產品詳細資料

Frequency range 13.56 MHz Standard ISO 14443A, ISO 14443B, ISO 15693, ISO 18000-3, JIS X 6319-4 Operating temperature range (°C) -40 to 110 Rating Catalog Transmission principle FDX - ASK, FSK, OOK, PSK
Frequency range 13.56 MHz Standard ISO 14443A, ISO 14443B, ISO 15693, ISO 18000-3, JIS X 6319-4 Operating temperature range (°C) -40 to 110 Rating Catalog Transmission principle FDX - ASK, FSK, OOK, PSK
VQFN (RHB) 32 25 mm² (5 mm × 5 mm)
  • Completely Integrated Protocol Handling
  • Separate Internal High-PSRR Power Supplies for Analog, Digital, and PA Sections Provide Noise Isolation for Superior Read Range and Reliability
  • Dual Receiver Inputs With AM and PM Demodulation to Minimize Communication Holes
  • Receiver AM and PM RSSI
  • Reader-to-Reader Anticollision
  • High Integration Reduces Total BOM and Board Area
    • Single External 13.56-MHz Crystal Oscillator
    • MCU-Selectable Clock-Frequency Output of RF, RF/2, or RF/4
    • Adjustable 20-mA High-PSRR LDO for Powering External MCU
  • Easy to Use With High Flexibility
    • Automatically Configured Default Modes for Each Supported ISO Protocol
    • 12 User-Programmable Registers
    • Selectable Receiver Gain
    • Programmable Output Power (100 mW or 200 mW)
    • Adjustable ASK Modulation Range (8% to 30%)
    • Built-In Receiver Band-Pass Filter With User-Selectable Corner Frequencies
  • Wide Operating Voltage Range of 2.7 V to 5.5 V
  • Ultra-Low-Power Modes
    • Power Down: <1 µA
    • Standby: 120 µA
    • Active (RX Only): 10 mA
  • Parallel 8-Bit or Serial 4-Pin Serial Peripheral Interface (SPI) With MCU Using 12-Byte FIFO
  • Ultra-Small 32-Pin QFN Package (5 mm × 5 mm)
  • Available Tools (Also See Tools and Software)
    • Reference Design and EVM With Development Software
    • Source Code Available for MSP430™ MCU
  • Completely Integrated Protocol Handling
  • Separate Internal High-PSRR Power Supplies for Analog, Digital, and PA Sections Provide Noise Isolation for Superior Read Range and Reliability
  • Dual Receiver Inputs With AM and PM Demodulation to Minimize Communication Holes
  • Receiver AM and PM RSSI
  • Reader-to-Reader Anticollision
  • High Integration Reduces Total BOM and Board Area
    • Single External 13.56-MHz Crystal Oscillator
    • MCU-Selectable Clock-Frequency Output of RF, RF/2, or RF/4
    • Adjustable 20-mA High-PSRR LDO for Powering External MCU
  • Easy to Use With High Flexibility
    • Automatically Configured Default Modes for Each Supported ISO Protocol
    • 12 User-Programmable Registers
    • Selectable Receiver Gain
    • Programmable Output Power (100 mW or 200 mW)
    • Adjustable ASK Modulation Range (8% to 30%)
    • Built-In Receiver Band-Pass Filter With User-Selectable Corner Frequencies
  • Wide Operating Voltage Range of 2.7 V to 5.5 V
  • Ultra-Low-Power Modes
    • Power Down: <1 µA
    • Standby: 120 µA
    • Active (RX Only): 10 mA
  • Parallel 8-Bit or Serial 4-Pin Serial Peripheral Interface (SPI) With MCU Using 12-Byte FIFO
  • Ultra-Small 32-Pin QFN Package (5 mm × 5 mm)
  • Available Tools (Also See Tools and Software)
    • Reference Design and EVM With Development Software
    • Source Code Available for MSP430™ MCU

The TRF7960 and TRF7961 devices are integrated analog front end and data-framing systems for a 13.56-MHz RFID reader system that supports multiple protocols including ISO/IEC 14443 A and B, FeliCa™, and ISO/IEC 15693. Built-in programming options make it suitable for a wide range of applications for proximity and vicinity identification systems.

The reader is configured by selecting the desired protocol in the control registers. Direct access to all control registers allows fine-tuning of various reader parameters as needed.

The device supports data rates up to 848 kbps with all framing and synchronization tasks for the ISO protocols onboard. Other standards and even custom protocols can be implemented by using one of the direct modes that the device offers. These direct modes let the application fully control the AFE and also gain access to the raw subcarrier data or the unframed, but already ISO-formatted, data and the associated (extracted) clock signal.

The receiver system has a dual-input receiver architecture to maximize communication robustness. The receivers also include various automatic and manual gain control options. The received signal strength from transponders, ambient sources, or internal levels is available in the RSSI register.

A SPI or parallel interface can be used for the communication between the MCU and the TRF796x reader. When the built-in hardware encoders and decoders are used, transmit and receive functions use a 12-byte FIFO register. For direct transmit or receive functions, the encoders or decoders can be bypassed so the MCU can process the data in real time.

The TRF7960 and TRF7961 devices support a wide supply voltage range of 2.7 V to 5.5 V and data communication levels from 1.8 V to 5.5 V for the MCU I/O interface.

The transmitter has selectable output power levels of 100 mW (+20 dBm) or 200 mW (+23 dBm) equivalent into a 50-Ω load when using a 5-V supply and supports OOK and ASK modulation with selectable modulation depth.

Built-in programmable auxiliary voltage regulator delivers up to 20 mA to supply an MCU and additional external circuits within the reader system.

Start evaluating the TRF7960 multiprotocol transceiver IC with the TRF7960AEVM or the TRF7960ATB.

Documentation, Tools, Reference Designs, and Software, Samples

The TRF7960 and TRF7961 devices are integrated analog front end and data-framing systems for a 13.56-MHz RFID reader system that supports multiple protocols including ISO/IEC 14443 A and B, FeliCa™, and ISO/IEC 15693. Built-in programming options make it suitable for a wide range of applications for proximity and vicinity identification systems.

The reader is configured by selecting the desired protocol in the control registers. Direct access to all control registers allows fine-tuning of various reader parameters as needed.

The device supports data rates up to 848 kbps with all framing and synchronization tasks for the ISO protocols onboard. Other standards and even custom protocols can be implemented by using one of the direct modes that the device offers. These direct modes let the application fully control the AFE and also gain access to the raw subcarrier data or the unframed, but already ISO-formatted, data and the associated (extracted) clock signal.

The receiver system has a dual-input receiver architecture to maximize communication robustness. The receivers also include various automatic and manual gain control options. The received signal strength from transponders, ambient sources, or internal levels is available in the RSSI register.

A SPI or parallel interface can be used for the communication between the MCU and the TRF796x reader. When the built-in hardware encoders and decoders are used, transmit and receive functions use a 12-byte FIFO register. For direct transmit or receive functions, the encoders or decoders can be bypassed so the MCU can process the data in real time.

The TRF7960 and TRF7961 devices support a wide supply voltage range of 2.7 V to 5.5 V and data communication levels from 1.8 V to 5.5 V for the MCU I/O interface.

The transmitter has selectable output power levels of 100 mW (+20 dBm) or 200 mW (+23 dBm) equivalent into a 50-Ω load when using a 5-V supply and supports OOK and ASK modulation with selectable modulation depth.

Built-in programmable auxiliary voltage regulator delivers up to 20 mA to supply an MCU and additional external circuits within the reader system.

Start evaluating the TRF7960 multiprotocol transceiver IC with the TRF7960AEVM or the TRF7960ATB.

Documentation, Tools, Reference Designs, and Software, Samples

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技術文件

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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 TRF7960, TRF7961 Multiple-Standard Fully Integrated 13.56-MHz RFID Analog Front End and Data-Framing Reader System datasheet (Rev. G) PDF | HTML 2017/5/18
應用說明 Antenna Design Guide for the TRF79xxA (Rev. C) PDF | HTML 2020/3/10
應用說明 Using the SPI Interface with TRF7960 (Rev. B) PDF | HTML 2018/11/27
應用說明 TRF79xxA HF-RFID Reader Layout Design Guide (Rev. A) 2016/4/18
白皮書 Near Field Communication (Rev. B) 2016/3/18
白皮書 Microcontrollers in Blood Glucose Meters (Rev. B) 2015/5/27
技術文章 NFC/RFID for access control: Sniffing for cards PDF | HTML 2015/4/21
應用說明 NFC/RFID Reader Ultra-Low-Power Card Presence Detect With MSP430 and TRF79xxA 2013/3/18
應用說明 Management of the TRF7960 and TRF7960A Startup Sequence 2012/6/5
應用說明 TRF7960 and TRF7970A Comparison 2011/8/3
應用說明 Comparison of TRF7960 and TRF7960A 2011/5/27
應用說明 TRF796x Software Design Hints 2010/12/13
應用說明 Implementation of ISO15693 Protocol in the TI TRF796x 2009/4/28
應用說明 Implementation of ISO14443B Protocol in the TI TRF796x 2009/4/28
Product overview MSP430 Ultra-Low-Power MCUs and TI-RFid Devices 2009/4/3
應用說明 Firmware Description of the TI TRF796x Evaluation Module (EVM) 2009/3/9
Product overview TI-RFid™ TRF796x HF reader ICs product sheet 2009/2/6

設計與開發

如需其他條款或必要資源,請按一下下方的任何標題以檢視詳細頁面 (如有)。

韌體

SLOC136 — TRF7960 Firmware Source Code

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韌體

SLOC149 — TRF7960 Firmware Source Code with LED control and AFI functionality added

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韌體

SLOC203 — TRF7960 Firmware Source Code for CCS

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計算工具

RF-CASCADE-CALC-TOOL — TI RF 級聯計算機

A browser-based RF lineup analysis tool supporting up to 10 stages. Computes gain, NF, OIP3, OIP2, OP1dB, and derived metrics. Features dual-axis Plotly charts, P1dB saturation detection, and export to CSV
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參考設計

TIDM-NFC-EZ430-MODULE — NFC EZ430 讀取器模組參考設計

此參考設計為近場通訊 (NFC) 模組提供完整的硬體與韌體範例。該模組使用 TI 的 eZ430 UART 連線進行簡單的介接。該韌體範例透過讀取 ISO15693、ISO14443A、ISO14443B 與 Felica 標籤,展示了 NFC 讀取器/寫入器功能。與某些評估模組不同,此 NFC 模組專為輕鬆整合至現有應用中而設計。這降低了對開發人員的資源需求,同時仍支援完整功能。

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參考設計

TIDM-NFC-READER — NFC 和 RFID 超低功耗卡存在性偵測參考設計

This reference design, featuring the TRF79xxA paired with an MSP microcontroller, is a fully-functional, battery-operad RFID & NFC reader. This design features in-depth details on how to add NFC/RFID capabilities to an existing design by adding a simple circuit and small firmware control logic (...)

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參考設計

TIDM-RFID-TRANSCEIVER — RFID 收發器參考設計

此無線射頻辨識 (RFID) 參考設計概述了所需元件與佈局注意事項,並提供韌體範例以將 RFID 實作至應用中,用於從轉發器擷取 RFID 資料。RFID 可實現存取控制、預付款與庫存管理。提供的文件、硬體與範例程式碼可讓設計人員使用 MSP430 或所選的其他 MCU 快速實作 RFID 功能。

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封裝 針腳 CAD 符號、佔位空間與 3D 模型
VQFN (RHB) 32 Ultra Librarian

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