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1064nm, 600mW Wavelength Stabilized Laser Diode, Narrow Linewidth <0.1nm
- Terminated with FC/PC Connector
- Industry Standard Type 1 Pinout

  • 1064nm Laser Diode
  • 1064nm laser pins
  • LIV Curve of 1064nm Raman Laser
  • 1064nm laser configuration

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sku / item#: RLS/1064NM-600MW
ships: 10 days

Key Features
  • Wavelength Stabilized 1064nm Laser Diode for Raman Spectroscopy Applications
  • Volume Bragg Grating Stabilized
  • Narrow Spectral Width: <0.1nm
  • Wavelength: 1064nm ±0.5nm
  • Butterfly Package with Internal Cooler, Thermistor and Photodiode
  • Fiber core: 105 μm, 0.22NA
  • Fiber Connector: FC/PC
  • Multimode
  • Offered by RealLight Technology Company, a Laser Lab Source Marketplace Seller
  • Sold & Supported in North America by: LaserDiodeSource.com, part of the
    Laser Lab Source Marketplace Group

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Laser Specifications
  • CW Output Power (min): 600 mW
  • Center Wavelength: 1064 nm (±0.5 nm)
  • Spectral Width: < 0.1 nm
  • Temperature Tuning Coefficient: 0.01 nm/℃
  • Current Tuning Coefficient: 0.05 nm/A
  • Side Mode Suppression Ratio (FWHM): > 40 dB
  • Slope Efficiency: 0.7 W/A
Fiber and Connector
  • Fiber Core Diameter: 105 μm
  • Numerical Aperture: 0.22 NA
  • Connector: FC/UPC (default)
  • Connector: SMA905 (on request)
  • Fiber Length: 50 cm
Electrical Specifications
  • Threshold Current: 0.2 A
  • Operating Current: 1.5 A
  • Operating Voltage: 1.8 V
  • TEC max Current: 2.2 A
  • TEC max Voltage: 8.7 V
  • Monitor Photodiode Range: 2000 μA
  • Thermistor: 10 (±5%) kΩ (@25℃)
Primary Applications
  • Raman Spectroscopy
  • Analytical Instruments
  • Biological Research

Product Overview:

1064nm, 600mW Wavelength Stabilized Laser Diode

These 1064nm, 600mW wavelength stabilized laser diodes provide high output power ex-fiber and a narrow linewidth. They are wavelength stabilized by a volume Bragg grating. These laser diodes are optimized for Raman spectroscopy. The laser is packaged in an industry standard 14-pin butterfly package and includes a high power internal TEC for temperature control and laser output stability.

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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