Allicdata Part #: | ADAU1451WBCPZ-ND |
Manufacturer Part#: |
ADAU1451WBCPZ |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Analog Devices Inc. |
Short Description: | IC AUDIO PROCESSOR 72LFCSP |
More Detail: | N/A |
DataSheet: | ADAU1451WBCPZ Datasheet/PDF |
Quantity: | 697 |
Series: | Automotive |
Packaging: | Tray |
Part Status: | Active |
Type: | Sigma |
Interface: | I²C, SPI |
Clock Rate: | 294.912MHz |
Non-Volatile Memory: | -- |
On-Chip RAM: | 96kB |
Voltage - I/O: | 3.30V |
Voltage - Core: | 1.20V |
Operating Temperature: | -40°C ~ 105°C (TA) |
Mounting Type: | Surface Mount |
Package / Case: | 72-VFQFN Exposed Pad, CSP |
Supplier Device Package: | 72-LFCSP-VQ (10x10) |
Base Part Number: | ADAU1451 |
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Digital signal processors (DSPs) are increasingly being used in embedded systems. They offer a platform through which complex digital signal processing algorithms can be implemented quickly and easily. The ADAU1451WBCPZ is a particularly powerful example of a digital signal processor, designed to be used in embedded applications. This article will discuss the applications field of the ADAU1451WBCPZ and also describe its working principle.
TheADAU1451WBCPZ is designed specifically for use in embedded systems and can be used to pick up signals from the different parts of a device. The device is capable of sampling a wide range of analog signals in some very challenging environments. It features a very low-power, 16-bit signal processor with an internal signal path that allows for multiple passes of the signal without loss of signal quality. This makes it ideal for applications that require complex digital signal processing algorithms such as noise cancelling, time code synchronization, error correction and adaptive filtering.
In addition to being capable of processing a wide range of analog signals, the ADAU1451WBCPZ can also handle digital signals. It has an on-board digital signal processor that can be used to analyze the data and generate the required output. The processor can also be used to generate its own digital data which can then be used to control various components in the system.
The ADAU1451WBCPZ is also capable of FPGA (Field Programmable Gate Array) design and implementation. This means that it can be used to create and implement custom circuits for different applications. This makes it much easier to create custom designs without having to design every circuit from scratch.
Another key feature of the ADAU1451WBCPZ is its ability to run two independent data paths in parallel. This allows it to work on two streams of data at the same time, which makes it easier to process multiple signals. This makes the ADAU1451WBCPZ ideal for applications where multiple signals need to be processed at the same time.
The ADAU1451WBCPZ is also interconnected to other devices in the system via a universal asynchronous receiver-transmitter (UART). This allows the device to receive data from a variety of sources, such as MCUs, sensors and FPGAs, and then transmit that data back to the other devices. This makes it possible to create a larger overall system with multiple parts that can interact with each other.
The working principle of the ADAU1451WBCPZ is fairly simple. It starts by sampling the analog signal from different parts of the device and then passes it through an internal signal path where is can be processed. The processor then takes the signal and converts it into a digital form, which can then be manipulated by the processor to create the output required for the application.
Once the signal has been converted into digital form, it can then be manipulated by the processor using a variety of algorithms such as noise canceling, touch sensing etc. The processor can then output the processed data back to the other components of the system. This makes it possible to create custom designs without needing to create them from scratch.
The ADAU1451WBCPZ is highly capable and offers a great deal of flexibility and performance when it comes to digital signal processing. Its on-board digital signal processor can be used to analyze the data and generate the required output, while its ability to run two independent data paths in parallel makes it ideal for applications where multiple signals need to be processed. Furthermore, its ability to integrate with other devices means that it can be used to create larger systems with more connected components.
The specific data is subject to PDF, and the above content is for reference
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