| Allicdata Part #: | B39171B3882Z710V3-ND |
| Manufacturer Part#: |
B39171B3882Z710V3 |
| Price: | $ 0.00 |
| Product Category: | Filters |
| Manufacturer: | Qualcomm (RF360 - A Qualcomm & TDK Joint Venture) |
| Short Description: | FILTER SAW 168.96MHZ 10SMD |
| More Detail: | N/A |
| DataSheet: | B39171B3882Z710V3 Datasheet/PDF |
| Quantity: | 1000 |
| 1 +: | 0.00000 |
| Series: | B3882 |
| Part Status: | Obsolete |
| Frequency - Center: | 168.96MHz |
| Bandwidth: | 4.9MHz |
| Insertion Loss: | 13dB |
| Ratings: | -- |
| Applications: | Cellular, CDMA |
| Mounting Type: | Surface Mount |
| Package / Case: | 10-SMD, No Lead |
| Height (Max): | 0.043" (1.10mm) |
| Size / Dimension: | 0.360" L x 0.189" W (9.15mm x 4.80mm) |
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SAW Filters
Surface acoustic wave (SAW) filters are a type of filter used to achieve a high degree of precision in electronic signal processing applications. They have been in use for many decades, ever since their invention, and they continue to be in popular use today. They offer advantages over traditional passive filters, such as greater precision, increased selectivity, and improved frequency stability. In this article, we will discuss the application field and working principle of the specific SAW filter model B3917B3882Z710V3.
Application Field of B3917B3882Z710V3
The B3917B3882Z710V3 is a high-performance, surface acoustic wave (SAW) filter with a broad range of uses. It is suitable for a variety of signal processing applications, including frequency-selective switching, wireless communications, and microwave instrumentation. It is also suitable for use as a low-pass filter in radio frequency (RF) front ends or as an impedance match in antenna systems. Furthermore, it can be used for harmonic filtering and signal delay compensation.
Working Principle of B3917B3882Z710V3
The B3917B3882Z710V3 is based on the surface acoustic wave (SAW) principal. This type of filter relies on the transmission of acoustic waves over the surface of a piezoelectric material. A piezoelectric material is an acoustic transducer, meaning that it can convert electrical signals to sound waves, and vice versa. In order for acoustic waves to be transmitted over the surface of a piezoelectric material, an electrical input signal is applied to a pair of interdigitated electrodes. The electrical signal is converted into an acoustic wave, which is transmitted over the surface of the material.
The B3917B3882Z710V3 uses a specially designed interdigitated electrodes to ensure that only the frequencies that need to be passed through are transmitted. A thin layer of material is placed on top of the electrodes, which is used to modify the transmitted signal and shape the desired frequency response. The filter also uses resonance-cavity technology to further enhance the filter response and precision.
Once the signal is passed through the filter, it is then converted back into an electrical signal by a pair of interdigitated electrodes. The signal is then ready to be used in the desired application.
Conclusion
The B3917B3882Z710V3 is a high-performance surface acoustic wave (SAW) filter. It has a broad range of applications and can be used in frequency-selective switching, wireless communications, and microwave instrumentation. Its working principle is based on the transmission of acoustic signals over the surface of a piezoelectric material, and it utilizes resonance-cavity technology to achieve a high degree of precision. Ultimately, the B3917B3882Z710V3 is an excellent choice for many signal processing applications.
The specific data is subject to PDF, and the above content is for reference
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FILTER SAW 73.5996MHZ 10SMD
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B39171B3882Z710V3 Datasheet/PDF