SEM215 STATUS, SEM215 Datasheet - Page 2

TRANSMITTER, DIN RAIL SMART

SEM215

Manufacturer Part Number
SEM215
Description
TRANSMITTER, DIN RAIL SMART
Manufacturer
STATUS
Datasheet

Specifications of SEM215

Input Type
PT100
Output Type
4-20mA
Output Accuracy
± 0.01%
Supply Voltage
35V
No. Of Input Channels
1
Mounting Type
DIN
No. Of Channels
1
Rohs Compliant
NA
N, Mv
-10 TO 75mV
Accuracy
-0000
Lead Free Status / RoHS Status
na
D I N R A I L S M A RT U N I V E R S A L T E M P E R AT U R E T R A N S M I T T E R
INPUT SENSORS AND RANGES
RTD (Pt100)
Sensor Range
Minimum Span*¹
Linearisation
Basic Measurement Accuracy
Thermal Drift
Excitation Current
Maximum Lead Resistance
Lead Resistance Effect
THERMOCOUPLE
Basic Measurement Accuracy*²
Linearisation
Cold Junction Error
Cold Junction Tracking
Cold Junction Range
Thermal Drift
Input
Range
Characterisation
Minimum Span*¹
Basic Measurement Accuracy*²
Input Impedance
Thermal Drift
SLIDEWIRE
Input
Resistance Range
Characterisation
Minimum Span*¹
Basic Measurement Accuracy*²
Temperature Drift
OUTPUT
Output Range
Max Output
Protection
Accuracy
Voltage Effect
Thermal Drift
Max. Output Load*
SPECIFICATION @ 20 °C @ 24 VDC
TYPE
TC Type K
TC Type J
TC Type T
TC Type R
TC Type S
TC Type E
TC Type F (L)
TC Type N
TC Type
Standard
Zero
Span
Zero
Span
6
Zero
Span
MEASURING RANGE*
-200 to 1370
-200 to 1200
-210 to 400
-10 to 1760
-10 to 1760
-200 to 1000
-100 to 600
-180 to 1300
±9999
0.01 %/°C millivolts
2 or 3 wire
(-200 to 850) °C [18 to 390 Ω]
25 °C
BS EN60751/DIN 43760/
JISC 1604/ Custom [X]*³
± 0.01 % FRI*³ ± 0.05 % rdg
0.008 °C/°C
0.01 %/°C
(300 to 550) µA
50 Ω/leg
0.002°C/Ω
± 0.04 % FRI*
or 0.5 °C (whichever is greater)
IEC 584-1/BS 4937
± 0.5 °C
0.05 °C/°C
(-40 to 70) °C
0.1 µV/°C
Voltage source
(-10 to 75) mV
Linear Custom [X]*³
(4th Order Polynomial)
5 mV
± 10 µV ± 0.07 % rdg
10 MΩ
0.1 µV/°C
0.01 %/°C
3 wire potentiometer
(10 to 390) Ω [End to End]
(Larger values can be
accommodated by fitting a
link between terminals 9 & 10)
Linear Custom [X]*³
(4th Order Polynomial)
5 %
0.1 %
0.01 %/°C
(4 to 20) mA
(min 3.8 to max 20.2 mA)
23 mA
Reverse connection,
over voltage 35 V
± 5 µA
0.2 µA/V
1 µA/°C
[(V supply -10)/20] KΩ
(700 Ω @ 24 V)
4
MINIMUM SPAN°C*¹
50
50
25
100
100
50
25
50
Custom[X]*³
5
±0.04 % rdg
GENERAL SPECIFICATION
Input/Output Breakdown Isolation
Update Time
Response Time (Filter OFF)
Filter Factor
Supply Voltage
Warm Up
Stability
Burn Out
APPROVALS
EMC
ENVIRONMENTAL
Ambient Operating Range
Ambient Storage Temperature
Ambient Humidity Range
ENCLOSURE
Material
Flammability
COMMUNICATIONS
PC Interface
Comms Protocol
Data Rate
Minimum Output Load
Maximum Cable Length
Configurable Parameters
CONNECTOR APPROVALS
ENVIRONMENTAL TESTS
Low Temperature
Dry Heat
Damp Heat
Damp Heat Cyclical
Salt Spray
Sulphur Dioxide
Hydrogen Sulphide
Gas Tightness
Pr.11 Wire Size
*Alternative connectors with screw terminals are available at
extra cost
*NOTES:
1.
2.
3.
4.
5.
6.
7.
Any span may be selected but full accuracy is only
guaranteed for spans greater than the minimum recommended.
Basic Measurement Accuracy includes the effects of
calibration, linearisation and repeatability.
Customer linearisation is available pre-programmed at the
factory, contact sales office for details.
Consult Thermocouple reference standards for practical
temperature ranges.
FRI = Full Range Input
Restricted to 300 ohms for in loop programming.
(-40 to 70) °C operation with Tropicalised Option.
500 VAC rms
250 ms maximum
< 1 s (to reach 63 % of
final value)
Programmable: Off, 2 s,
10 s or Adaptive
(10 to 35) VDC
120 s to full accuracy
0.1 % FRI*
Upscale or downscale
BS EN61326
(-10 to 70) °C*
(-40 to 70) °C
(10 to 90) % RH non-condensing
ABS
SEI UL94-V0
RS 232 via interface adapter
ANSI X3.28 1976
1200 baud
(100 to 300) Ω for ‘In loop’
programming
1000 m
Sensor type: Burnout: °C /°F:
Output, available as “Quick
Selector” or via PC, Hi/Lo: filter:
Tag: User offset, available
via PC programming only.
IEC 947-7-1/EN
IEC 68-2-1
IEC 512-6-9
IEC 512-6-3
IEC 68-2-30
IEC 512-6-6
IEC 68-2-46
IEC 68-2-16
IEC 512
(0.5 to 1.5) mm²
5
or 0.1°C/year
7

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