B39182B9888P812 Allicdata Electronics
Allicdata Part #:

B39182B9888P812-ND

Manufacturer Part#:

B39182B9888P812

Price: $ 0.00
Product Category:

Filters

Manufacturer: Qualcomm (RF360 - A Qualcomm & TDK Joint Venture)
Short Description: MOBILE SAW FILTER 1109
More Detail: N/A
DataSheet: B39182B9888P812 datasheetB39182B9888P812 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: *
Part Status: Last Time Buy
Frequency - Center: --
Bandwidth: --
Insertion Loss: --
Ratings: --
Applications: General Purpose
Mounting Type: --
Package / Case: --
Height (Max): --
Size / Dimension: --
Description

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Introduction
B39182B9888P812 is a SAW (Surface Acoustic Wave) filter, which is widely used in radio communication and telecommunication industry. This filter is capable of providing excellent suppression and pass band characteristics with moderate insertion loss. With its sturdiness, size and cost advantages, this SAW filter is an ideal choice for a variety of radio communication systems as well as emerging telecommunication applications.
Application Field and Working Principle
B39182B9888P812 filters are mainly used for cellular base stations, but they are also used for broadband communications, GPS receivers, wireless LANs, WiMAX/CDMA, and public service markets of broadcast TV and satellite TV. This SAW filter works by converting the input electrical signal into an acoustic wave, and then separating the wanted frequencies from the unwanted ones in the acoustic wave. This is done by using SAW resonators and high Q filters. The unwanted frequencies are then filtered out, and the desired frequencies are passed to the output side.
SAW filters are generally composed of a piezoelectric substrate and an electrode pattern composed of interdigital fingers. The main components of B39182B9888P812 are the surface transducers, resonators, and high-Q filters. The surface transducers convert the input electrical signal into mechanical vibrations, which are then sent to the resonators. The resonators are specially designed to resonate only at a certain frequency. By controlling the number of interdigital fingers, they can be tuned to resonate at different frequencies. The output of the resonators is then sent to the high-Q filters. The high-Q filters are tuned to pass only the desired frequencies through the output port while rejecting all the others.
The main advantage of B39182B9888P812 is that it has an exceptionally low insertion loss, especially compared to other types of filters. It also has a good suppression of out-of-band interferers, which makes it ideal for use in crowded radio frequency environments. It is also immune to temperature variations and humidity, making it very reliable in harsh conditions.
Apart from these advantages, B39182B9888P812 has a very low profile, as it can be easily integrated into a number of applications. Another advantage is that it offers excellent temperature stability, which is essential for reliable operation. It also offers excellent phase and group delay characteristics, making it suitable for a variety of uses, including modulation and demodulation of signals.
Conclusion
In conclusion, B39182B9888P812 is an excellent SAW filter that has a wide range of applications in radio communication and telecommunication industry. It is capable of providing an excellent pass band characteristics and low insertion loss with temperature stability and high suppression of out-of-band interferers. It is also immune to temperature variations and humidity, making it very reliable in harsh conditions. With its sturdiness, size and cost advantages, this SAW filter is an ideal choice for a variety of radio communication systems as well as emerging telecommunication applications.

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