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Short arc stable light output, standard daylight replication | Sevan 7XB-500-H spherical xenon lamp

2026-09-09 Clicks:44

The core accuracy of high-precision solar light simulation, photocatalytic experiments, and aging tests of photovoltaic materials depends on the spectral purity and arc stability of the xenon light source. Commonly available xenon lamps on the market often have problems such as obvious arc drift, uneven light spots, long startup delay, and rapid spectral attenuation over time, which easily lead to non-compliance with the uniformity of the simulator's light spots, spectral mismatch, and distorted results of photovoltaic IV calibration, photocatalytic experiments, and material aging tests. This, in turn, fails to meet the strict standards of 3A-level optical testing and regular precision research, and is the core bottleneck restricting the accuracy of optical testing.

By focusing on the research and development of high-level light source components and their accessories, Saifan Optoelectronics has launched the 7XB-500-H spherical xenon lamp, a 500W standard short arc spherical xenon lamp. With its core advantages of ultra-short stable arc, rapid start-up and lighting, full-band continuous daylight spectrum, high concentrating efficiency, and long-term stable color, it becomes the core standard light source for standard solar light simulators, photocatalytic light sources, and photovoltaic characterization equipment. It solves the industry pain points of low efficiency, poor stability, and rapid spectral drift of ordinary xenon lamps from the source, providing pure, stable, and reproducible standard illumination cores for various precision optical testing.

Ultra-short stable arc, concentrated and uniform light spot

The 7XB-500-H spherical xenon lamp is equipped with an optimized short arc light emission structure, with shorter arc length, regular shape, and no obvious shaking during operation, presenting the characteristics of a high-quality point light source. The light spot is compact and concentrated, perfectly suitable for various ellipsoidal reflective cup focusing optical path designs, significantly improving the utilization rate of light energy and reducing the difficulty of optical path debugging, helping the entire equipment output high uniformity standard light spots. After lighting, it can rapidly climb to the rated light output without long-term preheating and standby, suitable for frequent start-stop in laboratories and intermittent experimental conditions, significantly improving testing efficiency.

The arc anti-interference performance of the entire lamp is excellent, with no center shift or light spot divergence issues during long-term continuous lighting, effectively avoiding defects such as light irradiation surface gradient and local dark areas caused by arc shaking. From the bottom layer of the light source, it ensures the stable and compliant uniformity indicators of the light spots in the solar light simulator, laying a solid hardware foundation for 3A-level precise light simulation.

Full-band continuous spectrum, 6000K daylight-level high fidelity

This xenon lamp can output a smooth full-band continuous spectrum from ultraviolet to visible to near-infrared, without spectral breaks or distorted peaks, with a standard color temperature stable at 6000K, highly matching natural sunlight, and excellent color rendering performance. Combined with standard filter components, it can precisely fit AM1.5G conventional daylight spectra and AM0 space spectra, fully adapting to various scientific research scenarios such as photovoltaic performance calibration, photocatalytic degradation experiments, hydrogen production by photolysis, photovoltaic material weathering aging, and spectral response testing. The sufficient ultraviolet energy and full near-infrared spectral output can fully match the full-band light response characteristics of various photovoltaic materials and photovoltaic devices.

The product has excellent spectral consistency throughout the entire usage life cycle, with no significant deviation in spectral energy distribution or color deterioration, no need to frequently replace the lamp bulb and re-calibrate spectral parameters after replacement, effectively ensuring the uniformity of lighting conditions for multiple batches of experiments and batch quality inspections, significantly improving the comparability and reproducibility of research data.

Precise and durable manufacturing process, long-term stable output with low attenuation

The 7XB-500-H spherical xenon lamp uses high-purity and high-temperature-resistant quartz bulb shells, special anti-sputtering electrodes, and a precise high-pressure sealing process. It can withstand the harsh conditions of high-temperature and high-pressure lighting for a long time, with outstanding anti-aging and anti-sputtering performance. Strictly controlling the processing of electrode manufacturing, high-purity xenon gas filling, and vacuum sealing throughout the process can significantly reduce problems such as early blackening, rapid light attenuation, and premature failure, effectively delaying the rate of light flux attenuation over time and extending the maintenance cycle of the equipment, reducing the cost of consumable replacements.

Different from ordinary inferior xenon lamps, this lamp maintains stable output throughout its operation. Even when approaching the end of its lifespan, it still maintains a complete spectral profile and uniform light spot output, without spectral distortion or sudden brightness drop. This effectively avoids issues such as sudden changes in experimental conditions and data failure. It is suitable for various industrial conditions such as laboratory continuous lighting, frequent scientific research testing, and intermittent quality inspection in industrial production.

General type, wide compatibility, strong equipment replacement compatibility

As a 500W standard general-purpose spherical xenon lamp, 7XB-500-H has extremely strong adaptability. It can be widely matched with various domestic, same-specification solar light simulators, photocatalytic xenon lamps, material light aging testing equipment, spectral response testing systems, and surface photoelectric voltage testing devices. It can be used as the core light source for new equipment integration, or as an original replacement consumable for old equipment. The interface specifications and electrical parameters are universally compatible, and after replacement, there is no need to modify the optical path structure or perform complex debugging. It can be installed and used immediately, significantly reducing equipment maintenance and upgrade costs.

It is widely compatible with university laboratories, research institutions, new energy enterprises, and material testing institutions. It covers all scenarios of scientific research and quality inspection such as photovoltaic device calibration, environmental photocatalysis, new material light aging, biological light simulation, and precise photoelectric characterization. It is a general high-performance core light source consumable for optical laboratories.

Standardized quality control for factory production, compatible with the entire series of optical systems

The 7XB-500-H spherical xenon lamp from Saifan has undergone strict lamp testing during factory production, testing the arc stability, spectral parameters, and light output consistency of each lamp. It eliminates individual units with abnormal performance. Each lamp has controllable quality and meets performance standards. It can perfectly adapt to Saifan's entire series of light sources, xenon lamp voltage stabilizing power supplies, standard filters, optical accessories, and quickly build a standardized and high-precision light simulation system. The entire set of equipment is stable and fully compatible.

The manufacturer provides professional selection guidance, installation and commissioning norms, and usage and maintenance training for one-stop technical support to help users use the equipment in a standardized manner, avoid the risk of accidental damage due to improper operation, and fully release the performance and service life of the lamp design.

Standard light source core, empowering precise optical experiments to improve efficiency

The core foundation of high-precision optical testing lies in stable and pure standard light source output. The 7XB-500-H spherical xenon lamp, with its short arc stable light structure, daylight-level precise spectrum, low decay long service life, and universal high compatibility, provides stable and reliable core light source support for solar light simulation, photochemical research, material aging testing, and precise photovoltaic calibration, continuously facilitating the standardization of scientific research experiments, data accuracy, and low-cost operation maintenance.


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