Hottinger Baldwin Messtechnik C2 User Manual

C2
Force Transducers
Data Sheet
Special features
– Compressive Force transducer
made of rust­resistant materials
Low overall heightNominal forces 500 kN ... 200 kNAccuracy class 0.1
Dimensions (in mm; 1 mm= 0.03937 inches)
C2 (Nominal forces 500 N...500 kN)
18.3
turned by 45°
approx. 18.5
Nominal forces ∅A
500 N...10 kN 50 30 42 4xM5 7 60 34 7 13 20 35
20 kN, 50 kN 90 48 70 4xM10 12 100 55 12,5 25 30 50
B G H J R S
-0,2
H8
T U X Y
20.C2.12 en
Specifications (acc. to DIN/VDE 2638)
Type C2 Nominal forces F
nom
Accuracy class 0.2 0.1 Nominal sensitivity C Rel. tensile/compressive force sensi-
tivity variance Rel. deviation from zero d Hysteresis
(0.2F
nom
to F
nom
)
Linearity deviation d Temperature influence on the sensi-
nom
d
c
ao
u % t0.2 t0.15
lin
TK
tivity per 10 K, rel. to nominal sensitivity
Temperature influence on the zero
TK
signal per 10 K, rel. to nominal sensitivity
Effect of eccentricity per mm d Rel. creep over 30 min d Input resistance R Output resistance R Isolation resistance R Reference excitation voltage U Operating range of the excitation
voltage Nominal temperature range B
Operating temperature range B Storage temperature range B
Reference temperature t
crF+E
ref
B
U,G
t,nom
t,G t,S
ref
e
e a Is
Max. operational force (FG) % 130 150 Limit force (FL) % 130 150 Breaking force (FB) % u300 Static lateral limit force Nominal displacement S Fundamental resonance frequency f
1)
(FQ) % 50
nom
G
Weight kg 0.4 1.8 1.8 3 3 Rel. permissible vibration stress F
rb
Protection to DIN EN 60529 IP67 (IP68) Cable length, six-wire technique m 3 6 12
1)
rel. to a point of force introduction on the load introduction cap
2)
optional 120
o
version
kN 0.5 1 2 5 10 20 50 100 200
mV/V 2
% t"0.2
% t1
% t0.2 t0.1
C
0
% 0.1
% 0.05
% "0.3 "0.3 "0.2 "0.1 % t"0.06
u340 300 ... 400
G u2 x 10
9
V 5 V 0.5 ... 12
°C [°F] °C [°F] °C [°F]
°C [°F]
10 to +70 [ 14...158]
30 to +85 (120)
50 to +85 [ 58...185]
+23 [ 73.4]
2)
[–22...185(248)2)]
mm t0.1 t0.06
kHz 4.4 8.7 9.7 18.5 19.3 13 14 13 14
% 100
3)
7
D 20.C2.12 enHBM
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