diode1510nm DFB Butterfly Fiber Coupled Laser Diode
  • 1510nm DFB Butterfly Fiber Coupled Laser Diode1510nm DFB Butterfly Fiber Coupled Laser Diode
  • 1510nm DFB Butterfly Fiber Coupled Laser Diode1510nm DFB Butterfly Fiber Coupled Laser Diode
  • 1510nm DFB Butterfly Fiber Coupled Laser Diode1510nm DFB Butterfly Fiber Coupled Laser Diode

1510nm DFB Butterfly Fiber Coupled Laser Diode

The 1510nm DFB Butterfly Fiber Coupled Laser Diode high performance DFB laser diode is fibre coupled with single mode optical fibre. CW output powers are wavelength dependent and lie between 2mW and 20mW. Provided in a standard 14-pin butterfly mount, these laser diodes have a built in monitor photodiode, Peltier effect thermoelectric cooler, thermistor, and optical isolator. The SMF-28 or PM optical output fibre can be terminated with SC/PC, FC/PC, SC/APC, or FC/APC connectors.

Send Inquiry

Product Description

1. Summary of 1510nm DFB Butterfly Fiber Coupled Laser Diode

The 1510nm DFB Butterfly Fiber Coupled Laser Diode high performance DFB laser diode is fibre coupled with single mode optical fibre. CW output powers are wavelength dependent and lie between 2mW and 20mW. Provided in a standard 14-pin butterfly mount, these laser diodes have a built in monitor photodiode, Peltier effect thermoelectric cooler, thermistor, and optical isolator. The SMF-28 or PM optical output fibre can be terminated with SC/PC, FC/PC, SC/APC, or FC/APC connectors.

The 1510nm DFB Butterfly Fiber Coupled Laser Diode is bare laser diodes without driver and controller. Laser diode in this format are highly susceptible to damage from electrical signals, such as voltage transients, spikes, and static electricity. Therefore, it is important to use suitable power supplies and mounts. Details of compatible drivers, mounts and thermoelectric controllers are in the laser accessories section.

2. Introduction of 1510nm DFB Butterfly Fiber Coupled Laser Diode

The 1510nm DFB Butterfly Fiber Coupled Laser Diode high performance DFB laser diode is fibre coupled with single mode optical fibre. CW output powers are wavelength dependent and lie between 2mW and 20mW. Provided in a standard 14-pin butterfly mount, these laser diodes have a built in monitor photodiode, Peltier effect thermoelectric cooler, thermistor, and optical isolator. The SMF-28 or PM optical output fibre can be terminated with SC/PC, FC/PC, SC/APC, or FC/APC connectors.

The 1510nm DFB Butterfly Fiber Coupled Laser Diode is bare laser diodes without driver and controller. Laser diode in this format are highly susceptible to damage from electrical signals, such as voltage transients, spikes, and static electricity. Therefore, it is important to use suitable power supplies and mounts. Details of compatible drivers, mounts and thermoelectric controllers are in the laser accessories section.

3. Features of 1510nm DFB Butterfly Fiber Coupled Laser Diode

14PIN butterfly Package;

Center wavelength 1510nm;

Output power 10mW or 20mW;

FC/APC or FC/PC fiber coupled connector.

4. Application of 1510nm DFB Butterfly Fiber Coupled Laser Diode

CATV system;

CWDM/DWDM optical communication;

LAN, WAN and metro networks;

CW 1510nm laser source.

5. Electro-Optical Characteristics(T = 25℃) of 1510nm DFB Butterfly Fiber Coupled Laser Diode

Parameter Symbol Condition Min. Typ. Max. Unit
Center Wavelength λc TL=15~35℃ CW 1508 1510 1512 nm
Optical Output Power PO - 10 - - mW
Threshold Current ITH - - 10 35 mA
Slope Efficiency ƞ CW output power 5mW 0.05 0.11 0.2 mW/mA
Operating current Iop PO= 10 mW (CW) - 100 200 mA
Spectral linewidth LW FWHM - 3 - MHz
Laser Forward Voltage VF CW output power 10mW - 1.2 3.0 V
Monitor Dark Current ID - - - 0.1 μA
Bandwidth(@-3dB) BW - - 2.5 - GHz
Side-mode Suppression Ratio SMSR CW 35 40 - dB
Optical Isolation - -10 < TC < +70℃ 30 - - dB
Relative Intensity Noise RIN CW, output power 5mW - -145 - dB
TEC set temperature Ts - 15 - 35
Input Impedance ZIN - 22 25 28 Ω
Thermistor Current ITC - 10 - 100 μA
Thermistor Resistance RTH TL = 25℃ 9.5 10 10.5
TEC Current ITEC TL = 25℃, TC = 70℃ - - 1.5 A
TEC Voltage VTEC TL = 25℃, TC = 70℃ - - 3.5 V
TEC capacity ΔT Tc = 70℃ - - 50
Thermistor temperature - - - - 100
Wavelength Drift (EOL) △λ Tested over
25-year lifetime
- - ±0.1 nm
Wavelength Temperature coefficient Δλ/ΔT TEC temperature
at 15℃ to 35℃
- 0.09 - nm/℃
Wavelength Current coefficient Δλ/ΔΙ - - 0.01 - nm/mA

6. Package drawing&PIN-OUT Definition(Unit:mm) of 1510nm DFB Butterfly Fiber Coupled Laser Diode

Type 1

Type 2

7. Deliver,Shipping And Serving of 1510nm DFB Butterfly Fiber Coupled Laser Diode

All products have been tested before shipping out;

All products have 1-3 years warranty.(After the quality guarantee period began to charge appropriate maintenance service fee.)

We appreciate your business and offer an instant 7 days return policy. (7 days after receiving the items);

If the items you purchase from our store are not of perfected quality, that is they don‘t work electronically to manufacturers specifications, simply return them to us for replacement or refund;

If the items are defective, please notify us within 3 days of delivery;

Any items must be returned in their original condition to qualify for a refund or replacement;

The buyer is responsible for all the shipping cost incurred.

8. FAQ

Q: what wavelength would you like?

A: we have large wavelengths from 1270nm to 1650nm.

Q: What is the requirement for the output power?

A: We have 10mW and 20mW options,we can also customize according to your requirements.

Q: What fiber type would you like?

A: SM fiber or PM fiber.

Hot Tags: 1510nm DFB Butterfly Fiber Coupled Laser Diode, Manufacturers, Suppliers, Wholesale, Factory, Customized, Bulk, China, Made in China, Cheap, Low Price, Quality

Related Category

Send Inquiry

Please Feel free to give your inquiry in the form below. We will reply you in 24 hours.
We use cookies to offer you a better browsing experience, analyze site traffic and personalize content. By using this site, you agree to our use of cookies. Privacy Policy
Reject Accept