STMicroelectronics STM32L052K8T6 Ultra-Low-Power 32-bit MCU, LQFP32 Package for IoT & Medical

32-bit Arm Cortex-M0+ core accelerates medical sensor processing, cutting data latency by 32%.

128KB Flash/20KB RAM supports multi-protocol firmware, critical for IoT edge node tasks.

LQFP32 7mmx7mm package eases assembly, reducing soldering defects by 28% vs. QFN.

STM32L052K8T6??s 0.14??A standby mode extends battery life by 55%, lowering maintenance costs.

Powering portable ECG monitors slashes error to ??0.11%, boosting diagnostic accuracy by 38%.

STMicroelectronics-logo
产品上方询盘

STMicroelectronics STM32L052K8T6 Low-Power 32-bit MCU Overview

The STMicroelectronics STM32L052K8T6 is a high-precision, energy-efficient 32-bit microcontroller (MCU) built on the Arm Cortex-M0+ core-engineered for B2B applications demanding ultra-low power, easy assembly, and compliance with medical/industrial standards. Targeted at Internet of Things (IoT) wireless sensors, Medical Devices (portable ECG monitors, wearable glucose trackers), and Home Appliances (smart thermostats), it integrates enhanced peripherals (UART, SPI, I2C, USB 2.0 FS, 12-bit ADC with 16 channels, LCD controller, low-power comparator, DMA controller) to eliminate external components and streamline design cycles. With 128KB of Flash memory (for firmware storage) and 20KB of SRAM (for real-time data buffering), it handles embedded tasks like high-precision sensor data logging, low-speed serial communication, and advanced human-machine interface (HMI) control. Equipped with next-gen ultra-low-power management (down to 0.14??A in standby mode) and a robust LQFP32 (32-pin Low Profile Quad Flat Package) surface-mount package, it operates reliably across -40??C to +85??C-making it ideal for engineers prioritizing long battery life, assembly efficiency, and durability in harsh or portable environments.

As a premium model in STMicroelectronics?? STM32L0 series-a line trusted by 140,000+ developers in medical, IoT, and consumer sectors-it meets strict quality benchmarks: RoHS 2 compliance, ISO 9001 certification, IEC 61000-6-2 industrial EMC compliance, medical EMC (IEC 60601-1-2), and 3,800+ hours of reliability testing (including temperature cycling, voltage stress, and humidity exposure). Senior engineers at a leading medical device firm endorse it, noting: ??This MCU powers our portable ECG monitors-0.14??A standby mode extends battery life to 26 months, while LQFP32 cuts soldering defects by 28%.?? For more ultra-low-power 32-bit MCUs and embedded solutions, visit IC Manufacturer.

Technical Parameters of STMicroelectronics STM32L052K8T6

Parameter Specification
Function Ultra-low-power 32-bit microcontroller (MCU) with Arm Cortex-M0+ core
Core Arm Cortex-M0+, up to 32MHz clock frequency
Memory 128KB Flash memory (firmware storage), 20KB SRAM (data processing), 512B EEPROM (parameter storage)
Peripherals 3x UART (1 with LIN support), 2x SPI, 2x I2C (1 with SMBus), 1x USB 2.0 FS, 1x 12-bit ADC (16 channels, 1MSPS), 3x 16-bit timers, 1x LCD controller (up to 8×40 segments), 1x low-power comparator, 1x DMA controller, 26x GPIO pins
Power Consumption 72??A/MHz (active mode, typical); 0.14??A (standby mode, typical); 0.07??A (shutdown mode, typical)
Package Type LQFP32 (32-pin Low Profile Quad Flat Package), 7.0mm x 7.0mm x 1.4mm dimensions
Operating Temperature Range -40??C to +85??C (medical/industrial grade)
Supply Voltage Range 1.71V to 3.6V
Analog Performance 12-bit ADC (??0.3LSB accuracy, 1MSPS sampling rate); 2x 12-bit DAC (400kSPS update rate); low-power comparator (0.8??A typical current)
Security Features Readout protection (RDP Level 1/2), write protection (WP), CRC calculation unit, AES-128 hardware encryption
Compliance RoHS 2 compliant, ISO 9001 certified, IEC 61000-6-2, IEC 60601-1-2 (medical EMC)

Key Technical Features of STM32L052K8T6 MCU

  • 32MHz Cortex-M0+ core: Balances speed and power for medical/IoT tasks. A medical engineer reported: ??Processes ECG data in 0.35s-32% faster than 8-bit MCUs, no excess energy use.??
  • 128KB Flash/20KB RAM: Fits complex firmware (e.g., sensor logging + USB + AES encryption). An IoT designer noted: ??Our sensor hub firmware is 114KB-20KB RAM buffers 2.5x more data than 8KB alternatives.??
  • LQFP32 7mmx7mm package: Eases assembly vs. QFN. A medical manufacturer shared: ??Soldering defects down to 0.5%-28% lower than QFN, saving $31,000 in annual rework.??
  • 0.14??A standby mode: Minimizes standby power drain. An energy firm confirmed: ??Extends 2xAA battery life in IoT sensors by 55%-from 13 months to 20.2 months.??
  • 12-bit ADC (16 channels): Ensures high-precision measurement. A medical tech firm explained: ????0.3LSB accuracy cuts ECG monitor error to ??0.11%, boosting diagnostic trust by 38%.??

Advantages of STM32L052K8T6 vs. Typical Alternatives

Compared to 8-bit MCUs, low-memory 32-bit MCUs, and QFN-package 32-bit MCUs, this MCU solves critical B2B design pain points-backed by real customer feedback:

1. 32-bit performance outperforms 8-bit MCUs: 8-bit MCUs (e.g., 8051-based) max out at 20MHz and lack 16-channel ADC/USB support, leading to slow response times and limited connectivity in medical devices. The STM32L052K8T6??s 32MHz 32-bit core fixes this. A medical device firm said: ??Our 8-bit ECG monitor took 1.10s to display results-this model takes 0.35s. Faster response improves patient comfort, and the USB port lets us sync data to computers (impossible with 8-bit). This boosted product adoption by 42%, and we removed 4 external components, cutting BOM cost by $0.70 per unit.??

2. More memory than low-memory 32-bit MCUs: Entry-level 32-bit MCUs (e.g., 64KB Flash/8KB SRAM models) can??t fit firmware for multi-task functions (e.g., sensor logging + USB + AES encryption), forcing designers to add external EEPROM. The 128KB Flash/20KB SRAM of this MCU eliminates this. An IoT sensor brand confirmed: ??Our 64KB Flash MCU could only run basic logging code-this model runs logging + USB + encryption. We avoided adding an external EEPROM (saves $0.45 per unit) and cut BOM complexity by 24%. The 20KB RAM also buffers 2.5x more data, reducing network retransmissions by 37%.??

3. Easier assembly than QFN-package 32-bit MCUs: QFN packages require X-ray inspection (no visible leads), leading to 7%?C10% assembly defects in high-volume medical devices. The STM32L052K8T6??s LQFP32 package (visible leads) fixes this. A medical manufacturer shared: ??Our QFN-based ECG monitors had 8.2% soldering defects-this LQFP32 model has 0.5%. Defect reduction cuts rework time by 92%, saving $31,000 annually. The LQFP32 also offers better heat dissipation, so we removed an external heat sink-ECG monitor size down 19% and assembly time cut by 13%.??

📩 Contact Us

产品中间询盘

Typical Applications of STMicroelectronics STM32L052K8T6

This MCU excels in ultra-low-power, easy-to-assemble embedded designs-proven in these key B2B use cases:

  • Medical Devices (Portable ECG Monitors): Measures heart rate/heart rhythm, 128KB Flash fits testing firmware. A medical firm confirmed: ??Low power extends battery life to 26 months, LQFP32 cuts defects-monitor sales up 45%.??
  • Internet of Things (IoT) Wireless Sensors: Logs temperature/humidity data, 20KB RAM buffers real-time logs. An IoT brand reported: ??0.14??A standby mode works with coin cells, easy assembly speeds production-sensor uptime hit 99.9%.??
  • Home Appliances (Smart Thermostats): Controls home temperature, LCD controller shows real-time stats. A home brand noted: ????0.18??C temperature accuracy cuts HVAC use by 28%, low power reduces energy bills-customer complaints down 36%.??
  • Medical Devices (Wearable Glucose Trackers): Monitors glucose levels, 12-bit ADC ensures precision. A medical tech firm shared: ??0.14??A standby mode extends battery life to 25 months, LQFP32 eases repair-clinic adoption up 40%.??
  • Energy and Power (Smart Utility Sensors): Measures energy consumption, UART sends data to grids. A utility firm confirmed: ??72??A/MHz active current cuts sensor energy use by 32%, 128KB Flash fits billing logic-sensor uptime hit 99.8%.??

Frequently Asked Questions (FAQ) About STM32L052K8T6

Why is a 32MHz Cortex-M0+ core better than 20MHz 8-bit MCUs for portable ECG monitors?

Portable ECG monitors need to process heart rhythm data and display results quickly-tasks 8-bit MCUs struggle with due to slow clock speeds and limited instruction sets. The 32MHz core fixes this. A medical engineer said: ??Our 8-bit ECG took 1.10s to show results-this model takes 0.35s. Faster response reduces patient anxiety, and USB lets us sync data. This boosted sales by 45%, and 128KB Flash fits firmware updates for new features.??

Can 128KB Flash/20KB RAM handle IoT sensor firmware with logging and AES encryption?

Yes. IoT sensor firmware for logging + encryption typically uses 109KB?C114KB of Flash and 13KB?C16KB of RAM-both well within this MCU??s limits. An IoT developer confirmed: ??Our firmware is 114KB (BLE + logging + encryption) with 14KB Flash reserve. The 20KB RAM stores 14,000 sensor samples (12 bytes each) with 1.6KB to spare. Testing in -40??C to +85??C showed no memory issues or data corruption.??

What value does the LQFP32 package add for mass-produced medical ECG monitors?

Mass-produced medical devices need high assembly yields-QFN packages cause high defects due to invisible leads. The LQFP32??s visible leads solve this. A medical manufacturer said: ??Our QFN ECGs had 8.2% defects-this LQFP32 model has 0.5%. Defect reduction saves $31,000 annually in rework. The LQFP32 also uses standard soldering gear, cutting assembly time by 13% vs. QFN??s X-ray requirement.??

How does 0.14??A standby mode extend IoT sensor battery life?

IoT sensors spend 90% of time in standby (waiting to sample data)-high standby current drains batteries fast. The 0.14??A mode minimizes this. An energy firm confirmed: ??Our humidity sensor samples hourly (5 minutes active, 55 minutes standby). This MCU uses 0.14??A standby vs. 4.6??A legacy. Battery life extends from 13 to 20.2 months. We replace 55% fewer batteries, saving $110,000 in annual service costs for 200,000 sensors.??

Why is IEC 60601-1-2 compliance useful for wearable glucose trackers?

IEC 60601-1-2 is the global standard for medical device EMC performance-non-compliant trackers can interfere with hospital equipment (e.g., insulin pumps) or fail in clinics. This MCU??s compliance eliminates risk. A medical firm said: ??Our old tracker failed EMC testing twice-this model passed first try, saving 3.4 months of compliance time. Compliance lets us sell to 42% more hospitals, and failure rates dropped from 4.5% to 0.3%, cutting warranty costs by $80,000 annually.??

Application

, ,

Save cost and time

Fast global delivery

Original parts guaranteed

Expert after-sale support

Looking for a Better Price?