ABB COMMANDER 351 User Manual page 91

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Analog Inputs
Universal Process Inputs
Number
2 standard
Type
Universally configurable to provide:
Thermocouple (THC)
Resistance thermometer (RTD)
mV
Volts
mA
Resistance
Non-universal Process Input
Number
1 standard
Types
mV only (THC only if I/P1 is also THC)
mA
Standard Analog Input Ranges
T
h
r e
m
o
c
o
u
p
e l
B
E
J
K
L
N
R
S
T
*
P
e
f r
r o
m
a
n
e c
a
c c
u
a r
y c
s i
n
t o
g
u
a
a r
t n
e e
M
. n i
s
p
a
n
b
e
o l
w
e z
o r
T
p y
e
T
7
0
C º
1 (
T
p y
e
N
1
0
5
C º
1 (
R
T
D
P
T
1
0
0
* *
R
T
, D
- 3
w
e r i
p
a l
n i t
u
m
,
1
0
0
p
r e
D
N I
4
L
n i
e
r a
n I
p
u
s t
M
i l l i
o v
s t l
M
l i
a i l
m
p
s
V
o
s t l
R
s e
s i
a t
n
e c
°C
M
a
i x
m
u
m
R
a
n
g
e
1
8
o t
1
8
0
0
1
0
0
o t
9
0
0
1
0
0
o t
9
0
0
1
0
0
o t
1
3
0
0
1
0
0
o t
9
0
0
2
0
0
o t
1
3
0
0
1
8
o t
1
7
0
0
1
8
o t
1
7
0
0
2
5
0
o t
3
0
0
d
b
e
o l
w
3
0
0
C º
5 (
7
2
F º
f )
r o
, B
R
a
n
d
S
h t
2
º 6
) F
T
H
C
s
a t
n
8
º 9
) F
°C
M
a
i x
m
u
m
R
a
n
g
e
2
0
0
o t
6
0
0
3
7
6
0
s
a t
n
d
a
d r
(
E I
C
7
5
1
, )
w
h t i
a r
n
g
e
f o
0
R
a
n
g
e
0
o t
5
0
0
m
V
0
o t
5
0
m
A
0
o t
5
V
0
o t
5
0
0
0
Analog Inputs – Common
Linearizer Functions
THC types B, E, J, K, L, N, R, S, T, PT100, √,
Input Impedance
mA
mV, V
Broken Sensor Protection
Programmable for upscale or downscale drive
Sample Interval
125ms (1 input)
Digital filter
Programmable
Cold Junction Compensation
Automatic CJC incorporated as standard
Stability 0.05°C/°C (0.05°F/°F) change in ambient temperature
Input Protection
Common mode rejection
300Ω imbalance resistance
Series mode rejection
Transmitter Power Supply
Voltage:
Drive:
°F
M
a
i x
m
u
m
R
a
n
g
e
0
o t
3
2
7
0
1
4
0
o t
1
6
5
0
1
4
0
o t
1
6
5
0
1
4
0
o t
2
3
5
0
1
4
0
o t
1
6
5
0
3
2
5
o t
2
3
5
0
0
o t
3
0
0
0
0
o t
3
0
0
0
4
0
0
o t
5
5
0
r e
m
o
c
o
u
l p
s e
d
a
d r
s
D
N I
4
3
7
1
0
E I
C
5
8
4
°F
M
a
i x
m
u
m
R
a
n
g
e
3
2
5
o t
1
1
0
0
Ωs
o t
4
0
0
SPECIFICATION...
100Ω
10MΩ
>120dB at 50/60Hz with
> 60dB at 50/60Hz
24V DC nominal
Up to 60mA, (3 loops)
A
c
c
u
a r
c
y
(
%
f o
±1°
°
0
1 .
%
r o
C
1 (
8 .
) F
a [
b
o
± 5 .
0 °
0
1 .
%
r o
C
± 5 .
0 °
0
1 .
%
r o
C
± 5 .
0 °
0
1 .
%
r o
C
± 5 .
1 °
0
1 .
%
r o
C
± 5 .
0 °
0
1 .
%
r o
C
± 5 .
0 °
°
0
1 .
%
r o
C
0 (
9 .
) F
a [
b
± 5 .
0 °
°
0
1 .
%
r o
C
0 (
9 .
) F
a [
b
± 5 .
0 °
0
1 .
%
r o
C
A
c
c
u
a r
c
y
(
%
f o
± 5 .
0 °
0
1 .
%
r o
C
A
c
c
u
a r
c
y
(
%
f o
e r
a
d
n i
) g
± 0
1 µA
0
1 .
%
r o
±2µA
0
2 .
%
r o
±
0
2 .
%
r o
2
m
V
±
0
2 .
%
r o
0
0 .
8
3
/
,
5
/
2
2
e r
a
d
n i
) g
°
°
e v
2
0
0
C
3 (
9
2
) F
* ]
° ) F
0 (
9 .
° ) F
0 (
9 .
° ) F
0 (
9 .
° ) F
2 (
7 .
° ) F
0 (
9 .
°
°
o
e v
3
0
0
C
5 (
4
0
) F
* ]
°
°
o
e v
2
0
0
C
3 (
9
2
) F
* ]
° ) F
0 (
9 .
e r
a
d
n i
g
* * )
° ) F
0 (
9 .
89

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