CC1120

AKTIV

Hochleistungsfähiger drahtloser Sub-1 GHz-Transceiver für Schmalbandsysteme

Produktdetails

Protocols 6LoWPAN, IEEE 802.15.4, Proprietary, Wireless M-Bus Modulation scheme (G)MSK, 2(G)FSK, 4(G)FSK, ASK, OOK Frequency bands 136.7-160, 164-192, 205-240, 273.3-320, 410-480, 820-960 Type Transceiver TX power (max) (dBm) 16 Sensitivity (best) (dBm) -127 RX current (lowest) (mA) 17 Data rate (max) (Mbps) 0.2 Rating Catalog Operating temperature range (°C) -40 to 85 Edge AI enabled No
Protocols 6LoWPAN, IEEE 802.15.4, Proprietary, Wireless M-Bus Modulation scheme (G)MSK, 2(G)FSK, 4(G)FSK, ASK, OOK Frequency bands 136.7-160, 164-192, 205-240, 273.3-320, 410-480, 820-960 Type Transceiver TX power (max) (dBm) 16 Sensitivity (best) (dBm) -127 RX current (lowest) (mA) 17 Data rate (max) (Mbps) 0.2 Rating Catalog Operating temperature range (°C) -40 to 85 Edge AI enabled No
VQFN (RHB) 32 25 mm² 5 x 5
  • High-Performance, Single-Chip Transceiver
    • Adjacent Channel Selectivity:
      64 dB at 12.5-kHz Offset
    • Blocking Performance: 91 dB at 10 MHz
    • Excellent Receiver Sensitivity:
      • –123 dBm at 1.2 kbps
      • –110 dBm at 50 kbps
      • –127 dBm Using Built-in Coding Gain
    • Very Low Phase Noise:
      –111 dBc/Hz at 10-kHz Offset
  • Suitable for Systems Targeting ETSI Category 1
    Compliance in 169-MHz and 433-MHz Bands
  • High Spectral Efficiency (9.6 kbps in 12.5-kHz
    Channel in Compliance With FCC Narrowbanding
    Mandate)
  • Separate 128-Byte RX and TX FIFOs
  • Support for Seamless Integration With the CC1190
    Device for Increased Range Giving up to 3-dB
    Improvement in Sensitivity and up to +27-dBm
    Output Power
  • Power Supply
    • Wide Supply Voltage Range (2.0 V to 3.6 V)
    • Low Current Consumption:
      • RX: 2 mA in RX Sniff Mode
      • RX: 17 mA Peak Current in Low-Power
        Mode
      • RX: 22 mA Peak Current in
        High-Performance Mode
      • TX: 45 mA at +14 dBm
    • Power Down: 0.12 µA
      (0.5 µA With eWOR Timer Running)
  • Programmable Output Power up to +16 dBm With
    0.4-dB Step Size
  • Automatic Output Power Ramping
  • Configurable Data Rates: 0 to 200 kbps
  • Supported Modulation Formats: 2-FSK,

    2-GFSK, 4-FSK, 4-GFSK, MSK, OOK
  • WaveMatch: Advanced Digital Signal Processing
    for Improved Sync Detect Performance
  • RoHS-Compliant 5-mm × 5-mm No-Lead QFN
    32-Pin Package (RHB)
  • Regulations – Suitable for Systems Targeting
    Compliance With
    • Europe: ETSI EN 300 220, ETSI EN 54-25
    • US: FCC CFR47 Part 15, FCC CFR47 Part 90,
      24, and 101
    • Japan: ARIB RCR STD-T30,
      ARIB STD-T67, ARIB STD-T108
  • Peripherals and Support Functions
    • Enhanced Wake-On-Radio (eWOR)
      Functionality for Automatic Low-Power Receive
      Polling
    • Includes Functions for Antenna Diversity Support
    • Support for Retransmissions
    • Support for Automatic Acknowledge of Received
      Packets
    • TCXO Support and Control, Also in Power
      Modes
    • Automatic Clear Channel Assessment (CCA) for
      Listen-Before-Talk (LBT) Systems
    • Built-in Coding Gain Support for Increased
      Range and Robustness
    • Digital RSSI Measurement
    • Temperature Sensor
  • High-Performance, Single-Chip Transceiver
    • Adjacent Channel Selectivity:
      64 dB at 12.5-kHz Offset
    • Blocking Performance: 91 dB at 10 MHz
    • Excellent Receiver Sensitivity:
      • –123 dBm at 1.2 kbps
      • –110 dBm at 50 kbps
      • –127 dBm Using Built-in Coding Gain
    • Very Low Phase Noise:
      –111 dBc/Hz at 10-kHz Offset
  • Suitable for Systems Targeting ETSI Category 1
    Compliance in 169-MHz and 433-MHz Bands
  • High Spectral Efficiency (9.6 kbps in 12.5-kHz
    Channel in Compliance With FCC Narrowbanding
    Mandate)
  • Separate 128-Byte RX and TX FIFOs
  • Support for Seamless Integration With the CC1190
    Device for Increased Range Giving up to 3-dB
    Improvement in Sensitivity and up to +27-dBm
    Output Power
  • Power Supply
    • Wide Supply Voltage Range (2.0 V to 3.6 V)
    • Low Current Consumption:
      • RX: 2 mA in RX Sniff Mode
      • RX: 17 mA Peak Current in Low-Power
        Mode
      • RX: 22 mA Peak Current in
        High-Performance Mode
      • TX: 45 mA at +14 dBm
    • Power Down: 0.12 µA
      (0.5 µA With eWOR Timer Running)
  • Programmable Output Power up to +16 dBm With
    0.4-dB Step Size
  • Automatic Output Power Ramping
  • Configurable Data Rates: 0 to 200 kbps
  • Supported Modulation Formats: 2-FSK,

    2-GFSK, 4-FSK, 4-GFSK, MSK, OOK
  • WaveMatch: Advanced Digital Signal Processing
    for Improved Sync Detect Performance
  • RoHS-Compliant 5-mm × 5-mm No-Lead QFN
    32-Pin Package (RHB)
  • Regulations – Suitable for Systems Targeting
    Compliance With
    • Europe: ETSI EN 300 220, ETSI EN 54-25
    • US: FCC CFR47 Part 15, FCC CFR47 Part 90,
      24, and 101
    • Japan: ARIB RCR STD-T30,
      ARIB STD-T67, ARIB STD-T108
  • Peripherals and Support Functions
    • Enhanced Wake-On-Radio (eWOR)
      Functionality for Automatic Low-Power Receive
      Polling
    • Includes Functions for Antenna Diversity Support
    • Support for Retransmissions
    • Support for Automatic Acknowledge of Received
      Packets
    • TCXO Support and Control, Also in Power
      Modes
    • Automatic Clear Channel Assessment (CCA) for
      Listen-Before-Talk (LBT) Systems
    • Built-in Coding Gain Support for Increased
      Range and Robustness
    • Digital RSSI Measurement
    • Temperature Sensor

The CC1120 device is a fully integrated single-chip radio transceiver designed for high performance at very low-power and low-voltage operation in cost-effective wireless systems. All filters are integrated, thus removing the need for costly external SAW and IF filters. The device is mainly intended for Industrial, Scientific, and Medical (ISM) applications and Short Range Device (SRD) frequency bands at 164 to 192 MHz, 274 to 320 MHz, 410 to 480 MHz, and 820 to 960 MHz.

The CC1120 device provides extensive hardware support for packet handling, data buffering, burst transmissions, clear channel assessment, link quality indication, and wake-on-radio. The main operating parameters of the CC1120 device can be controlled through an SPI interface. In a typical system, the CC1120 device is used with a microcontroller and only a few external passive components.

The CC1120 device is a fully integrated single-chip radio transceiver designed for high performance at very low-power and low-voltage operation in cost-effective wireless systems. All filters are integrated, thus removing the need for costly external SAW and IF filters. The device is mainly intended for Industrial, Scientific, and Medical (ISM) applications and Short Range Device (SRD) frequency bands at 164 to 192 MHz, 274 to 320 MHz, 410 to 480 MHz, and 820 to 960 MHz.

The CC1120 device provides extensive hardware support for packet handling, data buffering, burst transmissions, clear channel assessment, link quality indication, and wake-on-radio. The main operating parameters of the CC1120 device can be controlled through an SPI interface. In a typical system, the CC1120 device is used with a microcontroller and only a few external passive components.

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Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Datum
* Data sheet CC1120 High-Performance RF Transceiver for Narrowband Systems datasheet (Rev. H) PDF | HTML 20 Jul 2015
* Errata CC112x, CC1175 Silicon Errata (Rev. D) 24 Apr 2015
* User guide CC112x/CC1175 Low-Power High Performance Sub-1 GHz RF Transceivers User’s Guide (Rev. E) 26 Sep 2013
Application note Conducted Emissions Testing for DC-DC Regulated Sub-1 GHz Wireless Systems in Building Automation PDF | HTML 01 Aug 2024
Application note Antenna Impedance Measurement and Matching PDF | HTML 22 Mär 2022
Application note DN035 -- Antenna Quick Guide (Rev. B) 09 Feb 2022
Application note Debugging Communication Range (Rev. A) PDF | HTML 23 Mai 2019
Application note DN403 -- CC112x/CC120x On-Chip Temperature Sensor (Rev. D) 24 Okt 2018
White paper Wireless Connectivity For The Internet of Things, One Size Does Not Fit All (Rev. A) 16 Okt 2017
Application note CC-Antenna-DK2 and Antenna Measurements Summary (Rev. A) 02 Okt 2017
Application note Achieving Optimum Radio Range (Rev. A) 05 Sep 2017
Technical article Smart sensing with ultra-low-power MCUs – part 2: smart fault indicators PDF | HTML 11 Apr 2017
White paper Smart Fault Indicator with MSP430 FRAM Microcontrollers 26 Sep 2016
User guide CC112x TI-SIGFOX SDK Demo Getting Started User’s Guide 27 Mai 2016
Technical article Long-range Sub-1 GHz connectivity in the real world PDF | HTML 04 Dez 2015
White paper Diversifying the IoT with Sub-1 GHz technology 04 Nov 2015
Application note CC112x-CC1190 Boost Software Examples 19 Okt 2015
Application note CC1120-CC1190 BoosterPack 05 Okt 2015
Application note Asynchronous channel hopping system for FCC 15.247 compliance 07 Jul 2015
Technical article UNB (ultra-narrow band) long range communication for a smarter City PDF | HTML 24 Apr 2015
Application note TI LPRF EASYMODE 12 Dez 2014
Application note CC112X/CC120X On-Chip Battery Monitor 03 Dez 2014
White paper 6LoWPAN Demystified - 6LoWPAN Demystifed – A Low Power IP Mesh Network 28 Okt 2014
Application note Antenna Diversity 23 Okt 2014
Application note Final Test Considerations for Wireless Technology Products 01 Okt 2014
White paper Long-Range RF Communication: Why Narrowband is the de Facto Standard 08 Mär 2014
Application note CC112x/CC120x RX Sniff mode with Smart Preamble 23 Okt 2013
Application note CC112x/CC120x RX Sniff Mode (Rev. A) 09 Okt 2013
Application note AN112 -- Using CC1190 Front End With CC112x/CC120x Under EN 300 220 (Rev. C) 21 Jun 2013
Application note AN110 – Using CC1190 Front End with CC112x/CC120x under FCC 15.247 (Rev. B) 13 Jun 2013
Application note AN115 -- CC112x/CC1175/CC120x Operation in 274-320 MHz Frequency Band (Rev. A) 13 Jun 2013
Application note AN121 – Wireless M-Bus Implementation with CC112x/CC120x High Performance Transc 20 Feb 2013
Application note DN510 -- CC112X RSSI and CS Response Time 05 Dez 2012
Application note DN038 -- Miniature Helical PCB Antenna for 868 MHz or 915/920 MHz 27 Nov 2012
Application note DN040 -- Reduced Battery Current Using CC112x, CC1175_and CC1200 with TPS62730 02 Okt 2012
Application note DN039 -- IPC for 868/915 MHz operation with the CC112x, CC117x and CC12xx 20 Aug 2012

Design und Entwicklung

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

Evaluierungsplatine

BOOSTXL-CC1120-90 — BoosterPack für Anwendungen von 902 MHz bis 928 MHz

Das CC1120-CC1190 BoosterPack™-Modul ist für die Verwendung mit den MSP-EXP430F5529 und MSP-EXP430G2553 LauchPad™-Entwicklungskits und für den Betrieb als autarkes Modul unter Verwendung der Anwendungssoftware SmartRF Studio ausgelegt.  Das Modul ist mit einer integrierten PCB-Trace-Antenne (...)

Evaluierungsplatine

SMARTRFTRXEBK — SmartRF-Transceiver-Evaluierungsplatine

The SmartRF Transceiver Evaluation Board (TrxEB) is intended to be used together with Texas Instruments’ low-power RF transceivers for evaluation, performance testing and software development.

The following transceiver evaluation modules are supported:

  • CC1101EM*
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Benutzerhandbuch: PDF
Evaluierungsplatine

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Tochterkarte

CC1120EMK-169 — CC1120-Evaluierungsmodulkit, 169 MHz

The CC1120 Evaluation Module Kit for 169MHz can be used in conjunction with the CC1120 Development Kit to evaluate the performance of the Perfomance Line RF-IC at this particular frequency. The CC1120DK is required for operation and needs to be ordered separately.

 

This is not available in the (...)

Tochterkarte

CC1120EMK-420-470 — CC1120-Evaluierungsmodulkit, 420–470 MHz

The CC1120 Evaluation Module Kit for 420-470 MHz can be used in conjunction with the CC1120 Development Kit to evaluate the performance of the Perfomance Line RF-IC at this particular frequency. The CC1120DK is required for operation and needs to be ordered separately.

 

This CC1120 Evaluation Module (...)

Tochterkarte

CC1120EMK-868-915 — CC1120-Evaluierungsmodulkit, 868–915 MHz

The CC1120 Evaluation Module Kit for 868-915 MHz can be used in conjunction with the CC1120 Development Kit to evaluate the operation of the Perfomance Line RF-IC at these particular frequency bands. The CC1120DK is required for operation and needs to be ordered separately.

Debug-Tastkopf

CC-DEBUGGER — Debugger und Programmiersystem für RF-System-on-Chips

The CC Debugger is a small programmer and debugger for the TI Low Power RF System-on-Chips. It can be used together with IAR Embedded Workbench for 8051 (version 7.51A or later) for debugging and SmartRF Flash Programmer for flash programming. The CC Debugger can also be used for controlling (...)

Benutzerhandbuch: PDF
Schnittstellenadapter

BOOST-CCEMADAPTER — EM Adapter BoosterPack

The purpose of the EM adapter board is to provide an-easy-to-use bridge between any of the TI MCU LaunchPads and the wide variety of TI RF evaluation modules (EM), for instance the CCxxxx Low-Power RF evaluation modules. No specific software is provided, so it is up to the user to write the (...)
Benutzerhandbuch: PDF | HTML
Anwendungssoftware und Frameworks

WMBUS — Drahtlose M-Bus-Protokollsoftware

Der drahtlose M-Bus-Standard (EN 13757-4:2014-2) legt die HF-Kommunikationsverbindung zwischen Wasser-, Gas-, Wärme- und Stromzählern und den Datenerfassungsgeräten fest. Er ist in Europa für Smart Metering- oder Advanced Metering Infrastructure (AMI)-Anwendungen weit verbreitet. Wireless M-Bus war (...)
Codebeispiel oder Demo

SWRC253 CC112x Software Examples

Unterstützte Produkte und Hardware

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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 (...)
Unterstützte Produkte und Hardware

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Support-Software

SWRC219 TrxEB RF PER Test Software

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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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  • 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 (...)
Schaltplan

CC1120EM 955 MHz Reference Design

SWRC223.ZIP (715 KB)
Schaltplan

CC1120-CC1190EM868 design files

SWRR092.ZIP (942 KB)
Referenzdesigns

TIDC-FCC-COMPLIANT-LRM-WITH-CC1120 — FCC 15.247-konformes Referenzdesign mit Long Range-Modus und CC1120 Hochleistungs-RF-Transceiver

Dieses Referenzdesign stellt ein Softwarebeispiel bereit, das einen Frequenzsprungtreiber für die Baustein-Produktfamilien CC112x und CC1200 implementiert. Der Treiber wurde geschrieben, um Benutzern die Realisierung von IoT-Drahtlos-Anwendungen zu ermöglichen, die mit dem Frequenzsprungsystem FCC (...)
Schaltplan: PDF
Referenzdesigns

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Referenzdesigns

CC1120EM-169-RD — CC1120EM 169 MHz-Referenzdesign

This RF Layout Reference Design demonstrates good decoupling and layout techniques for a low power RF device operating in the169 MHz frequency band.
Benutzerhandbuch: PDF
Schaltplan: PDF
Referenzdesigns

CC1120EM-868-915-RD — CC1120EM Referenzdesign für 868/915 MHz

This RF Layout Reference Design demonstrates good decoupling and layout techniques for a low power RF device operating in the 868 MHz and 915 MHz frequency bands.
Schaltplan: PDF
Referenzdesigns

TIDC-CC1120-LRM-420-470MHZ — Referenzdesign für drahtlose Sub-1-GHz-Kommunikation über große Reichweite mit dem CC1120 (420 bis 4

Narrowband is an industry standard way to get long range RF communication with higher immunity to interference versus wide band solutions.  Use this reference design to test out the longest range solution from TI for your Internet of Things (IoT) applications.  The tool for 420 to 470 (...)
Benutzerhandbuch: PDF
Schaltplan: PDF
Referenzdesigns

TIDC-CC1120-LRM-868-915MHZ — Referenzdesign für drahtlose Sub-1-GHz-Kommunikation über große Reichweite mit dem CC1120 (868 bis 9

Narrowband is an industry standard way to get long range RF communication with higher immunity to interference versus wide band solutions. Use this reference design to test out the longest range solution from TI for your Internet of Things (IoT) applications. The tool for 868 to 915 MHz uses (...)
Benutzerhandbuch: PDF
Schaltplan: PDF
Referenzdesigns

TIDC-MULTIBAND-WMBUS — Referenzdesign für HF-Subsystem zur Multiband-Funkübertragung (169, 433 und 868 MHz) im wM-Bus mit S

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Design guide: PDF
Schaltplan: PDF
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TIDC-WMBUS-169MHZ — ETSI Kat. 1 Empfänger-fähiges HF-Subsystem wM-Bus 169 MHz für intelligente Gas- und Wasserzähler

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Design guide: PDF
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Referenzdesigns

TIDM-LPBP-EMADAPTER — Evaluierungsmodul (EM)-Adapter

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Schaltplan: PDF
Gehäuse Pins CAD-Symbole, Footprints und 3D-Modelle
VQFN (RHB) 32 Ultra Librarian

Bestellen & Qualität

Beinhaltete Information:
  • RoHS
  • REACH
  • Bausteinkennzeichnung
  • Blei-Finish/Ball-Material
  • MSL-Rating / Spitzenrückfluss
  • MTBF-/FIT-Schätzungen
  • Materialinhalt
  • Qualifikationszusammenfassung
  • Kontinuierliches Zuverlässigkeitsmonitoring
Beinhaltete Information:
  • Werksstandort
  • Montagestandort

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