Omega DPI-AL User guide

Page 1
User’s Guide
Shop on line at
www.omega.com
www.omega.com/specs/iseries
Temperature/Process
Meters with Alarm Outputs
iSeries info:
omegamanual.info
Page 2
U.S.A.:
Servicing North America:
Omega Engineering, Inc. Toll-Free: 1-800-826-6342 (USA & Canada only) Customer Service: 1-800-622-2378 (USA & Canada only) Engineering Service: 1-800-872-9436 (USA & Canada only) Tel: (203) 359-1660 Fax: (203) 359-7700 e-mail: [email protected]
For Other Locations Visit omega.com/worldwide
The information contained in this document is believed to be correct, but OMEGA accepts no liability for any errors it contains, and reserves the right to alter specifications without notice.
Page 3
TABLE OF CONTENTS
Part 1: Introduction .....................................................................................1
1.1 Description .....................................................................................2
1.2 Safety Considerations ....................................................................3
1.3 Before You Begin ...........................................................................4
Part 2: Setup ................................................................................................5
2.1 Front Panel ...................................................................................5
2.2 Disassembly ...................................................................................6
2.3 Electrical Installation ......................................................................7
2.3.1 Power Connections ............................................................7
2.3.3 Thermocouple - Input Connection ......................................8
2.3.4 Two / Three / Four Wire RTD-Hookups .............................9
2.3.5 Process Current - Wiring Hookup ....................................10
2.3.6 Process Voltage - Wiring Hookup ....................................10
2.3.7 Wiring Outputs - Wiring Hookup .......................................11
Part 3: Operation: Configuration Mode ...................................................12
3.1 Introduction .................................................................................12
Turning your device On for the First Time Buttons Functions in Configuration Mode
3.2 Menu Configuration .....................................................................13
3.2.1 ID Number ........................................................................14
3.2.2 Setpoints .........................................................................15
3.2.3 Configuration Menu ..........................................................16
3.2.4 Input Type Menu .............................................................17
3.2.5 Reading Configuration Menu ..........................................21
3.2.6 Alarm 1 Menu ..................................................................25
3.2.7 Alarm 2 Menu ...................................................................29
3.2.8 Reading Adjust Menu .......................................................30
3.2.9 Setpoint Deviation Menu/Field Calibration ......................31
3.2.10 ID Code Menu .................................................................32
3.2.11 Display Color Selection Menu ..........................................41
Part 4: Specifications......................................................................................44
Part 5: Factory Preset Values .......................................................................47
CE APPROVAL INFORMATION .....................................................................48
3.2.4.1 Input Type (Thermocouple) ................................ 18
3.2.4.2 Input Type (RTD) ............................................... 19
3.2.4.3 Input Type (Process) .......................................... 20
i
Page 4
LIST OF FIGURES:
Figure 2.1 Front Panel Display ........................................................................5
Figure 2.2 Rear Panel Input Connector Labels ..............................................6
Figure 2.4 Main Power Connections ..............................................................7
Figure 2.5 Thermocouple Wiring Hookup .......................................................8
Figure 2.6 Two/Three/Four-Wire RTD Wiring Hookup
Figure 2.7 Process Current Wiring Hookup Figure 2.8 Process Voltage Wiring Hookup
Figure 2.9 Mechanical Relay Outputs Wiring Hookup ..................................11
Figure 2.10 Excitation Output .........................................................................11
Figure 3.1 Flow Chart for ID and Setpoints . .................................................13
Figure 3.2 Flow Chart for Configuration Menu ..............................................16
Figure 3.3 Flow Chart for Input Type Menu .................................................17
Figure 3.4 Flow Chart for Reading Configuration .........................................21
Figure 3.5 Flow Chart for Alarm 1 .................................................................25
Figure 3.6 Flow Chart for Alarm 2 .................................................................29
Figure 3.7 Flow Chart for Reading Adjust .....................................................30
Figure 3.8 Flow Chart for Setpoint Deviation/Field Calibration ....................31
Figure 3.9 Flow Chart for ID Code ...............................................................32
Figure 3.10 Flow Chart for Display Color Selection ........................................41
a) RTD-1000 ohm/RTD-500 ohm ...................................................9
b) RTD-100 ohm ...........................................................................9
(Internal and External Excitation) ................................................10
a) With Sensor Excitation ............................................................10
b) Without Sensor Excitation ........................................................10
LIST OF TABLES:
Table 2.1 Front Panel Annunciators ..............................................................5
Table 2.2 Rear Panel Connector ..................................................................6
Table 2.3 Power Connections .......................................................................7
Table 2.4 TC Wire Color Chart .....................................................................8
Table 3.1 Button Function in Configuration Mode ........................................12
Table 3.2 Conversion Table .........................................................................24
Table 4.1 Input Properties .. .........................................................................46
Table 5.1 Factory Preset Values .................................................................47
ii
Page 5
NOTES, WARNINGS and CAUTIONS
Information that is especially important to note is identied by the following labels:
• NOTE
• WARNING or CAUTION
• IMPORTANT
• TIP
NOTE: Provide you with information that is important to successfully
setup and use the Programmable Digital System. CAUTION or WARNING: Tells you about the risk of
electrical shock. CAUTION, WARNING or IMPORTANT: Tells you of circumstances or
practices that can affect the instrument’s functionality and must refer to accompanying documents.
TIP: Provides you helpful hints.
PART 1 INTRODUCTION
1.1 Description
The iSeries meter with alarm outputs offer unparalleled exibility in process
measurement and alarm applications, accepting 10 different thermocouple types, 18 RTD combinations or 4 process voltage/current inputs and providing 2 relay
alarm outputs and a large multi-color, programmable display. Easily congured
options include 11 different alarm conditions.
Front panel conguration switches allow the user to select the type of input, the
alarm conditions and the resulting display color. Process inputs are fully scalable, supporting virtually all engineering units with a selectable decimal point providing
a perfect solution for pressure, ow or other process inputs.
Standard features include a built-in 24 Vdc excitation source for transmitters or other devices and a universal power supply that accepts 90 to 240 Vac. A low power option is available that supports 24 Vac or 12 to 36 Vdc.
1
OCG
Page 6
1.2 Safety Considerations
This device is marked with the international caution symbol. It is important to read this manual before installing or commissioning this device as it contains important information relating to Safety and EMC (Electromagnetic Compatibility).
This device is a panel mount device protected in accordance with 2014/35/EU, electrical safety requirements for electrical equipment for measurement, control and laboratory. Installation of this device should be done by qualified personnel. In order to ensure safe operation, the following instructions should be followed.
This device has no power-on switch. An external switch or circuit­breaker shall be included in the building installation as a disconnecting device. It shall be marked to indicate this function, and it shall be in close proximity to the equipment within easy reach of the operator. The switch or circuit-breaker shall meet the relevant requirements of IEC 947–1 and IEC 947-3 (International Electrotechnical Commission). The switch shall not be incorporated in the main supply cord.
Furthermore, to provide protection against excessive energy being drawn from the main supply in case of a fault in the equipment, an overcurrent protection device shall be installed.
• Do not exceed voltage rating on the label located on the top of the device housing.
• Always disconnect power before changing signal and power connections.
• Do not use this device on a work bench without its case for safety reasons.
• Do not operate this device in ammable or explosive atmospheres.
• Unit mounting should allow for adequate ventilation to ensure device does not exceed operating temperature rating.
• Use electrical wires with adequate size to handle mechanical strain and power requirements. Install without exposing bare wire outside the connector to minimize electrical shock hazards.
EMC Considerations
• Whenever EMC is an issue, always use shielded cables.
• Never run signal and power wires in the same conduit.
• Use signal wire connections with twisted-pair cables.
• Install Ferrite Bead(s) on signal wires close to the device if EMC problems persist.
Failure to follow all instructions and warnings may result in injury!
2
Page 7
1.3 Before you Begin
Inspecting Your Shipment:
Remove the packing slip and verify that you have received everything listed. Inspect the container and equipment for signs of damage as soon as you receive the shipment. Note any evidence of rough handling in transit. Immediately report any damage to the shipping agent. The carrier will not honor damage claims unless all shipping material is saved for inspection. After examining and removing the contents, save the packing material and carton in the event reshipment is necessary.
Customer Service:
If you need assistance, please call the nearest Customer Service Department, listed in this manual.
Manuals:
The latest Operation Manual is available from the website listed in this manual.
To Reset the Meter:
When the device is in the “MENU” Mode, push c once to direct device one step backward of the top menu item.
Push c twice to reset device, prior to resuming “Run” Mode except after “Alarms”, that will go to the “Run” Mode without resetting the device.
When using external reset switch: when the device is in the “RUN” Mode, push d twice to disable all outputs and alarms. It is now in “STANDBY” Mode.
Push d once more to resume “RUN” Mode.
Push d twice to disable the system during an EMERGENCY.
3
Page 8
PART 2 SETUP
2.1 Front Panel
Figure 2.1 Front Panel Display
Table 2.1 Front Annunciators
1 Setpoint 1/ Alarm 1 indicator
2 Setpoint 2/ Alarm 2 indicator ºC °C unit indicator ºF °F unit indicator
Changes display to Conguration Mode and advances through
a
menu items* Used in Program Mode and Peak Recall*
b
Used in Program Mode and Valley Recall*
c
Accesses submenus in Conguration Mode and stores selected
d
* See Part 3 Operation: Configuration Mode
values*
4
Page 9
2.2 Rear Panel Connections
1/32 DIN 1/16 DIN 1/8 DIN
1 2 3 4 5 6 7 8
1 2 3 4 5 6 7 8
1 2 3 4 5 6 7 8 9 10
1 2 3 4 5 6 7 8 9 10
8 7 6 5 4 3 2 1
L N -OUTPUTS- -INPUTS-L N -OUTPUTS-
Figure 2.2 Rear Panel
Figure 2.3 Rear Panel Input Connector Labels
Table 2.2 Rear Panel Connector
POWER AC/DC Power Connector: All models
INPUT Input Connector: All models TC, PR (Process), RTD
ALARM 1
OUTPUT
ALARM 2
OUTPUT
Mechanical Relay SPDT
Mechanical Relay SPDT
OPTION Excitation, not available with low power option (-DC)
5
1 2 3 4 5 6 7 8 9 10
Page 10
2.3 Electrical Installation
2.3.1 Power Connections
Caution: Do not connect power to your device until you have completed
all input and output connections. Failure to do so may result in injury!
Connect the main power connections as shown in Figure 2.4.
110 - 300 Vdc
Use Copper Conductors only (rated 75 °C min.) for Power Connections.
Figure 2.4 Main Power Connections
Table 2.3 Power Connections
FUSE Connector For 115 Vac For 230 Vac DC FUSE 1 Power* 100 mA(T) 100 mA(T) 100 mA(T) FUSE 2 Power* N/A N/A 400 mA(T)
For the low voltage power option, in order to maintain the same degree of protection as the standard high voltage input power units (90 to 240 Vac), always use a Safety Agency Approved DC or AC source with the same Overvoltage Category and pollution degree as the standard AC unit (90 to 240 Vac).
The Safety European Standard 2014/35/EU for measurement, control,
and laboratory equipment requires that fuses must be specified based on IEC127. This standard specifies for a Time-lag fuse, the letter code
“T”. The above recommended fuses are of the type IEC127-2-sheet III.
Be aware that there are signicant differences between the requirements
listed in the UL 248-14/CSA 248.14 and the IEC 127 fuse standards. As a result, no single fuse can carry all approval listings. A 1.0 Amp IEC fuse is approximately equivalent to a 1.4 Amp UL/CSA fuse. It is advised to consult the manufacturer’s data sheets for a cross-reference.
6
Page 11
2.3.2 Thermocouple
The gure below shows the wiring hookup for any thermocouple type.
For example, for Type K hookup, connect the yellow wire to the “2” terminal and the red wire to the “1(-)” terminal.
When conguring your device, select Thermocouple and Thermocouple
Type in the Input Type menu (see Part 3).
Figure 2.5 Thermocouple Wiring Hookup
Table 2.4 TC Wire Color Chart
Type Input Connector Jacket (External Insulation)
Terminal 1 (-) Terminal 2 (+) Extension Grade
J Red White Dark-Brown Black K Red Yellow Dark-Brown Yellow T Red Blue Dark-Brown Blue E Red Purple Dark-Brown Purple N Red Orange Dark-Brown Brown R Red Black - Green S Red Black - Green B Red Gray - Black
7
Page 12
2.3.3 Two/Three/Four-Wire RTD
The gures below show the input connections and input connector jumpers
(shown in bold lines) required to hookup a 2-, 3- or 4-wire RTD.
RTD (1000/500) 4-Wire
RTD (1000/500) 3-Wire
RTD (1000/500) 2-Wire
Figure 2.6 a) RTD-100 ohm and b) RTD-100 ohm Wiring Hookup
The two-wire connection is simplest method, but does not compensate for lead-wire temperature change and often requires calibration to cancel lead-wire resistance offset.
The three-wire connection works best with RTD leads closely equal in resistance. The device measures the RTD, plus upper and lower lead drop voltage and the subtracts twice the measured drop in the lower supply current lead producing excellent lead-resistance cancellation for balanced measurements.
The four-wire RTD hookup is applicable to unbalanced lead resistance and enables the device to measure and subtract the lead voltage, which produces the best lead-resistance cancellation.
When conguring your device, select RTD type and RTD value in the Input
Type menu (see Part 3).
500 ohm Wiring Hookup
If the input wires of the meter get disconnected or broken, it will display
“Input (+) Open” message except in case of 500/1000 Ω 2-wire
+OPN
RTD. In this case the display shows For safety purpose you may want to set up your alarm to be triggered when input is open. See Alarm 1 & 2 Sections 3.2.6, 3.2.7 for details.
-OPN
RTD (100) 4-Wire
RTD (100) 3-Wire
RTD (100) 2-Wire
“Input (-) Open” message.
8
Page 13
2.3.4 Process Current
The gure below shows the wiring hookup for Process Current 0 – 20 mA.
Figure 2.7 Process Current Wiring Hookup
(Internal and External Excitation)
When conguring your device, select Process Type in the Input Type Menu
(see Part 3).
2.3.5 Process Voltage
The gure below shows the wiring hookup for Process Voltage 0 – 100 mV,
0 – 1 V, 0 – 10 V.
Figure 2.8 a) Process Voltage b) Process Voltage Wiring
RL - Voltage limited resistor, which allows to convert 24 Vdc internal excitation
voltage to the appropriate process input value. For instance: if the potentiometer
value is equal to 10 kΩ, the minimum RL is 14 kΩ for 10 V process input.
When conguring your device, select Process Type in the Input Type Menu
(see Part 3).
Wiring Hookup with Hookup without Sensor Sensor Excitation Excitation
9
Page 14
2.3.6 Wiring Outputs
This device has two factory installed outputs. The SPDT Mechanical Relay Connection is shown below.
Use Copper Conductors only (rated 75 °C min.) for Power Connections.
Figure 2.9 Mechanical Relay Output Wiring Hookup
10
Page 15
PART 3
OPERATION: Conguration Mode
3.1 Introduction
The device has two different modes of operation.
The rst, Run Mode, is used to display values for the Process Variable,
and to display or clear Peak and Valley values.
The other mode, Menu Conguration Mode, is used to navigate through the menu options and congure the device.
Part 3 of this manual will explain the Menu Conguration Mode. For your device to operate properly, the user must rst “program” or congure the
menu options.
Turning your device On for the First Time
The device becomes active as soon as it is connected to a power source. It has no On or Off switch.
The device at first momentarily shows the software version number, followed by reset
, and then proceeds to the Run Mode.
RST
11
Page 16
3.1 Introduction (continued)
Table 3.1 Button Function in Conguration Mode
• To enter the Menu, the user must first press a button.
• Use this button to advance/navigate to the next menu item. The user can navigate through all the top level menus by
a
(MENU)
(UP)
(DOWN)
(ENTER)
pressing a.
• While a parameter is being modified, press a to escape without saving the parameter.
• Press the up b button to scroll through “flashing” selections. When a numerical value is displayed press this key to increase
b
c
d
value of a parameter that is currently being modified.
• Holding the b button down for approximately 3 seconds will speed up the rate at which the set point value increments.
• In the Run Mode press b causes the display to flash the PEAK value – press again to return to the Run Mode.
• Press the down c button to go back to a previous Top Level Menu item.
• Press this button twice to reset the device to the Run Mode.
• When a numerical value is flashing (except set point value) press c to scroll digits from left to right allowing the user to select the desired digit to modify.
• When a setpoint value is displayed press c to decrease value of a setpoint that is currently being modified. Holding the c button down for approximately 3 seconds will speed up the rate at which the setpoint value is decremented.
• In the Run Mode press c causes the display to flash the VALLEY value – press again to return to the Run Mode.
• Press the enter d button to access the submenus from a Top Level Menu item.
• Press d to store a submenu selection or after entering a value — the display will flash a
• To reset flashing Peak or Valley press d.
• In the Run Mode, press d twice to enable Standby Mode with flashing
Reset: Except for Alarms, modifying any settings of the menu configuration will reset the device prior to resuming Run Mode.
STBY
.
message to confirm your selection.
STRD
12
Page 17
3.2 Menu Conguration
Figure 3.1 Flow Chart for ID and Set Points Menu
13
Page 18
3.2.1 ID Number Menu
SEE ID MENU SELECTION IN CONFIGURATION SECTION FOR ENABLE/DISABLE OR CHANGE ID CODE.
If ID Code is Disabled or set as Default (0000) the menu will skip ID step to Setpoint Menu.
If ID Code is set to Full Security Level and user attempts to enter the Main Menu, they will be prompted for an ID Code.
If ID Code is set to Set Point/ID Security Level and user attempts to
enter the Conguration Menu, they will be prompted for an ID Code.
ENTERING YOUR NON-DEFAULT FULL SECURITY ID NUMBER.
Press a Press d Press b & c
Press d
ENTERING YOUR NON-DEFAULT SET POINT/ID SECURITY ID NUMBER.
Press a Press a Press a Press d Press b & c Press d
1) Display shows ID.
2) Display advances to
3) Press b to increase digit 0-9. Press c to activate next digit
(flashing). Continue to use b and c to enter your 4-digit ID code.
4) If the correct ID code is entered, the menu will advance to the Setpoint 1 Menu, otherwise an error message will be displayed and the instrument will return to the Run Mode.
To change ID Code, see ID Menu in the Conguration section.
5) Display shows
6) Display shows
7) Display shows
8) Display advances to
9) Use b and c to change your ID Code.
10) If the correct ID code is entered, the display will advance
to the will be displayed and the unit will return to the Run Mode.
To prevent unauthorized tampering with the setup parameters, the instrument provides protection by requiring the user to enter the ID Code before allowing access to subsequent menus. If the ID Code entered does not match the ID Code stored, the unit responds with an error message and access to subsequent menus will be denied.
Use numbers that are easy for you to remember. If the ID Code is forgotten or lost, call customer service with your serial number to access and reset the default to
Input Menu, otherwise the error message
INPT
____
Setpoint 1 Menu.
SP1
Setpoint 2 Menu.
SP2
ID Code Menu.
ID
____
0000
ERRo
.
ERRo
.
14
Page 19
3.2.2 Set Points Menu
SETPOINT 1:
Press a Press d Press b & c
1) Press a, if necessary until
2) Display shows previous value of “Setpoint 1”.
3) Press b and c to increase or decrease Setpoint 1
respectively.
Holding b & c buttons down for approximately 3 seconds will speed up the rate at which the Setpoint value increments or decrements.
prompt appears.
SP1
Press b & c Press d
SETPOINT 2:
Press d Press b & c
Press d 8) Display shows
4) Continue to use b and c to enter your 4-digit Setpoint 1 value.
5) Display shows advance to a to advance to
6) Display shows previous value of “Setpoint 2”.
7) Press b and c to increase or decrease Setpoint 2
respectively.
Holding b & c buttons down for approximately 3 seconds will speed up the rate at which the Setpoint value increments or decrements.
advance to a to advance to
Setpoints are used for Deviation only.
SP2
CNFG
stored message momentarily and then
STRD
only, if a change was made, otherwise press
Setpoint 2 Menu.
SP2
stored message momentarily and then
STRD
only, if a change was made, otherwise press
Configuration Menu.
CNFG
15
Page 20
3.2.3 Conguration Menu
Figure 3.2 Flow Chart for Conguration Menu
ENTER CONFIGURATION MENU:
Press a Press d Press b & c
1) Press a, if necessary until
2) Display advances to
3) Press and release a to scroll through all available menus of
Configuration section.
3.2.4 Input Type Menu
Figure 3.3 Flow Chart for Input Type Menu
INPT
prompt appears.
CNFG
Input Menu.
16
Page 21
3.2.4.1 Input Type (Thermocouple)
ENTER INPUT TYPE MENU:
Press a Press d Press d
THERMOCOUPLE SUBMENU:
Press b Press d
Press d Press b Press d
Thermocouple Types: J, K, T, E, N, DIN J, R, S, B, C Display:
1) Press a, if necessary until
2) Display advances to
3) Display flashes
Process). If the displayed input type is step 6 (
4) Scroll through the available selection to
5) Display shows
T.ç
6) Display flashes previous thermocouple type selection. i.e. (see below for types).
7) Scroll through the available thermocouple types to the selection of your choice.
8) Display shows advances to the
Use the Input Type (Thermocouple) (RTD) or (Process) and verify your Electrical Installation (see Section 2.3).
stops flashing).
T.ç
(not flashing).
INPT
T.ç, RTD
stored message momentarily and then
STRD
stored message momentarily and then
STRD
Reading Configuration Menu.
RDG
prompt appears.
CNFG
Input Menu.
or
(Thermocouple, RTD or
PROC
T.ç
, press a to skip to
(flashing).
T.ç
J K T E N DNJ R S B C
J
17
Page 22
3.2.4.2 Input Type (RTD)
ENTER INPUT TYPE MENU:
Press a Press d Press d
RTD SUBMENU:
Press b Press d
Press d Press b Press d
RTD Types: 392 385 Two, Three or Four wire Display:
RTD VALUE SUBMENU:
Press d Press b Press d
RTD Values: 100 OHM 500 OHM 1000 OHM Display:
1) Press a, if necessary until
2) Display advances to
3) Display flashes
Process). If the displayed input type is step 6 (
4) Scroll through the available selection to
5) Display shows
RTD
6) Display flashes previous RTD type selection i.e. (see below for RTD types selection).
7) Scroll through the available RTD types to the selection of your choice.
8) Display shows advances to the
392.2, 392.3, 392.4, 385.2, 385.3, 385.4
Last digit indicates: 2-, 3- or 4-wire input.
9) Display flashes previous (see below for RTD value selection).
10) Scroll through the available RTD values to the selection of your choice.
11) Display shows then advances to
100_ 500_ 1000
stops flashing).
RTD
(not flashing).
INPT
T.ç, RTD
stored message momentarily and then
STRD
stored message momentarily and then
STRD
RTD value.
RTD
stored message momentarily and
STRD
Reading Configuration Menu.
RDG
prompt appears.
CNFG
Input Menu.
or
(Thermocouple, RTD or
PROC
RTD value selection i.e.
, press a to skip to
RTD
RTD
(flashing).
392.2
100_
18
Page 23
3.2.4.3 Input Type (Process)
ENTER INPUT TYPE MENU:
Press a Press d Press d
1) Press a, if necessary until
2) Display advances to
3) Display flashes
Process). If the displayed input type is to step 6 (
PROC
INPT
,
RTD
T.ç
stops flashing).
prompt appears.
CNFG
Input Menu.
or
PROC
(Thermocouple, RTD or
, press a to skip
PROC
PROCESS SUBMENU:
Press b Press d
Press d Press b Press d
Process Types: 100 mV 1 V 10 V 0 to 20 mA Display:
For 4 to 20 mA Input select 0 to 20 mA then adjust the Input/Reading accordingly. To adjust 4 to 20 mA input, see example under INPUT/READING Submenu. The factory preset value is 4 to 20 mA.
4) Scroll through the available selection to
5) Display shows
(not flashing).
PROC
6) Display flashes previous Process type selection i.e. (see below for Process types selection).
7) Scroll through the available Process types to the selection of your choice.
8) Display shows advances to the
0-0.1 0-1.0 0-10 0-20
stored message momentarily and then
STRD
stored message momentarily and then
STRD
Reading Configuration Menu.
RDG
PROC
(flashing).
0-10
19
Page 24
3.2.5 Reading Conguration Menu
Figure 3.4 Flow Chart for Reading Conguration Menu
ENTER READING CONFIGURATION MENU:
Press a Press d Press a Press d
DECIMAL POINT SUBMENU:
Press d Press b
Press d
1) Press a, if necessary until
2) Display advances to
3) Press and release
4) Display advances to
5) Display flashes previous selection for Decimal location.
6) Scroll though the available selections and choose Decimal
location:
FFFF
Process type was selected in the Input Type Menu).
7) Display shows advances to
Decimal Point for Process Input Type is passive.
TEMP
INPT
Reading Configuration Menu.
RDG
DEC
or
(also
FFF.F
stored message momentarily and then
STRD
Temperature Unit.
prompt appears.
CNFG
Input Menu.
Decimal Point.
and
FF.FF
F.FFF
— if
PROC
20
Page 25
3.2.5 Reading Conguration Menu (continued)
TEMPERATURE UNIT SUBMENU:
Press d Press b
Press d
FILTER CONSTANT SUBMENU:
Press d Press b
Press d
8) Display flashes previous Temperature Unit selection.
9) Scroll though the available selections to the Temperature
Unit of your choice: °F or °C.
10) Display shows then advances to
11) Display flashes previous selection for Filter Constant.
12) Scroll though the available selections:
0001, 0002, 0004, 0008, 0016, 0032, 0064, 0128
13) Display shows change were made, otherwise press a to advance to the next menu.
If Process was selected in the Input Type Menu the display will advance to
Input/Reading Submenu, otherwise the display advances to
IN.RD
the The Filter Constant Submenu allows the user to specify the number of
readings stored in the Digital Averaging Filter.
A lter value of 2 is approximately equal to 1 second RC low pass time
constant.
Alarm 1 Menu.
ALR1
stored message momentarily and
STRD
Filter Constant.
FLTR
stored message momentarily only, if
STRD
21
Page 26
3.2.5 Reading Conguration Menu (continued)
Reading Conguration (If Process was selected)
INPUT/READING (SCALE AND OFFSET) SUBMENU:
Input Voltage or Current can be converted or scaled into values appropriate for the process or signal being measured. So, a reading may be displayed, for example, in units of weight or velocity instead of in amperes or volts.
The instrument determines Scale and Offset values based on two user-provided input values entered with the corresponding readings. Note that “In1” Input 1 and “In2” Input 2 are represented and entered as a product of the input voltage/current and the conversion number from the Table 3.1.
The following instructions include details for a specic scenario in which
a 4-20 mA input (in the 20 mA Process Mode) is to be represented as a measurement of 0-100 percent.
Press d Press d
Press b & c
Press d Press b & c
Press d Press d
Press b & c Press d Press b & c
Press d
14) Press d at the submenu.
15) Display shows Input 1 value with first digit flashing.
16) Use b and c buttons to enter
The
value = min. input value * conversion number.
IN1
Disregard the position of the decimal point (2000 counts may actually appear as “200.0”, “20.00”, or “2.000”). Example: 4 mA as 4(mA) x 500 = 2000.
17) Display advances to
18) Use b and c buttons to enter
This value represents engineering units. To show the 4 mA as zero percent enter
value = 0000.
RD1
Example: RD 1 value = 0000.
19) Display shows
20) Display shows Input 2 value with first digit flashing.
The Example: 20(mA) x 500 = 10000 (9999).
21) Use b and c buttons to enter
22) Display advances to
23) Use b and c buttons to enter
Example: RD 2 value = 0100.
24) Display flashes then advances to press d to advance to
value = max. input value * conversion number.
IN!2
prompt. Display shows
IN.RD
value.
IN1
Reading 1 Submenu.
RD1
in terms of some meaningful
IN1
Input 2 Submenu.
IN!2
RD!2
stored message momentarily and
STRD
only, if change were made, otherwise
ALR1
ALR1
value.
RD1
value.
IN!2
Reading 2 Submenu.
value.
RD!2
Alarm 1 Menu.
22
IN1
Input 1
Page 27
3.2.5 Reading Conguration Menu (continued)
Conversion number is a coefcient of conversion between input values
and real full display range (10000 counts). See Table 3.2 below for proper conversion number.
Table 3.2 Conversion Table
RANGE CONVERSION NUMBER
100 mV 10000 / (100 x 1) = 100
1 V 10000 / (1000 x 1) = 10
10 V 10000 / (1000 x 10) = 1
0 to 20 mA 10000 / (20 x 1) = 500
Example =
0 - 1 V = 0 - 100.0
In 1 = 0
Rd 1 = 0
Inp 2 = 9999
Rd 2 = 100.0
23
Page 28
3.2.6 Alarm 1 Menu
Figure 3.5 Flow Chart for Alarm 1 Menu
ENTER ALARM 1 MENU:
Press a Press d Press a
Press d
1) Press a, if necessary until
2) Display advances to
3) Press a, if necessary, until display advances to
Alarm 1 Menu.
4) Display advances to Alarm 1 Submenu and flashes the previous selection.
INPT
prompt appears.
CNFG
Input Menu.
Enable or
ENBL
ALR1
DSBL
Disable
24
Page 29
3.2.6 Alarm 1 Menu (continued)
ALARM 1 ENABLE/DISABLE SUBMENU:
Press b Press d
ALARM 1 ABSOLUTE/DEVIATION SUBMENU:
Press d Press d
Absolute Mode allows Alarm 1 to function independently from Setpoint 1. If the process being monitored does not change often, then “Absolute” Mode is recommended.
Deviation Mode allows changes to Setpoint 1 to be made automatically to Alarm
1. Deviation Mode is typically the ideal mode if the process temperature changes often. In Deviation Mode, set Alarm 1 a certain number of degrees or counts
away from Setpoint 1 — this relation remains xed even if Setpoint 1 is changed.
ALARM 1 LATCH/UNLATCH SUBMENU:
Press d Press d
Latched Mode: Alarm remains “latched” until reset. To reset already latched alarm, select Alarm Latch and press Max twice (i.e. Unlatch and then back to Latch) or from a Run Mode, push d twice to put the monitor in Standby Mode and then push d one more time to return to the Run Mode.
Unlatched Mode: Alarm remains latched only as long as the alarm condition is true.
5) Scroll though the available selection until use Alarm 1.
6) Display shows advances to advance to
If
Alarm 1 Disabled was selected, all submenus of Alarm 1 Menu
DSBL
will be skipped and meter advances to
7) Display flashes previous selection. Press b to Absolute or
8) Display shows advances to advance to
9) Display flashes previous selection. Press b to Latched or
10) Display shows then advances to press a to advance to
ABSo
ABSo
_DEV
LTçH
LTçH
UNLT
stored message momentarily and then
STRD
only if it was changed, otherwise press a to
Alarm 1 Absolute/Deviation Submenu.
ALR2
Deviation.
stored message momentarily and then
STRD
only if it was changed, otherwise press a to
Alarm 1 Latch/Unlatch Submenu.
Unlatched.
stored message momentarily and
STRD
only, if it was changed, otherwise
AçTV
Active Submenu.
AçTV
ENBL
Alarm 2 Menu.
displays to
ABSo
LTçH
25
Page 30
3.2.6 Alarm 1 Menu (continued)
ACTIVE SUBMENU:
Press d
Press d
Above: Alarm 1 condition triggered when the process variable is greater than the Alarm Hi Value (Low value ignored).
Below: Alarm 1 condition triggered when the process variable is less than the Alarm Low Value (Hi value ignored).
Hi/Low: Alarm 1 condition triggered when the process variable is less than the Alarm Low Value or above the Hi Value.
Band: Alarm 1 condition triggered when the process variable is above or below the “band” set around Setpoint 1. Band equals Hi Value (Low Value ignored). A “band” is set around the set point by the instrument only in the “Deviation” Mode.
The Band for the AL 1 would be following the Setpoint 1 value. The Band for the AL 2 would be following the Setpoint 2 value. The Band or the Deviation Value should be entered under:
Example: if customer requires a Deviation Value of ±10 degrees around a setpoint (using Output 2 as alarm)
Then the Band Value is to be entered under AL2 HI: 10 not 80 + 10 = 90
11) Display flashes previous selection. Press b to scroll through the available selections:
HI/Low and
HI.Lo
Deviation was selected).
12) Display shows then advances to press a to advance to On Submenu.
AL1 High (if they want Alarm 1) AL2 High (if they want Alarm 2) AL Low value is ignored in the Band mode.
Alarm 2: - Deviation Contact Closure type: Deviation -- Band AL2 High: 10 (Band they want around Setpoint 2)
Band. (Band is active if
BAND
stored message momentarily and
STRD
only if it was changed, otherwise
A.P.oN
A.P.oN
Above,
ABoV
Alarm Enable/Disable at Power
BELo
_DEV
Below,
26
Page 31
3.2.6 Alarm 1 Menu (continued)
ALARM ENABLE/DISABLE AT POWER ON:
Press d Press d
ALARM 1 LOW VALUE SUBMENU:
Press d Press b & c
Press d
ALARM 1 HI VALUE SUBMENU:
Press d Press b & c
Press d
13) Display flashes previous selection. Press b to enable or
14) Display shows then advances to press a to advance to the Submenu.
If the alarm is enabled at Power On, the alarm will be active right after reset. If the alarm is disabled at Power On, the alarm will become enabled when the process value enters the non alarm area. The alarm is not active while the process value is approaching Setpoint 1.
15) Display flashes first digit of previous value. Use b and c to enter new value.
16) Use b and c to enter Alarm 1 Low Value.
17) Display shows
then advances to press a to advance to
18) Display flashes first digit of previous value. Use b and c to enter new value.
19) Use b and c to enter Alarm 1 Hi Value.
20) Display shows
then advances to the next menu only, if it was changed, otherwise press a to advance to the next menu.
DSBL
disable.
stored message. momentarily and
STRD
only if it was changed, otherwise
ALR.L
STRD
ALR.H
STRD
ALR.H
Alarm 1 Low Value
ALR.L
storage message momentarily and
only, if it was changed, otherwise
Alarm 1 Hi Value Submenu.
stored message momentarily and
ENBL
27
Page 32
3.2.7 Alarm 2 Menu
Figure 3.6 Flow Chart for Alarm 2 Menu
ENTER ALARM 2 MENU:
Press a Press d Press a
Press d
ALARM 2 ENABLE/DISABLE SUBMENU:
Press b Press d
1) Press a, if necessary until
2) Display advances to
3) Press a ,if necessary, until display advances to
Alarm 2 Menu.
4) Display advances to Alarm 2 Submenu.
5) Display flashes previous selection. Press b until displays to use Alarm 2.
6) Display shows advances to advance to
If
DSBL
Alarm 2 Menu will be skipped and meter advances to Cold Junction (C.J.) Reading Adjust Menu.
The remaining Alarm 2 menu items are identical to Alarm 1 Menu. Modifying Alarm Settings will not reset the instrument.
ABSo
ABSo
Alarm 2 Disabled was selected, all submenus of
INPT
stored message momentarily and then
STRD
only if it was changed, otherwise press a to
Absolute/Deviation Submenu.
prompt appears.
CNFG
Input Menu.
ENBL
28
Enable or
ALR1
DSBL
ENBL
Disable
R.ADJ
Page 33
3.2.8 Reading Adjust Menu
For T emperature Reading only, not Process
Figure 3.7 Flow Chart for Reading Adjust Menu
ENTER READING ADJUST MENU:
Press a Press d Press a
READING ADJUST VALUE SUBMENU:
Press d Press b & c
Press d
Reading Offset Adjust allows the user to ne tune a minor error of the
ransducer, however some applications may require a large offset adjust. (Displayed Process Value = Measured Process Value ±R.ADJ). Reading Adjust value is adjustable between -1999 to 9999.
3.2.9 Setpoint Deviation Menu / Field Calibration
Figure 3.8 Flow Chart for Setpoint Deviation Menu / Field Calibration
ENTER SETPOINT DEVIATION MENU:
Press a Press d Press a
1) Press a, if necessary until
2) Display advances to
3) Press a ,if necessary, until display advances to
Reading Adjust Menu.
4) Display flashes first digit of previous Reading Adjust value.
5) Press b and c buttons to enter a new Reading Adjust value
(-1999 to 9999).
6) Display shows advances to
1) Press a, if necessary, until
2) Display advances to
3) Press a, if necessary, until Display advances to
Setpoint Deviation Menu.
SP.DV
INPT
stored message momentarily and then
STRD
Setpoint Deviation Menu.
INPT
prompt appears.
CNFG
Input Menu.
prompt appears.
CNFG
Input Menu.
R.ADJ
SP.DV
29
Page 34
3.2.9 Setpoint Deviation Menu / Field Calibration (continued)
ENTER READING ADJUST MENU:
Press d Press b
Press d
Setpoint Deviation menu, if “enabled”, allows changes to Setpoint 1 to be made automatically to Setpoint 2. This mode is very helpful if the Process value changes often. In Setpoint Deviation Mode, set SP2 a certain number of degrees or counts away from SP1 - this relation remains fixed when SP1 is changed. For instance: Setting SP1=200 and SP2=20 and enabling absolute value of SP2=220. Moving SP1 to 300, the absolute value of SP2 becomes 320.
THERMOCOUPLE FIELD CALIBRATION SUBMENU:
4) Display advances to Setpoint Deviation
. Disable Submenu and flashes the previous selection.
DSBL
5) Scroll through the available selections:
6) Display shows
advances to the next menu item.
CAUTION: Do not perform the following steps until you fully understand this entire section.
RTD and Process are perfectly calibrated. This section is applicable to Thermocouple (TC) calibration only.
Be sure that the TC being used to calibrate the meter is of the type selected in the TC submenu. Place the TC in an ice-bath (or other 0°C / 32°F environment). In ambient temperature conditions: connect the TC to the meter, apply power to the meter.
CAUTION: Do not proceed with TC calibration unless the above conditions have been in effect for at least one hour.
stored message momentarily and then
STRD
Enable or
ENBL
or
ENBL
means that the
SP.DV
DSBL
.
Press d Press b Press d * Press d *
7) Display shows
8) Display shows flashing
9) Display will still show flashing
10) Display shows
* If you accidently engage the ashing
re-press the last button you pressed, to avoid unintentionally mis­calibrating your meter.
.
CAL1
OUT1
.
0000
(meaning Calibration is complete)
.
0000
(CAL° alert) simply
0000
30
Page 35
3.2.10 ID Code Menu
Figure 3.6 Flow Chart for Alarm 2 Menu
ENTER ID CODE MENU:
Press a 1) Press a, if necessary, until Press d 2) Display advances to
Press a 3) Press a, if necessary, until display advances to ID ID
ENTERING OR CHANGING YOUR (NON-DEFAULT) ID CODE:
Press d 4) Display advances to Press b & c 5) Press b and c to enter your 4-digit “ID Code” number. Press d 6) Display advances to
Press d 7) Display flashes the first digit of previous entered “ID Press b & c 8) Press b and c buttons to enter your new “ID Code” Press d 9) Display shows
Code Menu.
If entered “ID Code” is incorrect display shows message momentarily and then skips to the Run Mode.
Code” number. number. then advances to the
INPT
____
CH.ID
stored message momentarily and
STRD
FULL
prompt appears.
CNFG
Input Menu.
with first under score flashing.
Change ID Code Submenu.
ERRo
Full Security Submenu.
Error
31
Page 36
ENTERING OR CHANGING YOUR (DEFAULT) ID CODE:
Enter ID menu (Repeat steps from 1 to 3). Press d 10) Display advances to
Press d 11) Display shows
If you want to change your default “ID Code” you can do it now, otherwise press a and menu will skip to
Submenu. Press b & c 12) Press b and c buttons to enter your new “ID Code” Press d 13) Display shows
FULL SECURITY LEVEL SUBMENU:
Press d 14) Display flashes Press b
Press d 16) Display shows
SETPOINT/ID SECURITY LEVEL SUBMENU:
Press d 17) Display flashes Press b
Press d 19) Display shows
number. then advances to the
15) Scroll through the available selections: “Enable” or “Disable”.
then advances to
If “Full” Security Level is “Enabled” and the user attempts to enter
the Main Menu, they will be prompted for an ID Code. The ID Code
should be correct to enter the instrument Menu item.
This Security Level can be functional only if
Disabled.
18) Scroll through the available selections: “Enable” or “Disable”.
then advances to
If “Setpoint/ID” Security Level is “Enabled” and the user attempts
to advance into the
for ID Code number. The ID Code should be correct to proceed into
the Configuration Menu, otherwise display will show an Error and
skip to the Run Mode.
If “Full” and “Setpoint/ID” Security Levels are “Disabled”, the ID
code will be “Disabled” and user will not be asked for ID Code to
enter the Menu items (“ID” Submenu will not show up in “ID/Setpoint”
Menu).
0000
STRD
FULL
ENBL
STRD
SP.ID
ENBL
STRD
COMM
Configuration Menu, he will be prompted
CNFG
32
Change ID Code Submenu.
CH.ID
message with flashing first digit.
Full Security
FULL
stored message momentarily and
Full Security Submenu.
Enable or
stored message momentarily and
Setpoint/ID Submenu.
Enable or
stored message momentarily and
Communication Submenu.
Disable.
DSBL
Security Level is
FULL
Disable.
DSBL
Page 37
3.2.12 Display Color Selection Menu
This submenu allows the user to select the color of the display.
Figure 3.11 Flow Chart for Display Color Selection Menu
ENTER DISPLAY COLOR SELECTION MENU:
Press a 1) Press a, if necessary, until Press d 2) Display advances to Press a 3) Press a, if necessary, until display advances to
Press d 4) Display advances to
NORMAL COLOR DISPLAY SUBMENU:
Press d 5) Display flashes the previous selection for “Normal Color”. Press b 6) Scroll through the available selections: Press d 7) Display shows
The menu below allows the user to change the color of display when alarm is triggered.
ALARM 1 DISPLAY COLOR SUBMENU:
Press d 8) Display flashes previous selection for “Alarm 1 Color Press b 9) Scroll through the available selections:
Press d 10) Display shows
Display Color Selection Menu.
advances to to advance to
Display”.
then advances to press a to advance to
1.CLR
INPT
N.CLR
stored message momentarily and then
STRD
only, if it was changed, otherwise press a
Alarm 1 Display Color Submenu.
1.CLR
stored message momentarily and
STRD
only, if it was changed, otherwise
2.CLR
2.CLR
prompt appears.
CNFG
Input Menu.
Normal Color Submenu.
GRN, RED
GRN, RED
Alarm 2 Display Color Submenu.
COLR
or
or
AMBR
AMBR
33
.
.
Page 38
ALARM 2 DISPLAY COLOR SUBMENU:
Press d 11) Display flashes previous selection for “Alarm 2 Color Display”. Press b 12) Scroll through the available selections: Press d 13) Display shows
Display Colors change sequences:
--------------------------------•-----------------------------•------------------------------
•u 0 AL1.L = 32 AL2.H = 212
--------------------------------•-----------------------------•------------------------------
•t 0 AL1.L = 32 AL2.H = 212 300
Display Colors change sequences:
AMBER | RED | GREEN
--------------•----------------------------------•------------------------------------------t--
•t 0 AL1.L = 100 AL2.L = 300
then momentarily shows the software version number, followed by
Reset, and then proceeds to the Run Mode.
RST
IN ORDER TO DISPLAY ONE COLOR, SET THE SAME DISPLAY
COLOR ON ALL THREE SUBMENUS ABOVE.
If user wants the display to change color every time that both Alarm
1 and Alarm 2 are triggered, the Alarm values should be set in such
a way that Alarm 1 value is always on the top of Alarm 2 value,
otherwise value of Alarm 1 will overwrite value of Alarm 2 and
Display Color would not change when Alarm 2 is triggered.
Example 1:
Alarm Setup: Absolute, Above, Alarm 2 HI Value “ALR.H” = 212,
Alarm 1 Below, LO Value “ALR.L” = 32
“Color Display” Setup: Normal Color “N.CLR” = Green, Alarm 1 Color
“1.CLR” = Amber, Alarm 2 Color “2.CLR” = Red
AMBER | GREEN | RED
AMBER | GREEN | RED
Example 2:
Alarm Setup: Absolute, Below, Alarm 2 Low Value “ALR.L” = 300,
Alarm 1 Low Value “ALR.L” = 100
Color Display Setup: “N.CLR” = Green, “1.CLR” = Amber, “2.CLR” =
Red
stored message momentarily and
STRD
GRN, RED
or
AMBR
u
t
•
.
34
Page 39
Example 3:
Setpoint 1 = 300,
Setpoint 2 = 200
Alarm 1 & 2 Setup: Deviation, Band, “ALR.H” = 10
Color Display Setup: “N.CLR” = Green, “1.CLR” = Amber, “2.CLR” =
Red
Display Colors change sequences:
AMBER | AMBER | AMBER | GREEN | AMBER
--------------•------•------•--------------------------------•-------•-------•-------------------
•u 0 190 200 210 290 300 310
Alarm 1 is designed to monitor the Process Value around the
Setpoint 1. Alarm 2 is designed to monitor the Process Value around
the Setpoint 2.
Example 4:
Setpoint 1 = 200
Setpoint 2 = 200
Alarm 1 Setup: Deviation, Band, “ALR.H” = 20
Alarm 2 Setup: Deviation, Hi/Low, “ALR.H” = 10, “ALR.L” = 5
Color Display Setup: “N.CLR” = Green, “1.CLR” = Amber, “2.CLR” =
Red
Display colors change sequences:
AMBER | RED | GREEN | GREEN | RED | AMBER
------------------•---------------•--------------•-------------•-------------•-------------------
•u 0 180 195 200 210 220
Reset: The instrument automatically resets after the last menu of the
Configuration Mode has been entered. After the instrument resets, it
advances to the Run Mode.
u
u
35
Page 40
PART 4 SPECIFICATIONS
Accuracy:
±0.5°C temp; 0.03% reading process
Resolution: 1°/0.1°; 10 µV process Temperature Stability:
1) RTD: 0.04°C/°C
2) TC @ 25°C (77°F): 0.05°C/°C
- Cold Junction Compensation
3) Process: 50 ppm/°C
NMRR: 60 dB CMRR: 120 dB A/D Conversion: Dual slope Reading Rate: 3 samples per second Digital Filter: Programmable Display:
Single 4-digit, 9-segment LED,
• 10.2 mm (0.40”) for 1/16, 1/32 DIN;
• 21 mm (0.83”) for 1/8 DIN. Red, green and amber programmable colors for process variable, setpoint and temperature units
Warm up to Rated Accuracy: 30 min.
INPUT Input Types: Thermocouple, RTD,
Analog Voltage, Analog Current
Thermocouple Type (ITS 90):
J, K, T, E, R, S, B, C, N, L (J DIN)
Thermocouple Lead Resistance:
100 ohm max
RTD Input (ITS 68):
100/500/1000 Ω Pt sensor, 2-, 3- or 4-wire; 0.00385 or 0.00392 curve
Voltage Input:
0 to 100 mV, 0 to 1 V, 0 to 10 Vdc
Input Impedance:
10 MΩ for 100 mV 1 MΩ for 1 or 10 Vdc
Current Input:
0 to 20 mA (5 ohm shunt)
Configuration: Single-ended Polarity: Unipolar Step Response: 0.7 sec for 99.9% Decimal Selection:
None, 0.1 for temperature; None, 0.1, 0.01 or 0.001 for process
Setpoint Adjustment:
-1999 to 9999 counts
Span Adjustment:
0.001 to 9999 counts
Offset Adjustment:
-1999 to +9999
ALARM 1 & 2 OUTPUTS
Programmable to display color change Relay: SPDT, 250 Vac or
30 Vdc @ 3 A (Resistive Load) Operation High/low, above/below,
band, latch/unlatch, normally open/ normally closed and process/deviation; front panel configurations
EXCITATION
24 Vdc @ 25 mA Not available with Low Power Option
36
Page 41
INSULATION Power to Input/Output
2300 Vac per 1 min. test 1500 Vac per 1 min. test (Low Voltage/Power Option)
Power to Relay Outputs
2300 Vac per 1 min. test Relay to Relay Outputs
2300 Vac per 1 min. test
GENERAL Line Voltage/Power:
90 to 240 Vac +/-10%, 50 to 400 Hz* 110 - 300 Vdc, equivalent voltage;4 W
* No CE compliance above 60 Hz
Low Voltage/Power Option:
12 to 36 Vdc; 3 W** External power source must meet
Safety Agency Approvals.
** Units can be powered safely with 24 Vac power but, no Certification for CE/UL are claimed.
External Fuse Required:
Time-Delay, UL 248-14 listed: 100 mA/250 V 400 mA/250 V Option)
Time-Lag, IEC 127-3 recognized: 100 mA/250 V 400 mA/250 V Option)
Environmental Conditions:
0 to 55°C (32 to 131°F), 90% RH non-condensing
Protection: NEMA-4x/Type 4x/IP65 front bezel: for 1/16, 1/32 DIN
NEMA-1/Type 1 front bezel: for 1/8 DIN
Approvals
see CE Approval Section
FM, UL, C-UL, and
(Low Voltage/Power
(Low Voltage/Power
Dimensions 1/8 DIN: 48 H x 96 W x 127 mm D (1.89 x 3.78 x 5”)
1/16 DIN: 48 H x 48 W x 127 mm D (1.89 x 1.89 x 5”)
1/32 DIN: 25.4 H x 48 W x 127 mm D (1.0 x 1.89 x 5”)
Panel Cutout:
1/8 DIN: 45 H x 92 mm W (1.772” x 3.622”),
1/16 DIN: 45 mm (1.772”) square 1/32 DIN: 22.5 H x 45 mm W
(0.886” x 1.772”)
Weight:
1/8 DIN Series: 295 g (0.65 lb) 1/16 DIN Series: 159 g (0.35 lb) 1/32 DIN Series: 127 g (0.28 lb)
37
Page 42
Table 4.1 Input Properties
RTD RTD
PROCESS PROCESS
Input Type Range Accuracy*
TC
Iron-Constantan
J
CHROMEGA®-ALOMEGA®
K
Copper-Constantan
T
CHROMEGA-Constantan
E
Pt/13%Rh-Pt
R
Pt/10%Rh-Pt
S
30%Rh-Pt/6%Rh-Pt
B
5%Re-W/26%Re-W
C
Nicrosil-Nisil
N
J DIN
L
Pt, 0.00385, 100 Ω, 500 Ω, 1000 Ω
Pt, 0.00392, 100 Ω, 500 Ω, 1000 Ω
Voltage Current
-210 to 760°C 0.4°C
-346 to 1400°F 0.7°F
-270 to -160°C 1.0°C
-160 to 1372°C 0.4°C
-454 to -256°F 1.8°F
-256 to 2502°F 0.7°F
-270 to -190°C 1.0°C
-190 to 400°C 0.4°C
-454 to -310°F 1.8°F
-310 to 752°F 0.7°F
-270 to -220°C 1.0°C
-220 to 1000°C 0.4°C
-454 to -364°F 1.8°F
-364 to 1832°F 0.7°F
-50 to 40°C 1.0°C 40 to 1788°C 0.5°C
-58 to 104°F 1.8°F 104 to 3250°F 0.9°F
-50 to 100°C 1.0°C 100 to 1768°C 0.5°C
-58 to 212°F 1.8°F 212 to 3214°F 0.9°F 200 to 640°C 1.0°C 640 to 1820°C 0.5°C 212 to 1184°F 1.8°F 1184 to 3308°F 0.9°F 0 to 2354°C 0.4°C 32 to 4253°F 0.7°F
-250 to -100°C 1.0°C
-100 to 1300°C 0.4°C
-418 to -148°F 1.8°F
-148 to 2372°F 0.7°F
-200 to 900°C 0.4°C
-328 to 1652°F 0.7°F 200 to 900°C 0.4°C
-328 to 1652°F 0.7°F
-200 to 850°C 0.4°C
-328 to 1562°F 0.7°F 0 to 100 mV, 0 to 1 V, 0.03% rdg 0 to 10 Vdc 0.03% rdg 0 to 20 mA, 4 to 20 mA 0.03% rdg
38
Page 43
PART 5 FACTORY PRESET VALUES
Table 5.1 Factory Preset Values
MENU ITEMS FACTORY PRESET VALUES NOTES
Set Point 1 (SP1) 000.0 Set Point 2 (SP2) 000.0
Input:
Input Type (INPT) TC, type K
Reading Configuration (RDG):
Decimal Point (DEC.P) FFF.F Temperature unit (TEMP) °F Filter value (FLTR) 0004
Alarm 1:
Alarm 1 (ALR1) Enable (ENBL) Absolute/Deviation (ABSO/DEV) Absolute (ABSO) Latch/Unlatch (LTCH/UNLT) Unlatch (UNLT) Active (ACTV) Below (BELO) Alarm 1 At Power On (A.P.ON) Enable (ENBL) Alarm 1 only Alarm 1 Low (ALR.L) 32.00 Alarm 1 High (ALR.H) 000.0
Alarm 2:
Alarm 2 (ALR2) Disable (DSBL) Absolute/Deviation (ABSO/DEV) Absolute (ABSO) Latch/Unlatch (LTCH/UNLT) Unlatch (UNLT) Active (ACTV) Above (ABOV) Alarm 2 Low (ALR.L) 000.0 Alarm 2 High (ALR.H) 212.0 Reading Adjust Value (R.ADJ) 000.0 Sepoint Deviation (SP.dV) Disabled
ID:
ID Value 0000 Full ID (FULL) Disable (DSBL) Set Point ID (ID.SP) Disable (DSBL)
Communication Parameters: (not available) Display Color (COLR):
Normal Color (N.CLR) Green (GRN) Alarm 1 Color (1.CLR) Amber (AMBR) Alarm 2 Color (2.CLR) Red (RED)
39
Page 44
PART 6 ce APPRoVALS INFoRmATIoN
This product conforms to the EMC directive 2014/30/EU.
Electrical Safety 2014/35/EU (Low Voltage Directive)
Safety requirements for electrical equipment for measurement, control and laboratory.
Double Insulation Pollution Degree 2 Dielectric withstand Test per 1 min
• Power to Input/Output: 2300Vac (3250Vdc)
• Power to Input/Output: 1500Vac (2120Vdc)
(Low Voltage dc Power Option*)
• Power to Relays Output: 2300Vac (3250Vdc)
Measurement Category I
Category I are measurements performed on circuits not directly connected to the Mains Supply (power). Maximum Line-to-Neutral working voltage is 50Vac/dc. This unit should not be used in Measurement Categories II, III, IV.
Transients Overvoltage Surge (1.2 / 50uS pulse)
• Input Power: 2500V
• Input Power: 1500V
(Low Voltage dc Power Option*)
• Ethernet: 1500V
• Input/Output Signals: 500V Note: *Units configured for external low power dc voltage, 12 to 36Vdc
Additional Information: UL File Number: E209855
Refer to the EMC and Safety installation considerations (Guidelines) of this manual for additional information.
40
Page 45
NOTES
Page 46
Page 47
OMEGA ENGINEERING, INC. warrants this unit to be free of defects in materials and workmanship for a period of one (1) year from the date of purchase. In addition to OMEGA’s standard warranty period, OMEGA Engineering will extend the warranty period for four (4) additional years if the warranty card enclosed with each instrument is returned to OMEGA.
If the unit malfunctions, it must be returned to the factory for evaluation. OMEGA’s Customer Service Department will issue an Authorized Return (AR) number immediately upon phone or written request. Upon examination by OMEGA, 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 mishandling, improper interfacing, operation outside of design limits, improper repair, or unauthorized modification. This WARRANTY is VOID if the unit shows evidence of having been tampered with or shows evidence of having been damaged as a result of excessive corrosion; or current, heat, moisture or vibration; improper specification; misapplication; misuse or other operating conditions outside of OMEGA’s control. Components which wear are not warranted, including but not limited to contact points, fuses, and triacs.
OMEGA is pleased to offer suggestions on the use of its various products. However, OMEGA neither assumes responsibility for any omissions or errors nor assumes liability for any damages that result from the use of its products in accordance with information provided by OMEGA, either verbal or written. OMEGA warrants only that the parts manufactured by it will be as specified and free of defects. OMEGA MAKES NO OTHER WARRANTIES OR REPRESENTATIONS OF ANY KIND WHATSOEVER, EXPRESS OR IMPLIED, EXCEPT THAT OF TITLE, AND ALL IMPLIED WARRANTIES INCLUDING ANY WARRANTY OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE HEREBY DISCLAIMED. LIMITATION OF LIABILITY: The remedies of purchaser set forth herein are exclusive, and the total liability of OMEGA with respect to this order, whether based on contract, warranty, negligence, indemnification, strict liability or otherwise, shall not exceed the purchase price of the component upon which liability is based. In no event shall OMEGA be liable for consequential, incidental or special damages.
CONDITIONS: Equipment sold by OMEGA is not intended to be used, nor shall it be used: (1) as a “Basic Component” under 10 CFR 21 (NRC), used in or with any nuclear installation or activity; or (2) in medical applications or used on humans. Should any Product(s) be used in or with any nuclear installation or activity, medical application, used on humans, or misused in any way, OMEGA assumes no responsibility as set forth in our basic WARRANTY/DISCLAIMER language, and, additionally, purchaser will indemnify OMEGA and hold OMEGA harmless from any liability or damage whatsoever arising out of the use of the Product(s) in such a manner.
Direct all warranty and repair requests/inquiries to the OMEGA Customer Service Department. BEFORE RETURNING ANY PRODUCT(S) TO OMEGA, PURCHASER MUST OBTAIN AN AUTHORIZED RETURN (AR) NUMBER FROM OMEGA’S CUSTOMER SERVICE DEPARTMENT (IN ORDER TO AVOID PROCESSING DELAYS). The assigned AR number should then be marked on the outside of the return package and on any correspondence.
The purchaser is responsible for shipping charges, freight, insurance and proper packaging to prevent breakage in transit.
FOR WARRANTY RETURNS, please have the following information available BEFORE contacting OMEGA:
1. Purchase Order number under which the product was PURCHASED,
2. Model and serial number of the product under warranty, and
3. Repair instructions and/or specific problems relative to the product.
OMEGA’s policy is to make running changes, not model changes, whenever an improvement is possible. This affords our customers the latest in technology and engineering.
© Copyright 2016 OMEGA ENGINEERING, INC. All rights reserved. This document may not be copied, photocopied, reproduced, translated, or reduced to any electronic medium or machine-readable form, in whole or in part, without the prior written consent of OMEGA ENGINEERING, INC.
TRADEMARK NOTICE: ®, omega.com®, PATENT NOTICE: This product is covered by one or more of the following patents: U.S. Pat. No. Des. 336,895; 5,274,577;
6,243,021 / CANADA 2052599; 2052600 / ITALY 1249456; 1250938 / FRANCE BREVET No. 91 12756 / SPAIN 2039150; 2048066 / UK PATENT No. GB2 249 837; GB2 248 954 / GERMANY DE 41 34398 C2. The “Meter Bezel Design” is a Trademark of NEWPORT Electronics, Inc. Used under License. Other US and International Patents pending or applied for.
WARRANTY/DISCLAIMER
RETURN REQUESTS/INQUIRIES
FOR NON-WARRANTY REPAIRS, current repair charges. Have the following information available BEFORE contacting OMEGA:
1. Purchase Order number to cover the COST of the repair,
2. Model and serial number of product, and
3. Repair instructions and/or specific problems relative to the product.
®
, and ® are Trademarks of OMEGA ENGINEERING, INC.
consult OMEGA for
Page 48
Where Do I Find Everything I Need for
Process Measurement and Control?
OMEGA…Of Course!
Shop on line at omega.com
TEMPERATURE
Thermocouple, RTD & Thermistor Probes, Connectors, Panels & Assemblies
R
Wire: Thermocouple, RTD & Thermistor
R
Calibrators & Ice Point References
R
Recorders, Controllers & Process Monitors
R
Infrared Pyrometers
R
PRESSURE, STRAIN AND FORCE
Transducers & Strain Gauges
R
Load Cells & Pressure Gauges
R
Displacement Transducers
R
Instrumentation & Accessories
R
FLOW/LEVEL
Rotameters, Gas Mass Flowmeters & Flow Computers
R
Air Velocity Indicators
R
Turbine/Paddlewheel Systems
R
Totalizers & Batch Controllers
R
pH/CONDUCTIVITY
pH Electrodes, Testers & Accessories
R
Benchtop/Laboratory Meters
R
Controllers, Calibrators, Simulators & Pumps
R
Industrial pH & Conductivity Equipment
R
DATA ACQUISITION
Data Acquisition & Engineering Software
R
Communications-Based Acquisition Systems
R
Plug-in Cards for Apple, IBM & Compatibles
R
Datalogging Systems
R
Recorders, Printers & Plotters
R
HEATERS
Heating Cable
R
Cartridge & Strip Heaters
R
Immersion & Band Heaters
R
Flexible Heaters
R
Laboratory Heaters
R
ENVIRONMENTAL MONITORING AND CONTROL
Metering & Control Instrumentation
R
Refractometers
R
Pumps & Tubing
R
Air, Soil & Water Monitors
R
Industrial Water & Wastewater Treatment
R
pH, Conductivity & Dissolved Oxygen Instruments
R
M5305/0816
M5305/0920
Loading...