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Increased Screwworm Awareness Is a Reminder That Wound Care Matters for Every Animal

Recent concerns surrounding New World Screwworm have prompted veterinarians, livestock producers, horse owners, pet owners, and animal caretakers across the country to pay closer attention to wound management and animal health. New World Screwworm (Cochliomyia hominivorax) is a parasitic fly whose larvae feed on living tissue. Female flies are attracted to open wounds and can

PEMF Research & Case Studies

From Unable to Stand to Running and Playing: Ferguson’s Recovery Journey

At just a few weeks old, Ferguson faced challenges no puppy should have to endure. Weighing less than 1.5 pounds

Alleviating Arthritis with MagnaWave

The goal when showing and producing livestock is to have them always feel, look, and perform their best. During shows,

Improve Your Dog’s Torn Ligament With MagnaWave

The Cranial Crucial Ligament (CrCL) is an important stabilizer located in the hind stifle, which is similar to the knee

Working & Service Animals

How MagnaWave PEMF Can Support Horses with Kidney Failure

How MagnaWave PEMF Can Support Horses with Kidney Failure Kidney failure in horses is a serious health issue that can

Showstock & Breeding

Supporting Show Cattle Mobility with Targeted MagnaWave PEMF Sessions

For show cattle, comfortable movement matters. When a show cow experienced a mild stifle injury just weeks before an upcoming

Enhancing Agility in Dogs: The Power of MagnaWave

Enhancing Agility Dogs’ Performance with MagnaWave PEMF Agility dogs are impressive athletes, showcasing remarkable speed, flexibility, and coordination. Whether they

Using ROC Red Light Therapy for a Healthy Coat in Show Animals

Performance Animals

Enhancing Agility in Dogs: The Power of MagnaWave

Enhancing Agility Dogs’ Performance with MagnaWave PEMF Agility dogs are impressive athletes, showcasing remarkable speed, flexibility, and coordination. Whether they

Promoting Equine Joint Health with MagnaWave

How MagnaWave PEMF Can Support Horses with Kidney Failure

How MagnaWave PEMF Can Support Horses with Kidney Failure Kidney failure in horses is a serious health issue that can

MagnaWave Products & Services

Does MagnaWave Work?

Does MagnaWave Work? There’s growing interest in alternative animal modalities, and MagnaWave PEMF is gaining traction for its non-invasive, pain-free

Winter Care Tips for Your MagnaWave Machine and Attachments

Winter Care Tips for Your MagnaWave Machine and Attachments Getting Prepared As the winter chill sets in, it’s crucial to

Ten Common Misconceptions about MagnaWave and PEMF

Understandably, sometimes there are misconceptions about MagnaWave’s machines and their usage. Not everyone is familiar with PEMF, and misinformation can

Livestock Health & Production

Case Study: Rescuing Cows from Mastitis, Paving the Way for Healthier Herds

Challange In May of 2022, Vosberg Valley View Farm confronted a devastating crisis. Cows were falling prey to toxic mastitis,

MagnaWave PEMF for Cushing’s Disease

MagnaWave PEMF for Cushing’s Disease: A Natural Support for Equine Health Cushing’s disease, also known as Pituitary Pars Intermedia Dysfunction

How MagnaWave PEMF Supports Horses with Navicular Disease

How MagnaWave PEMF Supports Horses with Navicular Disease What is Navicular Disease? Navicular disease affects the navicular bone and surrounding

Recent Case Studies

MagnaWavePEMF machine lineup with Julian Duo, Maia Pro, Sol Rp, Semi 10, and Julian

Analog PEMF Machines vs Digital PEMF Machines

MagnaWave PEMF Machines Analog VS Digital

How an Analog Spark Chamber Works: The Capacitor

How the spark plasma chamber, also known as the spark chamber, in an analog PEMF machines works begins with the capacitor. The capacitor is where the power builds up into the machine to get the strength needed to approach whatever it is you’re dealing with in using the machine.

The capacitor is on one side then we have a spark chamber on the other. Then we have the coil that is part of the whole process. The power comes into the machine then the capacitor which is a lot like a well, or a barrel begins to fill up. When it hits a particular power level it is regulated by the spark chamber.

Analog vs. Digital for Dummies

Analog vs. Digital with our MagnaWave Engineer

How and Analog Spark Chamber Works: The Electrodes

The spark chamber has two electrodes inside it. If they’re farther apart the spark that is generated will be stronger. If they’re very close together the spark that is generated will be smaller and not quite so powerful. The separated power begins to build up until it hits a level that will cause a spark to jump between the two electrodes.

When that occurs the power that’s generated travels out of the coil (or out of the cord) and goes into the coil. Once the power travels around the coil we have a circle and anyplace we have a circle we get a signal. So, there’s how the signal was generated.

How an Analog Spark Chamber Works: The Circle

When we have this circle, a magnetic field is created. It comes out of the capacitor into the spark chamber when the power level (which is dictated by the electrodes) is reached then it will fire and it will come around and power the coil. If these electrodes are very close together then the spark that is generated is very small and less power is generated through to the coils, so the magnetic field that is generated is not quite as strong.

Device diagram

How a Digital Machine Works

On a digital PEMF machine, there is no longer a spark chamber. There is a computer chip. Let’s suppose we’ve got five settings. One is at the top, five is at the bottom. If you set your machine, for example on a two, the power begins to build up. The second opening is available so when it gets enough power to go through the second opening then it’ll come out, charge and send a signal around to the coil. It takes more power from the capacitor to fire from the five setting (because it’s farther away) and send a stronger signal.

One is physical in that you have a spark chamber with electrodes. The space of the electrode determines how much power is released. On the digital system you have a little computer chip with various openings. You select the opening, when it’s got enough power to fire through then it will release the power and then will go into the coil. Feel free to contact us with questions!