Ø40×60 mm 24V DC electromagnet is a high-performance model designed for use in systems requiring long-term magnetic retention and industrial reliability.
Thanks to its 100% operating rate, it can operate continuously under uninterrupted energy, which makes it ideal for automation lines, CNC machines, electromechanical locking systems and robotic applications.
It offers easy installation thanks to the M6 threaded connection. The side cable outlet enhances cable protection and installation ergonomics.
Grade 304 stainless steel used in the housing provides long-lasting use, high corrosion resistance and strong magnetic conductivity.
Advantages
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Suitable for continuous powered operation with a 100% working rate.
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Thanks to its high gravitational force, it can safely hold heavy metal parts.
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It has the characteristics of quiet, vibration-free and energy-efficient operation.
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Stainless steel housing provides long service life and magnetic efficiency.
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Compact design suitable for narrow-space machine assemblies.
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Side cable outputprovides flexibility in cable routing after installation.
Usage Areas
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Automation systems: In part fixing, transport and positioning operations.
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CNC machines: Fixing of parts during metalworking.
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Electromechanical lock systems: In doors, doors and security mechanisms.
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Robotic systems: In gripping, releasing and metal surface holding operations.
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Conveyor lines: In part handling and temporary fixing applications.
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Industrial testing equipment: In sample lifting and magnetic retention operations.
Things to Note When Using
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The fact that the surface is clean, flat and magnetic conductor (steel)directly affects the holding force.
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In long-term studies temperature increase is normal; performance loss is not experienced at temperatures below 100°C.
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The supply voltage should be full 24V DC; AC or higher voltage may damage the coil.
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If necessary, a temperature protection sensor or a thermal fuse can be added .
Working Principle of Electromagnets
An electromagnet is an industrial component that generates a holding force by creating a magnetic field around an iron core through the electric current passing through its coil. The table below summarizes the general principles.
Electromagnet working logic, components, duty cycle and applications
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Topic
|
Description
|
| Basic Principle |
When a DC voltage (e.g. 12V or 24V) is applied, the current flowing through the coil creates a magnetic field around the core and attracts metal surfaces. |
| Main Components |
Coil (winding), iron core, housing, connection cables, and where needed a resin coating (heat dissipation/insulation). |
| Strength of the Magnetic Field |
Current (A), voltage (V), number of windings, core material, and the cleanliness/tolerance of the contact surface determine the holding force. |
| Duty Cycle |
50% duty: Operates for a set period and then rests (for heat management). 100% duty: Suitable for continuous operation; typically a heat-resistant/resin-coated design. |
| Polarity (Poles) |
When the current direction changes, the N–S poles reverse. This is an advantage in direction-controlled applications. |
| Behavior on Power Loss |
Standard electromagnet: Holding force is lost when power is cut. Permanent-magnet type: Holding continues when power is cut and releases when power is applied (fail-safe). |
| Heating and Cooling |
Heating occurs due to coil resistance. The correct duty cycle, adequate cooling, and a suitable mounting surface are critical for lifespan/performance. |
| Applications |
Industrial lifting/holding, automation and robotic grippers, door locks, brake/release mechanisms, CNC and assembly lines. |
| Advantages |
Controllable magnetic force, fast response, remote actuation, depending on the application either fail-safe release or fail-safe hold. |
Round Electromagnets Catalog
You can find the technical drawing and standard catalog dimensions of the product in the table below. Please contact us for custom size production.
MODEL (BYR5CK/ BUR5CK)
|
Dimensions (mm)
|
Power WATT
|
Voltage VDC
|
Duty Cycle %
|
Connection POSITION
|
Cable Gland PG7-9
|
Min. Plate Thick. (mm)
|
Pull Force (N)
|
|
ØD
|
H
|
M
|
| Ø40x30 mm |
40 |
30 |
M6 |
5.2 |
24 |
50 |
TOP/SIDE |
PG7 |
5 |
470 |
| Ø50x30 mm |
50 |
30 |
M6 |
7 |
24 |
50 |
TOP/SIDE |
PG7 |
5 |
760 |
| Ø63x35 mm |
63 |
35 |
M6 |
10 |
24 |
50 |
TOP/SIDE |
PG7 |
8 |
1000 |
| Ø80x40 mm |
80 |
40 |
M8 |
15 |
24 |
50 |
TOP/SIDE |
PG7 |
10 |
2400 |
| Ø100x45 mm |
100 |
45 |
M8 |
25 |
24 |
50 |
TOP/SIDE |
PG7 |
15 |
3400 |
| Ø150x55 mm |
150 |
55 |
M16 |
37.2 |
48 |
50 |
TOP/SIDE |
PG7 |
25 |
9300 |
| Ø180x65 mm |
180 |
60 |
M20 |
50 |
48 |
50 |
TOP/SIDE |
PG7 |
30 |
15000 |
| Ø200x60 mm |
200 |
60 |
3xM12 |
65 |
48 |
50 |
TOP/SIDE |
PG9 |
35 |
25000 |
| Ø250x80 mm |
250 |
80 |
3xM12 |
90 |
48 |
50 |
TOP/SIDE |
PG9 |
40 |
30000 |
| Ø280x110 mm |
280 |
110 |
3xM12 |
150 |
48 |
50 |
TOP/SIDE |
PG9 |
50 |
40000 |
| Ø300x130 mm |
300 |
130 |
3xM12 |
180 |
48 |
50 |
TOP/SIDE |
PG9 |
80 |
45000 |