MAX384CWN Allicdata Electronics
Allicdata Part #:

MAX384CWN-ND

Manufacturer Part#:

MAX384CWN

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Maxim Integrated
Short Description: IC MUX CMOS DUAL-4CH LOW-V18SOIC
More Detail: Multiplexer 4 x 1:1 18-SOIC
DataSheet: MAX384CWN datasheetMAX384CWN Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Tube 
Part Status: Obsolete
Type: Multiplexer
Circuit: 4 x 1:1
Independent Circuits: 2
Current - Output High, Low: --
Voltage Supply Source: Dual Supply
Voltage - Supply: ±3 V ~ 18 V
Operating Temperature: 0°C ~ 70°C
Mounting Type: Surface Mount
Package / Case: 18-SOIC (0.295", 7.50mm Width)
Supplier Device Package: 18-SOIC
Base Part Number: MAX384
Description

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MAX384CWN is a type of logic-signal switch, multiplexer and decoder that works using a number of complex, yet reliable, principles in order to achieve its intended purpose. This device has a wide range of potential applications, from providing the means for the transmission of data from remote sources, to aiding in the creation of highly efficient logic-based controls.

The design of this device uses a number of different principles in order to make it operate as effectively as possible. The most prevalent are the principles of logic-signal switching, multiplexing and decoding. As is true of all logic-signal switching devices, the MAX384CWN works by matching incoming signals with a specified output signal. The results of this comparison are then used to control the output signal, thus allowing for a high level of performance with the overall result being a desirable output. In the case of the MAX384CWN, the device uses two different types of logic switching: static-matrix-switching and dynamic-matrix-switching.

The static-matrix-switching approach which is found in the MAX384CWN involves the permanent assignment of each incoming signal to a specified output. This is done by means of resistors and reed switches, which are placed inside the logic-signal switch. These reed switches are controlled by the appropriate logic-signal input and, as a result, each resistor is linked to a specific output. In this way, the correct output is triggered whenever an appropriate input is detected.

The dynamic-matrix-switching mechanism used by the MAX384CWN works similarly, but in this case the assignment of the incoming signals to outputs is made by using a programmable chip. This chip is responsible for setting the necessary thresholds so that the appropriate output can be selected. The result of this approach is that the MAX384CWN can be used to receive and process any type of input, as long as it falls within the capability of the chip.

In addition to these two logic-signal switching principles, the MAX384CWN also uses multiplexing and decoding in order to achieve its objectives. Multiplexing is the process of combining multiple signals into one in order to reduce the amount of wiring and circuitry that is necessary. The MAX384CWN uses a four-way multiplexer in order to effectively multiplex the signals that it receives. This multiplexer is then used to decode the signals so that the output can be tailored to the required application.

Finally, the MAX384CWN has the ability to receive and process external triggers, in order to provide a more efficient control of the output. This is done through the use of a programmable digital logic integrated circuit, which allows for a comprehensive set of logic-based operations to be performed on incoming or outgoing signals. This combination of logic-signal switching and external triggers allow the MAX384CWN to be used in a variety of applications, ranging from providing a high level of performance in systems wiring, to providing a high level of control in the creation of efficient logic-based controls.

In conclusion, the MAX384CWN is a highly versatile and reliable type of logic-signal switch, multiplexer and decoder that is used in a variety of applications and can provide both a high level of performance and a high level of control and efficiency in the system wiring of logic-based controls. In addition, the device is capable of receiving and decoding external triggers, and can be used in a variety of different applications.

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

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