Allicdata Part #: | SY10E160JC-ND |
Manufacturer Part#: |
SY10E160JC |
Price: | $ 3.91 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Microchip Technology |
Short Description: | IC 12-BIT GEN/CHKER 28PLCC |
More Detail: | Parity Generator 12-Bit 28-PLCC (11.5x11.5) |
DataSheet: | SY10E160JC Datasheet/PDF |
Quantity: | 1000 |
190 +: | $ 3.55336 |
Series: | 10E |
Packaging: | Bulk |
Part Status: | Discontinued at Digi-Key |
Logic Type: | Parity Generator/Checker |
Number of Circuits: | 12-Bit |
Current - Output High, Low: | -- |
Voltage - Supply: | 4.2V ~ 5.5V |
Operating Temperature: | 0°C ~ 85°C |
Mounting Type: | Surface Mount |
Package / Case: | 28-LCC (J-Lead) |
Supplier Device Package: | 28-PLCC (11.5x11.5) |
Base Part Number: | 10E160 |
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Logic systems are pervasive in the world\'s computing, as they form the basis of many existing computers and other electronic devices. The SY10E160JC is one such logic system, which is capable of performing a variety of computations and logical operations so-called "gates." By properly chaining together these gates, the SY10E160JC is capable of performing functions such as generating parity bits and detecting bit errors. In this article, we explore the application field and working principle of the SY10E160JC, and provide insight into how it can be used for parity generation and error detection.
Application Field of SY10E160JC
The SY10E160JC is a logic system that is commonly used in many applications, most notably in computers and consumer electronics. Its main functions are to accept inputs and output binary data as logical signals. In other words, it can process digital signals consisting of binary data (either 0s or 1s). This makes it an ideal choice for a wide range of applications, including communications, computer networking, consumer electronics, and more.
More specifically, the SY10E160JC can be used to generate and check parity bits, which are additional bits appended to a packet of information. These parity bits are used to detect errors in the data, as they allow the receiver of the data to calculate the parity of the received data and compare it to the received parity bit. If the calculated parity and the received parity do not match, then an error has been detected. As such, the SY10E160JC is often used for parity generation and error detection applications.
Working Principle of SY10E160JC
The SY10E160JC functions primarily by performing logical operations on its inputs. These logical operations are performed by so-called "gates," which are digital circuits capable of performing a certain basic logic operation. The SY10E160JC contains a large number of these gates, which are interconnected in order to form more complex logical operations. For parity generation and error detection, the SY10E160JC uses a combination of XOR (Exclusive-OR) and XNOR (Exclusive-NOR) gates.
XOR and XNOR gates are two of the most commonly used logic operations in computing. An XOR gate takes two binary inputs and simply outputs a 1 if one of the two inputs is a 1, and outputs a 0 if both inputs are 0 or both inputs are 1. An XNOR gate takes two binary inputs and simply outputs a 1 if both of the two inputs are the same or both inputs are different, and outputs a 0 if one of the inputs is 0 and the other input is 1. These gates are used in combination to generate parity bits and detect errors in the data.
The SY10E160JC operates by taking a block of binary data as an input, and generating a parity bit from it. To do this, the logic system first uses an XOR gate on each of the binary bits in the data. The results of the XOR operations are then fed into an XNOR gate, which outputs a single parity bit as the result. This parity bit can then be added to the original data to form a complete packet with the parity included. On the receiving end, the SY10E160JC can be used to calculate the parity of the received data and compare it to the received parity bit. If the values do not match, then an error has been detected.
Conclusion
In conclusion, the SY10E160JC is a powerful logic system which can be used for a variety of applications, including generating and checking parity bits. By taking advantage of the XOR and XNOR gates in the logic system, the SY10E160JC is able to generate parity bits from a block of data and detect errors in the data. As such, the SY10E160JC is a vital part of many current computers and consumer electronics devices, and it is likely to remain so for many years to come.
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