NKRSMYEIY Allicdata Electronics

NKRSMYEIY Connectors, Interconnects

Allicdata Part #:

NKRSMYEIY-ND

Manufacturer Part#:

NKRSMYEIY

Price: $ 0.00
Product Category:

Connectors, Interconnects

Manufacturer: Panduit Corp
Short Description: NK RCA MODULE
More Detail: Insert RCA (Phono) Jack, Female Socket To Solder L...
DataSheet: NKRSMYEIY datasheetNKRSMYEIY Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Exterior Contact Material: --
Interior Contact Finish Thickness: --
Exterior Contact Finish Thickness: --
Features: --
Specifications: Yellow Interior
Ratings: --
Operating Temperature: --
Interior Contact Finish: --
Exterior Contact Finish: --
Interior Contact Material: --
Series: NetKey®
Interior Housing Color: Ivory
Exterior Housing Color: Ivory
Interior Housing Material: Acrylonitrile Butadiene Styrene (ABS)
Exterior Housing Material: Acrylonitrile Butadiene Styrene (ABS)
Interior Type (Adapter End): Solder Lug
Exterior Type (Adapter End): RCA (Phono) Jack, Female Socket
Style: Audio/Video
Lead Free Status / RoHS Status: --
Part Status: Obsolete
Description

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NKRSMYEIY Application Field and Working Principle

NKRSMYEIY (Noise Acoustic Radiation and Scattering Modeling of Moving Loads in Yielding Elastic Isomeric-Yielding Environments), is a complex multiphysics simulation procedure developed by the University of Paderborn, Germany, to model noise radiations and scattering resulting from moving loads on a yielding elastic isomeric-yielding environment. It has a wide variety of application fields, such as acoustics, civil engineering, structural design, and material science.

Application Field

NKRSMYEIY can be used to simulate the acoustic radiation and scattering of moving loads on a yielding elastic isomeric-yielding environment. This analysis is particularly useful in cases where acoustic radiation or scattering is a critical concern, such as acoustic energy dissipation for soundproofing, or vibration control by restriction of the energy flow.

NKRSMYEIY is applicable to many fields, including aerospace engineering, civil engineering, noise pollution control, material sciences, and structural design. It can also be used to analyze the acoustic field of aircraft engines, building air conditioning systems, sound systems in concert halls, etc. These applications can help to improve the acoustic quality of the environment and reduce the impact of noise on the people living or working in the area.

Working Principle

NKRSMYEIY is based on a combination of the finite element method and boundary element method. It takes into account the air properties, boundary conditions, and elastic isomeric-yielding properties of the medium to accurately model the noise radiation and scattering. The procedure starts by setting up the model, including the mesh, and defining the materials and boundary conditions. Then, the acoustic radiation and scattering is calculated based on the physical principles, taking into account the parameters such as sound speed, coherence length, source/listener position, azimuth angle, and acoustic power.

Once the acoustic radiation and scattering is calculated, the procedure can be used to study the scattering patterns from load movements and how they propagate through the environment. This can be used to optimize the design of soundproofing and vibration control systems, since they must take into account not only the acoustic field of the source, but also the scattering patterns produced by the load movements.

Conclusion

NKRSMYEIY is a complex simulation procedure developed to analyze the acoustic radiation and scattering of moving loads on a yielding elastic isomeric-yielding environment. It has a wide range of applications in various fields, including aerospace engineering, civil engineering, noise pollution control, material sciences, and structural design. In particular, it can be used to optimize the design of soundproofing and vibration control systems, since they must take into account not only the acoustic field of the source, but also the scattering patterns produced by the load movements.

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

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