Reducing Hysteresis Loss using LMDR
Laser Magnetic Domain Refinement (LMDR) offers a promising approach to minimize hysteresis loss, a major contributor to core loss in…
LMDR on Core Loss
LMDR utilizes a focused laser beam to introduce controlled thermal shocks onto the surface of the electrical steel. These thermal…
Core loss, Hysteresis, and Eddy Current in Electrical Steel
In electrical steel, used in transformers, motors, and other magnetic components, core loss represents the energy wasted as heat due…
LMDR and Transformer Efficiency
Laser Magnetic Domain Treatment (LMDR) has emerged as a promising technology for improving the efficiency of transformers by modifying the…
How LMDR improves the efficiency of motors
Laser Magnetic Domain Refinement (LMDR) isn’t just a transformer whisperer; it’s also making waves in the motor world by enhancing…
LMDR-treated motors: Choosing the Right Steel
Laser Magnetic Domain Refinement (LMDR) isn’t just a one-trick pony when it comes to motor efficiency. It can dramatically improve…
LMDR to balance the cost and efficiency on the choice of GOES and NOES
While LMDR offers exciting potential for both GOES and NOES in motors, it’s not without its limitations, and the choice…
The bottleneck of motors and how LMDR can help to improve the efficiency
In the bustling world of motors, where electricity transforms into motion, efficiency reigns supreme. But even the most advanced motors…
Electrical Steel
Electrical steel, also known as silicon steel or lamination steel, is a specific kind of steel made to have excellent…