RF430FRL154H
- ISO/IEC 15693, ISO/IEC 18000-3 (Mode 1) Compliant RF Interface
- Power Supply System With Either Battery or 13.56-MHz H-Field Supply
- 14-Bit Sigma-Delta Analog-to-Digital Converter (ADC)
- Internal Temperature Sensor
- Resistive Sensor Bias Interface
- CRC16 CCITT Generator
- MSP430 Mixed-Signal Microcontroller
- 2KB of FRAM
- 4KB of SRAM
- 8KB of ROM
- Supply Voltage Range: 1.45 V to 1.65 V
- Low Power Consumption
- Active Mode (AM): 140 µA/MHz (1.5 V)
- Standby Mode (LPM3): 16 µA
- 16-Bit RISC Architecture
- Up to 2-MHz CPU System Clock
- Compact Clock System
- 4-MHz High-Frequency Clock
- 256-kHz Internal Low-Frequency Clock Source
- External Clock Input
- 16-Bit Timer_A With Three Capture/Compare Registers
- LV Port Logic
- VOL Lower Than 0.15 V at 400 µA
- VOH Higher Than (VDDB – 0.15 V) at 400 µA
- Timer_A PWM Signal Available on All Ports
- eUSCI_B Module Supports 3-Wire and 4-Wire SPI and I2C
- 32-Bit Watchdog Timer (WDT_A)
- ROM Development Mode (Map ROM Addresses to SRAM to Enable Firmware Development)
- Full 4-Wire JTAG Debug Interface
- For Complete Module Descriptions, See the RF430FRL15xH Family Technical Reference Manual (SLAU506)
- For Application Operation and Programming, See the RF430FRL15xH Firmware User's Guide (SLAU603)
The RF430FRL15xH device is a 13.56-MHz transponder chip with a programmable 16-bit MSP430 low-power microcontroller. The device features embedded universal FRAM nonvolatile memory for storage of program code or user data such as calibration and measurement data. The RF430FRL15xH supports communication, parameter setting, and configuration through the ISO/IEC 15693, ISO/IEC 18000-3 compliant RFID interface and the SPI or I2C interface. Sensor measurements are supported by the internal temperature sensor and the onboard 14-bit sigma-delta analog-to-digital converter (ADC), and digital sensors can be connected through SPI or I2C.
The RF430FRL15xH device is optimized for operation in fully passive (battery-less) or single-cell battery-powered (semi-active) mode to achieve extended battery life in portable and wireless sensing applications. FRAM is a nonvolatile memory that combines the speed, flexibility, and endurance of SRAM with the stability and reliability of flash, all at lower total power consumption.
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技術文件
| 重要文件 | 類型 | 標題 | 格式選項 | 下載最新的英文版本 | 日期 | |
|---|---|---|---|---|---|---|
| * | 資料表 | RF430FRL15xH NFC ISO 15693 Sensor Transponder datasheet (Rev. C) | PDF | HTML | 2014/12/8 | ||
| * | 勘誤表 | RF430FRL15xH Device Errata Sheet (Rev. A) | 2018/7/3 | |||
| 應用說明 | Frequently asked questions for RF430FRL15xH devices (Rev. C) | PDF | HTML | 2019/3/13 | |||
| 使用指南 | RF430FRL15xH Firmware User's Guide (Rev. B) | 2017/6/28 | ||||
| 應用說明 | RF430FRL15xH NFC ISO 15693 Sensor Transponder Practical Antenna Design (Rev. A) | 2015/7/16 | ||||
| 技術文章 | Your smartphone can help you control vital data using NFC | PDF | HTML | 2015/4/19 | |||
| 白皮書 | Bio-patch Solutions for health and fitness (Rev. A) | 2014/12/9 | ||||
| 使用指南 | RF430FRL15xH Family Technical Reference Manual | 2014/12/5 | ||||
| 白皮書 | Designing and evaluating an NFC-enabled bio-patch | 2014/12/1 |
設計與開發
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RF430FRL152HEVM — NFC ISO 15693 感測器轉發器評估模組
RF430FRL152HEVM 評估模組是一個獨立開發平台,可用於評估 ISO 15693 相容的 RF430FRL15xH NFC 感測器轉發器的功能與性能。評估板可由電池或透過 USB 供電,或是從附近具備 NFC 功能的讀取器或智慧型手機獲取 RF 能源。ROM 中的嵌入式應用程式碼可管理 RF 通訊及感測器讀數,提供極大的裝置配置彈性。開發人員可以配置取樣率、量測閾值和警報。2kByte 通用非揮發性記憶體 (FRAM) 可儲存資料,並可擴充和調整應用程式碼。為進一步擴充,評估板與 TI 低成本 LaunchPad 快速原型設計生態系統的許多 BoosterPack (...)
SLAC691 — RF430FRL152H Firmware
TIDM-RF430FRLSENSE — RF430FRL152H NFC 溫度及燈光感測器參考設計
此參考設計提供評估 RF430FRL152H NFC 感測器介面轉發器的平台。 熱敏電阻和光電晶體測量功能開箱即用,測得的結果可傳輸到支援 NFC 的智慧型手機或其他 NFC/RFID 讀取器裝置。 此參考設計搭配電池運作時可將資料記錄至 FRAM;不使用電池時則可使用 RF 電場所收集的能量。
| 封裝 | 針腳 | CAD 符號、佔位空間與 3D 模型 |
|---|---|---|
| VQFN (RGE) | 24 | Ultra Librarian |
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