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This is a rare earth magnet primarily composed of neodymium, iron, and boron. 【Features】 ● The magnetic energy is the highest among existing magnets, offering wide versatility, and custom shapes such as complex sizes are possible. ● It is prone to rust, so it is generally nickel-plated on the surface. ● Utilizing the characteristics of the strongest magnets allows for miniaturization and high performance of products. * Caution is needed regarding thermal demagnetization due to temperature. We have Japanese staff available. Please feel free to contact us for more details about the products.
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Free membership registrationNeodymium injection molded magnets are made by mixing neodymium magnet powder with thermoplastic plastic, pelletizing it, and then injection molding it. They have superior magnetic properties compared to ferrite-based injection molded magnets. Neodymium injection molded magnets can accommodate a variety of shape designs and magnetic field orientations. They can be smaller in size or have irregular shapes. Additionally, designs for multipole magnetization and more complex magnetization methods are possible, resulting in high precision and consistency in the products. By directly injecting the iron core and shaft of electric motors during the molding process, assembly costs can be saved by forming complete parts. 【Features】 ● Neodymium powder is mixed with thermoplastic resin and injected into a mold for injection molding. ● The products have high precision. ● Magnetic properties can be adjusted. ● No additional processing is required; it is a one-step molding process. ● High production efficiency allows for mass production. ● Available in various shapes and sizes.
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Free membership registrationThis is a neodymium bonded magnet made by compressing MQ powder, which is produced using the rapid cooling solidification method, with resin. It offers high freedom of shape, allowing for thin ring shapes, and has high dimensional accuracy. It is isotropic with no restrictions on the magnetization direction, making it suitable for multi-pole magnetization designs. 【Features】 ● Can be molded into any shape due to compression molding; mold costs are relatively low. ● Isotropic, allowing for multi-pole magnetization after surface coating. ● Magnetic strength is weaker than neodymium magnets but stronger than ferrite magnets. ● Used in digital devices that require compact, thin, high-performance magnets. It is widely used in IT-related and electronic components such as mobile phones, meters, sensors, and HDD motors. Recently, applications in automotive parts have been observed. We have Japanese staff available. Please feel free to contact us for more details about the products.
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Free membership registrationNeodymium magnetic powder is mixed with resin and then processed through extrusion molding or calendar molding. Neodymium rubber magnets are products made by mixing neodymium magnetic powder with rubber and processing them into various sizes through injection molding or rolling molding. Due to this characteristic, neodymium rubber magnets possess excellent plasticity and ductility while maintaining certain magnetic properties, making them an enhanced version of ferrite rubber magnets. Neodymium rubber magnet products are created by mixing neodymium magnetic powder bonded with rubber, which undergoes processes such as kneading and rolling to produce high-performance, thin products in various sizes and shapes. They are widely used in various fields such as electronics, instrumentation, and healthcare. 【Features】 ● Excellent waterproof performance, functioning normally even in high humidity environments. ● High wear resistance, with the rubber outer layer protecting the surface of the magnet from scratches. ● Flexible and easy to install and secure. ● Capable of reducing vibration and noise due to the rubber layer. ● Easy to process.
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Free membership registrationFerrite magnets (ceramic magnets) are permanent magnets made primarily by mixing iron (Fe2O3) and oxides (SrCO3) and sintering them at high temperatures. They can be mass-produced using molds at a low cost. They have excellent corrosion resistance and are suitable for use in harsh environments. Currently, they are the most widely used in the electrical industry. 【Features】 ● Custom shapes can be made at a low cost. ● They have excellent heat and corrosion resistance, are produced in large quantities, and are widely applied. ● They are brittle, so care is needed when handling them. ● Sintered ferrite magnets have relatively large tolerances due to the manufacturing process, typically +/- 2%. ● They are widely used in acoustic equipment, general electrical applications, automotive motors, general-purpose motors, and eco-industries. Examples include speakers, DC motors, air conditioner compressors, and wind power drive motors. We have Japanese staff available. Please feel free to contact us for more details about our products.
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Free membership registrationThis is a magnet made by injection molding a mixture of magnetic powder and thermoplastic elastomer resins (PA6, PA12, PPS). It allows for integrated molding with components such as motor shafts and yoke materials, thereby eliminating complex processes after molding. While ferrite types are common, there are also strong neodymium and samarium-cobalt types available. There are many types of binders used as well. The maximum heat resistance temperature is 235 degrees. 【Features】 ● Bonded magnets can be molded into thin shapes or any shape, and radial magnetization or multipole magnetization is also possible. ● Integrated molding with motor shafts and yoke materials eliminates complex processes after molding. ● Due to high dimensional accuracy, finishing processes are unnecessary, and performance is stable. They are widely used in automated equipment, stepping motors, air conditioners, automatic sensors, meters, brushless motors, and high-performance home appliances and electrical equipment. We have Japanese staff available. Please feel free to contact us for more details about the products.
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Free membership registrationRubber magnets are magnets formed by mixing permanent magnet powder (ferrite or neodymium) with synthetic rubber. They are flexible, and there are two manufacturing methods: compression molding and injection molding. They have a high degree of shape freedom and are used not only for educational materials, stationery, and decorations but also in industrial applications such as small motors, cooling fans, and motor rotors. 【Features】 - A mixture of ferrite or neodymium permanent magnet powder and synthetic rubber. - Generally available in strip or sheet form. - Isotropic rubber magnets can be magnetized in multiple poles. - Operating temperature ranges from minus 40 degrees to 100 degrees. - They have a wide range of applications, including small motors, cooling fans, motor rotors, stationery caps, advertising decorations, and refrigerator seals. We have Japanese staff available. Please feel free to contact us for more details about our products.
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Free membership registrationAlnico magnets are metal magnets primarily composed of aluminum, nickel, cobalt, and iron. They have excellent properties in relation to temperature and remain stable even at operating temperatures of 500°C. They are suitable for specialized industries such as chemistry and aerospace defense. There are two types of alnico magnets based on their shape: sintered alnico magnets and cast alnico magnets. The former is used for smaller craft applications, while the latter is suitable for high-precision complex designs. They can also be combined with plastics and metals for special applications. 【Features】 - Excellent temperature and corrosion resistance, stable even at operating temperatures of 500°C. - There are two types based on shape: sintered alnico magnets and cast alnico magnets. The former is used for smaller craft applications, while the latter is suitable for high-precision complex designs. - The magnetic retention is relatively low, making them susceptible to demagnetization from external shocks. However, they can be magnetized again. - They can be adapted for use in automotive parts, microphones, radar, meters, aerospace equipment, sensors, etc. We have Japanese staff available. Please feel free to contact us for more details about the products.
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Free membership registrationThis is a rare earth magnet composed of samarium and cobalt. It has excellent temperature characteristics and stability even in high-temperature working environments. In working environments ranging from 250°C to 350°C, the maximum energy value reaches 29-32 MGOe. It also has high corrosion resistance, so surface treatments such as plating are unnecessary. 【Features】 ● It is ideal for applications requiring temperature stability and high-temperature conditions (250-350°C) due to its excellent temperature characteristics. ● It is more resistant to thermal demagnetization compared to neodymium magnets, demonstrating its superiority in high-temperature working environments. ● It is resistant to rust, so surface treatments such as plating are generally unnecessary. ● There are Sm2Co5 and Sm2Co17 systems with different composition ratios; the latter has better heat resistance and magnetic strength and can be adapted for machining. The former is relatively unsuitable for special shapes. ● It is widely used in precision instruments for special applications, aerospace and military parts, as well as medical devices like MRI machines, radar equipment, high-precision electronics, and stirrers. We have Japanese staff available. Please feel free to contact us for more details about the products.
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Free membership registrationThe magnet assembly includes neodymium cap magnets, ferrite cap magnets, and samarium-cobalt cap magnets. 【Features】 ● Cap magnets combine magnets and yokes to concentrate magnetic force in a specific direction, resulting in a stronger adhesive force than usual. ● Available shapes include cylindrical, ring, and rectangular. We also offer application products such as magnet hooks and magnet name tags, so please feel free to contact us.
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Free membership registration【Features】 ● The stainless steel material is either 304 or 316L, which has good corrosion resistance. ● The basic heat resistance temperature is ≤80℃, with a maximum reaching up to 300℃. ● Both ends can be designed with screw holes, screws, lifting rings, tapered tips, etc.
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Free membership registration【Features】 ● The stainless steel material is 304 or 316L, which has good corrosion resistance. ● The basic heat resistance temperature is ≤80℃, with a maximum reaching up to 300℃. ● Depending on the size of the grid-type magnetic separator, the residual magnetic flux density can reach a maximum of 13,000 gauss.
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