SWRU633 September   2026

 

  1.   1
  2.   Description
  3.   Get Started
  4.   Features
  5.   Applications
  6.   6
  7. 1Evaluation Module Overview
    1. 1.1 Introduction
    2. 1.2 Kit Contents
    3. 1.3 Specification
    4. 1.4 Device Information
  8. 2Hardware
    1. 2.1 Power Requirements
    2. 2.2 Hardware and Debug Setup
      1. 2.2.1 Setup to use a LaunchPad as the Host Device
      2. 2.2.2 Setup to use the BoosterPack with SmartRF Studio 8
    3. 2.3 BoosterPack Connection Pinout
    4. 2.4 GPIO Connections for CC1407P
    5. 2.5 LEDs
    6. 2.6 RX SAW Filter
  9. 3Software
    1. 3.1 Getting Started
    2. 3.2 SmartRF Studio 8
      1. 3.2.1 Code Export from SmartRF Studio
    3. 3.3 Transceiver Firmware Update
    4. 3.4 Updating the Transceiver Firmware using SmartRF Studio 8
    5. 3.5 Updating the Transceiver Firmware using the ssbl_host Example
    6. 3.6 Porting Guidelines
  10. 4Hardware Design Files
    1. 4.1 Schematics
    2. 4.2 PCB Layouts
    3. 4.3 Bill of Materials (BOM)
  11. 5Additional Information
    1. 5.1 Known Hardware or Software Issues
    2.     Trademarks

Power Requirements

The BoosterPack is designed to be powered from an XDS debugger (LP-XDS110 or LP-XDS110ET) through the 20-pin edge connector, from a LaunchPad through the GND and 3V3 pin header, or from an external power supply directly connected to the GND and 3V3 pin header.

When powering from an XDS debugger, the voltage is fixed to 3.3V. When powering from a Launchpad, the voltage is also fixed to 3.3V if the Launchpad is connected to an XDS debugger. If an external power supply is used, care must be taken to keep the board voltage within the operating range (1.8V to 3.6V).