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USHIO HL40033MG 405nm, 1000mW Laser Diode

  • USHIO 405nm 1000mW TO Can Laser Main Image
  • USHIO 405nm 1000mW TO Can Laser Bulk
  • USHIO 405nm 1000mW TO Can Laser Pinout
  • USHIO 405nm 1000mW TO Can Laser Output Power
  • USHIO 405nm 1000mW TO Can Laser Forward Voltage

$652.30   ships: Inquire | item#: RLS/HL40033G

Key Features
  • Center Wavelength (typical): 405 nm
  • CW Optical Output Power: 1000 mW
  • Operating Current: 1000 mA (typ)
  • Operating Voltage: 5 V Max
  • 9mm TO-can Package
  • Offered by: OptLasers, 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/HL40033G
PRICE $652.30
OPTICAL
  • Center Wavelength: 405 nm
  • Optical output power: 1100 mW (max)
  • Beam divergence parallel to the junction (typical): 5° (min) - 25° (max)
  • Lasing wavelength: 400 nm (min) - 410 nm (max)
  • Multi Transverse Mode Oscillation
Electrical Specifications, Typical
  • Threshold Current: 320 mA
  • Operating Current: 1000 mA
  • Operating Voltage: 5.0 V
PACKAGING
  • 9.0 mm TO-can
  • No internal monitor diode
MAXIMUM RATINGS
  • LD Reverse Voltage: 2 V
  • Operating Temperature: 0 to 30°C
  • Storage Temperature: -40 to 85°C

Product Overview:

USHIO 500mW, 405nm Laser Diode Overview:

These 405nm blue laser diodes manufactured by USHIO are rated for up to 1000mW of optical output power. These devices are multi-mode and are offered in an industry standard 9 mm TO-can package with no monitor PD. These lasers feature low operating current levels of 1000 mA and less than 5 volts of forward voltage required. Gallium Nitride laser diodes at 405nm emit a violet/blue wavelength and are used in many diverse applications.

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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