CPPC1-LT5PT

CPPC1-LT5PT

  • Description:OSC PROG CMOS 3.3V 50PPM EN/DS
  • Series:FIPO™ CPP
  • Mfr:Cardinal Components Inc.
  • Package:Tube

SKU:edc2023adfde Category: Brand:

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Product Detailed Parameters

  • Description:OSC PROG CMOS 3.3V 50PPM EN/DS
  • Series:FIPO™ CPP
  • Mfr:Cardinal Components Inc.
  • Package:Tube
  • Base Resonator:Crystal
  • Type:XO (Standard)
  • Programmable Type:Programmed by Digi-Key (Enter your frequency in Web Order Notes)
  • Available Frequency Range:1 MHz ~ 100 MHz
  • Function:Enable/Disable
  • Output:CMOS
  • Voltage - Supply:3.3V
  • Frequency Stability:±50ppm
  • Frequency Stability (Total):-
  • Operating Temperature:-20°C ~ 70°C
  • Spread Spectrum Bandwidth:-
  • Current - Supply (Max):25mA
  • Ratings:-
  • Mounting Type:Through Hole
  • Package / Case:14-DIP, 4 Leads (Full Size, Metal Can)
  • Size / Dimension:0.819" L x 0.520" W (20.80mm x 13.20mm)
  • Height - Seated (Max):0.200" (5.08mm)

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CPPC1-LT5PT

Buying Guide
Summary

Cardinal Components Inc. CPPC1-LT5PT is selected in Programmable Oscillators category when storage behavior must remain predictable across temperature and production variance. Key specs include Description (OSC PROG CMOS 3.3V 50PPM EN/DS), Type (XO (Standard)), Temperature (-20°C ~ 70°C), Package/case (14-DIP, 4 Leads (Full Size, Metal Can)), and Mounting (Through Hole).

Selection Notes
  • For CPPC1-LT5PT, validate the operating temperature range (-20°C ~ 70°C) for your environment and margin.
  • Confirm Current - Supply (Max) (25mA) and ensure it matches your integration requirements.
  • Ensure the package/case (14-DIP, 4 Leads (Full Size, Metal Can)) and land pattern match your PCB layout before procurement.
  • Check the supply current (25mA) in your power budget and thermal plan.
Alternates & Substitutions
  • For Programmable Oscillators, compare the datasheet test conditions behind key specs and re-check the margins that were tightest during bring-up.
  • When evaluating alternates, treat package/case 14-DIP, 4 Leads (Full Size, Metal Can), mounting Through Hole, packaging Tube as non-negotiable unless you are re-spinning the PCB.
  • For digital alternates, confirm pin functions and timing margins, not only the headline capacity or clock rate.
  • If you need a second source, provide (package 14-DIP, 4 Leads (Full Size, Metal Can), supply 3.3V, frequency 1 MHz ~ 100 MHz) and we will suggest options to evaluate under a clear test plan.
FAQ

Any tips for reliable operation with CPPC1-LT5PT?
Ensure robust power sequencing, adequate decoupling capacitors, and verify signal integrity on high-speed data buses.

Which frequency range is listed for CPPC1-LT5PT?
1 MHz ~ 100 MHz

How is CPPC1-LT5PT supplied (packaging)?
Tube

Which supply voltage range is specified for CPPC1-LT5PT?
3.3V

Application Scenarios

For many Programmable Oscillators designs, Cardinal Components Inc. CPPC1-LT5PT is vetted against electrical margins, thermal headroom, and mechanical integration before the BOM is frozen. For sampling and RF systems, deterministic lock behavior and stable phase noise can matter more than typical datasheet numbers. Well-behaved timing distribution reduces intermittent failures by keeping edges clean and deterministic across manufacturing variance. In real deployments, across telecom and networking, jitter budgets and timing distribution determine link stability in 24/7 racks. In practice, within telecom and networking, timing components keep Ethernet switches and line cards synchronized in 24/7 racks with limited airflow and strict jitter budgets. In industrial motion control, they stabilize capture timing and PWM generation in servo drives exposed to inverter EMI and large thermal gradients. In short, it keeps integration risk under control while improving long-term reliability.

Compatibility Advice
  • In board-level integration, confirm jitter/phase-noise assumptions with the real power and grounding so system timing margins remain measurable. This keeps qualification evidence reproducible later.
  • In practice, verify supply filtering, grounding, and routing so jitter and phase noise stay inside budget on the real board with the final enclosure and cabling.
Project Fit
  • Best fit for Programmable Oscillators when you can validate the key assumptions on the assembled system and keep acceptance criteria measurable.
CPPC1-LT5PTCPPC1-LT5PT

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