RF430FRL152H
NFC ISO15693 Sensor Transponder With SPI/I2C Interface and 14-Bit Sigma-Delta ADC
RF430FRL152H
- 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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Technical documentation
Design & development
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RF430FRL152HEVM — NFC ISO 15693 Sensor Transponder Evaluation Module
The RF430FRL152HEVM evaluation module is a self-contained development platform which can be used to evaluate the features and performance of the ISO 15693 compatible RF430FRL15xH NFC Sensor Transponder. The evaluation board can be powered with a battery, over USB or by harvesting RF energy from a (...)
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Code Composer Studio is an integrated development environment (IDE) for TI's microcontrollers and processors. It comprises a suite of tools used to develop and debug embedded applications. Code Composer Studio is available for download across Windows®, Linux® and macOS® (...)
Supported products & hardware
This design resource supports most products in these categories.
Check the product details page to verify support.
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parametric-filter MSP430 microcontrollers -
parametric-filter C2000 real-time microcontrollers -
parametric-filter Arm-based microcontrollers -
parametric-filter Digital signal processors (DSPs) -
parametric-filter Arm-based processors -
parametric-filter Signal conditioners -
parametric-filter mmWave radar sensors -
parametric-filter Zigbee products -
parametric-filter Wi-Fi products -
parametric-filter Thread products -
parametric-filter Other wireless technologies -
parametric-filter Sub-1 GHz products -
parametric-filter Multi-protocol products -
parametric-filter Bluetooth products -
parametric-filter Digital power isolated controllers
Products
Automotive mmWave radar sensors
Industrial mmWave radar sensors
TIDM-RF430FRLSENSE — RF430FRL152H NFC Temperature and Light Sensor Reference Design
TIDM-RF430-TEMPSENSE — Battery-less NFC/RFID Temperature Sensing Patch
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