产品详情

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 mm × 4 mm)
  • 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.

下载 观看带字幕的视频 视频

您可能感兴趣的相似产品

open-in-new 比较替代产品
功能与比较器件相同且具有相同引脚。
CC1100E 正在供货 适用于中国和日本频带的低功耗低于 1GHz 无线收发器 This product is a sub-1 GHz RF transceiver that is tuned to different frequency bands for China and Japan
CC110L 正在供货 超值系列低于 1GHz 无线收发器 This product is a cost-optimized Sub-1 GHz RF transceiver with the same RF characteristics and pin-to-pin compatible with CC1101.

技术文档

未找到结果。请清除搜索并重试。
查看全部 53
顶层文档 类型 标题 格式选项 下载最新的英语版本 日期
* 数据表 CC1101 Low-Power Sub-1 GHz RF Transceiver 数据表 (Rev. I) 2013-11-5
* 勘误表 CC1101 Silicon Errata (Rev. E) 2015-9-25
* 辐射与可靠性报告 CC1101 Reliability Report 2008-2-26
应用手册 CCxxxx 器件的基本射频测试 (Rev. A) PDF | HTML 英语版 (Rev.A) PDF | HTML 2025-12-29
选择指南 无线连接技术选择指南 (Rev. B) 英语版 (Rev.B) 2022-3-7
应用手册 DN035 -- Antenna Quick Guide (Rev. B) 2022-2-9
应用手册 Debugging Communication Range (Rev. A) PDF | HTML 2019-5-23
应用手册 DN507 -- FEC Decoding 2019-3-21
白皮书 Migrating your proprietary solution to the SimpleLink™ WMCU 2018-11-7
应用手册 CC11xx Sensitivity Versus Frequency Offset and Crystal Accuracy (Rev. D) PDF | HTML 2018-9-27
应用手册 CRC Implementation (Rev. E) PDF | HTML 2018-9-27
应用手册 Achieving Optimum Radio Range (Rev. A) PDF | HTML 2017-9-5
应用手册 CC112x-CC1190 Boost Software Examples PDF | HTML 2015-10-19
技术文章 How FRAM and LED lighting could bring about a new era in stadium lighting PDF | HTML 2015-7-14
技术文章 Effortless energy savings with the tado° Smart Thermostat PDF | HTML 2015-5-29
应用手册 TI LPRF EASYMODE 2014-12-12
白皮书 6LoWPAN Demystified - 6LoWPAN Demystifed – A Low Power IP Mesh Network 2014-10-28
应用手册 Antenna Diversity 2014-10-23
应用手册 Final Test Considerations for Wireless Technology Products 2014-10-1
应用手册 DN024 -- 868 MHz, 915 MHz and 955 MHz Monopole PCB Antenna (Rev. E) 2013-2-22
应用手册 DN038 -- Miniature Helical PCB Antenna for 868 MHz or 915/920 MHz 2012-11-27
应用手册 AN098 - Layout Review Techniques for Low Power RF Designs (Rev. A) 2012-8-2
应用手册 DN022 -- CC110x CC111x OOK ASK Register Settings (Rev. E) 2012-3-8
更多文献资料 Sub-1 GHz RF Value Line Brochure (Rev. B) 2012-2-13
应用手册 DN036 -- CC1101+CC1190 600 kbps Data Rate, +19 dBm Transmit (Rev. A) 2011-11-7
应用手册 DN025 -- Johanson Technology Matched Balun Filters (Rev. A) 2011-10-13
应用手册 DN023 -- 868 MHz, 915 MHz and 955 MHz Inverted F Antenna (Rev. C) 2011-8-30
应用手册 AN095 -- Continuous Data Streaming Applications - Using Serial Synchronous Mode (Rev. A) 2011-7-18
应用手册 AN096 Using CC1190 Front End with CC1101 under FCC 15.247 (Rev. A) 2011-5-2
应用手册 AN094 -- Using the CC1190 Front End with CC1101 under EN 300 220 2011-1-11
应用手册 AN058 -- Antenna Selection Guide (Rev. B) 2010-10-6
应用手册 DN031 -- CC-Antenna-DK Documentation and Antenna Measurements Summary 2010-8-26
应用手册 DN006 -- CC11xx Settings for FCC15.247 Solutions (Rev. B) 2010-8-17
应用手册 DN505 -- RSSI interpretation and timing (Rev. D) 2010-6-16
应用手册 DN509 -- Data Whitening and Random TX Mode 2010-4-12
应用手册 AN085 -- Implementing Diversity Using Low Power Radios 2010-1-26
应用手册 DN107 -- DMA and Radio Configuration (Rev. A) 2009-12-17
应用手册 DN010 -- Close-in Reception with CC1101 (Rev. B) 2009-7-21
应用手册 DN009 -- Upgrading from CC1100 to CC1101 (Rev. A) 2009-7-16
应用手册 DN500 -- Packet Transmission Basics (Rev. C) 2009-4-6
应用手册 DN400 -- Interfacing CC1100 - CC2500 with MSP430 (Rev. A) 2009-3-24
应用手册 AN069 -- Low Cost Long Range One Way Audio Communications at 900 MHz (Rev. B) 2009-3-24
应用手册 DN501 -- PATABLE Access (Rev. B) 2009-3-24
应用手册 DN300 -- SmartRF04EB Troubleshooting (Rev. B) 2009-3-24
应用手册 DN111 - Current Consumption for a Polling Receiver (Rev. A) 2009-3-24
应用手册 AN047 -- CC1100/CC2500 Wake on Radio (Rev. B) 2009-3-23
应用手册 AN067 - Wireless MBUS Implementation with cc1101 and MSP430 (Rev. A) 2008-11-6
应用手册 DN017 -- CC11xx 868/915 MHz RF Matching (Rev. A) 2008-3-31
应用手册 DN013 -- Programming output powers on CC1101 (Rev. A) 2008-1-2
应用手册 DN506 -- GDO Pin Usage (Rev. A) 2007-10-22
应用手册 DN504 -- FEC Implementation (Rev. A) 2007-10-22
应用手册 DN503 -- SPI Access (Rev. B) 2007-10-22
更多文献资料 CC1101 Material content 2007-7-16

设计与开发

如需其他信息或资源,请点击以下任一标题进入详情页面查看(如有)。

评估板

SMARTRFTRXEBK — SmartRF 收发器评估板

SmartRF 收发器评估板 (TrxEB) 旨在与德州仪器 (TI) 的低功耗 RF 收发器配合使用,用于评估、性能测试和软件开发。

支持以下收发器评估模块:

  • CC1101EM*
  • CC11xLEM*
  • CC112xEM*
  • CC1175EM*
  • CC1200EM*
  • CC2500EM
  • CC2520EM

(*) 还支持 CC1190 的所有频率变体和组合

评估模块可以在 TI Store 中以 EMK(评估模块套件)的形式单独购买。

SmartRF TrxEB 可以用来做什么?

  • 在 MSP430F5438A MCU 上开发无线电协议。请参阅相关收发器网页上的代码示例。
  • 使用 SmartRF Studio 来评估收发器的性能。
  • (...)
用户指南: PDF
支持的产品和硬件
有库存
限制:
??asset.out-of-stock-ti_zh_CN??
无货
调试探针

CC-DEBUGGER — 用于射频片上系统的调试器和编程器

CC 调试器是用于 TI 低功耗射频片上系统的小型编程器和调试器。它可以与用于 8051(7.51A 或更高版本)的 IAR 嵌入式工作平台一起使用以进行调试,并可与 SmartRF 闪存编程器一起使用以进行闪存编程。CC 调试器还可用于控制 SmartRF Studio 中的所选器件。

支持的产品和硬件
有库存
限制:
??asset.out-of-stock-ti_zh_CN??
无货
接口适配器

BOOST-CCEMADAPTER — EM 适配器 BoosterPack

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 wide variety of TI RF evaluation modules (EM), for instance the CCxxxx Low-Power RF evaluation modules. No specific (...)

支持的产品和硬件
有库存
限制:
??asset.out-of-stock-ti_zh_CN??
无货
代码示例或演示

SWRC021 — CC1100 CC1101 CC1100E CC2500 Examples Libraries

支持的产品和硬件
支持软件

PACKET-SNIFFER — SmartRF™ Packet Sniffer 2.18.1

SmartRF 数据包监听器 2

SmartRF 数据包监听器 2 包括用于采集和显示通过无线电传输的数据包的软件和固件。相应的捕获设备通过 USB 连接至 PC。SmartRF 数据包监听器 2 支持 CC13xx 和 CC26xx 系列器件作为捕获器件,并使用 Wireshark 显示和过滤数据包。下表列出了支持的协议。

SmartRF 数据包监听器 2 包括以下组件:

  • PC 工具(SmartRF 监听器助手),用于配置捕获器件并与之通信
  • 可将 CC13xx 或 CC26xx Launchpad 用作捕获器件的固件
  • 固件源代码
  • 适用于 Wireshark 的解析器(IEEE 802.15.4ge 和 (...)
支持的产品和硬件
支持软件

RF-RANGE-ESTIMATOR — RF Range Estimator

该工具用于完成使用 TI 无线器件的室内和室外射频链路的距离估算。室外计算基于视线 (LOS)。对于室内估算,可以选择介于 Tx 和 Rx 单元之间的建筑材料。Tx 和 Rx 单元之间复合材料的衰减越大,距离就越短。
支持的产品和硬件
支持软件

SWRC219 — TrxEB RF PER Test Software

支持的产品和硬件
计算工具

SMARTRF-STUDIO-7 — SmartRF Studio

SmartRF™ Studio 是一款 Windows 应用程序,可帮助射频系统设计人员在所有 TI CC1xxx 和 CC2xxx 低功耗射频器件的设计过程中的早期阶段轻松评估无线电。它简化了配置寄存器值和命令的生成以及射频系统的实际测试和调试。

SmartRF Studio 支持以下 TI 器件:

 

资源

支持的产品和硬件
设计工具

3P-WIRELESS-MODULES — 第三方无线模块搜索工具

第三方无线模块搜索工具可帮助开发人员识别符合其终端设备规格的产品,并采购可立即投产的无线模块。搜索工具中包含的第三方模块供应商是独立的第三方公司,这些公司在利用 TI 无线连接产品设计和制造无线模块领域拥有深厚的专业知识。

支持的产品和硬件
设计工具

SIMPLELINK-SUB1GHZ-DESIGN-REVIEWS — SimpleLink™ CC1xxx 器件的硬件设计审查

开始 SimpleLink™ 低于 1GHz 硬件设计审查流程:

  • 第 1 步:在申请审核前,重要的一点是审核相应产品页面上的技术文档和设计与开发资源(请参阅下面的 CC1xxx 产品页面链接)。
  • 第 2 步:下载并填写硬件设计评审申请表。
  • 第 3 步:通过电子邮件将填写好的硬件设计审查申请表和所需文档发送至:connectivity-sub1ghz-hw-review@list.ti.com

在 SimpleLink 硬件设计审查流程中,您可与主题专家一对一沟通,专家会帮您审查设计并提供重要反馈。在此处可找到申请审核的简单 3 步流程以及指向相关技术文档和资源的链接。

申请审查 Sub-1GHz (...)

支持的产品和硬件
参考设计

CC-ANTENNA-DK-RD — 低于 1GHz 和 2.4GHz 的天线参考设计

该天线板参考设计包含多个低成本天线解决方案,适用于低于 1 GHz 及 2.4 GHz 近距离无线系统。

支持的产品和硬件
参考设计

CC1101-CC1190EM869RD — CC1101-CC1190EM 869MHz 参考设计

CC1101-CC1190EM 869MHz 参考设计包含 CC1101-CC1190EM 869MHz 评估模块的原理图和布局文件。该参考设计展示了用于 CC1101-CC1190 去耦和射频布局的精湛技术。为了实现最佳射频性能,这些部件应当被精确复制。这是一个具有分立式平衡-非平衡变压器和 SMA 天线连接器(专为单端 50 欧姆天线而设计)的四层参考设计。射频部分经过设计和表征,可在 869.4MHz - 869.65MHz 子频带 (G3) 内运行,但也可用于欧洲 863MHz - 870MHz 频带中的其他频率。
支持的产品和硬件
参考设计

TIDM-LPBP-EMADAPTER — 评估模块 (EM) 适配器

此 BoosterPack 套件包含一个“EM 适配器 BoosterPack”。EM 适配器板可用于在任何 TI MCU LaunchPad 与各种 TI 射频评估模块 (EM)(例如 CCxxxx 低功耗射频评估模块)之间提供一个易于使用的桥接器。因此需要用户自行编写适当的代码来实现 MCU 与射频器件之间的互连。

支持的产品和硬件
封装 引脚 CAD 符号、封装和 3D 模型
VQFN (RGP) 20 Ultra Librarian

订购和质量

推荐产品可能包含与 TI 此产品相关的参数、评估模块或参考设计。

支持和培训

可获得 TI 工程师技术支持的 TI E2E™ 论坛

所有内容均由 TI 和社区贡献者按“原样”提供,并不构成 TI 规范。请参阅使用条款

如果您对质量、包装或订购 TI 产品有疑问,请参阅 TI 支持。​​​​​​​​​​​​​​

视频