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5

 

Appendix: SP-005 Registers 

The following Appendix provides the registers and list index for the Layer N SP-005 Thermocouple and RTD Smart Probe. 

This information is intended to aid users who will be making configurations and adjustments to their Layer N SP-005 

Thermocouple and RTD Smart Probe through the Command Line Interface or other custom interfaces. 

 

Smart Probe devices share a common platform architecture that provides extensive monitoring and control capabilities thru 

a set of platform generic registers. These registers may be accessed using I2C based commands directly to the Smart Probe 

devices or thru a set of Modbus based registers when using Omega Interface devices. Refer to the 

Smart Sensor Device 

Interface

 manual for further information. 

 

When powered on or after a device reset each Smart Sensor based device will enumerate 1 or more sensor instances which 

are described by the device specific Sensor Descriptors which include configuration options, measurement type and units of 

measure for the corresponding sensor values. Additional sensor information is provided in sensor specific IPSO object 

descriptions which include extended measurement type, precision and tracking of minimum/maximum readings.  

 

Each enumerated Sensor has a Descriptor Base address location and a Sensor IPSO / Configuration structure address 

location based on the sensor mix selected. 

 

Sensor  Descriptor Base  IPSO/Configuration 

Sensor Enumeration 

0x0060 (0xf030) 

0x08a8 (0xf454) 

Thermocouple 1  Thermocouple 1 

RTD 

0x0068 (0xf034) 

0x09a8 (0xf4d4) 

DIO (SP-005-1)  Thermocouple 2  DIO (SP-005-1) 

0x0070 (0xf048) 

0x0aa8 (0xf554) 

 

DIO (SP-005-1) 

 

 

 

 

 

 

 

5.1

 

Thermocouple Descriptor 

The Thermocouple Input Interface provides interfaces to type J, K, T, E, N, R, S, B and C thermocouples. The Sensor 

Configuration and Sensor Device fields may be written to provide control of the overall function of the channel and the 

thermocouple types used. 

 

Offset

 

Name 

Value 

Description 

0x00 

Measurement Type 

0x20 

Thermocouple Temperature 

0x01 

Data Type/Format 

0x66 

Float, writeable 

0x02 

Configuration 

0x4? 

Determines Thermocouple type 

0x03 

Sensor Device 

0x?? 

Determines connection type 

0x04..0x08 

UOMR 

“°C” 

Units of measure 

 

5.1.1

 

Thermocouple Measurement Type 

The Thermocouple interface provides a measurement of temperature in 

°C. 

 

Sensor Type 

SI Derived Units 

Measurement 

0x20 

°C 

Thermocouple Temperature 

 

 

 

Содержание SP-005

Страница 1: ...1 P a g e TM User sGuide Shop online at omega com e mail info omega com For latest product manuals www omegamanual info SP 005 Thermocouple and RTD Smart Probe...

Страница 2: ...nly Customer Service 1 800 622 2378 USA Canada only Engineering Service 1 800 872 9436 USA Canada only U S A Headquarters Tel 203 359 1660 e mail info omega com Fax 203 359 7700 The information contai...

Страница 3: ...Calibrate 14 5 1 2 3 Sensor Writeable 14 5 1 2 4 Smart Sensor 14 5 1 3 Thermocouple Configuration 14 5 1 3 1 Sensor Type Range 14 5 1 3 2 Apply Scaling 14 5 1 3 3 Lock 15 5 1 3 4 Assigned 15 5 1 3 5...

Страница 4: ...Writeable 19 5 3 1 6 Smart Sensor 19 5 3 2 DIO Input Configuration 19 5 3 2 1 Lock 19 5 3 2 2 Apply Scaling 19 5 3 2 3 Assigned 19 5 3 2 4 Available 19 5 3 3 DIO Device Configuration 20 5 3 4 DIO IPSO...

Страница 5: ...vice as it contains important information relating to safety and EMC Failure to follow all the safety precautions may result in injury and or damage to your equipment The following labels identify inf...

Страница 6: ...to 2 thermocouple inputs or a single 2 3 or 4 wire RTD input The Layer N SP 005 features 2 configurable digital I O pins These can be used for a myriad of applications including driving relays physic...

Страница 7: ...to the SP 005 If you are connecting wire directly to the SP 005 view the wiring diagrams provided below Pin Name Function Pin 1 DIO 0 Discrete I O Signal 0 Pin 2 INTR Interrupt Signal Pin 3 SCL I2C Cl...

Страница 8: ...ot automatically detect your device follow these instructions to manually connect it Step 1 Click on the icon located on the top left of the SYNC interface Step 2 Proceed through the Add Device Wizard...

Страница 9: ...checking correctness of character by adding an extra bit to the character and setting the value based on all the other bits in the character StopBits The number of bits used to indicate the end of the...

Страница 10: ...be performed as described below Step 1 Ensure your thermocouple has been configured in the previous section and click Calibration beneath the input interface Step 2 Insert the probe into 0 C 32 F refe...

Страница 11: ...wn Step 2 Click the input you wish to configure and select your RTD type from the Device Range Type dropdown Step 3 Click the Wire dropdown and choose your wiring configuration 4 5 Setting Alarms Alar...

Страница 12: ...he Output Configuration Tab in SYNC and click on the icon located to the right of the available outputs Clicking the icon will open Define ON OFF Control dialog box as seen below Choose the input with...

Страница 13: ...nformation is provided in sensor specific IPSO object descriptions which include extended measurement type precision and tracking of minimum maximum readings Each enumerated Sensor has a Descriptor Ba...

Страница 14: ...s set the sensor value may be overwritten with a preset value This capability is useful in sensors such as up down counters where a preset or possibly a zero value must be written to the sensor value...

Страница 15: ...PSO object type information The Range information is Thermocouple Type dependent Offset Name Value Description 0x00 Sensor Type 3303 Temperature oC 0x02 Precision 1 Provides reading of xxx x 0x04 Sens...

Страница 16: ...The RTD interface provides a measurement of Temperature in C Sensor Type SI Derived Units Measurement 0x21 C RTD Temperature 5 2 2 RTD Input Data Type Format The SP 005 supports extended configuration...

Страница 17: ...will be used to adjust the sensor reading Result Raw Reading Gain Offset 5 2 3 3 Lock If set the user specified units of measure string 4 character maximum will be used in place of the default units...

Страница 18: ...the IPSO min max values Sensor Trigger Function 7 6 5 4 3 2 1 0 0 0 0 0 0 0 0 Reset Min Max 15 14 13 12 11 10 9 8 0 0 0 0 0 0 0 0 5 3 Digital Input Output Interface The DIO Interface provides 2 digita...

Страница 19: ...t or possibly a zero value must be written to the sensor value 5 3 1 6 Smart Sensor Refer to the Smart Sensor Device Interface documentation 5 3 2 DIO Input Configuration DIO Input Configuration 7 6 5...

Страница 20: ...PSO object type information The SP 010 DIO IPSO definition is at base address 0x08a8 Offset Name Value Description 0x00 Sensor Type 3349 Bit Mapped Digital 0x02 Precision 0 Provides reading of xxx 0x0...

Страница 21: ...he output LOW When the state of the DIO input signal is to be read the processor applies 3 0 VDC to the Input Bias signal and reads the level detected at the Input Sense If the output is inactive an e...

Страница 22: ...10 Hz PWM signal has constant 10 Hertz frequency 100 msec repetition rate with 0 100 duty cycle 2 1 Hz PWM signal has constant 1 Hertz frequency 1 second repetition rate with 0 100 duty cycle 3 0 1 H...

Страница 23: ...Compatible with OEG SYNC configuration software Layer N Cloud and Modbus Networks THERMOCOUPLE ACCURACY TABLE Type Range Accuracy J 210 C to 1200 C 0 4 C K 160 C to 1372 C 0 4 C T 190 C to 400 C 0 4 C...

Страница 24: ...A if the unit is found to be defective it will be repaired or replaced at no charge OMEGA s WARRANTY does not apply to defects resulting from any action of the purchaser including but not limited to m...

Страница 25: ...s M U Turbine Paddlewheel Systems M U Totalizers Batch Controllers pH CONDUCTIVITY M U pH Electrodes Testers Accessories M U Benchtop Laboratory Meters M U Controllers Calibrators Simulators Pumps M U...

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