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OMAPL138EZCE3
IC MPU OMAP-L1X 375MHZ 361NFBGA
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- 資料表 OMAPL138EZCE3 DataSheet
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規格
| Series | OMAP-L1x |
| Part Status | Active |
| Core Processor | ARM926EJ-S |
| Number of Cores/Bus Width | 1 Core, 32-Bit |
| Speed | 375MHz |
| Co-Processors/DSP | Signal Processing; C674x, System Control; CP15 |
| RAM Controllers | SDRAM |
| Graphics Acceleration | No |
| Display & Interface Controllers | LCD |
| Ethernet | 10/100Mbps (1) |
| SATA | SATA 3Gbps (1) |
| USB | USB 1.1 + PHY (1), USB 2.0 + PHY (1) |
| Voltage - I/O | 1.8V, 3.3V |
| Operating Temperature | 0°C ~ 90°C (TJ) |
| Security Features | Boot Security, Cryptography |
| Mounting Type | Surface Mount |
| Package / Case | 361-LFBGA |
| Supplier Device Package | 361-NFBGA (13x13) |
| Additional Interfaces | HPI, I2C, McASP, McBSP, MMC/SD, SPI, UART |
| Base Product Number | OMAPL138 |
概述
Description
The OMAPL138EZCE3 is a low-power digital signal processor (DSP) and microcontroller unit (MCU) from Texas Instruments, part of the OMAP-L138 family. Designed for applications in industrial automation, medical devices, and consumer electronics, it integrates an ARM9 core and a TMS320C674x DSP core, allowing for efficient processing of both control and signal processing tasks.
Key features include support for high-performance multimedia processing, a rich set of peripherals (including USB, Ethernet, and serial interfaces), and extensive memory options. The device operates at low power levels, making it suitable for battery-operated applications. Additionally, it supports various development environments and tools, facilitating rapid application development.
With its dual-core architecture, the OMAPL138EZCE3 enables concurrent execution of tasks, enhancing system responsiveness and performance while maintaining energy efficiency. Overall, this versatile processor is ideal for developers seeking to implement complex algorithms and real-time processing in compact designs.
Key features include support for high-performance multimedia processing, a rich set of peripherals (including USB, Ethernet, and serial interfaces), and extensive memory options. The device operates at low power levels, making it suitable for battery-operated applications. Additionally, it supports various development environments and tools, facilitating rapid application development.
With its dual-core architecture, the OMAPL138EZCE3 enables concurrent execution of tasks, enhancing system responsiveness and performance while maintaining energy efficiency. Overall, this versatile processor is ideal for developers seeking to implement complex algorithms and real-time processing in compact designs.
Features
The OMAP L138 EZCE3 is a highly integrated system-on-chip (SoC) designed for embedded applications, particularly in industrial and communications domains. Key features include:
1. Processor: It combines a C66x DSP (Digital Signal Processor) core and an ARM926EJ-S RISC core, providing efficient processing for multimedia and real-time applications.
2. Performance: The DSP can operate at speeds up to 456 MHz, while the ARM core runs at 300 MHz, enabling high-performance computations.
3. Memory: It supports various memory interfaces, including DDR2/DDR3 and SRAM, facilitating flexible memory configurations.
4. Connectivity: Integrated peripherals include Ethernet, USB, I2C, SPI, and GPIO, allowing for extensive communication options.
5. Video Processing: The chip supports video codecs and image processing features, making it suitable for video surveillance and multimedia tasks.
6. Low Power: Designed for energy efficiency, it features multiple power management modes.
7. Development Support: The OMAP L138 is supported by various development tools and software environments, enabling rapid prototyping and application development.
Overall, the OMAP L138 EZCE3 is ideal for applications in multimedia processing, industrial automation, and communication systems.
1. Processor: It combines a C66x DSP (Digital Signal Processor) core and an ARM926EJ-S RISC core, providing efficient processing for multimedia and real-time applications.
2. Performance: The DSP can operate at speeds up to 456 MHz, while the ARM core runs at 300 MHz, enabling high-performance computations.
3. Memory: It supports various memory interfaces, including DDR2/DDR3 and SRAM, facilitating flexible memory configurations.
4. Connectivity: Integrated peripherals include Ethernet, USB, I2C, SPI, and GPIO, allowing for extensive communication options.
5. Video Processing: The chip supports video codecs and image processing features, making it suitable for video surveillance and multimedia tasks.
6. Low Power: Designed for energy efficiency, it features multiple power management modes.
7. Development Support: The OMAP L138 is supported by various development tools and software environments, enabling rapid prototyping and application development.
Overall, the OMAP L138 EZCE3 is ideal for applications in multimedia processing, industrial automation, and communication systems.
Package
The OMAPL138EZCE3 is packaged in a 64-pin LQFP (Low-Profile Quad Flat Package). This package type is designed for ease of mounting and thermal performance in embedded applications.
Pinout
The OMAPL138EZCE3 is a Sitara™ processor from Texas Instruments, featuring a total of 256 pins in a BGA (Ball Grid Array) package. This device includes various functional blocks, such as a C64x+ DSP core and an ARM926EJ-S core, making it suitable for applications in multimedia, industrial control, and embedded systems.
Key functions provided through the pinout include power supply pins, ground pins, signal pins for communication protocols (like I2C, SPI, UART), GPIOs, and dedicated pins for external memory interfaces (like DDR2/DDR3 RAM). Other pins support features such as USB, Ethernet, and audio interfaces, facilitating connectivity and integration with various peripherals.
Overall, the OMAPL138EZCE3 is designed to support diverse application needs while maintaining low power consumption and high performance.
Key functions provided through the pinout include power supply pins, ground pins, signal pins for communication protocols (like I2C, SPI, UART), GPIOs, and dedicated pins for external memory interfaces (like DDR2/DDR3 RAM). Other pins support features such as USB, Ethernet, and audio interfaces, facilitating connectivity and integration with various peripherals.
Overall, the OMAPL138EZCE3 is designed to support diverse application needs while maintaining low power consumption and high performance.
Manufacturer
The OMAPL138EZCE3 is manufactured by Texas Instruments (TI), a leading global semiconductor company. Texas Instruments specializes in designing and manufacturing a wide range of analog and digital semiconductor devices, including processors, microcontrollers, and embedded systems. Founded in 1930 and headquartered in Dallas, Texas, TI is known for its innovations in signal processing and high-performance computing technologies. The OMAPL138 is part of the OMAP (Open Multimedia Applications Platform) family, which is used in various applications such as industrial automation, telecommunications, and multimedia processing. TI's focus is on providing solutions for various markets, including automotive, industrial, communications, and consumer electronics.
Application
The OMAPL138EZCE3 is primarily used in applications such as industrial automation, medical imaging, robotics, and telecommunications. Its dual-core architecture, featuring an ARM9 and a C674x DSP, allows for efficient processing in real-time systems, enabling video analytics, motor control, and signal processing tasks. Additionally, it is suitable for embedded systems that require low power consumption and high performance.
Equivalent
The OMAPL138EZCE3 chip, part of the Texas Instruments OMAP-L138 series, has equivalent products like the OMAPL137 and OMAPL138 models, which share similar architecture and functionalities. Additionally, consider the Texas Instruments TMS320C6748 for DSP applications and the TMS320C55x series for low-power needs. Always check specific requirements such as performance, power consumption, and peripheral support when selecting an equivalent.
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