TMS37157

アクティブ

EEPROM および 134.2kHz トランスポンダ インターフェイス付き、パッシブ低周波数インターフェイス デバイス (PaLFI)

製品詳細

Frequency range 134.2 kHz Standard TI protocol Operating temperature range (°C) -40 to 85 Rating Automotive Transmission principle HDX - FSK
Frequency range 134.2 kHz Standard TI protocol Operating temperature range (°C) -40 to 85 Rating Automotive Transmission principle HDX - FSK
VQFN (RSA) 16 16 mm² (4 mm × 4 mm)
  • Wide Supply Voltage Range 2 V to 3.6 V
  • Ultra Low Power Consumption
    • Active Mode Max. 150 µA
    • Power Down Mode 60 nA
  • 121 Free Bytes User Memory
  • Low Frequency Halb Duplex (HDX) Interface
    • HDX Transponder Communication Achieving Maximum
      Perfomance and Highest Noise Immunity
    • Special Selective Addressing Mode Allows
      Anti Collision
    • Up to 8 kbit/s LF Uplink Data Rate
    • 126 Byte EEPROM:
      • 121 Bytes Free Available EEPROM User Memory
      • 32 Bit Unique Serial Number
      • 8 Bit Selective Address
      • High EEPROM Flexibility
      • Pages are Irreversible Lockable and Protectable
    • Battery Check and Battery Charge Function
    • Resonance Frequency: 134.2 kHz
    • Integrated Resonance Frequency Trimming
    • Downlink – Amplitude Shift Keying
    • Uplink – Frequency Shift Keying
  • 3 Wire SPI Interface for Accessing the EEPROM and
    Exchanging Data With the Microcontroller Through
    the LF Interface
  • 0.6mm Pitch, 4mm x 4mm VQFN Package
  • APPLICATIONS
    • Wireless Batteryless Sensor Interface using
      Energy Harvesting
      • Microcontroller and Sensor can be Powered Through the
        LF Link
      • Data is Directly Transmitted Over the LF Link From the
        Base Station via the TMS37157 to the Micrcontroller and Vice
        Versa.
    • Batteryless Configuration Memory
      • Memory can be Written Without Battery Support
      • Microcontroller can Read the Content of the Memory When
        It Gets Connected to a Battery and Use It for Configuration
      • Microcontroller can Write the Memory, Which can be Read Out
        Later Through the LF Link
    • Ultra Low Power Data Logger Memory (Smart Metering)
      • Memory Can Be Written By a Microcontroller
      • Memory Can Be Read Through LF Interface Without
        Battery Support
    • Multi Purpose LF Interface to a Microcontroller
      • Short Range RF Interface to a Microcontroller Where
        Other Frequencies are Not an Option
      • Ultra Low Power Mode can Result in an
        Overall Power Consumption of 60 nA
    • Remote Control Application
      • Combination With an UHF Transmitter or IR Transmitter and a µC
      • Power Management of the TMS37157 can Power Down
        the Microcontroller
      • The Push Button Detection Circuit can Power Up a
        Microcontroller
    • Stand Alone LF-Transponder with Memory
      • RFID Transponder with Unique ID and 121
        Bytes Free Programmable EEPROM User Memory
      • Only Few Additional Components Needed
      • No Battery Required

  • Wide Supply Voltage Range 2 V to 3.6 V
  • Ultra Low Power Consumption
    • Active Mode Max. 150 µA
    • Power Down Mode 60 nA
  • 121 Free Bytes User Memory
  • Low Frequency Halb Duplex (HDX) Interface
    • HDX Transponder Communication Achieving Maximum
      Perfomance and Highest Noise Immunity
    • Special Selective Addressing Mode Allows
      Anti Collision
    • Up to 8 kbit/s LF Uplink Data Rate
    • 126 Byte EEPROM:
      • 121 Bytes Free Available EEPROM User Memory
      • 32 Bit Unique Serial Number
      • 8 Bit Selective Address
      • High EEPROM Flexibility
      • Pages are Irreversible Lockable and Protectable
    • Battery Check and Battery Charge Function
    • Resonance Frequency: 134.2 kHz
    • Integrated Resonance Frequency Trimming
    • Downlink – Amplitude Shift Keying
    • Uplink – Frequency Shift Keying
  • 3 Wire SPI Interface for Accessing the EEPROM and
    Exchanging Data With the Microcontroller Through
    the LF Interface
  • 0.6mm Pitch, 4mm x 4mm VQFN Package
  • APPLICATIONS
    • Wireless Batteryless Sensor Interface using
      Energy Harvesting
      • Microcontroller and Sensor can be Powered Through the
        LF Link
      • Data is Directly Transmitted Over the LF Link From the
        Base Station via the TMS37157 to the Micrcontroller and Vice
        Versa.
    • Batteryless Configuration Memory
      • Memory can be Written Without Battery Support
      • Microcontroller can Read the Content of the Memory When
        It Gets Connected to a Battery and Use It for Configuration
      • Microcontroller can Write the Memory, Which can be Read Out
        Later Through the LF Link
    • Ultra Low Power Data Logger Memory (Smart Metering)
      • Memory Can Be Written By a Microcontroller
      • Memory Can Be Read Through LF Interface Without
        Battery Support
    • Multi Purpose LF Interface to a Microcontroller
      • Short Range RF Interface to a Microcontroller Where
        Other Frequencies are Not an Option
      • Ultra Low Power Mode can Result in an
        Overall Power Consumption of 60 nA
    • Remote Control Application
      • Combination With an UHF Transmitter or IR Transmitter and a µC
      • Power Management of the TMS37157 can Power Down
        the Microcontroller
      • The Push Button Detection Circuit can Power Up a
        Microcontroller
    • Stand Alone LF-Transponder with Memory
      • RFID Transponder with Unique ID and 121
        Bytes Free Programmable EEPROM User Memory
      • Only Few Additional Components Needed
      • No Battery Required

The TMS37157 combines a Low Frequency Transponder Interface with an SPI Interface and Power Management for a connected microcontroller. It is the ideal device for any Configuration, Data Logger-, Sensoror Remote Control Application. The Transponder memory is accessible through SPI and LF and, in the second case, operates without the need for a battery. The use of the Low Frequency Band ensures a communication in a defined direction and harsh environments.

The TMS37157 manages the Transponder communication and push button interaction. During sleep state the devices enters a special low power mode with only 60 nA current consumption.

The EEPROM memory is accessible over the LF interface without support from the battery or through SPI by a microcontroller if a battery is connected. The TMS37157 offers a special battery charge mode.

The external resonance circuit with a LF coil and a resonance capacitor can be trimmed to the correct resonance frequency with the integrated trimming capability achieving an easy way to eliminate part tolerances.

The small RSA 16-pin package together with only a few external components results in a cost efficient design.

The TMS37157 combines a Low Frequency Transponder Interface with an SPI Interface and Power Management for a connected microcontroller. It is the ideal device for any Configuration, Data Logger-, Sensoror Remote Control Application. The Transponder memory is accessible through SPI and LF and, in the second case, operates without the need for a battery. The use of the Low Frequency Band ensures a communication in a defined direction and harsh environments.

The TMS37157 manages the Transponder communication and push button interaction. During sleep state the devices enters a special low power mode with only 60 nA current consumption.

The EEPROM memory is accessible over the LF interface without support from the battery or through SPI by a microcontroller if a battery is connected. The TMS37157 offers a special battery charge mode.

The external resonance circuit with a LF coil and a resonance capacitor can be trimmed to the correct resonance frequency with the integrated trimming capability achieving an easy way to eliminate part tolerances.

The small RSA 16-pin package together with only a few external components results in a cost efficient design.

ダウンロード 字幕付きのビデオを表示 ビデオ
TI からの限定的な設計サポートが利用可能

この製品を使用する既存のプロジェクトで、TI による限定的な設計サポートが利用可能です。該当する場合は、関連する資料、ソフトウェア、ツールはこちらの製品ページに掲載されています。この製品を使用する既存の設計で、TI による限定的な設計サポートが利用可能です。TI E2E™ サポート フォーラムで、限定的な設計サポートをリクエストしてください。

技術資料

結果が見つかりませんでした。検索条件をクリアしてから、再度検索を試してください。
9 をすべて表示
上位の文書 タイプ タイトル フォーマットオプション 最新の英語版をダウンロード 日付
* データシート Passive Low Frequency Interface Device With EEPROM and 134.2 kHz Transponder データシート (Rev. A) 2009/11/05
アプリケーション・ノート TMS37157 Passive Low-Frequency Interface IC Performance With Neosid Antennas (Rev. A) 2013/04/19
アプリケーション・ノート Low-Power Battery-Less Wireless Temperature and Humidity Sensor for TMS37157 2011/12/19
アプリケーション・ノート Using the SPI Library for TMS37157 2011/12/19
アプリケーション・ノート Communicating With the RFID Base Station 2011/09/21
アプリケーション・ノート Low-Frequency RFID in a Nutshell 2011/09/21
アプリケーション・ノート LF HDX System Parameter Calculation for TMS37157 (PaLFI) 2010/07/15
その他の技術資料 eZ430-TMS37157 Development Tool FAQ (Rev. A) 2010/03/15
製品概要 MSP430 Ultra-Low-Power MCUs and TI-RFid Devices 2009/04/03

設計と開発

その他のアイテムや必要なリソースを参照するには、以下のタイトルをクリックして詳細ページをご覧ください。

サンプル・コードまたはデモ

SWRC165 — PaLFI Embedded Demo

サポート対象の製品とハードウェア
ドライバまたはライブラリ

SWRC172 — RFID Base Station USB Driver

サポート対象の製品とハードウェア
評価基板 (EVM) 向けの GUI

SWRC164 — RFID Demo Software

サポート対象の製品とハードウェア
パッケージ ピン数 CAD シンボル、フットプリント、および 3D モデル
VQFN (RSA) 16 Ultra Librarian

購入と品質

推奨製品には、この TI 製品に関連するパラメータ、評価基板、またはリファレンス デザインが存在する可能性があります。

サポートとトレーニング

TI E2E™ フォーラムでは、TI のエンジニアからの技術サポートを提供

コンテンツは、TI 投稿者やコミュニティ投稿者によって「現状のまま」提供されるもので、TI による仕様の追加を意図するものではありません。使用条件をご確認ください。

TI 製品の品質、パッケージ、ご注文に関するお問い合わせは、TI サポートをご覧ください。​​​​​​​​​​​​​​

ビデオ