KAUKAS-1 1.54µm "Eye-Safe" Nanosecond Laser
Description
Introducing the KAUKAS 1 series, a leap forward in nanosecond pulsed laser technology. At the heart of the KAUKAS 1 series lies a compact, low SWaP (Size, Weight, and Power) design, engineered for seamless integration into handheld and portable devices. The series emphasizes a robust build, ensuring reliability and durability across a range of operational environments.
Operating at a 1534 nm wavelength, the KAUKAS 1 lasers are distinguished by their "Eye-Safe" capability, making them suitable for applications where user safety is paramount. This feature is particularly critical in environments where direct interaction with the laser beam is a possibility, mitigating risks associated with retinal exposure.
The series offers a versatile range of configurations, including LAB, LAB-OEM, and OEM versions, catering to a broad spectrum of application requirements. Each unit is capable of delivering high pulse energy exceeding 1 mJ, with adjustable repetition rates from Single Shot to 5 Hz. This flexibility allows for precise control over laser performance, tailoring output to specific project needs.
Furthermore, the KAUKAS 1 series is recognized for its superior beam quality. The high-quality TEM00 beam profile, combined with an M2 value of less than 2, ensures precise and consistent results across applications such as LIDAR, laser ranging, LIBS, metrology, and instrumentation. This precision, coupled with less than 3% energy stability, underscores the series' capability to deliver reliable, high-performance operation.
RPMC Lasers Inc commits to excellence with the KAUKAS 1 series, offering a 1-year manufacturer warranty and an operational lifetime rated at approximately 1G shots. This commitment reflects our dedication to quality and the enduring value of our products in the field.
KAUKAS-1 1.54µm "Eye-Safe" Nanosecond Laser
Specifications |
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Avg. Power: | 0.005 W |
Wavelength: | 1534 nm |
Repetition Rate: | 0-0.005kHz |
Spatial Mode (M^2): | <2 |
Pulse Duration: | 14 ns |
Pulse-to-Pulse Stability (RMS): | -- % |
Cooling: | N/A |
Operational Temperature: | 10-40 °C |
Lifetime Rating: | 1G shots |
Warranty: | 1 year |
Beam Quality: | High-quality TEM00 |
Features
- Compact, low SWaP design
- 1534 nm "eye-safe" wavelength
- LAB, LAB-OEM & OEM versions available
- Integration into portable devices
- Configurable & customizable
- Single Shot to 5 Hz rep. rate
- High-quality TEM00 beam
Applications
- LIDAR & laser ranging
- Laser-induced breakdown spectroscopy (LIBS)
- Metrology
- Instrumentation
For pricing, technical or any other questions please contact the supplier
- No registration required
- No markups, no fees
- Direct contact with supplier
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Ships from:
United States
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Sold by:
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On FindLight:
since 2014
Frequently Asked Questions
The KAUKAS 1 series operates at a 1534 nm wavelength, ensuring "Eye-Safe" operation suitable for a variety of applications.
The KAUKAS 1 series is available in LAB, LAB-OEM, and OEM configurations, offering flexibility for integration into different setups and applications.
The KAUKAS 1 lasers deliver high pulse energy exceeding 1 mJ, with an adjustable repetition rate ranging from Single Shot to 5 Hz.
The "Eye-Safe" wavelength of 1534 nm minimizes the risk of retinal damage, making the KAUKAS 1 series safe for use in environments where direct interaction with the laser beam is possible.
Yes, the compact, low SWaP design of the KAUKAS 1 series makes it suitable for integration into handheld and portable devices, enhancing its versatility across various applications.
The KAUKAS 1 lasers feature a high-quality TEM00 beam profile with an M2 value of less than 2, ensuring precise and consistent results for applications such as LIDAR, laser ranging, and metrology.
The standard operating temperature range is 10-40°C, with the OEM version capable of operating in a wider range of -20-60°C, accommodating various environmental conditions.
The KAUKAS 1 series is backed by a 1-year manufacturer warranty, affirming RPMC Lasers Inc's commitment to quality and reliability.