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Shieldex® RF Shielding Blanket

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Shieldex® RF Shielding Blanket

The Shieldex® RF Shielding Blanket was developed for demanding test and measurement environments in which electromagnetic interference can distort measurement results. As a flexible shielding solution, it helps to locally limit unwanted emissions, better isolate signal sources and significantly improve the validity of EMC and RF tests. Whether in the EMC laboratory, in the measuring chamber or on complex antenna setups: this shielding blanket helps to reduce interference where precision is crucial.

Commonly used for
  • EMC shielding
  • Precision measurement

Shielding effect

The Shieldex® RF Shielding Blanket effectively reduces interfering emissions and supports clean separation of relevant and unwanted signal components.

Flexible

Thanks to its textile construction, the shielding blanket can be quickly integrated, adapted and used in various test setups.

Troubleshooting

Sources of interference can be isolated and analyzed in a more targeted manner. This makes development and validation processes more efficient.

Security

More stable framework conditions lead to more reliable results in EMC and HF tests.

Reduce interference: for reliable EMC and RF results

Electromagnetic interference occurs wherever electronic systems emit, receive or unintentionally couple signals. In test environments, these effects can make it considerably more difficult to evaluate a device. If interference components are not properly detected or shielded, the accuracy of the entire measurement suffers.

The Shieldex® RF Shielding Blanket can be used to flexibly cover critical areas in the test setup. This reduces unwanted influences and allows relevant signal paths to be better evaluated. This is a decisive advantage, especially for highly sensitive measurement tasks.

More precise measurements

thanks to targeted EMC shielding

In modern test environments, even small electromagnetic influences are enough to falsify measurement results. This is exactly where the Shieldex® RF Shielding Blanket comes in. It creates flexible, selective shielding within the test setup and helps to make interfering signal components controllable. The result: fewer unwanted coupling effects, better reproducibility and greater measurement reliability for sensitive tests.

For demanding measurements

Anyone working with sensitive measurements in development, validation or quality assurance needs a solution that is reliable, flexible and powerful. The Shieldex® RF Shielding Blanket was designed for exactly this purpose: for more precise test conditions, less interference and more control over electromagnetic effects in the measurement setup.

Shielding with textile flexibility

In contrast to rigid shielding components, a textile shielding blanket offers a high degree of adaptability. This is particularly valuable when test set-ups change frequently or individual areas need to be shielded at short notice. The result is a solution that combines high shielding performance with practical handling. The metallized textile technology from Shieldex makes it possible to efficiently reduce electromagnetic interference without restricting flexibility in everyday laboratory work.

Areas of application

For EMC laboratories and measuring chambers

The shielding blanket was developed for professional applications in which a high shielding effect must be combined with easy handling.
Typical areas of application are:

– EMC measuring chambers for targeted shielding of individual components
– RF test benches for more stable test conditions
– Antenna measurements to reduce interfering secondary influences
– Shielded rooms for reproducible test scenarios
– Development and troubleshooting of electronic assemblies and systems

Technical Data

Type Solutions
Shielding performance up to 120 dB in the frequency range from 0.001 - 18 GHz
Surface resistance up to < 0.009 Ω/□
Why a Shieldex® Shielding Blanket? Minimization of electromagnetic interference within the measurement setups, facilitation of troubleshooting in the event of unwanted emissions, temporary shielding of sensitive components, stabilization of test conditions in EMC environments
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