EMS-AU Allicdata Electronics
Allicdata Part #:

T1123-AU-ND

Manufacturer Part#:

EMS-AU

Price: $ 1.39
Product Category:

Power Supplies - External/Internal (Off-Board)

Manufacturer: CUI Inc.
Short Description: INPUT PLG AUSTRALIA FOR EMSA
More Detail: N/A
DataSheet: EMS-AU datasheetEMS-AU Datasheet/PDF
Quantity: 1974
1 +: $ 1.26000
5 +: $ 1.22724
10 +: $ 1.19700
25 +: $ 1.07730
50 +: $ 1.04744
100 +: $ 0.97259
250 +: $ 0.92769
500 +: $ 0.88279
Stock 1974Can Ship Immediately
$ 1.39
Specifications
Series: EMSA
Part Status: Active
Accessory Type: Input Plug, Australia
For Use With/Related Products: EMSA Series
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

An electromagnetic wave (EM wave) is a changing electric and magnetic field, which radiates energy transversely and oscillates in a sinusoidal pattern. As these waves pass through a material body, the electric field creates current in a conductor, which is referred to as induction. The EM wave field can be controlled by the properties of the conductor that is used, such as its dimensions and material.

Electromagnetic susceptibility (EMS) is a measure of the magnitude of an electric and/or magnetic field generated by a material or system. A material is said to have EMS if the magnitude of the electric and/or magnetic field inside the material changes with the introduction of another electric and/or magnetic field.

EMS-AU applications involve the use of a metallic conductor in the form of a system or material. This conductor is exposed to an EM wave and the resulting whole-body EM wave radiation from the conductor induces an effect called absorption. The effect of absorption on EM wave radiation is referred to as Electromagnetic Absorption (EA).

EMS-AU field and working principle involve the process of creating EM wave fields that are used to control the electromagnetic susceptibility of a material or system. Typically, an EM wave is generated by a transmitter and then conducted through a wire or cable to a receiver. The received EM waves are processed to obtain the desired resulting EM wave field. The EM waves can be used to reduce the amount of EM static present in a material or system, or to reduce the electromagnetic radiation emitted by the material or system.

The application of EMS-AU can be implemented in various ways. Common examples include shielding materials and conducting wires that can be used to block the EM wave propagation from entering or leaving a particular environment, such as a room or an electronic device. Other applications include the use of EM wave-absorbing materials to reduce the amount of EM wave radiation from electronic devices. The EM waves can also be used to generate an electric field, which can be used to control the behavior of an electronic component or system.

Although EMS-AU has numerous practical applications in the world today, it is important to be aware of the potential dangers that can occur when electromagnetic fields are manipulated or stored inappropriately. Following safety guidelines and avoiding exposure to EM wave radiation should be a priority for anyone who is using or storing EM wave fields.

The specific data is subject to PDF, and the above content is for reference

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