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1556.3nm DFB Laser Diode, 10mW, 13-Pin Butterfly EML Package
- Single-Mode Fiber-Coupled
- SC/PC Connector
* Excess Inventory DFB *

  • 1556nm 10mw laser diode
  • 1556nm 10mw pinout
  • 1556nm 10mw dimensions

sku / item#: RLS/X-E2580A
ships: Request a Quote for Current Ship Date

Key Features
  • 1556.3nm, 10 mW Single-Mode Output
  • EML 13-PIN Butterfly Package, with Internal TEC
  • Integrated Electroabsorptive Modulator
  • Product 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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PRICE $650.00
General Specifications
  • Wavelength: 1556.3 nm
  • CW Output Power: 10 mW
  • Laser Forward Current: 150 mA (typ)
  • Fiber: Single Mode, SC/PC Connector
  • RF Signal Input: Gilbert GPO Connector
  • RF Input Impedance 50 Ω.
  • Input Voltage (Vin, Peak to Peak): 0.5 - 1.0 V
  • Refer to PDF Data Sheet for Full Specifications

Product Overview:

Lucent 1556.3 nm, 10 mW, 10 GB/s EML Laser

The E2560 (without integral driver IC) and E2580 (with integral driver IC) are devices for 10 Gbits/s DWDM or TDM transmission applications, which integrate a CW laser with an electroabsorptive modulator in the same semiconductor chip, and are an extension of Lucent Technologies Microelectronics Groups’ existing E2500 series of devices. Both types use a small-profile Gilbert GPO connector to handle the RF signal. The device is typically coupled with a number of erbium-doped fiber amplifiers, such as Lucent Technologies' 1724-series, in order to ensure that sufficient optical power reaches the receiver. These devices can replace external modulators which are often bulkier, more expensive, and require more complex drive electronics than the EML. Both E2560 and E2580 are available for transmission distances of 40 km and 80 km. The package also contains a thermoelectric cooler, thermistor, rear facet monitor photodiode, and an optical isolator.

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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