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NdFeB Neodymium Pot Magnets represent a pinnacle in magnetic technology, combining the immense power of Neodymium Iron Boron (NdFeB) magnets with a protective and force-directing steel housing. These ingenious magnetic assemblies are engineered to deliver superior holding strength in a compact, durable, and highly versatile package, making them indispensable across a vast array of industrial, commercial, and consumer applications.
The term “pot magnet” refers to the specific design where a powerful magnet, in this case, a Neodymium disc or ring, is encased within a steel cup or “pot.” This design is not merely for protection; it plays a crucial role in enhancing the magnet’s performance and usability.
The exceptional performance of these magnets stems from two core elements:
Understanding the technical specifications of NdFeB Neodymium Pot Magnets is crucial for selecting the right product for a specific application:
The unique combination of strength, protection, and versatile mounting options makes NdFeB Neodymium Pot Magnets suitable for countless applications across various sectors:
NdFeB Neodymium Pot Magnets stand out as a highly engineered solution for applications requiring immense magnetic holding power within a protected and easily mountable assembly. Their superior strength, coupled with the durability and versatility provided by the steel pot, ensures reliable performance across a broad spectrum of uses. By understanding their technical characteristics and advantages, users can harness the full potential of these powerful magnets to enhance efficiency, safety, and functionality in countless scenarios.
Industrial Neodymium Pot Magnets consist of a high-grade Rare-Earth Neodymium core permanently encased inside a precision-machined steel shell (pot). The steel shell acts as a magnetic circuit, directing 100% of the magnetic flux to the single open face, amplifying the holding (clamping) force to extreme levels while protecting the brittle magnet from shattering.
They are the industry standard for heavy-duty, low-profile holding applications. They are used as robotic grippers (End-of-Arm Tooling), for securing heavy jigs and fixtures on CNC tables, mounting heavy industrial sensors/cameras to vibrating machinery, and securing massive automated steel doors.
A bare Neodymium magnet wastes half its magnetic energy projecting out the back. The steel pot captures that wasted rear magnetic flux and redirects it to the front face. This magnetic concentration means a Neodymium Pot Magnet can hold up to 3 or 4 times more weight (Newton force) than the exact same Neodymium magnet used without a steel shell.
To ensure seamless OEM integration (Plug & Play), we manufacture them with a variety of standard B2B mechanical interfaces. These include internal threaded sockets (female), external threaded studs (male), countersunk holes (for flush screw mounting), and through-holes, matching standard metric sizes (M4 to M12).
Yes. Bare Neodymium is extremely brittle and chips easily if struck. The heavy-duty steel housing acts as an impenetrable armor, taking the brunt of any mechanical impacts, vibrations, or heavy clamping forces, ensuring a long, maintenance-free operational life in harsh machine shops.
Standard models utilize Neodymium rated for 80°C. For hotter environments (e.g., plastic injection molding machines), we supply High-Temperature Pot Magnets rated for 150°C. The steel housing and the magnet are heavily plated with Nickel (Ni-Cu-Ni) to resist CNC coolants and atmospheric corrosion.
Absolutely. For OEMs, automation integrators, and heavy machinery builders, we provide bulk B2B manufacturing. We can produce custom diameters, specific threaded mounting studs, and guarantee exact pull-force (Newton) ratings to perfectly match your engineering specifications.

| Model | DØ | D1 | D2 | H | Çekme Kuvveti | Ağırlık | max. Çalışma Sıcaklığı |
| mm | Kgs | g | ºC | ||||
| POTA16 | 16 | 3,5 | 6,5 | 5 | 3,85 | 7 | ≤80 |
| POTA20 | 20 | 4,5 | 8,6 | 7 | 6,3 | 13 | ≤80 |
| POTA25 | 25 | 5,5 | 10,4 | 8 | 15,4 | 23 | ≤80 |
| POTA32 | 32 | 5,5 | 10,4 | 8 | 23,8 | 39 | ≤80 |
| POTA36 | 36 | 6,5 | 12 | 8 | 28,7 | 52 | ≤80 |
| POTA42 | 42 | 6,5 | 12 | 9 | 47,6 | 76 | ≤80 |
| POTA48 | 48 | 8,5 | 16 | 11,5 | 56,7 | 120 | ≤80 |
| POTA60 | 60 | 8,5 | 16 | 15 | 79,1 | 252 | ≤80 |
| POTA75 | 75 | 10,5 | 19 | 15 | 114,8 | 488 | ≤80 |

| Model | DØ | D1 | D2 | H | Çekme Kuvveti | Ağırlık | max. Çalışma Sıcaklığı |
| mm | Kgs | g | ºC | ||||
| POTB16 | 16 | 3,5 | 6,5 | 5 | 3,85 | 7 | ≤80 |
| POTB20 | 20 | 4,5 | 8 | 7 | 6,3 | 13 | ≤80 |
| POTB25 | 25 | 5,5 | 9 | 8 | 15,4 | 23 | ≤80 |
| POTB32 | 32 | 5,5 | 9 | 8 | 23,8 | 39 | ≤80 |
| POTB36 | 36 | 6,5 | 11 | 8 | 28,7 | 52 | ≤80 |
| POTB42 | 42 | 6,5 | 11 | 9 | 47,6 | 76 | ≤80 |
| POTB48 | 48 | 8,5 | 15 | 11,5 | 56,7 | 120 | ≤80 |
| POTB60 | 60 | 8,5 | 15 | 15 | 79,1 | 252 | ≤80 |
| POTB75 | 75 | 10,5 | 18 | 15 | 114,8 | 488 | ≤80 |

| Model | DØ | M | H | h | Çekme Kuvveti | Ağırlık | max. Çalışma Sıcaklığı |
| mm | Kgs | g | ºC | ||||
| POTC16 | 16 | 4 | 13 | 5 | 8 | 7 | ≤80 |
| POTC20 | 20 | 4 | 15 | 7 | 15 | 14 | ≤80 |
| POTC25 | 25 | 5 | 17 | 8 | 25 | 25 | ≤80 |
| POTC32 | 32 | 6 | 18 | 8 | 38 | 40 | ≤80 |
| POTC36 | 36 | 6 | 18 | 8 | 43 | 50 | ≤80 |
| POTC42 | 42 | 6 | 20 | 9 | 66 | 80 | ≤80 |
| POTC48 | 48 | 8 | 24 | 11,5 | 88 | 140 | ≤80 |
| POTC60 | 60 | 8 | 30 | 15 | 112 | 260 | ≤80 |
| POTC75 | 75 | 10 | 34 | 15 | 162 | 475 | ≤80 |

| Model | DØ | M | H | h | Çekme Kuvveti | Ağırlık | max. Çalışma Sıcaklığı |
| mm | Kgs | g | ºC | ||||
| POTD16 | 16 | 4 | 13 | 5 | 8 | 7 | ≤80 |
| POTD20 | 20 | 4 | 15 | 7 | 15 | 16 | ≤80 |
| POTD25 | 25 | 5 | 17 | 8 | 25 | 25 | ≤80 |
| POTD32 | 32 | 6 | 18 | 8 | 38 | 42 | ≤80 |
| POTD36 | 36 | 6 | 18 | 8 | 43 | 52 | ≤80 |
| POTD42 | 42 | 6 | 20 | 9 | 66 | 80 | ≤80 |
| POTD48 | 48 | 8 | 24 | 11,5 | 88 | 140 | ≤80 |
| POTD60 | 60 | 8 | 30 | 15 | 112 | 260 | ≤80 |
| POTD75 | 75 | 10 | 33 | 15 | 162 | 475 | ≤80 |
Industrial Neodymium Pot Magnets consist of a high-grade Rare-Earth Neodymium core permanently encased inside a precision-machined steel shell (pot). The steel shell acts as a magnetic circuit, directing 100% of the magnetic flux to the single open face, amplifying the holding (clamping) force to extreme levels while protecting the brittle magnet from shattering.
They are the industry standard for heavy-duty, low-profile holding applications. They are used as robotic grippers (End-of-Arm Tooling), for securing heavy jigs and fixtures on CNC tables, mounting heavy industrial sensors/cameras to vibrating machinery, and securing massive automated steel doors.
A bare Neodymium magnet wastes half its magnetic energy projecting out the back. The steel pot captures that wasted rear magnetic flux and redirects it to the front face. This magnetic concentration means a Neodymium Pot Magnet can hold up to 3 or 4 times more weight (Newton force) than the exact same Neodymium magnet used without a steel shell.
To ensure seamless OEM integration (Plug & Play), we manufacture them with a variety of standard B2B mechanical interfaces. These include internal threaded sockets (female), external threaded studs (male), countersunk holes (for flush screw mounting), and through-holes, matching standard metric sizes (M4 to M12).
Yes. Bare Neodymium is extremely brittle and chips easily if struck. The heavy-duty steel housing acts as an impenetrable armor, taking the brunt of any mechanical impacts, vibrations, or heavy clamping forces, ensuring a long, maintenance-free operational life in harsh machine shops.
Standard models utilize Neodymium rated for 80°C. For hotter environments (e.g., plastic injection molding machines), we supply High-Temperature Pot Magnets rated for 150°C. The steel housing and the magnet are heavily plated with Nickel (Ni-Cu-Ni) to resist CNC coolants and atmospheric corrosion.
Absolutely. For OEMs, automation integrators, and heavy machinery builders, we provide bulk B2B manufacturing. We can produce custom diameters, specific threaded mounting studs, and guarantee exact pull-force (Newton) ratings to perfectly match your engineering specifications.

| Model | DØ | M | H | h | Çekme Kuvveti | Ağırlık | max. Çalışma Sıcaklığı |
| mm | Kgs | g | ºC | ||||
| POTE16 | 16 | 4 | 13 | 5 | 5,5 | 10 | ≤80 |
| POTE20 | 20 | 4 | 15 | 7 | 9 | 19 | ≤80 |
| POTE25 | 25 | 5 | 17 | 8 | 22 | 33 | ≤80 |
| POTE32 | 32 | 6 | 18 | 8 | 34 | 61 | ≤80 |
| POTE36 | 36 | 6 | 18 | 8 | 43 | 86 | ≤80 |
| POTE42 | 42 | 6 | 20 | 9 | 68 | 114 | ≤80 |
| POTE48 | 48 | 8 | 24 | 11,5 | 81 | 174 | ≤80 |
| POTE60 | 60 | 8 | 30 | 15 | 113 | 310 | ≤80 |
| POTE75 | 75 | 10 | 33 | 18 | 164 | 525 | ≤80 |
Industrial Neodymium Pot Magnets consist of a high-grade Rare-Earth Neodymium core permanently encased inside a precision-machined steel shell (pot). The steel shell acts as a magnetic circuit, directing 100% of the magnetic flux to the single open face, amplifying the holding (clamping) force to extreme levels while protecting the brittle magnet from shattering.
They are the industry standard for heavy-duty, low-profile holding applications. They are used as robotic grippers (End-of-Arm Tooling), for securing heavy jigs and fixtures on CNC tables, mounting heavy industrial sensors/cameras to vibrating machinery, and securing massive automated steel doors.
A bare Neodymium magnet wastes half its magnetic energy projecting out the back. The steel pot captures that wasted rear magnetic flux and redirects it to the front face. This magnetic concentration means a Neodymium Pot Magnet can hold up to 3 or 4 times more weight (Newton force) than the exact same Neodymium magnet used without a steel shell.
To ensure seamless OEM integration (Plug & Play), we manufacture them with a variety of standard B2B mechanical interfaces. These include internal threaded sockets (female), external threaded studs (male), countersunk holes (for flush screw mounting), and through-holes, matching standard metric sizes (M4 to M12).
Yes. Bare Neodymium is extremely brittle and chips easily if struck. The heavy-duty steel housing acts as an impenetrable armor, taking the brunt of any mechanical impacts, vibrations, or heavy clamping forces, ensuring a long, maintenance-free operational life in harsh machine shops.
Standard models utilize Neodymium rated for 80°C. For hotter environments (e.g., plastic injection molding machines), we supply High-Temperature Pot Magnets rated for 150°C. The steel housing and the magnet are heavily plated with Nickel (Ni-Cu-Ni) to resist CNC coolants and atmospheric corrosion.
Absolutely. For OEMs, automation integrators, and heavy machinery builders, we provide bulk B2B manufacturing. We can produce custom diameters, specific threaded mounting studs, and guarantee exact pull-force (Newton) ratings to perfectly match your engineering specifications.
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Mıknatıs Ar-Ge has been established to provide customized solutions to the magnetic equipment and system needs of its business partners, with more than half a century of experience and cooperation with global suppliers.
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