MPC7410VS500LE Allicdata Electronics
Allicdata Part #:

MPC7410VS500LE-ND

Manufacturer Part#:

MPC7410VS500LE

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: NXP USA Inc
Short Description: IC MPU MPC74XX 500MHZ 360FCCLGA
More Detail: PowerPC G4 Microprocessor IC MPC74xx 1 Core, 32-Bi...
DataSheet: MPC7410VS500LE datasheetMPC7410VS500LE Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Ethernet: --
Base Part Number: MPC7410
Additional Interfaces: --
Supplier Device Package: 360-FCCLGA (25x25)
Package / Case: 360-CLGA, FCCLGA
Security Features: --
Operating Temperature: 0°C ~ 105°C (TA)
Voltage - I/O: 1.8V, 2.5V, 3.3V
USB: --
SATA: --
Series: MPC74xx
Display & Interface Controllers: --
Graphics Acceleration: No
RAM Controllers: --
Co-Processors/DSP: --
Speed: 500MHz
Number of Cores/Bus Width: 1 Core, 32-Bit
Core Processor: PowerPC G4
Part Status: Obsolete
Packaging: Tray 
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

The MPC7410VS500LE is a versatile and powerful microprocessor that has been designed for use in embedded applications. It has been developed with a focus on reliability, scalability, and performance, making it a great choice for developing and maintaining embedded systems.

Overview

MPC7410VS500LE is a 32-bit RISC embedded microprocessor designed by Freescale, a subsidiary of NXP Semiconductors. This microprocessor is based on PowerPC 750 architecture, which is compliant with the Power Architecture specification. The architecture offers support for Out-of-Order Execution (OoOE), which helps to improve the performance of embedded applications. It also offers a 64-bit level-2 cache, 1.5 MB of RAM, and two 32-bit, PCI-Express interfaces for expansion. It is also capable of delivering up to 560MHz of processing performance, with power consumption as low as 500 mW.

Applications

MPC7410VS500LE is a powerful and versatile microprocessor, making it suitable for a variety of embedded applications. It is often used in embedded systems that require fast, low-power processing performance for communications and networking, automotive, medical, industrial control, and consumer electronics applications.

For communications and networking applications, the MPC7410VS500LE can be used to provide high performance data forwarding and routing operations, as well as wireless communications support. In automotive applications, the microprocessor can be used to provide fast, efficient control and monitoring of automobile systems. Additionally, its stability makes it a great choice for medical applications, where it can be used for patient monitoring, diagnostics, and imaging. Finally, the microprocessor can be used in industrial control applications to control factory operations, as well as in consumer electronics applications, such as digital cameras and portable media players.

Working Principle

MPC7410VS500LE microprocessor works by executing instructions stored in its built-in memory. It utilizes an instruction set architecture (ISA) that includes both 32-bit and 64-bit instructions for efficient execution of tasks. Using an in-order pipeline, the microprocessor processes instructions as they enter the pipeline and executes them once they reach the end. This allows for efficient and high-speed computation of tasks.

For embedded applications, there are several additional features that can be used to optimize the processor’s performance. This includes features such as power-saving modes, advanced memory protection, system clock control, and low-power states. Using these features, programmers can develop applications that are optimized for their specific power, performance, and energy requirements.

Conclusion

The MPC7410VS500LE is a powerful and versatile microprocessor, making it an ideal choice for embedded applications. With its support for Out-of-Order Execution, level-2 cache, and PCI-Express interfaces, it can provide reliable and high performance for a variety of applications. In addition, its support for power-saving features, advanced memory protection, and low-power states enable developers to create applications that are optimized for their requirements.

The specific data is subject to PDF, and the above content is for reference

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