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





     Industrial magnetisers enable the charging of both permanent magnets and magnet assemblies, with a diverse range of applications in the automotive industry. Post-assembly magnetisation of uncharged magnet assemblies enables the generation of magnetic fields with tight tolerances. The BMC Series is suitable for most industrial applications from


simple 2-pole fixtures to high energy multi-pole magnetisation such as flywheels, permanent magnet rotors or traction motors. The PLC control interfaces with the customer’s own production systems. The industrial magnetiser designed for the Ford Motor Company allows


for multi-step magnetic charging of an uncharged complex magnet rotor assembly. In operation, the unmagnetised and safe magnet rotor is manually placed into the loading position before starting the automated cycle. Once the magnet rotor is engaged and held securely, it is moved up into the centre of the magnetising fixture. The PLC control then delivers a calculated energy level to the magnetising fixture, which generates the targeted magnetic field in the magnet rotor assembly. To generate the specific magnetic properties for this particular application, the magnet rotor assembly is automatically rotated and indexed along its length. Once the charging cycle is complete, the magnet rotor assembly moves


up into the test area where the magnetic flux is measured and recorded. On completion, the charged magnet rotor assembly moves back down through the magnetising fixture and into the original loading position.


 


ADVERTORIALS


when tension is applied to it, improving the the life cycle of the cable. Visit stand F100 at Southern Manufacturing & Electronics for a live demonstration of the FIBERFOX system in use, and  easier to deploy.


Neutrik (UK) LTD  0 1983 219619  www.neutrik.com


Rugged and reliable, Neutrik Group products provide a quality connection for all your datacom needs


Neutrik Group products are used extensively in AV and broadcast industry applications, where signal and power distribution reliability is mission critical. Our wide array of connectivity solutions ensures robust data, analogue signal and power transmission in the harshest application environments. Industry leading design and manufacturing, highest quality materials, and extensive environmental and  powerCON connectors through to our latest innovation FIBERFOX.


Neutrik FIBEROX connectors are uniquely terminated with simple low cost LC patch connectors. The FIBERFOX  a standardised LC Patch cable into an expanded beam solution. With a chassis that can be serviced or replaced on-site, using standard LC patch chords. Fibrefox brings the


18 DESIGN SOLUTIONS MAY 2023


reliability and durability of HMA style connectors, to a simple and user friendly package. The system’s expanded beam technology and its


precision optical alignment imbues it with high immunity to dust, debris, liquids and other contaminations. IP-68  unmated, and on-site cleaning is a simple case of having a clean damp cloth to hand. No special tools, or expertise required. With its lightweight full aluminium construction, designed according to the MIL-DTL-83526 standard, exceptional levels of robustness and durability are a given. With the same compact D-series cutout as Neutrik’s common XLR, speakON, and opticalCON connectors, FIBERFOX is more compact than comparable systems,  


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