18595726. PHOTOELECTRIC CONVERSION APPARATUS, METHOD FOR MANUFACTURING PHOTOELECTRIC CONVERSION APPARATUS, AND EQUIPMENT simplified abstract (CANON KABUSHIKI KAISHA)

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PHOTOELECTRIC CONVERSION APPARATUS, METHOD FOR MANUFACTURING PHOTOELECTRIC CONVERSION APPARATUS, AND EQUIPMENT

Organization Name

CANON KABUSHIKI KAISHA

Inventor(s)

HISANORI Hosaka of Kanagawa (JP)

TAKASHI Usui of Kanagawa (JP)

KAZUHIRO Morimoto of Kanagawa (JP)

ALICE Ehara of Kanagawa (JP)

PHOTOELECTRIC CONVERSION APPARATUS, METHOD FOR MANUFACTURING PHOTOELECTRIC CONVERSION APPARATUS, AND EQUIPMENT - A simplified explanation of the abstract

This abstract first appeared for US patent application 18595726 titled 'PHOTOELECTRIC CONVERSION APPARATUS, METHOD FOR MANUFACTURING PHOTOELECTRIC CONVERSION APPARATUS, AND EQUIPMENT

Simplified Explanation: The patent application describes a photoelectric conversion apparatus with elements that convert light into electricity, featuring isolation portions within a semiconductor layer to enhance efficiency.

  • Photoelectric conversion elements convert light to electricity
  • Isolation portions within the semiconductor layer improve performance

Key Features and Innovation:

  • Photoelectric conversion units on one surface of a semiconductor layer
  • Light enters from the opposite surface
  • First and second element isolation portions enhance efficiency
  • Coated portion contacts the second element isolation portion

Potential Applications: This technology could be used in solar panels, sensors, and other devices that require efficient photoelectric conversion.

Problems Solved:

  • Enhanced efficiency in photoelectric conversion
  • Improved performance in light-sensitive applications

Benefits:

  • Increased energy conversion efficiency
  • Better performance in light-capturing devices

Commercial Applications: Potential commercial applications include solar energy systems, photodetectors, and other light-sensitive technologies that require efficient energy conversion.

Questions about Photoelectric Conversion Apparatus: 1. How does the isolation portion within the semiconductor layer improve efficiency? 2. What are the potential commercial applications of this technology?

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Original Abstract Submitted

A photoelectric conversion apparatus includes photoelectric conversion elements that each include a photoelectric conversion unit disposed on a side of a first surface of a semiconductor layer, and in which light enters from a side of a second surface opposite to the first surface, a first element isolation portion that extends in the semiconductor layer from the first surface toward the second surface, and a second element isolation portion that extends in the semiconductor layer from the second surface toward the first surface and comes into contact with the first element isolation portion. The coated portion is in contact with the second element isolation portion.