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STM32G030K8T6TR - STM32G0 64MHz 32Bit ARM Cortex-M0 64KB Flash 32-LQFP

STMicroelectronics

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SKU:
033-STM32G030K8T6TR
MPN:
STM32G030K8T6TR
Quantity
Unit Price (ex. GST)
1 - 9
₹ 120.18
10 - 99
₹ 108.16
100 or above
₹ 96.14
STM32G030K8T6TR is a 32-bit ARM Cortex-M0+ MCU with 64KB Flash and 8KB SRAM. Housed in a 32-pin LQFP package, it features low power consumption, fast wake-up, and essential peripherals, ideal for cost-sensitive embedded designs. View full description
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Technical Specifications

Brand:
STMicroelectronics
Case/Package:
LQFP
Number of Pins:
32
Max Operating Temperature:
85 °C
Frequency:
64 MHz
Interface:
I2S
Min Supply Voltage:
2 V
Max Supply Voltage:
3.6 V
Min Operating Temperature:
-40 C
Memory Type:
FLASH
Number of I/Os:
2
Number of I2C Channels:
2
Memory Size:
64 kB
Number of Timers/Counters:
6
Number of SPI Channels:
2
Number of UART Channels:
0
RAM Size:
8 kB
RoHS:
Compliant
Core Architecture:
ARM Cortex-M0+
Number of Channels:
16
Operating Supply Voltage:
3 V
Mount:
Surface Mount

Warranty Information

All the products supplied by Evelta are genuine and original. We offer 14 days replacement warranty in case of manufacturing defects. For more details, please visit our cancellation and returns page.

Description

The STM32G030x6/x8 mainstream microcontrollers are built around the high-performance Arm® Cortex®-M0+ 32-bit RISC core, which can operate at up to 64 MHz frequency. With a high level of integration, they are suited for a wide range of consumer, industrial, and appliance applications, as well as Internet of Things (IoT) solutions. A memory protection unit (MPU), fast embedded memories (8 Kbytes of SRAM and up to 64 Kbytes of Flash program memory with read and write protection), DMA, advanced I/Os, peripherals, and a wide range of system functions are all included in the devices. In addition to a 12-bit ADC (2.5 MSps) with up to 19 channels, the devices have a low-power RTC, an advanced control PWM timer, four general-purpose 16-bit timers, two watchdog timers, a SysTick timer, and standard communication interfaces (two I2Cs, two SPIs / one I2S, and two USARTs).

The devices run between 2.0 V and 3.6 V with supply voltages and in temperatures ranging from -40 to 85°C. Designing low-power applications is made possible by optimized dynamic consumption and a wide range of power-saving modes.
VBAT direct battery input enables the backup registers and RTC to remain powered. The gadgets have eight to forty-eight pins.

Resources:

Datasheet