Microchip ATTINY1626-MF 12 Bit ADC, tinyAVR 2 Microcontroller, 20 MHz, 16kB RAM, 20-Pin VQFN

Subtotaal (1 tray van 980 eenheden)*

€ 851,62

(excl. BTW)

€ 1.029,98

(incl. BTW)

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  • Verzending vanaf 09 maart 2026
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980 +€ 0,869€ 851,62

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RS-stocknr.:
585-005
Fabrikantnummer:
ATTINY1626-MF
Fabrikant:
Microchip
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Merk

Microchip

Series

tinyAVR 2

Product Type

Microcontroller

Package Type

VQFN

Mount Type

Surface

Pin Count

20

Device Core

12 Bit ADC

Program Memory Size

16kB

Interface Type

USART, I2C, SPI

Maximum Clock Frequency

20MHz

RAM Size

2kB

Maximum Supply Voltage

5.5V

Analogue Comparators

1

Minimum Operating Temperature

-40°C

Maximum Operating Temperature

125°C

Standards/Approvals

AEC-Q100

Minimum Supply Voltage

1.8V

Program Memory Type

RAM

Automotive Standard

AEC-Q100

Number of Timers

4

ADCs

1 (15) For ATtiny1626, 1627 Channels, 1 (9) For ATtiny1624

The Microchip microcontroller features a high-performance, low-power AVR CPU running at up to 20 MHz, with single-cycle I/O access, a two-level vectored interrupt controller, and a two-cycle hardware multiplier. It supports a wide supply voltage range of 1.8V to 5.5V and includes advanced features such as an Event System, digital peripherals, and a 12-bit differential ADC with a Programmable Gain Amplifier (PGA). The device offers 16 KB of self-programmable Flash, 2 KB SRAM, 256B EEPROM, and 32B of user row nonvolatile memory that retains data during chip erase and is programmable while locked. With write/erase endurance of 10,000 cycles for Flash and 100,000 for EEPROM, and 40-year data retention at 55 °C, it is ideal for flexible and power-efficient embedded applications.

Power on Reset

Brown out Detection

Three sleep modes

Automated Cyclic Redundancy Check flash memory scan

Watchdog Timer with Window Mode with a separate on chip oscillator

External interrupt on all general purpose pins

One 16 bit Timer/Counter type A with a dedicated period register and three PWM channels

Two 16 bit Timer/Counters type B with input capture and simple PWM functionality

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