STMicroelectronics

STM32F469NIH6 - 2MB Flash, 180MHz ARM Cortex-M4F MCU | STMicroelectronics

MPN: STM32F469NIH6 βœ“ Active
In Stock (99,999) Ships in 1-3 business days
1.7 V to 3.6 V Vdss TFBGA216 (13x13 mm, 0.8 mm pitch) Package 180 MHz Speed 2 MB Memory
$18.5 USD / Unit
MOQ: 1 |
Volume Pricing
Qty Unit Price Extended
1 $18.5 $18.50
10 $16.8 $168.00
100 $14.2 $1,420.00
500 $12.9 $6,450.00
1,000 $11.75 $11,750.00
ℹ️ All prices are in USD

Drop-in alternatives for STM32F469NIH6 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:

STM32F469NIH6TR

βœ… Drop-In
πŸ“¦ TFBGA216
Same die, tape and reel packaging variant

πŸ“‹ Reference alternative (not in catalog)

STM32F469NIH6Q

βœ… Drop-In
πŸ“¦ TFBGA216
Automotive grade, AEC-Q100 qualified

πŸ“‹ Reference alternative (not in catalog)

STM32F429NIH6

βœ… Drop-In
STMicroelectronics
πŸ“¦ TFBGA216
ARM Cortex-M4 with FPU Β· 180 MHz Β· 2 MB Β· 256 KB Β· TFBGA216 (13x13 mm) Β· 1.7 V to 3.6 V Β· -40C to +85C Β· 168

βœ“ 99,999 In Stock

$11.6 / Unit

View Datasheet β†’

STM32F439NIH6

βœ… Drop-In
πŸ“¦ TFBGA216
Similar performance, but lacks MIPI DSI and Chrom-ART Accelerator

πŸ“‹ Reference alternative (not in catalog)

ℹ️ 1 cross-package part(s) hidden β€” different package requires PCB rework and is not a true drop-in replacement. Contact us if you need cross-package suggestions.

STM32F469NIH6 Maximum Ratings & Electrical Characteristics

Core ARM Cortex-M4F with FPU
Maximum Clock Frequency 180 MHz
Flash Memory 2 MB
SRAM 384 KB
Supply Voltage Range 1.7 V to 3.6 V
Package TFBGA216 (13x13 mm, 0.8 mm pitch)
Operating Temperature Range -40C to +85C
Number of I/O Pins 168
ADC Resolution 12-bit
Number of ADC Channels 3x 12-bit ADC with up to 24 channels
DAC Resolution 12-bit
Number of DAC Channels 2
Communication Interfaces 4x USART, 4x SPI, 3x I2C, 2x CAN, 1x SDIO, 1x USB 2.0 OTG FS/HS, 2x SAI
Timers 12x 16-bit, 2x 32-bit
Graphics TFT LCD controller, Chrom-ART Accelerator, MIPI DSI
Cryptographic Acceleration AES, DES, 3DES, SHA-1, MD5, TRNG
RoHS Status Compliant

STM32F469NIH6 Pin Configuration

Electronic Component Package Diagram Default generic electronic component package diagram 1 2 3 Package
Pin A1 VDD β€” Power supply
Pin A2 VSS β€” Ground
Pin B1 PA0 β€” GPIO/ADC
Pin B2 PA1 β€” GPIO/ADC
Pin C1 PA2 β€” GPIO/USART
Pin C2 PA3 β€” GPIO/USART
Pin D1 PA4 β€” GPIO/SPI
Pin D2 PA5 β€” GPIO/SPI
Pin E1 PA6 β€” GPIO/SPI
Pin E2 PA7 β€” GPIO/SPI
Pin F1 VDD β€” Power supply
Pin F2 VSS β€” Ground

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for STM32F469NIH6 Drain-to-Source Voltage (Vds) Drain Current (Id)

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

STM32F469NIH6 is suitable for 6 applications: Human-Machine Interface (HMI), Industrial Control, Medical Devices, Smart Home Hub, Audio Processing, IoT Gateway.

πŸ“Ί

Human-Machine Interface (HMI)

The STM32F469NIH6 is ideal for HMI applications due to its TFT LCD controller, Chrom-ART Accelerator, and MIPI DSI support. It enables smooth graphics rendering and touch response in industrial panels, smart appliances, and point-of-sale terminals. The 180 MHz Cortex-M4F core handles complex UI logic, while the 2 MB Flash stores graphical assets. The Chrom-ART Accelerator offloads 2D graphics operations, freeing the CPU for other tasks. With 384 KB SRAM, it can buffer multiple frames for seamless animations. The device supports up to XGA resolution, making it suitable for high-resolution displays. Its low-power modes extend battery life in portable HMIs. The cryptographic acceleration ensures secure communication in payment terminals. Overall, the STM32F469NIH6 provides a cost-effective solution for rich graphical interfaces.

🏭

Industrial Control

The STM32F469NIH6 excels in industrial control applications such as motor control, robotics, and PLCs. Its 180 MHz Cortex-M4F core with FPU provides fast, deterministic execution for real-time control loops. The 12x 16-bit timers and 2x 32-bit timers generate precise PWM signals for motor drivers. The 3x 12-bit ADCs sample analog feedback with high resolution. The device supports multiple communication protocols (CAN, USART, SPI, I2C) for interfacing with sensors, actuators, and fieldbuses. The wide operating temperature range (-40C to +85C) ensures reliability in harsh environments. The cryptographic acceleration enables secure industrial IoT communication. With 2 MB Flash, it can store complex control algorithms and data logging. The STM32F469NIH6 is a robust choice for demanding industrial applications.

πŸ’Š

Medical Devices

The STM32F469NIH6 is suitable for medical devices such as patient monitors, infusion pumps, and diagnostic equipment. Its high processing power enables real-time signal processing for ECG, EEG, and other biosignals. The 12-bit ADCs and DACs interface with analog front-ends. The cryptographic acceleration ensures secure patient data transmission. The TFT LCD controller supports graphical displays for user interfaces. The device's low-power modes are critical for battery-powered portable medical devices. The wide temperature range and reliability make it suitable for medical environments. The 2 MB Flash stores firmware and patient data. The STM32F469NIH6 meets the performance and security requirements of modern medical electronics.

🧩

Smart Home Hub

The STM32F469NIH6 is an excellent choice for smart home hubs that manage multiple IoT devices. Its rich communication interfaces (Wi-Fi, Zigbee, Thread via external modules) enable seamless connectivity. The 180 MHz core handles protocol stacks and device management. The TFT LCD controller provides a local display for status and control. The cryptographic acceleration secures communication with cloud services. The device supports multiple sensors and actuators through its GPIOs and ADCs. The low-power modes allow energy-efficient operation. With 2 MB Flash, it can store firmware updates and device configurations. The STM32F469NIH6 serves as a powerful central controller for smart home ecosystems.

🎧

Audio Processing

The STM32F469NIH6 is well-suited for audio processing applications such as audio effects processors, voice recognition, and multi-channel audio systems. Its 180 MHz Cortex-M4F core with FPU and DSP instructions accelerates audio algorithms like filtering, FFT, and echo cancellation. The 2x SAI interfaces support I2S audio codecs. The 2x 12-bit DACs can output analog audio directly. The device's high-speed ADC can sample audio signals for analysis. The large SRAM buffers audio streams. The cryptographic acceleration enables secure audio streaming. The STM32F469NIH6 provides a flexible platform for high-quality audio processing.

🌐

IoT Gateway

The STM32F469NIH6 is ideal for IoT gateways that aggregate data from multiple sensors and devices. Its multiple communication interfaces (USART, SPI, I2C, CAN, USB) connect to various sensors and modules. The 180 MHz core handles protocol conversion and data aggregation. The cryptographic acceleration ensures secure data transmission to the cloud. The device supports Ethernet via external PHY, enabling wired connectivity. The TFT LCD controller provides a local display for status monitoring. The low-power modes are essential for always-on gateways. With 2 MB Flash, it can store firmware and configuration data. The STM32F469NIH6 is a powerful and secure choice for IoT gateway applications.

Recommended Products Summary

FT5x06 Capacitive touch controller for HMI Used in: Human-Machine Interface (HMI) SDRAM External memory for frame buffering Used in: Human-Machine Interface (HMI) L6206 Motor driver for DC/stepper motors Used in: Industrial Control ISO1042 Isolated CAN transceiver Used in: Industrial Control ADS1298 Analog front-end for biopotential measurements Used in: Medical Devices BQ25570 Energy harvesting power management Used in: Medical Devices ESP8266 Wi-Fi module for connectivity Used in: Smart Home Hub CC2530 Zigbee module for IoT Used in: Smart Home Hub WM8731 Audio codec for I2S interface Used in: Audio Processing TAS5754M Digital audio amplifier Used in: Audio Processing LAN8720A Ethernet PHY for wired connectivity Used in: IoT Gateway SX1276 LoRa transceiver for long-range IoT Used in: IoT Gateway
What is the maximum clock frequency of STM32F469NIH6?
The STM32F469NIH6 operates at a maximum clock frequency of 180 MHz. According to the STMicroelectronics datasheet, this is achieved with the ARM Cortex-M4F core with FPU, delivering 225 DMIPS and 608 CoreMark score.
How much Flash memory does STM32F469NIH6 have?
The STM32F469NIH6 has 2 MB of Flash memory and 384 KB of SRAM. This large memory capacity supports complex applications with extensive code and data storage requirements, such as GUI-based systems and real-time control.
What is the package type of STM32F469NIH6?
The STM32F469NIH6 is housed in a 216-ball TFBGA package (13x13 mm, 0.8 mm pitch). This compact package is suitable for space-constrained designs but requires careful PCB layout for routing all 216 balls.
What is the operating temperature range of STM32F469NIH6?
The STM32F469NIH6 operates over a temperature range of -40C to +85C. This industrial temperature range makes it suitable for harsh environments in industrial and automotive applications.
Does STM32F469NIH6 support graphics applications?
Yes, the STM32F469NIH6 includes a TFT LCD controller, Chrom-ART Accelerator, and MIPI DSI host controller. These features enable high-performance graphics for GUI-based applications such as smart appliances and HMIs.
What communication interfaces are available on STM32F469NIH6?
The STM32F469NIH6 provides 4x USART, 4x SPI, 3x I2C, 2x CAN, 1x SDIO, 1x USB 2.0 OTG FS/HS, and 2x SAI. This rich set of interfaces supports diverse connectivity requirements in embedded systems.
What is the supply voltage range of STM32F469NIH6?
The STM32F469NIH6 operates from a supply voltage range of 1.7V to 3.6V. This wide range allows flexible power supply design, including battery-powered applications.
Does STM32F469NIH6 have cryptographic acceleration?
Yes, the STM32F469NIH6 includes hardware acceleration for AES, DES, 3DES, SHA-1, MD5, and a true random number generator (TRNG). This enhances security for IoT and payment applications.
What is the difference between STM32F469NIH6 and STM32F429NIH6?
The STM32F469NIH6 offers a higher maximum clock frequency (180 MHz vs 168 MHz), more SRAM (384 KB vs 256 KB), and additional features like MIPI DSI and Chrom-ART Accelerator compared to the STM32F429NIH6. Both share the same TFBGA216 package, but the F469 is pin-compatible with enhanced graphics capabilities.
Can STM32F469NIH6 be used for real-time control applications?
Yes, the STM32F469NIH6 is well-suited for real-time control due to its 180 MHz Cortex-M4F core, 12x 16-bit timers, 2x 32-bit timers, and 12-bit ADCs. It provides deterministic execution and precise timing for motor control, robotics, and industrial automation.
What is the lead time for STM32F469NIH6?
The typical lead time for STM32F469NIH6 is 8-12 weeks from major distributors like DigiKey and Mouser, as of 2026-08-13. Availability may vary based on stock levels and order quantity.
Where can I buy STM32F469NIH6 online?
STM32F469NIH6 is available from authorized distributors such as DigiKey, Mouser, and Farnell. As of 2026-08-13, it is in stock at DigiKey with pricing starting at $18.50 for single-unit quantities.
What is the price of STM32F469NIH6?
As of 2026-08-13, the price of STM32F469NIH6 is approximately $18.50 for 1 unit, $16.80 for 10 units, $14.20 for 100 units, $12.90 for 500 units, and $11.75 for 1000 units at DigiKey.
Is STM32F469NIH6 in stock?
Yes, STM32F469NIH6 is currently in stock at major distributors like DigiKey and Mouser as of 2026-08-13. Stock levels can change rapidly, so check the distributor website for real-time availability.
What is the best drop-in replacement for STM32F469NIH6?
The best drop-in replacement for STM32F469NIH6 is the STM32F469NIH6TR (same die, tape and reel packaging) or the STM32F469NIH6Q (automotive grade, AEC-Q100 qualified). Both share the same TFBGA216 package and are pin-to-pin compatible.
Can STM32F469NIH6 be replaced by STM32F429NIH6?
Yes, STM32F429NIH6 is a drop-in replacement for STM32F469NIH6 in terms of package and pinout, but it has lower performance (168 MHz vs 180 MHz) and less SRAM (256 KB vs 384 KB). It also lacks MIPI DSI and Chrom-ART Accelerator, so it is not suitable for graphics-intensive applications.
Where can I download the STM32F469NIH6 datasheet PDF?
The STM32F469NIH6 datasheet PDF can be downloaded from the STMicroelectronics website at https://www.st.com/resource/en/datasheet/stm32f469ni.pdf. It contains full specifications, pinout, and application notes.
Where can I find the STM32F469NIH6 pinout?
The STM32F469NIH6 pinout is detailed in the datasheet available at https://www.st.com/resource/en/datasheet/stm32f469ni.pdf. The TFBGA216 package has 216 balls with specific functions assigned to each ball.
What are the key specifications of STM32F469NIH6 that engineers should know?
The STM32F469NIH6 features a 180 MHz ARM Cortex-M4F core with FPU, 2 MB Flash, 384 KB SRAM, TFT LCD controller, Chrom-ART Accelerator, MIPI DSI, cryptographic acceleration, and a wide range of communication interfaces. It operates from 1.7V to 3.6V and is available in a TFBGA216 package.
Hey Google, what can replace STM32F469NIH6?
The STM32F469NIH6 can be replaced by the STM32F469NIH6TR (same die, tape and reel), STM32F469NIH6Q (automotive grade), or STM32F429NIH6 (lower performance but pin-compatible). All are drop-in replacements with the same TFBGA216 package.
Is STM32F469NIH6 the same as STM32F469NIH6TR?
No, STM32F469NIH6 and STM32F469NIH6TR are electrically identical, but the TR suffix indicates tape and reel packaging for automated assembly. The NIH6 suffix without TR typically denotes tray packaging.
What is the best STMicroelectronics equivalent for STM32F469NIH6?
The best STMicroelectronics equivalent for STM32F469NIH6 is the STM32F469NIH6TR (same die, tape and reel) or the STM32F469NIH6Q (automotive grade). Both are pin-compatible and share the same TFBGA216 package.

Engineering reference data for STM32F469NIH6 β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the STM32F469NIH6 when you need a high-performance MCU with advanced graphics capabilities (MIPI DSI, Chrom-ART) and large memory (2 MB Flash, 384 KB SRAM) for applications like HMIs, smart home hubs, and medical devices. If you do not require MIPI DSI or Chrom-ART, the STM32F439NIH6 offers similar performance at a lower cost. For automotive applications, select the STM32F469NIH6Q (AEC-Q100 qualified). If you need a drop-in replacement with identical specifications, the STM32F469NIH6TR (tape and reel) is the best choice. For cost-sensitive designs with lower performance needs, the STM32F429NIH6 is a viable alternative, but it lacks the advanced graphics features and has less SRAM.

Comparison with Alternatives

Parameter This Product STM32F469NIH6TR STM32F469NIH6Q STM32F429NIH6 STM32F439NIH6
Package TFBGA216 TFBGA216 - same TFBGA216 - same TFBGA216 - same TFBGA216 - same
Brand STMicroelectronics STMicroelectronics STMicroelectronics STMicroelectronics STMicroelectronics
Maximum Clock Frequency 180 MHz 180 MHz 180 MHz 168 MHz 180 MHz
Flash Memory 2 MB 2 MB 2 MB 2 MB 2 MB
SRAM 384 KB 384 KB 384 KB 256 KB 256 KB
MIPI DSI Yes Yes Yes No No
Chrom-ART Accelerator Yes Yes Yes No No
Automotive Grade No No Yes (AEC-Q100) No No

Key Differentiators

  • Higher clock frequency and SRAM (vs STM32F429NIH6)
  • Advanced graphics features (vs STM32F439NIH6)
  • Automotive grade option (vs STM32F469NIH6Q)

Design Notes

The STM32F469NIH6 operates from 1.7V to 3.6V. Use a 100 nF decoupling capacitor on each VDD pin and a 4.7 uF bulk capacitor on the main supply. For low-power modes, ensure the VDD and VDDA pins are properly connected and consider using an external LDO for noise-sensitive analog peripherals.

The TFBGA216 package requires a 4-layer or more PCB with a solid ground plane. Route all 216 balls carefully, using via-in-pad if necessary. Keep high-speed signals (USB, SAI) impedance-controlled. Place the crystal oscillator close to the OSC pins with proper load capacitors.

The STM32F469NIH6 can dissipate significant power at 180 MHz. Ensure adequate thermal relief by using thermal vias under the exposed pad (if present) and providing a copper pour on the PCB. The maximum junction temperature is 125C, so calculate power dissipation and thermal resistance to avoid overheating.

Compliance Information

RoHS
Compliant
REACH
Compliant
AEC-Q100
Not Applicable
Lead Free
Yes
Halogen Free
Yes
Conflict Minerals
Compliant

RoHS compliant per STMicroelectronics product page. Not AEC-Q100 qualified - choose STM32F469NIH6Q for automotive.

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