IP Library › Granted Patent US 7,884,892
Granted Patent B2
US 7,884,892 · App. 11/464,652 · Granted Feb 8, 2011

Electro-optical device, method of testing the same, and electronic apparatus

Assignee: Seiko Epson Corporation
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Quick Facts
Patent No.
US 7,884,892
App. No.
11/464,652
Granted
Feb 8, 2011
Kind
B2
Abstract

An electro-optical device includes: a counter substrate; an element substrate comprising a protruding region protruding from one side of the counter substrate and being bonded to the counter substrate; a plurality of pixel units that are arranged in a pixel region on the element substrate; a plurality of external circuit connecting terminals which are arranged in the protruding region on the element substrate and to which various signals including image signals and control signals for allowing the plurality of pixel units to display an image are supplied; and a plurality of test terminals that are provided at both ends of an array of the plurality of external circuit connecting terminals in the protruding region and are supplied with test signals, wherein a distance between adjacent test terminals is longer than a distance between adjacent external circuit connecting terminals.

Claims (49)

1. An electro-optical device comprising:

a counter substrate;

an element substrate comprising a protruding region protruding from one side of the counter substrate and being bonded to the counter substrate;

a plurality of pixel units that are arranged in a pixel region on the element substrate;

a plurality of external circuit connecting terminals which are arranged in the protruding region on the element substrate and to which various signals including image signals and control signals for allowing the plurality of pixel units to display an image are supplied; and

a plurality of test terminals that are provided at both ends of an array of the plurality of external circuit connecting terminals in the protruding region and are supplied with test signals,

wherein the plurality of test terminals include the same type of terminals as the plurality of external circuit connecting terminals to which signals similar in type to at least one of the various signals supplied to the plurality of external circuit connecting terminals are supplied as the test signals,

the same type of terminals are electrically connected, through resistor elements, to the plurality of external circuit connecting terminals to which at least one of the various signals is supplied, and

the same type of signals among the test signals are supplied from the same type of terminals through the resistor elements.

2. The electro-optical device according to claim 1 ,

wherein, when a test is performed on the element substrate and the counter substrate bonded to each other before the external circuit is electrically connected to the plurality of external circuit connecting terminals, test image signals are collectively supplied to some of the external circuit connecting terminals to which the image signals are supplied when the electro-optical device is driven, and

test signals other than the test image signals, which are required for a test after the bonding, are supplied to the plurality of test terminals.

3. The electro-optical device according to claim 1 ,

wherein the plurality of test terminals are arranged along an expansion line of the array of the plurality of external circuit connecting terminals at both sides of the array of the plurality of external circuit connecting terminals.

4. An electronic apparatus comprising the electro-optical device according to claim 1 .

5. An electro-optical device comprising:

a counter substrate;

an element substrate comprising a protruding region protruding from one side of the counter substrate and being bonded to the counter substrate;

a plurality of pixel units that are arranged in a pixel region on the element substrate;

a plurality of external circuit connecting terminals which are arranged in the protruding region on the element substrate and to which various signals including image signals and control signals for allowing the plurality of pixel units to display an image are supplied;

a plurality of first test terminals which are provided at both ends of an array of the plurality of external circuit connecting terminals in the protruding region and to which first test signals required for a test performed after the element substrate and the counter substrate are bonded to each other are supplied; and

a plurality of second test terminals which are at least partially arranged in a region covered with the counter substrate after the element substrate and the counter substrate are bonded to each other, in a portion of a peripheral region of the element substrate, and to which second test signals required for a test performed before the element substrate and the counter substrate are bonded to each other are supplied.

6. The electro-optical device according to claim 5 ,

wherein a distance between adjacent first test terminals is longer than a distance between adjacent external circuit connecting terminals, and

a distance between adjacent second test terminals is longer than the distance between adjacent external circuit connecting terminals.

7. The electro-optical device according to claim 5 ,

wherein a plurality of element substrates are formed on a large board, the counter substrates are bonded to the element substrates so as to be opposite to each other, and, after the counter substrates are bonded to the element substrates, the large board is divided to form the individual element substrates, and

at least some of the plurality of second test terminals are formed so as to overlap cutting portions of the large board, in addition to or instead of the portion of the peripheral region.

8. The electro-optical device according to claim 5 , further comprising:

a sealing material that bonds the element substrate to the counter substrate in a sealing region surrounding the pixel region of the element substrate in plan view,

wherein the plurality of second test terminals are at least partially arranged in the sealing region.

9. The electro-optical device according to claim 5 ,

wherein at least some of the plurality of first test terminals are used for a test before the bonding in addition to a test after the bonding, and

test signals other than the first test signals supplied to the first test terminals at the time of the test before bonding are supplied to the plurality of second test terminals as the second test signals.

10. The electro-optical device according to claim 5 ,

wherein the plurality of second test terminals include second terminals of the same type as the plurality of external circuit connecting terminals to which signals similar in type to at least one of the various signals supplied to the plurality of external circuit connecting terminals are supplied as the second test signals,

each of the second terminals of the same type is electrically connected, through a resistor element, to one of the plurality of external circuit connecting terminals to which at least one of the various signals is supplied, and

the same type of signals among the second test signals are supplied from the second terminals of the same type through the resistor elements at the time of the test before the bonding.

11. The electro-optical device according to claim 5 ,

wherein the plurality of first test terminals include first terminals of the same type as the plurality of external circuit connecting terminals to which signals similar in type to at least one of the various signals supplied to the plurality of external circuit connecting terminals are supplied as the first test signals,

each of the first terminals of the same type is electrically connected, through a resistor element, to one of the plurality of external circuit connecting terminals to which at least one of the various signals is supplied, and

the same type of signals among the first test signals are supplied from the first terminals of the same type through the resistor elements at the time of the test after the bonding.

12. An electro-optical device comprising:

a counter substrate;

an element substrate comprising a protruding region protruding from one side of the counter substrate and being bonded to the counter substrate;

a plurality of pixel units that are arranged in a pixel region on the element substrate;

a plurality of external circuit connecting terminals which are arranged in the protruding region on the element substrate and to which various signals including image signals and control signals for allowing the plurality of pixel units to display an image are supplied;

a plurality of first test terminals which are provided at both ends of an array of the plurality of external circuit connecting terminals in the protruding region and to which first test signals are supplied; and

a plurality of second test terminals which are at least partially arranged in a region covered with the counter substrate after the element substrate and the counter substrate are bonded to each other, in a portion of a peripheral region of the element substrate, and to which second test signals are supplied.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 15, 2006
From: ISHII, KENYA
To: SEIKO EPSON CORPORATION
Reel/Frame 018125/0893 →
Priority Claims (2)
JP 2005-237188 · Aug 18, 2005 · national
JP 2006-140015 · May 19, 2006 · national
Continuity (1)
Related Publication 20070040983A1 · Feb 22, 2007