Frequently Asked Questions

The High Power Pump Signal Combiner is a sophisticated optical device designed to merge the output powers of up to 6 multimode pump diodes and a signal laser into a single double-cladding output fiber. This technology enables efficient power coupling, essential for high-performance fiber lasers and amplifiers.

This combiner excels in high power handling, offering compatibility with pump wavelengths ranging from 915nm to 980nm and supporting various fiber types including Nufern LMA-GDF-20/400-M with 0.06/0.46 NA. It leverages proprietary fiber tapering techniques to achieve superior coupling efficiency and reliability.

The High Power Pump Signal Combiner finds extensive use in kW-class fiber lasers and amplifiers. It is indispensable in applications requiring robust power aggregation and precise signal integrity control. Industries such as telecommunications, industrial manufacturing, and scientific research benefit from its ability to integrate multiple pump sources effectively.

It supports a wide range of fiber types, ensuring flexibility and compatibility with diverse operational needs. The device is engineered to seamlessly integrate with Nufern LMA-GDF-20/400-M and other specified fiber types, accommodating varying numerical apertures (NA) and ensuring optimized performance across different wavelengths.

Operating within a temperature range of -5°C to +65°C (with active cooling required), and storage temperatures from -40°C to +85°C, it maintains stable performance under varying environmental conditions. It features compact dimensions of 100mm (L) × 15mm (W) × 10mm (H) and achieves a maximum signal channel insertion loss of 0.5dB.

By efficiently combining multiple pump sources into a single output fiber, the combiner minimizes power loss and enhances overall system efficiency. This capability is crucial for applications demanding high power output and stable laser performance.

Yes, the device offers custom configurations to meet specific application requirements. Users can specify parameters such as fiber type, length, and packaging type, ensuring tailored solutions for diverse operational environments.

It is essential to ensure that the sum of input fibers' mode numbers is less than that of the output fiber to maintain optimal coupling efficiency and minimize signal losses. Proper thermal management is also critical to sustaining long-term reliability and performance.

By integrating advanced fiber tapering techniques and robust packaging, the combiner enhances system reliability and longevity. It is designed to withstand high power levels and environmental fluctuations, ensuring consistent performance in demanding applications.

Customers have access to comprehensive technical support and documentation, including datasheets, application notes, and integration guidelines. This helps ensure seamless integration and optimal performance of the combiner in various industrial and scientific applications.

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