Inclinometer
B1N360V-Q20L60-2LU3-H1151/3GD
Type code
Ident no.
Measuring range
Repeatability
Temperature coefficient typical
Resolution
Ambient temperature
Operating voltage
Rated insulation voltage
Short-circuit protection
Wire breakage / Reverse polarity protection
Output function
Voltage output
Load resistance voltage output
Response time
Current consumption
Approval acc. to
Device designation
Design
Dimensions
Housing material
Connection
Vibration resistance
Shock resistance
Protection class
MTTF
Included in scope of supply
1 / 4
Hans Turck GmbH & Co.KG ñ D-45472 Mülheim an der Ruhr ñ Witzlebenstraße 7 ñ Tel. 0208 4952-0 ñ Fax 0208 4952-264 ñ more@turck.com ñ www.turck.com
B1N360V-Q20L60-2LU3-H1151/3GD
1534114
0...360°
ð 0.2 % of measuring range |A - B|
ð 0.1 %, after warm-up 0.5 h
0.03 °/K
ð 0.14 °
-30...+70 °C
in the explosion hazardous area see instruction
leaflet
10...30VDC
ð 0.5 kV
yes
yes/ complete
5-wire, analog output
0.1...4.9V
2 outputs, one for CW and one for CCW
ï 40 kò
0.1 s
Time for the output signal to reach 90% of the ad-
justed measuring range
50...105 mA (voltage-dependent)
ATEX declaration of conformity TURCK Ex-12002H
X
Ex II 3 G Ex nA IIC T5 Gc/II 3 D Ex tc IIIC T85°C Dc
rectangular, Q20L60
60 x 30 x 20 mm
plastic, PC
male, M12 x 1
55 Hz (1 mm)
30 g (11 ms)
IP68 / IP69K
203 years acc. to SN 29500 (Ed. 99) 40 °C
Security clip SC-M12/3GD
ATEX category II 3 G, Ex Zone 2
ATEX category II 3 D, Ex Zone 22
Rectangular, plastic, PC
Compact housing
Connection via M12x1 plug connectors
12 bit resolution
5-wire, 10...30 VDC
0.1 ... 4.9 V analog output for clockwise
(CW) rotation
0.1 ... 4.9 V analog output for counter-
clockwise (CCW) rotation
Wiring diagram
Functional principle
The TURCK inclinometers incorporate a mi-
cromechanical pendulum, operating on the
principle of MEMS technology (Mikro Elektro
Mechanic Systems).
The pendulum basically consists of two 'plate'
electrodes arranged in parallel with a dielec-
tric placed in the middle. When the sensor is
inclined, the dielectric in the middle moves,
causing the capacitance ratio between both
electrodes to change.
The downstream electronics evaluates this
change in capacitance and generates a corre-
sponding output signal.
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