In June we added CELLER8®’s device and two accessories to the public certification registry.
June's newly certified PEMF products: the CELLER8 device and two accessories, each active and verifiable on our public registry.
A higher Gauss value doesn’t automatically beat a sharper pulse.
A higher Gauss number tells you a device's field strength, not the stimulus that reaches tissue. Here's how to weigh raw strength against a sharper waveform when two devices split the difference.
At an FEI competition, PEMF device-and-accessory pairings are only allowed if they produce less than 1,000 Gauss; certification is how you know yours does.
For competition horses, the FEI caps PEMF field strength at 1,000 Gauss. Here's what the limit means, and how a certification shows which device-and-accessory pairing stays under it.
A PEMF device’s frequency is easier to understand once you know what the band names mean.
Frequency is one of the few PEMF specs you can actually use, once you read the band name for what it is: a pulse rate, separate from strength and from the pulse edge. Here's what it tells you, what the devices we've measured actually run, and how to use it.
The accessory, not the device, sets the peak field you actually get.
On a single device, swapping the coil changed the peak field from 22,410 to 8,670 Gauss, and the lower-peak coil put out nearly twice the total field. The accessory, not the device, sets what you get.
When you’re buying a PEMF system for a horse, coverage matters more than a big Gauss value.
For a horse, a coil's coverage and how evenly its field spreads matter more than the biggest Gauss value on the spec sheet. Here's what to look for when comparing large-area PEMF accessories.
Peak strength tells you how high a pulse reaches. Rise time, fall time, and slew rate tell you how it gets there.
Rise time, fall time, and slew rate describe what a PEMF pulse does in its few microseconds. Here is what each one means, measured on a real device.
The Sota Magnetic Pulser puts out a strong, even field. We measured every setting.
We bought a Sota Magnetic Pulser and put it on our instruments. Here is its real measured output: peak field, slew rate, field reach, and pulse rate, at each setting.
How PEMF works comes down to a changing field, not a strong one.
A PEMF device works by pulsing a magnetic field on and off. It's the change, not the raw strength, that reaches your tissue, which is why a big Gauss number isn't the whole story. Here's the plain-English version.
A mat’s coil count doesn’t tell you what actually reaches your body
You're shopping for a full-body PEMF mat, and the spec that jumps out is the coil count. More coils sound like more field. But a count is a headline, and it leaves out two things that shape what your body actually gets: whether the coils fire all at once or one at a time, and how evenly the field is spread across the surface. Two PEMF mats holding the same six coils. On the left, all six coils fire together. On the right, the coils are numbered one through six and fire one at a time, with only coil one…
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