ホーム インターフェイス HDMI、DisplayPort、MIPI の各 IC

TVP5154A

アクティブ

4チャネル 低消費電力 PAL/NTSC/SECAM ビデオ・デコーダ、独立スケーラ付

製品詳細

Type HDMI Companion Rating Catalog Supply voltage (V) 1.8, 3.3 Operating temperature range (°C) -40 to 85
Type HDMI Companion Rating Catalog Supply voltage (V) 1.8, 3.3 Operating temperature range (°C) -40 to 85
HTQFP (PNP) 128 256 mm² 16 x 16
  • Four Separate Video Decoder Channels With Features for Each Channel:
    • Accept NTSC (J, M, 4.43), PAL (B, D, G, H, I, M, N, Nc), and
      SECAM (B, D, G, K, K1, L) Video
    • Support ITU-R BT.601 Standard Sampling
    • High-Speed 9-Bit Analog-to-Digital Converter (ADC)
    • Two Composite Inputs or One S-Video Input (for Each Channel)
    • Fully Differential CMOS Analog Preprocessing Channels With Clamping and
      Automatic Gain Control (AGC) for Best Signal to Noise (SNR) Performance
    • Brightness, Contrast, Saturation, Hue, and Sharpness Control Through
      Inter-Integrated Circuit (I2C)
    • Complementary 4-Line (3-H Delay) Adaptive Comb Filters for Both Cross-Luminance and
      Cross-Chrominance Noise Reduction
    • Patented Architecture for Locking to Weak, Noisy, or Unstable Signals
  • Four Independent Polymorphic Scalers
  • Single or Concurrent Scaled and Unscaled Outputs Via Dual Clocking Data,
    Interleaved 54-MHz Data or Single 27-MHz Clock
  • Scaled/Unscaled Image Toggle Mode Gives Variable Field Rate for Both
    Scaled and Unscaled Video
  • Low Power Consumption: 700 mW Typical
  • 128-Pin Thin Quad Flat Pack (TQFP) Package
  • Single 14.31818-MHz Crystal for All Standards and All Channels
  • Internal Phase-Locked Loop (PLL) for Line-Locked Clock
    (Separate for Each Channel) and Sampling
  • Sub-Carrier Genlock Output for Synchronizing Color Sub-Carrier of External Encoder
  • Standard Programmable Video Output Format
    • ITU-R BT.656, 8-Bit 4:2:2 With Embedded Syncs
    • 8-Bit 4:2:2 With Discrete Syncs
  • Advanced Programmable Video Output Formats
    • 2× Over-Sampled Raw Vertical Blanking Interval (VBI)
      Data During Active Video
    • Sliced VBI Data During Horizontal Blanking or Active Video
  • VBI Modes Supported:
    • Teletext (NABTS, WST)
    • Closed-Caption Decode With FIFO, and Extended Data Services (EDS)
    • Wide Screen Signaling (WSS), Video Program System (VPS), Copy Generation
      Management System (CGMS), Vertical Interval Time Code (VITC)
    • Gemstar 1×/2× Electronic Program Guide Compatible Mode
    • Custom Configuration Mode Allows User to Program the Slice Engine
      for Unique VBI Data Signals
  • Improved Fast Lock Mode Can Be Used When Input Video Standard Is
    Known and Signals on Switching Channels Are Clean
  • Four Possible I2C Addresses Allowing 16 Decoder Channels
    on a Single I2C Bus
  • Available in Commercial (0°C to 70°C) and Industrial (–40°C to 85°C) Temperature Ranges

  • Four Separate Video Decoder Channels With Features for Each Channel:
    • Accept NTSC (J, M, 4.43), PAL (B, D, G, H, I, M, N, Nc), and
      SECAM (B, D, G, K, K1, L) Video
    • Support ITU-R BT.601 Standard Sampling
    • High-Speed 9-Bit Analog-to-Digital Converter (ADC)
    • Two Composite Inputs or One S-Video Input (for Each Channel)
    • Fully Differential CMOS Analog Preprocessing Channels With Clamping and
      Automatic Gain Control (AGC) for Best Signal to Noise (SNR) Performance
    • Brightness, Contrast, Saturation, Hue, and Sharpness Control Through
      Inter-Integrated Circuit (I2C)
    • Complementary 4-Line (3-H Delay) Adaptive Comb Filters for Both Cross-Luminance and
      Cross-Chrominance Noise Reduction
    • Patented Architecture for Locking to Weak, Noisy, or Unstable Signals
  • Four Independent Polymorphic Scalers
  • Single or Concurrent Scaled and Unscaled Outputs Via Dual Clocking Data,
    Interleaved 54-MHz Data or Single 27-MHz Clock
  • Scaled/Unscaled Image Toggle Mode Gives Variable Field Rate for Both
    Scaled and Unscaled Video
  • Low Power Consumption: 700 mW Typical
  • 128-Pin Thin Quad Flat Pack (TQFP) Package
  • Single 14.31818-MHz Crystal for All Standards and All Channels
  • Internal Phase-Locked Loop (PLL) for Line-Locked Clock
    (Separate for Each Channel) and Sampling
  • Sub-Carrier Genlock Output for Synchronizing Color Sub-Carrier of External Encoder
  • Standard Programmable Video Output Format
    • ITU-R BT.656, 8-Bit 4:2:2 With Embedded Syncs
    • 8-Bit 4:2:2 With Discrete Syncs
  • Advanced Programmable Video Output Formats
    • 2× Over-Sampled Raw Vertical Blanking Interval (VBI)
      Data During Active Video
    • Sliced VBI Data During Horizontal Blanking or Active Video
  • VBI Modes Supported:
    • Teletext (NABTS, WST)
    • Closed-Caption Decode With FIFO, and Extended Data Services (EDS)
    • Wide Screen Signaling (WSS), Video Program System (VPS), Copy Generation
      Management System (CGMS), Vertical Interval Time Code (VITC)
    • Gemstar 1×/2× Electronic Program Guide Compatible Mode
    • Custom Configuration Mode Allows User to Program the Slice Engine
      for Unique VBI Data Signals
  • Improved Fast Lock Mode Can Be Used When Input Video Standard Is
    Known and Signals on Switching Channels Are Clean
  • Four Possible I2C Addresses Allowing 16 Decoder Channels
    on a Single I2C Bus
  • Available in Commercial (0°C to 70°C) and Industrial (–40°C to 85°C) Temperature Ranges

The TVP5154A device is a 4-channel, low-power, NTSC/PAL/SECAM video decoder. Available in a space-saving 128-pin thin quad flat pack (TQFP) package, each channel of the TVP5154A decoder converts NTSC, PAL, or SECAM video signals to 8-bit ITU-R BT.656 format. Discrete syncs are also available. All four channels of the TVP5154A are independently controllable. The decoders share one crystal for all channels and for all supported standards. The TVP5154A can be programmed using a single inter-integrated circuit (I2C) serial interface. The decoder uses a 1.8-V supply for its analog and digital supplies, and a 3.3-V supply for its I/O. The optimized architecture of the TVP5154A decoder allows for low power consumption. The decoder consumes less than 720 mW of power in typical operation.

Each channel of the TVP5154A is an independent video decoder with a programmable polymorphic scaler. Each channel converts baseband analog video into digital YCbCr 4:2:2 component video, which can then be scaled down to any resolution to 1/256 vertical and 15-bit horizontal in 2-pixel decrements. Composite and S-video inputs are supported. Each channel includes one 9-bit analog-to-digital converter (ADC) with 2× sampling. Sampling is ITU-R BT.601 (27.0) MHz, generated from a single 14.31818-MHz crystal or oscillator input) and is line locked. The output formats can be 8-bit 4:2:2 with discrete syncs or 8-bit ITU-R BT.656 with embedded synchronization.

The TVP5154A utilizes Texas Instruments patented technology for locking to weak, noisy, or unstable signals. A real-time control (RTC) output is generated for each channel for synchronizing downstream video encoders.

Complementary 4-line adaptive comb filtering is available per channel for both the luma and chroma data paths to reduce both cross-luma and cross-chroma artifacts. A chroma trap filter also is available.

An improved fast lock mode can be used when the input video standard is known and the signals on the switching channels are clean. Note, switching from snow and/or noisy channels to good channels takes longer. In fast lock mode, video lock is achieved in three fields or less.

Video characteristics, including hue, contrast, brightness, saturation, and sharpness, may be independently programmed for each channel using the industry standard I2C serial interface. The TVP5154A generates synchronization, blanking, lock, and clock signals in addition to digital video outputs for each channel. The TVP5154A includes methods for advanced vertical blanking interval (VBI) data retrieval. The VBI data processor slices, parses, and performs error checking on teletext, closed caption, and other data in several formats.

I2C commands can be sent to one or more decoder cores simultaneously, reducing the amount of I2C activity necessary to configure each core. A register controls which decoder core receives I2C commands, and can be configured such that all four decoders receive commands at the same time.

The main blocks for each of the channels of the TVP5154A decoder include:

  • Robust sync detector
  • ADC with analog processor
  • Y/C separation using 4-line adaptive comb filter
  • Independent, concurrent scaler outputs
  • Chrominance processor
  • Luminance processor
  • Video clock/timing processor and power-down control
  • I2C interface
  • VBI data processor

The TVP5154A device is a 4-channel, low-power, NTSC/PAL/SECAM video decoder. Available in a space-saving 128-pin thin quad flat pack (TQFP) package, each channel of the TVP5154A decoder converts NTSC, PAL, or SECAM video signals to 8-bit ITU-R BT.656 format. Discrete syncs are also available. All four channels of the TVP5154A are independently controllable. The decoders share one crystal for all channels and for all supported standards. The TVP5154A can be programmed using a single inter-integrated circuit (I2C) serial interface. The decoder uses a 1.8-V supply for its analog and digital supplies, and a 3.3-V supply for its I/O. The optimized architecture of the TVP5154A decoder allows for low power consumption. The decoder consumes less than 720 mW of power in typical operation.

Each channel of the TVP5154A is an independent video decoder with a programmable polymorphic scaler. Each channel converts baseband analog video into digital YCbCr 4:2:2 component video, which can then be scaled down to any resolution to 1/256 vertical and 15-bit horizontal in 2-pixel decrements. Composite and S-video inputs are supported. Each channel includes one 9-bit analog-to-digital converter (ADC) with 2× sampling. Sampling is ITU-R BT.601 (27.0) MHz, generated from a single 14.31818-MHz crystal or oscillator input) and is line locked. The output formats can be 8-bit 4:2:2 with discrete syncs or 8-bit ITU-R BT.656 with embedded synchronization.

The TVP5154A utilizes Texas Instruments patented technology for locking to weak, noisy, or unstable signals. A real-time control (RTC) output is generated for each channel for synchronizing downstream video encoders.

Complementary 4-line adaptive comb filtering is available per channel for both the luma and chroma data paths to reduce both cross-luma and cross-chroma artifacts. A chroma trap filter also is available.

An improved fast lock mode can be used when the input video standard is known and the signals on the switching channels are clean. Note, switching from snow and/or noisy channels to good channels takes longer. In fast lock mode, video lock is achieved in three fields or less.

Video characteristics, including hue, contrast, brightness, saturation, and sharpness, may be independently programmed for each channel using the industry standard I2C serial interface. The TVP5154A generates synchronization, blanking, lock, and clock signals in addition to digital video outputs for each channel. The TVP5154A includes methods for advanced vertical blanking interval (VBI) data retrieval. The VBI data processor slices, parses, and performs error checking on teletext, closed caption, and other data in several formats.

I2C commands can be sent to one or more decoder cores simultaneously, reducing the amount of I2C activity necessary to configure each core. A register controls which decoder core receives I2C commands, and can be configured such that all four decoders receive commands at the same time.

The main blocks for each of the channels of the TVP5154A decoder include:

  • Robust sync detector
  • ADC with analog processor
  • Y/C separation using 4-line adaptive comb filter
  • Independent, concurrent scaler outputs
  • Chrominance processor
  • Luminance processor
  • Video clock/timing processor and power-down control
  • I2C interface
  • VBI data processor

ダウンロード 字幕付きのビデオを表示 ビデオ

TI からの設計サポートは利用不可能

この製品に関して、新しいコンテンツやソフトウェアの更新など、新規プロジェクトに対する TI からの継続的な設計サポートはありません。該当する場合は、関連する資料、ソフトウェア、ツールはプロダクト フォルダに掲載されています。TI E2ETM サポート フォーラムで、アーカイブ済みの情報を検索することもできます。

技術資料

star =TI が選定したこの製品の主要ドキュメント
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。
11 をすべて表示
種類 タイトル 最新の英語版をダウンロード 日付
* データシート TVP5154A 4-Channel Low-Power PAL/NTSC/SECAM Video Decoder データシート (Rev. C) 2010年 9月 28日
アプリケーション・ノート TVP5154A Anti-Aliasing Filters (Rev. A) 2010年 9月 17日
アプリケーション・ノート TVP5154A VBI Quick Start 2010年 7月 7日
アプリケーション・ノート TVP5154A Indirect Registers 2010年 6月 25日
アプリケーション・ノート TVP5154A Patch Code Download Guidelines 2010年 6月 23日
アプリケーション・ノート TVP5154A PCB Layout Guidelines 2010年 6月 16日
ユーザー・ガイド TVP5154EVM Quick Start Guide (Rev. A) 2006年 7月 13日
アプリケーション・ノート TVP5154 Indirect Registers 2006年 7月 1日
アプリケーション・ノート TVP5154 PCB Layout Guidelines 2006年 7月 1日
EVM ユーザー ガイド (英語) TVP5154EVM (Rev. A) 2006年 6月 13日
アプリケーション・ノート Using the Scaler in the TVP5154 2006年 3月 31日

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。

シミュレーション・ツール

PSPICE-FOR-TI — TI Design / シミュレーション・ツール向け PSpice®

PSpice® for TI は、各種アナログ回路の機能評価に役立つ、設計とシミュレーション向けの環境です。設計とシミュレーションに適したこのフル機能スイートは、Cadence® のアナログ分析エンジンを使用しています。PSpice for TI は無償で使用でき、アナログや電源に関する TI の製品ラインアップを対象とする、業界でも有数の大規模なモデル・ライブラリが付属しているほか、選択された一部のアナログ動作モデルも利用できます。

設計とシミュレーション向けの環境である PSpice for TI (...)
シミュレーション・ツール

TINA-TI — SPICE ベースのアナログ・シミュレーション・プログラム

TINA-TI は、DC 解析、過渡解析、周波数ドメイン解析など、SPICE の標準的な機能すべてを搭載しています。TINA には多彩な後処理機能があり、結果を必要なフォーマットにすることができます。仮想計測機能を使用すると、入力波形を選択し、回路ノードの電圧や波形を仮想的に測定することができます。TINA の回路キャプチャ機能は非常に直観的であり、「クイックスタート」を実現できます。

TINA-TI をインストールするには、約 500MB が必要です。インストールは簡単です。必要に応じてアンインストールも可能です。(そのようなことはないと思いますが)

TINA は DesignSoft (...)

ユーザー ガイド: PDF
英語版 (Rev.A): PDF
パッケージ ピン数 ダウンロード
HTQFP (PNP) 128 オプションの表示

購入と品質

記載されている情報:
  • RoHS
  • REACH
  • デバイスのマーキング
  • リード端子の仕上げ / ボールの原材料
  • MSL 定格 / ピーク リフロー
  • MTBF/FIT 推定値
  • 材質成分
  • 認定試験結果
  • 継続的な信頼性モニタ試験結果
記載されている情報:
  • ファブの拠点
  • 組み立てを実施した拠点

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