Samsung electronics co., ltd. (20240118733). REGULATOR CIRCUIT, AN ELECTRONIC DEVICE INCLUDING THE REGULATOR CIRCUIT, AND A PROCESSOR INCLUDING THE REGULATOR CIRCUIT simplified abstract

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REGULATOR CIRCUIT, AN ELECTRONIC DEVICE INCLUDING THE REGULATOR CIRCUIT, AND A PROCESSOR INCLUDING THE REGULATOR CIRCUIT

Organization Name

samsung electronics co., ltd.

Inventor(s)

INSUNG Kim of Hwaseong-si (KR)

JOOMYOUNG Kim of Hwaseong-si (KR)

WOOSEOK Kim of Suwon-si (KR)

TAEIK Kim of Seongnam-si (KR)

REGULATOR CIRCUIT, AN ELECTRONIC DEVICE INCLUDING THE REGULATOR CIRCUIT, AND A PROCESSOR INCLUDING THE REGULATOR CIRCUIT - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240118733 titled 'REGULATOR CIRCUIT, AN ELECTRONIC DEVICE INCLUDING THE REGULATOR CIRCUIT, AND A PROCESSOR INCLUDING THE REGULATOR CIRCUIT

Simplified Explanation

The patent application describes an electronic device with a regulator circuit and an oscillator to output a regulated voltage and frequency signal, respectively. The regulator circuit includes a feedback loop, a capacitor, a precharge circuit, and switches to control the voltage output.

  • The regulator circuit outputs a regulated voltage based on a reference voltage and a feedback voltage.
  • The oscillator generates an output frequency signal based on a reference frequency signal and the regulated voltage.
  • The feedback loop adjusts the regulated voltage based on the difference between the reference voltage and the feedback voltage.
  • The precharge circuit charges the capacitor with a second voltage based on a first voltage.
  • The switches connect the precharge circuit with the capacitor and the capacitor with the feedback loop.

Potential Applications

This technology could be applied in:

  • Power supply units
  • Voltage regulators
  • Oscillator circuits

Problems Solved

This technology helps in:

  • Stabilizing voltage output
  • Generating accurate frequency signals

Benefits

The benefits of this technology include:

  • Improved voltage regulation
  • Precise frequency signal generation
  • Enhanced overall performance

Potential Commercial Applications

The potential commercial applications of this technology could be in:

  • Consumer electronics
  • Industrial equipment
  • Automotive systems

Possible Prior Art

One possible prior art for this technology could be:

  • Existing voltage regulator circuits with feedback loops and capacitors.

Unanswered Questions

How does this technology compare to existing voltage regulator circuits in terms of efficiency and accuracy?

This article does not provide a direct comparison between this technology and existing voltage regulator circuits in terms of efficiency and accuracy. It would be beneficial to have data or studies that showcase the performance differences between this innovation and traditional circuits.

Are there any limitations or drawbacks to this technology that could affect its practical implementation?

The article does not mention any limitations or drawbacks of this technology that could impact its practical implementation. It would be important to explore any potential challenges or constraints associated with integrating this innovation into real-world applications.


Original Abstract Submitted

an electronic device including: a regulator circuit configured to output a regulated voltage based on a reference voltage and a feedback voltage; and an oscillator configured to generate an output frequency signal based on a reference frequency signal and the regulated voltage output from the regulator circuit, wherein the regulator circuit includes: a feedback loop configured to output the regulated voltage based on a difference between the reference voltage and the feedback voltage; a first capacitor; a precharge circuit connected to the feedback loop, and configured to charge the first capacitor with a second voltage which is based on a first voltage; a first switch configured to connect the precharge circuit with the first capacitor; and a second switch configured to connect the first capacitor with the feedback loop.