MSP430FR2675

ACTIVO

MCU táctil capacitivo, 16 E/S táctiles (64 sensores), 32 KB FRAM, 6 KB SRAM, 43 E/S, 12 bit ADC, 105

Detalles del producto

CPU MSP430 Frequency (MHz) 16 Flash memory (kByte) 32 RAM (kByte) 6 ADC type 12-bit SAR Features Advanced sensing, CapTIvate Touch I/O, Real-time clock UART 2 Security Secure debug Number of ADC channels 12 SPI 4 USB No Operating temperature range (°C) -40 to 105 Rating Catalog Communication interface I2C, SPI, UART Operating system BareMetal (No OS), TI RTOS Hardware accelerators 0 Nonvolatile memory (kByte) 32 Number of GPIOs 43 Number of I2Cs 2
CPU MSP430 Frequency (MHz) 16 Flash memory (kByte) 32 RAM (kByte) 6 ADC type 12-bit SAR Features Advanced sensing, CapTIvate Touch I/O, Real-time clock UART 2 Security Secure debug Number of ADC channels 12 SPI 4 USB No Operating temperature range (°C) -40 to 105 Rating Catalog Communication interface I2C, SPI, UART Operating system BareMetal (No OS), TI RTOS Hardware accelerators 0 Nonvolatile memory (kByte) 32 Number of GPIOs 43 Number of I2Cs 2
VQFN (RHB) 32 25 mm² (5 mm × 5 mm) VQFN (RHA) 40 36 mm² (6 mm × 6 mm) LQFP (PT) 48 81 mm² (9 mm × 9 mm)
  • CapTIvate™ technology – capacitive touch
    • Performance
      • Fast electrode scanning with four simultaneous scans
      • Support for high-resolution sliders with up to 1024 points
      • Proximity sensing
    • Reliability
      • Increased immunity to power line, RF, and other environmental noise
      • Built-in spread spectrum, automatic tuning, noise filtering, and debouncing algorithms
      • Enable reliable touch solutions with 10-V RMS common-mode noise, 4-kV electrical fast transients, and 15-kV electrostatic discharge, allowing for IEC‑61000-4-6, IEC-61000-4-4, and IEC‑61000-4-2 compliance
      • Reduced RF emissions to simplify electrical designs
      • Support for metal touch and water rejection designs
    • Flexibility
    • Low power
      • <0.9 µA/button in wake-on-touch mode, where capacitive measurement and touch detection is done by hardware state machine while CPU is asleep
      • Wake-on-touch state machine allows electrode scanning while CPU sleeps
      • Hardware acceleration for environmental compensation, filtering, and threshold detection
    • Ease of use
      • CapTIvate Design Center PC GUI lets engineers design and tune capacitive buttons in real time without having to write code
      • CapTIvate software library in ROM provides ample FRAM for customer application
  • Embedded microcontroller
    • 16-bit RISC architecture
    • Clock supports frequencies up to 16 MHz
    • Wide supply voltage range from 3.6 V down to 1.8 V (minimum supply voltage is restricted by SVS levels, see the SVS specifications)
  • Optimized ultra-low-power modes
    • Active mode: 135 µA/MHz (typical)
    • Standby: <5 µA wake-on-touch with four sensors
    • Shutdown (LPM4.5): 37 nA without SVS
  • Low-power ferroelectric RAM (FRAM)
    • Up to 64KB of nonvolatile memory
    • Built-in error correction code (ECC)
    • Configurable write protection
    • Unified memory of program, constants, and storage
    • 1015 write cycle endurance
    • Radiation resistant and nonmagnetic
  • Intelligent digital peripherals
    • Four 16-bit timers with three capture/compare registers each (Timer_A3)
    • One 16-bit timer with seven capture/compare registers (Timer_B7)
    • One 16-bit timer associated with CapTIvate technology
    • One 16-bit counter-only RTC
    • 16-bit cyclic redundancy check (CRC)
  • Enhanced serial communications with support for pin remap feature
    • Two eUSCI_A supports UART, IrDA, and SPI
    • Two eUSCI_B supports SPI and I2C
  • High-performance analog
    • One 12-bit analog-to-digital converter (ADC) with up to 12 channels
      • Internal shared reference (1.5, 2.0, or 2.5 V)
      • Sample-and-hold 200 ksps
    • One enhanced comparator (eCOMP)
      • Integrated 6-bit DAC as reference voltage
      • Programmable hysteresis
      • Configurable high-power and low-power modes
  • Clock system (CS)
    • On-chip 32-kHz RC oscillator (REFO) with 1 µA support
    • On-chip 16-MHz digitally controlled oscillator (DCO) with frequency-locked loop (FLL)
      • ±1% accuracy with on-chip reference at room temperature
    • On-chip very low-frequency 10-kHz oscillator (VLO)
    • On-chip high-frequency modulation oscillator (MODOSC)
    • External 32-kHz crystal oscillator (LFXT)
    • Programmable MCLK prescalar of 1 to 128
    • SMCLK derived from MCLK with programmable prescalar of 1, 2, 4, or 8
  • General input/output and pin functionality
    • 43 I/Os on LQFP-48 package
    • 43 interrupt pins on all GPIOs can wake MCU from low-power modes
  • Development tools and software
  • 16KB ROM library includes CapTIvate touch libraries and driver libraries
  • Family members (also see Device Comparison)
    • MSP430FR2676: 64KB of program FRAM, 512B of information FRAM, 8KB of RAM supports up to 16 self-capacitive and 64 mutual-capacitive sensors
    • MSP430FR2675: 32KB of program FRAM, 512B of information FRAM, 6KB of RAM supports up to 16 self-capacitive and 64 mutual-capacitive sensors
    • MSP430FR2673: 16KB of program FRAM, 512B of information FRAM, 4KB of RAM supports up to 16 self-capacitive and 64 mutual-capacitive sensors
    • MSP430FR2672: 8KB of program FRAM, 512B of information FRAM, 2KB of RAM supports up to 16 self-capacitive and 24 mutual-capacitive sensors
  • Package options
    • 48-pin: LQFP (PT)
    • 40-pin: VQFN (RHA)
    • 32-pin: VQFN (RHB)
  • CapTIvate™ technology – capacitive touch
    • Performance
      • Fast electrode scanning with four simultaneous scans
      • Support for high-resolution sliders with up to 1024 points
      • Proximity sensing
    • Reliability
      • Increased immunity to power line, RF, and other environmental noise
      • Built-in spread spectrum, automatic tuning, noise filtering, and debouncing algorithms
      • Enable reliable touch solutions with 10-V RMS common-mode noise, 4-kV electrical fast transients, and 15-kV electrostatic discharge, allowing for IEC‑61000-4-6, IEC-61000-4-4, and IEC‑61000-4-2 compliance
      • Reduced RF emissions to simplify electrical designs
      • Support for metal touch and water rejection designs
    • Flexibility
    • Low power
      • <0.9 µA/button in wake-on-touch mode, where capacitive measurement and touch detection is done by hardware state machine while CPU is asleep
      • Wake-on-touch state machine allows electrode scanning while CPU sleeps
      • Hardware acceleration for environmental compensation, filtering, and threshold detection
    • Ease of use
      • CapTIvate Design Center PC GUI lets engineers design and tune capacitive buttons in real time without having to write code
      • CapTIvate software library in ROM provides ample FRAM for customer application
  • Embedded microcontroller
    • 16-bit RISC architecture
    • Clock supports frequencies up to 16 MHz
    • Wide supply voltage range from 3.6 V down to 1.8 V (minimum supply voltage is restricted by SVS levels, see the SVS specifications)
  • Optimized ultra-low-power modes
    • Active mode: 135 µA/MHz (typical)
    • Standby: <5 µA wake-on-touch with four sensors
    • Shutdown (LPM4.5): 37 nA without SVS
  • Low-power ferroelectric RAM (FRAM)
    • Up to 64KB of nonvolatile memory
    • Built-in error correction code (ECC)
    • Configurable write protection
    • Unified memory of program, constants, and storage
    • 1015 write cycle endurance
    • Radiation resistant and nonmagnetic
  • Intelligent digital peripherals
    • Four 16-bit timers with three capture/compare registers each (Timer_A3)
    • One 16-bit timer with seven capture/compare registers (Timer_B7)
    • One 16-bit timer associated with CapTIvate technology
    • One 16-bit counter-only RTC
    • 16-bit cyclic redundancy check (CRC)
  • Enhanced serial communications with support for pin remap feature
    • Two eUSCI_A supports UART, IrDA, and SPI
    • Two eUSCI_B supports SPI and I2C
  • High-performance analog
    • One 12-bit analog-to-digital converter (ADC) with up to 12 channels
      • Internal shared reference (1.5, 2.0, or 2.5 V)
      • Sample-and-hold 200 ksps
    • One enhanced comparator (eCOMP)
      • Integrated 6-bit DAC as reference voltage
      • Programmable hysteresis
      • Configurable high-power and low-power modes
  • Clock system (CS)
    • On-chip 32-kHz RC oscillator (REFO) with 1 µA support
    • On-chip 16-MHz digitally controlled oscillator (DCO) with frequency-locked loop (FLL)
      • ±1% accuracy with on-chip reference at room temperature
    • On-chip very low-frequency 10-kHz oscillator (VLO)
    • On-chip high-frequency modulation oscillator (MODOSC)
    • External 32-kHz crystal oscillator (LFXT)
    • Programmable MCLK prescalar of 1 to 128
    • SMCLK derived from MCLK with programmable prescalar of 1, 2, 4, or 8
  • General input/output and pin functionality
    • 43 I/Os on LQFP-48 package
    • 43 interrupt pins on all GPIOs can wake MCU from low-power modes
  • Development tools and software
  • 16KB ROM library includes CapTIvate touch libraries and driver libraries
  • Family members (also see Device Comparison)
    • MSP430FR2676: 64KB of program FRAM, 512B of information FRAM, 8KB of RAM supports up to 16 self-capacitive and 64 mutual-capacitive sensors
    • MSP430FR2675: 32KB of program FRAM, 512B of information FRAM, 6KB of RAM supports up to 16 self-capacitive and 64 mutual-capacitive sensors
    • MSP430FR2673: 16KB of program FRAM, 512B of information FRAM, 4KB of RAM supports up to 16 self-capacitive and 64 mutual-capacitive sensors
    • MSP430FR2672: 8KB of program FRAM, 512B of information FRAM, 2KB of RAM supports up to 16 self-capacitive and 24 mutual-capacitive sensors
  • Package options
    • 48-pin: LQFP (PT)
    • 40-pin: VQFN (RHA)
    • 32-pin: VQFN (RHB)

The MSP430FR267x is an ultra-low-power MSP430™ microcontroller for capacitive touch sensing that feature CapTIvate touch technology for buttons, slides, wheel and proximity applications. MSP430 MCUs with CapTIvate technology provide the most integrated and autonomous capacitive-touch solution in the market with high reliability and noise immunity at the lowest power. TI’s capacitive touch technology supports concurrent self-capacitance and mutual-capacitance electrodes on the same design for maximum flexibility. MSP430 MCUs with CapTIvate technology operate through thick glass, plastic enclosures, metal, and wood with operation in harsh environments including wet, greasy, and dirty environments.

TI capacitive touch sensing MSP430 MCUs are supported by an extensive hardware and software ecosystem with reference designs and code examples to get your design started quickly. Development kits include the MSP-CAPT-FR2633 CapTIvate Technology Development Kit. TI also provides free software including the CapTIvate Design Center, where engineers can quickly develop applications with an easy-to-use GUI and MSP430Ware™ software, and comprehensive documentation with the CapTIvate Technology Guide. MSP430 MCUs are also supported by extensive online collateral, such as our housekeeping example series, MSP Academy training, and online support through the TI E2E™ support forums.

The TI MSP430 family of low-power microcontrollers consists of devices with different sets of peripherals targeted for various applications. The architecture, combined with extensive low-power modes, is optimized to achieve extended battery life in portable measurement applications. The MCU features a powerful 16-bit RISC CPU, 16-bit registers, and constant generators that contribute to maximum code efficiency. The digitally controlled oscillator (DCO) allows the MCU to wake up from low-power modes to active mode in less than 10 µs (typical).

For complete module descriptions, see the MSP430FR4xx and MSP430FR2xx Family User’s Guide.

The MSP430FR267x is an ultra-low-power MSP430™ microcontroller for capacitive touch sensing that feature CapTIvate touch technology for buttons, slides, wheel and proximity applications. MSP430 MCUs with CapTIvate technology provide the most integrated and autonomous capacitive-touch solution in the market with high reliability and noise immunity at the lowest power. TI’s capacitive touch technology supports concurrent self-capacitance and mutual-capacitance electrodes on the same design for maximum flexibility. MSP430 MCUs with CapTIvate technology operate through thick glass, plastic enclosures, metal, and wood with operation in harsh environments including wet, greasy, and dirty environments.

TI capacitive touch sensing MSP430 MCUs are supported by an extensive hardware and software ecosystem with reference designs and code examples to get your design started quickly. Development kits include the MSP-CAPT-FR2633 CapTIvate Technology Development Kit. TI also provides free software including the CapTIvate Design Center, where engineers can quickly develop applications with an easy-to-use GUI and MSP430Ware™ software, and comprehensive documentation with the CapTIvate Technology Guide. MSP430 MCUs are also supported by extensive online collateral, such as our housekeeping example series, MSP Academy training, and online support through the TI E2E™ support forums.

The TI MSP430 family of low-power microcontrollers consists of devices with different sets of peripherals targeted for various applications. The architecture, combined with extensive low-power modes, is optimized to achieve extended battery life in portable measurement applications. The MCU features a powerful 16-bit RISC CPU, 16-bit registers, and constant generators that contribute to maximum code efficiency. The digitally controlled oscillator (DCO) allows the MCU to wake up from low-power modes to active mode in less than 10 µs (typical).

For complete module descriptions, see the MSP430FR4xx and MSP430FR2xx Family User’s Guide.

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Documentación técnica

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Documentación principal Tipo Título Opciones de formato Descargar la versión más reciente en inglés Fecha
* Hoja de datos MSP430FR267x Capacitive Touch Sensing Mixed-Signal Microcontrollers datasheet (Rev. D) PDF | HTML 14/09/2021
* Guía del usuario MSP430FR4xx and MSP430FR2xx Family User's Guide (Rev. I) 13/03/2019
* Errata MSP430FR2675 Microcontroller Errata (Rev. B) PDF | HTML 21/10/2021
Nota sobre la aplicación Migration Guide From MSP430 MCUs to MSPM0 MCUs (Rev. B) PDF | HTML 2/06/2025
Artículo técnico Detect. Sense. Control: Simplify building automation designs with MSP430™ MCUs PDF | HTML 23/08/2021
Nota sobre la aplicación Migrating from MSP430 F2xx and G2xx families to MSP430 FR4xx and FR2xx family (Rev. G) PDF | HTML 2/08/2021
Nota sobre la aplicación Migration from MSP430 FR58xx, FR59xx, and FR6xx to FR4xx and FR2xx (Rev. B) PDF | HTML 2/08/2021
Nota sobre la aplicación Designing With the MSP430FR4xx and MSP430FR2xx ADC (Rev. A) PDF | HTML 2/08/2021
Application brief Improving Capacitive Touch Keypad Robustness in Extreme Weather Conditions PDF | HTML 29/07/2021
Nota sobre la aplicación MSP430 System-Level ESD Considerations (Rev. B) PDF | HTML 14/07/2021
Guía del usuario CapTIvate™ Touch MCUs Getting Started Guide (Rev. A) PDF | HTML 12/07/2021
Guía del usuario MSP430 MCUs Development Guide Book (Rev. A) PDF | HTML 13/05/2021
Nota sobre la aplicación MSP430FR2xx and MSP430FR4xx DCO+FLL Application Guide 7/12/2020
Informe Capacitive Sensing Technology, Products, and Applications 19/05/2020
Artículo técnico The capacitive touch trend is rising rapidly. Can you keep up? PDF | HTML 15/05/2020
Nota sobre la aplicación Automating Capacitive Touch Sensor PCB Design Using OpenSCAD Scripts (Rev. B) PDF | HTML 26/02/2020
Nota sobre la aplicación MSP430 System ESD Troubleshooting Guide PDF | HTML 13/12/2019
Nota sobre la aplicación Capacitive Touch Design Flow for MSP430™ MCUs With CapTIvate™ Technology (Rev. B) PDF | HTML 14/08/2019
Artículo técnico New ways to design and implement user interfaces in dishwashers PDF | HTML 20/06/2019
Artículo técnico How to add capacitive touch capability to cooking ranges PDF | HTML 31/05/2019
Artículo técnico Touch wheels simplify complex user interfaces in microwaves and ovens PDF | HTML 8/05/2019
Artículo técnico Capacitive touch & host controller functionality all in one package can reduce cos PDF | HTML 4/04/2019

Diseño y desarrollo

Para conocer los términos adicionales o los recursos necesarios, haga clic en cualquier título de abajo para ver la página de detalles cuando esté disponible.

Placa de evaluación

CAPTIVATE-BSWP — Botón de autocapacitancia táctil capacitiva, deslizador, rueda y placa de demostración de sensor de

El botón, deslizador, rueda y placa de demostración de proximidad CapTIvate™ (CAPTIVATE-BSWP) es una plataforma sencilla de evaluación para sensores táctiles capacitivos de autocapacitancia en una variedad de configuraciones.  El panel del sensor demuestra los principios de diseño de baja potencia (...)
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Placa de evaluación

CAPTIVATE-EMC — Módulo de evaluación de detección táctil capacitiva CapTIvate™ para probar la inmunidad al ruido con

La CAPTIVATE-EMC es una placa de evaluación que permite a los diseñadores evaluar fácilmente el rendimiento de la compatibilidad electromagnética de la tecnología CapTIvate™ en relación con sus documentos de diseño. El EVM incorpora el MCU MSP430FR2676 CapTIvate con salto de frecuencia y (...)
Guía del usuario: PDF | HTML
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Placa de evaluación

CAPTIVATE-FR2676 — Placa MCU táctil capacitiva MSP430FR2676

La placa MCU táctil CapTIvate™ MSP430FR2676 (CAPTIVATE-FR2676) es una placa de evaluación sencilla para evaluar sensores táctiles capacitivos y de proximidad mediante el uso de placas de sensores enchufables (se venden por separado). 

La placa MCU tiene un conector de depuración hembra de 20 pines (...)

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Placa de evaluación

ALGO-3P-UISP1-TI — Programador Algocraft μISP1 para dispositivos Texas Instruments

μISP puede funcionar conectado a un PC host (conexiones RS-232, USB y LAN integradas) o en modo independiente.

La ejecución del ciclo de programación en modo independiente puede ocurrir simplemente pulsando el botón de START o a través de algunas líneas de control TTL.

Su tamaño compacto y (...)

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Kit de desarrollo

CAPTIVATE-PHONE — Placa de demostración de sensor de capacitancia mutua táctil capacitiva con retroalimentación háptic

Esta placa de demostración MSP430™ CapTIvate™ (CAPTIVATE-PHONE) es una plataforma de evaluación sencilla para sensores táctiles capacitivos de capacitancia mutua que utilizan diversas configuraciones en una aplicación práctica.  El panel de sensores muestra cómo matrizar sensores táctiles de (...)

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Kit de desarrollo

MSP-TS430PT48A — Placa de desarrollo destino para MCU MSP430FR2476 - 48 pines (microcontrolador no incluido)

Nota:  Este kit no incluye muestras del microcontrolador (MCU) MSP430™.  Para ver una muestra de los dispositivos compatibles, visite la página del producto o seleccione el microcontrolador relacionado después de agregar la herramienta al carro de TI Store:
MSP430FR2476.

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Herramienta de programación de hardware

CAPTIVATE-PGMR — Programador MCU CapTIvate MSP430

El programador MCU CapTIvate MSP430 está disponible de forma independiente o como parte del kit de desarrollo MSP CapTIvate™ MCU, una plataforma completa y fácil de usar para evaluar el microcontrolador MSP430FR2633 con tecnología táctil capacitiva.  La placa programadora/depuradora se puede (...)
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Herramienta de programación de hardware

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El MSP-FET es una potente herramienta de desarrollo de emulación, a menudo llamada sonda de depuración, que permite a los usuarios comenzar a desarrollar rápidamente en microcontroladores (MCU) de baja potencia de MSP.

Admite la programación y la depuración en tiempo real a través de las interfaces (...)

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Herramienta de programación de hardware

ALGO-3P-WRITENOW — Algocraft WriteNow! Programador

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IDE, configuración, compilador o depurador

CCSTUDIO — Code Composer Studio™ integrated development environment (IDE)

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Capacitación en línea

MSP430-ACADEMY — MSP430™ academy

MSP430™ Academy delivers easy-to-use training modules that span a wide range of topics and LaunchPads in the MSP430 MCU portfolio.
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Primeros pasos

TI-DEVELOPER-ZONE — Start embedded development on your desktop or in the cloud

From evaluation to deployment the TI Developer Zone provides a comprehensive range of software, tools and training to ensure that you have everything you need for each stage of the development process.
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Sistema operativo (SO)

WHIS-3P-SAFERTOS — RTOS de seguridad precertificado SAFERTOS de WITTENSTEIN

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Software de aplicación y estructura

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Software de aplicación y estructura

MSPCAPTDSNCTR — MSP CapTIvate™ design Center GUI

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Ejemplo de código o demostración

SLAC781 — MSP430FR267x, MSP430FR247x Code Examples

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Firmware

MSPFRBOOT — MSPFRBOOT

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Herramienta de programación de software

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Herramienta de programación de software

UNIFLASH — UniFlash for most TI microcontrollers (MCUs) and mmWave sensors

UniFlash forma parte del amplio ecosistema de desarrollo CCStudio™ de TI y es una herramienta de software diseñada para programar la memoria flash integrada en los microcontroladores y dispositivos de conectividad inalámbrica de TI, así como la memoria flash integrada en los procesadores de TI. (...)

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Herramienta de diseño

MSP-3P-SEARCH — Herramienta de búsqueda de terceros de MSP

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Encapsulado Pines Símbolos CAD, huellas y modelos 3D
VQFN (RHB) 32 Ultra Librarian
VQFN (RHA) 40 Ultra Librarian
LQFP (PT) 48 Ultra Librarian

Pedidos y calidad

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Soporte y capacitación

Foros de TI E2E™ con asistencia técnica de los ingenieros de TI

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Si tiene alguna pregunta sobre calidad, encapsulados o pedido de productos de TI, consulte el servicio de asistencia de TI. ​​​​​​​​​​​​​​

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