DSP56858FVE

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DSP56858FVE

IC MCU 16BIT 80KB SRAM 144LQFP

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Spécifications

Series 568xx
Part Status Obsolete
DigiKey Programmable Not Verified
Core Processor 56800E
Core Size 16-Bit
Speed 120MHz
Connectivity EBI/EMI, SCI, SPI, SSI
Peripherals DMA, POR, WDT
Number of I/O 47
Program Memory Size 80KB (40K x 16)
Program Memory Type SRAM
RAM Size 24K x 16
Voltage - Supply (Vcc/Vdd) 1.62V ~ 1.98V
Oscillator Type External
Operating Temperature -40°C ~ 85°C (TA)
Mounting Type Surface Mount
Supplier Device Package 144-LQFP (20x20)
Package / Case 144-LQFP
Base Product Number DSP568

Vue d'ensemble

Description

The DSP56858FVE is a model in the DSP56800 series of digital signal processors, developed by NXP Semiconductors. These processors are typically used in embedded systems for applications such as audio processing, telecommunications, and motor control. The DSP56858FVE combines the efficiency of a RISC processor with the power of DSP functionality, featuring a dual Harvard architecture, which allows simultaneous access to program and data memory, optimizing processing speed.
This specific model emphasizes low power consumption while providing high performance. It typically includes on-chip peripherals such as timers, serial communication interfaces, and analog-to-digital converters, which enhance its versatility in various applications. The DSP56858FVE is supported by a robust development environment, including software development kits and debugging tools, facilitating easier implementation in complex projects.
Overall, the DSP56858FVE is a powerful component for manufacturers and developers looking to implement sophisticated digital signal processing tasks in their embedded systems, with a focus on efficiency and reliability.

Features

The DSP56858FVE is part of the 56800E core family, combining digital signal processing and microcontroller functionalities. Key features include:
1. Core: 16-bit DSP with a 60 MHz clock speed, offering efficient processing capabilities for both control and signal processing tasks.
2. Memory: It typically includes on-chip RAM and Flash memory for program and data storage, facilitating rapid data access and execution.
3. Peripherals: The microcontroller is equipped with multiple timers, PWM modules, and communication interfaces such as UART, SPI, and I2C, providing flexibility for various applications.
4. ADC: Integrated Analog-to-Digital Converters (ADC) for precise data conversion in real-time applications.
5. Interrupts: Multiple interrupt sources and priority levels help in managing real-time processes efficiently.
6. Low Power Modes: Designed to support various low-power modes, making it suitable for power-sensitive applications.
7. Development Tools: Supported by a range of development tools and software, facilitating ease of programming and integration into complex systems.
These features make the DSP56858FVE suitable for applications in motor control, industrial automation, audio processing, and other areas requiring efficient signal processing and control.

Package

The DSP56858FVE is a digital signal processor from the Motorola/Freescale/NXP 56800 series, typically housed in a low-profile quad flat package (LQFP). This package type is known for its thin, square-shaped configuration with leads on all four sides, making it suitable for applications requiring compactness and efficient thermal performance.

Pinout

The DSP56858FVE is a digital signal processor (DSP) from NXP Semiconductors, part of the DSP56800 family. It is typically used in applications requiring efficient audio processing, such as voice recognition, audio playback, and other DSP-intensive tasks.
This DSP comes in various package types, but a common package for the DSP56858 series is the LQFP (Low-profile Quad Flat Package), which features a specific pin count. The DSP56858FVE in an LQFP package typically has 144 pins.
Key functions of the DSP56858FVE include:
1. Core Processing: It features a 16-bit DSP core optimized for complex arithmetic operations.
2. Memory: Includes on-chip RAM and ROM/Flash for program and data storage.
3. Peripherals: Supports various interfaces such as UART, SPI, I2C, and timers for connectivity and control.
4. Audio Processing: Optimized instructions for audio codec operations and signal processing.
5. Power Management: Incorporates low-power modes for energy-efficient applications.
For detailed specifications, such as exact pin configurations and functions, consulting the manufacturer's datasheet is recommended.

Manufacturer

The DSP56858FVE is manufactured by NXP Semiconductors. NXP is a global semiconductor company headquartered in Eindhoven, Netherlands. It specializes in producing a wide range of semiconductor components including microcontrollers, communication processors, analog and mixed-signal circuits, sensors, and other related products. NXP serves various markets such as automotive, industrial, mobile, and communication infrastructure, often focusing on innovations in secure connectivity solutions. The company is known for its contributions to industry standards and has a strong emphasis on research and development, aiming to provide advanced technologies for smart and secure environments.

Application

The DSP56858FVE is a digital signal processor (DSP) used in various applications that require efficient signal processing capabilities. Common application areas include telecommunications, audio processing, motor control, and industrial automation. It is often used in applications that demand high-speed data processing, such as baseband communication systems, digital audio equipment, and real-time control systems. Its integration capabilities and performance efficiency make it suitable for embedded systems requiring precise and rapid signal computations.

Equivalent

The DSP56858FVE is a Freescale (now NXP) DSP chip. Equivalent products could include other DSPs from companies like Texas Instruments (e.g., TMS320C55x series), Analog Devices (e.g., ADSP-21xx series), and Microchip's dsPIC series. Selection of a direct equivalent would depend on specific application requirements, such as processing power, peripheral integration, and power consumption. Always ensure compatibility with your system requirements.

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