Product Description
Model Item Size/mm power Luminous flux/LM lighting effectLM/W Kelvin/K Ra IP Level Installation methods
YJHN301 240*240*12 12W 1320
110
2800K-3200K
4000K-4500K
6500K-7000K
≥82 IP67 Magnetic
YJHN302 240*600*12 26W 2860
YJHN303A 240*980*12 36W 3960
YJHN303B 240*1170*12 56W 6160
YJHN304A 480*480*12 36W 3960
YJHN304B 480*480*12 56W 6160
AI Product Description
*The following content is generated by AI and is for reference only.
The product in question belongs to a specialized class of industrial-grade magnetic assemblies designed for high-performance applications across manufacturing, automation, and material handling sectors. These units typically feature advanced rare-earth magnet technology, often utilizing neodymium-iron-boron alloys encased in durable protective housings such as stainless steel or nickel-plated zinc. Their primary function is to provide secure, non-contact holding, lifting, or positioning of ferromagnetic materials with exceptional force density. In automated assembly lines, they serve as reliable end-effectors for pick-and-place operations, ensuring consistent grip strength even under dynamic load conditions. Additionally, they are frequently employed in sorting systems to separate metallic contaminants from mixed waste streams or to align components during precision machining processes.
When operating these devices, several critical safety precautions must be observed. Due to the immense magnetic field strength, users should maintain a safe distance from pacemakers, credit cards, and other electronic storage media to prevent data corruption or device malfunction. Handling requires appropriate personal protective equipment, including heavy-duty gloves, to avoid severe pinching injuries caused by sudden attraction between the magnet and nearby metal objects. The unit should never be subjected to temperatures exceeding its maximum operating rating, as excessive heat can cause irreversible demagnetization. Furthermore, mechanical shock or impact should be avoided to prevent chipping of the brittle magnetic core, which could compromise structural integrity. Storage guidelines dictate keeping the magnets separated by spacers or in designated racks to minimize mutual attraction forces that might damage the surface finish or internal bonding agents. Regular inspection for corrosion, coating wear, or cracks is essential to ensure long-term reliability. Proper training for operators regarding magnetic field hazards and emergency release procedures is mandatory before deployment. By adhering to these operational protocols, organizations can maximize efficiency while mitigating risks associated with high-power magnetic systems in diverse industrial environments.