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Technical Data - Camille Bauer SINEAX TV 808-12 Betriebsanleitung

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(10)
(3)
(6)
Span
2
Zero
Cami l l e Bauer AG
CH-561 0 Wohl e n
Swi t zerl a nd
Span
1
Zero
ON
(12) (5)
(11)
Fig. 2
(3)
Front plate
(5)
Type label
(6)
Transparent cover
(7)
Fixing bracket
(8)
Opening for withdrawing clip (for opening the housing)
(9)
Top-hat rail 35 × 15 mm or 35 × 7.5 mm (EN 50 022)
(10)
Terminals
(11)
Terminals
(12)
Space for notes
ON
Green LED for indicating device standing by

6. Technical data

Measuring input
DC current:
Limit values
0...0.1 to 0...40 mA
also live-zero,
start value > 0 to ≤ 50% final value
or span 0.1 to 40 mA
between – 40 and 40 mA
also bipolar asymmetrical
R
= 15 Ω
i
DC voltage:
Limit values
0...0.06 to 0...40
also live-zero,
start value > 0 to ≤ 50% final value
or span 0.06 to 40 V
between – 40 and 40 V
also bipolar asymmetrical
R
= 100 kΩ
i
Overload:
DC current
continuously 2-fold
DC voltage
continuously 2-fold
16
Measuring outputs
(7)
DC current:
(8)
Span
Channel 2
Zero
Burden voltage:
(9)
External resistance:
Span
Channel 1
DC voltage:
Zero
without
function
ON
Burden:
Current limiter at
R
max.:
ext
Voltage limiter at
R
= ∞:
ext
Residual ripple in
output current:
Response time:
Power supply H
AC/DC power pack (DC and 45...400 Hz)
Table 1: Nominal voltages and tolerances
Nominal voltage U
24... 60 V DC / AC
1
85...230 V
DC / AC
1
For power supplies > 125 V, the auxiliary circuit should include an
external fuse.
Power input:
Accuracy data (acc. to DIN/IEC 770)
Basic accuracy:
Standard ranges
0...20 mA, 4...20 mA, ± 20 mA
Limit values
0...1 to 0...20 mA
0.2...1 to 4...20 mA
– 1...0...+ 1 to – 20...0...+ 20 mA
12 V
12 V
R
max. [kΩ] =
ext
I
[mA]
AN
I
= Output circuit full-scale value
AN
Standard ranges
0...10 V, 2...10 V, ± 10 V
Limit values
0...1 to 0...10 V
0.2...1 to 2...10 V
– 1...0...+ 1 to – 10...0...+ 10 V
U
[V]
AN
R
min. [kΩ] ≥
ext
5 mA
U
= Output circuit full-scale value
AN
Approx. 1.1 × I
for current output
AN
Approx. 13 V
< 0.5% p.p.
< 50 ms
Tolerance
N
DC – 15...+ 33%
AC ± 15 %
≤ 1.2 W resp. ≤ 3 VA
Limit error ≤ ± 0.2%
Including linearity and reproduci-
bility errors

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