Silicon Labs, 8 bit CIP-51, EFM8SB1 Microcontroller, 25 MHz, 8kB FLASH, 20-Pin QFN

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Bulk discount available

Subtotal (1 tube of 100 units)*

TWD2,940.00

(exc. VAT)

TWD3,087.00

(inc. VAT)

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  • 2026年10月20日 發貨
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Units
Per unit
Per Tube*
100 - 100TWD29.40TWD2,940.00
200 - 300TWD28.70TWD2,870.00
400 +TWD28.10TWD2,810.00

*price indicative

RS Stock No.:
169-0186
Mfr. Part No.:
EFM8SB10F8G-A-QFN20
Brand:
Silicon Labs
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品牌

Silicon Labs

Product Type

Microcontroller

Series

EFM8SB1

Package Type

QFN

Mount Type

Surface

Pin Count

20

Device Core

CIP-51

Data Bus Width

8bit

Program Memory Size

8kB

Maximum Clock Frequency

25MHz

RAM Size

512bit

Maximum Supply Voltage

5.5V

Number of Programmable I/Os

28

Maximum Power Dissipation Pd

1W

Analogue Comparators

1

Maximum Expanded Memory Size

256bit

Minimum Operating Temperature

-40°C

Maximum Operating Temperature

85°C

Width

3 mm

Standards/Approvals

RoHS

Length

3mm

Height

0.55mm

Minimum Supply Voltage

1.8V

Program Memory Type

FLASH

ADCs

9 x 12 Bit

Automotive Standard

AEC-Q100

Instruction Set Architecture

MCU

Number of Timers

4

COO (Country of Origin):
TW

EFM8SB Sleepy Bee Microcontrollers, Silicon Labs


The Sleepy Bee Microcontroller (MCU) family are deigned for low power and battery powered systems. Operating at up to 25 MHz with short wakeup times and low power consumption in both Active and sleep modes.

8051 MCU core

Integrated temperature sensor

Integrated LDO maintains low Active current at all voltages

Up to 14 capacitive sense channels

UART and I2C

4 16-bit timers

The EFM8 8-bit microcontroller family has an unparalleled combination of features and capabilities including a high-speed pipelined 8051 core, ultra-low power, precision analogue and enhanced communication peripherals, integrated oscillators, small-footprint packages, and a crossbar architecture that enables flexible digital and analogue multiplexing to simplify PCB design and I/O signal routing. These next-generation 8-bit devices are aimed at the Engineer developing products for the Internet-of-Things (IoT) which will be very small, perform complex processing and run off tiny batteries.