18504130. LAMINATED VARISTOR simplified abstract (Panasonic Intellectual Property Management Co., Ltd.)

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LAMINATED VARISTOR

Organization Name

Panasonic Intellectual Property Management Co., Ltd.

Inventor(s)

MASASHI Takamura of Hokkaido (JP)

KEN Yanai of Hokkaido (JP)

YUJI Yamagishi of Hokkaido (JP)

SAYAKA Watanabe of Hokkaido (JP)

YUTO Akiyama of Hokkaido (JP)

LAMINATED VARISTOR - A simplified explanation of the abstract

This abstract first appeared for US patent application 18504130 titled 'LAMINATED VARISTOR

Simplified Explanation

The patent application describes an electrode structure with multiple internal electrodes for connection to external electrodes.

  • The first internal electrode has connecting parts for external electrode connection and a facing part in between.
  • The second internal electrode also has connecting parts and a facing part.
  • The third internal electrode has a facing part that overlaps with the first and second facing parts.

Potential Applications

The electrode structure can be used in various electronic devices such as sensors, actuators, and medical devices.

Problems Solved

This technology allows for more efficient and compact electrode designs in electronic devices.

Benefits

- Improved electrical connectivity - Space-saving design - Enhanced performance in electronic devices

Potential Commercial Applications

"Advanced Electrode Structure for Electronic Devices" can be used in wearable technology, medical devices, and industrial sensors.

Possible Prior Art

There may be prior art related to electrode structures in electronic devices, but specific examples are not provided in this patent application.

Unanswered Questions

How does the electrode structure impact the overall size of electronic devices?

The electrode structure may allow for more compact designs, but the exact impact on device size is not specified in the patent application.

What materials are used in the construction of the internal electrodes?

The patent application does not mention the specific materials used in the internal electrodes, which could be important for understanding the performance and durability of the electrode structure.


Original Abstract Submitted

A first internal electrode includes a pair of first connecting parts extending from a first end surface along a first direction to be connected to a first external electrode, and a first facing part provided between the pair of first connecting parts. A second internal electrode includes a pair of second connecting parts extending from a second end surface along the first direction to be connected to a second external electrode, and a second facing part provided between the pair of second connecting parts. A third internal electrode includes a third facing part disposed along the first direction. The third facing part overlaps the first facing part and the second facing part. A first end of the third facing part is disposed between the pair of first connecting parts, and a second end of the third facing part is disposed between the pair of second connecting parts.