adsp-21060 Datasheet - Analogdevices

Manufacturer

Analogdevices
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The ADSP-21060 is a high-performance, 32-bit, floating-point digital signal processor. It is designed for a wide range of applications, including audio...

Manufacturer
Analog Devices
Part Number
ADSP-21060
Primary Category
SEMICONDUCTORS - INTEGRATED CIRCUITS
Package
208-lead MQFP
Key Spec 1
Clock Rate: up to 40 MHz
Key Spec 2
Power Dissipation: 1.5W (typical)

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📝 Component Overview

The ADSP-21060 is a high-performance, 32-bit, floating-point digital signal processor. It is designed for a wide range of applications, including audio processing, industrial control, and medical imaging. The processor features a Harvard architecture, with separate program and data memory spaces, and a rich set of peripherals, including DMA controllers, timers, and serial ports.

Key Features and Benefits

Typical Applications

📊 Complete Technical Specifications

Absolute Maximum Ratings

ParameterValue
Operating Temperature-40°C to +85°C
Storage Temperature-65°C to +150°C
Supply Voltage3.3V ± 10%

Electrical Characteristics

ParameterConditionMinTypMaxUnit
Clock RateTypical20 MHz40 MHz60 MHzMHz
Power DissipationTypical1.0W1.5W2.5WW

Package Information

Pin Configuration

🔧 Application Guidelines

Design Considerations

The ADSP-21060 is a high-performance processor that requires careful design consideration to ensure optimal performance and reliability. The processor's high clock rate and low power consumption make it an ideal choice for a wide range of applications, but it also requires careful attention to thermal management and power supply design.

Installation Guidelines

The ADSP-21060 is available in a 208-lead MQFP package, which requires careful handling and installation to prevent damage. The processor should be mounted on a printed circuit board (PCB) with a suitable thermal interface material to ensure optimal heat transfer and reliability.

Operational Notes

The ADSP-21060 is a complex processor that requires careful configuration and programming to ensure optimal performance and reliability. The processor's peripherals and interfaces should be carefully configured and tested to ensure proper operation, and the processor's clock rate and power consumption should be carefully monitored to prevent overheating or power supply overload.