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STM32F722ZET6
+StücklisteIC MCU 32BIT 512KB FLASH 144LQFP
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HerstellerSTMikroelektronik
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Herstellerteil #STM32F722ZET6
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Datenblatt STM32F722ZET6 DataSheet
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Paket LQFP-144
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Auf Lager3591
365 Tage Qualitätsgarantie
7*24 Stunden-Servicegarantie
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Originalproduktgarantie
Spezifikationen
| Attribut | Wert |
| Package | Tray |
| Series | STM32F7 |
| ProductStatus | Active |
| CoreProcessor | ARM® Cortex®-M7 |
| CoreSize | 32-Bit Single-Core |
| Speed | 216MHz |
| Connectivity | CANbus, EBI/EMI, I²C, IrDA, LINbus, MMC/SD, QSPI, SAI, SPI, UART/USART, USB |
| Peripherals | Brown-out Detect/Reset, DMA, I²S, POR, PWM, WDT |
| NumberofI/O | 114 |
| ProgramMemorySize | 512KB (512K x 8) |
| ProgramMemoryType | FLASH |
| RAMSize | 256K x 8 |
| Voltage-Supply(Vcc/Vdd) | 1.7V ~ 3.6V |
| DataConverters | A/D 24x12b; D/A 2x12b |
| OscillatorType | Internal |
| OperatingTemperature | -40°C ~ 85°C (TA) |
| MountingType | Surface Mount |
| Package/Case | 144-LQFP |
Übersicht
Description
- 216 MHz clock speed
- 512 KB Flash, 256 KB SRAM
- Dual-bank Flash for secure firmware updates
- Hardware crypto acceleration (AES, HASH, RNG)
- Rich peripherals: USB OTG, CAN, SPI/I2C, UART, ADC/DAC, timers
- 2x 16-bit ADCs, 2x 12-bit DACs
- 144-pin LQFP package
It supports DSP instructions and FPU, making it ideal for real-time control, audio processing, and IoT applications. The ART Accelerator™ ensures zero-wait-state execution from Flash.
Key advantages:
✔ High-speed processing
✔ Enhanced security features
✔ Low-power modes for efficiency
Commonly used in industrial automation, consumer electronics, and embedded systems.
Equivalent
1. STM32F723ZET6 – Similar specs with enhanced security features.
2. STM32F732ZET6 – Adds hardware encryption (AES, HASH).
3. STM32F746ZET6 – Higher flash (512KB vs. 512KB), more peripherals.
4. STM32H743ZIT6 (H7 series) – Faster (400MHz), more memory.
Check pin compatibility and peripheral needs before substitution.
Features
- Core: 32-bit Cortex-M7 with FPU, DSP instructions
- Flash: 512 KB
- RAM: 256 KB (SRAM) + 16 KB (TCM)
- GPIOs: Up to 140
- Timers: 12x 16-bit, 2x 32-bit, 2x PWM
- ADCs: 3x 12-bit (2.4 MSPS)
- DACs: 2x 12-bit
- Communication:
- 6x USART/UART
- 4x SPI (50 Mbps)
- 4x I2C (1 Mbps)
- 3x CAN 2.0B
- USB 2.0 OTG FS/HS (with PHY)
- Advanced Peripherals:
- 2x SAI (audio)
- SPDIF-Rx
- 8- to 14-bit camera interface
- Security: CRC, RNG, 96-bit UID
- Package: LQFP144
- Operating Voltage: 1.7V–3.6V
Ideal for high-speed processing, audio, and connectivity applications.
Pinout
- Pin Count: 144 pins (LQFP package).
- Core: ARM Cortex-M7 at 216 MHz.
- Flash: 512 KB, SRAM: 256 KB + 16 KB (TCM).
- Peripherals:
- USB OTG FS/HS, CAN, SPI/I2C/UART (multiple instances).
- ADC (12-bit), DAC, Timers (PWM, capture/compare).
- Ethernet MAC, SDIO, SAI (audio).
- GPIOs: Up to 114 usable I/Os (5V-tolerant).
- Package: LQFP144 (20x20mm).
It’s designed for high-performance applications like industrial control, audio, and connectivity.
Manufacturer
STMicroelectronics specializes in designing and producing a wide range of semiconductor products, including microcontrollers (like the STM32 series), sensors, power management ICs, and analog devices. The company is a key player in the embedded systems industry, known for its high-performance, energy-efficient solutions.
The STM32F722ZET6 is part of ST's STM32F7 series, featuring an ARM Cortex-M7 core, high-speed processing, and advanced peripherals for applications like industrial automation, consumer electronics, and IoT.
ST is recognized for innovation, reliability, and strong support through development tools and software ecosystems (e.g., STM32Cube).
Application
- Industrial Control: PLCs, motor control, automation.
- Consumer Electronics: Smart home devices, wearables.
- Audio Processing: High-performance audio interfaces, DSP applications.
- IoT & Connectivity: Wi-Fi/Bluetooth gateways, embedded sensors.
- Medical Devices: Portable diagnostics, monitoring systems.
- Automotive: Infotainment, telematics, ADAS peripherals.
Its 216 MHz clock speed, FPU, and rich peripherals (USB, CAN, SPI, I2C, ADC) make it ideal for real-time, high-performance embedded systems.