Lewm wrote,
"Geoff, I would have thought that "EMI absorption" is but a more concise term for "low frequency magnetic field absorption". Especially since my reading also tells me that the forte of mu metal as a shield is to block or contain EMI, rather than RFI. As I understand it, mu metal is not much good with RFI. Please correct me, if I am off base here."
actually mu metal absorbs magnetic field, that’s why they refer to mu metal as high permeability material, it allows magnetic fields to permeate the material. The correct mu metal for transformers is low frequency high permeability mu metal. EMI is electromagnetic whereas magnetic fields are not electric, strictly magnetic, I.e., gauss the magnetic fields are absorbed not blocked or shielded. Mu metal might actually be good for RF since it is a metal alloy, mostly steel, like a chassis frequently. But conductive materials like ERS cloth are generally of no use against magnetic fields.
"Geoff, I would have thought that "EMI absorption" is but a more concise term for "low frequency magnetic field absorption". Especially since my reading also tells me that the forte of mu metal as a shield is to block or contain EMI, rather than RFI. As I understand it, mu metal is not much good with RFI. Please correct me, if I am off base here."
actually mu metal absorbs magnetic field, that’s why they refer to mu metal as high permeability material, it allows magnetic fields to permeate the material. The correct mu metal for transformers is low frequency high permeability mu metal. EMI is electromagnetic whereas magnetic fields are not electric, strictly magnetic, I.e., gauss the magnetic fields are absorbed not blocked or shielded. Mu metal might actually be good for RF since it is a metal alloy, mostly steel, like a chassis frequently. But conductive materials like ERS cloth are generally of no use against magnetic fields.