R3110-CBAA-E1T Allicdata Electronics
Allicdata Part #:

R3110-CBAA-E1T-ND

Manufacturer Part#:

R3110-CBAA-E1T

Price: $ 11.06
Product Category:

Integrated Circuits (ICs)

Manufacturer: ON Semiconductor
Short Description: IC DSP PREFIT RHYTHM R3110 SIP21
More Detail: Audio Audio Signal Processor 2 Channel 21-SIP (5.0...
DataSheet: R3110-CBAA-E1T datasheetR3110-CBAA-E1T Datasheet/PDF
Quantity: 1000
1 +: $ 11.06000
10 +: $ 10.72820
100 +: $ 10.50700
1000 +: $ 10.28580
10000 +: $ 9.95400
Stock 1000Can Ship Immediately
$ 11.06
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Active
Function: Audio Signal Processor
Applications: Consumer Audio
Number of Channels: 2
Interface: --
Voltage - Supply: --
Operating Temperature: --
Specifications: --
Package / Case: 21-TFLGA
Supplier Device Package: 21-SIP (5.08x3.10)
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Audio Special Purpose is a type of research that focuses primarily on the reception, recording, and reproduction of sound through use of specialized equipment. Within this umbrella, the R3110-CBAA-E1T is a product worth talking about. It is used for an understanding of audio ranges, as well as for conducting experiments in the field. Increasingly, researchers are turning to the R3110-CBAA-E1T to get the answers they need.

The R3110-CBAA-E1T is a high performance receiver system capable of detecting a variety of frequencies. The design integrates receivers, antennas, and amplifiers into one unit for study and operation. Its main components are a set of receiver and antenna systems, each of which is designed for specific frequency ranges. The R3110-CBAA-E1T can detect a wide range of frequencies from the sub-Hz to beyond the VHF band, which covers both AM and FM ranges. The receiver also provides low-level noise performance that ensures the highest quality signals are being transmitted.

In addition to the receiver, the R3110-CBAA-E1T also uses an amplifier that has been designed to enhance its sensitivity and stability. The front-end of the amplifier is characterized by low noise and high dynamic range capabilities, while the back-end of the amplifier is dedicated to low distortion and highly accurate amplifying tasks. This amplifier has been specifically designed to amplify radio waves so the received signals can be used in the research and experimentation field.

The application field of the R3110-CBAA-E1T is primarily focused on research and development of audio applications. This includes working within the acoustic range, such as frequency response, acoustic distortion measurements, and speech recognition. It can also be used to test and measure the parameters of audio signals and techniques. This helps to determine the efficacy of various sound engineering techniques, as well as the specifications of different speakers and headsets.

Another application field for the R3110-CBAA-E1T is the radiocommunication industry. This includes testing and measuring the performance of wireless communication systems and other communication-related technologies. This system allows for the transmission and reception of radio waves between different parties, ensuring clear, reliable communication. It can be used for local area networking as well as for global communications, including satellite and remote locations.

The working principle of this device is relatively straightforward. After connecting an RF device to the R3110-CBAA-E1T, the user can then adjust the parameter settings to focus on particular signals. After adjusting the settings, the transmitted voice, sound, and other signals are received by the receiver, which then converts the signals into digital data. This data is stored in the memory of the device and can be accessed or manipulated by user commands.

In conclusion, the R3110-CBAA-E1T is an innovative product that can be used in the research and development field of audio applications, as well as the radiocommunication industry. It has a simple working principle, using an RF device to receive signals and convert them into digital data. This data can then be accessed and manipulated to conduct experiments and conduct tests and measurements for various audio and communication-centric applications.

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

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