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2mm x 2mm x 2mm N52 Neodymium Cube Magnet - Micro Cube
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- Stock: In Stock
- Brand: JC-magnetics
- Model: JCN52-BLK222
- UPC: 378329410231
Available Options
2mm x 2mm x 2mm Neodymium Cube Magnet – N52 Grade
Key Features:
- Dimensions: 2mm x 2mm x 2mm (Equilateral Cube)
- Precision Tolerance: ±0.05mm
- Magnet Grade: N52
- Pull Force: Approx. 0.35 lbs
- Coating: Nickel-Copper-Nickel (Ni-Cu-Ni) triple-layer plating for a professional, durable finish
- Magnetization: Axially magnetized (Poles on two opposite flat faces)
- Shape: Micro-Cube
Material Description:
Our 2mm N52 cubes are engineered for high-precision applications where every fraction of a millimeter counts. The cubic geometry allows for easy handling and orientation in micro-mechanical systems, preventing the rolling issues associated with disc magnets. Whether you are building medical device prototypes or detailing complex architectural models, these cubes provide a reliable, low-profile magnetic bond.
Handling Advice: NOTICE: These magnets are exceptionally small and fragile. Because of their tiny mass and sharp corners, they can easily chip if allowed to snap together. Always use non-magnetic tweezers for placement and separate them by sliding rather than lifting to maintain the integrity of the neodymium core.
Warnings and Safety Information:
- Choking Hazard: EXTREMELY DANGEROUS for children and pets. Their size makes them easily ingestible.
- Ingestion Warning: Swallowing two or more magnets can cause serious internal injury. Seek immediate medical help if ingested.
- Medical Safety: KEEP AWAY from pacemakers and sensitive medical implants.
- Electronics: Safe for most modern devices at a distance, but avoid direct contact with magnetic storage media.
Applications:
- Precision micro-robotics and miniature actuator components
- Ultra-small sensor triggers for wearable technology
- Articulation for 28mm gaming miniatures and complex model kits
- Hidden latches for micro-jewelry boxes and dollhouse furniture
- Scientific research involving micro-magnetic arrays and field mapping