Product details

Protocols Proprietary Modulation scheme (G)MSK, 2(G)FSK, 4(G)FSK, ASK, OOK Frequency bands 300-348, 387-464, 779-928 Type Receiver 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 Modulation scheme (G)MSK, 2(G)FSK, 4(G)FSK, ASK, OOK Frequency bands 300-348, 387-464, 779-928 Type Receiver 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
    • Receive Sensitivity Down to −116 dBm at
      0.6 kbps
    • Programmable Data Rate from 0.6 to 600 kbps
    • Frequency Bands: 300–348 MHz,
      387–464 MHz, and 779–928 MHz
    • 2-FSK, 4-FSK, GFSK, MSK, and OOK Supported
  • Digital Features
    • Flexible Support for Packet Oriented Systems
    • On-chip Support for Sync Word Detection, Flexible Packet Length, and Automatic CRC Calculation
  • Low-Power Features
    • 200-nA Sleep Mode Current Consumption
    • Fast Startup Time; 240 μs From Sleep to RX Mode
    • 64-Byte RX FIFO
  • 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 4- x 4-mm Package, 20 Pins)
    • Suited for Systems Targeting Compliance with EN 300 220 (Europe) and FCC CFR Part 15 (US)
    • Support for Asynchronous and Synchronous Serial Transmit Mode for Backward Compatibility with Existing Radio Communication Protocols
  • RF Performance
    • Receive Sensitivity Down to −116 dBm at
      0.6 kbps
    • Programmable Data Rate from 0.6 to 600 kbps
    • Frequency Bands: 300–348 MHz,
      387–464 MHz, and 779–928 MHz
    • 2-FSK, 4-FSK, GFSK, MSK, and OOK Supported
  • Digital Features
    • Flexible Support for Packet Oriented Systems
    • On-chip Support for Sync Word Detection, Flexible Packet Length, and Automatic CRC Calculation
  • Low-Power Features
    • 200-nA Sleep Mode Current Consumption
    • Fast Startup Time; 240 μs From Sleep to RX Mode
    • 64-Byte RX FIFO
  • 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 4- x 4-mm Package, 20 Pins)
    • Suited for Systems Targeting Compliance with EN 300 220 (Europe) and FCC CFR Part 15 (US)
    • Support for Asynchronous and Synchronous Serial Transmit Mode for Backward Compatibility with Existing Radio Communication Protocols

The CC113L is a cost optimized sub-1 GHz RF receiver for the 300–348 MHz, 387–464 MHz, and 779–928 MHz frequency bands. The circuit is based on the popular CC1101 RF transceiver, and RF performance characteristics are identical. The CC115L transmitter together with the CC113L receiver enable a low-cost RF link.

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

The CC113L provides extensive hardware support for packet handling, data buffering, and burst transmissions.

The main operating parameters and the 64-byte receive FIFO of CC113L can be controlled through a serial peripheral interface (SPI). In a typical system, the CC113L will be used together with a microcontroller and a few additional passive components.

The CC113L is a cost optimized sub-1 GHz RF receiver for the 300–348 MHz, 387–464 MHz, and 779–928 MHz frequency bands. The circuit is based on the popular CC1101 RF transceiver, and RF performance characteristics are identical. The CC115L transmitter together with the CC113L receiver enable a low-cost RF link.

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

The CC113L provides extensive hardware support for packet handling, data buffering, and burst transmissions.

The main operating parameters and the 64-byte receive FIFO of CC113L can be controlled through a serial peripheral interface (SPI). In a typical system, the CC113L will be used together with a microcontroller and a few additional passive components.

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Technical documentation

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Top documentation Type Title Format options Date
* Data sheet CC113L Value Line Receiver datasheet (Rev. B) PDF | HTML May 8, 2014
* Errata CC113L Errata Notes May 26, 2011
Selection guide Wireless Connectivity Technology Selection Guide (Rev. B) Feb 14, 2022
Application note Debugging Communication Range (Rev. A) PDF | HTML May 23, 2019
White paper Migrating your proprietary solution to the SimpleLink™ WMCU Nov 7, 2018
Application note CC-Antenna-DK2 and Antenna Measurements Summary (Rev. A) PDF | HTML Oct 2, 2017
Application note TI LPRF EASYMODE Dec 12, 2014
Application note Antenna Diversity Oct 23, 2014
Application note DN038 -- Miniature Helical PCB Antenna for 868 MHz or 915/920 MHz Nov 27, 2012

Design & development

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SMARTRFTRXEBK — SmartRF Transceiver Evaluation Board

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:

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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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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 (...)

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To get started with the SimpleLink™ Sub-1GHz hardware design review process:

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