This electromagnet (type KK-P25/20) delivers a powerful, switchable holding force of 8 kg (under ideal conditions). Thanks to its compact design, it is suitable for a wide range of industrial and technical applications, ranging from automation and robotics to creative installations such as escape rooms.
Technical Specifications
- Model: KK-P25/20
- Diameter (D): 25 mm
- Central bore (d): 12 mm
- Total height (H): 20 mm
- Mounting hole (M): 4 mm
- Mounting rim (P): 10 mm
- Cable length (L): approx. 330 mm
- Supply voltage: DC 12V
- Current consumption: 0.13A
- Power: 1.5W
- Holding force: 8 kg (under ideal conditions)
- Recommended minimum material thickness: 3 mm steel
Features
- High-quality housing: Made of electrically pure iron, ensuring optimal magnetic conduction and minimal residual magnetism.
- Reliable wound coil: Made with high-quality copper wire, encased in flame-retardant and reinforced nylon for high temperature resistance.
- Easy installation: The electromagnet is equipped with mounting holes (4 mm) and a central bore (12 mm) for stable and precise attachment.
- Compact design: A diameter of 25 mm and a height of 20 mm make this electromagnet suitable for installations with limited space.
Use and Installation
- Supply voltage: Connect to 12V DC.
- Contact surface: A clean, flat, and well magnetically conductive iron surface is essential for maximum holding force.
- Material thickness: For optimal performance, an iron plate of at least 3 mm thick is recommended.
- Cooling: For prolonged use or high ambient temperatures, additional cooling (air or water cooling) is recommended.
- Protection of the suction surface: Damage or contamination on the magnetic contact surface can reduce the holding force.
Applications
- Automation projects, robotics, and warehouse logistics
- Mechanical locks and production lines
- Experience projects, such as puzzle mechanisms in escape rooms
Note: The maximum holding force of 8 kg is only achieved under ideal conditions (for example, a fully contacting and sufficiently thick iron contact surface). In other situations, the actual holding force may be lower.