Texas Instruments SimpleLink CC3100MOD User Manual

Texas Instruments SimpleLink CC3100MOD User Manual

Wi-fi network processor module. boosterpack hardware.

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CC3100MOD SimpleLink™ Wi-Fi® Network
Processor Module - BoosterPack Hardware
User's Guide
Literature Number: SWRU396B
December 2014 – Revised May 2018
Table of Contents
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Summary of Contents for Texas Instruments SimpleLink CC3100MOD

  • Page 1 CC3100MOD SimpleLink™ Wi-Fi® Network Processor Module - BoosterPack Hardware User's Guide Literature Number: SWRU396B December 2014 – Revised May 2018...
  • Page 2: Table Of Contents

    LaunchPad Current Limitation ......................Additional Information ......................Design Files ........................Software ....................Hardware Change Log ...................... Known Limitations .......................... Revision History Table of Contents SWRU396B – December 2014 – Revised May 2018 Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 3 Ports Available on J6 ...................... Ports Available on J5 .................. CC3100MODBOOST Jumper Settings ................... EMUBOOST Jumper Settings ..................... Hardware Change Log SWRU396B – December 2014 – Revised May 2018 List of Figures Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 4: Introduction

    The CC3100MOD SimpleLink Wi-Fi and IoT Solution module is FCC Part 15 and IC ICES-003 Class A Certified. CC3100MOD SimpleLink™ Wi-Fi® Network Processor Module BoosterPack SWRU396B – December 2014 – Revised May 2018 Hardware Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 5: Hardware Description

    Hardware Description www.ti.com Hardware Description Figure 2. CC3100MODBOOST Front Side SWRU396B – December 2014 – Revised May 2018 CC3100MOD SimpleLink™ Wi-Fi® Network Processor Module BoosterPack Hardware Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 6: Block Diagram

    Boots the device to the bootloader mode for flashing the firmware over a universal nHIB asynchronous receiver/transmitter (UART). CC3100MOD SimpleLink™ Wi-Fi® Network Processor Module BoosterPack SWRU396B – December 2014 – Revised May 2018 Hardware Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 7: Signal Assignments

    P1…P4 to avoid confusion with the actual board reference. Figure 4. Signal Assignments SWRU396B – December 2014 – Revised May 2018 CC3100MOD SimpleLink™ Wi-Fi® Network Processor Module BoosterPack Hardware Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 8: Power

    USB connector on the CC3100MODBOOST should be used to provide the LDO input as shown below. CC3100MOD SimpleLink™ Wi-Fi® Network Processor Module BoosterPack SWRU396B – December 2014 – Revised May 2018 Hardware Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 9: V Power From Mcu

    USB connector on the CC3100MODBOOST and the LaunchPad in a shared load manner. SWRU396B – December 2014 – Revised May 2018 CC3100MOD SimpleLink™ Wi-Fi® Network Processor Module BoosterPack Hardware Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 10: Measure The Cc3100 Current Drawn

    LPDS currents (see Figure CC3100MOD SimpleLink™ Wi-Fi® Network Processor Module BoosterPack SWRU396B – December 2014 – Revised May 2018 Hardware Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 11: Performing Conducted Testing

    This requires a board modification, as illustrated in the figures below. SWRU396B – December 2014 – Revised May 2018 CC3100MOD SimpleLink™ Wi-Fi® Network Processor Module BoosterPack Hardware Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 12: Connectors On The Board

    Figure 11. Connectors on the Board Figure 12. Resistor Switch for Radiated versus Conducted Tests CC3100MOD SimpleLink™ Wi-Fi® Network Processor Module BoosterPack SWRU396B – December 2014 – Revised May 2018 Hardware Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 13: Connecting To The Pc Using Emuboost

    BoosterPack; and in software development using SimpleLink Studio. 3.1.2 Hardware Details Figure 13. CC31XXEMUBOOST Board SWRU396B – December 2014 – Revised May 2018 CC3100MOD SimpleLink™ Wi-Fi® Network Processor Module BoosterPack Hardware Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 14: Connecting The Boards

    The pins #1 of the connectors are marked on the board using a small triangle marking; these should be aligned while connecting. CC3100MOD SimpleLink™ Wi-Fi® Network Processor Module BoosterPack SWRU396B – December 2014 – Revised May 2018 Hardware Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 15: Jumper Settings On The Cc3100Modboost

    Provide 5.0 V to the BoosterPack J3 (1-2) Route the NWP logs to the dual port SWRU396B – December 2014 – Revised May 2018 CC3100MOD SimpleLink™ Wi-Fi® Network Processor Module BoosterPack Hardware Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 16: Connecting To A Launchpad

    NOTE: Because there are two power sources in this setup, it is important to follow the power-up sequence. NOTE: Always power the BoosterPack before powering the LaunchPad. CC3100MOD SimpleLink™ Wi-Fi® Network Processor Module BoosterPack SWRU396B – December 2014 – Revised May 2018 Hardware Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 17: Additional Information

    1. The serial flash on the module can be programmed mainly through the UART of the CC3100MODBOOST board. SWRU396B – December 2014 – Revised May 2018 CC3100MOD SimpleLink™ Wi-Fi® Network Processor Module BoosterPack Hardware Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 18: Revision History

    Changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment. FCC Interference Statement for Class A EVM devices Revision History SWRU396B – December 2014 – Revised May 2018 Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 19 3.3 Japan 3.3.1 Notice for EVMs delivered in Japan: Please see http://www.tij.co.jp/lsds/ti_ja/general/eStore/notice_01.page 日本 国内に輸入される評価用キット、ボードについては、次のところをご覧ください。 http://www.tij.co.jp/lsds/ti_ja/general/eStore/notice_01.page SWRU396B – December 2014 – Revised May 2018 Revision History Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 20 EVM, including without limitation any warning or restriction notices. The notices contain important safety information related to, for example, temperatures and voltages. 4.3 Safety-Related Warnings and Restrictions: Revision History SWRU396B – December 2014 – Revised May 2018 Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 21 ANY OTHER LEGAL THEORY, AND EVEN IF THE EVM FAILS TO PERFORM AS DESCRIBED OR EXPECTED. Limitations on Damages and Liability: SWRU396B – December 2014 – Revised May 2018 Revision History Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 22 County, Texas. Notwithstanding the foregoing, any judgment may be enforced in any United States or foreign court, and TI may seek injunctive relief in any United States or foreign court. Revision History SWRU396B – December 2014 – Revised May 2018 Submit Documentation Feedback Copyright © 2014–2018, Texas Instruments Incorporated...
  • Page 23 IMPORTANT NOTICE FOR TI DESIGN INFORMATION AND RESOURCES Texas Instruments Incorporated (‘TI”) technical, application or other design advice, services or information, including, but not limited to, reference designs and materials relating to evaluation modules, (collectively, “TI Resources”) are intended to assist designers who are developing applications that incorporate TI products;...

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