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Various Electromagnetic Protective Clothing
Electromagnetic Shielding Material
For human bodyMGnet
Japan Patent No. 392205 / US Patent No. US6.855.883.B1
Reflects high frequency electromagnetic waves
MG(Microwave Guard)net
- ・Blocks high frequency electromagnetic waves (100kHz to several tens of GHz)
- ・Anti-static (static)
- ・High durability (resistant to bending and friction)
- ・High light transmittance, breathability, and heat dissipation
- ・Ultra-lightweight(20g/㎡)
- ・Conductive rust prevention processing (performance maintained for more than 2 years)
- ・Long fibers reduce the production of fluff and dust
- ・Won't fray even when cut
- 1.MGnet 2 layers
- 2.High frequency electromagnetic waves
- 3.Electromagnetic wave reflection
Silver fiber (nylon99.9% pure silverIt is a material made by weaving nylon fiber (coated with 1.0% mercury) into a special honeycomb mesh (mesh size of about 1 mm), and combines the properties of nylon fiber (lightweight and flexible), silver (conductivity, electromagnetic shielding, antibacterial properties), and honeycomb mesh (durability, translucency, ventilation, and heat dissipation). It is also treated with conductive rust prevention to prevent deterioration of the silver fiber.
Electromagnetic Shielding Test
KEC method electric field shielding data
The following is the electric field shielding data (in dB: decibels) for each frequency when 1 to 4 MGnet sheets are stacked.
※It has a shielding performance of 99% at 40dB and 99.9% at 60dB. When used for electromagnetic wave protective clothing, the shielding performance of MGnet 2 layers (32 to 40dB) is optimal.
※If the shielding performance is too high (60 dB or more), the effects of reflection and resonance become greater, amplifying electromagnetic waves inside the human body and causing hot spots.
Comparison of shielding performance against near-field electric fields by overlapping MGnets (KEC method): Measurement Limit indicates the measurement limit value. It can be seen that overlapping MGnets improves shielding performance against high-frequency electromagnetic waves from 1 MHz to 2.5 GHz from 20 dB to 60 dB.
KEC method for measuring electric field shielding
Comparison of electromagnetic shielding performance by overlapping MGnets
A comparison was made of the electromagnetic wave shielding performance of overlapping MGnets. The shielding performance against near electric fields was measured using the KEC method as shown on the right. The results are shown in the table and graph above. These results show that overlapping MGnets improves the shielding performance against high frequency electromagnetic waves from 1MHz to 2.5GHz.
Measurement method for shielding effectiveness against near electric fields using the KEC method (Figure 1)
▲(Figure 1)
Free space method electric field shielding data
This is the electric field shielding data (in dB: decibels) when 1 to 6 MGnet sheets are stacked for each frequency.
Shielding performance evaluations of MGnet in each frequency band were carried out by HVS Technologies, Inc. (a specialist insti- tutional for electromagnetic absorbing shielding materials and test facilities attached to the Electro-Acoustic Research Center) in the United States. As a result, electromagnetic shielding performance was confirmed with a shielding rate of 30 to 40 dB or more at frequencies between 0.045 GHz and 1.4 GHz, and a shielding rate of 20 to 40 dB or more at frequencies between 7.75 GHz and 13.0 GHz. Details are shown in Table 2.
▼Table 2 Shielding performance evaluation for each frequency band of MGnet
Test Date | December 10, 1997 |
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Measurement Facility | HVS Technologies, Inc. (A US-based company specializing in electromagnetic absorption shielding materials and test equipment, affiliated with the Electroacoustic Research Center) |
Measurer | Prof. Vijay K. Varadan (Center for Electroacoustic Materials and Device Engineering, Pennsylvania State University, USA) |
Electromagnetic wave shielding material used | MGnet |
Measuring Equipment | HVS Free Space Microwave Measurement System |
How to Measure | Measurement of electromagnetic wave absorption rate and transmission attenuation rate of MGnet using HVS Free Space Microwave Measurement System |
Measurement results |
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