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IBOTS1000
₹290.00 Original price was: ₹290.00.₹223.00Current price is: ₹223.00.
Free
₹75 for parcels below 1 Kg and ₹100 for parcels weighing between 1 Kg to 2 Kg.
2-3 Days
₹75
₹125 for parcels below 1 Kg and ₹175 for parcels weighing between 1 Kg to 2 Kg.
2-3 Days
₹125
₹250 for parcels below 1 Kg and ₹325 for parcels weighing between 1 Kg to 2 Kg.
2-3 Days
₹250
Our courier will deliver to the specified address
2-3 Days
Rs. 99
Payment Methods:
1. Order the Product and Specify the Delivery Method
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3. Wait for Your Order to Arrive
4. Pick up Your Order at The Checkout Area
With an iron core and a coil, this DC 12V KK-P20/15 3KG Lifting Solenoid Electromagnet uses the magnetic action created by an electric current to attract magnetic materials only when the current is supplied. This functional little device has a great power to reliability ratio. Another distinctive aspect of it is the way it is built and designed to release the magnetism that remains after de-energization.
An electromagnet is simply a coil of wire. It is usually wound around an iron core. However, it could be wound around an air core, in which case it is called a solenoid. When connected to a DC voltage or current source, the electromagnet becomes energized, creating a magnetic field just like a permanent magnet. The magnetic flux density is proportional to the magnitude of the current flowing in the wire of the electromagnet.
The polarity of the electromagnet is determined by the direction of the current. The north pole of the electromagnet is determined by using your right hand. Wrap your fingers around the coil in the same direction as the current is flowing (conventional current flows from + to -). The direction your thumb is pointing in the direction of the magnetic field so north would come out of the electromagnet in the direction of your thumb. DC electromagnets are principally used to pick up or hold objects
We supply many varieties of electromagnets with a higher power as well as lower, original dimensions, etc to satisfy your unique requirements.
Note: Images may be seen different from actual product in terms of Dimensions.
Electromagnets must meet the following conditions to achieve maximum suction:
This highly efficient electromagnet generates a magnetic field of a strong pull (high attractive force) with low energy consumption. You can adjust to the desired attractive force by changing the power applied and the magnetic gap between the electromagnet and the substance.
When an electromagnet is energized, the problem is how to release the magnetic force which remains on the device after the power is turned off. Our electromagnet is designed with measures to release and minimize this residual magnetic force.
Compact mechanism with high reliability.
High mechanical strength and excellent durability.
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