Allicdata Part #: | LH165D05-ND |
Manufacturer Part#: |
LH165D05 |
Price: | $ 0.00 |
Product Category: | Uncategorized |
Manufacturer: | Sharp Microelectronics |
Short Description: | ELECTRONIC COMPONENT OPTO |
More Detail: | N/A |
DataSheet: | LH165D05 Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Specifications
Series: | * |
Part Status: | Obsolete |
Description
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LH165D05 is one of the latest models of microwave remote sensing instruments developed by the Chinese Academy of space technology and used for research, development and other applications of weather and climate. It is especially suitable for scientific remote sensing applications such as monitoring of clouds, aerosols and water vapor.This type of instrument uses a method of receiving atmospheric radiation from space and ground, and then converting the radiation into electrical signals as a means to measure and record clouds, aerosols and water vapor in the atmosphere. This type of instrument is based on the principle of the dual-wavelength differential absorption lidar. The main instrument of LH165D05 is composed of three parts: an electro-optical unit, a signal processing unit and a control and processing part.The electro-optical unit consists of a laser source, a laser target, a focusing component, a beam expander, an optical lens, an electro-optical aperture window, an optical filter, a detector and an optical fiber. The laser source is a light-source laser excited by an individual spark gap. It can emit light of two different wavelengths. The laser target is used to transmit the laser beam and the focusing component is used to focus it onto the electro-optical aperture window. The beam expander is used to increase the beam width and optimize the beam quality. The optical lens converges the laser beam into a focused shape and the optical filter is used to render the laser light into two different wavelengths. The signal processing unit is used to receive the returned signal from the atmosphere and convert it into electrical signals of two wavelengths. The optical filter can separate these two signals. The returned signals will then be backscattered to the receiver and processed to obtain the required parameters. The control and processing part is composed of a data logger, a host computer, and software. Data from the detector can be processed with offline or real-time processing software to obtain the parameters required to indicate clouds, aerosols and water vapor in the atmosphere.The working principle of LH165D05 is based on the differential absorption lidar technology. It uses dual-wavelength laser pulses to measure atmospheric parameters such as water vapor and aerosols. In this way, the difference between the signals returned from two different wavelengths can be used to infer the amount of atmospheric gas.The applications of LH165D05 include research on regional air quality, monitoring of dust storms, clouds and aerosols, and research on climate change due to extreme weather conditions. In addition, the instrument can be used to trace the vertical distribution of atmospheric water vapor and aerosols, and to study the interaction between cloud and aerosol systems.LH165D05 is an important tool used for research and understanding of the atmosphere, and can provide important parameters for a wide range of applications. With its precise measurement technology, it can help us better understand the atmosphere and its dynamics.
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