CC1350

AKTIV

SimpleLink™ 32-bit Arm Cortex-M3 Multiprotokoll, Sub-1 GHz und 2,4 GHz drahtlose MCU mit 128 kB Flas

Produktdetails

Protocols Wireless M-Bus Modulation scheme (G)MSK, 2(G)FSK, 4(G)FSK, OOK Frequency bands 2152-2635, 287-351, 359-439, 431-527, 718-878, 861-1054 Type Wireless MCU RAM (kByte) 28 Flash memory (kByte) 128 CPU Arm Cortex-M3 Operating system RTOS, TI RTOS Peripherals 1 SPI, 1 UART, 12-bit ADC 8-channel, 2 SPI, 2 comparators, 4 timers, I2C, I2S, Sensor controller Sensitivity (best) (dBm) -124 Number of GPIOs 10, 15, 30 Data rate (max) (Mbps) 4, 4000000 Rating Catalog Operating temperature range (°C) -40 to 85 Edge AI enabled No
Protocols Wireless M-Bus Modulation scheme (G)MSK, 2(G)FSK, 4(G)FSK, OOK Frequency bands 2152-2635, 287-351, 359-439, 431-527, 718-878, 861-1054 Type Wireless MCU RAM (kByte) 28 Flash memory (kByte) 128 CPU Arm Cortex-M3 Operating system RTOS, TI RTOS Peripherals 1 SPI, 1 UART, 12-bit ADC 8-channel, 2 SPI, 2 comparators, 4 timers, I2C, I2S, Sensor controller Sensitivity (best) (dBm) -124 Number of GPIOs 10, 15, 30 Data rate (max) (Mbps) 4, 4000000 Rating Catalog Operating temperature range (°C) -40 to 85 Edge AI enabled No
VQFN (RGZ) 48 49 mm² 7 x 7 VQFN (RHB) 32 25 mm² 5 x 5 VQFN (RSM) 32 16 mm² 4 x 4
  • World’s First Dual-Band (Sub-1 GHz and 2.4 GHz) Wireless Microcontroller
  • Microcontroller
    • Powerful Arm® Cortex®-M3 Processor
    • EEMBC CoreMark® Score: 142
    • EEMBC ULPBench™ Score: 158
    • Clock Speed up to 48-MHz
    • 128KB of In-System Programmable Flash
    • 8KB of SRAM for Cache
      (or as General-Purpose RAM)
    • 20KB of Ultra-Low-Leakage SRAM
    • 2-Pin cJTAG and JTAG Debugging
    • Supports Over-the-Air (OTA) Update
  • Ultra-Low-Power Sensor Controller
    • Can Run Autonomously From the Rest of the System
    • 16-Bit Architecture
    • 2KB of Ultra-Low-Leakage SRAM for Code and Data
  • Efficient Code-Size Architecture, Placing Parts of
    TI-RTOS, Drivers, Bluetooth® low energy Controller and Bootloader in ROM
  • RoHS-Compliant Package
    • 7-mm × 7-mm RGZ VQFN48 (30 GPIOs)
    • 5-mm × 5-mm RHB VQFN32 (15 GPIOs)
    • 4-mm × 4-mm RSM VQFN32 (10 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
    • Ultra-Low-Power Clocked 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)
    • Support for Eight Capacitive Sensing Buttons
    • Integrated Temperature Sensor
  • External System
    • On-Chip Internal DC/DC Converter
    • Seamless Integration With the SimpleLink™ CC1190 and CC2592 Range Extender
  • Low Power
    • Wide Supply Voltage Range: 1.8 to 3.8 V
    • RX: 5.4 mA (Sub-1 GHz), 6.4 mA (Bluetooth low energy, 2.4 GHz)
    • TX at +10 dBm: 13.4 mA (Sub-1 GHz)
    • TX at +9 dBm: 22.3 mA (Bluetooth low energy, 2.4 GHz)
    • TX at +0 dBm: 10.5 mA (Bluetooth low energy, 2.4 GHz)
    • Active-Mode MCU 48 MHz Running Coremark: 2.5 mA (51 µA/MHz)
    • Active-Mode MCU: 48.5 CoreMark/mA
    • Active-Mode Sensor Controller at 24 MHz:
      0.4 mA + 8.2 µA/MHz
    • Sensor Controller, One Wakeup Every Second Performing One 12-Bit ADC Sampling: 0.95 µA
    • Standby: 0.7 µA (RTC Running and RAM and CPU Retention)
    • Shutdown: 185 nA (Wakeup on External Events)
  • RF Section
    • 2.4-GHz RF Transceiver Compatible With Bluetooth low energy 4.2 Specification
    • Excellent Receiver Sensitivity –124 dBm Using Long-Range Mode, –110 dBm at 50 kbps
      (Sub-1 GHz),
      –87 dBm at Bluetooth low energy
    • Excellent Selectivity (±100 kHz): 56 dB
    • Excellent Blocking Performance (±10 MHz):
      90 dB
    • Programmable Output Power up to +15 dBm (Sub-1 GHz) and +9 dBm at 2.4 GHz (Bluetooth low energy)
    • Single-Ended or Differential RF Interface
    • Suitable for Systems Targeting Compliance With Worldwide Radio Frequency Regulations
      • ETSI EN 300 220, EN 303 204 (Europe)
      • EN 300 440 Class 2 (Europe)
      • EN 300 328 (Europe)
      • FCC CFR47 Part 15 (US)
      • ARIB STD-T66 (Japan)
      • ARIB STD-T108 (Japan)
    • Wireless M-Bus (EN 13757-4) and IEEE® 802.15.4g PHY
  • 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
    • SmartRF™ Studio
    • SmartRF Flash Programmer 2
    • IAR Embedded Workbench® for Arm
    • Code Composer Studio™ (CCS) IDE
    • CCS UniFlash
  • World’s First Dual-Band (Sub-1 GHz and 2.4 GHz) Wireless Microcontroller
  • Microcontroller
    • Powerful Arm® Cortex®-M3 Processor
    • EEMBC CoreMark® Score: 142
    • EEMBC ULPBench™ Score: 158
    • Clock Speed up to 48-MHz
    • 128KB of In-System Programmable Flash
    • 8KB of SRAM for Cache
      (or as General-Purpose RAM)
    • 20KB of Ultra-Low-Leakage SRAM
    • 2-Pin cJTAG and JTAG Debugging
    • Supports Over-the-Air (OTA) Update
  • Ultra-Low-Power Sensor Controller
    • Can Run Autonomously From the Rest of the System
    • 16-Bit Architecture
    • 2KB of Ultra-Low-Leakage SRAM for Code and Data
  • Efficient Code-Size Architecture, Placing Parts of
    TI-RTOS, Drivers, Bluetooth® low energy Controller and Bootloader in ROM
  • RoHS-Compliant Package
    • 7-mm × 7-mm RGZ VQFN48 (30 GPIOs)
    • 5-mm × 5-mm RHB VQFN32 (15 GPIOs)
    • 4-mm × 4-mm RSM VQFN32 (10 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
    • Ultra-Low-Power Clocked 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)
    • Support for Eight Capacitive Sensing Buttons
    • Integrated Temperature Sensor
  • External System
    • On-Chip Internal DC/DC Converter
    • Seamless Integration With the SimpleLink™ CC1190 and CC2592 Range Extender
  • Low Power
    • Wide Supply Voltage Range: 1.8 to 3.8 V
    • RX: 5.4 mA (Sub-1 GHz), 6.4 mA (Bluetooth low energy, 2.4 GHz)
    • TX at +10 dBm: 13.4 mA (Sub-1 GHz)
    • TX at +9 dBm: 22.3 mA (Bluetooth low energy, 2.4 GHz)
    • TX at +0 dBm: 10.5 mA (Bluetooth low energy, 2.4 GHz)
    • Active-Mode MCU 48 MHz Running Coremark: 2.5 mA (51 µA/MHz)
    • Active-Mode MCU: 48.5 CoreMark/mA
    • Active-Mode Sensor Controller at 24 MHz:
      0.4 mA + 8.2 µA/MHz
    • Sensor Controller, One Wakeup Every Second Performing One 12-Bit ADC Sampling: 0.95 µA
    • Standby: 0.7 µA (RTC Running and RAM and CPU Retention)
    • Shutdown: 185 nA (Wakeup on External Events)
  • RF Section
    • 2.4-GHz RF Transceiver Compatible With Bluetooth low energy 4.2 Specification
    • Excellent Receiver Sensitivity –124 dBm Using Long-Range Mode, –110 dBm at 50 kbps
      (Sub-1 GHz),
      –87 dBm at Bluetooth low energy
    • Excellent Selectivity (±100 kHz): 56 dB
    • Excellent Blocking Performance (±10 MHz):
      90 dB
    • Programmable Output Power up to +15 dBm (Sub-1 GHz) and +9 dBm at 2.4 GHz (Bluetooth low energy)
    • Single-Ended or Differential RF Interface
    • Suitable for Systems Targeting Compliance With Worldwide Radio Frequency Regulations
      • ETSI EN 300 220, EN 303 204 (Europe)
      • EN 300 440 Class 2 (Europe)
      • EN 300 328 (Europe)
      • FCC CFR47 Part 15 (US)
      • ARIB STD-T66 (Japan)
      • ARIB STD-T108 (Japan)
    • Wireless M-Bus (EN 13757-4) and IEEE® 802.15.4g PHY
  • 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
    • SmartRF™ Studio
    • SmartRF Flash Programmer 2
    • IAR Embedded Workbench® for Arm
    • Code Composer Studio™ (CCS) IDE
    • CCS UniFlash

The CC1350 device is a cost-effective, ultra-low-power, dual-band RF device from Texas Instruments™ that is part of the SimpleLink microcontroller (MCU) platform. The platform consists of Wi-Fi®, Bluetooth® low energy, Sub-1 GHz, Ethernet, Zigbee®, Thread, and host MCUs. These devices all share a common, easy-to-use development environment with a single core software development kit (SDK) and a rich tool set. A one-time integration of the SimpleLink platform enables users to add any combination of devices from the portfolio into their design, allowing 100 percent code reuse when design requirements change. For more information, visit www.ti.com/simplelink.

With very low active RF and MCU current consumption, in addition to flexible low-power modes, the device provides excellent battery life and allows long-range operation on small coin-cell batteries and in energy harvesting applications.

The CC1350 is a device in the CC13xx and CC26xx family of cost-effective, ultra-low-power wireless MCUs capable of handling both Sub-1 GHz and 2.4-GHz RF frequencies. The CC1350 device combines a flexible, very low-power RF transceiver with a powerful 48-MHz Arm® Cortex®-M3 microcontroller in a platform supporting multiple physical layers and RF standards. A dedicated Radio Controller (Cortex®-M0) handles low-level RF protocol commands that are stored in ROM or RAM, thus ensuring ultra-low power and flexibility to handle both Sub-1 GHz protocols and 2.4 GHz protocols (for example Bluetooth low energy). This enables the combination of a Sub-1 GHz communication solution that offers the best possible RF range together with a Bluetooth low energy smartphone connection that enables great user experience through a phone application. The Sub-1 GHz only device in this family is the CC1310.

The CC1350 device is a highly integrated, true single-chip solution incorporating a complete RF system and an on-chip DC/DC converter.

Sensors can be handled in a very low-power manner by a dedicated autonomous ultra-low-power MCU that can be configured to handle analog and digital sensors; thus the main MCU (Arm® Cortex®-M3) can maximize sleep time.

The power and clock management and radio systems of the CC1350 device require specific configuration and handling by software to operate correctly, which has been implemented in the TI-RTOS. TI recommends using this software framework for all application development on the device. The complete TI-RTOS and device drivers are offered free of charge in source code.

The CC1350 device is a cost-effective, ultra-low-power, dual-band RF device from Texas Instruments™ that is part of the SimpleLink microcontroller (MCU) platform. The platform consists of Wi-Fi®, Bluetooth® low energy, Sub-1 GHz, Ethernet, Zigbee®, Thread, and host MCUs. These devices all share a common, easy-to-use development environment with a single core software development kit (SDK) and a rich tool set. A one-time integration of the SimpleLink platform enables users to add any combination of devices from the portfolio into their design, allowing 100 percent code reuse when design requirements change. For more information, visit www.ti.com/simplelink.

With very low active RF and MCU current consumption, in addition to flexible low-power modes, the device provides excellent battery life and allows long-range operation on small coin-cell batteries and in energy harvesting applications.

The CC1350 is a device in the CC13xx and CC26xx family of cost-effective, ultra-low-power wireless MCUs capable of handling both Sub-1 GHz and 2.4-GHz RF frequencies. The CC1350 device combines a flexible, very low-power RF transceiver with a powerful 48-MHz Arm® Cortex®-M3 microcontroller in a platform supporting multiple physical layers and RF standards. A dedicated Radio Controller (Cortex®-M0) handles low-level RF protocol commands that are stored in ROM or RAM, thus ensuring ultra-low power and flexibility to handle both Sub-1 GHz protocols and 2.4 GHz protocols (for example Bluetooth low energy). This enables the combination of a Sub-1 GHz communication solution that offers the best possible RF range together with a Bluetooth low energy smartphone connection that enables great user experience through a phone application. The Sub-1 GHz only device in this family is the CC1310.

The CC1350 device is a highly integrated, true single-chip solution incorporating a complete RF system and an on-chip DC/DC converter.

Sensors can be handled in a very low-power manner by a dedicated autonomous ultra-low-power MCU that can be configured to handle analog and digital sensors; thus the main MCU (Arm® Cortex®-M3) can maximize sleep time.

The power and clock management and radio systems of the CC1350 device require specific configuration and handling by software to operate correctly, which has been implemented in the TI-RTOS. TI recommends using this software framework for all application development on the device. The complete TI-RTOS and device drivers are offered free of charge in source code.

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Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Datum
* Data sheet CC1350 SimpleLink™ Ultra-Low-Power Dual-Band Wireless MCU datasheet (Rev. B) PDF | HTML 23 Jul 2018
* Errata CC1350 SimpleLink™ Wireless MCU Errata (Rev. D) 02 Dez 2020
* User guide CC13x0, CC26x0 SimpleLink™ Wireless MCU Technical Reference Manual (Rev. I) 30 Jun 2020
Application note How to Certify Your Bluetooth Product (Rev. N) PDF | HTML 18 Nov 2025
Application note Crystal Oscillator and Crystal Selection for the CC13xx, CC26xx, and CC23xx Family of Wireless MCUs (Rev. L) PDF | HTML 21 Apr 2025
Application note CC13xx/CC26xx Hardware Configuration and PCB Design Considerations (Rev. H) PDF | HTML 02 Mai 2024
User guide SimpleLink CC131x and CC135x Family Hardware Migration Guide PDF | HTML 02 Mai 2024
Application note CE Regulations for SRDs Operating in License-Free 2.4GHz/5GHz Bands-WiFi Devices (Rev. A) PDF | HTML 20 Okt 2022
Application note Antenna Impedance Measurement and Matching PDF | HTML 22 Mär 2022
Technical article Wireless M-Bus 101: Demystifying modes and regional application profiles PDF | HTML 02 Jul 2021
Application note Wireless Motion Detector With Sub-1 GHz SimpleLink™ Wireless MCU (Rev. C) 10 Mai 2021
Cybersecurity advisory Bluetooth® Low Energy – Missing Length Check for UNPI Packets Over SPI 08 Okt 2020
Application note Finding Settings for New Phy’s for the CC13x0 and CC13x2 Family PDF | HTML 14 Sep 2020
Application note CC13xx IQ Samples (Rev. B) PDF | HTML 24 Aug 2020
Cybersecurity advisory Bluetooth Low Energy – Invalid Connection Request (SweynTooth) (Rev. A) PDF | HTML 17 Jul 2020
Cybersecurity advisory Variable Time Tag Comparison on SimpleLink™ Devices PDF | HTML 05 Jun 2020
Technical article Benefits of using Sub-1 GHz connectivity for grid asset monitoring, protection and PDF | HTML 28 Mai 2020
Cybersecurity advisory Bluetooth Low Energy, Basic Rate/Enhanced Data Rate – Method Confusion Pairing V PDF | HTML 18 Mai 2020
White paper Simple and efficient software development with the SimpleLink™ MCU platform (Rev. E) 06 Dez 2019
White paper Deep dive into the tools and development kits of the SimpleLink™ MCU platform (Rev. B) 25 Sep 2019
Application note Debugging Communication Range (Rev. A) PDF | HTML 23 Mai 2019
Application note Wideband DSSS Mode for FCC Digital Transmission Systems Using CC13x0 PDF | HTML 11 Apr 2019
Product overview Out-of-box star-network solution: TI 15.4-Stack 14 Jan 2019
Application note RF PCB Simulation Cookbook 09 Jan 2019
Certificate LAUNCHXL-CC1350 EU Declaration of Conformity (DoC) (Rev. B) 02 Jan 2019
Application note CC13xx Long Range Modes 19 Dez 2018
White paper Migrating your proprietary solution to the SimpleLink™ WMCU 07 Nov 2018
Application brief Low-power wM-Bus Stack Implementation With CC1310 and CC1350 PDF | HTML 19 Okt 2018
Application note CC13xx wM-Bus S-Mode (Rev. A) 03 Okt 2018
Application note CC13xx Combined wM-Bus C-Mode and T-Mode Application Note (Rev. E) 03 Okt 2018
Technical article SimpleLink™ MCU SDK expands multiprotocol support PDF | HTML 18 Jul 2018
Application note Using the SimpleLink™ Sub-1 GHz 15.4-Stack: Choose between Sync / Async mode 15 Jun 2018
Technical article FreeWave brings IoT to the oil field using TI’s SimpleLink CC13xx and Sitara AM335 PDF | HTML 23 Mai 2018
Technical article SimpleLink MCU SDKs: Expand the foundation PDF | HTML 03 Mai 2018
Application note Using the MSP430FR6047 Wireless M-Bus Serial Library for Metering Applications 05 Apr 2018
Application note Wireless Smoke Alarms With Sub-1GHz SimpleLink Wireless MCU (Rev. B) 13 Mär 2018
Application note Wireless Door and Window Sensors With Sub-1GHz SimpleLink Wireless MCU (Rev. A) 13 Mär 2018
Application brief Ultra-Low Power Designs With the CC13x2 and CC26x2 Sensor Controller 27 Feb 2018
Product overview SimpleLink™ Wired and Wireless Microcontroller Platform (Rev. B) 11 Jan 2018
White paper Connected microcontrollers essential to automation in buildings (Rev. A) 10 Jan 2018
Application note Integrating Sensor Controller Studio Examples Into ProjectZero 08 Jan 2018
Technical article SimpleLink™ MCU SDKs: What is an SDK plug-in? PDF | HTML 21 Nov 2017
Application note GPS Tracking Using Sub-1GHz Devices 15 Nov 2017
Application note Network Algorithms for LPWAN Technical Brief 13 Nov 2017
White paper Wireless Connectivity For The Internet of Things, One Size Does Not Fit All (Rev. A) 16 Okt 2017
Technical article Wireless smoke alarm design using SimpleLink™ Sub-1 GHz MCUs PDF | HTML 26 Jul 2017
White paper IoT provokes change in ultra-low-power MCUs 19 Jul 2017
Technical article Sensor-to-cloud: sending all data to one place PDF | HTML 13 Jul 2017
Application note CC13x0 Low Data Rate Operation 26 Jun 2017
More literature SimpleLink™ Sub-1 GHz CC13x0 MCU Security (Rev. A) 26 Mai 2017
White paper RTOS Power Management Emerges as a Key for MCU-based IoT Nodes (Rev. A) 11 Mai 2017
White paper Charging stations: Toward an EV support infrastructure 09 Mai 2017
Technical article SimpleLink™ MCU SDKs: Breaking down TI Drivers PDF | HTML 12 Apr 2017
Technical article Designing wireless motion-detector systems with Sub-1 GHz PDF | HTML 06 Apr 2017
Application note CC13xx Antenna Diversity (Rev. B) 31 Mär 2017
More literature CC1350 SensorTag Quick Start Guide (Rev. A) 29 Mär 2017
Technical article Rapidly scale your connected solutions with the new SimpleLink™ MCU platform PDF | HTML 15 Mär 2017
Technical article Long range sensor-to-cloud: Connecting to Amazon Web Services with Sub-1 GHz-based PDF | HTML 14 Mär 2017
Application note TI-15.4 Stack Frequency Hopping Mode FCC Compliance (Rev. A) 28 Feb 2017
Technical article IoT is making buildings greener and more intelligent. Value versus affordability PDF | HTML 04 Jan 2017
Technical article A scalable approach to cloud computing applications for low power sensors PDF | HTML 29 Dez 2016
Technical article Connecting sensors to the cloud at a distance PDF | HTML 08 Nov 2016
Technical article Real-time temperature sensing with dual-mode connectivity PDF | HTML 03 Nov 2016
Technical article How to manage wireless sensor networks with dual-band connectivity PDF | HTML 20 Okt 2016
Technical article Sub-1 GHz + Bluetooth® low energy and low-power MCUs help make meter reading autom PDF | HTML 23 Sep 2016
Technical article Bringing Bluetooth® low energy to Sub-1 GHz networks with SimpleLink™ CC1350 wirel PDF | HTML 14 Sep 2016
White paper Sub-1 GHz long-range communication and smartphone connection for IoT application 02 Sep 2016
More literature Why Sub-1 GHz 13 Jul 2016
User guide TI-RTOS 2.20 for CC13xx/CC26xx SimpleLink Getting Started Guide (Rev. D) 17 Jun 2016
Application note CC1310 Discrete PA Chinese AMR Reference Design Rev 1.x 12 Dez 2015

Design und Entwicklung

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Software-Programmiertool

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 (...)

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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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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 (...)
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Support-Software

SWRC323 CC13xx Combined wM-Bus C-Mode and T-Mode Patch and Recommended Settings

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Support-Software

SWRC325 CC13xx Antenna Diversity Patch

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Support-Software

TIDCD68 CC1350 Dual Mode TX Software (TIDC-01001)

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Berechnungstool

15.4-STACK-CALC — TI 15.4 Stack-Leistungsberechnungs-Tool

Mit diesem Tool können Benutzer der SimpleLink 15,4 Stack-Software von TI das Systemleistungsprofil für einen Netzwerkbaustein im Ruhezustand analysieren.  Der Rechner ermöglicht dem Benutzer, die potenzielle Systembatterielebensdauer zu bewerten und festzulegen, wie die Leistung optimiert werden (...)
Berechnungstool

15.4-STACK-CALC-1.0 TI 15.4-Stack Power Calculator

This tool enables SimpleLink TI 15.4 Stack Software users to analyze system power profile for a sleepy network device.  The calculator enables the user to assess the potential system battery life and determine how to optimize power by configuring system settings, stack parameters, payload (...)

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Berechnungstool

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 (...)
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Berechnungstool

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 (...)

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Berechnungstool

SMARTRF-STUDIO-7 SmartRF Studio

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 (...)

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Designtool

3P-WIRELESS-MODULES — Suchtool für drahtlose Module von Drittanbietern

Das Suchtool für drahtlose Module von Drittanbietern unterstützt Entwickler dabei, Produkte zu finden, welche ihren Endgerätespezifikationen entsprechen, und produktionsbereite Drathlosmodule zu beschaffen. Die im Suchtool enthaltenen Verkäufer von Drittanbietermodulen sind unabhängige (...)
Designtool

SIMPLELINK-SUB1GHZ-DESIGN-REVIEWS — Hardware-Designprüfungen für SimpleLink™ CC1xxx-Bausteine

Erste Schritte beim Überprüfungsprozess für das SimpleLink™ Sub-1 GHz-Hardwaredesign:
  • Schritt 1: Bevor Sie eine Überprüfung anfordern, sollten Sie unbedingt die technische Dokumentation und die Ressourcen für Design und Entwicklung durchsehen, die auf der entsprechenden Produktseite verfügbar sind (...)
Gerberdatei

LAUNCHXL-CC1350 Design Files (Rev. A)

SWRC320A.ZIP (3359 KB)
Referenzdesigns

TIDEP0084 — Sub-1-GHz-Sensor-zu-Cloud-Gateway für industrielles IoT – Referenzdesign für Linux-Systeme

Dieses Referenzdesign demonstriert die Cloud-Anbindung von Sensoren über ein drahtloses Long-Range-Netzwerk im Sub-1-GHz-Frequenzbereich. Es eignet sich für Anwendungen in industriellen Umgebungen wie Gebäudesteuerung und Assetnachverfolgung.

Die Lösung basiert auf einem Linux®-Gateway.  Es ist (...)
Design guide: PDF
Schaltplan: PDF
Referenzdesigns

TIDA-01469 — Motorüberwachung mit drahtlosem Vibrationssensor – Referenzdesign für vorbeugende Wartung

Bei diesem Referenzdesign handelt es sich um eine energieeffiziente drahtlose Subsystem-Lösung, die Motoren mithilfe von Vibrationsmessung überwacht, um festzustellen, ob eine präventive Wartung erforderlich ist. Eine FFT der Vibrationsdaten kann mithilfe von Bluetooth Low Energy oder (...)
Design guide: PDF
Schaltplan: PDF
Referenzdesigns

TIDA-01228 — Referenzdesign zur energieeffizienten Wasserdurchflussmessung mit induktiver Abtastung

Dieses Referenzdesign demonstriert eine hochintegrierte Lösung für diese Anwendung mit induktiver Sensortechnologie, die durch die CC1350 SimpleLink™ Drahtlos-MCU und den FemtoFET™ MOSFET ermöglicht wird. Dieses Referenzdesign bietet auch eine Plattform für die Integration von drahtlosen (...)
Design guide: PDF
Schaltplan: PDF
Referenzdesigns

TIDA-01531 — Drahtloses M-Bus-Kommunikationsmodul mit geringem Stromverbrauch – Referenzdesign

Dieses Referenzdesign erklärt, wie Sie den drahtlosen M-Bus-Stack von TI für drahtlose CC1310- und CC1350-MCUs verwenden und in ein Smart-Meter- oder Datensammler-Produkt integrieren. Dieser Software-Stack ist kompatibel mit der Spezifikation Open Metering System (OMS) v3.0.1. EN 13757-1 bis (...)
Design guide: PDF
Schaltplan: PDF
Referenzdesigns

TIDC-01004 — Referenzdesign für Dual-Band-HF-Spektralanalysator

Der SA13x0-Spektralanalysator ist ein SimpleLink™ CC13x0-basiertes Referenzdesign, das verwendet werden kann, um ein einfaches und kostengünstiges Tool zu implementieren, um die HF-Entwicklung sowohl im Frequenzbereich Sub-1 GHz als auch im Frequenzbereich 2,4 GHz zu beschleunigen.

Immer mehr (...)

Design guide: PDF
Schaltplan: PDF
Referenzdesigns

TIDC-01002 — SimpleLink™ Sub-1 GHz-Sensor zu Cloud Gateway – Referenzdesign für TI-RTOS-Systeme

Das SimpleLink™ Sub-1-GHz-Sensor-to-Cloud-Referenzdesign demonstriert die Cloud-Anbindung von Sensoren über ein drahtloses Long-Range-Netzwerk im Sub-1-GHz-Frequenzbereich. Es eignet sich für Anwendungen in industriellen Umgebungen wie Gebäudesteuerung und Bestandsverfolgung.

Die Lösung basiert auf (...)
Design guide: PDF
Schaltplan: PDF
Referenzdesigns

TIDC-01001 — Referenzdesign zur Inbetriebnahme von Sensoren in einem Sub-1-GHz-Netzwerk über Bluetooth® Low Energ

Dieses Referenzdesign zeigt, wie ein Sub-1-GHz-Sensorknoten über Bluetooth® Low Energy in Betrieb genommen werden kann, was eine schnelle Verbindung mit einem Smartphone oder Tablet ermöglicht. Das Design wird vom SimpleLink™ Dualband-Wireless-Mikrocontroller (MCU) CC1350 betrieben, bei dem es sich (...)
Design guide: PDF
Schaltplan: PDF
Referenzdesigns

TIDA-01212 — Bidirektionaler Infrarot-LED-Kommunikationsanschluss – Referenzdesign

Das Referenzdesign TIDA-01212 bietet eine einfache und kostengünstige Lösung für das Hinzufügen einer bidirektionalen 9600 bps IrDA PHY Verbindung zu einem Smart Metering oder Sub-Metering Gerät mit sehr niedrigem Stromverbrauch. Mit einer einzelnen IR-LED, einem Widerstand und einer internen (...)
Design guide: PDF
Schaltplan: PDF
Gehäuse Pins CAD-Symbole, Footprints und 3D-Modelle
VQFN (RGZ) 48 Ultra Librarian
VQFN (RHB) 32 Ultra Librarian
VQFN (RSM) 32 Ultra Librarian

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