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MC14106BDG
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MC14106BDG Description
MC14106BDG Description
The MC14106BDG from onsemi is a hex Schmitt trigger inverter belonging to the 4000B series, designed for high-noise-immunity digital applications. Housed in a 14-SOIC surface-mount package, it operates across a wide voltage range (3V to 18V), making it versatile for both low-power and industrial systems. With six independent inverters (1-input each), it features Schmitt-trigger inputs for improved signal integrity, ensuring clean output transitions even with slow or noisy input signals. The device boasts a max propagation delay of 80ns at 15V with 50pF load, balancing speed and power efficiency, while consuming just 1µA quiescent current (max).
MC14106BDG Features
- Schmitt Trigger Inputs: Enhances noise immunity and hysteresis for reliable switching.
- Wide Supply Range (3V–18V): Compatible with TTL, CMOS, and mixed-voltage systems.
- High Output Drive (8.8mA sink/source): Capable of driving moderate loads directly.
- Low Power Consumption: Ideal for battery-operated and energy-sensitive designs.
- ROHS3 Compliant & REACH Unaffected: Meets environmental and safety standards.
- MSL 1 (Unlimited): No moisture sensitivity concerns for long-term storage.
MC14106BDG Applications
- Signal Conditioning: Cleans up debounced switches or noisy sensor outputs.
- Oscillators/Waveform Shaping: Creates stable clock signals in timing circuits.
- Voltage-Level Translation: Bridges logic families (e.g., 5V to 12V systems).
- Industrial Controls: Robust performance in motor drives or PLCs with high EMI.
- Consumer Electronics: Used in power management and interface circuits.
Conclusion of MC14106BDG
The MC14106BDG stands out for its Schmitt-trigger functionality, wide voltage compatibility, and low power profile, making it a robust choice for noise-prone environments. Its 6-channel integration reduces board space, while onsemi’s reliability ensures longevity in harsh conditions. Ideal for designers seeking a balance of performance, flexibility, and cost-efficiency in logic inversion applications.



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