Allicdata Part #: | 296-21713-ND |
Manufacturer Part#: |
TAS3208PZP |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Texas Instruments |
Short Description: | IC DGTL AUDIO PROCESSOR 100HTQFP |
More Detail: | N/A |
DataSheet: | TAS3208PZP Datasheet/PDF |
Quantity: | 1000 |
Series: | -- |
Packaging: | Tray |
Part Status: | Not For New Designs |
Type: | Fixed Point |
Interface: | AAI/O, DAI/O, I²C, I²S |
Clock Rate: | 135MHz |
Non-Volatile Memory: | -- |
On-Chip RAM: | 30.3kB |
Voltage - I/O: | 3.30V |
Voltage - Core: | 3.30V |
Operating Temperature: | -20°C ~ 70°C (TA) |
Mounting Type: | Surface Mount |
Package / Case: | 100-TQFP Exposed Pad |
Supplier Device Package: | 100-HTQFP (14x14) |
Base Part Number: | TAS3208 |
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Digital signal processors (DSP) are an important component of embedded systems, allowing tasks to be performed in real-time with very low latency. The TAS3208PZP from Texas Instruments is a powerful DSP designed for use in applications such as digital audio processing, robotics, and other applications requiring high performance with low noise. This article will explore the application field for the TAS3208PZP and how its architecture enables it to work.
Understanding the TAS3208PZP
The TAS3208PZP is a 24-bit, 360MIPS, low-power high-performance digital signal processor. It is designed with an internal memory of up to 32Mb of internal SRAM and up to 8Mb of external RAM. It has an on-chip audio codec, 10-bit ADC to convert analog signals to digital, and a 10-bit DAC to convert digital audio signals to analog. It features a flexible interface, allowing use with a variety of other serial, I2C, and SPI digital interfaces. It is designed for low-latency operation, allowing for a rapid response to digital audio signals.
The Main Applications
The TAS3208PZP is suitable for a variety of embedded applications, especially those requiring audio signal processing, robotics, or other similar applications. One of the main uses of the TAS3208PZP is for digital audio signal processing. It can be used to create advanced sound effects and synthesis, multi-channel signal processing, digital signal mixing and equalization, and a variety of other audio signal manipulation tasks. It can also be used for robotics, as it is capable of performing advanced pattern recognition, motion control, and other complex tasks.
Its capabilities lend themselves to use in multimedia applications, as it is capable of processing multiple concurrent signals with low latency. This includes video and image processing, as well as virtual reality systems. It can also be used in industrial control applications such as motor control, servo control, and other process automation tasks.
The Architecture of the TAS3208PZP
The TAS3208PZP uses an advanced architecture designed to deliver high performance and low power consumption. It has a four-level RISC processor core, two separate data memories (dram and eRam), a programmable instruction cache, and various peripherals. It can execute up to 360 million instructions per second (MIPS).
The TAS3208PZP is designed as a synchronous architecture, meaning it can perform calculations in real-time and does not need to wait for data to be sent through any communication involved. As such, it is capable of quick responses to any input signals with low latency. This is achieved through the use of internal clock domains and an asynchronous memory bus.
The processor core itself is divided into five sections: the user interface, memory controller, instruction decoder, processor core, and execution unit. The user interface is responsible for handling the main inputs and outputs, while the memory controller is responsible for controlling the flow of data between the processor’s different internal memories. The instruction decoder is responsible for translating the instructions into operations which can be executed in the processor’s core, while the execution unit is responsible for carrying out these instructions.
The Benefits of the TAS3208PZP
The TAS3208PZP provides many benefits for its use in embedded systems. First, it is designed to deliver high performance with low power consumption. It is also capable of performing quick calculations with low latency. This makes it especially suitable for applications requiring real-time processing or for power-sensitive operations.
Additionally, its versatile interface allows it to be used in a variety of different embedded systems. This makes it easily transferable from one system to another, allowing it to serve multiple different applications. Finally, the powerful 24-bit signal processing core allows it to handle complex calculations quickly and easily.
Conclusion
The TAS3208PZP is a powerful digital signal processor designed for use in embedded systems that require high performance and low power consumption. It is capable of swiftly processing digital signals and is suited for applications such as robotics, digital audio processing, and multimedia applications. Its powerful architecture and versatile interface allows it to be quickly transferred between different systems and it is capable of performing complex calculations quickly and with low latency.
The specific data is subject to PDF, and the above content is for reference
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