ADSP-21262 (3)

ADSP-21262 is available from Analog Devices Inc. Inc. at Xecor. Designed for high-performance digital signal processing, the ADSP-21262 offers 200MHz SIMD SHARC core, 1.2GFLOPS capability, and support for IEEE-compatible 32-bit floating-point, 40-bit floating-point, and 32-bit fixed-point data types. Available in multiple package options, including 136-CSPBGA, it is ideal for applications such as high-quality audio systems, automotive entertainment, voice recognition, medical devices, and measurement equipment. Whether used in audio processing, industrial automation, or telecommunications, this series ensures superior performance, scalability, and efficiency for demanding applications. Xecor is an authorized distributor for Analog Devices Inc. Inc.. Please view our extensive selection of the ADSP-21262 series below.

Part Number Description Package Inventory Add To Bom
ADSP-21262SBBCZ150 ADSP-21262SBBCZ150 Product Description 136-LFBGA 6,888
ADSP-21262SKBCZ200 effective 3rd generation low cost DSP CSPBGA-136 5,786
ADSP-21262SKSTZ200 Plastic 144 Pin QFP LQFP-144 4,401

Key Featrues

High-Performance Floating-Point Processing: The ADSP-21262 DSP features a 32-bit floating-point architecture operating at 150MHz, delivering up to 1.2 GFLOPS. This enables high-speed, precision-intensive computations, making it ideal for applications like audio processing, medical imaging, and advanced measurement systems.
Large On-Chip Memory: With 2Mbit of dual-ported SRAM and 4Mbit of mask-programmable ROM, the DSP provides ample storage for complex algorithms and data. This reduces the need for external memory, enhancing system efficiency and reducing overall design complexity.
Versatile Serial Ports: The DSP includes six independent serial ports supporting multiple modes (I2S, TDM, etc.), facilitating seamless integration with various audio and communication peripherals. This flexibility broadens its use cases in automotive entertainment, voice recognition, and industrial control systems.
Low Power Consumption: Operating at a core voltage of 1.20V and I/O voltage of 3.30V, the DSP is optimized for energy efficiency. This makes it suitable for portable and battery-powered devices, extending operational life without compromising performance.
Wide Temperature Range: With an operating temperature range of -40°C to 85°C, the DSP is robust enough for harsh environments. This ensures reliable performance in automotive, industrial, and outdoor applications, even under extreme conditions.

Applications

High-Quality Audio Processing: The ADSP-21262 is ideal for high-quality audio applications, such as professional audio mixers, home theater systems, and studio-grade audio interfaces. Its 32-bit floating-point processing and 200MHz clock rate ensure precise audio signal manipulation, while its large on-chip memory and multiple serial ports support complex audio algorithms and multi-channel processing.
Automotive Entertainment Systems: The ADSP-21262 is well-suited for advanced automotive entertainment systems, including in-car infotainment and surround sound systems. Its robust processing capabilities and support for multiple audio formats enable seamless integration of voice recognition, navigation, and high-fidelity audio playback, enhancing the driving experience.
Medical Signal Processing: The ADSP-21262 is perfect for medical devices requiring real-time signal processing, such as ultrasound machines, patient monitoring systems, and diagnostic equipment. Its high-speed floating-point arithmetic and large memory capacity allow for accurate and efficient processing of complex biomedical signals, ensuring reliable performance in critical healthcare applications.
Industrial Measurement and Control: The ADSP-21262 is an excellent choice for industrial measurement and control systems, such as vibration analysis, motor control, and process automation. Its ability to handle high-speed data acquisition and real-time signal processing, combined with its robust peripherals, makes it ideal for precision measurement and control tasks in demanding industrial environments.