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AM1 데이터 시트보기 (PDF) - Panasonic Corporation

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AM1 Datasheet PDF : 16 Pages
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Technical Terminology & Cautions for Use
OPERATING CHARACTERISTIC
Definition of operating characteristic
The main terminological illustrations and
meanings which are used with snap-
Classification Terminology
action switches are as follows.
RF
OF
Operating
Force
FP
PT
TF
OT
MD
TT
Force
Release
Force
OP
RP
TTP
Totaltravel
Force
Pretravel
Center of mounting holes
Movement
Position
Overtravel
Movement
Differential
Totaltravel
Free
Position
Operating
Position
Release
Position
Total travel
Position
Symbol
OF
RF
TF
PT
OT
MD
TT
FP
OP
RP
TTP
Unit
N
N
N
mm,
degree
mm,
degree
mm,
degree
mm,
degree
mm,
degree
mm,
degree
mm,
degree
mm,
degree
Varying
display
method
Max.
Min.
Max.
Min.
Max.
±
Starting current
The force required to cause contact snap-action. It
is expressed terms of force applied to the the
actuator.
The force to be applied to the the actuator at the
moment contact snaps back from operated
position to total travel position.
Force applied to an actuator required to move from
an operating position to a total travel position
Distance or agree of the actuator movement from
free position to operating position.
The distance or degree which the actuator is
permitted to travel after actuation without any
damage to the switching mechanism.
The distance or degree from operating position to
release position of the actuator.
The migration length or the move angle from the
free position to total travel position of actuator
Position of the actuator when no force is applied
to.
The position of the actuator when the traveling
contacts snaps with the fixed contact.
The position of the actuator when the traveling
contact snaps back from operating position to its
original position.
The stopping position of the actuator after total
travel.
TECHNICAL NOTES ON MECHANICAL CHARACTERISTICS
Actuation Force and Stroke
Changes in Operating Characteristics
Adequate stroke setting is the key to high reliability. It is also
Exercise design care so that malfunctions will not occur if the
important that adequate contact force be ’maintained to ensure operating characteristics vary by as much as 20% from, rated
high reliability. For a normally closed (NC) circuit, the driving
values.
mechanism should be set so that the actuator is normally in the <Example>
free position. For a normally open (NO) circuit, the actuator
should be pressed to 70% to 100% of the specified stroke to
In the OF max. 0.98N specification for FS snap-action switches,
the allowable max. is 0.98 N × (100%+20%) = 1.18 N
absorb possible errors.
If the stroke is set too close to the operating point (OP), this may
In the RF min. 0.15 N min. specification
the allowable min. 0.15 N × (100%–20%) = 0.12 N
cause unstable contact, and in the worst case may cause
actuator damage due to inertia of the drive mechanism. It is
Mechanical Conditions for Type Selection
advisable that the stroke be adjusted with the mounting plate or Actuator type should be selected according to activation
driving mechanism.
method, activation speed, activation rate, and activation
frequency.
The figure at right
OF
shows a typical
1) An extremely slow activation speed may cause unstable
contact transfer, possibly resulting in contact failures or contact
example of activation
fusion.
and contact forces
RF
varying with stroke.
2) An extremely high activation speed may cause damage to
contacts or contact response failure.
In the vicinity of the
OP and RP, the
contact force is
FP
RP OP
TTP Stroke
PT
MD
OT
Driving Mechanism
Use of a driving mechanism which will cause physical impact to
diminished, causing
chatter and contact
bounce immediately
before or after
reversal. For this
reason, use the
switch while giving
due consideration to
NC
On FP
On reversal
On reversal
On OTP
NO
Stroke
the actuator should be avoided.
<Example>
Bad
Good
this. This also causes
the snap action
switch to be sensitive
to vibration or shock.
–2–
AECTB36E 201701-T

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