74C Series, Multivibrators

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74C
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ImageProduct DetailPriceAvailabilityECAD ModelMounting TypePackage / CaseOperating TemperatureSupplier Device PackageSeriesIndependent CircuitsCurrent - Output High, LowVoltage - SupplyLogic TypeSchmitt Trigger InputPropagation DelayGradeQualification
MM74C221N
IC MULTIVIBRATOR 120NS 16DIP
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
16-DIP (0.300", 7.62mm)
-55°C ~ 125°C
16-PDIP
74C
2
8mA, 8mA
4.5 V ~ 15 V
Monostable
No
120 ns
-
-

About  Multivibrators

Multivibrators are electronic devices that exhibit two distinct states and are commonly categorized as digital logic components, despite their predominant use in analog applications. There are two primary types of multivibrators: monostable and astable. Monostable multivibrators, also known as "one-shots," possess a single stable state but can be triggered to temporarily depart from this state for a specific duration, typically determined by the value of a connected capacitor. They are frequently employed in applications such as switch contact debouncing, where precise timing is essential. Astable multivibrators, in contrast, lack a stable state and continuously transition between two states at a frequency typically determined by the value of a connected capacitor. This feature enables them to generate continuous oscillations at a specific frequency, making them valuable for tasks such as producing square waveforms and providing clock signals for digital circuits. Both monostable and astable multivibrators offer versatile timing capabilities, making them fundamental building blocks in electronic circuits. Their ability to generate precise time delays or produce continuous oscillations allows for effective control and synchronization of various components within a system. In summary, Integrated Circuits (ICs) - Logic - Multivibrators refer to electronic devices with two distinct states, often regarded as digital logic components. Monostable multivibrators have a single stable state and can be triggered to temporarily deviate from it, while astable multivibrators lack a stable state and continuously transition between two states at a specific frequency. These multivibrators find applications in a wide range of electronic systems, enabling precise timing control and generation of continuous oscillations.