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LP-CC2652RSIP
Development Boards, Kits, Programmers

LP-CC2652RSIP

Obsolete
Texas Instruments

LAUNCHPAD DEV KIT FOR CC2652RSIP

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LP-CC2652RSIP
Development Boards, Kits, Programmers

LP-CC2652RSIP

Obsolete
Texas Instruments

LAUNCHPAD DEV KIT FOR CC2652RSIP

Deep-Dive with AI

DocumentsDatasheet

Technical Specifications

Parameters and characteristics for this part

SpecificationLP-CC2652RSIP
For Use With/Related ProductsCC2652RSIP
Frequency2.4 GHz
Supplied ContentsCable(s), Board(s)
TypeBluetooth® 5.x (BLE), Transceiver, 802.15.4 (Thread, Zigbee®)

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

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Description

General part information

CC2652RSIP Series

The SimpleLink™ CC2652R7 device is a multiprotocol 2.4-GHz wireless microcontroller (MCU) supportingThread,Zigbee, Matter,Bluetooth 5.2 Low Energy, IEEE 802.15.4g, IPv6-enabled smart objects (6LoWPAN),TI 15.4-Stack(2.4 GHz), and concurrent multiprotocol through a Dynamic Multiprotocol Manager (DMM) driver. The CC2652R7 is based on an Arm ® Cortex ® M4F main processor and optimized for low-power wireless communication and advanced sensing ingrid infrastructure,building automation,retail automation,personal electronicsandmedical applications.

The CC2652R7 has a software defined radio powered by an Arm® Cortex® M0, which allows support for multiple physical layers and RF standards. The device supports operation in the 2360 to 2500-MHz frequency band. PHY and frequency switching can be done runtime through a dynamic multiprotocol manager (DMM) driver. The CC2652R7 supports +5 dBm TX at 9.7 mA in the 2.4-GHz band. CC2652R7 has a receive sensitivity of -104 dBm for 125-kbps Bluetooth® Low Energy Coded PHY.

The CC2652R7 has a low sleep current of 0.9 µA with RTC and 144KB RAM retention. In addition to the main Cortex® M4F processor, the device also has an autonomous ultra-low power Sensor Controller CPU with fast wake-up capability. As an example, the sensor controller is capable of 1-Hz ADC sampling at 1-µA system current.

Documents

Technical documentation and resources