DM96S02N Allicdata Electronics
Allicdata Part #:

DM96S02N-ND

Manufacturer Part#:

DM96S02N

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: ON Semiconductor
Short Description: IC MULTIVIBRATOR MONO DUAL 16DIP
More Detail: Monostable Multivibrator 16-DIP
DataSheet: DM96S02N datasheetDM96S02N Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: 74S
Packaging: Tube 
Part Status: Obsolete
Logic Type: Monostable
Independent Circuits: 2
Schmitt Trigger Input: Yes
Current - Output High, Low: 1mA, 20mA
Voltage - Supply: 4.75V ~ 5.25V
Operating Temperature: 0°C ~ 70°C
Mounting Type: Through Hole
Package / Case: 16-DIP (0.300", 7.62mm)
Supplier Device Package: 16-DIP
Base Part Number: 96S02
Description

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Introduction

The DM96S02N is a type of digital monostable multivibrator (MMV) designed with high speed TTL logic technology. It is a high performance and cost effective option for combining elements of logic and timing in a single device.The DM96S02N is most often used as a one-shot timer and is available in a wide range of packages, from 14 to 44 pins, with multiple power options and temperature limits. This makes it ideal for a variety of applications, from memory interfacing to data transmission.It is also designed to provide a range of output formats, including both positive and negative logic, single and differential outputs, as well as clock rates, ranging from 125 kHz to 20 MHz. This article will outline the various application fields and working principles of the DM96S02N so that you can decide if it is a suitable component for your particular project.

Application Fields of DM96S02N

Due to its high speed logic and multiple output formats, the DM96S02N is a versatile component with many possible applications. One common use is as an oscillator, to generate a wide range of digital pulses or clock signals. The various output options make it suitable for use in digital circuits and systems that require a reliable source of clock pulses.The DM96S02N is also a great choice for memory interfacing. It can be used to generate cycles for reading, writing and erasing memory, as well as generating system reset pulses.Moreover, it can be employed to produce clock signals for data transmission and reception, providing accurate timing for the transfer of data in serial and parallel transmission systems. Its wide range of output formats make it suitable for both rate-limited and rate-independent systems.

Working Principle of DM96S02N

The DM96S02N is a type of digital monostable multivibrator (MMV). It is composed of two inverting gates, wired in a way that produces a single output. The MMV is triggered by an external pulse, which causes it to switch states and produce an output pulse.The working principle of the DM96S02N is based on the positive feedback of its two inverting gates and their associated capacitors. When an external pulse is applied, the capacitor on one of the gates is charged, while the other is discharged. This causes the states of the two gates to switch, which in turn generates a single output pulse.The duration of the output pulse is determined by the capacitance and resistance of the two gates and their associated capacitors. This can be adjusted by changing the values of the components, allowing for a wide range of output frequencies.

Conclusion

The DM96S02N is a high speed TTL logic component designed for use in digital systems that require elements of logic and timing. It is most often employed as a one-shot timer, able to generate a wide range of clock signals for a variety of applications. Its multiple output formats and adjustable frequency make it suitable for both rate-limited and rate-independent systems, such as memory interfacing and data transmission.The DM96S02N is a digital monostable multivibrator built based on the positive feedback of its two inverting gates and their associated capacitors. When an external pulse is applied, the capacitor on one of the gates is charged, while the other is discharged, causing the two gates to switch and generate a single output pulse. The duration of the output pulse is determined by the capacitance and resistance of its components, allowing for a wide range of frequencies.

The specific data is subject to PDF, and the above content is for reference

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