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Teac X-10 - 2 MECANICAL ADJUSTMENTS AND CHECKS; 2-1 CONTROL PCB ASSY CHECK; 2-2 BRAKE ADJUSTMENT; 2-3 BRAKE TORQUE MEASUREMENT

Teac X-10
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X-10R/X-10
2
MECANICAL
ADJUSTMENTS
AND
CHECKS
NOTE:
All
the
explanations
are
for
the
X-10R.
But
unless
specified
they
can
also
be
applied
to
the
X-10
except
for
those
in
relation
to
the
REVERSE
direction.
2-1
CONTROL
PCB
ASSY
CHECK
Hooking
CONTROL
PCB
ass’y
as
shown
facilitates
this
check.
CONTROL
PCB
ass’y
TA-1030
Fig.
2-1
2-2
BRAKE
ADJUSTMENT
NOTE:
The
explanation
and
figure
in
this
paragraph
are
for
the
left
side
brake,
similar
checks
and
adjustments
are
applicable
for
the
right
side
one.
1.
Adjust
by
moving
the
brake
band
bracket
in
either
direction
(arrow
(A))
so
that
the
reel
motor
chassis
is
in
parallel
with
the
brake
arm,
and
so
that
the
brake
band
makes
proper
clearance
equally
all
around
the
reel
table
base.
2.
Adjust
by
moving
the
brake
solenoid
in
either
direction
(arrow
(D))
so
that
the
stroke
of
the
solenoid
plunger
is
about
2
mm.
3.
Adjust
by
moving
the
band
ass’y
retaining
plate
as
shown
in
(B,
C,
E)
so
that,
when
the
plunger
is
pushed
in
the
direction
of
the
solenoid
housing,
the
reel
table
base
is
not
rubbed
by
the
brake
band
and
is
properly
spaced.
reel
motor
chassis
solenoid
plunger
solenoid
mounting
screws
ve
band
ass‘y
retaining
plate
TA-1031
Fig.
2-2
2-3
BRAKE
TORQUE
MEASUREMENT
1.
Place
an
empty
7”
reel,
connected
to
a
spring
scale
by
a
string,
on
the
reel
table.
2.
Pull
the
scale
away
from
the
reel
and
read
the
scale
indication
only
when
the
reel
table
is
steady
motion.
3.
Do
steps
1
and
2
for
each
measuring
condition,
(A)
through
(D)
in
Fig,
2-3.
4.
The
values
are
as
chart
in
Fig.
2-3.
spring
scale
4
Forward
direction
(B)
(C)|
1.2
to
1.7
kg-cm
(17
to
24
oz-inch)
$
Reverse
direction
(A)
(D)
}
0.6
kg-cm
(8.3
02-inch)
or
less
Left/right
deviation
0.2
kg-cm
(2.8
oz-inch)
or
less
NOTES:
1.
The
reverse
direction
values
are
reference.
2.
The
specification
of
left/right
deviation
only
applies
for
forward
direction
torques.
Torque
calculating
formulas:
(1)
Torque
(in
g-cm
or
oz-inch)
=
Force
or
Weight
(in
g
or
oz)
x
Radius
(in
cm
or
inch)
(2)
Conversion
of
g-cm
to
oz-inch:
g-cm
x
0.0139
=
oz-inch
Fig.
2-3

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