CC430F5137

ACTIVO

MCU inalámbrico de 16 bits de potencia ultrabaja de CC430 menor a 1 GHz con ADC de 12 bits, Flash de

Detalles del producto

Protocols Proprietary Modulation scheme (G)MSK, 2(G)FSK, 4(G)FSK, ASK, OOK Frequency bands 315 MHz, 433 MHz, 779 MHz, 868 MHz, 915 MHz, 920 MHz Type Wireless MCU TX power (max) (dBm) 13 RAM (kByte) 4 Flash memory (kByte) 32 Security Cryptographic acceleration Cryptographic accelerators AES CPU MSP430 Peripherals 1 SPI, 1 UART, 1 timer, 12-bit ADC, I2C Sensitivity (best) (dBm) -117 Number of GPIOs 30 RX current (lowest) (mA) 15 Data rate (max) (Mbps) 0.5 Rating Catalog Operating temperature range (°C) -40 to 85 Edge AI enabled No
Protocols Proprietary Modulation scheme (G)MSK, 2(G)FSK, 4(G)FSK, ASK, OOK Frequency bands 315 MHz, 433 MHz, 779 MHz, 868 MHz, 915 MHz, 920 MHz Type Wireless MCU TX power (max) (dBm) 13 RAM (kByte) 4 Flash memory (kByte) 32 Security Cryptographic acceleration Cryptographic accelerators AES CPU MSP430 Peripherals 1 SPI, 1 UART, 1 timer, 12-bit ADC, I2C Sensitivity (best) (dBm) -117 Number of GPIOs 30 RX current (lowest) (mA) 15 Data rate (max) (Mbps) 0.5 Rating Catalog Operating temperature range (°C) -40 to 85 Edge AI enabled No
VQFN (RGZ) 48 49 mm² (7 mm × 7 mm)
  • True System-on-Chip (SoC) for Low-Power Wireless Communication Applications
  • Wide Supply Voltage Range:
    3.6 V Down to 1.8 V
  • Ultra-Low Power Consumption
    • CPU Active Mode (AM): 160 µA/MHz
    • Standby Mode (LPM3 RTC Mode): 2.0 µA
    • Off Mode (LPM4 RAM Retention): 1.0 µA
    • Radio in RX: 15 mA, 250 kbps, 915 MHz
  • MSP430™ System and Peripherals
    • 16-Bit RISC Architecture, Extended Memory, up to 20-MHz System Clock
    • Wake up From Standby Mode in Less Than 6 µs
    • Flexible Power-Management System With SVS and Brownout
    • Unified Clock System With FLL
    • 16-Bit Timer TA0, Timer_A With Five Capture/Compare Registers
    • 16-Bit Timer TA1, Timer_A With Three Capture/Compare Registers
    • Hardware Real-Time Clock (RTC)
    • Two Universal Serial Communication Interfaces (USCIs)
      • USCI_A0 Supports UART, IrDA, SPI
      • USCI_B0 Supports I2C, SPI
    • 12-Bit Analog-to-Digital Converter (ADC) With Internal Reference, Sample-and-Hold, and Autoscan Features (CC430F613x and CC430F513x Only)
    • Comparator
    • Integrated LCD Driver With Contrast Control for up to 96 Segments (Only CC430F61xx)
    • 128-Bit AES Security Encryption and Decryption Coprocessor
    • 32-Bit Hardware Multiplier
    • 3-Channel Internal DMA
    • Serial Onboard Programming, No External Programming Voltage Needed
    • Embedded Emulation Module (EEM)
  • High-Performance Sub-1 GHz RF Transceiver Core
    • Same as in CC1101
    • Wide Supply Voltage Range: 2 V to 3.6 V
    • Frequency Bands: 300 MHz to 348 MHz, 389 MHz to 464 MHz, and 779 MHz to 928 MHz
    • Programmable Data Rate From 0.6 kBaud to 500 kBaud
    • High Sensitivity (–117 dBm at 0.6 kBaud, –111 dBm at 1.2 kBaud, 315 MHz, 1% Packet Error Rate)
    • Excellent Receiver Selectivity and Blocking Performance
    • Programmable Output Power up to +12 dBm for All Supported Frequencies
    • 2-FSK, 2-GFSK, and MSK Supported, Also OOK and Flexible ASK Shaping
    • Flexible Support for Packet-Oriented Systems: On-Chip Support for Sync Word Detection, Address Check, Flexible Packet Length, and Automatic CRC Handling
    • Support for Automatic Clear Channel Assessment (CCA) Before Transmitting (for Listen-Before-Talk Systems)
    • Digital RSSI Output
    • Suited for Systems Targeting Compliance With EN 300 220 (Europe) and FCC CFR Part 15 (US)
    • Suited for Systems Targeting Compliance With Wireless M-Bus Standard EN 13757‑4:2005
    • Support for Asynchronous and Synchronous Serial Receive or Transmit Mode for Backward Compatibility With Existing Radio Communication Protocols
  • Device Comparison Summarizes the Available Family Members
  • True System-on-Chip (SoC) for Low-Power Wireless Communication Applications
  • Wide Supply Voltage Range:
    3.6 V Down to 1.8 V
  • Ultra-Low Power Consumption
    • CPU Active Mode (AM): 160 µA/MHz
    • Standby Mode (LPM3 RTC Mode): 2.0 µA
    • Off Mode (LPM4 RAM Retention): 1.0 µA
    • Radio in RX: 15 mA, 250 kbps, 915 MHz
  • MSP430™ System and Peripherals
    • 16-Bit RISC Architecture, Extended Memory, up to 20-MHz System Clock
    • Wake up From Standby Mode in Less Than 6 µs
    • Flexible Power-Management System With SVS and Brownout
    • Unified Clock System With FLL
    • 16-Bit Timer TA0, Timer_A With Five Capture/Compare Registers
    • 16-Bit Timer TA1, Timer_A With Three Capture/Compare Registers
    • Hardware Real-Time Clock (RTC)
    • Two Universal Serial Communication Interfaces (USCIs)
      • USCI_A0 Supports UART, IrDA, SPI
      • USCI_B0 Supports I2C, SPI
    • 12-Bit Analog-to-Digital Converter (ADC) With Internal Reference, Sample-and-Hold, and Autoscan Features (CC430F613x and CC430F513x Only)
    • Comparator
    • Integrated LCD Driver With Contrast Control for up to 96 Segments (Only CC430F61xx)
    • 128-Bit AES Security Encryption and Decryption Coprocessor
    • 32-Bit Hardware Multiplier
    • 3-Channel Internal DMA
    • Serial Onboard Programming, No External Programming Voltage Needed
    • Embedded Emulation Module (EEM)
  • High-Performance Sub-1 GHz RF Transceiver Core
    • Same as in CC1101
    • Wide Supply Voltage Range: 2 V to 3.6 V
    • Frequency Bands: 300 MHz to 348 MHz, 389 MHz to 464 MHz, and 779 MHz to 928 MHz
    • Programmable Data Rate From 0.6 kBaud to 500 kBaud
    • High Sensitivity (–117 dBm at 0.6 kBaud, –111 dBm at 1.2 kBaud, 315 MHz, 1% Packet Error Rate)
    • Excellent Receiver Selectivity and Blocking Performance
    • Programmable Output Power up to +12 dBm for All Supported Frequencies
    • 2-FSK, 2-GFSK, and MSK Supported, Also OOK and Flexible ASK Shaping
    • Flexible Support for Packet-Oriented Systems: On-Chip Support for Sync Word Detection, Address Check, Flexible Packet Length, and Automatic CRC Handling
    • Support for Automatic Clear Channel Assessment (CCA) Before Transmitting (for Listen-Before-Talk Systems)
    • Digital RSSI Output
    • Suited for Systems Targeting Compliance With EN 300 220 (Europe) and FCC CFR Part 15 (US)
    • Suited for Systems Targeting Compliance With Wireless M-Bus Standard EN 13757‑4:2005
    • Support for Asynchronous and Synchronous Serial Receive or Transmit Mode for Backward Compatibility With Existing Radio Communication Protocols
  • Device Comparison Summarizes the Available Family Members

The TI CC430 family of ultra-low-power system-on-chip (SoC) microcontrollers with integrated RF transceiver cores consists of several devices that feature different sets of peripherals targeted for a wide range of applications. The architecture, combined with five low-power modes, is optimized to achieve extended battery life in portable measurement applications. The devices feature the powerful MSP430 16‑bit RISC CPU, 16-bit registers, and constant generators that contribute to maximum code efficiency.

The CC430 family provides a tight integration between the microcontroller core, its peripherals, software, and the RF transceiver, making these true SoC solutions easy to use as well as improving performance.

The CC430F61xx series are microcontroller SoC configurations that combine the excellent performance of the state-of-the-art CC1101 sub-1 GHz RF transceiver with the MSP430 CPUXV2, up to 32KB of in-system programmable flash memory, up to 4KB of RAM, two 16-bit timers, a high-performance 12-bit ADC with eight external inputs plus internal temperature and battery sensors on CC430F613x devices, a comparator, USCIs, a 128-bit AES security accelerator, a hardware multiplier, a DMA, an RTC module with alarm capabilities, an LCD driver, and up to 44 I/O pins.

The CC430F513x series are microcontroller SoC configurations that combine the excellent performance of the state-of-the-art CC1101 sub-1 GHz RF transceiver with the MSP430 CPUXV2, up to 32KB of in-system programmable flash memory, up to 4KB of RAM, two 16-bit timers, a high-performance 12-bit ADC with six external inputs plus internal temperature and battery sensors, a comparator, USCIs, a 128-bit AES security accelerator, a hardware multiplier, a DMA, an RTC module with alarm capabilities, and up to 30 I/O pins.

For complete module descriptions, see the CC430 Family User’s Guide.

The TI CC430 family of ultra-low-power system-on-chip (SoC) microcontrollers with integrated RF transceiver cores consists of several devices that feature different sets of peripherals targeted for a wide range of applications. The architecture, combined with five low-power modes, is optimized to achieve extended battery life in portable measurement applications. The devices feature the powerful MSP430 16‑bit RISC CPU, 16-bit registers, and constant generators that contribute to maximum code efficiency.

The CC430 family provides a tight integration between the microcontroller core, its peripherals, software, and the RF transceiver, making these true SoC solutions easy to use as well as improving performance.

The CC430F61xx series are microcontroller SoC configurations that combine the excellent performance of the state-of-the-art CC1101 sub-1 GHz RF transceiver with the MSP430 CPUXV2, up to 32KB of in-system programmable flash memory, up to 4KB of RAM, two 16-bit timers, a high-performance 12-bit ADC with eight external inputs plus internal temperature and battery sensors on CC430F613x devices, a comparator, USCIs, a 128-bit AES security accelerator, a hardware multiplier, a DMA, an RTC module with alarm capabilities, an LCD driver, and up to 44 I/O pins.

The CC430F513x series are microcontroller SoC configurations that combine the excellent performance of the state-of-the-art CC1101 sub-1 GHz RF transceiver with the MSP430 CPUXV2, up to 32KB of in-system programmable flash memory, up to 4KB of RAM, two 16-bit timers, a high-performance 12-bit ADC with six external inputs plus internal temperature and battery sensors, a comparator, USCIs, a 128-bit AES security accelerator, a hardware multiplier, a DMA, an RTC module with alarm capabilities, and up to 30 I/O pins.

For complete module descriptions, see the CC430 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 CC430F613x, CC430F612x, CC430F513x MSP430™ SoC With RF Core datasheet (Rev. I) PDF | HTML 17/09/2018
* Errata CC430F5137 Microcontroller Errata (Rev. AB) PDF | HTML 17/06/2021
Nota sobre la aplicación Design Considerations When Using the MSP430 Graphics Library (Rev. A) PDF | HTML 9/08/2023
Nota sobre la aplicación DN035 -- Antenna Quick Guide (Rev. B) 9/02/2022
Guía del usuario SYS/BIOS (TI-RTOS Kernel) User's Guide (Rev. V) 1/06/2020
Nota sobre la aplicación DN507 -- FEC Decoding 21/03/2019
Nota sobre la aplicación CRC Implementation (Rev. E) PDF | HTML 27/09/2018
Nota sobre la aplicación CC11xx Sensitivity Versus Frequency Offset and Crystal Accuracy (Rev. D) PDF | HTML 27/09/2018
Artículo técnico Achieve longer battery lifetimes from wireless sensors PDF | HTML 22/10/2015
Nota sobre la aplicación Using the USCI I2C Master (Rev. A) 11/03/2015
Informe Wireless connectivity for the Internet of Things (IoT) with MSP430 MCUs 13/03/2014
Nota sobre la aplicación DN024 -- 868 MHz, 915 MHz and 955 MHz Monopole PCB Antenna (Rev. E) 22/02/2013
Guía del usuario CC430 Family User's Guide (Rev. E) 14/01/2013
Informe Microcontrollers in Flow Meters (Rev. B) 9/11/2012
Nota sobre la aplicación CC430 RF Examples (Rev. C) 7/09/2012
Nota sobre la aplicación DN022 -- CC110x CC111x OOK ASK Register Settings (Rev. E) 8/03/2012
Nota sobre la aplicación DN036 -- CC1101+CC1190 600 kbps Data Rate, +19 dBm Transmit (Rev. A) 7/11/2011
Nota sobre la aplicación DN023 -- 868 MHz, 915 MHz and 955 MHz Inverted F Antenna (Rev. C) 30/08/2011
Nota sobre la aplicación AN094 -- Using the CC1190 Front End with CC1101 under EN 300 220 11/01/2011
Nota sobre la aplicación AN058 -- Antenna Selection Guide (Rev. B) 6/10/2010
Nota sobre la aplicación DN031 -- CC-Antenna-DK Documentation and Antenna Measurements Summary 26/08/2010

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.

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