Overview of HL69203HD Laser Diode
HL69203HD is a high-power red laser diode developed by Ushio, emitting at a wavelength of 690 nm with a continuous wave (CW) optical output power of 1.3W. Housed in a 9mm CAN package, it offers efficient heat dissipation and a high wall-plug efficiency of approximately 41%. The diode operates effectively across a temperature range of -10°C to +75°C, making it suitable for various demanding applications.
Key Features:
Optical Output Power: Delivers up to 1.3W (CW) at 690 nm, ensuring robust performance
Wall-Plug Efficiency: Achieves a typical efficiency of 41%, optimizing energy consumption
Thermal Management: The 9mm CAN package design facilitates effective heat dissipation
Beam Characteristics: Operates in multiple transverse modes with TE mode oscillation, suitable for applications requiring diverse beam profiles
Operating Temperature Range: Designed to function between -10°C and +75°C, accommodating various environmental conditions Applications:
Medical and Healthcare: Utilized in photodynamic therapy and photoimmunotherapy treatments
Life Sciences: Serves as a light source in research applications, including spectroscopy and fluorescence studies
Laser Modules: Incorporated into laser modules for industrial and consumer applications requiring high-power red lasers
Overview of HL69203HD Laser Diode
HL69203HD is a high-power red laser diode developed by Ushio, emitting at a wavelength of 690 nm with a continuous wave (CW) optical output power of 1.3W. Housed in a 9mm CAN package, it offers efficient heat dissipation and a high wall-plug efficiency of approximately 41%. The diode operates effectively across a temperature range of -10°C to +75°C, making it suitable for various demanding applications.
Key Features:
- Optical Output Power: Delivers up to 1.3W (CW) at 690 nm, ensuring robust performance
- Wall-Plug Efficiency: Achieves a typical efficiency of 41%, optimizing energy consumption
- Thermal Management: The 9mm CAN package design facilitates effective heat dissipation
- Beam Characteristics: Operates in multiple transverse modes with TE mode oscillation, suitable for applications requiring diverse beam profiles
- Operating Temperature Range: Designed to function between -10°C and +75°C, accommodating various environmental conditions Applications:
- Medical and Healthcare: Utilized in photodynamic therapy and photoimmunotherapy treatments
- Life Sciences: Serves as a light source in research applications, including spectroscopy and fluorescence studies
- Laser Modules: Incorporated into laser modules for industrial and consumer applications requiring high-power red lasers