Home > Wavelengths 1310nm-1690nm > AeroDIODE, an ALPhANOV spin-off > RLS/1451nm-Model 1
1451nm DFB Laser Diode, 10mW Single Mode / Single Frequency Emission Profile
- Up To 20mW Pulsed Mode
- Up To 10mW CW Mode
- SMF28 Single-Mode Fiber
$1195.00 sku / item#: RLS/1451nm-Model 1 ships: 3 Weeks
Key Features
- Center Wavelength 1451nm
- Single Mode, Fiber-Coupled Butterfly Package
- 10 mW CW Output Power, 20 mW Pulse Power
- SMF28 Optical Fiber, FC/APC Connector
- Available with AeroDiode's Precision Laser Controllers for Pulse and CW Applications
- Offered by Aerodiode, a Laser Lab Source Marketplace Seller
Sold & Supported in North America by: LaserDiodeSource.com, part of the Laser Lab Source Marketplace Group
Price and Delivery Quote
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Technical Questions for this Product
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MODEL | RLS/1451nm-Model 1 |
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PRICE | $1195.00 |
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Product Overview:
✔ Reduce the risk of damaging your laser diode & save time; this laser is available with its Pre-Configured control & mount module
✔ See Buy-Now button on right for bundled pricing & purchase1451nm DFB Laser, Single-Mode Fiber-Coupled
This high quality single-mode butterfly laser diode can be supplied separately or in conjunction with our high quality CW or Pulsed Laser Diode Drivers.
Our expertise in diode laser technology helps ensures success in your application: spectroscopy, telecommunications, medical, consumer goods, and the newest and leading-edge technological advances.
1451nm Laser Features
The 1451 nm butterfly laser is capable of up to 10 mW CW output power, and 20 mW pulsed output power. The typical emission bandwidth is 0.1 nm, and the laser is coupled to SMF28 single-mode fiber. PM1550 polarization-maintaining fiber is available, inquire for price and delivery details.
Important Notes on Operating Laser Diodes:
Electrical Operation: Operating a laser diode above the maximum ratings shown on the data sheet even for very short periods of time can damage the laser diode or reduce its lifetime. They should be electrically biased with a "laser diode driver" class current supply with low electrical noise and protection against voltage and current surges. Laser diodes are very sensitive to electrostatic discharge (ESD). Proper ESD precautions must be taken.
Mounting and Temperature Control: In order to maintain the lifetime of a laser diode, proper heat management is essential. Due to the design of the laser diode, heat is typically dissipated only through the base plate of the diode‘s package. A proper heat conducting interconnection between the diodes base plate and the heat sink must be maintained. Some devices require the use of a thermo-electric temperature controller (TEC controller) to remove the heat from the laser and stabilize the temperature.
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