Qualcomm incorporated (20240305327). RECONFIGURABLE AMPLIFIER simplified abstract

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RECONFIGURABLE AMPLIFIER

Organization Name

qualcomm incorporated

Inventor(s)

Janakiram Sankaranarayanan of San Diego CA (US)

Jun Tan of San Diego CA (US)

Lai Kan Leung of Carlsbad CA (US)

Timothy Donald Gathman of San Diego CA (US)

Mehmet Ipek of Dallas TX (US)

Ojas Choksi of San Diego CA (US)

RECONFIGURABLE AMPLIFIER - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240305327 titled 'RECONFIGURABLE AMPLIFIER

The abstract describes an amplifying circuit with two reconfigurable amplifiers that can operate in either cascode mode or non-cascode mode.

  • The first reconfigurable amplifier is connected to the first input of the circuit and can switch between cascode and non-cascode modes.
  • The second reconfigurable amplifier is connected to the second input of the circuit and can also switch between cascode and non-cascode modes.
  • Both amplifiers are connected to the output of the circuit, providing flexibility in amplification modes.

Potential Applications: - This technology can be used in audio amplifiers, signal processing circuits, and communication systems. - It can also be applied in medical devices, radar systems, and instrumentation equipment.

Problems Solved: - Provides the ability to switch between cascode and non-cascode modes, optimizing performance for different applications. - Offers flexibility in amplification design, allowing for customization based on specific requirements.

Benefits: - Improved efficiency and performance in amplification circuits. - Enhanced flexibility and adaptability for various applications. - Simplified design process with reconfigurable amplifiers.

Commercial Applications: - This technology can be utilized in consumer electronics, industrial equipment, and telecommunications devices. - It has potential in the automotive industry for audio systems and sensor applications.

Questions about the technology: 1. How does the reconfigurability of the amplifiers impact the overall performance of the amplifying circuit? 2. What are the key factors to consider when selecting between cascode and non-cascode modes for the amplifiers?


Original Abstract Submitted

an amplifying circuit includes a first reconfigurable amplifier configured to selectively operate in a cascode mode or a non-cascode mode, wherein an input of the first reconfigurable amplifier is coupled to a first input of the amplifying circuit, and an output of the first reconfigurable amplifier is coupled to an output of the amplifying circuit. the amplifying circuit also includes a second reconfigurable amplifier configured to selectively operate in the cascode mode or the non-cascode mode, wherein an input of the second reconfigurable amplifier is coupled to a second input of the amplifying circuit, and an output of the second reconfigurable amplifier is coupled to the output of the amplifying circuit.