STM32F4 is a series of high-performance microcontrollers developed by ST (STMicroelectronics). It uses 90nm NVM technology and ART technology (Adaptive Real-Time Accelerator).
The STM32F429xx device is based on the high-performance Arm® Cortex®-M4 32-bit RISC core operating at a frequency of up to 180 MHz. The Cortex-M4 core features a Floating point unit (FPU) single precision which supports all Arm® single-precision data-processing instructions and data types. It also implements a full set of DSP instructions and a memory protection unit (MPU) which enhances application security.
The STM32F429xx device incorporates high-speed embedded memories (Flash memory up to 2 Mbyte, up to 256 Kbytes of SRAM), up to 4 Kbytes of backup SRAM, and an extensive range of enhanced I/Os and peripherals connected to two APB buses, two AHB buses, and a 32-bit multi-AHB bus matrix. All devices offer three 12-bit ADCs, two DACs, a low-power RTC, twelve general-purpose 16-bit timers including two PWM timers for motor control, two general-purpose 32-bit timers. They also feature standard and advanced communication interfaces.
Catalog
STM32F429IIT6 CAD Model
STM32F429IIT6 Parameters
ADC Resolution | 12 bit |
Analog Supply Voltage | 1.7 V to 3.6 V |
Base Product Number | STM32F429 |
Brand | STMicroelectronics |
Category | Integrated Circuits (ICs) |
Connectivity | CANbus, EBI/EMI, Ethernet, I²C, IrDA, LINbus, SPI, UART/USART, USB OTG |
Core | ARM Cortex M4 |
Core Processor | ARM® Cortex®-M4 |
Core Size | 32-Bit |
DAC Resolution | 12 bit |
Data Bus Width | 32 bit |
Data Converters | A/D 24x12b; D/A 2x12b |
Data RAM Size | 260 kB |
Data RAM Type | SRAM |
EEPROM Size | – |
Factory Pack Quantity | 400 |
Interface Type | CAN, I2C, SAI, SPI, UART/USART, USB |
Manufacturer | STMicroelectronics |
Maximum Clock Frequency | 180 MHz |
Maximum Operating Temperature | + 85 C |
Mfr | STMicroelectronics |
Minimum Operating Temperature | – 40 C |
Moisture Sensitive | Yes |
Mounting Style | SMD/SMT |
Mounting Type | Surface Mount |
Number of ADC Channels | 24 Channel |
Number of I/O | 140 |
Number of Timers/Counters | 14 Timer |
Operating Supply Voltage | 1.7 V to 3.6 V |
Operating Temperature | -40°C ~ 85°C (TA) |
Oscillator Type | Internal |
Package / Case | LQFP-176 |
Packaging | Tray |
Part Status | Active |
Peripherals | Brown-out Detect/Reset, DMA, I²S, LCD, POR, PWM, WDT |
Processor Series | STM32F429 |
Product | MCU+FPU |
Product Category | ARM Microcontrollers – MCU |
Program Memory Size | 2MB (2M x 8) |
Program Memory Type | Flash |
RAM Size | 256K x 8 |
Series | STM32F4 |
Speed | 180MHz |
Subcategory | Microcontrollers – MCU |
Supplier Device Package | 176-LQFP (24×24) |
Supply Voltage – Max | 3.6 V |
Supply Voltage – Min | 1.7 V |
Tradename | STM32 |
Unit Weight | 0.030336 oz |
Watchdog Timers | Watchdog Timer |
STM32F429IIT6 Advantage
STM32 F4 Cortex™-M4 MCUs
The STMicroelectronics STM32F429IIT6 is a Microcontroller Unit, based on the high-performance ARM® Cortex®-M4 32-bit RISC core operating at a frequency of up to 180MHz. The Cortex-M4 core features a floating-point unit (FPU) single precision which supports all ARM® single-precision data-processing instructions and data types. It also implements a full set of DSP instructions and a memory protection unit (MPU) which enhances application security. It incorporates high-speed embedded memories, up to 4Kbytes of backup SRAM, and an extensive range of enhanced I/Os and peripherals connected to two APB buses, two AHB buses, and a 32-bit multi-AHB bus matrix.
STMicroelectronics STM32 F4 32-bit Cortex™-M4 Microcontrollers (MCUs) offer better performance, DSP capability, more SRAM, and peripheral improvements such as full-duplex I²S, less than 1μA RTC, and 2.4MSPS ADCs. These MCUs include a floating-point unit and core features such as built-in single-cycle multiply-accumulate (MAC) instructions, optimized SIMD arithmetic, and saturating arithmetic instructions.
STM32F429IIT6 Feature
- Core: Arm ® 32-bit Cortex ® -M4 CPU with FPU, Adaptive real-time accelerator (ART Accelerator™) allowing 0-wait state execution from Flash memory, frequency up to 180 MHz, MPU, 225 DMIPS/1.25 DMIPS/MHz (Dhrystone 2.1), and DSP instructions
- Memories
– Up to 2 MB of Flash memory organized into two banks allowing read-while-write – Up to 256+4 KB of SRAM including 64-KB of CCM (core coupled memory) data RAM – Flexible external memory controller with up to 32-bit data bus: SRAM, PSRAM, SDRAM/LPSDR SDRAM, Compact Flash/NOR/NAND memories
- LCD parallel interface, 8080/6800 modes
- LCD-TFT controller with fully programmable resolution (total width up to 4096 pixels, total height up to 2048 lines, and pixel clock up to 83 MHz)
- Chrom-ART Accelerator™ for enhanced graphic content creation (DMA2D)
- Clock, reset, and supply management
– 1.7 V to 3.6 V application supply and I/Os – POR, PDR, PVD, and BOR – 4-to-26 MHz crystal oscillator – Internal 16 MHz factory-trimmed RC (1% accuracy) – 32 kHz oscillator for RTC with calibration – Internal 32 kHz RC with calibration
- Low power
– Sleep, Stop and Standby modes – V BAT supply for RTC, 20×32 bit backup registers + optional 4 KB backup SRAM
- 3×12-bit, 2.4 MSPS ADC: up to 24 channels and 7.2 MSPS in triple interleaved mode
- 2×12-bit D/A converters
- General-purpose DMA: 16-stream DMA controller with FIFOs and burst support
- Up to 17 timers: up to twelve 16-bit and two 32-bit timers up to 180 MHz, each with up to 4 IC/OC/PWM or pulse counter and quadrature (incremental) encoder input
- Debug mode
– SWD & JTAG interfaces – Cortex-M4 Trace Macrocell™
- Up to 168 I/O ports with interrupt capability
– Up to 164 fast I/Os up to 90 MHz – Up to 166 5 V-tolerant I/Os
- Up to 21 communication interfaces
– Up to 3 × I 2 C interfaces (SMBus/PMBus) – Up to 4 USARTs/4 UARTs (11.25 Mbit/s, ISO7816 interface, LIN, IrDA, modem control) – Up to 6 SPIs (45 Mbits/s), 2 with muxed full-duplex I 2 S for audio class accuracy via internal audio PLL or external clock – 1 x SAI (serial audio interface) – 2 × CAN (2.0B Active) and SDIO interface
- Advanced connectivity
– USB 2.0 full-speed device/host/OTG controller with on-chip PHY – USB 2.0 high-speed/full-speed device/host/OTG controller with dedicated DMA, on-chip full-speed PHY and ULPI – 10/100 Ethernet MAC with dedicated DMA: supports IEEE 1588v2 hardware, MII/RMII
- 8- to 14-bit parallel camera interface up to 54 Mbytes/s
- True random number generator
- CRC calculation unit
- RTC: subsecond accuracy, hardware calendar
- 96-bit unique ID
STM32F429IIT6 Environmental & Export Classifications
Attribute | Description |
RoHS Status | ROHS3 Compliant |
Moisture Sensitivity Level (MSL) | 3 (168 Hours) |
REACH Status | REACH Unaffected |
ECCN | 3A991A2 |
HTSUS | 8542.31.0001 |
STM32F429IIT6 Documents
STM32F429IIT6 Product Compliance
USHTS | 8542310001 |
CAHTS | 8542310000 |
CNHTS | 8542319000 |
JPHTS | 8542310394 |
KRHTS | 8542311000 |
MXHTS | 85423102 |
TARIC | 8542319000 |
ECCN | 3A991.a.2 |
STM32F2 Manufacturer
STMicroelectronics is a Swiss-domiciled multinational electronics and semiconductor manufacturer headquartered in Geneva, Switzerland.
STMicroelectronics is a world leader in providing semiconductor solutions that make a positive contribution to people’s lives, today and into the future.
That’s all for our introduction to STM32F429IIT6. If you find this blog useful, please bookmark our website Apogeeweb, we will provide you with electronic component blogs, industry news, tools, etc. that you are interested in. Stay tuned for our next blog…
FAQ
The STM32 series of microcontrollers from ST Microelectronics is a popular, and very large, family of ARM-based 32-bit microcontrollers. … While the STM32 microcontrollers are quite versatile and highly configurable, it is this very fact that makes them hard to initialize. |
There are various types and varieties of STM32 Microcontrollers available and they belong to the ARM-architecture family of Microcontrollers. These microcontrollers are used in a variety of applications, from simple printers to complex circuit boards in vehicles. |
Getting started with STM32 step-by-stepStep 1: Pre-requisites: In this part, a user must install all required software tools and make sure it has a board for further development.Step 2: LED blinking using STM32CubeMx and NUCLEO-L476RG development board.Step 3: UART interface on NUCLEO-L476RG and L475 IoT Node Discovery board. |