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1311nm DFB Laser, 13mW Output, Butterfly Package
- SM Fiber Pigtail with No Connector
- Direct Modulated
** Excess Inventory **

  • 1311nm 13mw laser diode
  • 1311nm 13mw pinout
  • 1311nm 13mw dimensions

sku / item#: RLS/1611A-113-1311nm
ships: In-Stock (USA) -- Quantity Available: 2

Key Features
  • 1311nm DFB Laser Diode with 13mW Output Power; Single Frequency Emission Profile
  • SM Fiber Pigtail, No Connector, shorter pin lengths - not long enought for ILX 4984 butterfly mount
  • 14-Pin Butterfly Package with TE Cooler, Monitor PD
  • Product Condition: 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/1611A-113-1311nm
PRICE $530.00
  • Wavelength: 1311 nm
  • Output Power: 13mW
  • Forward Current: 65 mA (typ)
  • Type: DFB Laser, Integrated Optical Isolator
  • Fiber: Single-Mode, No Connector
  • Refer to Datasheet for Additional Specifications

Product Overview:

Agere 1611A-113, 1311nm DFB Laser,

The A1611A/B 13xx nm DFB laser modules are designed for broadcast and narrowcast CATV applications. The modules are highly linear, OC-48 pinout-compatible devices available with standard power output up to 13mW.

The A1611A/B module is optimized to assist OEM customers with 13xx nm CATV transmitter design. Its range of standard-to-enhanced performance specifications and available output power ensures the flexibility a CATV system designer needs to accurately and cost-effectively address the requirements of any forward-path application.

Proper Handling and Operation of DFB Lasers:

DFB 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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