A light emitting device having a structure in which oxygen and moisture
are prevented from reaching light emitting elements, and a method of
manufacturing the same, are provided. Further, the light emitting
elements are sealed by using a small number of process steps, without
enclosing a drying agent. The present invention has a top surface
emission structure. A substrate on which the light emitting elements are
formed is bonded to a transparent sealing substrate. The structure is one
in which a transparent second sealing material covers the entire surface
of a pixel region when bonding the two substrates, and a first sealing
material (having a higher viscosity than the second sealing material),
which contains a gap material (filler, fine particles, or the like) for
protecting a gap between the two substrates, surrounds the pixel region.
The two substrates are sealed by the first sealing material and the
second sealing material. Further, reaction between electrodes of the
light emitting elements (cathodes or anodes) and the sealing materials
can be prevented by covering the electrodes with a transparent protective
layer, for example, CaF.sub.2, MgF.sub.2, or BaF.sub.2.