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TM4C1237H6PZI

  • In Stock: 1000
  • Available: 1766

Reference Price(In US Dollars)

QtyUnit PriceExt.Price
1+US $13.61920US $13.62
10+US $12.25728US $122.57
30+US $9.53344US $286.00
100+US $7.83104US $783.10
500+US $7.49056US $3745.28
1000+US $6.80960US $6809.60

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  • Description
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Description

The TM4C1237H6PZI is a microcontroller from Texas Instruments, part of the Tiva C Series. It is designed for high-performance applications and is particularly well-suited for embedded systems that require advanced processing capabilities, connectivity, and control features. Here’s a detailed description of its key features and specifications:

Core Architecture

  • Processor: The TM4C1237H6PZI is based on the ARM Cortex-M4 architecture, which provides a 32-bit RISC (Reduced Instruction Set Computing) core. This architecture is known for its efficiency and performance, making it ideal for real-time applications.
  • Clock Speed: The microcontroller operates at a maximum clock speed of 80 MHz, allowing for fast processing and execution of instructions.

Memory

  • Flash Memory: It includes 256 KB of flash memory, which is used for storing the program code and non-volatile data.
  • SRAM: The device is equipped with 32 KB of SRAM, providing fast access to data during program execution.
  • EEPROM: The TM4C1237H6PZI also features 2 KB of EEPROM, which is useful for storing small amounts of data that must be retained even when the power is turned off.

Peripherals

  • GPIO: The microcontroller has a rich set of general-purpose input/output (GPIO) pins, allowing for flexible interfacing with various sensors, actuators, and other peripherals.
  • Timers: It includes multiple timers that can be used for generating precise time delays, event counting, and PWM (Pulse Width Modulation) signal generation.
  • ADC: The integrated 12-bit analog-to-digital converter (ADC) allows for the conversion of analog signals to digital data, enabling the microcontroller to interface with analog sensors.
  • Communication Interfaces: The TM4C1237H6PZI supports various communication protocols, including UART, I2C, SPI, and USB, facilitating easy connectivity with other devices and systems.

Connectivity

  • Ethernet: This microcontroller features an Ethernet MAC, enabling it to connect to local area networks (LAN) and the internet, making it suitable for IoT (Internet of Things) applications.
  • USB: It supports USB 2.0, allowing for easy connection to USB devices and enabling USB host and device functionalities.

Power Management

  • Operating Voltage: The TM4C1237H6PZI operates at a voltage range of 1.8V to 3.6V, making it suitable for battery-powered applications.
  • Low Power Modes: It includes various low-power modes to help conserve energy during periods of inactivity, which is crucial for portable and battery-operated devices.

Package and Dimensions

  • Package Type: The TM4C1237H6PZI is available in a LQFP (Low-Profile Quad Flat Package) with 64 pins, which provides a compact form factor suitable for space-constrained applications.
  • Dimensions: The package dimensions are typically around 10 mm x 10 mm, but specific dimensions can vary based on the exact package variant.

Development Support

  • Development Tools: Texas Instruments provides a range of development tools, including the Tiva C Series LaunchPad development kit, software libraries, and an integrated development environment (IDE) to facilitate programming and debugging.

Applications

The TM4C1237H6PZI is ideal for a wide range of applications, including:

  • Industrial automation
  • Motor control
  • Home automation
  • Medical devices
  • Consumer electronics
  • IoT devices

In summary, the TM4C1237H6PZI from Texas Instruments is a versatile and powerful microcontroller that combines high performance, extensive peripheral support, and connectivity options, making it suitable for a variety of embedded applications.

Alternatives

Functional Equivalent (FE) materials, including Fused Filament Fabrication (FFF) form, assembly, and functionally compatible substitute materials.

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