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Data Sheet

EFG-02E-Field Generator

Product Overview

Performance The TDK EFG-02 is a transmission- line type electric/magnetic field generator which provides an unprecedented level of flexibility in the generation of controlled, high-intensity electric and magnetic fields over the frequency range of 10 kHz to 100 MHz. It is capable of generating over 500 V/m over its entire operating frequency range using 2.5 kW amplifier and provides a large uni- form field area, thus accommodating a very large variety of DUTs.

Non-RadiatingBecause the EFG-02 is a non- radiating device, the electric and magnetic fields are essentially confined to the DUT area. Also, it provides extremely low VSWR over its entire oper- ating range thus reducing stress on the amplifier.

Unique Design The unique mechanical design of the EFG-02 greatly facilitates the characterization of unwieldy DUTs. Large or bulky DUTs can simply be wheeled or placed under the system with the aid of equipment (such as a pallet jack or forklift).

The ability generate controlled, high-intensity electric and magnetic fields over the frequency range of 10 kHz to 100 MHz and a unique design make the EFG-02 the best choice for conducting immunity testing on large, heavy, or bulky DUTs.

Features

 10kHz – 100 MHz operating range

 High power field generator

 Up to 500 V/m RSM

 Low VSWR

 Adjustable height for optimizing performance

Applications

 Immunity testing on Large, heavy or bulky DUTs

1101 Cypress Creek Road Cedar Park, Texas 78613, USA 1-512-258-9478 FAX 1-512-258-0740

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TDK EFG-02 manual Features, Applications,  Immunity testing on Large, heavy or bulky DUTs

EFG-02 specifications

The TDK EFG-02 is a state-of-the-art electronic component that exemplifies TDK's commitment to innovation and quality in the field of passive electronic devices. Designed primarily for use in power supply applications, the EFG-02 offers an array of features that enhance performance and reliability in various electronic circuits.

One of the key characteristics of the TDK EFG-02 is its compact size, which allows for easy integration into space-constrained designs. With its optimized footprint, engineers can incorporate the device into a wide range of applications without needing to sacrifice board space. This compactness does not compromise the performance, as the EFG-02 is engineered to handle high switching frequencies, making it suitable for modern power management systems.

The EFG-02 employs advanced ferrite core technology, which contributes to its exceptional efficiency and low core losses. This results in reduced heat generation and improved thermal management, ultimately leading to a longer lifespan for the device. Additionally, the EFG-02 features low equivalent series resistance (ESR), which minimizes power loss during operation, thus elevating the overall efficiency of power circuits.

Another notable aspect of the TDK EFG-02 is its environmental resilience. The device is designed with robust materials that withstand a wide range of operating temperatures and environmental conditions. This makes it ideal for use in automotive, industrial, and consumer electronics applications where reliability and durability are paramount.

Furthermore, the EFG-02 excels in electromagnetic interference (EMI) suppression. This is essential in today's electronic devices to ensure compliance with stringent regulatory standards and to maintain the integrity of signal transmission. The built-in shielding and filtering capabilities of the EFG-02 help prevent unwanted noise from affecting the overall performance of electronic systems.

In summary, the TDK EFG-02 stands out in the market due to its combination of compact design, advanced ferrite core technology, low ESR, and superior EMI suppression. These features make it a highly sought-after component for engineers looking to enhance the efficiency and reliability of their power supply designs. TDK's dedication to innovation ensures that the EFG-02 remains a preferred choice for contemporary electronic applications, paving the way for future advancements in passive electronic components.