AM4376BZDN100
MPU AM437x RISC 32bit 1GHz 491-Pin NFBGA TrayAM4376BZDN100
MPU AM437x RISC 32bit 1GHz 491-Pin NFBGA Tray
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Manufacturer Part # : AM4376BZDN100
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Package/Case: NFBGA-491
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Brand: Texas Instruments
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Product Categories : Microprocessors
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Series : AM4376
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AM4376BZDN100 DataSheet

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AM4376BZDN100 Details
The AM4376BZDN100 is a high-performance system-on-chip (SoC) from Texas Instruments, offering a balance of processing power and power efficiency for various embedded applications. This SoC features a quad-core ARM Cortex-A9 processor running at up to 1 GHz, along with integrated peripherals and interfaces for connectivity and control.
Pinout
- 1 (VDD_CORE): Core Power Supply
- 2 (GND): Ground
- 3 (UART0_RXD): UART0 Receive Data
- 4 (UART0_TXD): UART0 Transmit Data
- 5 (SPI0_SCLK): SPI0 Serial Clock
- 6 (SPI0_D0): SPI0 Data Line 0
- 7 (I2C0_SDA): I2C0 Serial Data
- 8 (I2C0_SCL): I2C0 Serial Clock
(Tip: For detailed pinout information, please refer to the corresponding datasheet.)
Key Features
- Quad-Core Processor: Houses a quad-core ARM Cortex-A9 processor for high processing capabilities.
- Integrated Peripherals: Features integrated peripherals for various connectivity and control functions.
- Power Efficiency: Designed for power efficiency to optimize energy consumption in embedded systems.
- Connectivity Options: Offers multiple interfaces for connectivity, including UART, SPI, and I2C.
- Scalability: Provides scalability for different application requirements through configurable options.
Application
- Embedded Systems: Ideal for use in embedded systems requiring high performance and connectivity.
- Industrial Automation: Suitable for industrial automation applications that demand processing power and control features.
- IoT Devices: Used in Internet of Things (IoT) devices for communication and data processing tasks.
Where to Use
The AM4376BZDN100 is suitable for a wide range of embedded applications, including industrial automation, IoT devices, and multimedia systems. It offers a balance of processing power and power efficiency, making it suitable for power-constrained environments.
How to Use
Integrate the AM4376BZDN100 into your embedded system by connecting the respective power supply and ground pins. Utilize the UART, SPI, and I2C interfaces for communication with other devices. Leverage the quad-core processor for parallel processing tasks. For detailed usage guidelines, refer to the datasheet.
Application Circuit
The application circuit diagram for the AM4376BZDN100 illustrates how to incorporate the SoC into your system design. It includes connections for power, communication interfaces, and external peripherals, enabling seamless integration and operation.
(Tip: For detailed circuit diagram connections and usage guide, refer to the datasheet.)
Equivalents
- AM335x: A comparable SoC from Texas Instruments with similar features and performance characteristics.
- i.MX6: An alternative SoC series from NXP offering similar processing capabilities for embedded applications.
Complementary
The AM4376BZDN100 can be complemented by the TPS65217 power management IC, providing efficient power delivery and management for the SoC and connected peripherals. Choose complementary components that enhance system performance and reliability.
When selecting complementary components, ensure compatibility and alignment with your system requirements for seamless integration.
Frequently Asked Questions
Q: What is the maximum clock speed of the ARM Cortex-A9 processor in the AM4376BZDN100?
A: The ARM Cortex-A9 processor in the AM4376BZDN100 can run at speeds up to 1 GHz. Refer to the datasheet for detailed performance specifications.
Q: Is the AM4376BZDN100 suitable for multimedia applications?
A: Yes, the AM4376BZDN100 is well-suited for multimedia applications requiring processing power and connectivity options for multimedia data processing and playback.

Specifications
The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.
Arm CPU | 1 Arm Cortex-A9 | Arm (max) (MHz) | 300, 800, 1000 |
Coprocessors | PRU-ICSS | CPU | 32-bit |
Display type | 1 LCD | Protocols | EtherNet/IP, Ethernet, Profibus, Profinet, Sercos |
Ethernet MAC | 2-Port 1Gb switch | Hardware accelerators | PRU-ICSS, Security Accelerator |
Features | General purpose, Networking | Operating system | Linux, RTOS |
Security | Cryptography, Debug security, Secure boot, Trusted execution environment | Rating | Catalog |
Power supply solution | TPS65216, TPS65218D0 | Operating temperature range (°C) | -40 to 105, -40 to 90, 0 to 90 |
FAQs
What is AM4376BZDN100?
The AM4376BZDN100 is a high-performance, Sitara ARM Cortex-A9 processor from Texas Instruments. It is designed for industrial automation, human-machine interface, and other embedded applications that require advanced processing capabilities.
How Does AM4376BZDN100 Work?
The AM4376BZDN100 operates as a high-performance processor based on the ARM Cortex-A9 architecture. It features multiple cores, high clock speeds, and advanced peripherals to handle demanding computational tasks efficiently. The processor is designed to provide a balance between performance and power efficiency for embedded applications.
How Many Pins does AM4376BZDN100 have and What are the Functions of the Pinout Configuration?
The AM4376BZDN100 is packaged in a 431-pin BGA (Ball Grid Array) package. The pinout configuration includes various power, ground, and I/O pins for connecting to external components and peripherals in the system.
What are the Pros and Cons of AM4376BZDN100?
Pros:
- High Performance: Offers powerful processing capabilities for demanding applications.
- ARM Cortex-A9 Core: Features a reliable and widely-used processor architecture.
- Advanced Peripherals: Includes a variety of peripherals for interfacing with external devices and sensors.
- Industrial Grade: Designed for robust operation in industrial environments.
- Scalability: Supports scalability in performance and features for different application requirements.
Cons:
- Complexity: Requires expertise in embedded systems design and programming for optimal utilization.
- Power Consumption: Higher performance often comes with increased power consumption.
- Cost: Advanced processors like the AM4376BZDN100 may have a higher cost compared to simpler solutions.
Are There Any Equivalents/Alternatives to AM4376BZDN100 for Recommendation?
Some alternatives and equivalents to the AM4376BZDN100 include:
- AM335x series processors from Texas Instruments
- i.MX 6 series processors from NXP
- Zynq-7000 series SoCs from Xilinx
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