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Selbe Funktionalität wie der verglichene Baustein bei abweichender Anschlussbelegung.
CC2340R2 AKTIV Bluetooth-, Zigbee- und Thread-Drahtlos-MCU, extrem niedriger Standby-Strom, 256 kB Flash und +8  This product is a newer device with improved functionality.
CC2340R5 AKTIV SimpleLink™ 32bit Arm® Cortex®-M0+, 2,4 GHz, Drahtlos-MCU mit 512 kB Flash-Speicher This product is a newer device with improved functionality.

Produktdetails

Frequency range 2400-2480 MHz Standard 802.15.4 Operating temperature range (°C) -40 to 85 Rating Catalog Transmission principle IEEE 802.15.4
Frequency range 2400-2480 MHz Standard 802.15.4 Operating temperature range (°C) -40 to 85 Rating Catalog Transmission principle IEEE 802.15.4
VQFN (RGZ) 48 49 mm² (7 mm × 7 mm) VQFN (RSM) 32 16 mm² (4 mm × 4 mm)
  • Microcontroller
    • Powerful ARM® Cortex®-M3
    • EEMBC CoreMark® Score: 142
    • Up to 48-MHz Clock Speed
    • 128KB of In-System Programmable Flash
    • 8KB of SRAM for Cache
    • 20KB of Ultralow-Leakage SRAM
    • 2-Pin cJTAG and JTAG Debugging
    • Supports Over-The-Air Upgrade (OTA)
  • Ultralow-Power Sensor Controller
    • Can Run Autonomous From the Rest of the System
    • 16-Bit Architecture
    • 2KB of Ultralow-Leakage SRAM for Code and Data
  • Efficient Code Size Architecture, Placing Drivers, IEEE 802.15.4 MAC, and Bootloader in ROM
  • RoHS-Compliant Packages
    • 4-mm × 4-mm RSM VQFN32 (10 GPIOs)
    • 7-mm × 7-mm RGZ VQFN48 (31 GPIOs)
  • Peripherals
    • All Digital Peripheral Pins Can Be Routed to Any GPIO
    • Four General-Purpose Timer Modules
      (Eight 16-Bit or Four 32-Bit Timers, PWM Each)
    • 12-Bit ADC, 200-ksamples/s, 8-Channel Analog MUX
    • Continuous Time Comparator
    • Ultralow-Power Analog Comparator
    • Programmable Current Source
    • UART
    • 2× SSI (SPI, MICROWIRE, TI)
    • I2C
    • I2S
    • Real-Time Clock (RTC)
    • AES-128 Security Module
    • True Random Number Generator (TRNG)
    • 10, 15, or 31 GPIOs, Depending on Package Option
    • Support for Eight Capacitive-Sensing Buttons
    • Integrated Temperature Sensor
  • External System
    • On-Chip internal DC-DC Converter
    • Very Few External Components
    • Seamless Integration With the SimpleLink™ CC2590 and CC2592 Range Extenders
  • Low Power
    • Wide Supply Voltage Range
      • Normal Operation: 1.8 to 3.8 V
      • External Regulator Mode: 1.7 to 1.95 V
    • Active-Mode RX: 5.9 mA
    • Active-Mode TX at 0 dBm: 6.1 mA
    • Active-Mode TX at +5 dBm: 9.1 mA
    • Active-Mode MCU: 61 µA/MHz
    • Active-Mode MCU: 48.5 CoreMark/mA
    • Active-Mode Sensor Controller: 8.2 µA/MHz
    • Standby: 1 µA (RTC Running and RAM/CPU Retention)
    • Shutdown: 100 nA (Wake Up on External Events)
  • RF Section
    • 2.4-GHz RF Transceiver Compatible With IEEE 802.15.4 PHY and MAC
    • Excellent Receiver Sensitivity (–100 dBm), Selectivity, and Blocking Performance
    • Link budget of 105 dB
    • Programmable Output Power up to +5 dBm
    • Single-Ended or Differential RF Interface
    • Suitable for Systems Targeting Compliance With Worldwide Radio Frequency Regulations
      • ETSI EN 300 328 (Europe)
      • EN 300 440 Class 2 (Europe)
      • FCC CFR47 Part 15 (US)
      • ARIB STD-T66 (Japan)
  • Tools and Development Environment
    • Full-Feature and Low-Cost Development Kits
    • Multiple Reference Designs for Different RF Configurations
    • Packet Sniffer PC Software
    • Sensor Controller Studio
    • RemoTI™ Target Emulator
    • SmartRF™ Studio
    • SmartRF Flash Programmer 2
    • IAR Embedded Workbench® for ARM
    • Code Composer Studio™

All trademarks are the property of their respective owners.

  • Microcontroller
    • Powerful ARM® Cortex®-M3
    • EEMBC CoreMark® Score: 142
    • Up to 48-MHz Clock Speed
    • 128KB of In-System Programmable Flash
    • 8KB of SRAM for Cache
    • 20KB of Ultralow-Leakage SRAM
    • 2-Pin cJTAG and JTAG Debugging
    • Supports Over-The-Air Upgrade (OTA)
  • Ultralow-Power Sensor Controller
    • Can Run Autonomous From the Rest of the System
    • 16-Bit Architecture
    • 2KB of Ultralow-Leakage SRAM for Code and Data
  • Efficient Code Size Architecture, Placing Drivers, IEEE 802.15.4 MAC, and Bootloader in ROM
  • RoHS-Compliant Packages
    • 4-mm × 4-mm RSM VQFN32 (10 GPIOs)
    • 7-mm × 7-mm RGZ VQFN48 (31 GPIOs)
  • Peripherals
    • All Digital Peripheral Pins Can Be Routed to Any GPIO
    • Four General-Purpose Timer Modules
      (Eight 16-Bit or Four 32-Bit Timers, PWM Each)
    • 12-Bit ADC, 200-ksamples/s, 8-Channel Analog MUX
    • Continuous Time Comparator
    • Ultralow-Power Analog Comparator
    • Programmable Current Source
    • UART
    • 2× SSI (SPI, MICROWIRE, TI)
    • I2C
    • I2S
    • Real-Time Clock (RTC)
    • AES-128 Security Module
    • True Random Number Generator (TRNG)
    • 10, 15, or 31 GPIOs, Depending on Package Option
    • Support for Eight Capacitive-Sensing Buttons
    • Integrated Temperature Sensor
  • External System
    • On-Chip internal DC-DC Converter
    • Very Few External Components
    • Seamless Integration With the SimpleLink™ CC2590 and CC2592 Range Extenders
  • Low Power
    • Wide Supply Voltage Range
      • Normal Operation: 1.8 to 3.8 V
      • External Regulator Mode: 1.7 to 1.95 V
    • Active-Mode RX: 5.9 mA
    • Active-Mode TX at 0 dBm: 6.1 mA
    • Active-Mode TX at +5 dBm: 9.1 mA
    • Active-Mode MCU: 61 µA/MHz
    • Active-Mode MCU: 48.5 CoreMark/mA
    • Active-Mode Sensor Controller: 8.2 µA/MHz
    • Standby: 1 µA (RTC Running and RAM/CPU Retention)
    • Shutdown: 100 nA (Wake Up on External Events)
  • RF Section
    • 2.4-GHz RF Transceiver Compatible With IEEE 802.15.4 PHY and MAC
    • Excellent Receiver Sensitivity (–100 dBm), Selectivity, and Blocking Performance
    • Link budget of 105 dB
    • Programmable Output Power up to +5 dBm
    • Single-Ended or Differential RF Interface
    • Suitable for Systems Targeting Compliance With Worldwide Radio Frequency Regulations
      • ETSI EN 300 328 (Europe)
      • EN 300 440 Class 2 (Europe)
      • FCC CFR47 Part 15 (US)
      • ARIB STD-T66 (Japan)
  • Tools and Development Environment
    • Full-Feature and Low-Cost Development Kits
    • Multiple Reference Designs for Different RF Configurations
    • Packet Sniffer PC Software
    • Sensor Controller Studio
    • RemoTI™ Target Emulator
    • SmartRF™ Studio
    • SmartRF Flash Programmer 2
    • IAR Embedded Workbench® for ARM
    • Code Composer Studio™

All trademarks are the property of their respective owners.

The CC2620 device is a wireless MCU targeting ZigBee® RF4CE remote control applications, both controller and target node.

The device is a member of the CC26xx family of cost-effective, ultralow power, 2.4-GHz RF devices. Very low active RF and MCU current and low-power mode current consumption provide excellent battery lifetime and allow for operation on small coin cell batteries and in energy-harvesting applications.

The CC2620 device contains a 32-bit ARM Cortex-M3 processor that runs at 48 MHz as the main processor and a rich peripheral feature set that includes a unique ultralow power sensor controller. This sensor controller is ideal for interfacing external sensors and for collecting analog and digital data autonomously while the rest of the system is in sleep mode. Thus, the CC2620 device is ideal for ZigBee RF4CE remote controls with features like voice, motion, RF-IR hybrid remotes, and qwerty keyboards and STB/target nodes with capacitive touch.

The IEEE 802.15.4 MAC is embedded into ROM and runs partly on an ARM Cortex-M0 processor. This architecture improves overall system performance and power consumption and frees up flash memory for the application.

Software stack support for this device includes: ZigBee RF4CE stack (RemoTI) which is available free of charge from www.ti.com.

The CC2620 device is a wireless MCU targeting ZigBee® RF4CE remote control applications, both controller and target node.

The device is a member of the CC26xx family of cost-effective, ultralow power, 2.4-GHz RF devices. Very low active RF and MCU current and low-power mode current consumption provide excellent battery lifetime and allow for operation on small coin cell batteries and in energy-harvesting applications.

The CC2620 device contains a 32-bit ARM Cortex-M3 processor that runs at 48 MHz as the main processor and a rich peripheral feature set that includes a unique ultralow power sensor controller. This sensor controller is ideal for interfacing external sensors and for collecting analog and digital data autonomously while the rest of the system is in sleep mode. Thus, the CC2620 device is ideal for ZigBee RF4CE remote controls with features like voice, motion, RF-IR hybrid remotes, and qwerty keyboards and STB/target nodes with capacitive touch.

The IEEE 802.15.4 MAC is embedded into ROM and runs partly on an ARM Cortex-M0 processor. This architecture improves overall system performance and power consumption and frees up flash memory for the application.

Software stack support for this device includes: ZigBee RF4CE stack (RemoTI) which is available free of charge from www.ti.com.

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Technische Dokumentation

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Alle anzeigen 19
Top-Dokumentation Typ Titel Format-Optionen Neueste englische Version herunterladen Datum
* Datenblatt CC2620 SimpleLink™ ZigBee® RF4CE Wireless MCU datasheet (Rev. C) PDF | HTML 19.07.2016
* Benutzerhandbuch CC13x0, CC26x0 SimpleLink™ Wireless MCU Technical Reference Manual (Rev. I) PDF | HTML 23.06.2020
* Errata CC2620 SimpleLink™ Wireless MCU Errata (Rev. A) 31.10.2018
Anwendungshinweis Crystal Oscillator and Crystal Selection for the CC13xx, CC26xx, and CC23xx Family of Wireless MCUs (Rev. L) PDF | HTML 21.04.2025
Anwendungshinweis CC2538, CC13xx, and CC26xx Serial Bootloader Interface (Rev. E) PDF | HTML 06.08.2024
Anwendungshinweis CC13xx/CC26xx Hardware Configuration and PCB Design Considerations (Rev. H) PDF | HTML 02.05.2024
Anwendungshinweis CE Regulations for SRDs Operating in License-Free 2.4GHz/5GHz Bands-WiFi Devices (Rev. A) PDF | HTML 20.10.2022
Anwendungshinweis Ultra-Low Power Sensing Applications With CC13x2/CC26x2 (Rev. B) PDF | HTML 27.01.2020
Anwendungshinweis Johanson Balun for the CC26xx Device Family 07.08.2017
Benutzerhandbuch CC26x0/CC13x0 SimpleLink™ Wireless MCU Power Management Software Development Ref (Rev. A) PDF | HTML 17.04.2017
Technischer Artikel IoT is making buildings greener and more intelligent. Value versus affordability PDF | HTML 04.01.2017
Whitepaper Bringing Wireless Scalability to Intelligent Sensing Applications (Rev. B) 25.08.2016
Technischer Artikel Touch it. Talk to it. Remote control solutions that will change how you interact w PDF | HTML 29.06.2016
Anwendungshinweis Voice Over Remote Control 19.05.2016
Whitepaper A guide to SensorTag Hackathons: Resources 08.03.2016
Weitere Dokumente CC2650RC Quick Start User's Guide 08.03.2016
Anwendungshinweis Using the Wireless SimpleLink CC26xx in Ext Regulator Mode With the TPS62740 19.11.2015
Anwendungshinweis CC2640 Wireless MCU DC Supply Evaluation 05.10.2015
Anwendungshinweis Using GCC/GDB With SimpleLink CC26xx PDF | HTML 23.02.2015

Design und Entwicklung

Weitere Bedingungen oder erforderliche Ressourcen enthält gegebenenfalls die Detailseite, die Sie durch Klicken auf einen der unten stehenden Titel erreichen.

Entwicklungskit

CC2650STK — SimpleLink™-SensorTag für Bluetooth mit niedriger Energie/mehreren Standards

The new SensorTag IoT kit invites you to realize your cloud-connected product idea. The new SensorTag now includes 10 low-power MEMS sensors in a tiny red package. And it is expandable with DevPacks to make it easy to add your own sensors or actuators.

 

Connect to the cloud with Bluetooth low energy (...)

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Debug-Tastkopf

TMDSEMU200-U — XDS200-USB-Debug-Tastkopf

Der XDS200 ist ein Debug-Tastkopf (Emulator) zum Debugging von Embedded-Bausteinen von TI. Für die meisten Bausteine wird die Verwendung der neueren, kostengünstigeren XDS110 (www.ti.com/tool/TMDSEMU110-U) empfohlen. Der XDS200 unterstützt eine große Zahl von Standards (IEEE1149.1, IEEE1149.7, SWD) (...)

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Debug-Tastkopf

LB-3P-TRACE32-WIRELESS — Debug-System Lauterbach TRACE32® für Funkverbindungen

Die TRACE32®-Tools von Lauterbach umfassen eine Suite hochmoderner Hardware- und Softwarekomponenten, mit denen Entwickler viele der Chips für die drahtlose Verbindung von TI analysieren, optimieren und zertifizieren können. Die weltweit anerkannten Debug-Lösungen für eingebettete Systeme bieten (...)

Unterstützte Produkte und Hardware
IDE, Konfiguration, Compiler oder Debugger

CCSTUDIO-OPENOCD — OpenOCD Binary Releases

Pre-built binaries for the popular open-source OpenOCD debug stack.
Unterstützte Produkte und Hardware
IDE, Konfiguration, Compiler oder Debugger

SENSOR-CONTROLLER-STUDIO — Sensor controller studio

Sensor Controller Studio is used to write, test and debug code for the CC26xx/CC13xx Sensor Controller, enabling ultra-low power application design. The tool generates an interface driver consisting of C source files with the firmware image, associated definitions, and generic functions that allow (...)

Unterstützte Produkte und Hardware
Treiber oder Bibliothek

REMOTI — RF4CE-konformer Protokollstack

RemoTI™ is the industry leading ZigBee RF4CE-compliant software architecture. Built on TI's well-proven IEEE 802.15.4 compliant TIMAC, RemoTI™ offers a simple, easy-to-use, intuitive software architectural framework and all of the tools, documentation, and support needed to build an RF4CE compliant (...)

Unterstützte Produkte und Hardware
Software-Programmiertool

FLASH-PROGRAMMER-2 — SmartRF Flash Programmer v2

Mit dem SmartRF Flash Programmer 2 kann der Flash-Speicher in kabellosen, ARM-basierten energieeffizienten RF-MCU von Texas Instruments über Debugging und serielle Schnittstellen programmiert werden. Liste der unterstützten Produkte auf Kompatibilität überprüfen. Uniflash kann darüber hinaus zur (...)

Unterstützte Produkte und Hardware
Support-Software

PACKET-SNIFFER — SmartRF™ Packet Sniffer 2.18.1

The SmartRF Packet Sniffer is a PC software application that can display and store radio packets captured by a listening RF device. The capture device is connected to the PC via USB. Various RF protocols are supported. The Packet Sniffer filters and decodes packets and displays them in a convenient (...)

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Berechnungstool

SMARTRF-STUDIO-7 — SmartRF Studio

SmartRF™ Studio ist eine Windows-Anwendung, die Entwickler von HF-Systemen dabei unterstützt, die Funkleistung bereits in einer frühen Entwicklungsphase für alle stromsparenden HF-Bausteine CC1xxx und CC2xxx von TI einfach zu bewerten. umfassend zu beurteilen. Sie vereinfacht die Erstellung der (...)

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Designtool

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

Der SimpleLine-Überprüfungsprozess für das Hardwaredesign stellt eine Möglichkeit bereit, direkt mit einem Fachexperten in Verbindung zu treten, welcher Sie bei der Prüfung Ihres Designs unterstützen und Ihnen ein wertvolles Feedback geben kann. Hier finden Sie einen einfachen dreistufigen Prozess (...)

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Referenzdesign

CC2650EM-4XD-RD — CC2650EM-4XD-Referenzdesign

The CC2650EM-4XD reference design contains schematics and layout files for the CC2650 evauation module with the 4x4 mm package and differential RF output with external biasing. The reference design demonstrates good techniques for CC2650 decoupling and RF layout. For optimum RF performance, the (...)

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Referenzdesign

CC2650EM-4XS-EXT-REG-RD — CC2650EM-4XS-EXT-REG-Referenzdesign

The CC2650EM-4XS_Ext_Reg reference design contains schematics and layout files for the CC2650 configured for external regulator operation using the TPS62740 DCDC converter. The reference design demonstrates good techniques for CC2650 decoupling and RF layout. For optimum RF performance, the (...)

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Referenzdesign

CC2650EM-4XS-RD — CC2650EM-4XS-Referenzdesign

The CC2650EM-4XS reference design contains schematics and layout files for the CC2650 Evauation Module with the 4x4 mm package and single-ended RF output with external biasing. The reference design demonstrates good techniques for CC2650 decoupling and RF layout. For optimum RF performance, the (...)

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Referenzdesign

CC2650EM-7ID-RD — CC2650EM-7ID-Referenzdesign

The CC2650EM-7ID reference design contains schematics and layout files for the CC2650 evauation module with the 7x7 mm package and differential RF output. The reference design demonstrates good techniques for CC2650 decoupling and RF layout. For optimum RF performance, the reference design, both (...)

Unterstützte Produkte und Hardware
Referenzdesign

CC2650EM-MURBAL-RD — CC2650EM-MurBal-Referenzdesign

The CC2650EM-MurBal reference design contains schematics and layout files for the CC2650 evauation module with the 5x5 mm package and integrated 0603 balun from Murata. The reference design demonstrates good techniques for CC2650 decoupling and RF layout. For optimum RF performance, the reference (...)

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Referenzdesign

TIDA-00374 — Referenzdesign eines Feuchtigkeits- und Temperatur-Sensorknotens für Sternnetzwerke mit mehr als 10 

Dieses Referenzdesign verwendet unseren Nano-Power-Systemtimer, unsere SimpleLink™-Ultra-Low-Power-Drahtlos-Microcontroller(MCU)-Plattform und unsere Feuchtigkeitssensortechnologien, um eine extrem energieeffiziente Methode für Arbeitszyklus-Sensor-Endknoten zu demonstrieren. Diese Technologien (...)

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Referenzdesign

TIDC-CC2650STK-SENSORTAG — SimpleLink™ Multistandard CC2650 SensorTag™-Kit – Referenzdesign

The new SimpleLink™ multi-standard SensorTag kit invites you to realize your Internet of Things (IoT) product idea. Including 10 low-power MEMS sensors in a tiny package, the kit is expandable with DevPacks to make it easy to add your own sensors or actuators.

Connect to the cloud with Bluetooth (...)

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Gehäuse Pins CAD-Symbole, Footprints und 3D-Modelle
VQFN (RGZ) 48 Ultra Librarian
VQFN (RSM) 32 Ultra Librarian

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