DLP-RF430BP
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DLP-RF430BP (pdf) |
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DLP-RF430BP (pdf) |
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DLP-RF430BP BoosterPack User’s Guide FEATURES: INTRODUCTION The DLP Design DLP-RF430BP BoosterPack is used to demonstrate the capabilities of the RF430CL330H and help aid in the development process by providing a working hardware/firmware reference example for NFC operations. This BoosterPack demonstrates a secure, simplified pairing process for and Wi-Fi connections with the only dynamic NFC tag device designed specifically for NFC connection handover and service-interface functions. The DLP-RF430BP BoosterPack is an add-on board designed to fit TI’s MCU LaunchPads. This product allows the software application developer to get familiar with the functionalities of the RF430CL330H on their Texas Instruments embedded microcontroller platform of choice without having to worry about designing the antenna. This document provides direction for RF430CL330H users who wish to implement an NFC tag emulator that is connected to and controlled by a Texas Instruments embedded microcontroller or microprocessor development platform. Examples of such development platforms are the MSP-EXP430G2 LaunchPad and the MSP-EXP430F5529LP LaunchPad. LaunchPads from Texas Instruments are easy-to-use flash programming and debugging tools for the MSP430, C2000, TIVA, etc. lines of microcontrollers. They feature everything you need to start developing on a Texas Instruments microcontroller device. There is on-board emulation for programming and debugging, on-board button switches, LED’s and BoosterPack-compatible pinouts to support a wide range of plug-in modules like the DLP-RF430BP. Free software development tools are also available, such as TI’s Eclipse-based Code Composer Studio. Open-source development is also possible thanks to community-driven projects such as the MSPGCC compiler or Energia, a branch of the popular Wiring framework. 2013 DLP Design, Inc. SCOPE This document describes the DLP-RF430BP module for evaluation and development purposes in conjunction with Texas Instruments embedded development platforms. This manual does not cover the in-depth details of the RF430CL330H family as these are documented in the datasheets for those parts along with application notes that can be found on their product pages see the links in Section REFERENCES • DLP-RF430BP or • RF430CL330H Product Page • RF430CL330H Datasheet: MODULE DESCRIPTION The DLP-RF430BP BoosterPack Figure 1 allows NFC connection handover for an alternative carrier like Low Energy BLE and Wi-Fi as an easy and intuitive pairing or authentication process with only a tap. As a general NFC interface, the RF430CL330H enables electronic products to communicate with the fast-growing infrastructure of NFC-enabled smart phones, tablets and notebooks. Connection to Texas Instruments LaunchPad platforms are made via 10-pin, 0.1-inch spaced, 0.025-square inch female headers located on the back of the board. The electrical schematic is available for download from both the DLPDesign.com and TIBoosterPacks.com sites. Figure DLP-RF430BP Evaluation Module 2013 DLP Design, Inc. MODULE PINOUT DLP-RF430BP MODULE PIN CONNECTIONS TO THE LAUNCHPAD 1 VCC - 3.0V power from the LaunchPad 2 Unused by the DLP-RF430BP 3 Unused by the DLP-RF430BP 4 Unused by the DLP-RF430BP 5 Unused by the DLP-RF430BP 6 Unused by the DLP-RF430BP 7 DATA_CLK - Clock from the microcontroller if in SPI mode. Default I2C mode. 8 RESET 9 Unused by the DLP-RF430BP 10 Unused by the DLP-RF430BP 11 Unused by the DLP-RF430BP 12 INTO - Interrupt to microcontroller 13 SPI_CS - Chip select from microcontroller for SPI mode MISO/SCL - SPI serial data to the microcontroller if in SPI mode. Clock from microcontroller if in I2C mode. MOSI/SDA - SPI serial data from the microcontroller if in SPI mode. Data to/from microcontroller if in I2C mode. 16 Unused by the DLP-RF430BP 17 Unused by the DLP-RF430BP 18 Unused by the DLP-RF430BP |
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