18466181. ANALOG SWITCH CIRCUIT AND SEMICONDUCTOR DEVICE simplified abstract (ROHM CO., LTD.)

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ANALOG SWITCH CIRCUIT AND SEMICONDUCTOR DEVICE

Organization Name

ROHM CO., LTD.

Inventor(s)

Hayato Asano of Kyoto (JP)

ANALOG SWITCH CIRCUIT AND SEMICONDUCTOR DEVICE - A simplified explanation of the abstract

This abstract first appeared for US patent application 18466181 titled 'ANALOG SWITCH CIRCUIT AND SEMICONDUCTOR DEVICE

Simplified Explanation

The abstract describes an analog switch circuit with various components such as PMOS transistors, NMOS transistors, resistors, and a driver, all interconnected to create a functional circuit.

  • The circuit includes PMOS and NMOS transistors connected in a specific configuration to control the flow of signals between input and output nodes.
  • A driver is used to receive a control signal and regulate the operation of the transistors in the circuit.
  • The circuit design allows for efficient switching of signals while minimizing power consumption and signal distortion.

Potential Applications

The technology described in this patent application could be applied in various electronic devices and systems, such as:

  • Signal routing systems
  • Audio amplifiers
  • Data transmission systems

Problems Solved

This technology addresses the following issues:

  • Signal distortion during switching
  • Power consumption in analog switch circuits
  • Control signal management in complex circuits

Benefits

The benefits of this technology include:

  • Improved signal fidelity
  • Reduced power consumption
  • Enhanced control over signal routing

Potential Commercial Applications

The potential commercial applications of this technology could include:

  • Consumer electronics
  • Telecommunications equipment
  • Industrial automation systems

Possible Prior Art

One possible prior art for this technology could be existing analog switch circuits used in various electronic devices and systems.

Unanswered Questions

How does this technology compare to existing analog switch circuits in terms of performance and efficiency?

This article does not provide a direct comparison with existing analog switch circuits in terms of performance and efficiency. Further research or testing may be needed to evaluate the technology's advantages over current solutions.

What are the specific design considerations for implementing this technology in different types of electronic systems?

The article does not delve into the specific design considerations for implementing this technology in various electronic systems. Additional information or guidelines may be required for engineers or designers looking to integrate this technology into their products.


Original Abstract Submitted

Provided is an analog switch circuit including an intermediate node, a first PMOS transistor including a source connected to the input node and a back gate and a drain connected to the intermediate node, a second PMOS transistor including a source connected to the output node, a back gate and a drain connected to the intermediate node, and a gate connected to a gate of the first PMOS transistor, a first NMOS transistor including a source grounded and a drain connected to the gates of the first PMOS transistor and the second PMOS transistor, a third PMOS transistor connected between the intermediate node and the drain of the first NMOS transistor, a first resistor connected between the gate of the first NMOS transistor and a ground, and a driver including an input that receives the control signal and an output connected to the gate of the first NMOS transistor.