CC2674P10

現行

產品詳細資料

CPU Arm® Cortex®-M33 Technology 2.4 GHz, Bluetooth® LE, Proprietary 2.4 GHz, Thread, Zigbee Protocols Bluetooth® Low Energy, Matter, Thread, Zigbee 3.0 Flash memory (kByte) 1024 RAM (kByte) 296 Peripherals 12-bit ADC 8-channel, 2 I2C, 2 comparators, 4 SPI, 4 UART, 8-bit DAC, I2S Features 15.4G PHY, End device, MTD, NCP, Router, Sleepy end device, Zigbee coordinator, Zigbee network processor Number of GPIOs 42 Security Cryptographic acceleration, Device attestation & anti-counterfeit, Secure debug, Software IP protection Operating system FreeRTOS, TI RTOS Type Wireless MCU Sensitivity (best) (dBm) -103 Operating temperature range (°C) -40 to 105 Edge AI enabled No
CPU Arm® Cortex®-M33 Technology 2.4 GHz, Bluetooth® LE, Proprietary 2.4 GHz, Thread, Zigbee Protocols Bluetooth® Low Energy, Matter, Thread, Zigbee 3.0 Flash memory (kByte) 1024 RAM (kByte) 296 Peripherals 12-bit ADC 8-channel, 2 I2C, 2 comparators, 4 SPI, 4 UART, 8-bit DAC, I2S Features 15.4G PHY, End device, MTD, NCP, Router, Sleepy end device, Zigbee coordinator, Zigbee network processor Number of GPIOs 42 Security Cryptographic acceleration, Device attestation & anti-counterfeit, Secure debug, Software IP protection Operating system FreeRTOS, TI RTOS Type Wireless MCU Sensitivity (best) (dBm) -103 Operating temperature range (°C) -40 to 105 Edge AI enabled No
VQFN (RGZ) 48 49 mm² (7 mm × 7 mm) VQFN (RSK) 64 64 mm² (8 mm × 8 mm)

Wireless microcontroller

  • Powerful 48MHz Arm Cortex-M33 processor with TrustZone
  • FPU and DSP extension
  • 1024kB flash program memory
  • 8kB of cache SRAM
  • 256kB of ultra-low leakage SRAM with parity for high-reliability operation
    • ­32kB of additional SRAM if parity is disabled
  • Dynamic multiprotocol manager (DMM) driver
  • Programmable radio includes support for 2- (G)FSK, 4-(G)FSK, MSK, Bluetooth® 5.3 Low Energy, IEEE 802.15.4 PHY, and MAC
  • Supports over-the-air update (OTA)

Ultra-low power sensor controller

  • Autonomous MCU with 4kB of SRAM
  • Sample, store, and process sensor data
  • Fast wake-up for low-power operation
  • Software defined peripherals; capacitive touch, flow meter, LCD

Low power consumption

  • MCU consumption:
    • 4.0mA active mode, CoreMark
    • 83µA/MHz running CoreMark
    • 1.19µA standby mode, RTC, 256kB SRAM
    • 0.13µA shutdown mode, wake-up on pin
  • Ultra-low-power sensor controller consumption
    • 32µA in 2MHz mode
    • 849µA in 24MHz mode
  • Radio consumption:
    • 6.4mA RX at 2.4GHz
    • 25mA TX at +10dBm at 2.4GHz
    • 102mA TX at +20dBm at 2.4GHz
    • 6.9mA TX at 0dBm at 2.4GHz

Wireless protocol support

High-performance radio

  • -105dBm for Bluetooth® Low Energy 125kbps
  • -105dBm for IEEE 802.15.4-2006 2.4GHz OQPSK (coherent modem)
  • Output power up to +20dBm with temperature compensation

Regulatory compliance

  • Designed for systems targeting compliance with these standards:
    • EN 300 328, EN 300 440 Cat. 2 and 3
    • FCC CFR47 Part 15
    • ARIB STD-T66

MCU peripherals

  • Most digital peripherals can be routed to any GPIO
  • Four 32-bit or eight 16-bit general-purpose timers
  • 12-bit SAR ADC, 200ksps, 8 channels
  • 8-bit DAC
  • Two comparators
  • Programmable current source
  • Four UART, four SPI, two I2C, one I2S
  • Real-time clock (RTC)
  • Integrated temperature and battery monitor

Security enablers

  • Supports secure boot
  • Supports secure key storage and device ID
  • Arm TrustZone for a trusted execution environment
  • AES 128-bit and 256-bit cryptographic accelerator
  • Public key accelerator
  • SHA2 accelerator (full suite up to SHA-512)
  • True random number generator (TRNG)
  • Secure debug lock
  • Software anti-rollback protection

Development tools and software

Operating range

  • On-chip buck DC/DC converter
  • 1.8V to 3.8V single supply voltage
  • -40°C to +105°C

Package

  • 7mm × 7mm RGZ VQFN48 (26 GPIOs)
  • 8mm × 8mm RSK VQFN64 (42 GPIOs)
  • RoHS-compliant package

Wireless microcontroller

  • Powerful 48MHz Arm Cortex-M33 processor with TrustZone
  • FPU and DSP extension
  • 1024kB flash program memory
  • 8kB of cache SRAM
  • 256kB of ultra-low leakage SRAM with parity for high-reliability operation
    • ­32kB of additional SRAM if parity is disabled
  • Dynamic multiprotocol manager (DMM) driver
  • Programmable radio includes support for 2- (G)FSK, 4-(G)FSK, MSK, Bluetooth® 5.3 Low Energy, IEEE 802.15.4 PHY, and MAC
  • Supports over-the-air update (OTA)

Ultra-low power sensor controller

  • Autonomous MCU with 4kB of SRAM
  • Sample, store, and process sensor data
  • Fast wake-up for low-power operation
  • Software defined peripherals; capacitive touch, flow meter, LCD

Low power consumption

  • MCU consumption:
    • 4.0mA active mode, CoreMark
    • 83µA/MHz running CoreMark
    • 1.19µA standby mode, RTC, 256kB SRAM
    • 0.13µA shutdown mode, wake-up on pin
  • Ultra-low-power sensor controller consumption
    • 32µA in 2MHz mode
    • 849µA in 24MHz mode
  • Radio consumption:
    • 6.4mA RX at 2.4GHz
    • 25mA TX at +10dBm at 2.4GHz
    • 102mA TX at +20dBm at 2.4GHz
    • 6.9mA TX at 0dBm at 2.4GHz

Wireless protocol support

High-performance radio

  • -105dBm for Bluetooth® Low Energy 125kbps
  • -105dBm for IEEE 802.15.4-2006 2.4GHz OQPSK (coherent modem)
  • Output power up to +20dBm with temperature compensation

Regulatory compliance

  • Designed for systems targeting compliance with these standards:
    • EN 300 328, EN 300 440 Cat. 2 and 3
    • FCC CFR47 Part 15
    • ARIB STD-T66

MCU peripherals

  • Most digital peripherals can be routed to any GPIO
  • Four 32-bit or eight 16-bit general-purpose timers
  • 12-bit SAR ADC, 200ksps, 8 channels
  • 8-bit DAC
  • Two comparators
  • Programmable current source
  • Four UART, four SPI, two I2C, one I2S
  • Real-time clock (RTC)
  • Integrated temperature and battery monitor

Security enablers

  • Supports secure boot
  • Supports secure key storage and device ID
  • Arm TrustZone for a trusted execution environment
  • AES 128-bit and 256-bit cryptographic accelerator
  • Public key accelerator
  • SHA2 accelerator (full suite up to SHA-512)
  • True random number generator (TRNG)
  • Secure debug lock
  • Software anti-rollback protection

Development tools and software

Operating range

  • On-chip buck DC/DC converter
  • 1.8V to 3.8V single supply voltage
  • -40°C to +105°C

Package

  • 7mm × 7mm RGZ VQFN48 (26 GPIOs)
  • 8mm × 8mm RSK VQFN64 (42 GPIOs)
  • RoHS-compliant package

The SimpleLink™CC2674P10 device is a multiprotocol and multiband 2.4GHz wireless microcontroller (MCU) supporting Thread, Zigbee, Bluetooth 5.3 Low Energy, IEEE 802.15.4, IPv6-enabled smart objects (6LoWPAN), proprietary systems, including the TI 15.4-Stack (2.4GHz), and concurrent multiprotocol through a Dynamic Multiprotocol Manager (DMM) driver. The device is optimized for low-power wireless communication and advanced sensing in building security systems, HVAC, medical, wired networking, portable electronics, and home theater & entertainment markets. The highlighted features of this device include:

  • Arm TrustZone based secure key storage, device ID, and trusted functions support
  • Wide flexibility of protocol stack support in the SimpleLink LOWPOWER F2 Software Development Kit (SDK)
  • Longer battery life wireless applications with low standby current of 0.92µA with full 256kB SRAM retention
  • Enablement of long-range and low-power applications using integrated +20dBm high-power amplifier with best-in-class transmit current consumption at 101mA for 2.4GHz operation
  • Low SER (Soft Error Rate) FIT (Failure-in-time) for long operation lifetime with no disruption for industrial markets with always-on SRAM parity against corruption due to potential radiation events
  • Dedicated software-controlled radio controller (Arm Cortex-M0) providing flexible low-power RF transceiver capability to support multiple physical layers and RF standards
  • Excellent radio sensitivity and robustness (selectivity and blocking) performance for Bluetooth® Low Energy (–105dBm for 125kbps LE Coded PHY)

The CC2674P10 device is part of the SimpleLink™ MCU platform, which consists of Wi-Fi, Bluetooth Low Energy, Thread, Zigbee, Sub-1GHz MCUs, and host MCUs that all share a common, easy-to-use development environment with a single core software development kit (SDK) and rich tool set. A one-time integration of the SimpleLink™ platform enables you to add any combination of the portfolio’s devices into your design, allowing 100 percent code reuse when your design requirements change. For more details, see the SimpleLink MCU platform.

In addition to the software compatibility, within the multiband wireless MCUs, there is pin-to-pin compatibility from 352kB of flash up to 1MB of flash in the 7mm × 7mm QFN package for maximum design scalability. For more information on TI’s 2.4GHz devices, see www.ti.com/bluetooth.

The SimpleLink™CC2674P10 device is a multiprotocol and multiband 2.4GHz wireless microcontroller (MCU) supporting Thread, Zigbee, Bluetooth 5.3 Low Energy, IEEE 802.15.4, IPv6-enabled smart objects (6LoWPAN), proprietary systems, including the TI 15.4-Stack (2.4GHz), and concurrent multiprotocol through a Dynamic Multiprotocol Manager (DMM) driver. The device is optimized for low-power wireless communication and advanced sensing in building security systems, HVAC, medical, wired networking, portable electronics, and home theater & entertainment markets. The highlighted features of this device include:

  • Arm TrustZone based secure key storage, device ID, and trusted functions support
  • Wide flexibility of protocol stack support in the SimpleLink LOWPOWER F2 Software Development Kit (SDK)
  • Longer battery life wireless applications with low standby current of 0.92µA with full 256kB SRAM retention
  • Enablement of long-range and low-power applications using integrated +20dBm high-power amplifier with best-in-class transmit current consumption at 101mA for 2.4GHz operation
  • Low SER (Soft Error Rate) FIT (Failure-in-time) for long operation lifetime with no disruption for industrial markets with always-on SRAM parity against corruption due to potential radiation events
  • Dedicated software-controlled radio controller (Arm Cortex-M0) providing flexible low-power RF transceiver capability to support multiple physical layers and RF standards
  • Excellent radio sensitivity and robustness (selectivity and blocking) performance for Bluetooth® Low Energy (–105dBm for 125kbps LE Coded PHY)

The CC2674P10 device is part of the SimpleLink™ MCU platform, which consists of Wi-Fi, Bluetooth Low Energy, Thread, Zigbee, Sub-1GHz MCUs, and host MCUs that all share a common, easy-to-use development environment with a single core software development kit (SDK) and rich tool set. A one-time integration of the SimpleLink™ platform enables you to add any combination of the portfolio’s devices into your design, allowing 100 percent code reuse when your design requirements change. For more details, see the SimpleLink MCU platform.

In addition to the software compatibility, within the multiband wireless MCUs, there is pin-to-pin compatibility from 352kB of flash up to 1MB of flash in the 7mm × 7mm QFN package for maximum design scalability. For more information on TI’s 2.4GHz devices, see www.ti.com/bluetooth.

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軟體開發套件 (SDK)

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軟體開發套件 (SDK)

SIMPLELINK-TI-OPENTHREAD-SDK — SimpleLink™ family of devices OpenThread software

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軟體開發套件 (SDK)

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

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計算工具

SMARTRF-STUDIO-7 — SmartRF Studio

SmartRF™ Studio 是一款 Windows 應用程式,功用在於協助射頻系統的設計人員在為所有 TI CC1xxx 及 CC2xxx 低功耗射頻裝置設計過程中,能在早期階段輕鬆評估無線電。此程式簡化了配置暫存器值和命令的產生,以及射頻系統的實際測試和除錯。

SmartRF Studio 支援下列 TI 裝置:

 

資源

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設計工具

SIMPLELINK-2-4GHZ-DESIGN-REVIEW — Hardware Design Review Request Form for SimpleLink™ CC2xxx Devices

SimpleLink 硬體設計審核流程提供一對一接觸的方式,並由主題內容專家協助審查您的設計,提供您寶貴的意見。一個簡單的三步驟流程用於請求審查,以及相關技術文件和資源的連結,可在此處找到。

入門指南

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設計工具

SPRR484 — LP-EM-CC1354P10-1 Design Files

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封裝 針腳 CAD 符號、佔位空間與 3D 模型
VQFN (RGZ) 48 Ultra Librarian
VQFN (RSK) 64 Ultra Librarian

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