Product details

CPU Arm® Cortex®-M4F Technology Bluetooth® LE, Thread, Zigbee Protocols Bluetooth® Low Energy, Thread, Zigbee 3.0 Flash memory (kByte) 352 RAM (kByte) 88 Peripherals 12-bit ADC 8-channel, 2 UART, 2 comparators, 3 SPI, 4 timers, 8-bit DAC, BAW, I2C, I2S, Sensor controller Features Advertising extension, Channel select algorithm, Direction finding, Sleepy end device, Zigbee coordinator, Zigbee network processor Number of GPIOs 31 Security Cryptographic acceleration, Device attestation & anti-counterfeit, Secure boot, Secure debug, Secure firmware & software update Cryptographic accelerators RNG Operating system FreeRTOS, TI RTOS Type Wireless MCU Sensitivity (best) (dBm) -102 Operating temperature range (°C) -40 to 85 Edge AI enabled No
CPU Arm® Cortex®-M4F Technology Bluetooth® LE, Thread, Zigbee Protocols Bluetooth® Low Energy, Thread, Zigbee 3.0 Flash memory (kByte) 352 RAM (kByte) 88 Peripherals 12-bit ADC 8-channel, 2 UART, 2 comparators, 3 SPI, 4 timers, 8-bit DAC, BAW, I2C, I2S, Sensor controller Features Advertising extension, Channel select algorithm, Direction finding, Sleepy end device, Zigbee coordinator, Zigbee network processor Number of GPIOs 31 Security Cryptographic acceleration, Device attestation & anti-counterfeit, Secure boot, Secure debug, Secure firmware & software update Cryptographic accelerators RNG Operating system FreeRTOS, TI RTOS Type Wireless MCU Sensitivity (best) (dBm) -102 Operating temperature range (°C) -40 to 85 Edge AI enabled No
VQFN (RGZ) 48 49 mm² (7 mm × 7 mm)
  • Microcontroller
    • Powerful 48-MHz Arm Cortex-M4F processor
    • EEMBC CoreMark score: 148
    • 352KB of in-system programmable flash
    • 256KB of ROM for protocols and library functions
    • 8KB of cache SRAM (alternatively available as general-purpose RAM)
    • 80KB of ultra-low leakage SRAM. The SRAM is protected by parity to ensure high reliability of operation.
    • 2-pin cJTAG and JTAG debugging
    • Supports over-the-air (OTA) update
  • Ultra-low power sensor controller with 4KB of SRAM
    • Sample, store, and process sensor data
    • Operation independent from system CPU
    • Fast wake-up for low-power operation
  • TI-RTOS, drivers, bootloader, Bluetooth 5.2 low energy controller, and IEEE 802.15.4 MAC in ROM for optimized application size
  • RoHS-compliant package
    • 7-mm × 7-mm RGZ VQFN48 (31 GPIOs)
  • Peripherals
    • Digital peripherals can be routed to any GPIO
    • 4× 32-bit or 8× 16-bit general-purpose timers
    • 12-bit ADC, 200 kSamples/s, 8 channels
    • 2× comparators with internal reference DAC (1× continuous time, 1× ultra-low power)
    • Programmable current source
    • 2× UART
    • 2× SSI (SPI, MICROWIRE, TI)
    • I2C and I2S
    • Real-time clock (RTC)
    • AES 128- and 256-bit cryptographic accelerator
    • ECC and RSA public key hardware accelerator
    • SHA2 accelerator (full suite up to SHA-512)
    • True random number generator (TRNG)
    • Capacitive sensing, up to 8 channels
    • Integrated temperature and battery monitor
  • External system
    • Integrated bulk acoustic wave (BAW) resonator generating accurate clock with fast startup time of 80 µs for system and RF
    • On-chip buck DC/DC converter
  • 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: 7.3 mA
    • Active mode TX 0 dBm: 7.9 mA
    • Active mode TX 5 dBm: 10.2 mA
    • Active mode MCU 48 MHz (CoreMark): 3.4 mA (71 µA/MHz)
    • Sensor controller, low power-mode, 2 MHz, running infinite loop: 30.8 µA
    • Sensor controller, active mode, 24 MHz, running infinite loop: 808 µA
    • Standby: 0.94 µA (RTC on, 80KB RAM and CPU retention)
  • Radio section
    • 2.4 GHz RF transceiver compatible with Bluetooth 5.2 Low Energy and earlier LE specifications and IEEE 802.15.4 PHY and MAC
    • 3-wire, 2-wire, 1-wire PTA coexistence mechanisms
    • Excellent receiver sensitivity: -100 dBm for 802.15.4 (2.4 GHz), -102 dBm for Bluetooth 5 Low Energy Coded
    • Programmable output power up to +5 dBm
    • Suitable for systems targeting compliance with worldwide radio frequency regulations
      • EN 300 328, (Europe)
      • EN 300 440 Category 2
      • FCC CFR47 Part 15
      • ARIB STD-T66 (Japan)
  • Wireless protocols
    • Thread, Zigbee , Bluetooth 5.2 Low Energy, IEEE 802.15.4, IPv6-enabled smart objects (6LoWPAN), proprietary systems, SimpleLink™ TI 15.4 stack (2.4 GHz), and dynamic multiprotocol manager (DMM) driver.
  • Development Tools and Software
  • Microcontroller
    • Powerful 48-MHz Arm Cortex-M4F processor
    • EEMBC CoreMark score: 148
    • 352KB of in-system programmable flash
    • 256KB of ROM for protocols and library functions
    • 8KB of cache SRAM (alternatively available as general-purpose RAM)
    • 80KB of ultra-low leakage SRAM. The SRAM is protected by parity to ensure high reliability of operation.
    • 2-pin cJTAG and JTAG debugging
    • Supports over-the-air (OTA) update
  • Ultra-low power sensor controller with 4KB of SRAM
    • Sample, store, and process sensor data
    • Operation independent from system CPU
    • Fast wake-up for low-power operation
  • TI-RTOS, drivers, bootloader, Bluetooth 5.2 low energy controller, and IEEE 802.15.4 MAC in ROM for optimized application size
  • RoHS-compliant package
    • 7-mm × 7-mm RGZ VQFN48 (31 GPIOs)
  • Peripherals
    • Digital peripherals can be routed to any GPIO
    • 4× 32-bit or 8× 16-bit general-purpose timers
    • 12-bit ADC, 200 kSamples/s, 8 channels
    • 2× comparators with internal reference DAC (1× continuous time, 1× ultra-low power)
    • Programmable current source
    • 2× UART
    • 2× SSI (SPI, MICROWIRE, TI)
    • I2C and I2S
    • Real-time clock (RTC)
    • AES 128- and 256-bit cryptographic accelerator
    • ECC and RSA public key hardware accelerator
    • SHA2 accelerator (full suite up to SHA-512)
    • True random number generator (TRNG)
    • Capacitive sensing, up to 8 channels
    • Integrated temperature and battery monitor
  • External system
    • Integrated bulk acoustic wave (BAW) resonator generating accurate clock with fast startup time of 80 µs for system and RF
    • On-chip buck DC/DC converter
  • 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: 7.3 mA
    • Active mode TX 0 dBm: 7.9 mA
    • Active mode TX 5 dBm: 10.2 mA
    • Active mode MCU 48 MHz (CoreMark): 3.4 mA (71 µA/MHz)
    • Sensor controller, low power-mode, 2 MHz, running infinite loop: 30.8 µA
    • Sensor controller, active mode, 24 MHz, running infinite loop: 808 µA
    • Standby: 0.94 µA (RTC on, 80KB RAM and CPU retention)
  • Radio section
    • 2.4 GHz RF transceiver compatible with Bluetooth 5.2 Low Energy and earlier LE specifications and IEEE 802.15.4 PHY and MAC
    • 3-wire, 2-wire, 1-wire PTA coexistence mechanisms
    • Excellent receiver sensitivity: -100 dBm for 802.15.4 (2.4 GHz), -102 dBm for Bluetooth 5 Low Energy Coded
    • Programmable output power up to +5 dBm
    • Suitable for systems targeting compliance with worldwide radio frequency regulations
      • EN 300 328, (Europe)
      • EN 300 440 Category 2
      • FCC CFR47 Part 15
      • ARIB STD-T66 (Japan)
  • Wireless protocols
    • Thread, Zigbee , Bluetooth 5.2 Low Energy, IEEE 802.15.4, IPv6-enabled smart objects (6LoWPAN), proprietary systems, SimpleLink™ TI 15.4 stack (2.4 GHz), and dynamic multiprotocol manager (DMM) driver.
  • Development Tools and Software

The SimpleLink™CC2652RB device is the industry’s first multiprotocol 2.4 GHz wireless crystal-less microcontroller (MCU) with integrated TI Bulk Acoustic Wave (BAW) resonator technology supporting Thread, Zigbee , Bluetooth 5.2 Low Energy, IEEE 802.15.4, IPv6-enabled smart objects (6LoWPAN), proprietary systems, including the TI 15.4-Stack (2.4 GHz), and concurrent multiprotocol operation through the Dynamic Multiprotocol Manager (DMM) software driver. Integrated BAW resonator technology eliminates the need for external crystals without compromising latency or frequency stability. The device is optimized for low-power wireless communication and advanced sensing in building security systems, HVAC, medical, power tool, wired networking, portable electronics, home theater & entertainment, and connected peripherals markets.

The highlighted features of TI Bulk Acoustic Wave (BAW) resonator technology include:

  • Unparalleled RF performance with high-performance frequency stability (±40 PPM) across temperature (-40°C to 85°C) and full operating voltage (1.8 V to 3.8 V), ultra-low jitter and phase noise to meet various wireless communication standards clock requirements.
  • Efficient development and production cycles by eliminating crystal oscillator sourcing and reducing costly board re-designs and re-certification due to external crystal layout and assembly issues.
  • Optimized Bill of Material (BOM) and PCB area savings (12% average).
  • Superior long-term clock stability and aging performance (10 years) in comparison with most standard quartz crystal (longest 5 years aging) enables longer product lifecycles.
  • Robust vibration and mechanical shock resistance (3× lower PPM variance versus external crystal) reduces product replacement costs from external crystal failure and allows for operation in harsh environments, such as in motors or heavy machinery.
  • Mitigation of potential timing related side channel attacks from external clock tampering.

The highlighted features of the SimpleLink™ MCU platform include:

  • Wide flexibility of protocol stack support in the SimpleLink™ CC13x2 and CC26x2 Software Development Kit (SDK).
  • Longer battery life wireless applications with low standby current of 0.84 µA and full RAM retention.
  • Industrial temperature ready with lowest standby current of 5.6 µA at 85°C.
  • Advanced sensing with a programmable, autonomous ultra-low power Sensor Controller CPU with fast wake-up capability. As an example, the sensor controller is capable of 1-Hz ADC sampling at 1 µA system current.
  • 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-defined radio controller (Arm® Cortex®-M0) providing flexible low-power RF transceiver capability to support multiple physical layers and RF standards.

The CC2652RB device is part of the SimpleLink™ MCU platform, which consists of Wi-Fi, Bluetooth Low Energy, Thread, Zigbee, Sub-1 GHz 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 information, visit SimpleLink™ MCU platform.

The SimpleLink™CC2652RB device is the industry’s first multiprotocol 2.4 GHz wireless crystal-less microcontroller (MCU) with integrated TI Bulk Acoustic Wave (BAW) resonator technology supporting Thread, Zigbee , Bluetooth 5.2 Low Energy, IEEE 802.15.4, IPv6-enabled smart objects (6LoWPAN), proprietary systems, including the TI 15.4-Stack (2.4 GHz), and concurrent multiprotocol operation through the Dynamic Multiprotocol Manager (DMM) software driver. Integrated BAW resonator technology eliminates the need for external crystals without compromising latency or frequency stability. The device is optimized for low-power wireless communication and advanced sensing in building security systems, HVAC, medical, power tool, wired networking, portable electronics, home theater & entertainment, and connected peripherals markets.

The highlighted features of TI Bulk Acoustic Wave (BAW) resonator technology include:

  • Unparalleled RF performance with high-performance frequency stability (±40 PPM) across temperature (-40°C to 85°C) and full operating voltage (1.8 V to 3.8 V), ultra-low jitter and phase noise to meet various wireless communication standards clock requirements.
  • Efficient development and production cycles by eliminating crystal oscillator sourcing and reducing costly board re-designs and re-certification due to external crystal layout and assembly issues.
  • Optimized Bill of Material (BOM) and PCB area savings (12% average).
  • Superior long-term clock stability and aging performance (10 years) in comparison with most standard quartz crystal (longest 5 years aging) enables longer product lifecycles.
  • Robust vibration and mechanical shock resistance (3× lower PPM variance versus external crystal) reduces product replacement costs from external crystal failure and allows for operation in harsh environments, such as in motors or heavy machinery.
  • Mitigation of potential timing related side channel attacks from external clock tampering.

The highlighted features of the SimpleLink™ MCU platform include:

  • Wide flexibility of protocol stack support in the SimpleLink™ CC13x2 and CC26x2 Software Development Kit (SDK).
  • Longer battery life wireless applications with low standby current of 0.84 µA and full RAM retention.
  • Industrial temperature ready with lowest standby current of 5.6 µA at 85°C.
  • Advanced sensing with a programmable, autonomous ultra-low power Sensor Controller CPU with fast wake-up capability. As an example, the sensor controller is capable of 1-Hz ADC sampling at 1 µA system current.
  • 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-defined radio controller (Arm® Cortex®-M0) providing flexible low-power RF transceiver capability to support multiple physical layers and RF standards.

The CC2652RB device is part of the SimpleLink™ MCU platform, which consists of Wi-Fi, Bluetooth Low Energy, Thread, Zigbee, Sub-1 GHz 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 information, visit SimpleLink™ MCU platform.

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CC2652P ACTIVE SimpleLink™ Arm Cortex-M4F multiprotocol 2.4 GHz wireless MCU with integrated power amplifier This product offers an integrated power amplifier but does not offer BAW resonator solution.
CC2652R ACTIVE SimpleLink™ 32-bit Arm Cortex-M4F multiprotocol 2.4 GHz wireless MCU with 352kB Flash This product does not include the BAW resonator and requires an external 48MHz crystal.

Technical documentation

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Top documentation Type Title Format options Date
* Data sheet CC2652RB SimpleLink™ Crystal-less BAW Multiprotocol 2.4 GHz Wireless MCU datasheet (Rev. D) PDF | HTML Feb 16, 2021
* User guide CC13x2, CC26x2 SimpleLink Wireless MCU Technical Reference Manual (Rev. G) PDF | HTML Jun 28, 2024
* Errata CC2652RB SimpleLink™ Multiprotocol 2.4-GHz MCU Device Revision E Silicon Errata (Rev. A) Dec 4, 2019
Application note Configuration methods for BQB RF-PHY testing and SRRC fixed frequency testing for TI Bluetooth products (Rev. A) PDF | HTML May 29, 2026
Application note How to Certify Your Bluetooth Product (Rev. N) PDF | HTML Nov 18, 2025
Application note CC2538, CC13xx, and CC26xx Serial Bootloader Interface (Rev. E) PDF | HTML Aug 6, 2024
Application note CC13xx/CC26xx Hardware Configuration and PCB Design Considerations (Rev. H) PDF | HTML May 2, 2024
Application note Antenna Impedance Measurement and Matching PDF | HTML Mar 22, 2022
Application note Configuring Bluetooth LE devices for Direct Test Mode PDF | HTML Feb 25, 2022
Selection guide Wireless Connectivity Technology Selection Guide (Rev. B) Feb 14, 2022
Application note Connect One TI 15.4 Stack Sensor to Multiple Gateways PDF | HTML Dec 20, 2021
More literature Bluetooth® Low Energy connectivity solutions for automotive applications Dec 15, 2021
Application note Hardware Migration From CC26x0 to CC26x2R (Rev. D) Aug 23, 2021
Technical article How Wi-Fi® and Bluetooth® Low Energy can coexist in building automation and medic PDF | HTML Jul 23, 2021
Application brief Dynamic Multi-protocol Manager (DMM) Tech Note (Rev. A) PDF | HTML May 13, 2021
White paper Dynamic Multi-Protocol (DMM) Performance Apr 21, 2021
White paper Exploring Thread and Zigbee for home and building automation PDF | HTML Apr 12, 2021
Technical article Back to basics: Exploring the benefits of affordable Bluetooth® Low Energy PDF | HTML Aug 20, 2020
Cybersecurity advisory Bluetooth Low Energy – Invalid Connection Request (SweynTooth) (Rev. A) PDF | HTML Jul 17, 2020
Cybersecurity advisory Variable Time Tag Comparison on SimpleLink™ Devices PDF | HTML Jun 5, 2020
Cybersecurity advisory Bluetooth Low Energy, Basic Rate/Enhanced Data Rate – Method Confusion Pairing V PDF | HTML May 18, 2020
Application note Cloning Z-Stack Network Properties Using the SimpleLink Wireless MCU Family PDF | HTML Mar 31, 2020
Application note Z-Stack Large Mesh Network Performance Using the SimpleLink™ Wireless MCU Family (Rev. B) PDF | HTML Feb 5, 2020
Application note Cryptographic Performance and Energy Efficiency on SimpleLink CC13x2/CC26x2 MCUs PDF | HTML Jan 28, 2020
Application note Ultra-Low Power Sensing Applications With CC13x2/CC26x2 (Rev. B) PDF | HTML Jan 27, 2020
Application note Minimizing Frequency Error Due to Soldering Process on CC2652RB Crystal-Less MCU PDF | HTML Jan 15, 2020
Technical article Testing TI BAW resonator technology in mechanical shock and vibration environments PDF | HTML Jan 9, 2020
Technical article Going crystal-less is easy with the world's first crystal-less, wireless SimpleLin PDF | HTML Jan 2, 2020
White paper Exploring IoT wireless connectivity in mechanical shock and vibration environme Nov 7, 2019
Technical article VIDEO: TI Bulk Acoustic Wave (BAW) resonator technology with Bluetooth 5 PDF | HTML Sep 26, 2019
Application note Running Bluetooth® Low Energy on CC13x2/CC26xx Without a 32 kHz Crystal (Rev. C) PDF | HTML Sep 23, 2019
Application brief What's New in Zigbee 3.0 (Rev. A) PDF | HTML Jun 6, 2019
Application note Bluetooth® Low Energy Tree Structure Network PDF | HTML May 29, 2019
Application note Debugging Communication Range (Rev. A) PDF | HTML May 23, 2019
Application note Secure Boot in SimpleLink™ CC13x2/CC26x2 Wireless MCUs PDF | HTML Apr 15, 2019
Technical article Top 5 things to know about TI BAW resonator technology PDF | HTML Feb 27, 2019
Application note Getting Started With CC2652RB for Crystal-less BAW Operation PDF | HTML Feb 20, 2019
White paper SimpleLink Crystal-Less Wireless MCU based on TI BAW technology Feb 18, 2019
Application note Measuring CC13xx and CC26xx current consumption (Rev. D) PDF | HTML Jan 10, 2019
Application note RF PCB Simulation Cookbook Jan 9, 2019
User guide LP-CC2652RB quick start guide Dec 21, 2018
Application note Low-Power ADC Solution for CC13x2 and CC26x2 Mar 2, 2018
Application brief Ultra-Low Power Designs With the CC13x2 and CC26x2 Sensor Controller PDF | HTML Feb 27, 2018
Application note Use of Low-power Zigbee® and Thread With the SimpleLink™ Wireless MCU Family Feb 27, 2018
Application note Sensor Sequencing Using the CC13x2 and CC26x2 Sensor Controller Mar 5, 2017
Application note TI-15.4 Stack Frequency Hopping Mode FCC Compliance (Rev. A) Feb 28, 2017

Design & development

For additional terms or required resources, click any title below to view the detail page where available.

Evaluation board

CC3200AUDBOOST — SimpleLink Wi-Fi CC3200 Audio BoosterPack

The SimpleLink™ Wi-Fi® CC3200 Audio BoosterPack enables the evaluation and development with the digital audio peripheral [I2S] present on the SimpleLink™ Wi-Fi® CC3200 device. It contains a Class-D power amplifier to drive speakers and an ultra-low power audio codec, TLV320AIC3254, supporting (...)

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Evaluation board

ALGO-3P-UISP1-TI — Algocraft μISP1 Programmer for Texas Instruments devices

μISP can either work connected to a host PC (RS-232, USB, LAN connections are built-in) or in standalone mode.

The programming cycle execution in standalone mode may occur by simply pressing the START button or through some TTL control lines.

Its compact size and versatility allows a simple (...)

From: Algocraft
Supported products & hardware
Development kit

LP-CC2652RB — CC2652RB LaunchPad™ development kit for BAW multi-protocol 2.4-GHz SimpleLink™ wireless MCU

This LaunchPad™ is used to get started with the SimpleLink™ crystal-less BAW CC2652RB multiprotocol wireless MCU with support for Bluetooth®, Zigbee®, and Thread. Software support is provided by the CC13X2-CC26X2 software development kit (SDK).

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Debug probe

TMDSEMU110-U — XDS110 JTAG Debug Probe

The Texas Instruments XDS110 is a new class of debug probe (emulator) for TI embedded processors. The XDS110 replaces the XDS100 family while supporting a wider variety of standards (IEEE1149.1, IEEE1149.7, SWD) in a single pod. Also, all XDS debug probes support Core and System Trace in all (...)

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Debug probe

TMDSEMU200-U — XDS200 USB Debug Probe

The XDS200 is a debug probe (emulator) used for debugging TI embedded devices. For the majority of devices it is recommended to use the newer, lower cost XDS110 (www.ti.com/tool/TMDSEMU110-U). The XDS200 supports a wide variety of standards (IEEE1149.1, IEEE1149.7, SWD) in a single pod. All XDS (...)

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Debug probe

LB-3P-TRACE32-WIRELESS — Lauterbach TRACE32® Debug System for Wireless Connectivity

Lauterbach‘s TRACE32® tools are a suite of leading-edge hardware and software components that enables developers to analyze, optimize and certify many of TI's Wireless Connectivity chips. The globally renowned debug solutions for embedded systems are the perfect solution for all development phases (...)

Supported products & hardware
Hardware programming tool

ALGO-3P-WRITENOW — Algocraft WriteNow! Programmer

WriteNow! Series of In-System Programmers is a breakthrough in the programming industry. The programmers support a large number of devices (microcontrollers, memories, CPLDs and other programmable devices) from various manufacturers and have a compact size for easy ATE/fixture integration. They (...)

From: Algocraft
Supported products & hardware
Software development kit (SDK)

SIMPLELINK-LOWPOWER-F2-SDK — SimpleLink™ Low Power F2 software development kit (SDK) for the CC13x1, CC13x2, CC13x4, CC26x1, CC26x2 and CC26x4 devices

The SimpleLink™ Low Power SDKs support the CC13xx, CC23xx, CC26xx and CC27xx family of products. Together, these SDKs provide comprehensive software packages for the development of Sub-1 GHz and 2.4 GHz applications including support for Bluetooth® Low Energy, Mesh, Zigbee®, Matter, Thread, (...)

Supported products & hardware
Software development kit (SDK)

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

This Texas Instruments OpenThread GitHub repository (ot-ti) contains all the software development components and tools that enable engineers to develop Thread based products.
Supported products & hardware
Software development kit (SDK)

TI-15-4-STACK-GATEWAY-LINUX-SDK — TI 15-4-Stack Gateway Linux Software Development Kit

The TI-15.4-Stack-Gateway-Linux Software Development Kit (SDK) provides a Linux software middleware for the TI 15.4-Stack companion solution. It includes a full Linux user-space software that runs on top of the TI Processor SDK for AM335x platform, which interfaces with the co-processor embedded (...)

Supported products & hardware
IDE, configuration, compiler or debugger

ARM-CGT — ARM Code Generation Tools - Compiler

The TI Arm® compiler tools are an essential component of the CCStudio™ development ecosystem, providing robust support for TI Arm-based platforms. They are engineered to maximize the potential of TI Arm Cortex®-M and Cortex-R series devices.

The current tools ARM-CGT-CLANG are derived from the (...)

Supported products & hardware
IDE, configuration, compiler or debugger

ARM-CGT-CLANG — Arm® code generation tools - compiler

The TI Arm® compiler tools are an essential component of the CCStudio™ development ecosystem, providing robust support for TI Arm-based platforms. They are engineered to maximize the potential of TI Arm Cortex®-M and Cortex-R series devices.

The current tools ARM-CGT-CLANG are derived from the (...)

Supported products & hardware
IDE, configuration, compiler or debugger

CCSTUDIO — CCStudio™ IDE

CCStudio™ IDE is part of TI's extensive CCStudio™ development ecosystem and is an integrated development environment for TI's microcontrollers, processors, wireless connectivity devices, and radar sensors. CCStudio IDE is available as desktop or cloud-based applications. The cloud version (...)

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IDE, configuration, compiler or debugger

CCSTUDIO-OPENOCD — OpenOCD Binary Releases

Pre-built binaries for the popular open-source OpenOCD debug stack.
Supported products & hardware
IDE, configuration, compiler or 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 (...)

Supported products & hardware
IDE, configuration, compiler or debugger

SYSCONFIG — Standalone desktop version of SysConfig

CCStudio™ SysConfig is part of TI's extensive CCStudio™ development ecosystem and is a configuration tool that simplifies hardware and software configuration challenges to accelerate software development.

SysConfig provides an intuitive graphical user interface for configuring pins, peripherals, (...)

Supported products & hardware
Online training

SIMPLELINK-ACADEMY-CC13XX-CC26XX — SimpleLink™ CC13xx and CC26xx Academy

SimpleLink™ Academy is an interactive learning experience for TI's wireless protocols. Our hands-on training modules cover all phases of development for LaunchPad™ development kits alongside software development kits (SDKs) in the SimpleLink MCU family.
Supported products & hardware
Getting started

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.
Supported products & hardware
Software programming tool

FLASH-PROGRAMMER-2 — SmartRF Flash Programmer v2

SmartRF Flash Programmer 2 can be used to program the flash memory in Texas Instruments ARM based low-power RF wireless MCUs over the debug and serial interfaces. Check the list of supported products for compatibility. Uniflash can also be used to program any SimpleLink product.

SmartRF Flash (...)

Supported products & hardware
Software programming tool

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

UniFlash is part of TI's extensive CCStudio™ development ecosystem and is a software tool for programming on-chip flash on TI microcontrollers and wireless connectivity devices and on-board flash for TI processors. UniFlash provides both graphical and command-line interfaces and can be run on (...)

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Support software

RF-RANGE-ESTIMATOR — RF Range Estimator

This tool is used to calculate a range estimate for indoor and outdoor RF links using TI wireless devices. The outdoor calculation is based upon Line-of-Sight (LOS). For the indoor estimation, construction materials can be selected that are between the Tx and Rx unit. The greater the attenuation (...)
Supported products & hardware
Calculation tool

BT-POWER-CALC — Bluetooth Power Calculator for CC13xx, CC26xx, CC23xx, and CC27xx devices

This tool is used to calculate Bluetooth Low Energy power consumption estimates for various use cases on TI Bluetooth devices. The calculator includes both advertising and peripheral use cases with the ability to configure different use case profile parameters. The calculator outputs an estimate (...)
Supported products & hardware
Calculation tool

PACKET-SNIFFER-2 — SmartRF Packet Sniffer 2

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 (...)

Supported products & hardware
Calculation tool

SMARTRF-STUDIO-7 — SmartRF Studio 7 application software

SmartRF™ Studio is a Windows application that helps designers of RF systems to easily evaluate the radio at an early stage in the design process for all TI CC1xxx and CC2xxx low-power RF devices. It simplifies generation of the configuration register values and commands, as well as practical (...)

Supported products & hardware
Calculation tool

ZIGBEE-POWER-CALC — Z-Stack™ power calculator tool

This tool is used to allow SimpleLink™ Z-Stack™ Software users to analyze system power profile for a sleepy end device within a Zigbee application. This calculator enables the user to assess the potential system battery life and determine how to optimize battery life through (...)
Supported products & hardware
Design tool

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

The SimpleLink hardware design review process provides a way to get in touch, one-on-one, with a subject matter expert that can help review your design and provide valuable feedback. A simple three-step process for requesting a review as well as links to relevant technical documentation and (...)

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Package Pins CAD symbols, footprints & 3D models
VQFN (RGZ) 48 Ultra Librarian

Ordering & quality

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Support & training

TI E2E™ forums with technical support from TI engineers

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Video series

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