Inductive and LVDT sensors for
displacement, distance and position
Linear sensors and gaging sensors for industrial and OEM applications
for integration in machines and systems. Accurate displacement and
position sensors to favourable conditions
inductive displacement sensors, LVDT gaging sensors, displacement transducers, displacement sensors,
distance, transducers, automation, automobile, automotive, loading sensor, non-contact, pressure resistant,
pressure-resistant, immersion depth, spring travel, filling level, stroke, hydraulics, inductive sensors and
gaging sensors, automotive engineering, pistons, clutch, measurement of lengths, linear sensor, LVDT,
measurement devices, OEM sensors, Oil resistant, pneumatics, position sensor, position measurement,
sensor, series sensors, unbalance sensor, valve, wear-free, displacement sensor, displacement
measurement, also customer-specific OEM sensors, automotive engineering test and test-rigs, automotive
sensors for large-scale production
20
Series LVP DC: Inductive sensors with
measuring plunger and integrated electronics
No wear and no maintenance
Integrated microelectronics
Compact design - short installed
length
Shielded against EMI
For use in difficult ambient conditions
Comparison of the installed length of
the LVP sensor with a conventional
LVDT sensor
measuring
range
LVDT sensor
An important advantage of the LVP
measuring technique lies in the short length
of the installed sensor. This difference in
lengths becomes clear in a direct
comparison with an LVDT sensor.
LVP series
measuring
range
Comparison of the installed length of
the LVP sensor with a conventional LVDT sensor
LVP series
housing version -ZA-
M12 x 0.5
radial 7-pin connector
A
13.9
25*
C
ø30.5
B
Measuring range
A
77
138
261
B
M2
M3
M3
C
10
12
12
D
4
4
4
ø8
D
50
100
200
All data in mm
ø12
40
12
sensor rod
measuring
plunger
* measuring plunger start position I
out
= 4 mA
21
Model
Measuring range
standard ±0.5 % FSO
Linearity
option±0.25 % FSO
Resolution
Temperature range
zero
Temperature stability
sensitivity
Frequency response (-3 dB)
Output
Output load
Power supply
Current consumption
Protection class
Electromagnetic compatibility (EMC)
Shock
1
Vibration
FSO = Full Scale Output
1) Half sinusoid 6 ms
IEC 68-2-29
<0.03 % FSO
LVP-50
50 mm
0.25 mm
0.125 mm
0.015 mm
LVP-100
100 mm
0.5 mm
0.25 mm
0.03 mm
-40 °C ... +85 °C
±50 ppm / °C
±150 ppm / °C
300 Hz
4 - 20 mA
500 Ohm
18 - 30 VDC
max. 40 mA
IP 67
LVP-200
200 mm
1.0 mm
-
0.06 mm
EN 50 081-2 spurious emission EN 50 082-2 interference immunity
40 g, 3000 shocks / axis; 100 g radial, 300 g axial
IEC 68-2-27
IEC 68-2-6
5 Hz ... 44 Hz ± 2.5 mm; 44 Hz ... 500 Hz ±20 g
Article
LVP -
50 - ZA - 2.5 - SR7
- I
Electrical output
SA7= connector, axial (housing version GA)
SR7= connector, radial (housing version ZA)
Linearity
5 = 0.5 % FSO
2.5 = 0.25 % FSO
ZA= housing, cylindical (standard)
GA= housing, threaded (option)
measuring range in mm
LVP series
housing version -GA- (option)
axial 7-pin
connector
A
WS 32
25*
C
M 18x1.5
13.9
40
12
ø8
B
sensor rod
measuring plunger
* measuring plunger start position I
out
= 4 mA
D
22
Sensor system with on-board electronics
LVP-0,3-Z20-2-CR-AC
Excellent ratio of installed length to
measurement range
On-board electronics
Rugged and wear-free
High dynamic
Functional target
Voice coil actuators are used for positioning
with small displacements, with a high
dynamic response, high repeatability and
positioning accuracy as well as with strong
accelerations. In conjunction with a servo
system the voice coil actuator and the
displacement sensor are operated in a
closed circuit. These systems are used in
applications in the optical industry, such as
for optical scanning, focusing, tracking and
stabilizing. Through the use of the sensor
the optical beam path and the mechanical
system can be set up on one axis. The
optical path is combined with the line of
center of gravity for the motor and the
measurement object.
This produces a simpler mechanical
construction, higher stability and a smaller
installation space.
Model
Article
Measuring principle
Measuring range
Target
Linearity
Resolution
Frequency response
Housing
Temperature stability
Output
Power supply
Temperature range
Protection class
Electronics
FSO = Full Scale Output
sensor
electronics
LVP-0,3-Z20-2-CR-AC
2617009
LVP (page 10-11)
0.3 mm
customer specific, not included
0.25 % FSO (0.75 µm)
0.025 % FSO (0.1 µm)
3 kHz
stainless steel
± 200 ppm / °C
digital, TTL
+ 3.3 VDC
-10 °C ... +40 °C
-10 °C ... +65 °C
IP 65
including PCB electronics 4111006.03, MSC739/CRF-AD
contact
Sensor integrated in an optical and
mechanical voice coil axis.
sensor electronics
lense
zero
position
6±0.1
ø12.5
12
sensor
voicecoil
44.5
ø19.5
23
Sensor module with ASIC electronics
LVPxx-P-LP-I/D
Market leading technology
Stroke measurement in hydraulic and
solenoid valves
Measurement ranges from 1 to 10 mm
with only one sensor module
Customer specific target
Model
Article
Measuring principle
Measuring range
Target, plunger length
Linearity
Resolution
Frequency response
Temperature stability
2 µm
±1 mm
10.5 mm
±2 mm
8.5 mm
0.2 % FSO
4 µm
LVPxx-P-LP-I/D
2616079
LVP (page 10-11)
±3 mm
8 mm
±4 mm
7 mm
0.5 % FSO
6 µm
10 bit
200 Hz ... 1 kHz (-3dB)
± 100 ppm / °C (zero)
± 150 ppm / °C (sensitivity)
0.5 ... 4.5 VDC and 4 ... 20 mA
8 µm
±5 mm
5 mm
1 % FSO
10 µm
The sensor system LVP-xx-P-LP-I/D is used
as a testing system for the verification and
inspection of the functionality of the system
in electro-hydraulic servo valves.
The modular sensor construction facilitates
a fast and simple adaptation to the specific
application for use in large-scale produc-
tion. The sensor and electronic system can
be constructed as one unit or with a sensor
cable. The LVP principle enables matching
of the measurement ranges in a span from
±1 to ±5 mm by simply changing the target
length.
The sensor element is mounted in the
pressure-free space and is protected by a
pressure pipe. The acquisition of the target
position occurs through the pressure pipe.
Output
option: PWM, digital (serial)
Power supply
Temperature range
Storage temperature
Circuit dimensions
Alu tube dimensions
FSO = Full Scale Output
+ 8 ... 35 VDC
-40 °C ... +85 °C
-40 °C ... +100 °C
41 x 52 mm
ø7 x 0.5 mm, 35 mm long