KUSC2-WWCPT Allicdata Electronics
Allicdata Part #:

KUSC2-WWCPT-ND

Manufacturer Part#:

KUSC2-WWCPT

Price: $ 4.94
Product Category:

Uncategorized

Manufacturer: Eaton
Short Description: TERMINAL BLOCK
More Detail: N/A
DataSheet: KUSC2-WWCPT datasheetKUSC2-WWCPT Datasheet/PDF
Quantity: 1000
250 +: $ 4.49064
Stock 1000Can Ship Immediately
$ 4.94
Specifications
Series: *
Part Status: Active
Description

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KUSC2-WWCPT is a research applications field which makes use of the new acoustic source manufactured by KUSC2-WWCPT. This source is only applicable in shallow water (less than 35m) and is suitable for research applications such as ocean seabed imaging and bathymetric and sediment research studies. Its working principle is based on the new concept of sending soundwaves over a large area, then receiving the return of the signal from the target via multiple receivers. The receivers are located up to 1000m apart, which allows the signal to get over greater distances than has been possible with conventional acoustic sources.

This form of acoustic source transmission is known as Wide Angle Reflection Analysis (WARA). When the signal is sent from the source to the target, the signal is received by the receivers in a wide fan-like pattern. This means that a maximum of 1000m radius can be covered in one shot. The signal reflected from the target is then analyzed by the receivers, and a 3-D image of the region is then generated.

KUSC2-WWCPT is pioneering a new form of ocean research, allowing for greater accuracy in shallow water mapping and also enabling researchers to study the sea floor composition with more precision than before. By using the WARA system, instead of conventional sources, wide angle reflection data can be obtained which can provide a better understanding of the behavior of the sea floor. The WARA system allows for greater resolution of the sea floor composition, particularly when surveying within close range of the surface.

The primary advantage of using KUSC2-WWCPT is that the system is capable of collecting data over much larger areas than traditional methods, reducing time and cost for researchers. Additionally, due to its wide angle capabilities, it is able to accurately map the sea floor composition over a larger area. This is especially useful for studying sea floor morphology or investigating sediment and seabed composition in greater detail.

Despite the advantages of the WARA system, there are still some issues that need to be addressed. For example, the signal transmission is limited by the range of the receivers. As a result, there is a risk of under-sampling the target region, leading to errors in the generated image. Additionally, the WARA system can be subject to noise interference from external sources, which could lead to inaccurate data collection.

In conclusion, KUSC2-WWCPT is an innovative and exciting research field which has the potential to revolutionize ocean research by providing a more comprehensive depiction of the sea-floor composition. The WARA system is able to collect large data sets over relatively short time periods, reducing the cost of ocean mapping and allowing for greater accuracy in analyzing the sea floor. Despite the advantages of this system, there are still some issues which need to be addressed in order to maximize the potential of this technology. Nevertheless, it can be assumed that KUSC2-WWCPT will only continue to develop and become an integral part of ocean exploration and research.

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

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