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Pulsed DPSS Lasers

Wedge XF sub-nanosecond (300ps), DPSS laser produces up to 70uJ of pulse energy at 1064nm, with operation from single shot to 100 kHz, in a compact, air-cooled OEM solution. Second, Third and Fourth Harmonics (532, 355 and 266nm output) and wavelength conversion option (1.5um) widen the suitable applications range for the ...

Specifications

Avg. Power: 1.5 W
Wavelength: 1064 nm
Repetition Rate: 10 – 100 kHz
Spatial Mode (M^2): 1.2
Pulse Duration: 0.4 ns
The Sol 6W 1064nm Q-Switched Compact ns DPSSL Laser is a high-performance, all-solid-state laser designed for precision material processing and medical applications. With a maximum pulse energy of 300 µJ and a pulse width range of 15 to 60 ns, it delivers exceptional power and pulse duration control. The laser operates at a ...

Specifications

Avg. Power: 6 W
Wavelength: 1064 nm
Repetition Rate: 0.001 – 100 kHz
Spatial Mode (M^2): 1.5
Pulse Duration: 15 ns
The SB1-532-20-1 of our Microchip Series is a short nanosecond pulsed, 20uJ, low SWaP, ultra-compact, 1 kHz, passively Q-switched, DPSS laser. Bright Microlaser has pushed its unique microchip laser technology further with the new, completely re-designed all-in-one SB1 model. Thanks to its advanced optical, mechanical and electronic ...

Specifications

Avg. Power: 0.02 W
Wavelength: 532 nm
Repetition Rate: 0.001 – 1 kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 1.3 ns
The Q-SHIFT Diode-Pumped Air-Cooled Q-Switched Laser is a state-of-the-art solution designed for applications requiring high peak intensity and precise wavelength control. Featuring a built-in nonlinear wavelength conversion stage, this laser generates wavelengths not achievable with conventional solid-state laser sources. It ...

Specifications

Avg. Power: 1 W
Wavelength: 1163 nm
Repetition Rate: 0.01 – 0.1 kHz
Spatial Mode (M^2): Not Specified
Pulse Duration: 2 ns
With a focus on innovative system architectures, such as monolithic designs for enhanced stability and modular configurations for customizable performance, high-E Photonics delivers industry-leading reliability in demanding environments. 

Specifications

Avg. Power: 100 W
Wavelength: 1500 nm
Repetition Rate: 10000 – 100000 kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 0.1 ns
The Onda nanosecond laser series, available with up to 10W at 1064nm and 532nm, was developed as a high-energy seeder for advanced MOPA systems. The Onda is a DPSS ns-laser platform aimed at high-end applications requiring both excellent beam quality and high peak power in materials such as metals, glass, plastics, and various ...

Specifications

Avg. Power: 10 W
Wavelength: 532 nm
Repetition Rate: 1 – 100 kHz
Spatial Mode (M^2): 1.5
Pulse Duration: 10 ns
The Lampo series by Bright Solutions is a family of compact, ultrafast DPSS lasers designed to deliver high peak power picosecond pulses with a selectable repetition rate from 50 kHz to 4 MHz. These lasers offer pulse durations as short as 50-70 ps, delivering peak powers up to 4.5 MW and a wide range of wavelengths from IR (1064 nm) ...

Specifications

Avg. Power: 20 W
Wavelength: 1064 nm
Repetition Rate: 50 – 40000 kHz
Spatial Mode (M^2): Not Specified
Pulse Duration: 0.05 ns
The KAUKAS Series is a line of compact, low-SWaP Er:glass pulsed lasers operating at 1.54µm, offering “eye-safe” performance. These nanosecond pulsed lasers are designed for integration into portable, handheld devices, providing high pulse energy and repetition rates up to 5Hz. With less than 3% energy stability and ...

Specifications

Avg. Power: 0.004 W
Wavelength: 1534 nm
Repetition Rate: 0 – 0.002 kHz
Spatial Mode (M^2): 2
Pulse Duration: 11 ns
The SB1-1064-2-55 of our Microchip Series is a short nanosecond pulsed, 2uJ, low SWaP, ultra-compact, 55 kHz, passively Q-switched, DPSS laser. Bright Microlaser has pushed its unique microchip laser technology further with the new, completely re-designed all-in-one SB1 model. Thanks to its advanced optical, mechanical and ...

Specifications

Avg. Power: 0.11 W
Wavelength: 1064 nm
Repetition Rate: 0.001 – 55 kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 0.47 ns
The SB1-1064-2-100 of our Microchip Series is a short nanosecond pulsed, 2uJ, low SWaP, ultra-compact, 100 kHz, passively Q-switched, DPSS laser. The Microchip series, available at 1064, 946, 532, 473, 355 266, and 236.5nm, is capable of producing single-frequency operation with narrow linewidths, and an M^2 of <1.3 with a ...

Specifications

Avg. Power: 0.2 W
Wavelength: 1064 nm
Repetition Rate: 0.001 – 100 kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 0.4 ns
The SB1-1064-20-10 of our Microchip Series is a short nanosecond pulsed, 20uJ, low SWaP, ultra-compact, 10 kHz, passively Q-switched, DPSS laser. Bright Microlaser has pushed its unique microchip laser technology further with the new, completely re-designed all-in-one SB1 model. Thanks to its advanced optical, mechanical and ...

Specifications

Avg. Power: 0.2 W
Wavelength: 1064 nm
Repetition Rate: 1 – 10 kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 1.3 ns
The SB1-1064-15-15 of our Microchip Series is a short nanosecond pulsed, 15uJ, low SWaP, ultra-compact, 10 kHz – 15 kHz, passively Q-switched, DPSS laser. Bright Microlaser has pushed its unique microchip laser technology further with the new, completely re-designed all-in-one SB1 model. Thanks to its advanced optical, ...

Specifications

Avg. Power: 0.225 W
Wavelength: 1064 nm
Repetition Rate: 0.001 – 15 kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 1.3 ns
The SB1-473-3-5 Microchip Laser is a short nanosecond pulsed, 3uJ, low SWaP, ultra-compact, 5 kHz, passively Q-switched, DPSS laser. Bright Microlaser has pushed its unique microchip laser technology further with the new, completely re-designed all-in-one SB1 model. Thanks to its advanced optical, mechanical and electronic design, ...

Specifications

Avg. Power: 0.015 W
Wavelength: 473 nm
Repetition Rate: 1 – 5 kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 2.5 ns
The SB1-1064-40-1 of our Microchip Series is a short nanosecond pulsed, 40uJ, low SWaP, ultra-compact, 1 kHz, passively Q-switched, DPSS laser. Bright Microlaser has pushed its unique microchip laser technology further with the new, completely re-designed all-in-one SB1 model. Thanks to its advanced optical, mechanical and ...

Specifications

Avg. Power: 0.6 W
Wavelength: 1064 nm
Repetition Rate: 0.001 – 1 kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 1.3 ns
The SB1-1064-30-5 of our Microchip Series is a short nanosecond pulsed, 30uJ, low SWaP, ultra-compact, 5 kHz, passively Q-switched, DPSS laser. Bright Microlaser has pushed its unique microchip laser technology further with the new, completely re-designed all-in-one SB1 model. Thanks to its advanced optical, mechanical and ...

Specifications

Avg. Power: 0.15 W
Wavelength: 1064 nm
Repetition Rate: 0.001 – 5 kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 1.3 ns
The SB1-532-10-10 of our Microchip Series is a short nanosecond pulsed, 10uJ, low SWaP, ultra-compact, 10 kHz, passively Q-switched, DPSS laser. Bright Microlaser has pushed its unique microchip laser technology further with the new, completely re-designed all-in-one SB1 model. Thanks to its advanced optical, mechanical and ...

Specifications

Avg. Power: 0.1 W
Wavelength: 532 nm
Repetition Rate: 1 – 10 kHz
Spatial Mode (M^2): 1.3
Pulse Duration: 1.3 ns
The SB1-473-9-0.1 Microchip Laser is a short nanosecond pulsed, 9uJ, low SWaP, ultra-compact, 100 Hz, passively Q-switched, DPSS laser. Bright Microlaser has pushed its unique microchip laser technology further with the new, completely re-designed all-in-one SB1 model. Thanks to its advanced optical, mechanical and electronic ...

Specifications

Avg. Power: 0.009 W
Wavelength: 473 nm
Repetition Rate: 0.001 – 100 kHz
Spatial Mode (M^2): 1.5
Pulse Duration: 2 ns
The world\'s most powerful diode-pumped Tm:YAG laser module is available for industrial and medical applications. The average output power of up to 25 W and repetition rates of up to 500 Hz allows controlled and at the same time precise treatments.

Specifications

Avg. Power: 30 W
Wavelength: 2020 nm
Repetition Rate: Not Specified
Spatial Mode (M^2): 30
Pulse Duration: 100000 ns
The world\'s most powerful diode-pumped Tm:YAG laser module is available for industrial and medical applications. The average output power of up to 50 W and repetition rates of up to 500 Hz allows controlled and at the same time precise treatments.

Specifications

Avg. Power: 50 W
Wavelength: 2020 nm
Repetition Rate: Not Specified
Spatial Mode (M^2): 30
Pulse Duration: 100000 ns
The world\'s most powerful diode-pumped Tm:YAG laser module is available for industrial and medical applications. The average output power of up to 100 W and repetition rates of up to 500 Hz allows controlled and at the same time precise treatments.

Specifications

Avg. Power: 100 W
Wavelength: 2020 nm
Repetition Rate: Not Specified
Spatial Mode (M^2): 40
Pulse Duration: 100000 ns

Diode-Pumped Solid-State (DPSS) Lasers: Precision, Efficiency, and Versatility

Diode-Pumped Solid-State (DPSS) lasers represent a significant advancement in laser technology, combining the efficiency of semiconductor laser diodes with the robustness of solid-state gain media. These lasers have become integral in various applications, including materials processing, medical procedures, and scientific research, due to their high beam quality, compactness, and reliability.

Operating Principles

At the core of a DPSS laser is a solid-state gain medium, such as neodymium-doped yttrium aluminum garnet (Nd:YAG) or neodymium-doped yttrium orthovanadate (Nd:YVO₄). These crystals are optically pumped by laser diodes, typically emitting at wavelengths like 808 nm. The pump light excites the gain medium, which then emits coherent light at specific wavelengths, such as 1064 nm. In many systems, nonlinear crystals like potassium titanyl phosphate (KTP) are used to frequency double the output to 532 nm, producing the characteristic green light seen in many laser pointers.

Advantages of DPSS Lasers

  1. High Beam Quality: DPSS lasers typically produce a TEM₀₀ mode output, resulting in a near-perfect Gaussian beam with minimal divergence.

  2. Compact Design: The use of laser diodes as pumps allows for more compact laser systems compared to traditional flashlamp-pumped lasers.

  3. Long Operational Lifetime: Laser diodes have a longer lifespan than gas discharge lamps, leading to reduced maintenance and operational costs.

  4. High Efficiency: Direct coupling between the diode pump and gain medium enhances energy efficiency.

  5. Stable Output: DPSS lasers offer stable output power and wavelength, which is crucial for precision applications.

Applications

  • Materials Processing: DPSS lasers are widely used in cutting, engraving, and welding due to their high power and precision.

  • Medical Field: They are employed in various medical procedures, including laser surgery and dermatology, owing to their precision and minimal thermal impact.

  • Scientific Research: DPSS lasers serve as light sources in spectroscopy, fluorescence microscopy, and other analytical techniques.

  • Consumer Electronics: They are found in optical storage devices and laser pointers, providing reliable and consistent performance.

Conclusion

DPSS lasers have revolutionized the laser industry by offering a combination of high performance, compactness, and reliability. Their versatility across various applications underscores their importance in modern technology and industry. As advancements continue, DPSS lasers are expected to play an even more significant role in emerging technologies and applications.

Did You know?

Diode-pumped solid-state lasers (DPSS) are solid-state lasers made by pumping a solid gain medium, for example, a ruby or a neodymium-doped YAG crystal, with a laser diode. DPSS lasers are known for their high power density, excellent beam quality, and high efficiency. They are commonly used in industrial settings for laser cutting, welding, and trimming. Additionally, they also find uses in military and aerospace settings. One interesting example is the AN/AQS-20A Mine Hunting System, which utilizes DPSS lasers as a means to detect and classify mines from the sea floor to the surface.