CDCLVP111-SP

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Product details

Number of outputs 10 Additive RMS jitter (typ) (fs) 40 Core supply voltage (V) 3.3 Output supply voltage (V) 3.3 Output skew (ps) 50 Operating temperature range (°C) -55 to 125 Rating Space Output type LVPECL Input type CML, LVDS, LVPECL, SSTL
Number of outputs 10 Additive RMS jitter (typ) (fs) 40 Core supply voltage (V) 3.3 Output supply voltage (V) 3.3 Output skew (ps) 50 Operating temperature range (°C) -55 to 125 Rating Space Output type LVPECL Input type CML, LVDS, LVPECL, SSTL
CFP (HFG) 36 82.410084 mm² (0 mm × 0 mm)
  • Distributes One Differential Clock Input Pair LVPECL to 10 Differential LVPECL
  • Fully Compatible With LVECL and LVPECL
  • Supports a Wide Supply Voltage Range From 2.375V to 3.8V
  • Selectable Clock Input Through CLK_SEL
  • Low-Output Skew (Typical 15ps) for Clock-Distribution Applications
    • Additive Jitter Less Than 1ps
    • Propagation Delay Less Than 355ps
    • Open Input Default State
    • LVDS, CML, SSTL input Compatible
  • VBB Reference Voltage Output for Single-Ended Clocking
  • Frequency Range From DC to 3.5GHz
  • Supports Defense, Aerospace, and Medical Applications
    • Controlled Baseline
    • One Assembly and Test Site
    • One Fabrication Site
    • Available in Military (–55°C to 125°C) Temperature Range (1)
    • Extended Product Life Cycle
    • Extended Product-Change Notification
    • Product Traceability

(1)Custom temperature ranges available.

  • Distributes One Differential Clock Input Pair LVPECL to 10 Differential LVPECL
  • Fully Compatible With LVECL and LVPECL
  • Supports a Wide Supply Voltage Range From 2.375V to 3.8V
  • Selectable Clock Input Through CLK_SEL
  • Low-Output Skew (Typical 15ps) for Clock-Distribution Applications
    • Additive Jitter Less Than 1ps
    • Propagation Delay Less Than 355ps
    • Open Input Default State
    • LVDS, CML, SSTL input Compatible
  • VBB Reference Voltage Output for Single-Ended Clocking
  • Frequency Range From DC to 3.5GHz
  • Supports Defense, Aerospace, and Medical Applications
    • Controlled Baseline
    • One Assembly and Test Site
    • One Fabrication Site
    • Available in Military (–55°C to 125°C) Temperature Range (1)
    • Extended Product Life Cycle
    • Extended Product-Change Notification
    • Product Traceability

(1)Custom temperature ranges available.

The CDCLVP111-SP clock driver distributes one differential clock pair of LVPECL input, (CLK0, CLK1) to ten pairs of differential LVPECL clock (Q0, Q9) outputs with minimum skew for clock distribution. The CDCLVP111-SP can accept two clock sources into an input multiplexer. The CDCLVP111-SP is specifically designed for driving 50Ω transmission lines. When an output pin is not used, leaving the pin open is recommended to reduce power consumption. If only one of the output pins from a differential pair is used, the other output pin must be identically terminated to 50Ω.

The VBB reference voltage output is used if single-ended input operation is required. In this case, the VBB pin must be connected to CLK0 and bypassed to GND using a 10nF capacitor.

For high-speed performance, the differential mode is strongly recommended.

The CDCLVP111-SP is characterized for operation from –55°C to 125°C.

The CDCLVP111-SP clock driver distributes one differential clock pair of LVPECL input, (CLK0, CLK1) to ten pairs of differential LVPECL clock (Q0, Q9) outputs with minimum skew for clock distribution. The CDCLVP111-SP can accept two clock sources into an input multiplexer. The CDCLVP111-SP is specifically designed for driving 50Ω transmission lines. When an output pin is not used, leaving the pin open is recommended to reduce power consumption. If only one of the output pins from a differential pair is used, the other output pin must be identically terminated to 50Ω.

The VBB reference voltage output is used if single-ended input operation is required. In this case, the VBB pin must be connected to CLK0 and bypassed to GND using a 10nF capacitor.

For high-speed performance, the differential mode is strongly recommended.

The CDCLVP111-SP is characterized for operation from –55°C to 125°C.

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Technical documentation

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Top documentation Type Title Format options Date
* Data sheet CDCLVP111-SP Low-Voltage 1:10 LVPECL With Selectable Input Clock Driver datasheet (Rev. B) PDF | HTML Mar 19, 2025
* Radiation & reliability report CDCLVP111-SP Total Ionizing Dose (TID) Radiation Report (Rev. A) Jan 7, 2020
* Radiation & reliability report Single-Event Effects Test Report for CDCLVP111-SP 1:10 LVPECL Clock Distributor Jan 30, 2017
* SMD CDCLVP111-SP SMD 5962-16207 Sep 22, 2020
Selection guide TI Space Products (Rev. L) Mar 27, 2026
Application brief DLA Approved Optimizations for QML Products (Rev. C) PDF | HTML Jun 17, 2025
Application note Heavy Ion Orbital Environment Single-Event Effects Estimations (Rev. B) PDF | HTML Jun 10, 2025
More literature TI Engineering Evaluation Units vs. MIL-PRF-38535 QML Class V Processing (Rev. B) Feb 20, 2025
Application note Single-Event Effects Confidence Interval Calculations (Rev. A) PDF | HTML Oct 19, 2022
E-book Radiation Handbook for Electronics (Rev. A) May 21, 2019

Design & development

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Evaluation board

CDCLVP111EVM-CVAL — CDCLVP111-SP 1:10 LVPECL Clock Driver Evaluation Module

The CDCLVP111-SP EVM allows testing and validation of the CDCLVP111 clock distribution buffer utilizing a ceramic Engineering Model (EM).
User guide: PDF
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CFP (HFG) 36 Ultra Librarian

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