|
|
|
ICP DAS M-7015 - 6 Analog Input Channel RTD Input Data Acquisition Module, communicable over Modbus RTU and RS-485 by ICP DAS
|
|
|
|
6 Analog Input Channel RTD Input Data Acquisition Module, communicable over
Modbus RTU and RS-485. Supports operating temperatures between -25 to 75°C.
|
|
|
The M-7015 device is a network data acquisition and control modules that
support Modbus RTU. They can be remotely controlled using a set of commands
called DCON protocol. With the Modbus RTU protocol, it can easily communicate
with most popular SCADA/ HMI software and PLCs.
- 6 channels of RTD module
- Communication Interface: ModBus Protocol
- Individual Channel Configurable
- Wire Opening Detection
- Input channels : 6
- Input Type: Supports 2/3 wire RTD
- Din Rail Mount
|
Analog Input |
|
Input Channels |
6 |
|
Input Type |
RTD |
|
Wire connection |
2/3 wire |
|
RTD Type |
Pt100, Pt1000, Ni120, Cu100, Cu1000 |
|
Resolution |
16-bit |
|
Sampling Rate |
12 samples/ second (Total) |
|
Accuracy |
+/-0.05% |
|
-3dB BandWidth |
5.24Hz |
|
Zero drift |
+/-20uV/°C |
|
Span drift |
+/-25ppm/°C |
|
Common Mode Rejection |
Typical 86dB |
|
Normal Mode Rejection |
100 dB |
|
Voltage Input Impedance |
>1M Ohms |
|
Open Wire Detection |
Yes |
|
Individual Channel Configurable |
Yes |
|
4KV ESD Protection |
Yes, Contact for each terminal. |
|
Intra-module Isolation, Field to Logic |
3000 VDC |
|
Interface |
|
Interface |
RS-485 |
|
Format |
N, 8, 1 |
|
Baud Rate |
1200 ~ 115200bps |
|
LED Display |
|
1 LED as Power/ Communication indicator |
|
Power |
|
Input |
+10 to +30 Vdc |
|
Power Consumption |
1.1W |
|
Protocol |
|
Support Modbus and DCON Protocol |
Yes |
|
Watchdog |
Yes, Module, Communication (Programmable over DCON) firmware version
B202 and later |
|
Environment |
|
Operating temperature |
-25 to 75°C |
|
Storage temperature |
-40 to 85°C |
|
Humidity |
5 to 95% RH, non-condensing |
|
NOTE: We recommend to chose M-7015P for
long distance RTD Line. |
RTD Type Setting (TT)
|
Type Code |
RTD Type |
Temperature Range °C |
|
20 |
Platinum 100, α=
0.00385 |
-100 ~ 100 |
|
21 |
Platinum 100, α=
0.00385 |
0 ~ 100 |
|
22 |
Platinum 100, α=
0.00385 |
0 ~ 200 |
|
23 |
Platinum 100, α=
0.00385 |
0 ~ 600 |
|
24 |
Platinum 100, α=
0.003916 |
-100 ~ 100 |
|
25 |
Platinum 100, α=
0.003916 |
0 ~ 100 |
|
26 |
Platinum 100, α=
0.003916 |
0 ~ 200 |
|
27 |
Platinum 100, α=
0.003916 |
0 ~ 600 |
|
28 |
Nickel 120 |
-80 ~ 100 |
|
29 |
Nickel 120 |
0 ~ 100 |
|
2A |
Platinum 1000, α=
0.00385 |
-200 ~ 600 |
|
2B |
Cu 100 at 0°C,α=
0.00421 |
-20 ~ 150 |
|
2C |
Cu 100 at 25°C,α=
0.00427 |
0 ~ 200 |
|
2D |
Cu 1000 at 0°C,α=
0.00421 |
-20 ~ 150 |
|
2E |
Platinum 100, α=
0.00385 |
-200 ~ 200 |
|
2F |
Platinum 100, α=
0.003916 |
-200 ~ 200 |
|
80 |
Platinum 100, α=
0.00385 |
-200 ~ 600 |
|
81 |
Platinum 100, α=
0.003916 |
-200 ~ 600 |
|
82 |
Cu 50 at 0°C |
-50 ~ 150 |
|
83 |
Nickel 100 |
-60 ~ 180 |
|
|