Z84C3006FEC

Z84C3006FEC

  • Description:IC OSC CTC 6MHZ 44-QFP
  • Series:-

SKU:411df740ff1e Category: Brand:

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Product Detailed Parameters

  • Description:IC OSC CTC 6MHZ 44-QFP
  • Series:-
  • Package:Bag
  • Mfr:Zilog
  • Type:Counter/Timer Circuit (CTC)
  • Count:-
  • Frequency:6MHz
  • Voltage - Supply:4.5V ~ 5.5V
  • Operating Temperature:-40°C ~ 100°C
  • Package / Case:44-LQFP
  • Supplier Device Package:44-LQFP (10x10)
  • Mounting Type:Surface Mount
  • Current - Supply:8 mA
  • Grade:-
  • Qualification:-

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Z84C3006FEC

Buying Guide
Summary

Zilog Z84C3006FEC is selected in Programmable Timers and Oscillators category when storage behavior must remain predictable across temperature and production variance. Key specs include Description (IC OSC CTC 6MHZ 44-QFP), Type (Counter/Timer Circuit (CTC)), Temperature (-40°C ~ 100°C), Package/case (44-LQFP), and Mounting (Surface Mount).

Selection Notes
  • For Z84C3006FEC, confirm the operating temperature range (-40°C ~ 100°C) meets your deployment conditions.
  • Verify Current - Supply (8 mA) matches your requirements and the datasheet test conditions.
  • Make sure the mounting type (Surface Mount) matches how the part will be installed and inspected.
  • Ensure the supply current (8 mA) is acceptable for battery life and thermal limits.
Alternates & Substitutions
  • For Programmable Timers and Oscillators, validate alternates under worst-case corners rather than assuming typical-only conditions represent production builds.
  • When evaluating alternates, treat package/case 44-LQFP, supplier package 44-LQFP (10x10), mounting Surface Mount as non-negotiable unless you are re-spinning the PCB.
  • Validate the min/max operating conditions (supply 4.5V ~ 5.5V, temperature -40°C ~ 100°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

Who is the manufacturer of Z84C3006FEC?
Zilog

Any tips for reliable operation with Z84C3006FEC?
Ensure robust power sequencing, adequate decoupling capacitors, and verify signal integrity on high-speed data buses.

Which package/case is specified for Z84C3006FEC?
44-LQFP

How is Z84C3006FEC supplied (packaging)?
Bag

Application Scenarios

In real deployments, the question for Zilog Z84C3006FEC in Programmable Timers and Oscillators is whether it stays inside the electrical/thermal envelope while remaining easy to validate and support. In real deployments, a solid timing choice keeps margins stable by reducing sensitivity to supply ripple, temperature drift, and routing-induced noise. Engineers often prefer timing parts with clear grounding and routing guidance, because layout decides whether jitter stays inside budget. A quick corner-case pass under temperature and supply variation often reveals whether the behavior is stable. In industrial motion control, timing components must resist inverter noise so capture and PWM timing remains repeatable. In embedded gateways, stable RTC and clocking improve logging accuracy and coordinated events across distributed sensor nodes. In practice, within many systems, the cost is in integration and validation, so reducing uncertainty is the real win.

Compatibility Advice
  • Before freezing the BOM, confirm clock-tree loading so edges stay clean and receivers remain inside threshold and slew limits. This helps field behavior stay predictable across lots.
  • In practice, validate routing and return paths so coupling does not create spurs or intermittent clock faults in production before committing to volume builds.
  • In practice, ensure test access exists to measure frequency error and spurs during bring-up and field diagnostics during bring-up and production test.
Project Fit
  • Good fit when you can measure and verify Zilog Z84C3006FEC for Programmable Timers and Oscillators integration with production-like fixtures, and you can validate startup and sequencing behavior as part of system bring-up.
  • Poor fit when thermal drift and aging are not considered but tight margins are expected, because integration risk stays high when key margins cannot be measured.
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