Place of Origin: | GERMANY |
Brand Name: | HAROWE |
Certification: | CE |
Model Number: | 15BRCX-602-B27/10 |
Minimum Order Quantity: | 1pcs |
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Packaging Details: | carton |
Delivery Time: | in stock |
Payment Terms: | T/T, Western Union, MoneyGram |
Supply Ability: | 100pcs/week |
HAROWE: | HAROWE | 15BRCX-602-B27/10: | 15BRCX-602-B27/10 |
---|---|---|---|
Material: | Iron | Color: | Black |
Temperature: | 20-90 | Dimension: | 90mm |
Wire: | Wire |
If you have set the "Dynamic reference temperature" value for the "Reference junction" parameter, the module expects a new data record at least every 5 minutes. If the module |
|
does not receive a new data record within this time, it generates the "Reference channel error" diagnostics message. |
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Assignment of data record and channel The following assignment applies if no submodules (1 x 8-channel) are configured for the |
module:
● Data record 192 for channel 0
● Data record 193 for channel 1
● Data record 194 for channel 2
● Data record 195 for channel 3
● Data record 196 for channel 4
● Data record 197 for channel 5
● Data record 198 for channel 6
● Data record 199 for channel 7
If eight submodules (8 x 1-channel) are configured for the module, each submodule has only
one channel. The parameters of the channel are in data record 192.
Background: Each submodule you address for the data record transfer has only one
channeThe following figure shows an example of the structure of data record 192 for channel 0. The
structure for data records 193 to 199 is identical. You can enter the selectable values at byte 1 of the data record for the corresponding
channel. The selectable values must lie within the permitted value range, see following table.
The resolution is a tenth of a degree.
Table B- 14 Valid values for temperature compensation via data record
Temperature unit Decimal Hexadecimal
Celsius (default) -1450 to 1550 FA56H to 60EH
Fahrenheit (default) -2290 to 3110 F70EH to C26H
Kelvin (default) 1282 to 3276 502H to CCCH
Celsius (climatic) -14500 to 15500 C75CH to 3C8CH
Fahrenheit (climatic) -22900 to 31100 A68CH to 797CH
Kelvin (climatic) 12820 to 32760 3214H to 7FF8H
Additional information
For more information on compensation of the reference junction temperature via data record
refer to the Analog value processingThis chapter shows the analog values for all measuring ranges supported by the AI
8xU/I/RTD/TC ST analog module.
Measured value resolution
Each analog value is written left aligned to the tags. The bits marked with "x" are set to "0".
Note
This resolution does not apply to temperature values. The digitalized temperature values are
the result of a conversion in the analog module.
Table C- 1 Resolution of the analog valuesThe following tables set out the digitalized representation
of the input ranges by bipolar and
unipolar range. The resolution is 16 bits.The following tables list the decimal and hexadecimal values (codes) of the possible voltage
measuring ranges.
Table C- 4 Voltage measuring ranges ±10 V, ±5 V, ±2.5 V, ±1 V, The following tables list the decimal and hexadecimal values (codes) of the possible current
measuring ranges.
Table C- 7 Current measuring range ±20 mAThe following tables list the decimal and hexadecimal values (codes) of the possible
resistance-based sensor ranges.
Table C- 9 Resistance-based sensors of 150 ?, 300 ?, 600 ?, and 6000 ?
Values Resistive transmitter range
dec hex 150 ? 300 ? 600 ? 6000 The following tables list the decimal and hexadecimal values (codes) of the supported
resistance thermometers.
Table C- 10 Thermal resistors Pt 100, Pt 200, Pt 500 and Pt 1000 Standard
Pt x00
Standard
in °C
(1 digit =
0.1°C)
Values Pt x00
Standard
in °F
(1 digit =
0.1 °F)
Values Pt x00 Functions that relate in general to the systems are described in these system manuals.
The information provided in this manual and in the system/function manuals supports you in
commissioning the systemsCompared to the previous version, this manual contains the following changes:
● Updated technical specifications "common mode interference"The term "CPU" is used in this