CPPC1-HT0RT

CPPC1-HT0RT

  • Description:OSC PROG CMOS 5V 25PPM EN/DS
  • Series:FIPO™ CPP
  • Mfr:Cardinal Components Inc.
  • Package:Tube

SKU:27532be21314 Category: Brand:

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Product Detailed Parameters

  • Description:OSC PROG CMOS 5V 25PPM 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 ~ 133 MHz
  • Function:Enable/Disable
  • Output:CMOS
  • Voltage - Supply:5V
  • Frequency Stability:±25ppm
  • Frequency Stability (Total):-
  • Operating Temperature:0°C ~ 70°C
  • Spread Spectrum Bandwidth:-
  • Current - Supply (Max):45mA
  • 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-HT0RT

Buying Guide
Summary

Cardinal Components Inc. CPPC1-HT0RT is selected in Programmable Oscillators category when storage behavior must remain predictable across temperature and production variance. Key specs include Description (OSC PROG CMOS 5V 25PPM EN/DS), Type (XO (Standard)), Temperature (0°C ~ 70°C), Package/case (14-DIP, 4 Leads (Full Size, Metal Can)), and Mounting (Through Hole).

Selection Notes
  • For CPPC1-HT0RT, confirm the mounting type (Through Hole) matches your assembly process and reliability requirements.
  • Confirm the supply requirement (5V) is met during startup, transients, and brownout.
  • Confirm the output type (CMOS) is compatible with your interface expectations.
Alternates & Substitutions
  • For Programmable Oscillators substitutions, lock footprint/pinout and operating envelope first, then verify the critical performance conditions on your hardware.
  • Lock the mechanical constraints first (package/case 14-DIP, 4 Leads (Full Size, Metal Can), mounting Through Hole, packaging Tube) before comparing performance specs.
  • Verify the alternate stays within supply 5V, temperature 0°C ~ 70°C across startup, load steps, and worst-case temperature.
  • For digital alternates, confirm pin functions and timing margins, not only the headline capacity or clock rate.
FAQ

What is the Output of CPPC1-HT0RT?
CMOS

What is the Height - Seated (Max) of CPPC1-HT0RT?
0.200" (5.08mm)

What is the Programmable Type of CPPC1-HT0RT?
Programmed by Digi-Key (Enter your frequency in Web Order Notes)

Which Base Resonator is listed for CPPC1-HT0RT?
Crystal

Application Scenarios

In production Programmable Oscillators builds, parts like Cardinal Components Inc. CPPC1-HT0RT are shortlisted for predictable behavior, clear documentation, and stable supply. Key considerations are jitter, phase noise, aging, startup behavior, and how a clock tree is distributed across dense PCBs. In real deployments, they help close timing for processors, data converters, and high-speed links by providing stable references across voltage and temperature. After that, the focus becomes predictable bring-up and avoiding surprises during compliance and production ramp. In real deployments, once the boundaries are clear, it becomes easier to judge fit in the target application and test it on real hardware. In measurement equipment, clean clocks reduce spurs and improve repeatability in calibration workflows. In measurement equipment, clean clocks reduce converter spurs and improve repeatability in benchtop instruments used for calibration workflows.

Compatibility Advice
  • For Cardinal Components Inc. CPPC1-HT0RT in Programmable Oscillators, verify ratings, interface levels, thermal headroom, and a repeatable test plan in the real system. This keeps qualification evidence reproducible later.
Project Fit
  • Good fit when you can measure and verify Cardinal Components Inc. CPPC1-HT0RT for Programmable Oscillators integration with production-like fixtures, and you can measure and verify jitter and spurs during validation.
  • Poor fit when thermal drift and aging are not considered but tight margins are expected, because it becomes difficult to prove margin across production variance.
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