Product details

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  • Simple integration of ZigBee into any design
  • Running the mature and stable ZigBee 2006 compliant TI Z-Stack
  • SPI or UART interface to any microcontroller running the application
  • Simple API and full ZigBee API supported
  • Can implement any type of ZigBee device: Coordinator, Router or End Device
  • Automatically enters low power mode (<0.5 µA) in idle periods when configured as End Device
  • Radio
    • Fully integrated and robust IEEE 802.15.4-compliant 2.4 GHz DSSS RF transceiver
    • Excellent receiver sensitivity and best in class robustness to interferers
  • Power Supply
    • Wide supply voltage range (2.0V - 3.6V)
    • Low current consumption (RX: 27 mA, TX: 27 mA) and fast transition times.
  • External System
    • Very few external components
    • RoHS compliant 7×7mm QLP48 package
  • Peripherals and Supporting Functions
    • Port expander with 4 general I/O pins, two with increased sink/source capability
    • Battery monitor and temperature sensor
    • 7-12 bits ADC with two channels
    • Robust power-on-reset and brownout-reset circuitry
  • Tools and Development
    • Packet sniffer PC software
    • Reference designs
  • Applications
    • ZigBee™ systems
    • Home/Building automation
    • Industrial control and monitoring
    • Low power wireless sensor networks
    • Set-top boxes and remote controls
    • Automated Meter Reading

  • Simple integration of ZigBee into any design
  • Running the mature and stable ZigBee 2006 compliant TI Z-Stack
  • SPI or UART interface to any microcontroller running the application
  • Simple API and full ZigBee API supported
  • Can implement any type of ZigBee device: Coordinator, Router or End Device
  • Automatically enters low power mode (<0.5 µA) in idle periods when configured as End Device
  • Radio
    • Fully integrated and robust IEEE 802.15.4-compliant 2.4 GHz DSSS RF transceiver
    • Excellent receiver sensitivity and best in class robustness to interferers
  • Power Supply
    • Wide supply voltage range (2.0V - 3.6V)
    • Low current consumption (RX: 27 mA, TX: 27 mA) and fast transition times.
  • External System
    • Very few external components
    • RoHS compliant 7×7mm QLP48 package
  • Peripherals and Supporting Functions
    • Port expander with 4 general I/O pins, two with increased sink/source capability
    • Battery monitor and temperature sensor
    • 7-12 bits ADC with two channels
    • Robust power-on-reset and brownout-reset circuitry
  • Tools and Development
    • Packet sniffer PC software
    • Reference designs
  • Applications
    • ZigBee™ systems
    • Home/Building automation
    • Industrial control and monitoring
    • Low power wireless sensor networks
    • Set-top boxes and remote controls
    • Automated Meter Reading

The CC2480 (formerly known as CCZACC06) is a cost-effective, low power, Z-Accel ZigBee Processor that provides full ZigBee functionality with a minimal development effort.

Z-Accel is a solution where TI's ZigBee stack, Z-Stack, runs on a ZigBee Processor and the application runs on an external microcontroller. The CC2480 handles all the timing critical and processing intensive ZigBee protocol tasks, and leaves the resources of the application microcontroller free to handle the application.

Z-Accel makes it easy to add ZigBee to new or existing products at the same time as it provides great flexibility in choice of microcontroller.

CC2480 interfaces any microcontroller through an SPI or UART interface. There is no need to learn a new microcontroller or new tools. CC2480 can for example be combined with an MSP430.

CC2480 supports TI's SimpleAPI. SimpleAPI has only 10 API calls to learn, which drastically simplifies the development of ZigBee applications.

The CC2480 (formerly known as CCZACC06) is a cost-effective, low power, Z-Accel ZigBee Processor that provides full ZigBee functionality with a minimal development effort.

Z-Accel is a solution where TI's ZigBee stack, Z-Stack, runs on a ZigBee Processor and the application runs on an external microcontroller. The CC2480 handles all the timing critical and processing intensive ZigBee protocol tasks, and leaves the resources of the application microcontroller free to handle the application.

Z-Accel makes it easy to add ZigBee to new or existing products at the same time as it provides great flexibility in choice of microcontroller.

CC2480 interfaces any microcontroller through an SPI or UART interface. There is no need to learn a new microcontroller or new tools. CC2480 can for example be combined with an MSP430.

CC2480 supports TI's SimpleAPI. SimpleAPI has only 10 API calls to learn, which drastically simplifies the development of ZigBee applications.

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Technical documentation

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Type Title Date
* Data sheet CC2480 Data Sheet datasheet (Rev. A) 04 Apr 2008
* Errata CC2480 Errata Note (Rev. B) 07 Apr 2008
* Radiation & reliability report CC2480 Reliability Report (Rev. A) 04 Apr 2008
Application note 2.4-GHz Inverted F Antenna (Rev. D) 07 Jan 2019
Technical article An out-of-the-box Internet of Things: building a seamless and secure smart home network 12 Jun 2018
Technical article Thread vs. Zigbee – what’s the difference? 16 May 2018
Technical article Your microcontroller deserves a nap – designing “sleepy” wireless applications 28 Mar 2018
Technical article SimpleLink™ MCU SDKs: Breaking down TI Drivers 12 Apr 2017
Application note AN058 -- Antenna Selection Guide (Rev. B) 06 Oct 2010
Application note AN040 - Folded dipole antenna for CC2400, CC2420, CC2430/31 and CC2480 (Rev. D) 04 Apr 2008
Application note AN043 -- Small Size 2.4 GHz PCB Antenna (Rev. D) 04 Apr 2008
Certificate CC2480 RoHS Confirmation (Rev. A) 04 Apr 2008

Design & development

For additional terms or required resources, click any title below to view the detail page where available.

Code example or demo

CC2480 Software Examples

SWRU169.ZIP (256 KB)
Bill of materials (BOM)

CC2480 Material Content (Rev. A)

SWRR056A.PDF (113 KB)
Package Pins Download
VQFN (RTC) 48 View options

Ordering & quality

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  • REACH
  • Device marking
  • Lead finish/Ball material
  • MSL rating/Peak reflow
  • MTBF/FIT estimates
  • Material content
  • Qualification summary
  • Ongoing reliability monitoring

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