STM32F207VGT6 - 32-bit ARM Cortex-M3 MCU, 1MB Flash | STMicroelectronics
MPN: STM32F207VGT6 β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $12.5 | $12.50 |
| 10 | $11.25 | $112.50 |
| 100 | $10 | $1,000.00 |
| 500 | $9 | $4,500.00 |
| 1,000 | $8.1 | $8,100.00 |
Drop-in alternatives for STM32F207VGT6 β same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Quick Comparison Tool β Select alternative parts for side-by-side comparison:
STM32F207VGT6
β Drop-Inβ 99,999 In Stock
$8.1 / Unit
View Datasheet βSTM32F205VGT6
β Drop-Inπ Reference alternative (not in catalog)
STM32F407VGT6
β Drop-Inβ 99,999 In Stock
$5.56 / Unit
View Datasheet βSTM32F103VGT6
β Drop-Inπ Reference alternative (not in catalog)
STM32F427VGT6
β Drop-Inπ Reference alternative (not in catalog)
STM32F746VGT6
β Drop-Inπ Reference alternative (not in catalog)
LPC1768FBD100
β Drop-Inπ Reference alternative (not in catalog)
ATSAM3X8EA-AU
β Drop-Inπ Reference alternative (not in catalog)
STM32F207VGT6 Maximum Ratings & Electrical Characteristics
| Core | ARM Cortex-M3 |
| Maximum Clock Frequency | 120 MHz |
| Flash Memory | 1 MB |
| SRAM | 128 KB |
| Supply Voltage Range | 1.8 V to 3.6 V |
| Package | LQFP100 (14x14 mm) |
| Operating Temperature Range | -40C to +85C |
| Number of I/O Pins | 82 |
| ADC Resolution | 12-bit |
| Number of ADC Channels | 24 |
| DAC Resolution | 12-bit |
| Number of Timers | 12 |
| Communication Interfaces | USART, SPI, I2C, USB 2.0 OTG, Ethernet MAC, CAN |
| DMA Channels | 16 |
| RoHS Status | Compliant |
STM32F207VGT6 Pin Configuration
| Pin 1 | PE2 β GPIO / FMC_A23 |
| Pin 2 | PE3 β GPIO / FMC_A19 |
| Pin 3 | PE4 β GPIO / FMC_A20 |
| Pin 4 | PE5 β GPIO / FMC_A21 |
| Pin 5 | PE6 β GPIO / FMC_A22 |
| Pin 6 | VBAT β Battery backup supply |
| Pin 7 | PC13 β GPIO / RTC_AF1 |
| Pin 8 | PC14 β GPIO / OSC32_IN |
| Pin 9 | PC15 β GPIO / OSC32_OUT |
| Pin 10 | PF0 β GPIO / FMC_A0 |
| Pin 11 | PF1 β GPIO / FMC_A1 |
| Pin 12 | PF2 β GPIO / FMC_A2 |
| Pin 13 | PF3 β GPIO / FMC_A3 |
| Pin 14 | PF4 β GPIO / FMC_A4 |
| Pin 15 | PF5 β GPIO / FMC_A5 |
| Pin 16 | VSS β Ground |
| Pin 17 | VDD β Power supply |
| Pin 18 | PF6 β GPIO / FMC_NWAIT |
| Pin 19 | PF7 β GPIO / FMC_NE1 |
| Pin 20 | PF8 β GPIO / FMC_NCE2 |
| Pin 21 | PF9 β GPIO / FMC_NCE3 |
| Pin 22 | PF10 β GPIO / FMC_NE2 |
| Pin 23 | PH0 β GPIO / OSC_IN |
| Pin 24 | PH1 β GPIO / OSC_OUT |
| Pin 25 | PH2 β GPIO / FMC_SDCKE0 |
| Pin 26 | PH3 β GPIO / FMC_SDNE0 |
| Pin 27 | PH4 β GPIO / FMC_SDNE1 |
| Pin 28 | PH5 β GPIO / FMC_SDNWE |
| Pin 29 | PH6 β GPIO / FMC_SDNE1 |
| Pin 30 | PH7 β GPIO / FMC_SDCKE1 |
| Pin 31 | PH8 β GPIO / FMC_D16 |
| Pin 32 | PH9 β GPIO / FMC_D17 |
| Pin 33 | PH10 β GPIO / FMC_D18 |
| Pin 34 | PH11 β GPIO / FMC_D19 |
| Pin 35 | PH12 β GPIO / FMC_D20 |
| Pin 36 | PH13 β GPIO / FMC_D21 |
| Pin 37 | PH14 β GPIO / FMC_D22 |
| Pin 38 | PH15 β GPIO / FMC_D23 |
| Pin 39 | VSS β Ground |
| Pin 40 | VDD β Power supply |
| Pin 41 | PI0 β GPIO / FMC_D24 |
| Pin 42 | PI1 β GPIO / FMC_D25 |
| Pin 43 | PI2 β GPIO / FMC_D26 |
| Pin 44 | PI3 β GPIO / FMC_D27 |
| Pin 45 | PI4 β GPIO / FMC_D28 |
| Pin 46 | PI5 β GPIO / FMC_D29 |
| Pin 47 | PI6 β GPIO / FMC_D30 |
| Pin 48 | PI7 β GPIO / FMC_D31 |
| Pin 49 | PD0 β GPIO / FMC_D2 |
| Pin 50 | PD1 β GPIO / FMC_D3 |
| Pin 51 | PD2 β GPIO / FMC_D4 |
| Pin 52 | PD3 β GPIO / FMC_D5 |
| Pin 53 | PD4 β GPIO / FMC_D6 |
| Pin 54 | PD5 β GPIO / FMC_D7 |
| Pin 55 | PD6 β GPIO / FMC_D8 |
| Pin 56 | PD7 β GPIO / FMC_D9 |
| Pin 57 | PD8 β GPIO / FMC_D10 |
| Pin 58 | PD9 β GPIO / FMC_D11 |
| Pin 59 | PD10 β GPIO / FMC_D12 |
| Pin 60 | PD11 β GPIO / FMC_D13 |
| Pin 61 | PD12 β GPIO / FMC_D14 |
| Pin 62 | PD13 β GPIO / FMC_D15 |
| Pin 63 | PD14 β GPIO / FMC_D0 |
| Pin 64 | PD15 β GPIO / FMC_D1 |
| Pin 65 | VSS β Ground |
| Pin 66 | VDD β Power supply |
| Pin 67 | PC0 β GPIO / ADC_IN10 |
| Pin 68 | PC1 β GPIO / ADC_IN11 |
| Pin 69 | PC2 β GPIO / ADC_IN12 |
| Pin 70 | PC3 β GPIO / ADC_IN13 |
| Pin 71 | PC4 β GPIO / ADC_IN14 |
| Pin 72 | PC5 β GPIO / ADC_IN15 |
| Pin 73 | PB0 β GPIO / ADC_IN8 |
| Pin 74 | PB1 β GPIO / ADC_IN9 |
| Pin 75 | PB2 β GPIO / BOOT1 |
| Pin 76 | PB3 β GPIO / JTDO |
| Pin 77 | PB4 β GPIO / NJTRST |
| Pin 78 | PB5 β GPIO / I2C1_SMBA |
| Pin 79 | PB6 β GPIO / I2C1_SCL |
| Pin 80 | PB7 β GPIO / I2C1_SDA |
| Pin 81 | PB8 β GPIO / I2C1_SCL |
| Pin 82 | PB9 β GPIO / I2C1_SDA |
| Pin 83 | PB10 β GPIO / I2C2_SCL |
| Pin 84 | PB11 β GPIO / I2C2_SDA |
| Pin 85 | PB12 β GPIO / SPI2_NSS |
| Pin 86 | PB13 β GPIO / SPI2_SCK |
| Pin 87 | PB14 β GPIO / SPI2_MISO |
| Pin 88 | PB15 β GPIO / SPI2_MOSI |
| Pin 89 | VSS β Ground |
| Pin 90 | VDD β Power supply |
| Pin 91 | PA0 β GPIO / ADC_IN0 |
| Pin 92 | PA1 β GPIO / ADC_IN1 |
| Pin 93 | PA2 β GPIO / ADC_IN2 |
| Pin 94 | PA3 β GPIO / ADC_IN3 |
| Pin 95 | PA4 β GPIO / ADC_IN4 |
| Pin 96 | PA5 β GPIO / ADC_IN5 |
| Pin 97 | PA6 β GPIO / ADC_IN6 |
| Pin 98 | PA7 β GPIO / ADC_IN7 |
| Pin 99 | PA8 β GPIO / MCO1 |
| Pin 100 | PA9 β GPIO / USART1_TX |
Safe Operating Area (SOA) & Thermal Characteristics
No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.
Typical Applications
STM32F207VGT6 is suitable for 6 applications: Industrial Control Systems, IoT Gateways, Medical Devices, Point-of-Sale Terminals, Motor Drives, Smart Meters.
Industrial Control Systems
The STM32F207VGT6 is ideal for industrial control systems due to its high clock speed, rich peripheral set, and robust communication interfaces. It can handle complex control algorithms, real-time data acquisition, and networking in factory automation, PLCs, and motor drives. The 12-bit ADC with 24 channels allows precise sensor interfacing, while the Ethernet MAC enables remote monitoring and control. Its wide operating temperature range (-40Β°C to +85Β°C) ensures reliability in harsh industrial environments. The device's 1 MB Flash and 128 KB SRAM provide ample resources for complex firmware, and the multiple timers support PWM generation for motor control. The CAN interface facilitates communication in industrial networks, making it a versatile choice for control applications.
Recommended
IoT Gateways
The STM32F207VGT6 is well-suited for IoT gateways that require connectivity and processing power. Its Ethernet MAC and USB OTG interfaces allow connection to wired and wireless networks, while the multiple USART, SPI, and I2C interfaces enable communication with various sensors and modules. The 1 MB Flash and 128 KB SRAM can handle IoT protocols like MQTT and CoAP, and the low-power modes help optimize energy consumption. The device's cryptographic/hash processor enhances security for data transmission. In a typical IoT gateway, the STM32F207VGT6 acts as the central processor, managing data aggregation, protocol conversion, and cloud connectivity. Its rich peripheral set and high performance make it a reliable choice for edge computing applications.
Recommended
Medical Devices
The STM32F207VGT6 is suitable for medical devices such as patient monitors, infusion pumps, and diagnostic equipment. Its high processing power enables real-time signal processing and data analysis, while the 12-bit ADC and DAC support precise analog interfacing. The device's multiple communication interfaces allow connectivity with external systems, and its low-power modes are beneficial for battery-powered portable devices. The wide operating temperature range and industrial-grade reliability make it suitable for medical environments. In a patient monitor, the STM32F207VGT6 can acquire vital signs from sensors, process the data, and display results on an LCD. Its rich peripheral set and memory capacity support complex medical algorithms and user interfaces.
Recommended
Point-of-Sale Terminals
The STM32F207VGT6 is an excellent choice for point-of-sale (POS) terminals that require secure transactions and multiple connectivity options. Its Ethernet MAC and USB OTG interfaces enable wired and wireless communication, while the cryptographic/hash processor ensures secure data encryption. The device's high clock speed and memory capacity support complex user interfaces and transaction processing. In a POS terminal, the STM32F207VGT6 can manage the display, keypad, card reader, and network connectivity. Its rich peripheral set and robust security features make it a reliable platform for financial applications.
Recommended
Motor Drives
The STM32F207VGT6 is well-suited for motor drive applications, including AC induction motors, BLDC motors, and stepper motors. Its advanced timers generate complementary PWM signals with dead-time insertion, essential for driving power stages. The 12-bit ADC with multiple channels enables precise current and voltage sensing for closed-loop control. The device's high clock speed ensures fast control loop execution, and the CAN interface allows integration into industrial networks. In a motor drive, the STM32F207VGT6 can implement field-oriented control (FOC) algorithms, providing smooth and efficient motor operation. Its rich peripheral set and robust design make it a popular choice for variable frequency drives and servo controllers.
Recommended
Smart Meters
The STM32F207VGT6 is ideal for smart metering applications, such as electricity, water, and gas meters. Its low-power modes help extend battery life, while the multiple communication interfaces (UART, SPI, I2C) enable connectivity to various metering modules and communication modules. The 12-bit ADC allows accurate measurement of analog signals, and the Ethernet MAC supports remote data collection. In a smart electricity meter, the STM32F207VGT6 can process voltage and current samples, calculate energy consumption, and communicate with the utility via power line communication or wireless modules. Its high performance and rich peripherals make it a reliable choice for advanced metering infrastructure.
Recommended
Recommended Products Summary
Engineering reference data for STM32F207VGT6 β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | STM32F205VGT6 | STM32F407VGT6 | STM32F103VGT6 | STM32F427VGT6 | STM32F746VGT6 | LPC1768FBD100 | ATSAM3X8EA-AU |
|---|---|---|---|---|---|---|---|---|
| Package | LQFP100 | LQFP100 | LQFP100 | LQFP100 | LQFP100 | LQFP100 | LQFP100 | LQFP100 |
| Brand | STMicroelectronics | STMicroelectronics | STMicroelectronics | STMicroelectronics | STMicroelectronics | STMicroelectronics | NXP Semiconductors | Microchip Technology |
| Core | ARM Cortex-M3 | ARM Cortex-M3 | ARM Cortex-M4 with FPU | ARM Cortex-M3 | ARM Cortex-M4 with FPU | ARM Cortex-M7 | ARM Cortex-M3 | ARM Cortex-M3 |
| Maximum Clock Frequency | 120 MHz | 120 MHz | 168 MHz | 72 MHz | 180 MHz | 216 MHz | 100 MHz | 84 MHz |
| Flash Memory | 1 MB | 1 MB | 1 MB | 1 MB | 1 MB | 1 MB | 512 KB | 512 KB |
| SRAM | 128 KB | 128 KB | 192 KB | 96 KB | 256 KB | 320 KB | 64 KB | 96 KB |
| Ethernet MAC | Yes | No | Yes | No | Yes | Yes | No | No |
| USB OTG | Yes | Yes | Yes | No | Yes | Yes | Yes | Yes |
| Price (1 pcs) | $12.50 | $11.00 | $13.50 | $9.00 | $15.00 | $18.00 | $10.00 | $9.50 |
Key Differentiators
- Integrated Ethernet MAC (vs STM32F205VGT6)
- Higher clock speed than STM32F103VGT6 (vs STM32F103VGT6)
- Lower cost than STM32F407VGT6 (vs STM32F407VGT6)
Design Notes
The STM32F207VGT6 operates from 1.8V to 3.6V. Use a stable power supply with proper decoupling: place a 100nF capacitor close to each VDD pin and a 4.7uF bulk capacitor on the main supply. For the VDDA pin, use a dedicated analog supply with an LC filter to reduce noise, as analog performance depends on clean power.
For high-speed communication interfaces like Ethernet and USB, maintain controlled impedance traces (e.g., 90 ohms differential for USB, 100 ohms for Ethernet). Keep traces short and use ground planes to minimize EMI. For the crystal oscillator, place it close to the MCU and keep the load capacitors within 5mm to ensure stable oscillation.
Ensure the BOOT0 pin is correctly configured to boot from Flash (tied low). Do not leave unused I/O pins floating; configure them as outputs or pull them to a defined level to reduce power consumption and noise. Also, verify that the HSE crystal frequency matches the PLL configuration to avoid clock errors.
Compliance Information
RoHS compliant per STMicroelectronics product page. Not AEC-Q100 qualified; for automotive use, consider STM32F207VGT6Q or other automotive-grade variants.