Robert bosch gmbh (20240214748). CONVERTER UNIT FOR ELECTRICAL AND/OR ACOUSTIC SIGNALS AND/OR RELATIVE PRESSURES simplified abstract

From WikiPatents
Revision as of 02:40, 28 June 2024 by Wikipatents (talk | contribs) (Creating a new page)
(diff) ← Older revision | Latest revision (diff) | Newer revision → (diff)
Jump to navigation Jump to search

CONVERTER UNIT FOR ELECTRICAL AND/OR ACOUSTIC SIGNALS AND/OR RELATIVE PRESSURES

Organization Name

robert bosch gmbh

Inventor(s)

Jochen Reinmuth of Reutlingen (DE)

Christoph Schelling of Stuttgart (DE)

CONVERTER UNIT FOR ELECTRICAL AND/OR ACOUSTIC SIGNALS AND/OR RELATIVE PRESSURES - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240214748 titled 'CONVERTER UNIT FOR ELECTRICAL AND/OR ACOUSTIC SIGNALS AND/OR RELATIVE PRESSURES

The patent application describes a converter unit for electrical and/or acoustic signals and/or relative pressures, comprising a substrate with a cavity and an interaction unit above the cavity.

  • The converter unit includes an internal structure in a fluid-tight space of the interaction unit to retain a predetermined pressure.
  • The internal structure consists of a first layer and a second layer connected to the first layer.
  • The interaction unit can detect and/or generate signals based on changes in distance between the layers and other structures in the fluid-tight space.
  • The interaction unit has a boundary layer forming a floor and/or ceiling, with the layers arranged on it by a connecting element.
      1. Potential Applications

This technology could be used in various industries such as telecommunications, medical devices, and industrial automation for signal processing and pressure sensing applications.

      1. Problems Solved

This innovation addresses the need for accurate signal detection and pressure measurement in a compact and reliable converter unit.

      1. Benefits

The benefits of this technology include precise signal processing, reliable pressure sensing, and compact design for easy integration into different systems.

      1. Commercial Applications

Title: Advanced Signal and Pressure Converter Unit for Various Industries This technology can be commercialized for use in telecommunications equipment, medical devices, and industrial automation systems, enhancing signal processing and pressure sensing capabilities.

      1. Prior Art

Readers interested in prior art related to this technology can explore patents in the field of signal processing, pressure sensing, and converter units for electrical and acoustic signals.

      1. Frequently Updated Research

Researchers are continually exploring advancements in signal processing technologies, pressure sensing techniques, and compact converter units for various applications.

        1. Questions about Signal and Pressure Converter Units

1. How does this technology improve signal processing and pressure sensing capabilities?

  - This technology enhances signal detection accuracy and pressure measurement reliability through its innovative internal structure.

2. What are the potential applications of this converter unit in different industries?

  - This converter unit can be utilized in telecommunications, medical devices, and industrial automation for various signal processing and pressure sensing tasks.


Original Abstract Submitted

a converter unit for electrical and/or acoustic signals and/or relative pressures. the converter unit includes: a substrate having a cavity, and an interaction unit arranged at least partially and/or completely above the cavity. an internal structure is arranged in a fluid-tight space of the interaction unit. the fluid-tight space is configured to retain a predetermined pressure. the internal structure includes a first layer, and a second layer which is connected to the first layer. the interaction unit is configured to detect and/or generate an acoustic or electrical signal and/or the relative pressure, based on a change in distance between the first layer and/or the second layer and at least one further structure arranged in the fluid-tight space. the interaction unit has a boundary layer which forms a floor and/or ceiling. the first layer and/or the second layer is arranged on the boundary layer by a connecting element.