Arm-based microcontrollers
Highly integrated, low-cost MCUs for industrial and automotive systems
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Arm® Cortex®-M0+
Reduce system cost and accelerate development time with our Arm Cortex-M0+ microcontroller portfolio and ecosystem
Arm® Cortex®-M4
This scalable portfolio of microcontrollers offer a multitude of feature-rich communication peripherals. To help you create reliable and highly connected industrial systems.
Arm® Cortex®-R
Combine the real-time processing, security and safety features of a microcontroller with the multicore computing capability, signal processing and advanced networking typically seen in a MPU
New products
Automotive 32-Mhz Arm® Cortex®-M0+ with 64-KB flash, 4-KB RAM, 12-bit ADC, OPA,LIN
Approx. price (USD) 1ku | 0.635
Arm® Cortex®-R5F-based MCU with industrial communications and security up to 800 MHz
Approx. price (USD) 1ku | 6.815
Automotive 32-Mhz Arm® Cortex®-M0+ with 32-KB flash, 4-KB RAM, 12-bit ADC, OPA, LIN
Approx. price (USD) 1ku | 0.575
Automotive single-core Arm® Cortex®-R5F MCU up to 400 MHz with real-time control and security
Approx. price (USD) 1ku | 6.474
32-MHz Arm® Cortex®-M0+ MCU with 8-KB flash, 2-KB SRAM, 12-bit ADC, comparator, OPA
Approx. price (USD) 1ku | 0.401
Single-core Arm® Cortex®-R5F MCU up to 400 MHz with real-time control and security
Approx. price (USD) 1ku | 5.78
Why choose TI Arm® Cortex®-based microcontrollers
Find the right product for your design
We offer cost-optimized microcontrollers for general-purpose and high-performance control and networking. Our large portfolio helps you find the best combination of performance and features.
Scale performance over time
Our large and diverse portfolio can future-proof your designs because you can easily scale application performance up or down. As your products evolve, our scalable solutions evolve with you.
Reduce time-to-market
We offer extensive resources, including hardware boards, software and online support and training that helps you design, develop and launch products quickly at a reduced cost.
Our Arm® Cortex®-based advantages
Our design resources streamline device configuration, ensuring that you spend your time on designing your application not learning new software. Our expansive portfolio includes:
- Pin-to-pin devices across packages and memory options, along with compatible software.
- Analog integration options in pin-to-pin compatible devices such as dual zero drift operational amplifiers, comparators and 12-bit analog-to-digital converters.
- Package options for an M0+ portfolio, from 8 pins to 100 pins.
From digital power control to motor drives, our devices are capable of integrating control, networking, security, and Safety Integrity Level (SIL)-3/Automotive Safety Integrity Level (ASIL)-D functional safety compliance to enable one chip solutions. With a rich and enhanced analog peripheral set to achieve complex control topologies, our devices feature Arm® Cortex®-R5F based solutions for your real-time control needs.
- One to four Arm Cortex-R5F devices at up to 800 MHz
- Enhanced high-resolution pulse-width modulators (150 ps), up to five 12-bit analog-to-digital converters at 4 MSPS.
- Reliable and accurate sensing, removing the need for an external field-programmable gate array.
Streamline your functional safety design
From industrial automation and motor drives to advanced automotive systems, TI Functional Safety-Compliant products include features such as isolated microcontrollers for safety functions up tto Safety Integrity Level (SIL) 3/Automotive Safety Integrity Level (ASIL) , memory protection units, temperature monitoring sensors and multi-channel analog-to-digital converters for system monitoring.
- Made for SIL-2 to SIL-3 and ASIL-B to ASIL-D requirements.
- Features on-chip safety diagnostics.
- Built using TÜV SÜD-certified functional safety development processes.
TM4C MCU portfolio
In a world where connectivity is vital, our broad portfolio of 32-bit Arm® Cortex®-M4F microcontrollers (MCUs) offer scalability across industrial systems that rely on wired connectivity. Boasting a multitude of integrated communication peripherals including Controller Area Network (CAN), USB and Ethernet, our deviceshelp building rreliable and highly-connected systems.
- Many supported communication peripherals, including integrated Ethernet medium access control (MAC) plus physical layer (PHY).
- Supporting peripherals including high-channel count analog-to-digital converters, dedicated pulse-width modulation and real-time clocks.
- A scalable portfolio with numerous memory footprints and package options.