IP Library › Granted Patent US 10,923,606
Granted Patent B2
US 10,923,606 · App. 16/344,924 · Granted Feb 16, 2021

Photoelectric conversion element

Inventor: Masanori Fukuda (Osaka, JP)
Assignee: KANEKA CORPORATION
H01L31/0224H01L23/544H01L2223/54433
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Quick Facts
Patent No.
US 10,923,606
App. No.
16/344,924
Granted
Feb 16, 2021
Kind
B2
Abstract

A photoelectric conversion element includes a plurality of finger electrodes, which extend in a first direction, and are aligned with a first interval in a second direction orthogonal to the first direction, and an identification mark arranged so that a second interval, which is greater than the first interval, separates the identification mark from the plurality of finger electrodes in the second direction.

Claims (16)

1. A photoelectric conversion element, comprising:

a plurality of finger electrodes, which extend in a first direction, and are aligned with each other and separated by a first interval along a second direction orthogonal to the first direction; and

an identification mark positioned in an electrode opening area and arranged so that a second interval, which is greater than the first interval, separates the identification mark from the plurality of finger electrodes in the second direction,

wherein the plurality of finger electrodes produce a higher reflectance as compared to the electrode opening area.

2. The photoelectric conversion element according to claim 1 , wherein the identification mark has a plurality of pits to differentiate reflectance within a substantially rectangular area.

3. The photoelectric conversion element according to claim 1 , wherein the plurality of finger electrodes and the identification mark are arranged so that a third interval, which is greater than the first interval, separates the identification mark from the plurality of finger electrodes in the first direction.

4. The photoelectric conversion element according to claim 1 ,

wherein the identification mark is formed in a substantially rectangular area having a first side and a second side, which are substantially parallel to the first direction, and a third side and a fourth side, which are substantially parallel to the second direction,

wherein, out of the plurality of finger electrodes, a finger electrode that is the most adjacent to the first side is arranged so that the second interval separates the finger electrode from the first side, and

wherein, out of the plurality of finger electrodes, a finger electrode that is the most adjacent to the second side is arranged so that a fourth interval, which is greater than the first interval, separates the finger electrode from the second side.

5. The photoelectric conversion element according to claim 1 ,

wherein the identification mark is formed in a substantially rectangular area having a first side and a second side, which are substantially parallel to the first direction, and a third side and a fourth side, which are substantially parallel to the second direction,

wherein, out of the plurality of finger electrodes, finger electrodes having end portions closest to the third side are arranged so that a third interval, which is greater than the first interval, separates the finger electrodes from the third side, and

wherein, out of the plurality of finger electrodes, finger electrodes having end portions closest to the fourth side are arranged so that a fifth interval, which is greater than the first interval, separates the finger electrodes from the fourth side.

6. The photoelectric conversion element according to claim 1 , wherein the identification mark is placed on a rear surface side of a light receiving surface.

7. The photoelectric conversion element according to claim 1 , wherein a width of the second interval is less than twice a width of the first interval.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2019
From: FUKUDA, MASANORI
To: KANEKA CORPORATION
Reel/Frame 049008/0257 →
Priority Claims (1)
JP JP2016-209846 · Oct 26, 2016 · national
Continuity (1)
Related Publication 20190259884A1 · Aug 22, 2019