Resistive Position Sensors / Product Specifications
Method for Regulating the Linearity
Model RDC40
Output voltage ratio(%)
Output voltage ratio
(%)
1. Reference taper 90%/13rotations
1. Reference taper :: 90%/13rotations
2. VA is measured output value
2. VA is measured output value
100
100
VA
VA
±1%
±1%
Model RDC80
Output voltage ratio(%)
1. Reference taper : 100% /
340˚
2. The center is in the configuration diagram condition
2T output
4T output
100
50
±3%
0
180˚(phase difference)
±3%
±165˚
±165˚
5
5
0
0
0
0
13 rotations
13 rotations
0˚
center
Model RDC50 / RDC90 / RD6R1A / RDCC0
1. Reference taper:100%/A
2. Index point is 50% output point(RDC50/RDC90/RDCC0)
The center is in the configuration diagram condition
100
Output voltage ratio(%)
C
Model RDC10 / RD7
With rated voltage applied between terminals 1 and 3, the straight line which
connects the measured output values VB and VA at specified reference positions
B and A is assumed to be an ideal straight line, so that deviation against the ideal
straight line when the voltage applied between terminals 1 and 3 is assumed to be
100% can be expressed as a percentage.
V
A
50
Resistive
Position Sensors
0
0˚
B
Position B
Position A
(Mecha stroke)
V
B
B
A
Series
A
333.3°
80°
260°
320°
30°
B
±
160°
±30°
±
122°
±
155°
±
15°
C
±2%
±3%
±2%
±2%
RDC50
RDC90
RD6R1A
RDCC0
Resistive Position Sensors / Measurement and Test Methods
Resistive Position Sensor
〔Total
Resistance〕
The total resistance, with the shaft(lever)placed at the end of terminal 1 or 3, shall be determined by
measuring the resistance between the resistor terminals 1 and 3 unless otherwise specified.
〔Rating Voltage〕
The rating voltage corresponding to the rated power shall be determined by the following equation. When the
resulting rated voltage exceeds the maximum operating voltage of a specific resistor, the maximum operating
voltage shall be taken as the rated voltage.
E=√ P・R
E:Rated voltage
(V)
P:Rated power W)
(
R:Total nominal resistance
Ω)
(
477
Resistive Position Sensors
List of Varieties
Type
Series
Rotary Type
Magnetic Rotary Type
RDC40
RDC50
RDC90
RDC80
RD6R1A
RDCC0
NEW
Photo
Direction of lever
Effective electrical angle(°
)
Linearity guarantee range(°
)
Horizontal
5,400
(15 rotations)
4,680
(13 rotations)
Vertical
Horizontal
333.3
320
80, 260
60, 244
Vertical
340
(1-phase)
360
(2-phase)
330
(1-phase)
360
(2-phase)
320
310
30
±
15
Travel
ー
ー
ー
ー
ー
ー
Operating temperature range
Operating life
Available for automotive use
Life cycle (availability)
Operating force
Rotational torque
Total resistance
tolerance
Electrical
performance
Linearity(%)
Rated voltage
(V DC)
Cold
Environmental
performance
Dry heat
Damp heat
Terminal style
Page
−30℃ to +80℃
100,000 cycles
●
1,000,000 cycles
●
−40℃ to +
120℃
10,000,000
cycles
●
100,000 cycles
●
−40℃ to +85℃
500,000 cycles
●
0℃ to +50℃
10,000,000
cycles
ー
Resistive
Position Sensors
Mechanical
performance
ー
1.96mN m max.
・
ー
2mN½m max.
±30%
ー
ー
10mN m max.
・
ー
100mN m
・
±20%
ー
5mN m max.
・
ー
±2
±
1
±2
±3
5
±2 (320°
)
−30℃ 240h
80℃ 240h
60℃,
90 to 95%RH 240h
Connector
−40℃ 168h
120℃ 168h
60℃, 90 to 95%RH 96h
Insertion / Reflow
466
Reflow
469
470
85℃ 168h
−40℃ 240h
85℃ 240h
80℃,
60℃,
90 to 95%RH 96h 90 to 95%RH 240h
Connector
471
Resistive Position Sensors Measurement and Test Methods ・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・ 477
Resistive Position Sensors Soldering Conditions・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・ 478
Resistive Position Sensors Cautions ・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・ 479
Note
●
Indicates applicability to all products in the series.
464