Microchip Technology, Inc. Datasheets for Microcontrollers (MCU)
Microcontrollers (MCUs) are complete computer systems on a chip. They combine an arithmetic logic unit (ALU), memory, timer/counters, serial port, input/output (I/O) ports and a clock oscillator.
Microcontrollers (MCU): Learn more
| Product Name | Notes |
|---|---|
| NOTE: ATSAMD21G15A is not recommended for new designs, please use ATSAMD21G15B. A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the ATSAMD21G15 is ideal for a wide... | |
| NOTE: ATSAMD21G16A is not recommended for new designs, please use ATSAMD21G16B. A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the ATSAMD21G16 is ideal for a wide... | |
| NOTE: ATSAMD21J15A is not recommended for new designs, please use ATSAMD21J15B. A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the ATSAMD21J15 is ideal for a wide... | |
| NOTE: ATSAMD21J16A is not recommended for new designs, please use ATSAMD21J16B. A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the ATSAMD21J16 is ideal for a wide... | |
| The SAM D51 high performance micro-controller series features a 32-bit ARM® Cortex®-M4 processor with Floating Point Unit (FPU), running up to 120 MHz ,up to 1 MB Dual Panel Flash... | |
| The SAM D51 high performance micro-controller series is targeted for general purpose applications using the 32-bit ARM® Cortex®-M4 processor with Floating Point Unit (FPU), running up to 120 MHz ,up... | |
| The SAM E51 high performance micro-controller series features a 32-bit ARM® Cortex®-M4 processor with Floating Point Unit (FPU), running up to 120 MHz ,up to 1 MB Dual Panel Flash... | |
| The SAM E51 high performance micro-controller series is targeted for general purpose applications using the 32-bit ARM® Cortex®-M4 processor with Floating Point Unit (FPU), running up to 120 MHz ,up... | |
| The SAM E51 high performance micro-controller series is targeted for industrial and general purpose applications using the 32-bit ARM® Cortex®-M4 processor with Floating Point Unit (FPU), running up to 120... | |
| A low-power, high-performance ARM® Cortex®-M0+ -based Flash microcontroller optimized for control applications, the Microchip's ATSAMD21E16L is ideal for a wide range of lighting, motor control and industrial applications. It features:... | |
| A low-power, high-performance ARM® Cortex®-M0+ -based Flash microcontroller optimized for control applications, the Microchip's ATSAMD21E17L is ideal for a wide range of lighting, motor control and industrial applications. It features:... | |
| A low-power, high-performance ARM® Cortex®-M0+ based Flash microcontroller (MCU) optimized for control applications, the Microchip's ATSAMD21E15L is ideal for a wide range of lighting, motor control and industrial applications. It... | |
| A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the ATSAMD20J14 is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features: 16KB of flash... | |
| A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the ATSAMD20J15 is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features: 32KB of flash... | |
| A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the ATSAMD20J16 is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features: 64KB of flash... | |
| A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the ATSAMD20J17 is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features: 128KB of flash... | |
| A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the ATSAMD20J18 is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features: 256KB of flash... | |
| A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the ATSAMD21E17 is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features: 128KB of flash... | |
| A low-power, high-performance Microchip's ARM® Cortex®-M0+ based Flash microcontroller, the ATSAMD21E18 is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features: 256KB of flash... | |
| A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the ATSAMD21G17 is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features: 128KB of flash... | |
| A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the ATSAMD21G18 is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features: 256KB of flash... | |
| A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the ATSAMD21J17 is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features: 128KB of flash... | |
| A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the ATSAMD21J18 is ideal for a wide range of home automation, consumer, metering, and industrial applications. It features: 256KB of flash... | |
| NOTE: ATSAMD21E15A is not recommended for new designs, please use ATSAMD21E15B. A low-power, high-performance Microchip's ARM® Cortex®-M0+ based flash microcontroller, the ATSAMD21E15 is ideal for a wide range of home... | |
| NOTE: ATSAMD21E16A is not recommended for new designs, please use ATSAMD21E16B. A low-power, high-performance ARM® Cortex®-M0+ -based Flash microcontroller optimized for control applications, the ATSAMD21E16 is ideal for a wide... | |
| The SAM DA1 ARM® Cortex®-M0+ -based microcontrollers are operating at 48MHz (45DMIPS). The ATSAMDA1E14B provides 16KB Flash, 4kB SRAM and 512Byte RWW Flash. The connectivity peripheral set consists of 4... | |
| The SAM DA1 ARM® Cortex®-M0+ -based microcontrollers are operating at 48MHz (45DMIPS). The ATSAMDA1E15B provides 32KB Flash, 4kB SRAM and 1KB RWW Flash. The peripheral set for connectivity consists of... | |
| The SAM DA1 ARM® Cortex®-M0+ -based microcontrollers are operating at 48MHz (45DMIPS). The ATSAMDA1E16B provides 64KB Flash, 8kB SRAM and 2KB RWW Flash. The peripheral set for connectivity consists of... | |
| The SAM DA1 ARM® Cortex®-M0+ -based microcontrollers are operating at 48MHz (45DMIPS). The ATSAMDA1G15B provides 32KB Flash, 4kB SRAM and 1KB RWW Flash. The connectivity peripheral set consists of 6... | |
| The SAM DA1 ARM® Cortex®-M0+ -based microcontrollers are operating at 48MHz (45DMIPS). The ATSAMDA1G16B provides 64KB Flash, 8kB SRAM and 2KB RWW Flash. The connectivity peripheral set consists of 6... | |
| The SAM DA1 ARM® Cortex®-M0+ -based microcontrollers are operating at 48MHz (45DMIPS). The ATSAMDA1J14B provides 16KB Flash, 4kB SRAM and 512Byte RWW Flash. The connectivity peripheral set consists of 6... | |
| The SAM DA1 ARM® Cortex®-M0+ -based microcontrollers are operating at 48MHz (45DMIPS). The ATSAMDA1J15B provides 32KB Flash, 4kB SRAM and 1KB RWW Flash. The connectivity peripheral set consists of 6... | |
| The SAM DA1 ARM® Cortex®-M0+ -based microcontrollers are operating at 48MHz (45DMIPS). The ATSAMDA1J16B provides 64KB Flash, 8KB SRAM and 2KB RWW Flash. The connectivity peripheral set consists of 6... | |
| The SAM DA1 ARM® Cortex®M0+ -based microcontrollers are operating at 48MHz (45DMIPS). The ATSAMDA1G14B provides 16KB Flash, 4kB SRAM and 512Byte RWW Flash. The connectivity peripheral set consists of 6... |
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