Sk hynix inc. (20240120890). SENSING AND AMPLIFYING CIRCUIT RELATED TO A SENSING MARGIN simplified abstract

From WikiPatents
Jump to navigation Jump to search

SENSING AND AMPLIFYING CIRCUIT RELATED TO A SENSING MARGIN

Organization Name

sk hynix inc.

Inventor(s)

Yeonsu Jang of Icheon-si Gyeonggi-do (KR)

Woongrae Kim of Icheon-si Gyeonggi-do (KR)

Jung Min Yoon of Icheon-si Gyeonggi-do (KR)

SENSING AND AMPLIFYING CIRCUIT RELATED TO A SENSING MARGIN - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240120890 titled 'SENSING AND AMPLIFYING CIRCUIT RELATED TO A SENSING MARGIN

Simplified Explanation

The sensing and amplifying circuit described in the abstract includes a driving voltage control circuit that adjusts the driving voltage based on surrounding temperature, a delay control circuit that generates line connection signals in response to a delay start signal, and a sense amplifier that performs sensing and amplifying operations based on these signals. The interval between enable timing of the line connection signal and the inverted line connection signal is adjusted as the surrounding temperature changes.

  • Driving voltage control circuit adjusts voltage based on temperature
  • Delay control circuit generates line connection signals in response to delay start signal
  • Sense amplifier performs sensing and amplifying operations based on signals
  • Interval between enable timing of signals adjusted with temperature changes

Potential Applications

The technology could be applied in temperature-sensitive environments where precise control of voltage levels is necessary for sensing and amplifying operations.

Problems Solved

This technology solves the problem of maintaining accurate sensing and amplifying operations in varying temperature conditions by adjusting the voltage levels accordingly.

Benefits

The benefits of this technology include improved accuracy and reliability of sensing and amplifying operations, especially in environments with fluctuating temperatures.

Potential Commercial Applications

One potential commercial application of this technology could be in temperature-controlled industrial processes where precise sensing and amplifying operations are crucial for quality control.

Possible Prior Art

Prior art may include similar sensing and amplifying circuits that adjust voltage levels based on environmental factors, but the specific combination of features described in this patent application may be unique.

Unanswered Questions

How does the delay control circuit generate the line connection signals in response to the delay start signal?

The abstract does not provide detailed information on the specific mechanism or process by which the delay control circuit generates the line connection signals. Further details on this aspect would be beneficial for a more comprehensive understanding of the technology.

What is the range of temperatures within which the driving voltage control circuit can effectively adjust the voltage levels?

The abstract mentions that the driving voltage control circuit adjusts voltage levels based on surrounding temperature, but it does not specify the exact range of temperatures within which this adjustment can be made. Understanding the temperature range limitations of this technology would be important for its practical application in various environments.


Original Abstract Submitted

a sensing and amplifying circuit includes a driving voltage control circuit configured to control a voltage level of a driving voltage based on a surrounding temperature of the sensing and amplifying circuit, a delay control circuit configured to generate a line connection signal and an inverted line connection signal in response to a delay start signal by being supplied with the driving voltage, and a sense amplifier configured to perform a sensing and amplifying operation in response to the line connection signal and the inverted line connection signal. an interval between enable timing of the line connection signal and enable timing of the inverted line connection signal is adjusted as the surrounding temperature changes.