CDCFR83 は新規設計での使用を推奨しません
従来の設計をサポートできるようにこの製品は引き続き生産中ですが、TI はこの製品を新規の設計には推奨しません。以下の代替品のいずれかをご検討ください。
open-in-new 代替品と比較
比較対象デバイスにアップグレード機能を搭載した、ドロップ・イン代替製品
CDCFR83A アクティブ Direct Rambus™ クロック・ジェネレータ This device is an updated revision.
比較対象デバイスと類似の機能
CDCDB2000 アクティブ PCIe® Gen 1 ~ Gen 5 向け、DB2000QL に対応する、20 出力のクロック・バッファ Replacement

製品詳細

Function Memory interface Output frequency (max) (MHz) 533 Number of outputs 1 Core supply voltage (V) 3.3 Operating temperature range (°C) -40 to 85 Rating Catalog
Function Memory interface Output frequency (max) (MHz) 533 Number of outputs 1 Core supply voltage (V) 3.3 Operating temperature range (°C) -40 to 85 Rating Catalog
SSOP (DBQ) 24 51.9 mm² 8.65 x 6
  • 533-MHz Differential Clock Source for Direct Rambus™ Memory Systems for an 1066-MHz Data Transfer Rate
  • Synchronizes the Clock Domains of the Rambus Channel With an External System or Processor Clock
  • Three Power Operating Modes to Minimize Power for Mobile and Other Power-Sensitive Applications
  • Operates From a Single 3.3-V Supply and 120 mW at 300 MHz (Typ)
  • Packaged in a Shrink Small-Outline Package (DBQ)
  • Supports Frequency Multipliers: 4, 6, 8, 16/3
  • No External Components Required for PLL
  • Supports Independent Channel Clocking
  • Spread Spectrum Clocking Tracking Capability to Reduce EMI
  • Designed for Use With TI’s 133-MHz Clock Synthesizers CDC924 and CDC921
  • Cycle-Cycle Jitter Is Less Than 40 ps at 533 MHz
  • Certified by Gigatest Labs to Exceed the Rambus DRCG Validation Requirement
  • Supports Industrial Temperature Range of –40°C to 85°C

Direct Rambus and Rambus are trademarks of Rambus Inc.

NOT RECOMMENDED FOR NEW DESIGNS USE CDCFR83A AS A REPLACEMENT

  • 533-MHz Differential Clock Source for Direct Rambus™ Memory Systems for an 1066-MHz Data Transfer Rate
  • Synchronizes the Clock Domains of the Rambus Channel With an External System or Processor Clock
  • Three Power Operating Modes to Minimize Power for Mobile and Other Power-Sensitive Applications
  • Operates From a Single 3.3-V Supply and 120 mW at 300 MHz (Typ)
  • Packaged in a Shrink Small-Outline Package (DBQ)
  • Supports Frequency Multipliers: 4, 6, 8, 16/3
  • No External Components Required for PLL
  • Supports Independent Channel Clocking
  • Spread Spectrum Clocking Tracking Capability to Reduce EMI
  • Designed for Use With TI’s 133-MHz Clock Synthesizers CDC924 and CDC921
  • Cycle-Cycle Jitter Is Less Than 40 ps at 533 MHz
  • Certified by Gigatest Labs to Exceed the Rambus DRCG Validation Requirement
  • Supports Industrial Temperature Range of –40°C to 85°C

Direct Rambus and Rambus are trademarks of Rambus Inc.

NOT RECOMMENDED FOR NEW DESIGNS USE CDCFR83A AS A REPLACEMENT

The Direct Rambus clock generator (DRCG) provides the necessary clock signals to support a Direct Rambus memory subsystem. It includes signals to synchronize the Direct Rambus channel clock to an external system or processor clock. It is designed to support Direct Rambus memory on a desktop, workstation, server, and mobile PC motherboards. DRCG also provides an off-the-shelf solution for a broad range of Direct Rambus memory applications.

The DRCG provides clock multiplication and phase alignment for a Direct Rambus memory subsystem to enable synchronous communication between the Rambus channel and ASIC clock domains. In a Direct Rambus memory subsystem, a system clock source provides the REFCLK and PCLK clock references to the DRCG and memory controller, respectively. The DRCG multiplies REFCLK and drives a high-speed BUSCLK to RDRAMs and the memory controller. Gear ratio logic in the memory controller divides the PCLK and BUSCLK frequencies by ratios M and N such that PCLKM = SYNCLKN, where SYNCLK = BUSCLK/4. The DRCG detects the phase difference between PCLKM and SYNCLKN and adjusts the phase of BUSCLK such that the skew between PCLKM and SYNCLKN is minimized. This allows data to be transferred across the SYNCLK/PCLK boundary without incurring additional latency.

User control is provided by multiply and mode selection terminals. The multiply terminals provide selection of one of four clock frequency multiply ratios, generating BUSCLK frequencies ranging from 267 MHz to 533 MHz with clock references ranging from 33 MHz to 100 MHz. The mode select terminals can be used to select a bypass mode where the frequency multiplied reference clock is directly output to the Rambus channel for systems where synchronization between the Rambus clock and a system clock is not required. Test modes are provided to bypass the PLL and output REFCLK on the Rambus channel and to place the outputs in a high-impedance state for board testing.

The CDCFR83 is characterized for operation over free-air temperatures of –40°C to 85°C.

The Direct Rambus clock generator (DRCG) provides the necessary clock signals to support a Direct Rambus memory subsystem. It includes signals to synchronize the Direct Rambus channel clock to an external system or processor clock. It is designed to support Direct Rambus memory on a desktop, workstation, server, and mobile PC motherboards. DRCG also provides an off-the-shelf solution for a broad range of Direct Rambus memory applications.

The DRCG provides clock multiplication and phase alignment for a Direct Rambus memory subsystem to enable synchronous communication between the Rambus channel and ASIC clock domains. In a Direct Rambus memory subsystem, a system clock source provides the REFCLK and PCLK clock references to the DRCG and memory controller, respectively. The DRCG multiplies REFCLK and drives a high-speed BUSCLK to RDRAMs and the memory controller. Gear ratio logic in the memory controller divides the PCLK and BUSCLK frequencies by ratios M and N such that PCLKM = SYNCLKN, where SYNCLK = BUSCLK/4. The DRCG detects the phase difference between PCLKM and SYNCLKN and adjusts the phase of BUSCLK such that the skew between PCLKM and SYNCLKN is minimized. This allows data to be transferred across the SYNCLK/PCLK boundary without incurring additional latency.

User control is provided by multiply and mode selection terminals. The multiply terminals provide selection of one of four clock frequency multiply ratios, generating BUSCLK frequencies ranging from 267 MHz to 533 MHz with clock references ranging from 33 MHz to 100 MHz. The mode select terminals can be used to select a bypass mode where the frequency multiplied reference clock is directly output to the Rambus channel for systems where synchronization between the Rambus clock and a system clock is not required. Test modes are provided to bypass the PLL and output REFCLK on the Rambus channel and to place the outputs in a high-impedance state for board testing.

The CDCFR83 is characterized for operation over free-air temperatures of –40°C to 85°C.

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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 Direct Rambus Clock Generator データシート (Rev. B) 2005年 10月 11日
アプリケーション・ノート General Application Setup for CDCR83/CDCFR83 2002年 1月 10日

設計と開発

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シミュレーション・モデル

CDCFR83 IBIS Model (Rev. A)

SCAC022A.ZIP (12 KB) - IBIS Model
シミュレーション・ツール

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SSOP (DBQ) 24 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

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