Kabushiki kaisha toshiba (20240322822). SEMICONDUCTOR DEVICE simplified abstract

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SEMICONDUCTOR DEVICE

Organization Name

kabushiki kaisha toshiba

Inventor(s)

Yukio Tsunetsugu of Yokohama Kanagawa (JP)

SEMICONDUCTOR DEVICE - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240322822 titled 'SEMICONDUCTOR DEVICE

According to one embodiment, a semiconductor device includes first and second switch elements, first and second light emitting elements, first and second light receiving elements, first and second voltage control circuits, and first and second switch control circuits. The first switch control circuit is configured to cause the first light emitting element to emit light after a first time elapses after an input signal has transitioned from a first logic level to a second logic level. The second switch control circuit is configured to suspend light emission of the second light emitting element after a second time elapses after the input signal has transitioned from the second logic level to the first logic level.

  • Simplified Explanation:

- The semiconductor device has components that control the emission of light from two different light emitting elements based on the input signal's logic levels.

  • Key Features and Innovation:

- Control circuits manage the timing of light emission from the light emitting elements. - Switch elements regulate the flow of current to the light emitting elements. - Light receiving elements may be used for feedback or monitoring purposes.

  • Potential Applications:

- This technology could be applied in optoelectronic devices, communication systems, or sensor networks.

  • Problems Solved:

- Efficient control of light emission based on input signal transitions. - Precise timing of light emission and suspension.

  • Benefits:

- Improved energy efficiency. - Enhanced control over light emission processes.

  • Commercial Applications:

- Title: "Advanced Semiconductor Device for Optoelectronic Control" - This technology could be utilized in smart lighting systems, optical sensors, and data communication devices.

  • Prior Art:

- Further research can be conducted on semiconductor devices with similar light emission control mechanisms.

  • Frequently Updated Research:

- Stay updated on advancements in semiconductor technology for potential improvements in light emission control mechanisms.

Questions about Semiconductor Device with Light Emission Control: 1. How does the timing of light emission in this semiconductor device impact its overall performance? 2. What are the potential implications of using multiple light emitting elements in such a device?


Original Abstract Submitted

according to one embodiment, a semiconductor device includes first and second switch elements, first and second light emitting elements, first and second light receiving elements, first and second voltage control circuits, and first and second switch control circuits. the first switch control circuit is configured to cause the first light emitting element to emit light after a first time elapses after an input signal has transitioned from a first logic level to a second logic level. the second switch control circuit is configured to suspend light emission of the second light emitting element after a second time elapses after the input signal has transitioned from the second logic level to the first logic level.