CPPC1-LT76T

CPPC1-LT76T

  • Description:OSC PROG CMOS 3.3V 100PPM EN/DS
  • Series:FIPO™ CPP
  • Mfr:Cardinal Components Inc.
  • Package:Tube

SKU:ac63d67c218b Category: Brand:

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Product Detailed Parameters

  • Description:OSC PROG CMOS 3.3V 100PPM 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:±100ppm
  • Frequency Stability (Total):-
  • Operating Temperature:-40°C ~ 85°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-LT76T

Buying Guide
Summary

Cardinal Components Inc. CPPC1-LT76T is used in Programmable Oscillators category where interface timing, endurance expectations, and power behavior affect reliability. Key specs include Description (OSC PROG CMOS 3.3V 100PPM EN/DS), Type (XO (Standard)), Temperature (-40°C ~ 85°C), Package/case (14-DIP, 4 Leads (Full Size, Metal Can)), and Mounting (Through Hole).

Selection Notes
  • For CPPC1-LT76T, confirm the operating temperature range (-40°C ~ 85°C) meets your deployment conditions.
  • Validate Size / Dimension (0.819" L x 0.520" W (20.80mm x 13.20mm)) under the expected test conditions in your application.
  • Confirm the mounting type (Through Hole) matches your assembly process and reliability requirements.
Alternates & Substitutions
  • For Programmable Oscillators, validate alternates under worst-case corners rather than assuming typical-only conditions represent production builds.
  • Start by confirming the physical match (package/case 14-DIP, 4 Leads (Full Size, Metal Can), mounting Through Hole, packaging Tube) so the swap does not create a footprint risk.
  • Validate the min/max operating conditions (supply 3.3V, temperature -40°C ~ 85°C) and keep headroom for worst-case corners.
  • For digital alternates, confirm pin functions and timing margins, not only the headline capacity or clock rate.
FAQ

Any tips for reliable operation with CPPC1-LT76T?
Ensure robust power sequencing, adequate decoupling capacitors, and verify signal integrity on high-speed data buses.

What is the listed frequency range for CPPC1-LT76T?
1 MHz ~ 100 MHz

What is the mounting method for CPPC1-LT76T?
Through Hole

What is the package/case of CPPC1-LT76T?
14-DIP, 4 Leads (Full Size, Metal Can)

Application Scenarios

When Cardinal Components Inc. CPPC1-LT76T is used in Programmable Oscillators designs, teams typically start by confirming interfaces, supply rails, operating envelope, and qualification expectations. Timing devices are often chosen for predictable startup, stable jitter performance, and clean distribution across noisy boards. In real products, clock behavior is validated against EMI sources, power integrity, and enclosure coupling paths. Within aerospace electronics, predictable timing supports deterministic behavior and qualification evidence over long lifecycles. In high-speed digital designs, well-distributed clocks simplify timing closure and reduce re-spin risk caused by marginal setup/hold windows. In telecom and networking, timing components keep Ethernet switches and line cards synchronized in 24/7 racks with limited airflow and strict jitter budgets.

Compatibility Advice
  • Before freezing the BOM, verify that routing keeps sensitive clocks away from switch-node and high di/dt nets to avoid intermittent jitter issues. This helps field behavior stay predictable across lots.
Project Fit
  • A weaker fit when integrating Cardinal Components Inc. CPPC1-LT76T for Programmable Oscillators, there is no practical way to validate jitter on the assembled board, because repeatable production verification is not feasible.
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