The ADSP-21479KCPZ-1A from Analog Devices Inc. is a high-performance digital signal processor that belongs to the SHARC® family, known for its exceptional core and memory performance. This processor is designed to support complex signal processing tasks in various applications, including automotive audio and navigation systems, professional audio equipment, and industrial control systems.
Key Features
- Core Performance: The SHARC processor core offers 32-bit floating-point processing, which is ideal for high-precision applications. With a core performance of up to 400 MHz, the ADSP-21479KCPZ-1A can execute up to 2400 million instructions per second (MIPS), providing ample processing power for demanding signal processing tasks.
- On-chip Memory: It includes 5MB of on-chip RAM, which allows for efficient data management and high-speed computation without the need for external memory components.
- I/O Processing: The device features a variety of peripherals, including serial ports, SPI, UART, and a parallel peripheral interface, enabling flexible connectivity options for a wide range of applications.
- Power Efficiency: Designed with power efficiency in mind, the processor operates with a reduced instruction set computing (RISC) architecture, which helps to minimize power consumption while maintaining high performance.
Applications
The flexibility and high performance of the ADSP-21479KCPZ-1A make it suitable for a myriad of applications:
- Automotive audio and infotainment systems
- Professional audio equipment such as mixers and synthesizers
- Home theater systems
- Industrial control systems
- Medical imaging systems
Product Specifications
| Parameter |
Value |
| Clock Speed |
400 MHz |
| Operating Temperature |
-40°C to +85°C |
| Package / Case |
100-LFCSP-VQ (14x14) |
| Supply Voltage |
1.14 V to 1.32 V |
With its robust set of features and capabilities, the ADSP-21479KCPZ-1A from Analog Devices Inc. is an ideal choice for developers looking to integrate a powerful DSP into their high-performance signal processing applications.