Microchip Technology_ATSAMD21G17L-MUT

Microchip Technology
ATSAMD21G17L-MUT  
Microcontrollers

ATSAMD21G17L-MUT
685-ATSAMD21G17L-MUT
Ersa
Microchip Technology-ATSAMD21G17L-MUT-datasheets-325577.pdf
IC MCU 32BIT 128KB FLASH 48QFN
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ATSAMD21G17L-MUT Description

The ATSAMD21G17L-MUT is a low-power microcontroller unit (MCU) from Microchip Technology. It is part of the SAM D21 family of ARM Cortex-M0+ based MCUs, which are designed for a wide range of applications that require low power consumption and high performance.

Description:

The ATSAMD21G17L-MUT features a 32-bit ARM Cortex-M0+ processor with a maximum clock speed of 48 MHz. It includes 256 KiB of flash memory, 32 KiB of SRAM, and 4 KiB of EEPROM. The MCU also has a range of peripherals, including USB, SERCOM (Serial Communication Interface), ADC (Analog-to-Digital Converter), DAC (Digital-to-Analog Converter), and various timers and interrupts.

Features:

  1. ARM Cortex-M0+ processor with a maximum clock speed of 48 MHz
  2. 256 KiB of flash memory
  3. 32 KiB of SRAM
  4. 4 KiB of EEPROM
  5. USB interface for communication and power delivery
  6. SERCOM for serial communication (SPI, I2C, UART)
  7. 12-bit ADC with up to 20 channels
  8. 10-bit DAC with two output channels
  9. A range of timers and interrupts for precise timekeeping and event handling
  10. Low-power sleep modes to conserve energy
  11. Wide operating voltage range (1.62V to 3.6V)
  12. Small package size (4.4 x 4.4 mm MUT package)

Applications:

The ATSAMD21G17L-MUT is suitable for a variety of applications that require low power consumption and high performance. Some potential applications include:

  1. Battery-powered devices: The low-power features make it ideal for devices that run on batteries, such as fitness trackers, smart watches, and portable instruments.
  2. Industrial automation: The MCU can be used in control systems and sensors for industrial automation applications, where reliability and low power consumption are crucial.
  3. Medical devices: The ATSAMD21G17L-MUT can be used in portable medical devices, such as glucometers and heart rate monitors, where low power consumption and accurate data processing are essential.
  4. IoT devices: The MCU's low power and high performance make it suitable for Internet of Things (IoT) devices, such as smart home appliances, sensors, and wearables.
  5. Human Interface Devices (HID): The USB interface and low power consumption make it suitable for devices like keyboards, mice, and game controllers.
  6. Wireless applications: The MCU can be used in wireless applications, such as Bluetooth Low Energy (BLE) devices, Zigbee nodes, and RF communication modules.

Overall, the ATSAMD21G17L-MUT is a versatile and efficient MCU that can be used in a wide range of applications where low power consumption and high performance are required.

Tech Specifications

Core Processor
Program Memory Type
Product Status
Supplier Device Package
EEPROM Size
Package / Case
REACH Status
Mfr
Voltage - Supply (Vcc/Vdd)
RoHS Status
Moisture Sensitivity Level (MSL)
Speed
Operating Temperature
RAM Size
ECCN
Number of I/O
Peripherals
Mounting Type
Oscillator Type
Series
Core Size
Connectivity
Program Memory Size
HTSUS
Package
Data Converters
Base Product Number
Product
ADC Resolution
RoHS
Supply Voltage - Min
Data RAM Type
Maximum Clock Frequency
Maximum Operating Temperature
Supply Voltage - Max
Data RAM Size
Interface Type
Core
Mounting Style
Watchdog Timers
Data Bus Width
Minimum Operating Temperature
DAC Resolution
Qualification
Moisture Sensitive
Number of I/Os
Number of ADC Channels
USHTS

ATSAMD21G17L-MUT Documents

Download datasheets and manufacturer documentation for ATSAMD21G17L-MUT

Ersa View in Development Tools Selector      
Ersa SAM D21 / DA1 Family Silicon Errata and Data Sheet Clarification Errata Document Revision (PDF)       SAM D21/DA1 Family Silicon Errata and Data Sheet Clarification (PDF)       SAM D21 / DA1 Family Silicon Errata and Data Sheet Clarification (PDF)      
Ersa Product Change Notification 2024-04-16 (PDF)       Product Change Notification (PDF)      

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