Microchip, 8bit AVR, ATmega Microcontroller, 16MHz, 64 kB Flash, 32-Pin TQFP

Subtotal (1 tray of 250 units)*

£1,050.00

(exc. VAT)

£1,260.00

(inc. VAT)

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  • 750 unit(s) ready to ship
  • Plus 999,999,000 unit(s) shipping from 24 November 2025
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Units
Per unit
Per Tray*
250 +£4.20£1,050.00

*price indicative

RS Stock No.:
146-3223
Mfr. Part No.:
ATMEGA64M1-AU
Brand:
Microchip
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Brand

Microchip

Family Name

ATmega

Package Type

TQFP

Mounting Type

Surface Mount

Pin Count

32

Device Core

AVR

Data Bus Width

8bit

Program Memory Size

64 kB

Maximum Frequency

16MHz

RAM Size

4.096 kB

USB Channels

0

Number of PWM Units

0

Number of SPI Channels

0

Number of UART Channels

0

Number of CAN Channels

0

Number of USART Channels

0

Typical Operating Supply Voltage

2.7 → 5.5 V

Number of I2C Channels

0

Width

7.1mm

Data Rate

1000kbit/s

Height

1.05mm

Number of LIN Channels

0

Number of Ethernet Channels

0

Number of PCI Channels

0

Minimum Operating Temperature

-40 °C

Instruction Set Architecture

RISC

Maximum Number of Ethernet Channels

0

ADCs

11 x 10 bit

Length

7.1mm

Number of ADC Units

1

Maximum Operating Temperature

+85 °C

Program Memory Type

Flash

Pulse Width Modulation

1 (1 Channel)

Dimensions

7.1 x 7.1 x 1.05mm

The high-performance, low-power Microchip 8-bit AVR RISC-based microcontroller combines 64KB ISP flash memory with read-while-write capabilities, 2KB EEPROM, 4KB SRAM, 27 general purpose I/O lines, 32 general purpose working registers, one motor power stage controller, two flexible timer/counters with compare modes and PWM, one UART with HW LIN, an 11-channel 10-bit A/D converter with two differential programmable gain input stages, a 10-bit D/A converter, a programmable watchdog timer with internal individual oscillator, SPI serial port, an on-chip debug system, and four software selectable power saving modes. The device operates between 2.7-5.5 volts. By executing powerful instructions in a single clock cycle, the device achieves throughputs approaching 1 MIPS per MHz, balancing power consumption and processing speed.