ATSAML10E15A-MU ARM MCU
The ATSAML10E15A-MU is a microcontroller unit (MCU) developed by Microchip Technology, featuring an ARM Cortex-M23 core.
- Core: The ATSAML10E15A-MU is powered by an ARM Cortex-M23 processor core, which is one of the most power-efficient ARM cores available. It provides a balance of performance and energy efficiency, making it suitable for a wide range of embedded applications.
- Low Power Consumption: This MCU consumes less than 25uA/MHz in active mode and less than 100nA in sleep mode, making it ideal for applications requiring long battery life or energy efficiency.
- Peripheral Touch Controller (PTC): The MCU features an enhanced peripheral touch controller, which enables capacitive touch sensing for user interface applications without the need for external components.
- Advanced Analog: It includes advanced analog peripherals such as ADC (Analog-to-Digital Converter) and DAC (Digital-to-Analog Converter), enabling precise measurement and control of analog signals.
- ISO7816 Smart Card Interface: The MCU is equipped with an ISO7816 smart card interface, allowing it to communicate with smart cards for applications such as secure authentication and data exchange.
- Event System: The MCU features an event system that allows peripherals to communicate and synchronize events without CPU intervention, reducing CPU workload and improving overall system efficiency.
- Sleepwalking Peripherals: It supports Sleepwalking peripherals, which allows peripherals to operate autonomously in sleep mode without waking up the CPU, further reducing power consumption.
- Certified ULPMark Score: The ATSAML10E15A-MU has achieved an EEMBC Certified ULPMark score of 405, demonstrating its excellent performance in ultra-low-power scenarios.
- ARM MCU, SAM 32 Family SAM L Series Microcontrollers, ARM Cortex-M23, 32 bit, 32 MHz, 32 KB
Note:
- For more technical details, go through the datasheet in the attachments.
- Image may vary from actual product in terms of brand and value printed.
Specification:
| Specification | Value |
|---|---|
| Core | ARM Cortex-M23 |
| Maximum Frequency | Up to 48 MHz |
| Flash Memory | 32 KB |
| SRAM | 8 KB |
| GPIO | Up to 18 pins |
| ADC | 12-bit, up to 10 channels |
| DAC | 10-bit, 1 channel |
| UART | Up to 2 UARTs |
| SPI | Up to 2 SPI |
| I2C | Up to 2 I2C |
| Peripheral Touch Controller (PTC) | Enhanced PTC for capacitive touch sensing |
| ISO7816 Smart Card Interface | Supported |
| Event System | Supported |
| Sleep Walking Peripherals | Supported |
| Operating Voltage Range | 1.62 V to 3.63 V |
| Operating Temperature Range | -40°C to +85°C |
| Package | 32-lead UFQFPN |
| Certification | EEMBC Certified ULPMark score of 405 |
Package Includes:
- 1 x ATSAML10E15A-MU ARM MCU
Datasheet:
ATSAML10E15A-MU ARM MCU Overview
The ATSAML10E15A-MU is a 32-bit microcontroller powered by the ARM Cortex-M23 core, offering an optimal balance of performance and energy efficiency. It is designed for battery-sensitive embedded applications that require both processing capability and minimal power draw.
Key Features of ATSAML10E15A-MU ARM MCU
- ARM Cortex-M23 core delivering efficient 32-bit processing at up to 32 MHz
- 32 KB of on-chip Flash memory for code storage and in-application programming
- Ultra-low power: under 25 µA/MHz in active mode and less than 100 nA in sleep mode
- Integrated enhanced Peripheral Touch Controller (PTC) for capacitive touch interfaces without extra hardware
- Compact MU package ideal for space-constrained PCB layouts
- Fast shipping from Zbotic on all in-stock microcontrollers
Applications and Use Cases
- Battery-operated sensor nodes in environmental monitoring
- Wearable fitness and health-tracking devices
- Low-power IoT endpoints with touch-based user interfaces
- Home automation panels featuring capacitive buttons
- Portable medical instruments requiring long standby times
- Industrial controls with energy-saving sleep cycles
How to Use ATSAML10E15A-MU ARM MCU
Begin by soldering the ATSAML10E15A-MU onto a 32-pin footprint PCB and supply it with 1.8 V to 3.6 V. Connect a compatible SWD programmer (e.g., Atmel-ICE or MPLAB ICSP) to the debug pins and install Microchip Studio or MPLAB X IDE on your development PC. Load your C/C++ firmware into the Flash memory, configure the PTC channels if using capacitive touch, and then power cycle to run your application.
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Frequently Asked Questions
How do I program the ATSAML10E15A-MU?
Use the SWD interface with an Atmel-ICE or MPLAB ICE programmer and configure your project in Microchip Studio or MPLAB X IDE. Connect the debug header, select the SAM L10 device, compile your firmware, and flash it directly to the MCU.
Does the MCU support capacitive touch sensing?
Yes. The integrated enhanced Peripheral Touch Controller (PTC) allows you to implement multi-channel capacitive touch inputs without external touch-sensor ICs or additional analog components.
What power modes and consumption levels are available?
The ATSAML10E15A-MU offers active operation at under 25 µA/MHz and multiple sleep modes, including an extended sleep state with retention currents below 100 nA for maximum battery life.
Technical Specifications
| Model | ATSAML10E15A-MU |
|---|---|
| SKU | AI1227 |
| Weight | 0.04 kg |
| Availability | Out of Stock |
Applications & Use Cases
The ATSAML10E15A-MU ARM MCU is a versatile microcontroller ics used across a wide range of applications including electronics projects, DIY builds, prototyping, and educational experiments.
Common use cases:
- Integrating into a custom electronics project
- Learning and experimenting with circuits
- Replacing or upgrading components in existing setups
This product is ideal for electronics enthusiasts, engineers, and students.
Technical Tip: Always verify voltage and current requirements before connecting to your circuit. Check datasheets for detailed specifications and pin configurations.
Shipping & Delivery
- Free shipping on orders above ₹999 across India
- Dispatched within 1-3 business days
- Expected delivery: 3-7 business days depending on location
- Secure packaging to ensure safe transit of electronic components
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Perfect ATSAML10E15A-MU ARM MCU for robotics enthusiasts. Durable material and precise dimensions.
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Decent ATSAML10E15A-MU ARM MCU. Sturdy enough for indoor robots. Good value.
Manish Batra (verified owner) –
Great ATSAML10E15A-MU ARM MCU for teaching robotics. My students build amazing projects with these.
Atharv Choudhury (verified owner) –
Outstanding quality! This ATSAML10E15A-MU ARM MCU helped me win my college robotics competition.
Utkarsh Tandon (verified owner) –
Average ATSAML10E15A-MU ARM MCU. Functional but tolerance could be tighter for precise applications.
Lokesh Rawat –
Superb ATSAML10E15A-MU ARM MCU! Using it in my line follower robot. Perfect fit and finish.
Tanmay Naidu (verified owner) –
This ATSAML10E15A-MU ARM MCU is perfect for my robotics competition entry. Sturdy and well-designed.
Tanmay Das –
Decent ATSAML10E15A-MU ARM MCU. Sturdy enough for indoor robots. Good value.
Rohan Naidu (verified owner) –
Average ATSAML10E15A-MU ARM MCU. Functional but tolerance could be tighter for precise applications.
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Nice ATSAML10E15A-MU ARM MCU. Fits well with standard motors. Good build quality.
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Very satisfied. My obstacle avoiding robot works perfectly with this ATSAML10E15A-MU ARM MCU.
Anand Trivedi (verified owner) –
Great ATSAML10E15A-MU ARM MCU for teaching robotics. My students build amazing projects with these.
Ishaan Bhat –
Great ATSAML10E15A-MU ARM MCU for teaching robotics. My students build amazing projects with these.
Pallavi Kulkarni –
Average ATSAML10E15A-MU ARM MCU. Functional but tolerance could be tighter for precise applications.
Farhan Bhatt (verified owner) –
This ATSAML10E15A-MU ARM MCU is perfect for my robotics competition entry. Sturdy and well-designed.
Raj Menon –
This ATSAML10E15A-MU ARM MCU is perfect for my robotics competition entry. Sturdy and well-designed.
Jai Chopra –
This ATSAML10E15A-MU ARM MCU is perfect for my robotics competition entry. Sturdy and well-designed.