产品概述
描述
The STM32L496xx devices are ultra-low-power microcontrollers based on the high-performance Arm® Cortex®-M4 32-bit RISC core operating at a frequency of up to 80 MHz. The Cortex-M4 core features a Floating point unit (FPU) single precision that supports all Arm® single-precision data-processing instructions and data types. It also implements a full set of DSP instructions and a memory protection unit (MPU) which enhances application security.
The STM32L496xx devices embed high-speed memories (up to 1 Mbyte of Flash memory, 320 Kbyte of SRAM), a flexible external memory controller (FSMC) for static memories (for devices with packages of 100 pins and more), a Quad SPI Flash memories interface (available on all packages) and an extensive range of enhanced I/Os and peripherals connected to two APB buses, two AHB buses and a 32-bit multi-AHB bus matrix.
The STM32L496xx devices embed several protection mechanisms for embedded Flash memory and SRAM: readout protection, write protection, proprietary code readout protection and Firewall.
The devices offer up to three fast 12-bit ADCs (5 Msps), two comparators, two operational amplifiers, two DAC channels, an internal voltage reference buffer, a low-power RTC, two general-purpose 32-bit timer, two 16-bit PWM timers dedicated to motor control, seven general-purpose 16-bit timers, and two 16-bit low-power timers. The devices support four digital filters for external sigma delta modulators (DFSDM).
In addition, up to 24 capacitive sensing channels are available. The devices also embed an integrated LCD driver 8x40 or 4x44, with internal step-up converter.
They also feature standard and advanced communication interfaces, namely four I2Cs, three SPIs, three USARTs, two UARTs and one Low-Power UART, two SAIs, one SDMMC, two CANs, one USB OTG full-speed, one SWPMI (single wire protocol master interface), a camera interface and a DMA2D controller.
The STM32L496xx operates in the -40 to +85 °C (+105 °C junction), -40 to +125 °C (+130 °C junction) temperature ranges from a 1.71 to 3.6 V VDD power supply when using internal LDO regulator and a 1.05 to 1.32V VDD12 power supply when using external SMPS supply. A comprehensive set of power-saving modes makes possible the design of low-power applications.
Some independent power supplies are supported: analog independent supply input for ADC, DAC, OPAMPs and comparators, 3.3 V dedicated supply input for USB and up to 14 I/Os can be supplied independently down to 1.08 V. A VBAT input makes it possible to backup the RTC and backup registers. Dedicated VDD12 power supplies can be used to bypass the internal LDO regulator when connected to an external SMPS.
The STM32L496xx family offers seven packages from 64-pin to 169-pin packages.
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所有功能
- Includes ST state-of-the-art patented technology
- Ultra-low-power with FlexPowerControl
- 1.71 V to 3.6 V power supply
- -40 °C to 85/125 °C temperature range
- 320 nA in VBAT mode: supply for RTC and 32x32-bit backup registers
- 25 nA Shutdown mode (5 wakeup pins)
- 108 nA Standby mode (5 wakeup pins)
- 426 nA Standby mode with RTC
- 2.57 µA Stop 2 mode, 2.86 µA Stop 2 with RTC
- 91 µA/MHz run mode (LDO mode)
- 37 μA/MHz run mode (at 3.3 V SMPS mode)
- Batch acquisition mode (BAM)
- 5 µs wakeup from Stop mode
- Brown out reset (BOR) in all modes except shutdown
- Interconnect matrix
- Core: Arm® 32-bit Cortex®-M4 CPU with FPU, Adaptive real-time accelerator (ART Accelerator™) allowing 0-wait-state execution from Flash memory, frequency up to 80 MHz, MPU, 100 DMIPS and DSP instructions
- Performance benchmark
- 1.25 DMIPS/MHz (Drystone 2.1)
- 273.55 Coremark® (3.42 Coremark/MHz at 80 MHz)
- Energy benchmark
- 279 ULPMark™ CP score
- 80.2 ULPMark™ PP score
- 16 timers: 2x 16-bit advanced motor-control, 2x 32-bit and 5x 16-bit general purpose, 2x 16-bit basic, 2x low-power 16-bit timers (available in Stop mode), 2x watchdogs, SysTick timer
- RTC with HW calendar, alarms and calibration
- Up to 136 fast I/Os, most 5 V-tolerant, up to 14 I/Os with independent supply down to 1.08 V
- Dedicated Chrom-ART Accelerator for enhanced graphic content creation (DMA2D)
- 8- to 14-bit camera interface up to 32 MHz (black & white) or 10 MHz (color)
- 存储器
- Up to 1 MB Flash, 2 banks read-while-write, proprietary code readout protection
- 320 KB of SRAM including 64 KB with hardware parity check
- External memory interface for static memories supporting SRAM, PSRAM, NOR and NAND memories
- Dual-flash Quad SPI memory interface
- Clock sources
- 4 to 48 MHz crystal oscillator
- 32 kHz crystal oscillator for RTC (LSE)
- Internal 16 MHz factory-trimmed RC (±1%)
- Internal low-power 32 kHz RC (±5%)
- Internal multispeed 100 kHz to 48 MHz oscillator, auto-trimmed by LSE (better than ±0.25% accuracy)
- Internal 48 MHz with clock recovery
- 3 PLLs for system clock, USB, audio, ADC
- LCD 8× 40 or 4× 44 with step-up converter
- Up to 24 capacitive sensing channels: support touchkey, linear and rotary touch sensors
- 4x digital filters for sigma delta modulator
- Rich analog peripherals (independent supply)
- 3× 12-bit ADCs 5 Msps, up to 16-bit with hardware oversampling, 200 µA/Msps
- 2x 12-bit DAC output channels, low-power sample and hold
- 2x operational amplifiers with built-in PGA
- 2x ultra-low-power comparators
- 20x communication interfaces
- USB OTG 2.0 full-speed, LPM and BCD
- 2x SAIs (serial audio interface)
- 4x I2C FM+(1 Mbit/s), SMBus/PMBus
- 5x U(S)ARTs (ISO 7816, LIN, IrDA, modem)
- 1x LPUART
- 3x SPIs (4x SPIs with the Quad SPI)
- 2x CANs (2.0B Active) and SDMMC
- SWPMI single wire protocol master I/F
- IRTIM (Infrared interface)
- 14-channel DMA controller
- True random number generator
- CRC calculation unit, 96-bit unique ID
- Development support: serial wire debug (SWD), JTAG, Embedded Trace Macrocell™
电路原理图
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所有资源
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产品规格 (1)
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19.0 | 10 Jun 2024 | 10 Jun 2024 |
应用手册 (5 of 72)
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1.0 | 25 Jun 2015 | 25 Jun 2015 | ||
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4.0 | 06 Jul 2022 | 06 Jul 2022 | ||
1.0 | 08 Jun 2022 | 08 Jun 2022 | ||
3.0 | 16 Jul 2019 | 16 Jul 2019 | ||
9.0 | 04 Nov 2022 | 04 Nov 2022 | ||
8.0 | 27 Feb 2025 | 27 Feb 2025 | ||
1.0 | 05 Apr 2018 | 05 Apr 2018 | ||
5.0 | 27 Feb 2025 | 27 Feb 2025 | ||
8.0 | 27 Feb 2025 | 27 Feb 2025 | ||
4.0 | 04 Oct 2024 | 04 Oct 2024 | ||
23.0 | 27 Feb 2025 | 27 Feb 2025 | ||
7.0 | 09 Dec 2024 | 09 Dec 2024 | ||
2.0 | 08 Oct 2015 | 08 Oct 2015 | ||
3.0 | 17 Aug 2022 | 17 Aug 2022 | ||
8.0 | 27 Feb 2025 | 27 Feb 2025 | ||
10.0 | 27 Feb 2025 | 27 Feb 2025 | ||
5.0 | 27 Feb 2025 | 27 Feb 2025 | ||
10.0 | 27 Feb 2025 | 27 Feb 2025 | ||
10.0 | 27 Feb 2025 | 27 Feb 2025 | ||
9.0 | 22 Oct 2024 | 22 Oct 2024 | ||
5.0 | 25 Jan 2024 | 25 Jan 2024 | ||
10.0 | 29 Oct 2024 | 29 Oct 2024 | ||
8.0 | 27 Feb 2025 | 27 Feb 2025 | ||
1.0 | 25 Sep 2023 | 25 Sep 2023 | ||
9.0 | 06 Feb 2025 | 06 Feb 2025 | ||
5.0 | 12 Dec 2024 | 12 Dec 2024 | ||
11.0 | 24 Mar 2025 | 24 Mar 2025 | ||
8.0 | 27 Feb 2025 | 27 Feb 2025 | ||
6.0 | 15 May 2025 | 15 May 2025 | ||
7.0 | 27 Feb 2025 | 27 Feb 2025 | ||
14.0 | 18 Feb 2025 | 18 Feb 2025 | ||
2.0 | 17 Jul 2019 | 17 Jul 2019 | ||
10.0 | 11 Sep 2024 | 11 Sep 2024 | ||
7.0 | 27 Jun 2023 | 27 Jun 2023 | ||
10.0 | 27 Feb 2025 | 27 Feb 2025 | ||
4.0 | 09 Dec 2024 | 09 Dec 2024 | ||
10.0 | 27 Feb 2025 | 27 Feb 2025 | ||
12.0 | 27 Feb 2025 | 27 Feb 2025 | ||
11.0 | 27 Feb 2025 | 27 Feb 2025 | ||
68.0 | 05 Aug 2025 | 05 Aug 2025 | ||
13.0 | 27 Feb 2025 | 27 Feb 2025 | ||
10.0 | 27 Feb 2025 | 27 Feb 2025 | ||
5.0 | 21 Sep 2018 | 21 Sep 2018 | ||
3.0 | 21 Apr 2017 | 21 Apr 2017 | ||
7.0 | 20 Sep 2018 | 20 Sep 2018 | ||
5.0 | 20 Sep 2018 | 20 Sep 2018 | ||
5.0 | 20 Sep 2018 | 20 Sep 2018 | ||
7.0 | 20 Sep 2018 | 20 Sep 2018 | ||
5.0 | 20 Sep 2018 | 20 Sep 2018 | ||
3.0 | 03 Mar 2025 | 03 Mar 2025 | ||
7.0 | 21 Sep 2018 | 21 Sep 2018 | ||
2.0 | 12 May 2023 | 12 May 2023 | ||
2.0 | 21 Jul 2020 | 21 Jul 2020 | ||
1.0 | 27 Feb 2025 | 27 Feb 2025 | ||
1.0 | 17 Feb 2025 | 17 Feb 2025 | ||
4.0 | 21 Jan 2021 | 21 Jan 2021 | ||
4.0 | 13 Dec 2021 | 13 Dec 2021 | ||
15.0 | 06 Feb 2025 | 06 Feb 2025 | ||
3.0 | 29 Mar 2022 | 29 Mar 2022 | ||
3.0 | 28 Jan 2021 | 28 Jan 2021 | ||
14.0 | 25 Mar 2021 | 25 Mar 2021 | ||
1.0 | 25 Aug 2015 | 25 Aug 2015 | ||
5.0 | 18 Dec 2019 | 18 Dec 2019 | ||
9.0 | 04 Apr 2025 | 04 Apr 2025 | ||
1.0 | 18 May 2021 | 18 May 2021 | ||
20.0 | 03 Jul 2025 | 03 Jul 2025 | ||
17.0 | 17 Feb 2025 | 17 Feb 2025 | ||
1.0 | 22 Mar 2017 | 22 Mar 2017 | ||
2.0 | 13 Aug 2019 | 13 Aug 2019 | ||
1.0 | 09 Mar 2015 | 09 Mar 2015 |
技术文档 (5 of 7)
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5.0 | 17 Jul 2024 | 17 Jul 2024 | ||
2.0 | 19 Feb 2015 | 19 Feb 2015 | ||
3.0 | 24 Apr 2015 | 24 Apr 2015 | ||
3.0 | 24 Apr 2015 | 24 Apr 2015 | ||
1.0 | 16 Apr 2015 | 16 Apr 2015 | ||
1.0 | 19 Mar 2015 | 19 Mar 2015 |
用户手册 (2)
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2.0 | 05 Feb 2025 | 05 Feb 2025 | ||
11.0 | 21 Jun 2023 | 21 Jun 2023 |
参考手册 (1)
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10.0 | 10 Jan 2024 | 10 Jan 2024 |
编程手册 (1)
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11.0 | 28 Feb 2025 | 28 Feb 2025 |
勘误手册 (1)
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19.0 | 09 Dec 2024 | 09 Dec 2024 |
Device Option Lists (2)
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ZIP | 24 Feb 2017 | 24 Feb 2017 | ||
ZIP | 24 Feb 2017 | 24 Feb 2017 |
Design Notes & Tips (1)
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1.0 | 19 Sep 2018 | 19 Sep 2018 |
工具/软件相关的应用笔记 (5 of 38)
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2.0 | 15 Mar 2024 | 15 Mar 2024 | ||
2.0 | 23 Feb 2018 | 23 Feb 2018 | ||
2.0 | 30 May 2016 | 30 May 2016 | ||
1.0 | 28 Feb 2025 | 28 Feb 2025 | ||
1.0 | 18 Jun 2025 | 18 Jun 2025 | ||
5.0 | 06 Apr 2018 | 06 Apr 2018 | ||
4.0 | 10 Feb 2022 | 10 Feb 2022 | ||
2.0 | 14 Dec 2020 | 14 Dec 2020 | ||
3.0 | 24 Jul 2020 | 24 Jul 2020 | ||
1.0 | 29 Oct 2019 | 29 Oct 2019 | ||
10.0 | 22 Aug 2023 | 22 Aug 2023 | ||
5.0 | 05 Oct 2021 | 05 Oct 2021 | ||
2.0 | 30 Aug 2016 | 30 Aug 2016 | ||
2.0 | 28 Apr 2015 | 28 Apr 2015 | ||
1.0 | 07 Jan 2025 | 07 Jan 2025 | ||
2.0 | 27 Feb 2025 | 27 Feb 2025 | ||
2.0 | 03 May 2023 | 03 May 2023 | ||
1.0 | 28 Nov 2024 | 28 Nov 2024 | ||
9.0 | 22 Oct 2024 | 22 Oct 2024 | ||
5.0 | 25 Jan 2024 | 25 Jan 2024 | ||
18.0 | 11 Mar 2025 | 11 Mar 2025 | ||
2.0 | 28 Feb 2025 | 28 Feb 2025 | ||
11.0 | 24 Mar 2025 | 24 Mar 2025 | ||
2.0 | 24 Nov 2020 | 24 Nov 2020 | ||
8.0 | 20 Dec 2021 | 20 Dec 2021 | ||
7.0 | 27 Sep 2021 | 27 Sep 2021 | ||
1.0 | 14 Jan 2020 | 14 Jan 2020 | ||
3.0 | 22 May 2019 | 22 May 2019 | ||
1.0 | 18 Jan 2016 | 18 Jan 2016 | ||
1.0 | 20 Feb 2017 | 20 Feb 2017 | ||
6.0 | 12 Jul 2021 | 12 Jul 2021 | ||
3.0 | 02 Dec 2016 | 02 Dec 2016 | ||
4.0 | 09 Mar 2023 | 09 Mar 2023 | ||
3.0 | 28 Feb 2023 | 28 Feb 2023 | ||
14.0 | 25 Mar 2021 | 25 Mar 2021 | ||
1.0 | 30 Nov 2021 | 30 Nov 2021 | ||
1.0 | 16 Dec 2022 | 16 Dec 2022 | ||
1.0 | 25 Jun 2019 | 25 Jun 2019 |
简报 (5 of 44)
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1.0 | 16 Sep 2024 | 16 Sep 2024 | ||
1.0 | 01 Apr 2025 | 01 Apr 2025 | ||
1.0 | 11 Aug 2025 | 11 Aug 2025 | ||
1.0 | 21 Mar 2024 | 21 Mar 2024 | ||
1.1 | 02 Dec 2024 | 02 Dec 2024 | ||
1.0 | 15 May 2025 | 15 May 2025 | ||
1.0 | 13 Jan 2016 | 13 Jan 2016 | ||
1.0 | 13 Jan 2016 | 13 Jan 2016 | ||
1.0 | 13 Jan 2016 | 13 Jan 2016 | ||
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1.0 | 24 Feb 2016 | 24 Feb 2016 | ||
1 | 27 Apr 2016 | 27 Apr 2016 | ||
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1 | 27 Apr 2016 | 27 Apr 2016 |
宣传册 (5)
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20.0 | 21 Dec 2020 | 21 Dec 2020 | ||
1.0 | 20 Dec 2023 | 20 Dec 2023 | ||
1.0 | 09 Jul 2024 | 09 Jul 2024 | ||
18.10 | 13 Jan 2016 | 13 Jan 2016 | ||
1.0 | 22 Aug 2023 | 22 Aug 2023 |
手册 (1)
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1.0 | 31 Aug 2022 | 31 Aug 2022 |
Magazine Articles (2)
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1.1 | 18 Sep 2017 | 18 Sep 2017 | ||
1.1 | 28 Sep 2021 | 28 Sep 2021 |
Product Certifications (3)
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1.0 | 04 Jun 2020 | 04 Jun 2020 | ||
1.0 | 21 Apr 2020 | 21 Apr 2020 | ||
1.0 | 22 Apr 2020 | 22 Apr 2020 |
安全信息 (1)
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1.0 | 09 Oct 2023 | 09 Oct 2023 |
EDA符号、封装和3D模型
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System View Description (1)
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ZIP | 1.9 | 22 Jul 2025 | 22 Jul 2025 |
IBIS models (1)
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ZIP | 6.0 | 07 Jan 2022 | 07 Jan 2022 |
BSDL files (1)
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ZIP | 3.4 | 12 May 2022 | 12 May 2022 |
质量与可靠性
产品型号 | Marketing Status | 包 | SMPS | 等级规格 | 符合RoHS级别 | Longevity Commitment | Longevity Starting Date | 材料声明** |
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STM32L496ZET6 | 批量生产 | LQFP 144 20x20x1.4 mm | - | 工业 | Ecopack2 | 10 | 2025-01-01T00:00:00.000+01:00 | |
STM32L496ZET6TR | 批量生产 | LQFP 144 20x20x1.4 mm | - | 工业 | Ecopack2 | 10 | 2025-01-01T00:00:00.000+01:00 |
(**) st.com上提供的材料声明表单可能是基于包装系列中最常用的封装的通用文档。因此,它们可能不是100%适用于特定的设备。有关特定设备的信息,请联系 销售支持。
样片和购买
产品型号 | 供货状态 | Budgetary Price (US$)*/Qty | 从ST订购 | Order from distributors | 包 | 包装类型 | RoHS | Country of Origin | ECCN (US) | ECCN (EU) | Operating temperature (°C) | Operating Temperature (°C) (max) | D/A Converters (typ) (12-bit) | Timers (typ) (16-bit) | Timers (typ) (32-bit) | Number of Channels (typ) | SMPS | Number of Channels (typ) | UART (typ) | I/Os (High Current) | Integrated op-amps | Comparator | SPI (typ) | USART (typ) | Number of Channels (typ) | I2S (typ) | Advanced Motor Control Timers | CAN (2.0) | CAN (FD) | ||
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最小值 | 最大值 | ||||||||||||||||||||||||||||||
STM32L496ZET6TR | | | distributors 无法联系到经销商,请联系我们的销售办事处 |
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STM32L496ZET6 | | | 4 distributors |
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STM32L496ZET6TR 批量生产