B39182B9487P810 Allicdata Electronics
Allicdata Part #:

B39182B9487P810-ND

Manufacturer Part#:

B39182B9487P810

Price: $ 0.00
Product Category:

Filters

Manufacturer: Qualcomm (RF360 - A Qualcomm & TDK Joint Venture)
Short Description: FILTER SAW 1.795GHZ 5SMD
More Detail: N/A
DataSheet: B39182B9487P810 datasheetB39182B9487P810 Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 3 (168 Hours)
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: B9487
Packaging: Bulk 
Lead Free Status / RoHS Status: --
Part Status: Obsolete
Moisture Sensitivity Level (MSL): --
Frequency - Center: 1.795GHz
Bandwidth: 20MHz
Insertion Loss: 1.3dB
Ratings: --
Applications: Cellular, SCDMA
Mounting Type: Surface Mount
Package / Case: 5-SMD, No Lead
Height (Max): 0.016" (0.40mm)
Size / Dimension: 0.055" L x 0.043" W (1.40mm x 1.10mm)
Description

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Surface acoustic wave (SAW) filters are a type of electronic filter, with applications in a wide number of different fields. The B39182B9487P810 is a type of SAW filter, itself made up of a number of individual components such as the quartz crystal substrate, electrodes, and ground plane material. By heating and cooling the substrate, different sound waves can be generated, allowing for the creation of complex waveforms. The SAW filter is then used to pass or block specific frequency ranges, depending on how the waveforms fit together in the filter.

The application areas of a SAW filter such as the B39182B9487P810 are wide and varied. One of the most common applications is its use in communication systems; due to its ability to pass and block certain frequency ranges, a SAW filter can be used to separate out interfering signal components or unwanted noise. This is especially useful in devices such as two-way radios, allowing for clearer voice communication.

Satellite communications also benefit from the use of SAW filters. The ability to pick out a specific frequency or frequency range is useful in this application, allowing the user of a satellite dish to achieve a much better signal-to-noise ratio and clearer signal reception. Similarly, broadband access has been made much easier thanks to the use of SAW filters.

Apart from the more general application areas, SAW filters such as the B39182B9487P810 are often used for more specialized tasks. One of the most common is in navigational systems, where the filter can be used to improve accuracy and reliability. These filters are also used in medical equipment which requires exact control over frequencies. It can even have uses on land, in vehicles and other transportation such as trucks and trains, as it can help to detect vibrations and provide information to the onboard computer.

The working principle of a SAW filter is based on the generation of an acoustic array. When a Quartz crystal is heated and cooled systematically, a sequence of sound waves is generated, each with its own unique frequency. These waves can form an array, which is then amplified and split into two parts. One part will pass through the filter, while the other will be blocked. This allows for the selection of a specific frequency, or range of frequencies, which will be passed and all others will be blocked, depending on the design of the filter.

The combination of heating and cooling creates a ripple effect in the Quartz crystal, which produces the acoustic wave. As this wave is passed through the filter, it is modified by interactions with the electrodes, and the ground plane material. This modification enables the filter to pass or block certain frequency ranges, allowing the user to pick out only those signals or frequencies they wish to, and reject those they do not wish to. This is the primary working principle of a SAW filter.

Overall, SAW filters are becoming increasingly useful, thanks to their ability to pass and block specific frequencies with ease. The B39182B9487P810 is a type of SAW filter, which can be used in numerous applications, from communication systems to navigational systems. By heating and cooling a Quartz crystal substrate, acoustic waves are created which interact with the filter components to create a waveform. This waveform can then be manipulated to pass or block specific frequency ranges, depending on the exact design of the filter.

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

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