Kimo Class 200, CTV210, CP200, TH200 User Manual

User Manual
< CTV210
CP200 >
Air velocity
Pressure
Configuration Class 200 of transmitters
TH200 >
Remote probe
< TH200
Standard probe
Temperature Humidity
w
e
N
w
e
N
1. Prerequired . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 1
1.a - Working principle . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 1
1.b - Output signal selection . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 1
1.c - Protection tip of the sensor . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 1
2. Code activation and access to functions. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 2
3. Display and keypad configuration • F100 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 3
3.a - Backlight . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 3
3.b - Display contrast control . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 3
3.c - Keypad locking. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 4
4. Configuring channels and units of measurement • F200 . . . . . . . . . . . . . . . . . . . . . . . . P 5
5. Analogue output management • F300 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 6
5.a - Output diagnostics. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 7
5.b - Analogue output settings. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 8
6. Relay / Alarm settings • F400. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 10
6.a - Activation / Deactivation of BEEP alarm. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 10
6.b - Relay security . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 10
6.c - Alarm/relay functions and LED colour codes. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 11
6.d - Channel selection for alarms/ relays. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 12
6.e - Alarm mode details. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 13
6.f - Alarm mode selection. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 15
6.g - Setpoints and time-delay setting . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 16
7. Pressure measurement configuration • F500 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 18
7.a - Pressure measurement integration (CP 200) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 18
7.b - Autozero . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 18
8. Humidity measurement configuration • F500 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 19
8.a - Offset settings in Humidity and temperature (TH 200) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 19
9. Air velocity measurement configuration • F600 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 20
9.a - Temperature compensation (CP 200) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 20
9.b - Air velocity coefficient selection (CP 200) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 21
9.c - Air velocity correction coefficient input (CP and CTV 210) . . . . . . . . . . . . . . . . . . . . . . . . . . P 22
Table of contents
Class 200 transmitter configuration via keypad
Table of contents
10. Airflow measurement configuration • F600 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 23
11. Other functions. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 26
11.a - Activation / Deactivation of the RS232 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 26
11.b - Serial number display. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 26
11.c - Purge Mode . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 27
12. Error codes . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 30
13. Functions recap. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . P 31
Class 200 transmitter configuration via keypad
1. Prerequired
Page 1
1.a - Working principle
Using keypad, you can activate (or deactivate) a channel, change the measuring range, set the set points and time­delay...
Principle: the configuration options are accessed via folders and sub-folders (similar to Windows ). Access is made via a numerical code (full details in this manual).
®
R
AL1 AL2
CODE:
0000
Visual alarm
LED
16-digit 2-line
display
Keypad
Meaning of the keys
To increment a value or a level
To decrement a value or a level
To validate an input
To cancel an input or to return to the previous step
The Class 200 can output either a voltage or a current signal.
Voltage or Current ?
With the on-off switch located on the left top of the transmitter (when open), you can choose analogue output 0-10V (voltage) or 4-20 mA (current)
Down
0-10 V
Up
4-20 mA
1.b - Output signal selection
Class 200 transmitter configuration via keypad
It's extremely unwise to remove the protection tip of our hygrometry probes as the sensitive element is very fragile even to light contacts. However, if you have to remove the protection tip, take all possible precautions and avoid any contact with the sensitive element. To remove the protection tip, unscrew it or unclip it.
1.c - Protection tip of the sensor
Protection tip to unscrew
!
Protection tip to unscrew
Sensitive element
Sensitive element
2. Code activation and access to functions
Page 2
!
This step is COMPULSORY for each configuration.
To access the transmitter functions, and for safety, you have to first enter a safety code.
• Please check that the transmitter is powered on.
• If the transmitter displays an error code, please see “Errors Code” section on page 29
Step 1
Press to get this screen
CODE:
0000
Enter the CODE “0101” with the keypad and validate with
CODE:
0101
Step 2
The code must be entered from left to right.
To increment a value or a level, press
To decrement a value or a level, press To validate a value (level) or to validate the code, press To return to the previous status or to cancel, press
The first “0” blinks, which means that this column is activated and you can enter data from the keypad.
This screen appears
Step 3
> F 100
This screen confirms that the code was correctly entered, and that you can
configure the transmitter.
If the code was wrongly entered, the transmitter initializes and returns to the
starting display.
> F 100
Configuration folder number
The transmitter includes 6 folders maximum :
• 100 • 400
• 200 • 500
• 300 • 600
Configuration folder selection
Step 4
> F 100
To select your configuration folder, press to increment 100 or press to decrement 100.
Once the folder is selected, press to validate.
L
On the top left of each page of this manual, you can find a reminder of the configuration folder where the function is available.
F400
Ex. In the folder 400, you can configure the alarms and relays. See page 10.
Class 200 transmitter configuration via keypad
Shows the ongoing
modification
Note : here, only one line
is modifiable
“F” as
“Function”
3. Display and keypad configuration
Page 3
F100
3.b - Display contrast control
1
> F 100
Step
Go into configuration mode (see page 2). The folder number which appears corresponds to the last configuration folder used.
2
> F 100
Step
Select the folder “100” and validate with .
05
3
F 102
Step
Select the sub-folder “102” and validate with . The cursor > goes to the line of available choices.
>
4
Step
With and keys, set the contrast required (from 0 to 10). Validate with .
08
F 102
>
08
5
F 102
Step
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys, you can choose another sub-folder from folder 100.
>
3.a - Backlight
With the backlight, the reading is easier with more contrast, if the ambient light is weak. You can activate or deactivate it.
1
> F 100
Step
Go into the configuration mode (see page 2). The folder number displayed corresponds to the last folder used.
2
> F 100
Step
Select the folder “100” and validate with .
01
3
F 101
Step
Select the sub-folfer “101” and validate with . The cursor > goes to the line of available choices.
>
4
Step
With and keys, select 00 to deactivate the backlit or 01 to activate. Validate with .
01
F 101
>
01
5
F 101
Step
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to select another folder.
• with and keys, you can choose another sub-folder from the folder 100
>
Class 200 transmitter configuration via keypad
Page 4
3. Display and keypad configuration
F100
3.c - Keypad locking
For safety, you can lock the keypad access. Like on a mobile phone, the keys will be disabled after having been locked.
1
> F 100
Step
Go into configuration mode (see page 2). The folder number which appears corresponds to the last folder used.
2
> F 100
Step
Select the folder “100” and validate with .
00
3
F 104
Step
Select the sub-folder “104” and validate . The cursor > goes to the different choices available.
>
4
Step
With and keys, select 01 to lock the keypad access or 00 if you do not want to lock the keypad. Validate with .
01
F 104
>
01
5
F 104
Step
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys to choose another sub-folder from the folder 100
>
!
To unlock keypad access, press and hold the key for 10 seconds.
After 10 seconds, an audible signal confirms that the keypad is unlocked.
Class 200 transmitter configuration via keypad
Page 5
4. Configuring channels and units of measurement
F200
Class200 transmitters have 2 measuring channels. You can activate 1, or 2 channels and select each unit of measurement.
1
> F 100
Step
Go into configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 200
Step
Select the folder “200” and validate with .
01
3
F 200
Step
Select sub-folder “200
>
4
Step
With and keys, select the unit of measurement (see chart below). Validate with .
04
F 200
>
04
5
F 200
Step
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys to choose another sub-folder from the folder 200.
>
Channel n°1
and validate with . The cursor > goes to choices line
Select sub-folder “201
Channel n°2
CP201 et 202 CP203 et 204 TH200 CTV210
00 Iinactive channel I I
01 Pa mbar °C m/s
02 mmH O inWg °F fpm
2
03 inWg KPa %RH °C
04 mbar PSI g/Kg (absolute humid. °F
3
05 mmHg mmHg °C (dew temp. Td) m /h
06 m/s m/s °F (dew temp. Td) L/s
07 fpm fpm °C (Humid temp. Tw) cfm
3 3 3
08 m /h m /h °F (Humid temp. Tw) m /s
09 L/s L/s KJ/Kg (Enthalpy i)
10 cfm cfm
3 3
11 m /s m /s
nactive channel nactive channel Inactive channel
ñ)
For a CP 200 transmitter (201, 202, 203 and 204),the SQR option is required in order to activate the units of air velocity and airflow (from 06 to 11)
Class 200 transmitter configuration via keypad
Page 6
5. Analogue output management
F300
5.a - Output diagnostics
With this function, you can check with a multimeter (or a regulator/display, or a PLC/BMS) if the transmitter outputs are working properly. The transmitter generates a voltage of 0 V, 5 V and 10 V or a current of 4 mA, 12 mA and 20 mA.
5.a.1 - Multimeter connection configuration
Before carrying out the output diagnostics, all connections and configurations of the transmitter must be
enabled, to avoid any damage on the transmitter and the multimeter !
1
Step
First, select a channel for the output diagnostics.
Selection of the channel
to be checked
The channel numbers are indicated on the board located below the terminal block.
Channel n°1 Channel n°2
2
Step
Example of connection
On the photo alongside, the multimeter is connected to the 0-10 V output and channel n°1.
NO .............
normally open
COM ..........
common
NC .............
normally closed
Relay 1
NO
.............
normally open
COM
..........
common
NC .............
normally closed
Relay 2
B-A
+
0-10 V
..............voltage
GND
.................ground
4-20 mA ...........current
Analogue output 1
0-10 V
..............voltage
GND
.................ground
4-20 mA ...........current
Analogue output 2
The ticked box show the power supply type of the transmitter (230 Vac shown above).
230 Vac 115 Vac
[
24 Vdc / ac
Class 200 transmitter configuration via keypad
Page 7
5.a.2 - Output diagnostics
Once the connection of the transmitter to the multimeter (or regulator or PLC/BMS is complete, (see page
6), you can carry out the analogue output diagnostics on several check points.
5. Analogue output management
1
> F 100
Step
Go into configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 300
Step
Select the folder “300” and validate with .
00
3
F 300
Step
Select sub-folder “300
>
4
Step
04
F 300
>
Channel n° 1 output
and validate with . The cursor > goes to available choices..
Sel ect su b-fo lder “30 3
Channel n° 2 output
Diagnostic output
00 0 V
01 5 V
02 10 V
03 4 mA
04 12 mA
05 20 mA
F300
!
If the deviations are too large(>0,05V or >0,05mA) between the signal issued and the value displayed on the multimeter, we recommend that you return the transmitter to
our factory.
04
5
F 300
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys to choose another sub-folder from the folder 300.
>
With and keys, select the signal that the transmitter must output (see chart below). Note : no need to validate with .
Class 200 transmitter configuration via keypad
Step
+500
F 302
Page 8
5. Analogue output management
F300
5.b - Analogue output settings
With this function, you can modify the measuring range of the transmitter, and you can equate the new limits to the analogue output (0-10V or 4-20mA).
You can enter the measuring range required on your own !
1
> F 100
Step
Go into configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 300
Step
Select the folder “300” and validate with .
3
F 301
Step
Minimum of Channel n°1
output Select sub-folder “301
>
4
Step
With and keys, select the value sign: negative or positive, validate with
. Then, enter the minimum limit value and validate with .
-00100
F 301
>
and validate with . The cursor > returns to the input line.
Minimum of Channel n°2 output
Select sub-folder “304
+500
5
F 302
Step
Maximum of Channel n°1
output
Select sub-folder “302
>
6
Etape
With and keys, select the value sign: negative or positive, validate with
.
Then, enter the maximum limit value and validate with .
+00500
>
and validate with . The cursor > goes to the input line.
Maximum of Channel n°2
output
Select sub-folder “305
-100
!
You must enter the values according to the units of measurement selected, not according to the measuring range of the transmitter.
Ex. on a CP 201 pressure transmitter (0 to ±1000 Pa) with a reading in mmH2O, the minimum and maximum ranges must be configured on measuring range of 0 to ±102 mmH2O. See conversion chart on following page.
7
Step
The cursor > goes to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys you can choose another sub-folder from the folder
300.
>
After an analogue output setting, if the unit of measurement is modified (see page 5), you have to reconfigure the outputs according to the new unit of measurement.
!
We recommend that the interval between the minimum and maximum is > 5% of the measuring range.
F 302
Step
Class 200 transmitter configuration via keypad
Pressure
Page 9
5.b.1 - Units of measurement conversion chart
5. Analogue output management
F300
Pa mmH2O inWg mbar mmHg KPa PSI
CP201 0 to ±1000 0 to ±102,0 0 to ± 4,015 0 to ±10,00 0 to ±7,50 - -
CP202 0 to ±10000 0 to ±1020,0 0 to ±40,15 0 to ±100,00 0 to ±75,00 - -
CP 203 - - 0 to ±200,0 0 to ±500 0 to ±375 0 to ±50,0 0 to ±7,50
CP 204 - - 0 to ±800,0 0 to ±2000 0 to ±1500 0 to ±200,0 0 to ±30,00
°C °F
TH200 - St.steel probe -40,0 to +180,0 -40,0 to +356,0
TH 200 - PC probe -20,0 to +80,0 -4,0 to +176,0
CTV 210 0,0 to +50,0 +32,0 to +122,0
Temperature
m/s fpm
CTV210 0,0 to 30,0 0 to 5905
Air velocity (CTV 210)
Class 200 transmitter configuration via keypad
Page 10
6. Alarm / relay settings
F400
6.a - Activation / Deactivation of BEEP alarm
1
> F 100
Step
Entrer en mode configuration (cf. page 2). Le numéro de dossier affiché correspond au dernier dossier de configuration utilisé.
2
> F 400
Step
Select the folder “400” and validate with .
01
3
F 400
Step
Select sub-folder “400” and validate with . The cursor > goes to available choices.
>
4
Step
With and keys, select 01 to activate the BEEP alarm or 00 to deactivate. Validate with .
01
F 400
>
01
5
F 400
Step
The cursor > goes to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys you can choose another sub-folder from the folder 400.
>
6.b - Relay security
1
> F 100
Step
Enter in configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 400
Step
Select folder “400” and validate with .
01
3
F 401
Step
Select sub-folder “401” and validate with . The cursor > goes to available choices. Le curseur > descend sur la ligne des choix possibles.
>
4
Step
With and keys, select 01 for a positive security or 00 for a negative security. Validate with .
01
F 401
>
01
5
F 401
Step
The cursor > returns to sub-folders line.
• press twice on to return to reading mode.
• press once on to return to another folder selection.
• with and keys, you can choose another sub-folder from the folder 400.
>
The relay outputs are by default, in negative security: the relay is energized when a set point is reached. With the keypad, you can swap the relays in positive security : then, the relay is de-energized when a set point is reached or during a power outage.
The beep alarm (audible alarm) is activated when a set point is reached. For more details on the setpoint settings, see page 16.
Class 200 transmitter configuration via keypad
Page 11
6. Alarm / relay settings
F400
6.c - Alarm / relay functions and LED colour codes
6.c.1 - Visual / audible alarms
Class 200 transmitters have 2 visual / audible alarms located in front of the transmitter, allowing to know the
condition of the setpoints.
Alarm n°2Alarm n°1
Green The alarm function is activated and
the set point is not reached
Red The alarm function is activated and
the setpoint is reached
None The alarm function is not activated
Alarm LED colour codes
The red LED appears when the setpoint is reached, taking into account the time-delay and the action type (falling or rising). See page 13 for more details.
6.c.2 - Les relais
Class 200 transmitters have 2 relays visible on the transmitter board. These 2 relays each have one LED to
allow real-time checking.
Audible alarm
Once the alarm is activated, an alarm sounds whilst the setpoint is reached.
Red The relay is energized
None The relay is not energized
or has not been configured
Relay LED colour codes
The relay is energized when the setpoint is reached, taking into account the time-delay, the action type and also the alarms security mode. Set points, time-delay and action type setting: see page
16 Alarm security settings : see page 10
Relay n°2 LED
Relay n°1 LED
Relay n°2
Relay n°1
The BEEP alarm function must be activated to use the audible alarm. See page 10.
Class 200 transmitter configuration via keypad
6.d - Selection of the channel for visual and relays alarms
6. Alarm / relay settings
F400
Page 12
Class 200 transmitters have 4 alarms: 2 visual (LED) and audible alarms and 2 relay alarms. The transmitter can be
configured with 4 different alarms setups.
1
> F 100
Step
Go into configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 400
Step
Select the folder “400” and validate with .
01
3
F 402
Step
>
4
Step
With and keys, select the channel number for which you want to configure an alarm. Validate with .
01
F 402
>
01
5
F 402
Step
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys, you can choose another sub-folder from the folder 400 (i.e. for example to configure another alarm / relay)
>
“402” “407” “412” “417”
Alarm 1 Alarm 2 Relay 1 Relay 2
Select sub-folder
and validate with .
!
Before any alarm setup, check that the corresponding channel(s) is activated.
(Led 1) (Led 2)
Class 200 transmitter configuration via keypad
6.e - Alarm mode details
6. Alarm / relay settings
F400
Page 13
6.e.1 - Definitions
Seuil
The setpoint is a limit which, on being reached and/or exceeded , activates an alarm or energizes a relay (in negative
security, see page 10 for more details).
Time-delay
Once the setpoint is reached and/or exceeded, the time-delay postpones the alarm activation (or relay excitation) for a short period (in seconds). Once this period is elapsed, and if the setpoint is still exceeded, then the alarm is activated or the relay is energized (in negative security).
Action type
For alarm activation or relay excitation, you can choose the action type: rising or falling action.
• Rising action: the alarm is activated once the measurement goes over the setpoint
• Falling action: the alarm is activated once the measurement goes below the setpoint
6.e.2 - Available configurations
Setpoinl 1
Setpoint 2
Time
Measurement
Energized
Not energized
Relay status
Negative security
Energized
Not energized
Relay status
Positive security
<T> <T> <T>
<T>
Alarm set
Time-delay
Setpoint 1 > Setpoint 2
Setpoint 2
Setpoint 1
Time
Measurement
Energized
Not energized
Relay status
Negative security
Energized
Not energized
Relay status
Positivee security
<T> <T> <T>
<T>
Alarm set
Time-delay
Setpoint 2 > Setpoint 1
Con t rol mode (or regulation mode)
=>you can regulate the measurement within a range determined by 2 setpoints.
Class 200 transmitter configuration via keypad
Configuration N°1 : 2 setpoints and time-delay activated (Control Mode)
6. Alarm / relay settings
F400
Page 14
Configuration N°2 : 1 setpoint, time-delay and rising action activated
Setpoint 1
Time
Measurement
Energized
Not energized
Relay status
Negative security
Energized
Not energized
Relay status
Positive security
<T> <T> <T>
<T>
Alarm set
Time-delay
Configuration N°3 : 1 setpoint, time-delay and falling action activated
Setpoint 1
Time
Measurement
Energized
Not energized
Relay status
Negative security
Energized
Not energized
Relay status
Positive security
<T> <T> <T>
<T>
Alarm set
Time-delay
Class 200 transmitter configuration via keypad
6.f - Alarm mode selection
6. Alarm / relay settings
F400
Page 15
1
> F 100
Step
Go into configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 400
Step
Select the folder “400” and validate with .
02
3
F 403
Step
>
4
Step
With and keys, select the code relative to the alarm mode (see chart below). Validate with .
02
F 403
>
02
5
F 403
Step
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys, you can choose another sub-folder from the folder
400.
>
Alarm 1 Alarm 2 Relay 1 Relay 2
Mode “403” “408” “413” “418”
Select sub-folder
and validate with .
Code Alarm mode Drawing
00 No alarm
01 N° 1 page 13
02 1 setpoint with time-delay and rising action N° 2 page 14
03 1 setpoint with time-delay and falling action N° 3 page 14
2 setpoints with time-delay (control mode)
Class 200 transmitter configuration via keypad
6.g - Setpoints and time-delay setting
6. Alarm / relay settings
F400
Page 16
1
> F 100
Step
Go into configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 400
Step
Select the folder “400” and validate with .
02
3
F 404
Step
>
4
Step
With and keys, select the value sign: negative or positive. Validate with
.
Then, enter the setpoint value and validate with .
-00100
F 404
>
-100
5
F 404
Step
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys, you can choose another sub-folder from the folder
400.
>
Alarm 1 Alarm 2 Relay 1 Relay 2
Setpoint 2 “405” “410” “415” “420”
Setpoint 1 “404” “409” “414” “419”
Select sub-folder
and validate with .
6.g.1 - Setpoints
!
You must enter values according to the units of measurement selected, not according to the measuring range of the transmitter.
Ex. on a CP 201 pressure transmitter (0 to ±1000 Pa) with a reading in mmH2O, the minimum and maximum ranges must be configured on measuring range of 0 to ±102 mmH2O. See conversion chart on page 9.
If after having set up a setpoint, the unit of measurement is modified (see page 5), then you have to reconfigure the setpoints according to this new unit of measurement.
To configure the setpoint 2 (alarm in control mode, see p13),
select sub-folder
Class 200 transmitter configuration via keypad
6. Alarm / relay settings
F400
Page 17
1
> F 100
Step
Go into configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 400
Step
Select the folder “400” and validate with .
02
3
F 406
Step
>
4
Step
With and keys, set the required time-delay: from 00 to 60 seconds. If you do not need the time-delay, enter 00.
Validate with .
15
F 406
>
15
5
F 406
Step
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys , you can choose another sub-folder from the folder 400.
>
Alarm 1 Alarm 2 Relay 1 Relay 2
Tempo “406” “411” “416” “421"
Select sub-folder
and validate with .
6.g.2 - Time-delay
Class 200 transmitter configuration via keypad
7. Pressure measurement configuration
F500
Page 18
7.a - Pressure measurement integration
The pressure measurement element is very sensitive and reacts to pressure changes. When making measurements in unstable air movement conditions, the pressure measurement may fluctuate. The integration coefficient (from 0 to 9) makes an average of the measurements ; this helps to avoid any excessive variations and guarantees a stable measurement.
+/- (
Example : CP201 (0-1000 Pa) - First measurement: 120 Pa - New measurement : 125 Pa
The pressure source is stable, the user applied a low integration. Integration : 1, maximum variation allowed +/-10 Pa. Since the variation is less than 10 Pa, we apply the integration calculation formula. Next measurement displayed ((9 * 125) + (1 *120 ))/10 = 124.5 soit 124 Pa. If the new value had been 131 Pa, the next value displayed would have been 100% of the new value, i.e 131 Pa.
This value is applicable when the variation is less than Coef. x 10 Pa)
1
> F 100
Step
Go into configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 500
Step
Select the folder “500” and validate with .
09
3
F 500
Step
>
4
Step
With and keys, you can set the integration value: from 00 to 09.
Validate with . Coefficient 0 : no integration, large variation of the measurement
displayed. Coefficient 9 : maximum integration, more stable measurement display.
09
F 500
>
5
Step
Select the sub-folder “500” and validate with . The cursor > returns to available choices.
!
Function only available on pressure transmitters:
CP 201, CP 202, CP 203 and CP 204
F 500
>
The cursor > returns to sub-folder selection
• press once to return to reading mode
• or choose another folder to access other functions.
Class 200 transmitter configuration via keypad
7.b - Autozero
Thanks to the temperature compensation of the gain (from 0 to 50°C) and to the manual auto-zero, Class 200 transmitters guarantee an excellent long-term stability, along with great measurement accuracy (in low and high ranges). The autozero compensates for any long-term drifts of the sensitive element, with the manual adjusting of the zero. To autozero, unplug the 2 pressure connections tubes, and press on the AUTOZERO key (see “connection”). If the pressure transmitter has a display screen, it’s possible to autozero by pressing the Esc button for 5 seconds.
8. Humidity measurement configuration
F500
Page 19
8.a - Offset setting in humidity and temperature
In order to compensate for any longterm drift of the transmitter, you can add an offset to the value displayed by the TH 200 with the EHK 500 reference portable instrument or via the keypad.
!
Function only available on humidity transmitters: TH 200
The EHK 500 is a reference portable instrument (optional) which enables you to adjust at one point the
humidity and temperature reading, via the RS 232 connection cable. Thanks to this new time-saving
system, no need to return the transmitter to our factory.
Your transmitter is always available on site. For more details, see technical datasheet and user manual of
EHK 500.
Class 200 transmitter configuration via keypad
8.a.1 - Offset in hygrometry
1
> F 100
Step
Go into the configuration mode (see page 2). The folder number displayed corresponds to the last folder used.
2
> F 500
Step
Select folder “500” and validate with .
10
3
F 500
Step
>
4
Step
+0010,0
F 500
>
5
F 500
Step
The cursor > returns to sub-folders line.
• press once on to return to reading mode.
• or choose another folder to access other functions.
>
With keys and , enter the offset value: from -50,0 to +50,0. Validate with .
8.a.2 - Offset in temperature
1
> F 100
Step
Go into the configuration mode (see page 2). The folder number displayed corresponds to the last folder used.
2
> F 500
Step
Select folder “500” and validate with .
3,2
3
F 501
Step
>
4
Step
+0003,2
F 501
>
5
F 500
Step
The cursor > returns to folders line.
• press once on to return to reading mode.
• or choose another folder to access other functions.
>
With keys and , enter the offset value: from -50,0 to +50,0 (in °C) or from -90 to +90 (in °F). Validate with .
Select sub-folder “500” and validate with . The cursor > goes to the line of available choices.
Select sub-folder “501” for an offset in °C or “502” for an offset in °F and validate with . The cursor > goes to the line of available choices.
If you activate the offset in temperature in °C (function 501), the value entered is automatically converted into °F (function 502) and vice versa.
9. Air velocity measurement configuration
F600
Page 20
9.a - Temperature compensation
You can modify the temperature compensation value. The air velocity and airflow measured with a differential probe (such as Pitot tube, Debimo blade,orifice plate...) depends on the working temperature. Then, it is required to enter the working temperature to get more accurate results.
!
Function available only on pressure transmitters: CP 200
1
> F 100
Step
Go into configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 600
Step
Select the folder “600” and validate with .
20
3
F 600
Step
Select the sub-folder “600” to enter a value in °C or "601" to enter a value in °F, validate with .
The cursor > returns to available choices.
>
4
Step
With and keys, enter the temperature compensation (Celsius degree shown alongside, sub-folder "600"). Validate with .
>
20
5
F 600
Step
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys, you can choose another sub-folder from the folder
600.
>
20
F 600
If you make a temperature compensation in Celsius degree (sub-folder "600"), the transmitter will automatically make the conversion into Farenheit degree (sub-folder "601") and vice versa.
Class 200 transmitter configuration via keypad
9. Air velocity measurement configuration
F600
Page 21
9.b - Air velocity coefficient selection (CP 200)
Since the air velocity is calculated from the pressure (on a CP 200) and from a differential probe, you must enter the coefficient value of the differential probe. For Pitot tubes and Debimo blades, the coefficient is already included
in the transmitter.
!
Function only available on pressure transmitters: CP 200
1
> F 100
Step
Go into configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 600
Step
Select the folder “600” and validate with .
00
3
F 603
Step
Select the sub-folder “603” and validate with . The cursor > goes to available choices.
>
4
Step
With and keys, select the differential probe type. Validate with .
>
00
5
F 603
Step
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys, you can choose another sub-folder from the folder
600.
>
00
F 603
If you use “Other differential probe” please carefully follow the instructions below.
Code Coef.
00 Pitot tube L (ISO 3966) 1
01 DEBIMO blade 0.8165
02 Other differential probe To be entered
Differential probe
1
> F 600
Step
Select the folder “600” and validate with .
0.8165
2
F 604
Step
Select the sub-folder “604” and validate with . The cursor > goes to available choices.
>
3
Step
With and keys, enter the coefficient relative to your differential probe. This coefficient is given by the manufacturer (from 0.0001 to 9.9999).
Validate with .
>
0.8165
F 604
0.8165
4
F 604
Step
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys , you can choose another sub-folder from the folder 600.
>
9.b.1 - Manual coefficient input
Class 200 transmitter configuration via keypad
9. Air velocity measurement configuration
F600
Page 22
9.c- Air velocity coefficient input
With this correction coefficient, you can adjust the transmitter according to the air velocity in your installation.
!
Function only available on transmitters: CP 200 and CTV 210
1
> F 100
Step
Go into configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 600
Step
Select the folder “600” and validate with .
00
3
F 605
Step
Select the sub-folder “605” and validate with . The cursor > goes to available choices.
>
4
Step
With and keys, enter the coefficient value calculated (from 0.200 to
2.000). Validate with .
>
1.024
5
F 605
Step
The cursor > returns to the sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with et keys, you can choose another sub-folder from the folder
600.
>
1.024
F 605
9.c.1 - How to calculate it ?
If the air velocity in your duct is equal to 17 m/s, and if the transmitter indicates 16.6 m/s, then the coefficient to apply is 17 / 16,6, ie 1.024
9.c.2 - Coefficient input
Class 200 transmitter configuration via keypad
10. Airflow measurement configuration
F600
Page 23
10.a - Selection of duct section type or airflow coefficient
!
Function only available on pressure transmitters: CP 200 and CTV 210
1
> F 100
Step
Go into configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 600
Step
Select the folder “600” and validate with .
00
3
F 606
Step
Select the sub-folder “606” and validate with . The cursor > goes to available choices.
>
4
Step
With and keys, select the section type (00 or 01). Validate with .
>
00
5
F 606
Step
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys to choose another sub-folder from the folder 600.
>
00
F 606
Code Section type
00 Rectangular
01 Circular
02 Airflow coefficient (to be entered, see p 24)
10.a.1 - Working from the section type
Section sizes input
1
> F 100
Step
Go into configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 600
Step
Select the folder “600” and validate with .
1500
3
F 607
Step
>
Length Width diameter
inch “610” “611” “612”
mm “607” “608” “609”
Select sub-folder
and validate with .
Rectangular section Circular section
Class 200 transmitter configuration via keypad
10. Airflow measurement configuration
F600
Page 24
4
Step
With and keys, enter the value (from 0 to 3000mm or 0 to 118.11 inch). Validate with .
>
1500
F 607
1500
5
F 607
Step
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys, you can choose another sub-folder from the folder 600.
>
If you enter a length, width or diameter in mm, the transmitter will automatically calculate the conversion in Inch (in sub-folder “601”) and vice versa
10.a.2 - Working from a airflow coefficient
With this coefficient, you can calculate the airflow from the pressure. This coefficient is given by the manufacturer of the devices supplied with pressure connections (+ and -). From the square root of the pressure measured (Delta P),and from this coefficient, you get the airflow.
Airflow = C x Pressure
D
1
> F 100
Step
Go into configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 600
Step
Select the folder “600” and validate with .
40.25
3
F 613
Step
Select the sub-folder “613” and validate with . The cursor > goes to available choices.
>
4
Step
With and keys, enter the airflow coefficient value (from 0.1 to 9999.9). Validate with .
>
01
5
F 614
Step
The cursor > returns to sub-folders line. Select the sub-folder “614” to select the unit of measurement in pressure for
the airflow calculation and validate with . The cursor > returns to available choices.
>
40.25
F 613
!
Function only available for the pressure transmitter: CP 200 + SQR option. In this calculation mode, you have no access to reading of air velocity. If you activate this calculation mode and also a channel in air velocity, the transmitter will display an error code “4”.
Go back to procedure page 23 / step 3:
With and keys, select 02 and validate with .
!
Class 200 transmitter configuration via keypad
10. Airflow measurement configuration
F600
Page 25
6
Step
>
01
F 614
With and keys, select the unit of measurement (see chart below). Validate with .
Cp201 and 202 CP203 and 204
01 Pa mbar
02 mmH O inWg
2
03 inWg KPa
04 mbar PSI
05 mmHg mmHg
01
7
F 614
Step
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys to choose another sub-folder from the folder 600.
>
Class 200 transmitter configuration via keypad
11. Other functions
Page 26
11.a- Activation / deactivation of the RS 232
Class 200 transmitters have a RS 232 output. With the RS 232, you can send measurements (ASCII format) to another transmitter from Class 300.
1
> F 100
Step
Go into configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 100
Step
Select the folder “100” and validate with .
01
3
F 103
Step
Select the sub-folder “103” and validate with .
>
4
Step
With and keys, select 00 to deactivate the RS 232 output or 01 to activate. Validate
with .
>
01
5
F 103
Step
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys, you can choose another sub-folder from the folder 100.
>
01
F 103
11.b- Serial number display
1
> F 100
Step
Go into configuration mode (see page 2). The folder number displayed corresponds to the last configuration folder used.
2
> F 100
Step
Select the folder “100” and validate with .
3
F 105
Step
select sub-folder “105
>
4
Step
>
The serial number of the transmitter is displayed. The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys to choose another sub-folder from the folder 100.
04.03.2004
F 105
04.03.2004
Class 200 transmitter configuration via keypad
11. Other functions
11.c- Purge mode
The purge mode enables to freeze the measurement when being displayed, enables to lock the analogue outputs, and to activate the relay 1, in order to actuate a de-dust system of an air movement conditions system and to activate the relay 2 in order to isolate the transmitter.
Page 27
Class 200 transmitter configuration via keypad
!
This function is only available on CP 200 pressure transmitters.
Here is the detailed process of purge mode : 1 - Measurement is frozen. 2 - Wait for one second. 3 - Activation of relay 2 (isolation of the transmitter) 4 - Wait for time-delay. 5 (sending compressed air
into the network to clean the installation)
6 - Purge duration
- Activation of relay 1
7 - Deactivation of relay 1 (stop sending
compressed air). 8 - Wait for time-delay. 9 - Deactivation of relay 2 10 - Wait for one second. 11 - Recovery of measurement
Frozen measurement
1 second time delay
Protection duration of
the transmitter
Time-delay of advance of triggering of t he re l ay 2 c o rr es p o nd in g :
Temporisation
Time-delay of triggering of the relay 2 corresponding : Temporisation
Purge time
Relay 1 : Command of purge electro-valve
Relay 2 : Command of isolation electro-valve
1
> F 100
Step
2
> F 300
Step
00
3
F 306
Step
>
4
Step
>
01
5
F 306
Step
>
01
F 306
1
> F 100
Step
2
> F 300
Step
01
3
F 307
Step
>
4
Step
>
25
5
F 307
Step
>
25
F 307
Go into configuration mode (see page 5). The folder number displayed corresponds to the last configuration folder used.
Select the folder “300” and validate with .
Select the sub-folder “306” and validate with .
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys, choose another sub-folder from the folder 300
With and keys, activate (01) or deactivate (00) the purge mode. Validate with .
11.c.1 -Activation / deactivation of Purge Mode
Go into configuration mode (see page 5). The folder number displayed corresponds to the last configuration folder displayed.
Select the folder “300” and validate with .
Select the sub-folder “307” and validate with .
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• press and to choose another sub-folder from the folder 300
With and keys, enter the value in seconds of the required working duration of each purge (from 01 to 60). Validate with .
11.c.2 -Working duration of purge mode
11. Other functions
Page 28
Class 200 transmitter configuration via keypad
11. Other functions
Go into configuration mode (see page 5). The folder number displayed corresponds to the last configuration folder used.
Select the folder “300” and validate with .
Select the sub-folder “308” and validate with .
The cursor > returns to sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and , choose another sub-folder from the folder 300.
With keys and , enter the value in minutes of the frequency of each purge (from 01 to 9999). Validate with .
11.c.3 -Frequency
Go into configuration mode (see page 5). corresponds to the last configuration folder used.
The folder number displayed
Select the folder “300” and validate with .
Select the sub-folder “309” and validate with .
The cursor > returns to the sub-folders line.
• press twice to return to reading mode.
• press once to return to another folder selection.
• with and keys, choose another sub-folder from the folder 300.
With and keys, enter the value in seconds of the time-delay required (from 00 to 60). Validate with .
11.c.4 - Time-delay
Time-delay corresponds to the advanced and retardation lead time of triggering of the relay 2 relative to the relay 1.
1
> F 100
Step
2
> F 300
Step
01
3
F 308
Step
>
4
Step
>
200
5
F 308
Step
>
200
F 308
1
> F 100
Step
2
> F 300
Step
00
3
F 309
Step
>
4
Step
>
30
5
F 309
Step
>
30
F 309
Page 29
Class 200 transmitter configuration via keypad
12. Error codes
Code Problem Solution
Configuration error (alarm(s) set on a non displayed/activated channel)
01
• Check status of the 4 alarms and 2 channels.Ex. : the error appears if an alarm is configured on a channel (1 or 2) which is not active. Then, you must activate the channel on which you want to configure an alarm.
Activation of a channel :see page 5
Alarm and relay configurations: see page 10
No channel activated
02
• Activate one channel (at least).
Activation of a channel: see page 5
Only on Th200 transmitter.
Humidity probe not connected.
03
• Connect the probe.
Only on the CP 200 transmitter.
A channel is configured in air velocity (see page 5) and the airflow calculation function (page 23) is set to 02 (airflow coefficient). This combination is impossible.
04
• Select a unit in airflow for the channel 1 or 2 (see channels configuration, page 5)
• Instead of airflow coefficient, select a circular or rectangular section in function 606 (see page 23)
Page 30
Class 200 transmitter configuration via keypad
13. Functions recap
Code Description
101 Backlight 0 or 1 102 Display contrast control from 0 to 10 103 Sending data via Rs232 0 or 1 104 Keypad locking 0 or 1 105 Serial number display
Available settings
F100
Code Description
200 201 Unit of channel 2
Available settings
Unit of channel 1
F200
CP201 and 202 CP203 and 204 TH200 CTV210
00 Inactive channel Inactive channel Inactive channel
01 Pa mbar °C m/s
02 mmH O inWg °F fpm
2
03 inWg KPa %RH °C
04 mbar PSI g/Kg (absolute humid. °F
3
05 mmHg mmHg °C (dew temp. Td) m /h
06 m/s m/s °F (dew temp. Td) L/s
07 fpm fpm °C (humid temp. Tw) cfm
3 3 3
08 m /h m /h °F (humid temp. Tw) m /s
09 L/s L/s KJ/Kg (Enthalpy i)
10 cfm cfm
3 3
11 m /s m /s
Inactive channel
ñ)
Code Description
300 0=>0V, 1=>5V, 2=>10V
3=>4mA, 4=>12mA, 5=>20mA
301 Analogue output minimum on channel 1 302 Analogue output maximum on channel 1
303 Analogue output setting on channel 2 0=>0V, 1=>5V, 2=>10V
3=>4mA, 4=>12mA, 5=>20mA
304 Analogue output minimum on channel 2 305 Analogue output maximum on channel 2
306 Activation / Deactivation of purge mode 00 or 01 307 Working time of each purge from 01 to 60 seconds 308 Frequency of each purge from 01 to 9999 minutes 309 Time-delay before and after purge from 00 to 60 seconds
Available settings
Analogue output setting on channel 1
F300
channel 2
c ha nn e l 1
CP 200
Page 31
Class 200 transmitter configuration via keypad
13. Functions recap
Code Description
400 Audible alarm 0 or 1 401 Relays security 0 (negatve) or 1 (positive)
402 Channel selection for alarm 1 =>channel 1, => channel 2 403 Alarm 1 type selection 0=>inactive
1=> setpoint 1, setpoint 2 and time-delay 2=> setpoint 1, time-delay and rising action 3=> setpoint 1, time-delay and falling action
404 Setpoint 1 of alarm 1 405 Setpoint 2 of alarm 1 406 Time-delay of alarm 1 from 0 to 60 seconds
407 Channel selection for alarm 2 1=>channel 1, 2=> channel 2 408 Alarm 2 type selection 0=>inactive
1=> setpoint 1, setpoint 2 and time-delay 2=> setpoint 1, time-delay and rising action 3=> setpoint 1, time-delay and falling action
409 Setpoint 1 of alarm 2 410 Setpoint 2 of alarm 2 411 Time-delay of alarm 2 from 0 to 60 seconds
412 Channel selection for Relay 1 1=>channel 1, 2=> channel 2 413 Alarm type selection for Relay 1 0=>inactive
1=> setpoint 1, setpoint 2 and time-delay 2=> setpoint 1, time-delay and rising action 3=> setpoint 1, time-delay and falling action
414 Setpoint 1 of Relay 1 415 Setpoint 2 of Relay 1 416 Time-delay of Relay 1 from 0 to 60 seconds
417 Channel selection for Relay 2 1=>channel 1, 2=> channel 2 418 Alarm type selection for Relay 1 0=>inactive
1=> setpoint 1, setpoint 2 and time-delay 2=> setpoint 1, time-delay and rising action 3=> setpoint 1, time-delay and falling action
419 Setpoint 1 of Relay 2 420 Setpoint 2 of Relay 2 421 Time-delay of Relay 2 from 0 to 60 seconds
Available settings
1 2
F400
A L A R M 1A L A R M 2R E L A Y 1R E L A Y 2
Page 32
Class 200 transmitter configuration via keypad
13. Functions recap
Code Product Description
500 CP200 from 0 to 9 500 TH200 Offset in humidity -50,0 to +50,0 501 TH200 Offset in temperature (°C) from -50,0 to +50,0 502 TH200 Offset in temperature (°F) from -90,0 to +90,0
Available settings
Measurement integration
F500
Code Description
600 ­601 Compensation temperature in °F* - 603 Air velocity measurement mean*
604 Air velocity coefficient value* from 0,0001 to 9,9999 605 Air velocity correction coefficient from 0,200 to 2,000 606 Section type selection
607 Section length in mm from 0 to 3000 mm 608 Section width in mm from 0 to 3000 mm 609 Section diameter in mm from 0 to 3000 mm
610 Section length in inch from 0 to 118.11 inch 611 Section width in inch from 0 to 118.11 inch 612 Section diameter in inch from 0 to 118,.1 inch
613 Airflow coefficient* from 0.1 to 9999.9 614 Units of pressure
for the pressure calculation*
Available settings
Compensation temperature in °C*
F600
Code Differential probe
00 Pitot tube
01 DEBIMO blade
02 Other differential probe
Code Section type
00 Rectangular
01 Circular
02 Airflow coefficient
CP201 and 202 CP203 and 204
01 Pa mbar
02 mmH O inWg
2
03 inWg KPa
04 mbar PSI
05 mmHg mmHg
Page 33
Class 200 transmitter configuration via keypad
CP 200 - CTV 210
NOTES...
Page 34
Class 200 transmitter configuration via keypad
NOTES...
Page 35
Class 200 transmitter configuration via keypad
Ref. NT - Ang - Classe 200 - 09/07/10 - RCS (24) Périgueux 349 282 095 Non-contractual document – We reserve the right to modify the characteristics of our products without prior notice.
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