产品详情

Number of outputs 10 Additive RMS jitter (typ) (fs) 40 Core supply voltage (V) 1.8 Output supply voltage (V) 1.8 Output skew (ps) 30 Operating temperature range (°C) 0 to 70 Rating Catalog Output type LVCMOS Input type LVCMOS
Number of outputs 10 Additive RMS jitter (typ) (fs) 40 Core supply voltage (V) 1.8 Output supply voltage (V) 1.8 Output skew (ps) 30 Operating temperature range (°C) 0 to 70 Rating Catalog Output type LVCMOS Input type LVCMOS
NFBGA (NMK) 52 31.5 mm² (7 mm × 4.5 mm)
  • 1.8-V/1.9-V Phase Lock Loop Clock Driver for Double Data Rate ( DDR II ) Applications
  • Spread Spectrum Clock Compatible
  • Operating Frequency: 125 MHz to 410 MHz
  • Application Frequency: 160 MHz to 410 MHz
  • Low Jitter (Cycle-Cycle): ±40 ps
  • Low Output Skew: 35 ps
  • Stabilization Time <6 µs
  • Distributes One Differential Clock Input to 10 Differential Outputs
  • High-Drive Version of CDCUA877
  • 52-Ball mBGA (MicroStar Junior™; BGA, 0,65-mm pitch)
  • External Feedback Pins ( FBIN, FBIN ) are Used to Synchronize the Outputs to the Input Clocks
  • Meets or Exceeds CUA877/CUA878 Specification PLL Standard for PC2-3200/4300/5300/6400
  • Fail-Safe Inputs

MicroStar Junior is a trademark of Texas Instruments.

  • 1.8-V/1.9-V Phase Lock Loop Clock Driver for Double Data Rate ( DDR II ) Applications
  • Spread Spectrum Clock Compatible
  • Operating Frequency: 125 MHz to 410 MHz
  • Application Frequency: 160 MHz to 410 MHz
  • Low Jitter (Cycle-Cycle): ±40 ps
  • Low Output Skew: 35 ps
  • Stabilization Time <6 µs
  • Distributes One Differential Clock Input to 10 Differential Outputs
  • High-Drive Version of CDCUA877
  • 52-Ball mBGA (MicroStar Junior™; BGA, 0,65-mm pitch)
  • External Feedback Pins ( FBIN, FBIN ) are Used to Synchronize the Outputs to the Input Clocks
  • Meets or Exceeds CUA877/CUA878 Specification PLL Standard for PC2-3200/4300/5300/6400
  • Fail-Safe Inputs

MicroStar Junior is a trademark of Texas Instruments.

The CDCU2A877 is a high-performance, low-jitter, low-skew, zero-delay buffer that distributes a differential clock input pair (CK, CK) to 10 differential pairs of clock outputs (Yn, Yn) and to one differential pair of feedback clock outputs (FBOUT, FBOUT). The clock outputs are controlled by the input clocks (CK, CK), the feedback clocks (FBIN, FBIN), the LVCMOS control pins (OE, OS), and the analog power input (AVDD). When OE is low, the clock outputs, except FBOUT/FBOUT, are disabled while the internal PLL continues to maintain its locked-in frequency. OS (output select) is a program pin that must be tied to GND or VDD. When OS is high, OE functions as previously described. When OS and OE are both low, OE has no affect on Y7/Y7, they are free running. When AVDD is grounded, the PLL is turned off and bypassed for test purposes.

When both clock inputs (CK, CK) are logic low, the device enters in a low power mode. An input logic detection circuit on the differential inputs, independent from input buffers, detects the logic low level and performs in a low power state where all outputs, the feedback, and the PLL are off. When the clock inputs transition from being logic low to being differential signals, the PLL turns back on, the inputs and the outputs are enabled, and the PLL obtains phase lock between the feedback clock pair (FBIN, FBIN) and the clock input pair (CK, CK) within the specified stabilization time.

The CDCU2A877 is able to track spread spectrum clocking (SSC) for reduced EMI. This device operates from 0°C to 70°C.

The CDCU2A877 is a high-performance, low-jitter, low-skew, zero-delay buffer that distributes a differential clock input pair (CK, CK) to 10 differential pairs of clock outputs (Yn, Yn) and to one differential pair of feedback clock outputs (FBOUT, FBOUT). The clock outputs are controlled by the input clocks (CK, CK), the feedback clocks (FBIN, FBIN), the LVCMOS control pins (OE, OS), and the analog power input (AVDD). When OE is low, the clock outputs, except FBOUT/FBOUT, are disabled while the internal PLL continues to maintain its locked-in frequency. OS (output select) is a program pin that must be tied to GND or VDD. When OS is high, OE functions as previously described. When OS and OE are both low, OE has no affect on Y7/Y7, they are free running. When AVDD is grounded, the PLL is turned off and bypassed for test purposes.

When both clock inputs (CK, CK) are logic low, the device enters in a low power mode. An input logic detection circuit on the differential inputs, independent from input buffers, detects the logic low level and performs in a low power state where all outputs, the feedback, and the PLL are off. When the clock inputs transition from being logic low to being differential signals, the PLL turns back on, the inputs and the outputs are enabled, and the PLL obtains phase lock between the feedback clock pair (FBIN, FBIN) and the clock input pair (CK, CK) within the specified stabilization time.

The CDCU2A877 is able to track spread spectrum clocking (SSC) for reduced EMI. This device operates from 0°C to 70°C.

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顶层文档 类型 标题 格式选项 下载最新的英语版本 日期
* 数据表 1.8-V Phase Lock Loop Clock Driver 数据表 (Rev. A) 2007-6-18
用户指南 CTS MicroStar BGA Discontinued and Redesigned 2020-11-3
应用手册 正确理解时钟器件的抖动性能 2013-1-16
应用手册 DDR2 Memory Interface Clocks and Registers - Overview 2009-3-25
应用手册 Application Examples for CDCUx877x PLL family 2008-5-7

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仿真模型

CDCU2A877 IBIS Model

SCAC086.ZIP (13 KB) - IBIS 模型
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封装 引脚 CAD 符号、封装和 3D 模型
NFBGA (NMK) 52 Ultra Librarian

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