Energise to Hold Electromagnets / standard Electromagnets / Solenoid/Electromagnet

Electrical current is required to turn the magnet ON. Power is removed to turn the magnet OFF. Pull force conversion (approximate): 1kg = 10N = 2.2lb. The outer shell of the electro magnet is a sturdy bright nickel plated cylinder, passivated with body mounting. Designed for surviving demanding holding and clamping applications. Typical applications include; Door locking mechanisms for access control or security, fire door holding, medical devices , feeder systems for automated packaging machinery, pick and place equipment and power generation.

Energise to Hold Electromagnet

The Energise to Hold Electromagnet is a standard electromagnet concept – a solenoid (wound copper coil) within a high quality high permeability iron assembly for high clamping forces and low magnetic losses. The iron cylinder of the energise to hold electromagnet is of sturdy design with a bright nickel finish passivated with body mounting. Armature plates (keeper plates) exist to suit each energise to hold electromagnet unit. The energise to hold electromagnet has one central and three equi-spaced (on a PCD) tapped holes on the rear face.

ElectroMagnet with 3 Styles of Electrical Connection

Depending on the size, the energise to hold electromagnet has three styles of electrical connection:- free leads, two-pole connector and Hirschman connectors. The energise to hold electromagnet has, depending on the size, three supply voltages:- 12V dc, 24V dc and 240V ac. The energise to hold electromagnet has an ED rating of 100% and an IP rating of 54 (20 for the two-pole connector version). The energise to hold electromagnets have maximum possible pull force ratings from 113N up to 3500N (11kg to 350kg) depending on the size of unit (the actual pull achieved will depend on the application). High-quality permeable iron for low remanence.

Energise to Hold Electromagnets

Energise to Hold Electromagnets

Energise To Release Electromagnet
When activated provides a release action
Ideal for access control, security or automation projects
High quality manufacture
Available as 24VDC or 240VAC versions
Strongest magnetic performance
Easy to apply, ideal for holding heavier items
Bright nickel plated with machined face
80°C max operating temperature

Energise to Release Electromagnet, Electro-Permanent Magnet, Electro-Permanent Solenoid
Electrical power in the solenoid is required to the turn the magnet OFF. Power is removed to restore the magnet to ON. Pull force conversion (approximate):- 1kg = 10N = 2.2lb. The outer shell of this energise to release electromagnet is a sturdy bright nickel plated cylinder, passivated with body mounting. They are designed for demanding clamping and release applications. Typical applications include; door locking mechanisms for access control or security, fire door holding, medical devices , feeder systems for automated packaging machinery, pick and place equipment and power generation.

High Quality Energise to Release ElectroMagnet

The Energise to Release Electromagnet is an electro-permanent concept – a solenoid (wound copper coil) within a high quality high permeability iron assembly for high clamping forces and low magnetic losses plus a magnet build into the assembly. The iron cylinder of the energise to release electromagnet is of sturdy design with a bright nickel finish passivated with body mounting.

Armature plates (keeper plates) exist to suit each energise to release electromagnet unit. It has one central tapped hole on the rear face. Depending on the size, the energise to release electromagnet has two styles of electrical connection: Hirschman connectors and Hirschman style connectors.

The energise to release electromagnet has, depending on the size, two supply voltages:- 24V dc and 240V ac. It also has a Duty Cycle of S2. The energise to release electromagnet has an IP rating of 54. The energise to release electromagnets have maximum possible pull force ratings from 285N up to 471N (28kg to 47kg) depending on the size of unit (the actual pull achieved will depend on the application).

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