e-STUDIO182/212/242
© 2009 TOSHIBA TEC CORPORATION All rights reserved
LASER OPTICAL UNIT
7 - 4
3. f
θ
lenses 1 and 2
These two lenses perform the following adjustment on the laser beams reflected by the polygonal
mirror.
4. H-sync signal detection PC board (SNS)
The laser light which is started to be scanned from one of the reflected plane of the polygonal mirror
is reflected by the H-Sync returning mirror and enters the PIN diode on the H-sync signal detection
PC board (SNS). The primary scanning synchronizing signal is generated based on this reflection.
5. Slit glass
Slit glass is located where the laser beams are output from the laser optical unit, and it protects the
unit from dust.
a. Uniform-velocity scanning
Since the polygonal mirror is rotating at a
uniform velocity, the laser beam reflected from
the mirror scans over the drum surface at a
uniform angular velocity; namely, the pitch
between the dots on the drum is wider at both
ends than at the center of the scanning range.
The f
θ
lenses help to correct this difference,
making all the dot-to-dot pitches equal on the
drum surface.
Fig. 7-5
b. Face tilt correction
The reflecting face of the polygonal mirror is
tilted slightly to one side against the perfect
vertical. Horizontal deviation of the laser light
which is caused by the tilt is corrected.
Fig. 7-6
c. Sectional shape of laser beam
The shape of the laser beam spotted on the
drum is adjusted.
Wider
Narrower
Drum
f
θ
Lens-1
f
θ
Lens-2
Same intervals
Mirror plane is tilted.
Deviation
Summary of Contents for e-studio182
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Page 76: ...e STUDIO182 212 242 2009 TOSHIBA TEC CORPORATION All rights reserved COPY PROCESS 3 14 ...
Page 120: ...e STUDIO182 212 242 2009 TOSHIBA TEC CORPORATION All rights reserved SCANNER 6 26 ...
Page 128: ...e STUDIO182 212 242 2009 TOSHIBA TEC CORPORATION All rights reserved LASER OPTICAL UNIT 7 8 ...
Page 228: ...e STUDIO182 212 242 2009 TOSHIBA TEC CORPORATION All rights reserved FUSER EXIT UNIT 12 24 ...
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