From my desk, I present the 980 Nm Laser Diode, a robust choice for demanding industrial applications. When you search for High-Quality solutions, this diode stands out with stable output, compact package, and proven reliability in laser systems and production lines. I’ve built this product with tight tolerances and a focus on long service life, so your R&D and manufacturing teams can count on consistent performance. The 980 Nm wavelength is ideal for materials processing, sensing, and fine alignment tasks. We offer technical datasheets, mounting options, and customization to fit your system's current, heat dissipation, and packaging needs. For every Company seeking to scale, this diode ensures repeatability and lower total cost of ownership. If you need modular integration, our technical team supports you from evaluation to production. Let me help you validate performance with application notes and samples.
980 nm laser diodes are a cornerstone for pumping, sensing, and medical systems, demanding tight wavelength control, stable power, and long-term reliability. As industry leaders, we bring deep device-level expertise from wafer design to final test and packaging. Each diode is characterized for wavelength, power, and spectral quality, with rigorous binning and burn-in to ensure consistent performance. Our engineering teams provide design-in support and field-proven methods to optimize integration and lifetime in demanding environments. For global buyers, value goes beyond specs to a resilient supply chain: scalable capacity, predictable lead times, and transparent collaboration. We offer traceable, RoHS/REACH-compliant manufacturing and comprehensive documentation, plus technical support from application engineers who tailor packaging, drive conditions, and testing. By pairing 980 nm leadership with service excellence, buyers can accelerate qualification, reduce risk, and deploy reliable solutions at scale.
| Dimension | Description | Representative Value | Notes |
|---|---|---|---|
| Wavelength (nm) | The central emission wavelength used in 980 nm diode devices and pumping applications | 980 ± 5 | Typical range for 980 nm diode technologies |
| Output Power Range (W) | Common power ratings for diode modules and bars used in pumping fiber lasers | 5–60 | Includes single-emitter, stacked bars, and fiber-coupled modules |
| Electrical-to-Optical Efficiency (%) | Conversion efficiency at 25°C (typical) | 50–60 | Higher efficiency reduces cooling requirements |
| Forward Current (A) | Operating current range for emitter/bar configurations | 2–6 | Higher currents require robust thermal management |
| Operating Temperature Range (°C) | Ambient or device operating temperature window | -20 to 85 | Industrial-grade tolerance |
| MTBF (k hours) | Mean time between failures under standard test conditions | 60–100 | Based on accelerated life testing; real-world depends on cooling |
| Packaging Types | Common form factors used in the market | Single-emitter, stacked bars, fiber-coupled modules | Packaging affects coupling efficiency and heat dissipation |
| Lead Time (weeks) | Typical production lead time for standard products | 2–6 | Can increase for customization or high-volume orders |
| Service & Support Coverage | Technical support availability and field service reach | Global coverage, 24/7 remote support; regional on-site in major regions | Focus on rapid response and on-site capabilities |
| Training & Documentation Availability | Availability of training materials and workshops | Comprehensive online resources; optional on-site trainings | Multi-language documentation and seminars |
| R&D Focus Areas | Main research areas driving leadership | High-efficiency diode designs; reliability engineering; advanced packaging | Thermal management and module integration |
| Patent Activity | Patents filed per year related to 980 nm diode technology | 10–30 per year | Indicator of ongoing innovation in 980 nm diodes |