제품 상세 정보

Number of outputs 12 Additive RMS jitter (typ) (fs) 57 Core supply voltage (V) 2.5, 3.3 Output supply voltage (V) 2.5, 3.3 Output skew (ps) 25 Operating temperature range (°C) -40 to 85 Rating Catalog Output type LVPECL Input type LVCMOS, LVDS, LVPECL
Number of outputs 12 Additive RMS jitter (typ) (fs) 57 Core supply voltage (V) 2.5, 3.3 Output supply voltage (V) 2.5, 3.3 Output skew (ps) 25 Operating temperature range (°C) -40 to 85 Rating Catalog Output type LVPECL Input type LVCMOS, LVDS, LVPECL
VQFN (RHA) 40 36 mm² (6 mm × 6 mm)
  • 2:12 Differential Buffer
  • Selectable Clock Inputs Through Control Terminal
  • Universal Inputs Accept LVPECL, LVDS, and
    LVCMOS/LVTTL
  • 12 LVPECL Outputs
  • Maximum Clock Frequency: 2 GHz
  • Maximum Core Current Consumption: 88 mA
  • Very Low Additive Jitter: <100 fs, rms in 10-kHz to
    20-MHz Offset Range:
    • 57 fs, rms (typ) @ 122.88 MHz
    • 48 fs, rms (typ) @ 156.25 MHz
    • 30 fs, rms (typ) @ 312.5 MHz
  • 2.375-V to 3.6-V Device Power Supply
  • Maximum Propagation Delay: 550 ps
  • Maximum Output Skew: 25 ps
  • LVPECL Reference Voltage, VAC_REF, Available
    for Capacitive-Coupled Inputs
  • Industrial Temperature Range: –40°C to 85°C
  • ESD Protection Exceeds 2 kV (HBM)
  • Supports 105°C PCB Temperature (Measured
    with a Thermal Pad)
  • Available in 6-mm × 6-mm QFN-40 (RHA) Package
  • 2:12 Differential Buffer
  • Selectable Clock Inputs Through Control Terminal
  • Universal Inputs Accept LVPECL, LVDS, and
    LVCMOS/LVTTL
  • 12 LVPECL Outputs
  • Maximum Clock Frequency: 2 GHz
  • Maximum Core Current Consumption: 88 mA
  • Very Low Additive Jitter: <100 fs, rms in 10-kHz to
    20-MHz Offset Range:
    • 57 fs, rms (typ) @ 122.88 MHz
    • 48 fs, rms (typ) @ 156.25 MHz
    • 30 fs, rms (typ) @ 312.5 MHz
  • 2.375-V to 3.6-V Device Power Supply
  • Maximum Propagation Delay: 550 ps
  • Maximum Output Skew: 25 ps
  • LVPECL Reference Voltage, VAC_REF, Available
    for Capacitive-Coupled Inputs
  • Industrial Temperature Range: –40°C to 85°C
  • ESD Protection Exceeds 2 kV (HBM)
  • Supports 105°C PCB Temperature (Measured
    with a Thermal Pad)
  • Available in 6-mm × 6-mm QFN-40 (RHA) Package

The CDCLVP1212 is a highly versatile, low additive jitter buffer that can generate 12 copies of LVPECL clock outputs from one of two selectable LVPECL, LVDS, or LVCMOS inputs for a variety of communication applications. It has a maximum clock frequency up to 2 GHz. The CDCLVP1212 features an on-chip multiplexer (MUX) for selecting one of two inputs that can be easily configured solely through a control terminal. The overall additive jitter performance is less than 0.1 ps, RMS from 10 kHz to 20 MHz, and overall output skew is as low as 25 ps, making the device a perfect choice for use in demanding applications.

The CDCLVP1212 clock buffer distributes one of two selectable clock inputs (IN0, IN1) to 12 pairs of differential LVPECL clock outputs (OUT0, OUT11) with minimum skew for clock distribution. The CDCLVP1212 can accept two clock sources into an input multiplexer. The inputs can be LVPECL, LVDS, or LVCMOS/LVTTL.

The CDCLVP1212 is specifically designed for driving 50-Ω transmission lines. When driving the inputs in single-ended mode, the LVPECL bias voltage (VAC_REF) should be applied to the unused negative input terminal. However, for high-speed performance up to 2 GHz, differential mode is strongly recommended.

The CDCLVP1212 is packaged in a small 40-terminal, 6-mm × 6-mm QFN package and is characterized for operation from –40°C to 85°C.

The CDCLVP1212 is a highly versatile, low additive jitter buffer that can generate 12 copies of LVPECL clock outputs from one of two selectable LVPECL, LVDS, or LVCMOS inputs for a variety of communication applications. It has a maximum clock frequency up to 2 GHz. The CDCLVP1212 features an on-chip multiplexer (MUX) for selecting one of two inputs that can be easily configured solely through a control terminal. The overall additive jitter performance is less than 0.1 ps, RMS from 10 kHz to 20 MHz, and overall output skew is as low as 25 ps, making the device a perfect choice for use in demanding applications.

The CDCLVP1212 clock buffer distributes one of two selectable clock inputs (IN0, IN1) to 12 pairs of differential LVPECL clock outputs (OUT0, OUT11) with minimum skew for clock distribution. The CDCLVP1212 can accept two clock sources into an input multiplexer. The inputs can be LVPECL, LVDS, or LVCMOS/LVTTL.

The CDCLVP1212 is specifically designed for driving 50-Ω transmission lines. When driving the inputs in single-ended mode, the LVPECL bias voltage (VAC_REF) should be applied to the unused negative input terminal. However, for high-speed performance up to 2 GHz, differential mode is strongly recommended.

The CDCLVP1212 is packaged in a small 40-terminal, 6-mm × 6-mm QFN package and is characterized for operation from –40°C to 85°C.

다운로드 스크립트와 함께 비디오 보기 비디오

관심 가지실만한 유사 제품

open-in-new 대안 비교
비교 대상 장치와 유사한 기능.
LMK00301 활성 3GHz, 10개 출력의 차동 팬아웃 버퍼/레벨 변환기 Ultra low additive jitter,1:10 universal differential buffer that can support LVPECL
LMK1D1212 활성 12채널 출력 LVDS 1.8V, 2.5V 및 3.3V LVDS 버퍼 Same pinout with wider supported voltage range and LVPECL vs LVDS

기술 자료

검색된 결과가 없습니다. 검색어를 지우고 다시 시도하세요.
2개 모두 보기
상위 문서 유형 직함 형식 옵션 최신 영어 버전 다운로드 날짜
* 데이터 시트 CDCLVP1212 LVPECL Output, High-Performance Clock Buffer datasheet (Rev. E) PDF | HTML 2015. 12. 2
애플리케이션 노트 Clocking Design Guidelines: Unused Pins 2015. 11. 19

설계 및 개발

추가 조건 또는 필수 리소스는 사용 가능한 경우 아래 제목을 클릭하여 세부 정보 페이지를 확인하세요.

시뮬레이션 모델

CDCLVPxxxx IBIS Model (Rev. B)

SLLM056B.ZIP (40 KB) - IBIS 모델
지원되는 제품 및 하드웨어
설계 툴

CLOCK-TREE-ARCHITECT — 클록 트리 아키텍트 프로그래밍 소프트웨어

클록 트리 아키텍트는 시스템 요구 사항에 따라 클록 트리 솔루션을 생성하여 설계 프로세스를 간소화하는 클록 트리 합성 툴입니다. 이 툴은 광범위한 클로킹 제품 데이터베이스에서 데이터를 가져와 시스템 수준의 다중 칩 클로킹 솔루션을 생성합니다.

지원되는 제품 및 하드웨어
설계 툴

PLLATINUMSIM-SW — PLL 루프 필터, 위상 잡음, 잠금 시간, 스퍼 시뮬레이션 툴

PLLATINUMSIM-SW는 사용자가 LMX 계열의 위상 고정 루프(PLL) 및 신시사이저를 포함하는 PLLatinum™ 집적 회로의 상세한 설계 및 시뮬레이션을 만들 수 있는 시뮬레이션 툴입니다.

지원되는 제품 및 하드웨어
패키지 CAD 기호, 풋프린트 및 3D 모델
VQFN (RHA) 40 Ultra Librarian

주문 및 품질

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지원 및 교육

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콘텐츠는 TI 및 커뮤니티 기고자에 의해 "있는 그대로" 제공되며 TI의 사양으로 간주되지 않습니다. 사용 약관을 참조하십시오.

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