MC10H211FNG Allicdata Electronics
Allicdata Part #:

MC10H211FNG-ND

Manufacturer Part#:

MC10H211FNG

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: ON Semiconductor
Short Description: IC GATE NOR 2CH 3-INP 20PLCC
More Detail: NOR Gate IC 2 Channel 3 Outputs 20-PLCC (9x9)
DataSheet: MC10H211FNG datasheetMC10H211FNG Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Current - Output High, Low: 50mA, 50mA
Base Part Number: 10H211
Package / Case: 20-LCC (J-Lead)
Supplier Device Package: 20-PLCC (9x9)
Mounting Type: Surface Mount
Operating Temperature: 0°C ~ 75°C
Max Propagation Delay @ V, Max CL: 2ns @ -5.2V, -
Logic Level - High: -1.13V
Logic Level - Low: -1.48V
Series: 10H
Voltage - Supply: -4.94 V ~ -5.46 V
Features: 3 Outputs
Number of Inputs: 3
Number of Circuits: 2
Logic Type: NOR Gate
Part Status: Obsolete
Packaging: Tube 
Description

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MC10H211FNG is a high-speed low power consumption CMOS (Complementary Metal Oxide Semiconductor) device that integrates two independent inverters into a single package. It has many practical application fields in the electronics industry and advanced uses in communications technology, computer processing and automatic control compared to conventional logic gates. This article will look into its application field, working principles and deeper understanding of the device.

MC10H211FNG Application Fields

The MC10H211FNG is quite a versatile device, it is capable of functioning as a simple single port inverter, a double port inverter, a buffer, a comparator, an oscillator, a logic gate, or even a flip-flop circuit. These devices are particularly useful for communications applications, since the logic gates or inverters on them can be used to reproduce wave forms to represent digital data. They can also be used for encoding and decoding digital signals, for logic or signal conversion, and for controlling the flow of digital data.

The versatility of the MC10H211FNG can be seen in its use in a variety of industries. In the transportation industry, they are commonly used in the design of onboard computers, data recorders and automation systems that require logic signals, including the actuation of switches and the checking of sensors. In the medical field, these devices can be used in micron-scale imaging systems that require precise image data comparison, while they can also be used as components of diabetes monitoring systems due to their low power consumption.

The MC10H211FNG has excellent performance in optoelectronic applications, due to its extremely high switching frequency and low power consumption. It is often used to build optical communication devices such as a digital pass through, a pulse code modulation / demodulation circuit, or an amplifier for optical signals. Other applications for this device include automation systems where its easily programmable digital output can be used to switch devices on and off, or to control lighting or power sources.

MC10H211FNG Working Principles

The MC10H211FNG is an integrated circuit that consists of two separate CMOS logic inverters. The two inverters are connected internally in a cross-coupled or two-input NAND configuration that results in a symmetrical logical signal. This signal is driven by input pins A0 and A1 and the output is taken from pins Q0 and Q1. The device operates in full CMOS logic, meaning that the voltage at each input can range from 0.0V to Vdd, with Vdd typically 3.3V or 5.0V.

When input pins A0 and A1 are both low, transistors S1 and S2 engage and output transistors S3 and S4 turn off, which produces a high logic level at the output of the device. When the input pins A0 and A1 are both high, transistors S1 and S2 are off and transistors S3 and S4 are engaged, producing a low level of logic at the output. If one input pin A0 or A1 is high, and the other is low, the output of the device is determined by the device\'s threshold voltage, which is typically around 1.2V.

The device can also be used as a Schmitt trigger by applying the same voltage to both input pins A0 and A1. The device will switch between its two logic levels depending on when the input voltage is greater or lower than the device’s threshold voltage of 1.2V. This method can be used to generate a square-wave signal by pulsing the input of the device.

Conclusion

The MC10H211FNG offers a wide range of applications in the electronics industry. It\'s wide range of logic level voltages, adjustable threshold voltage, and low power consumption make it perfect for use in medical, optoelectronic, communication and automation systems. The device can be used as either a single port inverter, a double port inverter, a buffer, a comparator, an oscillator, a logic gate, or even a flip-flop circuit. Finally, its symmetrical logic allows it to be used as a Schmitt trigger for generating square wave signals.

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

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