18173791. DATA BUS INVERSION CIRCUIT AND SEMICONDUCTOR APPARATUS INCLUDING THE SAME simplified abstract (SK hynix Inc.)

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DATA BUS INVERSION CIRCUIT AND SEMICONDUCTOR APPARATUS INCLUDING THE SAME

Organization Name

SK hynix Inc.

Inventor(s)

Hong Ki Moon of Gyeonggi-do (KR)

Seok Bo Shim of Gyeonggi-do (KR)

DATA BUS INVERSION CIRCUIT AND SEMICONDUCTOR APPARATUS INCLUDING THE SAME - A simplified explanation of the abstract

This abstract first appeared for US patent application 18173791 titled 'DATA BUS INVERSION CIRCUIT AND SEMICONDUCTOR APPARATUS INCLUDING THE SAME

Simplified Explanation

The present technology includes a latch circuit to store data transmitted through a signal line, a second latch circuit to store data by sorting it through multiple signal lines connected to the first signal line, and a data bus inversion engine to generate inversion flags based on the stored data.

  • First latch circuit stores data from a signal line.
  • Second latch circuit stores data by sorting it through multiple signal lines.
  • Data bus inversion engine generates inversion flags based on stored data.

Potential Applications

This technology can be applied in high-speed data processing systems, memory modules, and communication devices where efficient data storage and retrieval are crucial.

Problems Solved

This technology solves the problem of efficiently storing and processing large amounts of data transmitted through signal lines, improving data processing speed and accuracy.

Benefits

The benefits of this technology include faster data processing, reduced errors in data transmission, and improved overall system performance in handling large volumes of data.

Potential Commercial Applications

  • High-speed data processing systems
  • Memory modules
  • Communication devices

Possible Prior Art

One possible prior art could be latch circuits used in data processing systems to store and retrieve data efficiently.

Unanswered Questions

How does this technology compare to existing data storage and retrieval methods?

This article does not provide a direct comparison with existing methods, leaving the reader to wonder about the advantages and disadvantages of this technology over traditional approaches.

What are the specific technical specifications and requirements for implementing this technology in different systems?

The article does not delve into the technical details or requirements for integrating this technology into various systems, leaving a gap in understanding the practical aspects of its implementation.


Original Abstract Submitted

The present technology may include a first latch circuit configured to store, as first data, data that is transmitted through a first signal line, a second latch circuit configured to store, as a plurality of second data, the data that is transmitted through the first signal line by sorting the data by a plurality of second signal lines that are connected to the first signal line in common, and a data bus inversion engine configured to selectively perform a first mode in which the data bus inversion engine generates a data bus inversion flag by comparing the first data with current input data and a second mode in which the data bus inversion engine generates the data bus inversion flag by comparing the plurality of second data with the current input data.