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CD4093BMT Integrated Circuits (ICs) |
|
Allicdata Part #: | 296-28572-2-ND |
Manufacturer Part#: |
CD4093BMT |
Price: | $ 0.28 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Texas Instruments |
Short Description: | IC GATE NAND 4CH 2-INP 14SOIC |
More Detail: | NAND Gate IC 4 Channel 14-SOIC |
DataSheet: | ![]() |
Quantity: | 1000 |
1250 +: | $ 0.24898 |
Current - Output High, Low: | 3.4mA, 3.4mA |
Base Part Number: | 4093 |
Package / Case: | 14-SOIC (0.154", 3.90mm Width) |
Supplier Device Package: | 14-SOIC |
Mounting Type: | Surface Mount |
Operating Temperature: | -55°C ~ 125°C |
Max Propagation Delay @ V, Max CL: | 130ns @ 15V, 50pF |
Logic Level - High: | 3.6 V ~ 10.8 V |
Logic Level - Low: | 0.9 V ~ 4 V |
Series: | 4000B |
Current - Quiescent (Max): | 4µA |
Voltage - Supply: | 3 V ~ 18 V |
Features: | -- |
Number of Inputs: | 2 |
Number of Circuits: | 4 |
Logic Type: | NAND Gate |
Part Status: | Active |
Packaging: | Tape & Reel (TR) |
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- CD4093BMT Application Field and Working Principle
Overview
The CD4093BMT is a quad 2-input NAND Schmitt trigger that has been designed and developed particularly with Schmitt trigger action. It features: (1) High noise immunity (2) Balanced propagation delays 3) Compatible input signals on either voltages or current. It is a component widely used in various kinds of electronics and digital circuits.
Application Field
The CD4093BMT is widely used in digital systems and circuits, such as oscillator circuits, flip-flops, and clock circuits. It is mainly used in logic systems and signal switching applications, which make it can be used to construct logic gates. It can also be used in digital amplifier circuits and pulse wave circuits, signal waveform processing, signal conditioning, and data processing. Moreover, it can be applied in signal counting, signal comparisons, and various kinds of nonlinear analog signal processing.
Working Principle
The CD4093BMT is a quad 2-input NAND Schmitt trigger. It consists of four NAND gates each having two inputs, "A" and "B", and a single output, "Y". The logic symbol for a NAND gate is drawn as two logic circles joined by a curved line. The two logic circles represent the NAND gate\'s two inputs, "A" and "B". Any two NO (or NC) inputs applied to the NAND gate will produce a HIGH at the gate\'s output, "Y". The inputs behave in a digital manner with an input current of the order of several microamperes. To have an output logic state of "HIGH" applied to the input "A" and "B", an external voltage source, such as a logic level inverter, is supplied to the inputs. The output will be the opposite of the input and this is known as the "inverting action".
When the inputs of the CD4093BMT are held HIGH or LOW and the output is left floating, the circuit is in a stable state and will remain in it until an external voltage source is applied to one of the inputs. The CD4093BMT has two control inputs for adjusting the hysteresis, or "Schmitt trigger action". The operating voltage can be increased from 1.5V to 12V by adjusting the voltage level of the control inputs. The noninverting output of the device is internally connected to the inverting input.
The output has a faster response time than the input, allowing it to respond to a wide range of input signals. This makes it ideal for signal processing applications, such as data acquisition, signal threshold control, analog signal conditioning, signal discrimination, and signal comparison.
The CD4093BMT is a very versatile device, able to perform a wide range of digital, analog, and signal processing tasks. It is used in many applications including digital circuit, signal processing, data acquisition, signal comparison, and noise immunity. Its small size and low power consumption make it suitable for a variety of applications where space and power are limited. The device is also very selective in terms of the input signals it can process, making it ideal for logic systems, signal switching, and digital circuitry.
Overall, the CD4093BMT is a quad 2-input NAND Schmitt trigger that is used in applications such as oscillators, flip-flops, clock circuits, and various nonlinear analog signal processing applications. Its noninverting input is internally connected to the inverting input, giving it a fast response time and low power consumption. It is also a very selective element, making it ideal for logic systems, signal switching, and digital circuitry.
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