In the world of professional illumination, the reflector cup is more than just a component; it is the "eye" of the torch. As a premier OEM/ODM Reflector Cups For High Power Torches Factory, we understand that the quality of light—its throw, spill, and intensity—is determined by the geometric precision of the reflector. Whether for tactical operations, search and rescue, or industrial maintenance, the demand for high-efficiency optical solutions has never been higher.
Designed for maximum "throw." Our SMO reflector cups feature mirror-finish vacuum aluminum plating, allowing high-power torches to project beams over 1000 meters with minimal light loss.
Specialized for "flood" lighting. The textured surface breaks up the beam pattern, providing a smooth transition from the hotspot to the spill, ideal for indoor and close-range work.
We utilize high-grade 6061 Aluminum alloy and optical-grade heat-resistant polymers to ensure our cups withstand the extreme temperatures generated by 20W+ LED/LEP sources.
The global portable lighting market is shifting towards extreme performance. Enterprises in the US, Europe, and Australia are no longer satisfied with standard flashlights; they require customized beam profiles for specific industrial applications. In the maritime industry, reflectors must resist saline corrosion; in firefighting, they must withstand thermal shock. Our factory at Ningbo Geek Flashlight Co., Ltd. is at the forefront of this evolution, integrating LEP (Laser Excited Phosphor) technology with precision reflectors to redefine long-distance lighting.
Established in 2011, Ningbo Geek Flashlight Co., Ltd. is a powerhouse in the LED & LEP lighting industry. Located in the strategic international metropolis of Ningbo, with a satellite R&D office in Shenzhen’s Longhua Street, we bridge the gap between innovative design and large-scale manufacturing. We are not just a supplier; we are an international comprehensive company focused on research, design, and precision manufacturing of high-power illumination tools.
Our product portfolio is vast, catering to diverse sectors. We specialize in vehicle lighting (bicycle, electric scooter, SUV auxiliary lights) and outdoor series including LEP laser flashlights, diving torches, and high-lumen searchlights. Crucially, our expertise extends to the core components: CNC processing, LED optical lens design, and the very Reflector Cups that define beam quality.
We adapt our OEM reflector cup designs to suit regional needs. For the North American hunting market, we optimize for deep-throw beam patterns. For the European cycling market, we focus on Stvzo standards to ensure beam cutoff and safety. Our ability to provide Customized Processing allows brands to build products that perfectly fit their local market's technical requirements.
After 12 years of development, our quality system is ISO9001-2010 certified. We utilize original materials and high-end components that pass CE, RoHS, UL, and SAA certifications. Every reflector cup undergoes rigorous reflectivity and thermal stress testing to ensure it meets the 100% pass rate our clients expect.
Based in Ningbo and Shenzhen, we have immediate access to the world's best raw material suppliers and logistics networks. This allows us to offer competitive pricing without sacrificing the precision of our CNC machining or the purity of our vacuum aluminum coatings.
Our products are exported to the United States, United Kingdom, Canada, France, Germany, Norway, Belgium, Australia, New Zealand, Saudi Arabia, Japan, and South Korea. We have built 12-year-long relationships with industry-leading brands, growing alongside them to become a professional authority in the portable lighting field. Our commitment to OEM & ODM services means we treat your intellectual property with the utmost respect while providing the technical expertise to bring your vision to life.
The industry is moving toward Multi-faceted Reflectors (MFR) and hybrid optical systems. As high-power LED chips get smaller yet more powerful (such as the CREE T6 or modern Laser modules), the reflector must manage heat and light density more effectively than ever before.