TM4C1290NCPDTI3R
Cutting-edge 32-bit MCU powered by ARM Cortex-M4F technologyTM4C1290NCPDTI3R
Cutting-edge 32-bit MCU powered by ARM Cortex-M4F technology
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Manufacturer Part # : TM4C1290NCPDTI3R
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Package/Case: TQFP-128
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Brand: Texas Instruments
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Product Categories : Microcontrollers
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Series : TM4C1290
Quality Assurance
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Shipping & Payment
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Service & Packaging
Service & Packaging
About After Sales Service
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TM4C1290NCPDTI3R DataSheet
Current price plan is under preparation. Please contact our customer service team for the latest pricing information. Thank you for your understanding and support!
Interested Parts
TM4C1290NCPDTI3R Details
The TM4C1290NCPDTI3R is a high-performance microcontroller from Texas Instruments, designed for advanced control and computing applications. This device features an ARM Cortex-M4F processor core, 1MB of flash memory, and 128KB of SRAM, making it suitable for complex industrial automation systems.
Pinout
- P0.0-P0.31: General-purpose I/O pins
- P1.0-P1.31: General-purpose I/O pins
- P2.0-P2.7: General-purpose I/O pins
- P3.0-P3.7: General-purpose I/O pins
- P4.0-P4.15: General-purpose I/O pins
- VDD: Power supply pin
- GND: Ground pin
(Tip: For detailed pinout information, please refer to the corresponding datasheet.)
Key Features
- ARM Cortex-M4F processor core with 120MHz clock speed
- 1MB of flash memory for storing program code and data
- 128KB of SRAM for temporary storage of data and program variables
- Supports up to 32-bit floating-point operations
- Integrated peripherals, including UART, SPI, I2C, and CAN interfaces
Applications
The TM4C1290NCPDTI3R is suitable for a wide range of applications that require high-performance processing and advanced control capabilities. Some examples include:
- Industrial automation systems, such as robotics and machine control
- Aerospace and defense systems, including navigation and communication systems
- Medical devices, such as patient monitoring and diagnostic equipment
- Automotive systems, including infotainment and driver assistance systems
Where to Use
The TM4C1290NCPDTI3R is designed for use in a variety of environments, including:
- Industrial settings, such as factories and manufacturing facilities
- Aerospace and defense applications, including military and commercial aircraft
- Medical facilities, including hospitals and clinics
- Automotive environments, including vehicle manufacturers and repair shops
How to Use
To use the TM4C1290NCPDTI3R, follow these steps:
- Connect the device to a power supply and ground plane
- Configure the device's peripherals, such as UART and SPI interfaces
- Write and load program code onto the device using a development toolchain
- Test and debug the device using a debugger or emulator
Application Circuit
The application circuit diagram for the TM4C1290NCPDTI3R illustrates how to connect the device to various peripherals, including UART, SPI, and I2C interfaces. It also shows how to power the device and provide a ground plane.
(Tip: For detailed circuit diagram connections and usage guide, refer to the datasheet.)
Equivalents
- LPC4357: A similar microcontroller from NXP Semiconductors with comparable features and performance.
- KW41Z: An alternative microcontroller from Silicon Labs with equivalent functionality.
Complementary
The TM4C1290NCPDTI3R can be complemented by other devices in the TM4C series, including the TM4C1230 and TM4C1292. These devices offer similar features and performance, but with different pinouts and package options.
Frequently Asked Questions
Q: What is the maximum clock speed supported by the TM4C1290NCPDTI3R?
A: The TM4C1290NCPDTI3R supports a maximum clock speed of 120MHz.
Q: Can the TM4C1290NCPDTI3R be used in aerospace and defense applications?
A: Yes, the TM4C1290NCPDTI3R is suitable for use in aerospace and defense applications due to its high-reliability design and radiation-hardened features.
Specifications
The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.
Frequency (MHz) | 120 | Flash memory (kByte) | 1024 |
RAM (kByte) | 256 | ADC type | 12-bit SAR |
Number of GPIOs | 90 | UART | 8 |
Number of I2Cs | 10 | Features | 8-/16-/32-bit EPI, Hibernation with calendar mode |
Operating temperature range (°C) | -40 to 105, -40 to 85 | Ethernet | No |
PWM (Ch) | 8 | SPI | 4 |
USB | Yes | CAN (#) | 2 |
Rating | Catalog | Communication interface | CAN, I2C, SSI/SPI, UART, USB 2.0 OTG/host/device |
Datasheet PDF
Datasheets record the features, absolute maximum ratings, applications and more of the device, which benefit a lot as an overall guide to the specific application of the part.
FAQs
What is TM4C1290NCPDTI3R?
The TM4C1290NCPDTI3R is a high-performance microcontroller from Texas Instruments, specifically part of the TIVA C Series. It features a ARM Cortex-M4 core with integrated peripherals, making it suitable for applications requiring advanced processing capabilities and connectivity options.
How Does TM4C1290NCPDTI3R Work?
The TM4C1290NCPDTI3R operates as a high-performance microcontroller with a ARM Cortex-M4 core, providing efficient processing power for various tasks. It integrates a wide range of peripherals such as USB, Ethernet, and CAN interfaces for connectivity, enabling the device to communicate with external devices and networks.
How Many Pins does TM4C1290NCPDTI3R have and What are the Functions of the Pinout Configuration?
The TM4C1290NCPDTI3R is housed in a 144-pin LQFP (Low Profile Quad Flat Package) package. The pinout configuration includes various pins for GPIOs, power supplies, communication interfaces, timers, and analog functions.
What are the Pros and Cons of TM4C1290NCPDTI3R?
Pros:
- High-Performance Processing: ARM Cortex-M4 core provides efficient processing power.
- Rich Peripheral Integration: Includes a wide range of integrated peripherals for connectivity.
- Scalability: Offers scalability in terms of memory, peripherals, and performance.
- Development Tools: Supported by comprehensive development tools and software libraries.
- Connectivity Options: Supports various communication interfaces for versatile connectivity.
Cons:
- Complexity: Due to its advanced features, may require a learning curve for beginners.
- Higher Cost: Advanced features may result in a higher cost compared to simpler microcontrollers.
- Power Consumption: Depending on the application, power consumption may be a consideration.
Are There Any Equivalents/Alternatives to TM4C1290NCPDTI3R for Recommendation?
- The STM32F4 series from STMicroelectronics offers similar ARM Cortex-M4 based microcontrollers.
- Alternatives to the TM4C1290NCPDTI3R include the SAM4 series from Microchip and the Kinetis K series from NXP.
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