Texas Instruments_TDA3LADBJFABFRQ1
Texas Instruments_TDA3LADBJFABFRQ1
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Texas Instruments
TDA3LADBJFABFRQ1

777-TDA3LADBJFABFRQ1
LOW POWER SOC W/ VISION ACCELERA

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Tech Specifications

Core Processor
ARM® Cortex®-M4, C66x
Speed
212.8MHz, 500MHz
Operating Temperature
-40°C ~ 125°C (TJ)
Architecture
DSP, MPU
Flash Size
-
RAM Size
512kB
Number of I/O
126
Peripherals
DMA, POR, PWM, WDT
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TDA3LADBJFABFRQ1 Description

TDA3LADBJFABFRQ1 Description

The TDA3LADBJFABFRQ1 is a low-power system-on-chip (SoC) with vision acceleration capabilities, designed by Texas Instruments. This embedded IC chip is ideal for applications requiring high performance and low power consumption. The TDA3LADBJFABFRQ1 features a dual-core architecture, combining a 212.8MHz DSP and a 500MHz MPU, providing robust processing power for complex tasks. With 512kB of RAM and 126 I/O pins, this SoC is well-equipped to handle a variety of peripheral connections and data-intensive operations.

TDA3LADBJFABFRQ1 Features

  • High-Performance Architecture: The TDA3LADBJFABFRQ1 boasts a dual-core architecture, integrating a 212.8MHz DSP and a 500MHz MPU. This combination ensures efficient handling of both digital signal processing and general-purpose computing tasks.
  • Substantial Memory and I/O: Equipped with 512kB of RAM, the TDA3LADBJFABFRQ1 can manage large datasets and complex algorithms. The 126 I/O pins provide extensive connectivity options, making it suitable for applications requiring multiple peripheral interfaces.
  • Rich Peripheral Set: The SoC includes a comprehensive set of peripherals such as DMA, POR, PWM, and WDT, enhancing its versatility and functionality.
  • Advanced Connectivity: The TDA3LADBJFABFRQ1 supports a wide range of communication protocols, including CANbus, Ethernet, I2C, McASP, MMC/SD/SDIO, SPI, UART, and USB. This extensive connectivity suite enables seamless integration into various systems and networks.
  • Low Power Consumption: Designed with power efficiency in mind, the TDA3LADBJFABFRQ1 is ideal for battery-powered and energy-sensitive applications.
  • Robust Packaging and Compliance: The SoC is packaged in a Tape & Reel (TR) format, ensuring ease of handling and integration into automated assembly processes. It is also REACH Unaffected and ROHS3 Compliant, meeting stringent environmental and safety standards. The Moisture Sensitivity Level (MSL) of 3 (168 Hours) ensures reliability in various environmental conditions.

TDA3LADBJFABFRQ1 Applications

The TDA3LADBJFABFRQ1 is well-suited for a variety of applications, particularly those requiring vision processing and low power consumption. Key applications include:

  • Automotive Systems: Ideal for advanced driver assistance systems (ADAS) and in-vehicle infotainment (IVI) systems, where vision processing and low power consumption are critical.
  • Industrial Automation: Suitable for industrial control systems and IoT devices, where robust processing capabilities and extensive connectivity are essential.
  • Consumer Electronics: Perfect for smart home devices, wearable technology, and other consumer electronics that require high performance and low power consumption.
  • Medical Devices: Applicable in medical imaging and diagnostic equipment, where precise processing and low power are paramount.

Conclusion of TDA3LADBJFABFRQ1

The TDA3LADBJFABFRQ1 from Texas Instruments stands out as a versatile and powerful SoC, offering a unique blend of high performance and low power consumption. Its dual-core architecture, substantial memory, and extensive connectivity options make it an ideal choice for a wide range of applications, from automotive to consumer electronics. The SoC's compliance with environmental and safety standards further enhances its appeal. Whether for vision processing, industrial automation, or other demanding applications, the TDA3LADBJFABFRQ1 delivers exceptional performance and reliability.

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TDA3LADBJFABFRQ1 is a System On Chip (SoC) from Texas Instruments. This product page provides its main specifications, pricing information, availability, and inquiry options.
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