R&D: Evaluation of the effective range of the LIFETUNE ZONE MAX (2022 model) at a frequency of 4.9 GHz (Wi-Fi 5G)

This site has limited support for your browser. We recommend switching to Edge, Chrome, Safari, or Firefox.

Free Shipping On Orders $100+

Cart 0

Congratulations! Your order qualifies for free shipping You are $100 away from free shipping.
No more products available for purchase

Products
Subtotal Free
Shipping, taxes, and discount codes are calculated at checkout

Your Cart is Empty

R&D: Evaluation of the effective range of the LIFETUNE ZONE MAX (2022 model) at a frequency of 4.9 GHz (Wi-Fi 5G)

R&D: Evaluation of Effective Range of LIFETUNE ZONE MAX at 4.9 GHz (5G)

Download Original PDF

400 APPLEWOOD CRESCENT UNIT 100 VAUGHAN, ONTARIO, L4K 0C3, CANADA 1 (855) 725-2034 | WWW.AIRESTECH.COM

American Aires Inc. Research and Development department

American Aires Inc. Research and Development department

REPORT

R&D: Evaluation of the effective range of the LIFETUNE wONE MAu (2022 model)

at a frequency of 4.9 GHz (ti-Fi 5G)

2022

2

The protective properties of the LT wONE MAu are due to its ability to coherently convert the technogenic electromagnetic radiation of mobile communications without weakening the original signal.

An electromagnetic field converted using the LT wONE MAu is a stationary coherent wave superposition with a corresponding energy density characterized by intensity I (see table). Calculations were made for the frequency 4.9 GHz, which is standard for ti-Fi radiation and 5G mobile communications. The effectiveness of the LT wONE MAu was estimated based on the intensity of the field transformed into a coherent form, determining the zone of maximum action.

The stable electromagnetic field generated by the LT wONE MAu has several fractal levels due to the number of ring elements in the topological circuit of its microprocessor and the size of the circuit itself. Outside the zone of maximum action, the density of the highly coherent field begins to decrease and, accordingly, the effectiveness of the device decreases.

Table of the basic parameters of the LT wONE MAu

Diameter of the 64P1S5G microprocessor circuit 0.02 m Number of elements in the topological circuit

of the microprocessor 4161

Device size 0.065 m / 0.122 m Diameter of the maximum effective zone of influence 0.78 m Recommended coverage diameter of the effective influence 41.8 m Intensity I of the EM field in the maximum effective zone

for the frequency 4.9 GHz (5G) 2.65*105 t/m2

Fig. 1 shows the scale of the drop in the LT wONE MAu's effectiveness using the example of its interaction with ti-Fi radiation at a frequency of 4.9 GHz (I ~ 5.76 t/m2).

Fig. 1 shows the scale of the drop in the LT wONE MAu's effectiveness using the example of its interaction with ti-Fi radiation at a frequency of 4.9 GHz (I ~ 5.76 t/m2).

3

then the protective electromagnetic field's intensity decreases to the parameters of the intensity of external radiation, the LT wONE MAu's effectiveness drops to zero.

If there are several external sources of radiation, it is necessary to use several devices LT wONE in conjunction with the LT wONE MAu, since the external radiation's total intensity dramatically reduces the LT wONE's zone of effective influence.

If there are powerful external sources of radiation, such as server data centers or cryptocurrency mining farms, as well as to cover large amounts of space, it is necessary to use several LT wONE MAu and LT wONE devices in a complex with the individual means of protection (LT FLEu, LT GO, LT ONE), since the external radiation's total intensity dramatically reduces the LT wONE MAu's zone of effective influence.

The decrease in effectiveness is determined by the decrease in the intensity of the protective EM field, which is inversely proportional to the square of the distance from the device (LT wONE MAu) and is estimated using the following formula:

𝐼𝐼~ 1

𝑅𝑅2 .

At a distance of ~ 20.9 m from the center of the LT wONE MAu (for EMR at a frequency of 4.9 GHz), the intensity of the protective field reaches a value at which the effectiveness drops to a critical level (see Fig. 2), determining the boundary of a highly coherent spherical field with a diameter of ~ 41.8 m.

4

Thus, the recommended coverage diameter of the effective influence of the LT wONE MAu is ~ 41.8 m.

The indicated distances are reached in open space.

Figure from LT_ZONE_MAX_en_v2