STM32MP135DAE3 STMicroelectronics Integrated Circuit (BGA) In Stock
The STM32MP135DAE3 is a 32-bit Arm Cortex-A7 microprocessor from STMicroelectronics running up to 1GHz with integrated graphics acceleration support. It features a BGA package footprint designed for industrial HMI and embedded Linux applications. Available worldwide in stock with fast shipping.
- Manufacturer
- STMicroelectronics
- Package
- BGA
- Pin Count
- 289
- Lifecycle
- ACTIVE
- Datasheet
- STM32MP135DAE3 Datasheet PDF
- Category
- Integrated Circuit
- RoHS
- Compliant
- Lead Time
- 3–7 business days
- Shipping
- DHL Express · Worldwide
What are the key features of STM32MP135DAE3?
- Arm Cortex-A7 core clocked up to 1GHz delivers Linux-capable processing for industrial HMI and embedded panel applications
- Integrated 3D GPU and display interface support accelerates graphics-heavy GUI workloads without an external graphics chip
- BGA package with compact footprint enables high-density PCB integration in space-constrained embedded systems
What is STM32MP135DAE3 used for?
The STM32MP135DAE3 is designed for industrial human-machine interfaces, smart home panels, and connected display systems that require a full Linux OS running at up to 1GHz alongside hardware-accelerated graphics. Its integrated GPU and display controller make it well suited for driving LVDS or RGB TFT panels in factory automation terminals, medical diagnostic devices, and building automation controllers where a single-chip solution reduces BOM complexity.
What are the specifications of STM32MP135DAE3?
| YTEOL | 6 |
| uPs/uCs/Peripheral ICs Type | MICROPROCESSOR, RISC |
| Package | BGA |
Compliance & Regulatory
| RoHS Status | Compliant |
| Lead-Free | Yes (Pb-Free) |
| HTS Code | 8542.31.00.30 |
| Country of Origin | Philippines, Taiwan |
Where can I find the STM32MP135DAE3 datasheet?
STM32MP135DAE3 Datasheet DownloadOfficial datasheet from STMicroelectronics
What are equivalent replacements for STM32MP135DAE3?
Compatible alternatives and drop-in replacements for STM32MP135DAE3:
Frequently Asked Questions
What CPU core and clock speed does the STM32MP135DAE3 use, and is that fast enough for embedded Linux?
The STM32MP135DAE3 integrates a single Arm Cortex-A7 core running at up to 1GHz. This is sufficient to run Linux-based distributions such as OpenSTLinux or Yocto builds with a GUI, supporting applications like factory HMI terminals, medical panels, and IoT gateways. Boot times typically land under 5 seconds with optimized kernel configurations.
Which display interfaces are supported, and what panel resolutions can the STM32MP135DAE3 drive?
The STM32MP135DAE3 supports RGB and LVDS display interfaces and is capable of driving panels up to WXGA (1280x800) resolution. The integrated 3D GPU can render OpenGL ES 2.0 graphics, enabling smooth UI animations and chart rendering on 7-inch to 10-inch TFT panels commonly used in industrial HMI enclosures.
What package type does the STM32MP135DAE3 use, and what PCB design constraints does that impose?
This device is packaged in a BGA (Ball Grid Array) format, which requires controlled impedance PCB routing, via-in-pad or dog-bone breakout patterns, and a minimum of 4–6 copper layers depending on I/O density. BGA soldering requires reflow profiles verified by X-ray inspection, but the package achieves a significantly smaller footprint than equivalent QFP options for a 1GHz-class processor.
How does the STM32MP135DAE3 compare to the STM32MP157 series for a cost-sensitive industrial panel design?
The STM32MP135 series is a single-core Cortex-A7 at 1GHz, while the STM32MP157 adds a second Cortex-A7 core and a Cortex-M4 coprocessor. For applications that do not need dual-core SMP Linux or real-time coprocessor tasks, the STM32MP135DAE3 offers lower cost and simpler power management with a reduced pin-count BGA footprint, making it a more economical choice for single-display, single-OS HMI platforms.
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About STMicroelectronics
STMicroelectronics is a global semiconductor leader serving customers across the spectrum of electronics applications. ST's products are found in a wide range of applications including automotive, industrial, personal electronics, and communications.
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