Sealed housing for field emission display

Electric lamp and discharge devices – With luminescent solid or liquid material – Vacuum-type tube

Reexamination Certificate

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Details

C313S553000, C313S560000

Reexamination Certificate

active

06787985

ABSTRACT:

BACKGROUND OF THE INVENTION
1. Field of the Invention
The present invention relates to a sealed housing for a field emission display (FED), and particularly to a sealed housing having walls made from Invar alloy and Cr-doped Invar.
2. Description of Related Art
Flat panel displays have recently been developed for visually displaying information generated by computers and other electronic devices. These displays can be made lighter in weight and require less power than conventional cathode ray tube displays. One type of flat panel display is known as a cold cathode field emission display (FED).
A field emission display uses electron emissions to illuminate a cathodoluminescent display screen and generate a visual image. An individual field emission pixel typically includes a face plate wherein the display screen is formed and emitter sites are formed on a base plate. The base plate includes the circuitry and devices that control electron emission from the emitter sites.
The emitter sites and face plate are spaced apart by a small distance to stand off the voltage differential and to provide a gap for gas flow. In order to achieve reliable display operation during electron emission, a vacuum on the order of 10
−6
Torr or less is required. The vacuum is formed in a sealed space contained within the field emission display.
The use of gettering materials in field emission displays to provide adequate vacuum conditions is known in the art. Referring to
FIG. 2
, U.S. Pat. No. 5,688,708 discloses an FED
100
which includes an anode
102
having a plurality of cathodoluminescent deposits
104
, a cathode
106
including a plurality of field emitters
108
, and a plurality of side members
112
which are positioned between anode
102
and cathode
106
for maintaining a predetermined spacing therebetween. The side members
112
are affixed to the anode
102
and the cathode
106
by using glass frit sealant. The inner surfaces of anode
102
and cathode
106
and side members
112
define an interspace region. The FED
100
further defines a plurality of receptacles
118
which are in communication with the interspace region. First and second getter materials
120
,
122
are contained in the different receptacles, respectively. The first and second getter materials
120
,
122
enhance the vacuum level by adsorption of residual gas molecules in the interspace region. However, the FED
100
takes up more space because of the plurality of receptacles
118
. In addition, the protrusion of the plurality of receptacles
118
is inconvenient and must be accommodated during packaging of the display into a system, such as a lap top computer. Furthermore, the glass frit sealant between the anode
102
, the cathode
106
and side members
112
can potentially fail during the lifetime of the field emission display package, because of the different coefficients of thermal expansion of the anode
102
, the cathode
106
, the side members
112
and the glass frits.
It is desirable to provide an improved seal for field emission display (FED) which overcomes the above problems.
SUMMARY OF THE INVENTION
An object of the present invention is to provide a sealed housing for a field emission display (FED) which provides a good vacuum seal and which has a structure strong enough to support vacuum pressure.
Another object of the present invention is to provide a sealed housing which extends the lifetime and increases the reliability of an FED contained therein.
A field emission display package in accordance with the present invention comprises an anode plate coated with a phosphor layer, a resistive buffer spaced from the phosphor layer, a plurality of electron emitters formed on the resistive buffer, a cathode plate in contact with the resistive buffer, a silicon thin film, and a sealed housing defining an interspace region. The anode plate, the phosphor layer, the resistive buffer, the electron emitters, the cathode plate and the silicon thin film are received in the interspace region.
The sealed housing comprises a front plate, a back plate and a plurality of side walls affixed to the front plate and the back plate so that the front plate, the back plate and the side walls define the inter space region. The side walls are made from alloy
36
or alloy
42
. To enhance the mechanical support and vacuum condition provided, the sealed housing further comprises inner walls made from a getter material which function as a mechanical spacer and stabilizer, and which also provide a very strong gettering effect to adsorb moisture (H
2
O), oxygen (O
2
), carbon dioxide (CO
2
), and other residual gases, thereby providing a longer lifetime and greater reliability of the FED.
Other objects, advantages, and novel features of the present invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings. A copending application Ser. No. 10/277,653 filed on Oct. 21, 2002 having the same applicant and the same assignee with the instant application discloses a basis arrangement of the invention.


REFERENCES:
patent: 5614785 (1997-03-01), Wallace et al.
patent: 5984748 (1999-11-01), Ritter et al.
patent: 6114806 (2000-09-01), Itoh
patent: 6127777 (2000-10-01), Watkins et al.
patent: 6172457 (2001-01-01), Brown et al.
patent: 6541900 (2003-04-01), Ando
patent: 6603254 (2003-08-01), Ando
patent: 59154738 (1984-09-01), None

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