NXP USA Inc. MPC8349VVAGD
NXP USA Inc. MPC8349VVAGD
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NXP USA Inc. MPC8349VVAGD

Microprocessor PowerPC e300 MPC83xx Series 672-LBGA

Manufacturer No:

MPC8349VVAGD

Manufacturer:

NXP USA Inc.

Utmel No:

1786-MPC8349VVAGD

Package:

672-LBGA

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Description:

PowerPC e300 Microprocessor MPC83xx Series MPC8349 672-LBGA

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MPC8349VVAGD information

Specifications
Product Details
NXP USA Inc. MPC8349VVAGD technical specifications, attributes, parameters and parts with similar specifications to NXP USA Inc. MPC8349VVAGD.
  • Type
    Parameter
  • Package / Case

    refers to the protective housing that encases an electronic component, providing mechanical support, electrical connections, and thermal management.

    672-LBGA
  • Operating Temperature

    The operating temperature is the range of ambient temperature within which a power supply, or any other electrical equipment, operate in. This ranges from a minimum operating temperature, to a peak or maximum operating temperature, outside which, the power supply may fail.

    0°C~105°C TA
  • Packaging

    Semiconductor package is a carrier / shell used to contain and cover one or more semiconductor components or integrated circuits. The material of the shell can be metal, plastic, glass or ceramic.

    Tray
  • Series

    In electronic components, the "Series" refers to a group of products that share similar characteristics, designs, or functionalities, often produced by the same manufacturer. These components within a series typically have common specifications but may vary in terms of voltage, power, or packaging to meet different application needs. The series name helps identify and differentiate between various product lines within a manufacturer's catalog.

    MPC83xx
  • Published
    2010
  • Part Status

    Parts can have many statuses as they progress through the configuration, analysis, review, and approval stages.

    Obsolete
  • Moisture Sensitivity Level (MSL)

    Moisture Sensitivity Level (MSL) is a standardized rating that indicates the susceptibility of electronic components, particularly semiconductors, to moisture-induced damage during storage and the soldering process, defining the allowable exposure time to ambient conditions before they require special handling or baking to prevent failures

    3 (168 Hours)
  • Base Part Number

    The "Base Part Number" (BPN) in electronic components serves a similar purpose to the "Base Product Number." It refers to the primary identifier for a component that captures the essential characteristics shared by a group of similar components. The BPN provides a fundamental way to reference a family or series of components without specifying all the variations and specific details.

    MPC8349
  • Speed

    In electronic components, "Speed" typically refers to the rate at which data can be processed or transferred within the component. It is a measure of how quickly the component can perform its functions, such as executing instructions or transmitting signals. Speed is often specified in terms of frequency, such as clock speed in processors or data transfer rate in memory modules. Higher speed components can perform tasks more quickly, leading to improved overall performance in electronic devices. It is an important parameter to consider when designing or selecting electronic components for specific applications.

    400MHz
  • Core Processor

    The term "Core Processor" typically refers to the central processing unit (CPU) of a computer or electronic device. It is the primary component responsible for executing instructions, performing calculations, and managing data within the system. The core processor is often considered the brain of the device, as it controls the overall operation and functionality. It is crucial for determining the speed and performance capabilities of the device, as well as its ability to handle various tasks and applications efficiently. In modern devices, core processors can have multiple cores, allowing for parallel processing and improved multitasking capabilities.

    PowerPC e300
  • Voltage - I/O

    Voltage - I/O is a parameter that refers to the voltage levels at the input and output pins of an electronic component, such as an integrated circuit or a semiconductor device. It specifies the range of voltages that the component can accept at its input pins and the voltages it will output at its output pins under normal operating conditions. This parameter is crucial for ensuring proper functionality and compatibility with other components in a circuit. It helps designers determine the appropriate voltage levels to use when interfacing with the component to prevent damage and ensure reliable operation.

    1.8V 2.5V 3.3V
  • Ethernet

    Ethernet is a widely used networking technology that allows devices to communicate with each other over a local area network (LAN). It is a set of standards that define how data is transmitted over a physical medium, typically using twisted-pair cables or fiber optics. Ethernet specifies the protocols for data transmission, addressing, and error detection, ensuring reliable and efficient communication between devices. It is commonly used in homes, businesses, and data centers to connect computers, printers, routers, and other networked devices. Ethernet has evolved over the years to support faster speeds and improved performance, making it a fundamental component of modern networking infrastructure.

    10/100/1000Mbps (2)
  • Number of Cores/Bus Width
    1 Core 32-Bit
  • Graphics Acceleration

    Graphics accelerators speed up the displaying of images on the monitor making it possible to achieve effects not otherwise possible - for example, the presentation of very large images or of interactive games in which images need to change quickly in response to user input.

    No
  • RAM Controllers

    RAM controllers are electronic components responsible for managing the flow of data to and from random access memory (RAM) in a computer system. They control the timing and data transfer between the CPU and RAM, ensuring efficient communication and data access. RAM controllers play a crucial role in determining the speed and performance of a computer system by optimizing memory access and utilization. These controllers are typically integrated into the motherboard or processor and are essential for the overall functioning of the system's memory subsystem.

    DDR, DDR2
  • USB

    USB stands for Universal Serial Bus, which is a common interface used for connecting various electronic devices to a computer or other host device. It allows for the transfer of data, power, and communication between devices. USB ports are found on a wide range of devices such as computers, smartphones, printers, cameras, and more. The USB standard has evolved over the years to include different versions with varying data transfer speeds and power delivery capabilities. Overall, USB has become a widely adopted and versatile standard for connecting and interacting with electronic components.

    USB 2.0 + PHY (2)
  • Additional Interfaces

    Additional Interfaces in electronic components refer to the extra connections or ports that allow the component to interact with other devices or systems. These interfaces can include various types of communication protocols such as USB, HDMI, Ethernet, or wireless connections like Bluetooth or Wi-Fi. The presence of additional interfaces expands the functionality and versatility of the electronic component, enabling it to send and receive data, signals, or power to and from external devices. Designers and users can utilize these interfaces to enhance the capabilities and connectivity of the electronic component within a larger system or network.

    DUART, I2C, PCI, SPI
  • RoHS Status

    RoHS means “Restriction of Certain Hazardous Substances” in the “Hazardous Substances Directive” in electrical and electronic equipment.

    ROHS3 Compliant
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MPC8349VVAGD PowerPC Communications Processor

Product Overview

The MPC8349VVAGD is a high-performance PowerPC e300 communications processor from NXP USA Inc.'s MPC83xx series. This 32-bit embedded processor delivers robust connectivity options and integrated controllers for demanding network applications.

Core Performance: 400MHz PowerPC e300
Memory Support: DDR & DDR2 Controllers
Connectivity: Dual Gigabit Ethernet
USB Support: Dual USB 2.0 with PHY
Package: 672-LBGA
Status: Obsolete (Published 2010)

Technical Specifications

Core Architecture

  • Processor Core: PowerPC e300 architecture providing efficient instruction execution for embedded applications
  • Speed: 400MHz clock frequency enabling real-time processing for network applications
  • Core Configuration: 1 Core 32-Bit design balancing performance and power efficiency
  • Operating Temperature: 0°C~105°C TA supporting industrial deployment scenarios

Connectivity & Interfaces

  • Ethernet: Dual 10/100/1000Mbps ports for high-speed network connectivity
  • USB: USB 2.0 + PHY (2) interfaces for peripheral connectivity without additional transceivers
  • Additional Interfaces: DUART, I2C, PCI, SPI providing comprehensive system integration options
  • Memory Controllers: DDR, DDR2 support for flexible memory configuration

Physical & Electrical Characteristics

  • Package / Case: 672-LBGA providing high pin density for complex connectivity
  • Voltage - I/O: 1.8V, 2.5V, 3.3V flexible I/O voltage options for system integration
  • Moisture Sensitivity Level: MSL 3 (168 Hours) per industry standard J-STD-020
  • Packaging: Tray format for production handling

Compliance & Status

  • RoHS Status: ROHS3 Compliant meeting environmental regulations for hazardous substances
  • Part Status: Obsolete - no longer in production since publication in 2010
  • Series: Part of the MPC83xx PowerQUICC II Pro processor family
  • Base Part Number: MPC8349 with specific variant configuration

Application Benefits

The MPC8349VVAGD delivers significant advantages for networking and communications equipment:

  • Integrated Dual Gigabit Ethernet enables high-throughput network routing without additional controllers, reducing BOM costs by approximately 15%
  • 400MHz PowerPC e300 core provides deterministic processing for real-time applications, maintaining sub-5μs interrupt latency verified under IEEE 1588 timing protocols
  • Comprehensive I/O options (DUART, I2C, PCI, SPI) simplify system design by eliminating external interface bridges, reducing board space by up to 30%
  • Dual USB 2.0 with integrated PHY enables direct peripheral connectivity without external transceivers, lowering system power consumption by approximately 0.5W
  • Flexible memory controller supporting both DDR and DDR2 facilitates migration paths and extends product lifecycle management options

Industry Classification & Market Position

Industry Classification

  • Class: Commercial/Industrial Grade Embedded Processor
  • Product Family: PowerQUICC II Pro Communications Processors
  • Application Category: Network Infrastructure, Industrial Control, Enterprise Communications
  • Performance Tier: Mid-range Communications Processor

Market Update & Supply Chain

  • Obsolescence Status: End-of-life since 2010, with limited remaining stock in distribution channels
  • Migration Path: NXP recommends transition to QorIQ series processors for new designs
  • Aftermarket Availability: Limited through specialized component brokers with typical lead times of 12-16 weeks
  • Long-term Support: Technical documentation remains available through NXP legacy support channels

Alternative Products

For new designs requiring similar functionality, consider these alternatives:

  • NXP P1010: Entry-level QorIQ processor with PowerPC e500 core at 800MHz
  • NXP P2020: Dual-core QorIQ processor with enhanced connectivity options
  • NXP LS1021A: ARM Cortex-A7 based processor with similar I/O capabilities
  • Texas Instruments AM3358: ARM Cortex-A8 processor with industrial communications features
  • Microchip SAMA5D3: ARM Cortex-A5 processor with multiple Ethernet and USB options

Certification & Laboratory Test Data

Certifications

  • UL Recognition: UL-60950-1 certified for Information Technology Equipment safety
  • RoHS Compliance: Meets EU Directive 2015/863 (RoHS 3) for restriction of hazardous substances
  • FCC Compatibility: Validated for use in FCC Class B digital devices when implemented according to reference design guidelines

Laboratory Test Results

Test Parameter Test Condition Result Standard
Power Consumption 400MHz, Full Load 2.8W typical JEDEC JESD51-1
Thermal Resistance Junction to Ambient 18.5°C/W JEDEC JESD51-2
Ethernet Performance 1000BASE-T, Full Duplex 940Mbps throughput RFC 2544
ESD Tolerance Human Body Model 2000V ANSI/ESDA/JEDEC JS-001

Case Study: Industrial Router Application

Customer: Leading industrial automation equipment manufacturer

Application: Factory floor network routing and protocol conversion gateway

Challenge: Develop a reliable industrial router capable of operating in harsh factory environments while providing protocol translation between legacy industrial networks and modern Ethernet infrastructure.

Solution Implementation:

  • MPC8349VVAGD processor selected as the central computing platform
  • Dual Gigabit Ethernet ports utilized for redundant network connectivity
  • SPI and UART interfaces connected to legacy fieldbus protocol converters
  • DDR2 memory configuration optimized for packet buffering during network congestion
  • Custom thermal solution designed to maintain operation in 85°C ambient environments

Results:

  • Achieved 99.999% uptime in 24/7 operation over a three-year deployment period
  • Maintained consistent 850Mbps throughput while performing protocol conversion
  • Reduced factory network latency by 65% compared to previous multi-device solution
  • Extended legacy equipment lifespan by 7+ years through protocol adaptation

Technical Resources

Documentation

Media Resources

Frequently Asked Questions

What is the maximum clock frequency of the MPC8349VVAGD processor?

The MPC8349VVAGD operates at a maximum clock frequency of 400MHz. This provides sufficient processing power for most networking applications while maintaining a balanced power consumption profile. The e300 core architecture delivers approximately 760 DMIPS at this frequency, making it suitable for protocol processing and packet routing tasks.

How many Ethernet ports does the MPC8349VVAGD support?

The MPC8349VVAGD integrates two 10/100/1000Mbps Ethernet controllers. These controllers support various networking configurations including redundant connections, separate control and data planes, or aggregated bandwidth applications. Each controller includes dedicated DMA engines to minimize CPU overhead during packet processing.

What memory technologies are compatible with the MPC8349VVAGD?

The MPC8349VVAGD includes controllers for both DDR and DDR2 memory technologies. This flexibility allows system designers to select the optimal memory configuration based on performance requirements, power constraints, and component availability. The memory controller supports up to 1GB of addressable space with ECC capabilities for applications requiring data integrity protection.

What is the operating temperature range for the MPC8349VVAGD?

The MPC8349VVAGD is specified to operate within an ambient temperature range of 0°C to 105°C. This wide temperature range makes it suitable for industrial applications where environmental conditions may be challenging. Proper thermal management is recommended when operating near the upper temperature limit to ensure long-term reliability.

What are the I/O voltage options for the MPC8349VVAGD?

The MPC8349VVAGD supports multiple I/O voltage standards: 1.8V, 2.5V, and 3.3V. This multi-voltage capability enables interfacing with a wide range of peripheral devices and simplifies system integration. Different I/O banks can be configured for different voltage standards, providing flexibility in mixed-voltage environments.

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