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1470nm DFB Laser, 450mW, Fiber Bragg Grating Stabilized, PM Fiber Pigtail
** Excess Inventory Laser **

  • 1427nm 230mw laser diode image1

sku / item#: RLS/FOL1435R45-857-1470
ships: Currently Unavailable

Key Features
  • 450mW Output Power at 1470nm
  • Fiber Bragg Grating Stabilized
  • Low-profile, 14-Pin Butterfly Package
  • Device Condition: Brand New In-Box, Excess Stock
  • Offered by: Optical Innovations, 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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MODEL RLS/FOL1435R45-857-1470
PRICE $900.00
General Specifications
  • Wavelength: 1470nm
  • CW Output Power (typ): 450mW
  • Forward current: 1600 mA (typ)
  • Forward voltage: 2.5 V
  • Fiber: PM Fiber, Pigtail
  • Refer to PDF Data Sheet for Full Specifications

Product Overview:

1470nm Fitel FOL1435R45-857-1470 450mW Pump DFB Laser, PM Fiber Pigtail Fiber Bragg Grating

The FOL1435R series has been designed for use in a wide variety of optical amplifier, such as EDFA or Raman Amplifier used in optical transmission systems, especially in dense wavelength-division-multiplexing (DWDM) systems. A strained multi-quantum well laser diode chip is integrated with thermo-electric cooler (TEC), thermistor and PIN photodiode in a hermetically sealed 14 pin butterfly package. A 2-lens-system couples a round shape light from the laser chip efficiently to the fiber and enables the output power up to 500 mW. This laser module complies with telecom requirements described in TelcordiaTM GR-468 requirement and manufactured in an ISO9001TM certified production line.

Proper Handling and Operation of Laser Diodes:
Laser diodes 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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