CW Semiconductor Lasers

Customized Laser Module  (405nm | 50mW)

Customized Laser Module (405nm | 50mW)

Our laser modules are tailored to your unique needs, offering a versatile spectrum of wavelengths from vivid red, green, and blue to even invisible light. Catering to a vast array of applications - be it ranging, ...

Sold by: LECC Technology Co., Ltd. Ships from: Taiwan
Specifications
Center Wavelength: 0.405 um
Output Power: 50 mW
CW Optical Power: 50 mW
Operating Current: 200 mA
Operating Voltage: 5 V
M15 EEL Laser 405nm 150mW - AD40F00002

M15 EEL Laser 405nm 150mW - AD40F00002

The M15 EEL Laser (405nm, 150mW) is a state-of-the-art laser device designed for precision and versatility. It incorporates an APC circuit that ensures unwavering light output power, setting it apart as a premium ...

Sold by: LECC Technology Co., Ltd. Ships from: Taiwan
Specifications
Center Wavelength: 0.405 um
Output Power: 150 mW
CW Optical Power: 150 mW
Operating Current: 120 mA
Monitor Current (Iop=120mA): 0.85 mA
M15 EEL Laser 638nm 100mW - AD63F00001

M15 EEL Laser 638nm 100mW - AD63F00001

The M15 EEL Laser (638nm, 100mW) is a state-of-the-art laser device designed for precision and versatility. It incorporates an APC circuit that ensures unwavering light output power, setting it apart as a premium ...

Sold by: LECC Technology Co., Ltd. Ships from: Taiwan
Specifications
Center Wavelength: 0.638 um
Output Power: 100 mW
CW Optical Power: 100 mW
Operating Current: 200 mA
Operating Voltage: 5 V
M15 EEL 450nm Blue Laser Module 0.75mW - AO45010001

M15 EEL 450nm Blue Laser Module 0.75mW - AO45010001

M15 EEL 450nm Blue Laser Module – 0.75mW Blue Laser for Precision Applications The M15 EEL 450nm Blue Laser Module (0.75mW) is a high-performance, precision-engineered blue laser designed for exceptional stability ...

Sold by: LECC Technology Co., Ltd. Ships from: Taiwan
Specifications
Center Wavelength: 0.45 um
Output Power: 0.75 mW
CW Optical Power: 0.75 mW
Operating Current: 50 mA
Operating Voltage: 24 V
M15 EEL 661 nm Laser Module – 50-80 mW Visible Red Diode with APC & Adjustable Focus

M15 EEL 661 nm Laser Module – 50-80 mW Visible Red Diode with APC & Adjustable Focus

The M15 EEL 661 nm Laser Module (50-80 mW) is a high-precision, visible-red semiconductor laser designed for demanding industrial, measurement and alignment applications. Equipped with a built-in Automatic Power ...

Sold by: LECC Technology Co., Ltd. Ships from: Taiwan
Specifications
Center Wavelength: 0.661 um
Output Power: 50 mW
CW Optical Power: 50-80 mW
Operating Current: 45-100 mA
Operating Voltage: 12 V
M12 EEL 658nm Laser Module 25mW - AD65280002

M12 EEL 658nm Laser Module 25mW - AD65280002

Discover the unparalleled performance of our 658nm diode laser module, EEL M12. Renowned for its superior heat dissipation, this module is powered by an advanced APC circuit ensuring a consistently stable optical ...

Sold by: LECC Technology Co., Ltd. Ships from: Taiwan
Specifications
Center Wavelength: 0.658 um
Output Power: 25 mW
CW Optical Power: 25 mW
Operating Current: 140 mA
Operating Voltage: 5 V
Blue CW Diode Laser Module 450nm 3W – M12 EEL Package

Blue CW Diode Laser Module 450nm 3W – M12 EEL Package

Discover the unparalleled performance of our Blue CW Diode Laser Module 450nm 3W. Renowned for its superior heat dissipation, this module is powered by an advanced APC circuit ensuring a consistently stable optical ...

Sold by: LECC Technology Co., Ltd. Ships from: Taiwan
Specifications
Center Wavelength: 0.45 um
Output Power: 3000 mW
CW Optical Power: 3 W
Operating Current: 2000 mA
Operating Voltage: 12 V
M18 EEL 450nm Diode Laser Module 0 to 70mW

M18 EEL 450nm Diode Laser Module 0 to 70mW

Laser Module M18 AP45600001 offers unparalleled flexibility and precision, supported by APC and TEC temperature control feedback circuits. With this module, users can effortlessly adjust the focal length, power, ...

Sold by: LECC Technology Co., Ltd. Ships from: Taiwan
Specifications
Center Wavelength: 0.45 um
Output Power: 70 mW
CW Optical Power: 0 to 70 mW
Operating Voltage: 6 V
Wavelength At Peak Emission: 450 nm
SMD Laser Diode 650nm | 3.5mW - LS65050001 (Pack of 20)

SMD Laser Diode 650nm | 3.5mW - LS65050001 (Pack of 20)

The SMD Laser Diode LS65050001 is a compact and efficient solution for various applications, offering a peak wavelength of 650nm and an optical power output of 3.5mW. Measuring just 3.4x3.3mm, this laser diode is ...

Sold by: LECC Technology Co., Ltd. Ships from: Taiwan
Specifications
Center Wavelength: 0.65 um
Output Power: 3.5 mW
Threshold Current: 12 mW
Operating Voltage: 2.2 V
Slope Efficiency: 1 mW/mA
EEL M12 650nm Laser Diode AL52010001

EEL M12 650nm Laser Diode AL52010001

The EEL M12 650nm Laser Diode is engineered for high precision and stable optical power output, featuring excellent heat dissipation and an integrated APC (Automatic Power Control) circuit. Its aluminum anode ...

Sold by: LECC Technology Co., Ltd. Ships from: Taiwan
Specifications
Center Wavelength: 0.65 um
Output Power: 1 mW
CW Optical Power: 1 mW
Operating Current: 200 mA
Operating Voltage: 3 V
EP1550-NLW-B-100: 1550nm Narrow Linewidth Laser Diode

REP1550-NLW-B: 1550nm Stabilized Narrow-Linewidth Laser Diode

The REP series includes high-performance, tunable, single-frequency (DFB-like) diode lasers and Fabry-Perot laser diodes in wavelengths from 1270nm thru 2350nm, designed to address challenges in Gas Sensing, LIDAR, ...

Sold by: RPMC Lasers, Inc. Ships from: United States
Specifications
Center Wavelength: 1.55 um
Output Power: 5 mW
Optical Linewidth: 100 kHz
Wavelength Tolerance: +/- 2 nm
Side Mode Suppression Ratio (SMSR): 40 dB
Gas Detection DFB Butterfly Device-SGNLD-XXXX-XX-XX-FA-14-XX-X

Gas Detection DFB Butterfly Device-SGNLD-XXXX-XX-XX-FA-14-XX-X

Gas Detection DFB Butterfly Device Introducing the Gas Detection DFB Butterfly Device, a premium quality component designed to enhance the performance of optical transmitter systems. This device features a ...

Specifications
Center Wavelength: 1550 um
Output Power: 60 mW
Threshold Current: 55 mA
Center Wavelength: λc nm
Side-mode Suppression Ratio: 40 dB
1310nm DFB/SLED Butterfly Device

1310nm DFB/SLED Butterfly Device

The SLEDButterflyDevice SGSLD-1310-XX-XXX-XX-X is a cutting-edge solution designed to enhance optical performance in various technological applications. Engineered with precision, this device is housed in a ...

Specifications
Center Wavelength: 1.31 um
Output Power: 3 mW
Forward Voltage: 1.2 V
Center Wavelength: 1290 - 1330 nm
Bandwidth FWHM: 30 - 40 nm
850nm DFB/SLED Butterfly Device

850nm DFB/SLED Butterfly Device

The SG FusionChip SLED Butterfly Device, model SGSLD-850-XX-XX-XX-X, stands as a testament to advanced optical technology, offering a compact yet powerful solution for a variety of optical applications. This device ...

Specifications
Center Wavelength: 0.85 um
Output Power: 12 mW
Forward Voltage: 1.9 V
Center Wavelength: 830 - 870 nm
Bandwidth FWHM: 15 - 19 nm
Narrow Linewidth DFB Butterfly Laser

Narrow Linewidth DFB Butterfly Laser

The RZNLD-1550-10-BP-00-14-06-01 is a high-performance MQW DFB laser diode housed in a butterfly package designed for optical transmitter systems that require high power and stability. Featuring a built-in ...

Sold by: CSRayzer Optical Technology Ships from: China
Specifications
Center Wavelength: 1.31 um
Output Power: 50 mW
Operating Case Temperature: -20 - +70 degC
Storage Temperature: -40 - +85 degC
Reverse Voltage: 2 V

Did You Know?

The first useful semiconductor laser was made by R.N. Hall in 1962 which was composed of GaAs materials that emitted in near infrared at 0.8 µm. The semiconductor laser is similar to transistor, has the appearance of a LED but the output beam has the characteristics of a laser. The application that was the main driving force in the development of semiconductor lasers was in the field of long distance communications but at this moment the use of this laser in compact disc players constitutes their largest single market. Using semiconductor laser gives an advantage of low power consumption requirements.

Frequently Asked Questions

Facet coating is a technique used to reduce the reflectivity of the laser cavity's end facets, which can cause optical feedback and degrade the laser's performance. By applying a thin layer of anti-reflective coating to the facets, the reflectivity can be minimized, resulting in higher output powers, better beam quality, and improved reliability.

Continuous-Wave Semiconductor Lasers: Steady Light for Precision Applications

Continuous-wave (CW) semiconductor lasers are pivotal in various industries, offering a stable and uninterrupted laser beam ideal for applications requiring consistent illumination. Unlike pulsed lasers that emit light in bursts, CW lasers provide a constant output, making them indispensable in fields such as telecommunications, medical diagnostics, and industrial manufacturing.

Understanding CW Semiconductor Lasers

At their core, CW semiconductor lasers operate by maintaining a continuous flow of electrical current through a semiconductor material, typically composed of compounds like gallium arsenide (GaAs) or indium phosphide (InP). This process stimulates the emission of photons, resulting in a steady laser beam. The design ensures minimal fluctuations in output power, which is crucial for applications demanding high precision and reliability.

Key Features and Advantages

  • Stable Output: The continuous emission ensures uniform intensity, essential for tasks like high-resolution imaging and precise measurements.

  • Compact Design: Their small size allows for easy integration into various systems, from handheld devices to complex industrial machinery.

  • Energy Efficiency: CW semiconductor lasers typically consume less power compared to other laser types, translating to cost savings and reduced thermal management requirements.

  • Longevity: The solid-state nature of these lasers contributes to a longer operational lifespan, reducing maintenance and replacement costs.

Applications Across Industries

  • Telecommunications: CW lasers serve as light sources in fiber-optic communication systems, enabling high-speed data transmission over long distances.

  • Medical Diagnostics: Instruments like flow cytometers and optical coherence tomography devices utilize CW lasers for accurate and non-invasive diagnostics.

  • Industrial Manufacturing: CW semiconductor lasers are employed in material processing tasks such as cutting, welding, and engraving, where consistent energy delivery is paramount.

  • Scientific Research: Laboratories use these lasers in experiments requiring stable light sources, including spectroscopy and interferometry.

Selecting the Right CW Semiconductor Laser

When choosing a CW semiconductor laser, consider factors like wavelength, output power, beam quality, and compatibility with existing systems. Ensuring that the laser meets the specific requirements of your application will maximize performance and efficiency.

At FindLight, we offer a curated selection of CW semiconductor lasers from leading manufacturers, catering to a wide range of applications. Explore our catalog to find the ideal solution for your needs.