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Endless Applications...

Rapid Assembly/Disassembly

Scaffolding, Furniture, trusses, and more can be designed with assembly guidance built in to the Polymagnet. Correlated magnetics technology can ensure attachment is between intended elements and at the proper alignment to eliminate installation and assembly error.


Automation enablement

Contactless attachment, workholding power, and movement paths are enabled through correlated magnetics. Patented electromagnet array technology promises traction without friction and secure attachment to move objects and exploit vertical surfaces such as wall-space.


Child safety

Strong, secure coupling force and a prescribed release function can insure the proper installation of safety devices and enable adult-only locks and doors. Poisons, medicines, and dangerous chemicals can be safely and securely stored with confidence.


Mechanical energy store

Correlated Magnetics Research has produced multi-force magnets that repel at a distance and attract when in close proximity. This can be exploited to trigger full repel force energy release through vibration, impact, surface perturbation, or even an electronic charge.


Pointing & alignment

Laser pointers, cameras, scopes, optics and other position-sensitive devices can rely on Polymagnets for repeatable, reliable positioning every time.  Polymagnet alignment can be engineered to any tolerance. The magnetic fields endure permanently and will not vary over time.  


Rare-earth multiplier

MaxField™ technology means that your magnetic material can go much further than ever before. MaxField has demonstrated coupling and shear force improvement in excess of 600% over conventional single dipole magnets. MaxField delivers savings in size, weight, and materials cost.


Magnetic field imaging

CMR’s MagPrinter can create magnetic fields with such precision that magnetic images are enabled. Three-dimensional image reproduction, logos, trademarks, magnetic ink applications, ferrofluid art, and even advanced security concepts are empowered through correlated magnetics.


Each Polymagnet™ comprises a plurality of pixel-like magnetic elements (maxels) each of which can exhibit either positive or negative polarity. The arrangement or pattern of these maxels creates an aggregate magnetic field that defines the Polymagnet device and therefore its behavior relative to ferrous metal objects and other magnets. Correlated magnetics is the interaction among Polymagnets, which is governed by their aggregate magnetic fields and relative orientation in space. Correlated magnetics can tailor magnet force curves to meet your specific application requirements. Polymagnets can be programmed to have unique identities, to exhibit multiple forces simultaneously, and to provide significant improvements in magnet behavior over conventional dipole magnets.

 

CMR’s patented correlated magnetics technology can also be implemented using arrays of conventional magnets or electromagnets.





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