製品概要
概要
STM32L4Q5xx designates a family of ultra-low-power microcontroller devices (part of STM32L4+ Series) based on the high-performance Arm® Cortex®-M4 32-bit RISC core. They operate at a frequency of up to 120 MHz.
The Cortex-M4 core features a single-precision floating-point unit (FPU), which supports all the Arm® single-precision data-processing instructions and all the data types. The Cortex-M4 core also implements a full set of DSP (digital signal processing) instructions and a memory protection unit (MPU) that enhances the application’s security.
These devices embed high-speed memories (1 Mbyte of Flash memory and 320 Kbytes of SRAM), a flexible external memory controller (FSMC) for static memories (for devices with packages of 100 pins and more), two OCTOSPI Flash memory interfaces (for devices with packages of 100 pins or more) 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.
These devices embed several protection mechanisms for embedded Flash memory and SRAM: readout protection, write protection, proprietary code readout protection and a firewall.
These devices offer two 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 timers, 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 two digital filters for external sigma delta modulators (DFSDMs). In addition, up to 24 capacitive sensing channels are available.
They also feature standard and advanced communication interfaces such as:
- Four I2Cs
- Three SPIs
- Three USARTs, two UARTs and one low-power UART
- Two SAIs
- Two SDMMCs
- One CAN
- One USB OTG full-speed
- Camera interface
- Synchronous parallel data interface (PSSI)
STM32L4Q5xx devices embed an AES and a PKA hardware accelerator.
The devices operate in the -40 to +85 °C (+105 °C junction) and -40 to +125 °C (+130 °C junction) temperature ranges from a 1.71 to 3.6 V power supply. A comprehensive set of power-saving modes allows the design of low-power applications.
Some independent power supplies are supported such as an analog independent supply input for ADC, DAC, OPAMPs and comparators, a 3.3 V dedicated supply input for USB and up to 14 I/Os, which can be supplied independently down to 1.08 V. A VBAT input allows backup of the RTC and the registers. Dedicated VDD12 power supplies can be used to bypass the internal LDO regulator when connected to an external SMPS.
The STM32L4Q5xx family offers eight packages from 48-pin to 169-pin.
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特徴
- 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
- Batch acquisition mode (BAM)
- 150 nA in VBAT mode: supply for RTC and 32x32-bit backup registers
- 22 nA Shutdown mode (5 wakeup pins)
- 42 nA Standby mode (5 wakeup pins)
- 190 nA Standby mode with RTC
- 2.95 μA Stop 2 with RTC
- 110 μA/MHz Run mode (LDO mode)
- 41 μA/MHz Run mode (@ 3.3 V SMPS mode)
- 5 µs wakeup from Stop mode
- Brownout reset (BOR) in all modes except Shutdown
- コア
- 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 120 MHz, MPU, 150 DMIPS/1.25 DMIPS/MHz (Dhrystone 2.1), and DSP instructions
- メモリ
- 1-Mbyte Flash memory, 2 banks read-while-write, proprietary code readout protection
- 320 Kbytes of SRAM including 64 Kbytes with hardware parity check
- External memory interface for static memories supporting SRAM, PSRAM, NOR, NAND and FRAM memories
- 2 x Octo-SPI memory interfaces
- General-purpose inputs/outputs
- Up to 136 fast I/Os, most 5 V-tolerant, up to 14 I/Os with independent supply down to 1.08 V
- Performance benchmark
- 1.25 DMIPS/MHz (Drystone 2.1)
- 409.20 CoreMark® (3.41 CoreMark/MHz @120 MHz)
- Energy benchmark
- 285 ULPMark™CP score
- Up to 24 capacitive sensing channels
- Support touchkey, linear and rotary touch sensors
- Clock management
- 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
- Interconnect matrix
- 1 AHB bus matrix
- 14-channel DMA controller
- 23 communication peripherals
- USB OTG 2.0 full-speed, LPM and BCD
- 2x SAIs (serial audio interface)
- 4x I2C FM+(1 Mbit/s), SMBus/PMBus
- 6x USARTs (ISO 7816, LIN, IrDA, modem)
- 3x SPIs (5x SPIs with the dual Octo-SPI)
- CAN (2.0B Active) and 2x SDMMC
- 8- to 14-bit camera interface up to 32 MHz (black and white) or 10 MHz (color)
- 8-/16-bit parallel synchronous data input/output slave interface (PSSI)
- 11 analog peripherals (independent supply)
- 2x 12-bit ADC 5 Msps, up to 16-bit with hardware oversampling, 200 µA/Msps
- 2x 12-bit DAC, low-power sample and hold
- 2x operational amplifiers with built-in PGA
- 2x ultra-low-power comparators
- 2x digital filters for sigma delta modulator
- 1x temperature sensor
- Advanced graphics features
- Chrom-ART Accelerator (DMA2D) for enhanced graphic content creation
- LCD-TFT controller
- 16x timers and watchdog
- 2 x 16-bit advanced motor-control
- 2 x 32-bit general purpose timers
- 5 x 16-bit general purpose timers
- 2x 16-bit basic timers
- 2x low-power 16-bit timers (available in Stop mode)
- 2x watchdogs
- 1x SysTick timer
- RTC with hardware calendar, alarms and calibration
- Cryptographic acceleration
- AES (128/256-bit key)
- Public key accelerator (PKA)
- True random generator
- CRC calculation unit
- HASH (SHA-256) hardware accelerator
- Debug mode
- Serial wire debug (SWD)
- JTAG
- Embedded Trace Macrocell™ (ETM)
- 96-bit unique ID
回路ダイアグラム
Recommended Tools & Software
すべてのリソース
タイトル | バージョン | 更新日 |
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製品スペック (1)
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3.0 | 03 Dec 2021 | 03 Dec 2021 |
アプリケーションノート (5 of 59)
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4.0 | 08 Jul 2020 | 08 Jul 2020 | ||
1.0 | 06 Jul 2022 | 06 Jul 2022 | ||
1.1 | 16 Jan 2024 | 16 Jan 2024 | ||
1.0 | 16 Jul 2019 | 16 Jul 2019 | ||
12.0 | 27 Feb 2025 | 27 Feb 2025 | ||
9.0 | 04 Nov 2022 | 04 Nov 2022 | ||
1.0 | 05 Apr 2018 | 05 Apr 2018 | ||
5.0 | 27 Feb 2025 | 27 Feb 2025 | ||
1.0 | 13 Oct 2017 | 13 Oct 2017 | ||
8.0 | 27 Feb 2025 | 27 Feb 2025 | ||
4.0 | 04 Oct 2024 | 04 Oct 2024 | ||
1.0 | 27 Feb 2025 | 27 Feb 2025 | ||
7.0 | 09 Dec 2024 | 09 Dec 2024 | ||
2.1 | 11 Jul 2017 | 11 Jul 2017 | ||
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 | ||
1.0 | 23 Aug 2023 | 23 Aug 2023 | ||
8.0 | 27 Feb 2025 | 27 Feb 2025 | ||
1.0 | 25 Sep 2023 | 25 Sep 2023 | ||
1.0 | 24 Mar 2025 | 24 Mar 2025 | ||
5.0 | 27 Feb 2025 | 27 Feb 2025 | ||
7.0 | 27 Feb 2025 | 27 Feb 2025 | ||
2.0 | 17 Jul 2019 | 17 Jul 2019 | ||
9.0 | 14 Mar 2024 | 14 Mar 2024 | ||
6.0 | 14 Mar 2024 | 14 Mar 2024 | ||
6.0 | 13 Feb 2025 | 13 Feb 2025 | ||
7.0 | 27 Jun 2023 | 27 Jun 2023 | ||
1.0 | 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 | ||
2.0 | 27 Feb 2025 | 27 Feb 2025 | ||
10.0 | 27 Feb 2025 | 27 Feb 2025 | ||
2.0 | 19 Sep 2023 | 19 Sep 2023 | ||
5.0 | 21 Sep 2018 | 21 Sep 2018 | ||
3.0 | 10 Mar 2020 | 10 Mar 2020 | ||
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 | ||
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 | ||
4.0 | 21 Jan 2021 | 21 Jan 2021 | ||
1.0 | 29 Mar 2022 | 29 Mar 2022 | ||
3.0 | 28 Jan 2021 | 28 Jan 2021 | ||
1.0 | 17 Feb 2025 | 17 Feb 2025 | ||
14.0 | 15 Nov 2022 | 15 Nov 2022 | ||
5.0 | 15 Nov 2022 | 15 Nov 2022 | ||
8.0 | 07 Nov 2024 | 07 Nov 2024 | ||
2.0 | 13 Aug 2019 | 13 Aug 2019 | ||
1.1 | 11 Jul 2017 | 11 Jul 2017 |
テクニカル・ノート & 技術解説 (5 of 7)
タイトル | バージョン | 更新日 | ||
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4.0 | 11 Jul 2017 | 11 Jul 2017 | ||
5.0 | 17 Jul 2024 | 17 Jul 2024 | ||
2.1 | 11 Jul 2017 | 11 Jul 2017 | ||
3.0 | 11 Jul 2017 | 11 Jul 2017 | ||
3.0 | 11 Jul 2017 | 11 Jul 2017 | ||
1.0 | 11 Jul 2017 | 11 Jul 2017 | ||
1.0 | 11 Jul 2017 | 11 Jul 2017 |
ユーザマニュアル (2)
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2.0 | 05 Feb 2025 | 05 Feb 2025 | ||
11.0 | 21 Jun 2023 | 21 Jun 2023 |
リファレンスマニュアル (1)
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9.0 | 25 Jun 2021 | 25 Jun 2021 |
プログラミングマニュアル (1)
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1.0 | 23 Mar 2020 | 23 Mar 2020 |
エラッタシート (1)
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4.0 | 12 May 2023 | 12 May 2023 |
ツール&ソフトウェア用アプリケーション・ノート (5 of 26)
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1.0 | 15 Mar 2024 | 15 Mar 2024 | ||
2.0 | 23 Feb 2018 | 23 Feb 2018 | ||
1.0 | 28 Feb 2025 | 28 Feb 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 | ||
5.0 | 05 Oct 2021 | 05 Oct 2021 | ||
2.0 | 30 Aug 2016 | 30 Aug 2016 | ||
2.0 | 28 Apr 2015 | 28 Apr 2015 | ||
2.0 | 27 Feb 2025 | 27 Feb 2025 | ||
1.0 | 03 May 2023 | 03 May 2023 | ||
1.0 | 28 Nov 2024 | 28 Nov 2024 | ||
18.0 | 11 Mar 2025 | 11 Mar 2025 | ||
2.0 | 28 Feb 2025 | 28 Feb 2025 | ||
1.0 | 24 Mar 2025 | 24 Mar 2025 | ||
8.0 | 20 Dec 2021 | 20 Dec 2021 | ||
7.0 | 27 Sep 2021 | 27 Sep 2021 | ||
1.0 | 14 Jan 2020 | 14 Jan 2020 | ||
4.0 | 09 Mar 2023 | 09 Mar 2023 | ||
3.0 | 28 Feb 2023 | 28 Feb 2023 | ||
14.0 | 15 Nov 2022 | 15 Nov 2022 | ||
1.0 | 30 Nov 2021 | 30 Nov 2021 | ||
1.1 | 11 Jan 2023 | 11 Jan 2023 | ||
1.0 | 25 Jun 2019 | 25 Jun 2019 |
プレゼンテーション (5 of 6)
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1.0 | 16 Sep 2024 | 16 Sep 2024 | ||
1.0 | 01 Apr 2025 | 01 Apr 2025 | ||
1.0 | 20 Jun 2023 | 20 Jun 2023 | ||
1.0 | 21 Mar 2024 | 21 Mar 2024 | ||
1.1 | 02 Dec 2024 | 02 Dec 2024 | ||
1.0 | 02 Apr 2024 | 02 Apr 2024 |
フライヤー (3)
タイトル | バージョン | 更新日 | ||
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17.5 | 04 Apr 2022 | 04 Apr 2022 | ||
17.7 | 21 Jun 2021 | 21 Jun 2021 | ||
17.12 | 04 Jul 2022 | 04 Jul 2022 |
パンフレット (1)
タイトル | バージョン | 更新日 | ||
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17.5 | 27 Feb 2022 | 27 Feb 2022 |
製品認証 (1)
タイトル | バージョン | 更新日 | ||
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1.0 | 04 Jun 2020 | 04 Jun 2020 |
セキュリティ情報 (1)
タイトル | バージョン | 更新日 | ||
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1.0 | 28 Jan 2025 | 28 Jan 2025 |
EDAシンボル / フットプリント / 3Dモデル
すべてのリソース
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System View Description (1)
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ZIP | 1.4 | 01 Aug 2023 | 01 Aug 2023 |
IBIS models (1)
タイトル | バージョン | 更新日 | ||
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ZIP | 2.1 | 16 Jun 2020 | 16 Jun 2020 |
BSDL files (1)
タイトル | バージョン | 更新日 | ||
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ZIP | 3.0 | 16 Jun 2020 | 16 Jun 2020 |
品質 & 信頼性
製品型番 | マーケティング・ステータス | パッケージ | SMPS | グレード | RoHSコンプライアンスグレード | 材料宣誓書** |
---|---|---|---|---|---|---|
STM32L4Q5ZGT6 | 量産中 | LQFP 144 20x20x1.4 mm | - | インダストリアル | Ecopack2 | |
STM32L4Q5ZGT6P | 量産中 | LQFP 144 20x20x1.4 mm | 外部 Web アプリケーション | インダストリアル | Ecopack2 | |
STM32L4Q5ZGT6
Package:
LQFP 144 20x20x1.4 mmMaterial Declaration**:
STM32L4Q5ZGT6P
Package:
LQFP 144 20x20x1.4 mmMaterial Declaration**:
(**) st.comで提供している材料宣誓書は、パッケージ・ファミリ内で最も一般的に使用されているパッケージに基づく汎用ドキュメントの場合があります。そのため、特定の製品では100%正確ではない可能性があります。特定の製品情報については、セールスサポートまでお問い合わせください
サンプル & 購入
製品型番 | 製品ステータス | Budgetary Price (US$)*/Qty | STから購入 | Order from distributors | パッケージ | 梱包タイプ | RoHS | Country of Origin | ECCN (US) | ECCN (EU) | Operating temperature (°C) | Operating Temperature (°C) (max) | D/A Converters (typ) (12-bit) | Timers (typ) (16-bit) | Timers (typ) (32-bit) | Number of Channels (typ) | SMPS | Number of Channels (typ) | UART (typ) | I/Os (High Current) | Integrated op-amps | Comparator | SPI (typ) | USART (typ) | Number of Channels (typ) | I2S (typ) | Advanced Motor Control Timers | CAN (2.0) | CAN (FD) | ||
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STM32L4Q5ZGT6P | 量産中 | 6.1589 / 10k | 2 distributors | LQFP 144 20x20x1.4 mm | Tray | TAIWAN | 5A992.c | NEC | -40 | 85 | 2 | 11 | 2 |
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STM32L4Q5ZGT6 | 量産中 | 6.1589 / 10k | distributors 販売代理店に在庫がない場合は、STのセールス・オフィスまでお問い合わせください | LQFP 144 20x20x1.4 mm | Tray | TAIWAN | 5A992.c | NEC | -40 | 85 |
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STM32L4Q5ZGT6P 量産中
STM32L4Q5ZGT6 量産中
販売代理店に在庫がない場合は、STのセールス・オフィスまでお問い合わせください
(*)概算用の参考価格(US$)です。現地通貨でのお見積りについては、STのセールス・オフィスまたは販売代理店までお問い合わせください。