Isolated Process Control Signal Conditioning Products
S C M 7 B
SCM7B35
Isolated 2-Wire Transmitter Interface Modules With Loop Power
Description
SCM7B35 current input modules accept input signals in the 4-20mA
range from the field and provide a high level voltage output to the process
control system (Figure 1). Current to voltage conversion occurs internal
to the module, which is factory calibrated to ensure the highest accuracy.
Features
• 2-Wire Transmitter Interface
• Accepts 4-20mA Signals
Loop power is provided by the module, enabling a wire transmitter to be
directly connected without the need for a separate dc power supply for
the 2-wire transmitter.
• Provides an Isolated +24VDC Supply to Power
the Loop
These modules incorporate a five pole filtering approach to maximi e both
time and fre uency response by ta ing advantage of both Thomson Bessel
and Butterworth characteristics. One pole of the filter is on the field side of the
isolation barrier four are on the process control system side.
• Provides High-Level Voltage Outputs
After the initial field side filtering, the input signal is chopped by
a proprietary chopper circuit and transferred across the transformer
isolation barrier, suppressing transmission of common mode spi es and
surges. The signal is then reconstructed and filtered for process control
system output.
• ANSI/IEEE C37.90.1 Transient Protection
• 1500Vrms Transformer Isolation
• Accuracy, ± 0.03% of Span Typical, ± 0.1% Max
• 120Vrms Input Protection
• 105dB CMRR
• Easy DIN Rail Mounting
Modules accept a wide 18 - 35VDC power supply range (+24VDC nominal).
Their compact packages (2.13”x1.705”x0.605” max) save space and are
ideal for high channel density applications. They are designed for easy
DIN rail mounting using any of the DIN bac panels.
+Vloop
+
–
2-wire
Transmitter
X
SA
S ertified
• CE and ATEX Compliant
1500Vrms
Isolation Barrier
Surge
1 Suppression,
Protection
Iso-Chopper II™
Amplifier
Pat. Pending
Surge
2
Suppression,
Protection
0
NC
LPF
(4 pole)
LPF
& I-V
5
Backpanel
Term Block
Field-Side
3
–V
F i g u r e 1 : S C M 7 B 3 5 B l o ck
DC Supply
Loop Supply
D ia g r a m
7 6
©1995-2017 Dataforth Corporation, All Rights Reserved
For information call 800-444-7644
ISO9001:2008-Registered QMS
VOUT
COM
Process Control
System-Side
+V
+Vloop
4
DC Supply/
Oscillator
5
VS
(18-30VDC)
COM
Isolated Process Control Signal Conditioning Products
Typical❇ at
and
Ordering Information
D
Module
Input
Signal Range
Protection
Continuous
Transient
Loop Voltage(1)
Output
Signal Range(2)
ffective Available Power(2)
Resistance
Protection
Voltage/Current Limit
CMV (Input-to-Output)
Continuous
Transient
CMRR (50 or 60Hz)
Accuracy(3)
Linearity(4)
Stability
to
Gain
Input Offset
Output Offset
Noise
Peak at 5MHz B/W
RMS at 10Hz to 100kHz B/W
Peak at 0.1Hz to 10Hz B/W
Frequency and Time Response
Bandwidth, – 3dB
NMR (– 3dB at 100Hz)
Step Response, 90% Span
Supply Voltage
Current(2)
Sensitivity
Mechanical Dimensions
(h)(w)(d)
Environmental
Operating Temperature Range
Storage Temperature Range
Relative Humidity
Emissions EN61000-6-4
Radiated, Conducted
Immunity EN61000-6-2
RF
ESD, EFT
SCM7B35
Model
SCM7B35-01
SCM7B35-01A
SCM7B35-01D
SCM7B35-02
4-20mA
120Vrms max
ANSI/IEEE C37.90.1
+24VDC
Input Range
Output Range
4 to 20mA
4 to 20mA
4 to 20mA
4 to 20mA
+1 to +5V
0 to +5V
0 to +10V
+2 to +10V
S C M 7 B
Specifications
S C M 7 B
See Ordering Information
40mW
Continuous Short to Ground
± 16V, ± 14mA
1500Vrms
ANSI/IEEE C37.90.1
105dB
± 0.03%
± 0.1%
± 0.01%
± 0.02%
.
Span typical,
Span max
Span typical,
Span max
ppm
N/A(5)
Span
5mV
RTI(6)
100Hz
dB per Decade above
5ms
H
18 to 30VDC
56mA
± 0.0002%/ %V S
2.13” x 1.705” x 0.605” max
(54.1mm x 43.3mm x 15.4mm max)
to
to
0 to 95% Noncondensing
ISM, Group 1
Class A
ISM, Group 1
Performance A ± 0.5% Span Error
Performance B
NOTES:
❇
ontact factory or your local Dataforth sales office for maximum values.
will be supplied to the loop for an open loop condition. Approximately
to
will be
supplied for a corresponding 4mA to 20mA input. Loop voltage is independent of supply voltage.
Output Range and Supply urrent specifications are based on minimum output load resistance.
inimum output load resistance is calculated by OUT2/PE, where PE is the Output ffective Available
Power that guarantees output range, accuracy, and linearity specifications.
Accuracy includes the effects of repeatability, hysteresis, and linearity.
Linearity is calculated using the best fit straight line method.
Input offset term included in output offset specification.
(6) RTI = Referenced to Input.
Visit our website www.dataforth.com
©1995-2017 Dataforth Corporation, All Rights Reserved
7 7
ISO9001:2008-Registered QMS
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