Embodiments of the invention will be described below with reference to the drawings.
The invention relates to a display device in which two substrates are disposed facing each other with the inner pressure reduced. Spacers are used to keep the distance between the two substrates. The spacers are fixed to the substrates using a fixing material obtained by hardening a paste-like adhesive.
The image display includes a first substrate on which electron sources are formed (electron source-side substrate) and a second substrate on which fluorescent surfaces corresponding to the electron sources are formed (phosphor-side substrate). A frame is disposed between the first and second substrates. The frame is disposed in such a way that it surrounds the electron sources on the first substrate and the fluorescent surfaces on the second substrate. That is, the frame is disposed on the opposing surfaces of the substrates along the peripherals thereof. Spacers are disposed between the first and second substrates in order to keep the distance between the opposing substrates.
Electrons emitted from the electron sources can cause fluorophores on the fluorescent surfaces to emit light so as to display images.
The exterior of the fixing material that fixes each spacer has a stepped structure. In such a configuration, each spacer can be securely fixed.
The present embodiment will be described with reference to the case where an MIM FED is used as the image display. The MIM FED includes an electron source-side substrate 31 on which MIM electron sources are formed in a matrix, a phosphor-side substrate 32 on which fluorescent surfaces corresponding to the MIM electron sources are formed, the substrates 31 and 32 disposed facing each other, and a supporting frame 4 that seals the peripherals of the substrates 31 and 32 to form a vacuum therebetween. Electrons emitted from the MIM electron sources cause fluorophores to emit light so as to display images. The electron source-side substrate 31 and the phosphor-side substrate 32 are preferably made of glass.
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The image display according to the present embodiment includes a first substrate on which electron sources are formed (electron source-side substrate) and a second substrate on which fluorescent surfaces corresponding to the electron sources are formed (phosphor-side substrate). A frame is disposed between the first and second substrates. The frame is disposed in such a way that it surrounds the electron sources on the first substrate and the fluorescent surfaces on the second substrate. That is, the frame is disposed on the opposing surfaces of the substrates along the peripherals thereof. Spacers are disposed between the first and second substrates in order to keep the distance between the opposing substrates.
Electrons emitted from the electron sources can cause fluorophores on the fluorescent surfaces to emit light so as to display images.
The spacers are fixed to one or both of the first and second substrates using a fixing material.
The manufacturing method according to the present embodiment includes the step of fixing the spacers to the substrates. Specifically, the step of fixing the spacers includes the steps of transferring and applying paste onto each of the spacers, drying the paste, transferring and applying paste on the dried paste, and hardening the paste.
The spacers are fixed to the first or second substrate using the hardened paste having a multi-stepped structure.
In the present embodiment, in the step (a), paste 5 is first applied onto an application workbench 51 in such a way that the paste 5 has a uniform film thickness. The spacer 1 is dipped in the paste 5 having a uniform film thickness to transfer (or apply) first paste 6 to the spacer 1.
Then, in the step (b), the transferred and applied first paste 6 is dried to form dried paste 7.
In the next step (c), the spacer 1 to which the dried paste 7 is attached is dipped in the paste 5 again to transfer (or apply) second paste 8 around the dried paste 7.
Then, in the step (d), the spacer 1 to which the paste 7 and 8 are attached is temporarily fixed to the electron source-side substrate 31 or the phosphor-side substrate 32 on a mounting workbench 33. The paste 7 and 8 are then hardened.
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In the present embodiment, the number of transferring and applying processes is not limited to two, but can be a larger number as required so as to provide a paste width having necessary strength. Furthermore, multiple kinds of pastes can be used to form a multilayer structure.
Number | Date | Country | Kind |
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2006-190231 | Jul 2006 | JP | national |