제품 상세 정보

Protocols Proprietary, Wireless M-Bus Modulation scheme (G)MSK, 2(G)FSK, 4(G)FSK, ASK, OOK Frequency bands 300-348, 387-464, 779-928 Type Transceiver TX power (max) (dBm) 12 Sensitivity (best) (dBm) -116 RX current (lowest) (mA) 14.3 Data rate (max) (Mbps) 0.6 Rating Catalog Operating temperature range (°C) -40 to 85 Edge AI enabled No
Protocols Proprietary, Wireless M-Bus Modulation scheme (G)MSK, 2(G)FSK, 4(G)FSK, ASK, OOK Frequency bands 300-348, 387-464, 779-928 Type Transceiver TX power (max) (dBm) 12 Sensitivity (best) (dBm) -116 RX current (lowest) (mA) 14.3 Data rate (max) (Mbps) 0.6 Rating Catalog Operating temperature range (°C) -40 to 85 Edge AI enabled No
VQFN (RGP) 20 16 mm² 4 x 4
  • RF Performance
    • High sensitivity
      • –116 dBm at 0.6 kBaud, 433 MHz, 1% packet error rate
      • –112 dBm at 1.2 kBaud, 868 MHz, 1% packet error rate
    • Low current consumption (14.7 mA in RX, 1.2 kBaud, 868 MHz)
    • Programmable output power up to +12 dBm for all supported frequencies
    • Excellent receiver selectivity and blocking performance
    • Programmable data rate from 0.6 to 600 kbps
    • Frequency bands: 300-348 MHz, 387-464 MHz and 779-928 MHz
  • Analog Features
    • 2-FSK, 4-FSK, GFSK, and MSK supported as well as OOK
      and flexible ASK shaping
    • Suitable for frequency hopping systems due to a fast settling
      frequency synthesizer; 75 µs settling time
    • Automatic Frequency Compensation (AFC) can be used to align the frequency
      synthesizer to the received signal centre frequency
    • Integrated analog temperature sensor
  • Digital Features
    • Flexible support for packet oriented systems; On-chip support for
      sync word detection, address check, flexible packet length, and
      automatic CRC handling
    • Efficient SPI interface; All registers can be programmed with
      one "burst" transfer
    • Digital RSSI output
    • Programmable channel filter bandwidth
    • Programmable Carrier Sense (CS) indicator
    • Programmable Preamble Quality Indicator (PQI) for improved protection
      against false sync word detection in random noise
    • Support for automatic Clear Channel Assessment (CCA) before transmitting
      (for listen-before-talk systems)
    • Support for per-package Link Quality Indication (LQI)
    • Optional automatic whitening and de-whitening of data
  • Low-Power Features
    • 200 nA sleep mode current consumption
    • Fast startup time; 240 µs from sleep to RX or TX
      mode (measured on EM reference design [1] and [2])
    • Wake-on-radio functionality for automatic low-power RX polling
    • Separate 64-byte RX and TX data FIFOs (enables burst mode data transmission)
  • General
    • Few external components; Completely on-chip frequency synthesizer, no external
      filters or RF switch needed
    • Green package: RoHS compliant and no antimony or bromine
    • Small size (QLP 4x4 mm package, 20 pins)
    • Suited for systems targeting compliance with EN 300 220 (Europe) and
      FCC CFR Part 15 (US)
    • Suited for systems targeting compliance with the Wireless MBUS standard EN 13757-4:2005
    • Support for asynchronous and synchronous serial receive/transmit mode for backwards
      compatibility with existing radio communication protocols
  • Improved Range using CC1190
    • The CC1190 [21] is a range extender for 850-950 MHz and is an ideal
      fit for CC1101 to enhance RF performance
    • High sensitivity–118 dBm at 1.2 kBaud, 868 MHz, 1% packet error
      rate–120 dBm at 1.2 kBaud, 915 MHz, 1% packet error rate
    • +20 dBm output power at 868 MHz
    • +27 dBm output power at 915 MHz
    • Refer to AN094 [22] and AN096 [23] for more performance figures of the
      CC1101 + CC1190 combination
  • Reduced Battery Current using TPS62730
    • The TPS62730 [26] is a step down converter with bypass mode for
      ultra low power wireless applications
    • In RX, the current drawn from a 3.6 V battery is typically less than
      11 mA when TPS62730 output voltage is 2.1 V. When connecting CC1101
      directly to a 3.6 V battery the current drawn is typically 17 mA
    • In TX, at maximum output power (+12 dBm), the current drawn from a
      3.6 V battery is typically 22 mA when TPS62730 output voltage is 2.1 V.
      When connecting CC1101 directly to a 3.6 V battery the current drawn is
      typically 34 mA
    • When CC1101 enters SLEEP mode, the TPS62730 can be put
      in bypass mode for very low power down current
    • The typical TPS62730 current consumption is 30 nA in bypass mode.
    • The CC1101 is connected to the battery via an integrated 2.1 Ω (typical)
      switch in bypass mode
  • RF Performance
    • High sensitivity
      • –116 dBm at 0.6 kBaud, 433 MHz, 1% packet error rate
      • –112 dBm at 1.2 kBaud, 868 MHz, 1% packet error rate
    • Low current consumption (14.7 mA in RX, 1.2 kBaud, 868 MHz)
    • Programmable output power up to +12 dBm for all supported frequencies
    • Excellent receiver selectivity and blocking performance
    • Programmable data rate from 0.6 to 600 kbps
    • Frequency bands: 300-348 MHz, 387-464 MHz and 779-928 MHz
  • Analog Features
    • 2-FSK, 4-FSK, GFSK, and MSK supported as well as OOK
      and flexible ASK shaping
    • Suitable for frequency hopping systems due to a fast settling
      frequency synthesizer; 75 µs settling time
    • Automatic Frequency Compensation (AFC) can be used to align the frequency
      synthesizer to the received signal centre frequency
    • Integrated analog temperature sensor
  • Digital Features
    • Flexible support for packet oriented systems; On-chip support for
      sync word detection, address check, flexible packet length, and
      automatic CRC handling
    • Efficient SPI interface; All registers can be programmed with
      one "burst" transfer
    • Digital RSSI output
    • Programmable channel filter bandwidth
    • Programmable Carrier Sense (CS) indicator
    • Programmable Preamble Quality Indicator (PQI) for improved protection
      against false sync word detection in random noise
    • Support for automatic Clear Channel Assessment (CCA) before transmitting
      (for listen-before-talk systems)
    • Support for per-package Link Quality Indication (LQI)
    • Optional automatic whitening and de-whitening of data
  • Low-Power Features
    • 200 nA sleep mode current consumption
    • Fast startup time; 240 µs from sleep to RX or TX
      mode (measured on EM reference design [1] and [2])
    • Wake-on-radio functionality for automatic low-power RX polling
    • Separate 64-byte RX and TX data FIFOs (enables burst mode data transmission)
  • General
    • Few external components; Completely on-chip frequency synthesizer, no external
      filters or RF switch needed
    • Green package: RoHS compliant and no antimony or bromine
    • Small size (QLP 4x4 mm package, 20 pins)
    • Suited for systems targeting compliance with EN 300 220 (Europe) and
      FCC CFR Part 15 (US)
    • Suited for systems targeting compliance with the Wireless MBUS standard EN 13757-4:2005
    • Support for asynchronous and synchronous serial receive/transmit mode for backwards
      compatibility with existing radio communication protocols
  • Improved Range using CC1190
    • The CC1190 [21] is a range extender for 850-950 MHz and is an ideal
      fit for CC1101 to enhance RF performance
    • High sensitivity–118 dBm at 1.2 kBaud, 868 MHz, 1% packet error
      rate–120 dBm at 1.2 kBaud, 915 MHz, 1% packet error rate
    • +20 dBm output power at 868 MHz
    • +27 dBm output power at 915 MHz
    • Refer to AN094 [22] and AN096 [23] for more performance figures of the
      CC1101 + CC1190 combination
  • Reduced Battery Current using TPS62730
    • The TPS62730 [26] is a step down converter with bypass mode for
      ultra low power wireless applications
    • In RX, the current drawn from a 3.6 V battery is typically less than
      11 mA when TPS62730 output voltage is 2.1 V. When connecting CC1101
      directly to a 3.6 V battery the current drawn is typically 17 mA
    • In TX, at maximum output power (+12 dBm), the current drawn from a
      3.6 V battery is typically 22 mA when TPS62730 output voltage is 2.1 V.
      When connecting CC1101 directly to a 3.6 V battery the current drawn is
      typically 34 mA
    • When CC1101 enters SLEEP mode, the TPS62730 can be put
      in bypass mode for very low power down current
    • The typical TPS62730 current consumption is 30 nA in bypass mode.
    • The CC1101 is connected to the battery via an integrated 2.1 Ω (typical)
      switch in bypass mode

CC1101 is a low-cost sub-1 GHz transceiver designed for very low-power wireless applications. The circuit is mainly intended for the ISM (Industrial, Scientific and Medical) and SRD (Short Range Device) frequency bands at 315, 433, 868, and 915 MHz, but can easily be programmed for operation at other frequencies in the 300-348 MHz, 387-464 MHz and 779-928 MHz bands.

The RF transceiver is integrated with a highly configurable baseband modem. The modem supports various modulation formats and has a configurable data rate up to 600 kbps.

CC1101 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 and the 64- byte transmit/receive FIFOs of CC1101 can be controlled via an SPI interface. In a typical system, the CC1101 will be used together with a microcontroller and a few additional passive components.

The CC1190 850-950 MHz range extender [21] can be used with CC1101 in long range applications for improved sensitivity and higher output power.

CC1101 is a low-cost sub-1 GHz transceiver designed for very low-power wireless applications. The circuit is mainly intended for the ISM (Industrial, Scientific and Medical) and SRD (Short Range Device) frequency bands at 315, 433, 868, and 915 MHz, but can easily be programmed for operation at other frequencies in the 300-348 MHz, 387-464 MHz and 779-928 MHz bands.

The RF transceiver is integrated with a highly configurable baseband modem. The modem supports various modulation formats and has a configurable data rate up to 600 kbps.

CC1101 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 and the 64- byte transmit/receive FIFOs of CC1101 can be controlled via an SPI interface. In a typical system, the CC1101 will be used together with a microcontroller and a few additional passive components.

The CC1190 850-950 MHz range extender [21] can be used with CC1101 in long range applications for improved sensitivity and higher output power.

다운로드 스크립트와 함께 비디오 보기 비디오

관심 가지실만한 유사 제품

open-in-new 대안 비교
비교 대상 장치와 동일한 기능을 지원하는 핀 대 핀
CC1100E 활성 중국 및 일본 주파수 대역용 저전력 1GHz 이하 무선 트랜시버 This product is a sub-1 GHz RF transceiver that is tuned to different frequency bands for China and Japan
CC110L 활성 밸류 라인 Sub-1GHz 무선 트랜시버 This product is a cost-optimized Sub-1 GHz RF transceiver with the same RF characteristics and pin-to-pin compatible with CC1101.

기술 자료

star =TI에서 선정한 이 제품의 인기 문서
검색된 결과가 없습니다. 검색어를 지우고 다시 시도하세요.
53개 모두 보기
상위 문서 유형 직함 형식 옵션 날짜
* Data sheet CC1101 Low-Power Sub-1 GHz RF Transceiver datasheet (Rev. I) 2013/11/05
* Errata CC1101 Silicon Errata (Rev. E) 2015/09/25
* Radiation & reliability report CC1101 Reliability Report 2008/02/26
Application note AN103 -- Basic RF Testing of CCxxxx Devices (Rev. A) PDF | HTML 2025/12/11
Selection guide 무선 연결 기술 선택 가이드 (Rev. B) 2022/03/07
Application note DN035 -- Antenna Quick Guide (Rev. B) 2022/02/09
Application note Debugging Communication Range (Rev. A) PDF | HTML 2019/05/23
Application note DN507 -- FEC Decoding 2019/03/21
White paper Migrating your proprietary solution to the SimpleLink™ WMCU 2018/11/07
Application note CC11xx Sensitivity Versus Frequency Offset and Crystal Accuracy (Rev. D) PDF | HTML 2018/09/27
Application note CRC Implementation (Rev. E) PDF | HTML 2018/09/27
Application note Achieving Optimum Radio Range (Rev. A) 2017/09/05
Application note CC112x-CC1190 Boost Software Examples 2015/10/19
Technical article How FRAM and LED lighting could bring about a new era in stadium lighting PDF | HTML 2015/07/14
Technical article Effortless energy savings with the tado° Smart Thermostat PDF | HTML 2015/05/29
Application note TI LPRF EASYMODE 2014/12/12
White paper 6LoWPAN Demystified - 6LoWPAN Demystifed – A Low Power IP Mesh Network 2014/10/28
Application note Antenna Diversity 2014/10/23
Application note Final Test Considerations for Wireless Technology Products 2014/10/01
Application note DN024 -- 868 MHz, 915 MHz and 955 MHz Monopole PCB Antenna (Rev. E) 2013/02/22
Application note DN038 -- Miniature Helical PCB Antenna for 868 MHz or 915/920 MHz 2012/11/27
Application note AN098 - Layout Review Techniques for Low Power RF Designs (Rev. A) 2012/08/02
Application note DN022 -- CC110x CC111x OOK ASK Register Settings (Rev. E) 2012/03/08
More literature Sub-1 GHz RF Value Line Brochure (Rev. B) 2012/02/13
Application note DN036 -- CC1101+CC1190 600 kbps Data Rate, +19 dBm Transmit (Rev. A) 2011/11/07
Application note DN025 -- Johanson Technology Matched Balun Filters (Rev. A) 2011/10/13
Application note DN023 -- 868 MHz, 915 MHz and 955 MHz Inverted F Antenna (Rev. C) 2011/08/30
Application note AN095 -- Continuous Data Streaming Applications - Using Serial Synchronous Mode (Rev. A) 2011/07/18
Application note AN096 Using CC1190 Front End with CC1101 under FCC 15.247 (Rev. A) 2011/05/02
Application note AN094 -- Using the CC1190 Front End with CC1101 under EN 300 220 2011/01/11
Application note AN058 -- Antenna Selection Guide (Rev. B) 2010/10/06
Application note DN031 -- CC-Antenna-DK Documentation and Antenna Measurements Summary 2010/08/26
Application note DN006 -- CC11xx Settings for FCC15.247 Solutions (Rev. B) 2010/08/17
Application note DN505 -- RSSI interpretation and timing (Rev. D) 2010/06/16
Application note DN509 -- Data Whitening and Random TX Mode 2010/04/12
Application note AN085 -- Implementing Diversity Using Low Power Radios 2010/01/26
Application note DN107 -- DMA and Radio Configuration (Rev. A) 2009/12/17
Application note DN010 -- Close-in Reception with CC1101 (Rev. B) 2009/07/21
Application note DN009 -- Upgrading from CC1100 to CC1101 (Rev. A) 2009/07/16
Application note DN500 -- Packet Transmission Basics (Rev. C) 2009/04/06
Application note AN069 -- Low Cost Long Range One Way Audio Communications at 900 MHz (Rev. B) 2009/03/24
Application note DN111 - Current Consumption for a Polling Receiver (Rev. A) 2009/03/24
Application note DN300 -- SmartRF04EB Troubleshooting (Rev. B) 2009/03/24
Application note DN400 -- Interfacing CC1100 - CC2500 with MSP430 (Rev. A) 2009/03/24
Application note DN501 -- PATABLE Access (Rev. B) 2009/03/24
Application note AN047 -- CC1100/CC2500 Wake on Radio (Rev. B) 2009/03/23
Application note AN067 - Wireless MBUS Implementation with cc1101 and MSP430 (Rev. A) 2008/11/06
Application note DN017 -- CC11xx 868/915 MHz RF Matching (Rev. A) 2008/03/31
Application note DN013 -- Programming output powers on CC1101 (Rev. A) 2008/01/02
Application note DN503 -- SPI Access (Rev. B) 2007/10/22
Application note DN504 -- FEC Implementation (Rev. A) 2007/10/22
Application note DN506 -- GDO Pin Usage (Rev. A) 2007/10/22
More literature CC1101 Material content 2007/07/16

설계 및 개발

추가 조건 또는 필수 리소스는 사용 가능한 경우 아래 제목을 클릭하여 세부 정보 페이지를 확인하세요.

평가 보드

SMARTRFTRXEBK — SmartRF 트랜시버 평가 보드

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*
  • CC11xLEM*
  • CC112xEM*
  • CC1175EM*
  • CC1200EM*
  • (...)
사용 설명서: PDF
TI.com에서 구매할 수 없음
디버그 프로브

CC-DEBUGGER — RF SoC(System-on-Chip)를 위한 디버거이자 프로그래머

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 (...)

사용 설명서: PDF
TI.com에서 구매할 수 없음
인터페이스 어댑터

BOOST-CCEMADAPTER — EM 어댑터 부스터팩

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 (...)
사용 설명서: PDF | HTML
TI.com에서 구매할 수 없음
코드 예제 또는 데모

SWRC021 CC1100 CC1101 CC1100E CC2500 Examples Libraries

지원되는 제품 및 하드웨어

지원되는 제품 및 하드웨어

지원 소프트웨어

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 (...)

지원되는 제품 및 하드웨어

지원되는 제품 및 하드웨어

지원 소프트웨어

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 (...)
지원되는 제품 및 하드웨어

지원되는 제품 및 하드웨어

지원 소프트웨어

SWRC219 TrxEB RF PER Test Software

지원되는 제품 및 하드웨어

지원되는 제품 및 하드웨어

계산 툴

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 (...)

지원되는 제품 및 하드웨어

지원되는 제품 및 하드웨어

다운로드 옵션
설계 툴

3P-WIRELESS-MODULES — 타사 무선 모듈 검색 툴

타사 무선 모듈 검색 툴은 개발자가 완제품 사양을 충족하는 제품을 식별하고 생산 준비가 완료된 무선 모듈을 조달하는 데 유용합니다. 검색 툴에 포함되어 있는 타사 모듈 공급업체는 TI 무선 연결 제품을 사용하여 무선 모듈을 설계 및 제조하는 전문성을 갖춘 독립 회사입니다.
설계 툴

SIMPLELINK-SUB1GHZ-DESIGN-REVIEWS — SimpleLink™ CC1xxx 장치에 대한 하드웨어 설계 검토

SimpleLink™ 1GHz 미만 하드웨어 설계 검토 프로세스 시작하기:
  • 1단계: 검토를 요청하기 전에 기술 문서 및 설계, 해당 제품 페이지에서 사용 가능한 개발 리소스를 검토하는 것이 중요합니다(아래 CC1xxx 제품 페이지 링크 참조).
  • 2단계: 하드웨어 설계 검토 요청 양식을 다운로드해 작성합니다
  • 3단계: 작성한 하드웨어 설계 검토 요청 양식과 필요한 문서를 함께 connectivity-sub1ghz-hw-review@list.ti.com으로 이메일로 보냅니다

SimpleLink 하드웨어 설계 검토 프로세스는 설계를 검토하고 (...)

회로도

RF3858-CC1101 design files (Rev. A)

SWRR085A.ZIP (1174 KB)
레퍼런스 디자인

CC-ANTENNA-DK-RD — 1 GHz 미만 및 2.4 GHz 미만 안테나 레퍼런스 디자인

The Antenna Board reference design contains various low-cost antenna solutions for both sub-1 GHz and 2.4 GHz short range wireless systems.
회로도: PDF
레퍼런스 디자인

TIDM-LPBP-EMADAPTER — EM(평가 모듈) 어댑터

This BoosterPack kit contains one "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 vide variety of TI RF evaluation modules (EM), for instance the CCxxxx Low-Power RF evaluation modules. No specific (...)
회로도: PDF
패키지 CAD 기호, 풋프린트 및 3D 모델
VQFN (RGP) 20 Ultra Librarian

주문 및 품질

포함된 정보:
  • RoHS
  • REACH
  • 디바이스 마킹
  • 납 마감/볼 재질
  • MSL 등급/피크 리플로우
  • MTBF/FIT 예측
  • 물질 성분
  • 인증 요약
  • 지속적인 신뢰성 모니터링
포함된 정보:
  • 팹 위치
  • 조립 위치

권장 제품에는 본 TI 제품과 관련된 매개 변수, 평가 모듈 또는 레퍼런스 디자인이 있을 수 있습니다.

지원 및 교육

TI 엔지니어의 기술 지원을 받을 수 있는 TI E2E™ 포럼

콘텐츠는 TI 및 커뮤니티 기고자에 의해 "있는 그대로" 제공되며 TI의 사양으로 간주되지 않습니다. 사용 약관을 참조하십시오.

품질, 패키징, TI에서 주문하는 데 대한 질문이 있다면 TI 지원을 방문하세요. ​​​​​​​​​​​​​​

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