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505nm, 10mW, Fiber-Coupled Laser Diode DIL Package

  • 505nm 10mW DIL Laser Diode
  • 505nm laser diode LIV current power
  • 505nm laser diode spectrum
  • 505nm DIL laser diode pinout
  • 505nm Coax Laser Diode Package

sku / item#: LDS-505-FP-10-DIL
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Key Features
  • Fiber-Coupled Fabry-Perot Laser Diode
  • Up to 10mW Output Power
  • Mini-DIL Package with Internal TEC and Thermistor
  • Single-Mode Fiber, FC/UPC Connector
  • Sold and Supported by LaserDiodeSource.com, a division of Laser Lab Source

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PRICE $765.00
optical specifications (Typcial @ 25 °C)
  • Wavelength: 505 nm (min 500 nm / max 515 nm)
  • Spectral width: 1 nm
  • Slope efficiency: 0.17 mW/mA
  • Wavelength-Temperature Coefficient: 0.03 nm/°C
  • Refer to Datasheet for Additional Specifications
Electrical Specifications
  • Threshold Current: 70 mA
  • Operating Current: 130 mA
  • Operating Voltage: 6 V
Optical Fiber Specifications
  • Fiber: Nufern S405-XP, 0.5m long
  • FC/UPC Connector (FC/PC also available)
  • Other Fiber and Connector Types Available; Inquire
General Specifications
  • Operating Temperature Range: -40℃ – 60℃
  • Storage Temperature Range: -20℃ – 60℃
  • Lead Soldering Temperature: 260ºC, max 5 seconds
Refer to Datasheet for Additional Specifications

Product Overview:

505nm, 10mW Fiber Coupled Laser Diode Overview

LDS-505-FP-10-DIL is a Fabry-Perot laser diode coupled to single-Mode Nufern optical fiber. This laser is mounted in a Mini-DIL Package with internal TEC and thermistor.

The laser comes standard with single-mode Nufern S405-XP optical fiber, terminated with an FC/UPC connector; please refer to the data sheet or contact us for information on fiber connector options.

The laser is also available in a coaxial fiber-coupled package. Other connector and fiber options are available; refer to the data sheet for additional details.

Proper Handling and Operation of Diode Lasers

Diode lasers are highly susceptible to damage from ESD and from temperatures exceeding their specified safe operating range. The user is advised to use care and proper ESD safety practices when handling them to avoid damage to the laser. A properly rated low noise current source, a low thermal resistance mount and a temperature controller should be used for optimal device performance and reliability.

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