With pressure measurement and
analog output functions
Probe
6531-21
One of
these
Air velocity, air temperature,
humidity sensor (directivity)
6541-21
Air velocity, air temperature
sensor (directivity)
6542-21
Air velocity, air temperature
sensor (needle-type)
6533-21
Air velocity, air temperature,
humidity sensor (spherical)
6543-21
Air velocity, air temperature
sensor (spherical)
6551-21
Air velocity sensor
(mini-spherical, straight type)
6552-21
Air velocity sensor
(mini-spherical, articulating type)
6561-21
Air velocity, air temperature
sensor (directivity)
Probe Cable
6531-06
1
To connect Probe to Main Body
USB Cable
-
1
USB Communication Cable
Carrying Case
-
1
Hard case
Operation Manual
-
1
-
Manganese AA Batteries
-
6
-
Items
MODEL
Functions
Extension Rod (Flexible)
6531-04
For measurements in high places
Extension Rod (Straight)
6531-05
For measurements in high places
AC Adaptor
6113-02
Power Supply
Printer (Recommended)
DPU-S245
To print out data, calculation results, etc.
Printer Cable
6000-31
To connect the Main Body to the Printer
Mobile ANEMOMASTER
Measurement Software
6000-41
Data acquisition software
Hands-free Case
6000-61
For hands-free measurement
List of Components
■ Standard
■ Available Accessories
i
Important Safety Information
The symbols for the warnings used in this manual are defined below:
Classifications
Danger: To Prevent Serious Injury or Death
Warnings in this classification indicate a danger that may result in
serious injury or death if not observed.
Caution: To Prevent Damage to the Product
Warnings in this classification indicate a risk of damage to the
product that may void the product warranty if not observed.
Description of Symbols
△This symbol indicates a condition that requires caution (including
danger). The subject of each caution is illustrated inside the triangle
(e.g. the high temperature caution symbol is shown on the left).
This symbol indicates a prohibition. Do not take the prohibited
action shown inside or near this symbol (e.g. the disassembly
prohibition symbol is shown on the left).
●This symbol indicates a mandatory action. A specific action is given
near the symbol.
ii
Forbidden
Hot surface
Don’t touch
Explosive
Use properly
Forbidden
Set up properly
Caution
Use properly
Forbidden
Forbidden
Danger
Never bring the probe close to a flammable gas atmosphere.
The heated sensor may cause a fire or explosion.
Never touch the sensor.
The sensor is heated during operation. Touching the heated sensor
may cause burns, and may also damage the sensor itself.
Do not disassemble or heat the batteries, or put them into a
fire.
This may cause burns and the batteries may burst.
If abnormal noises, smells or smoke occur, or if liquid enters
the instrument, turn off the instrument immediately, and
remove the batteries or pull out the plug.
There is possibility of malfunction, electric shock, and/or fire. Please
contact your local distributor or our service center for repair.
Caution
Always unplug the instrument from the electrical outlet when
the instrument is not in use.
Failure to do so may cause an electrical shock, fire or circuit damage.
Do not use the instrument in a water vapor atmosphere.
Condensed steam on the sensor will change the heat dissipation rate,
resulting in inaccurate measurements. It may also cause damage to
the sensor.
This instrument is designed to be used in an environment with
a clean air stream without any dust or foreign materials.
Foreign materials may cause damage to the sensor. Also dust or
foreign materials on the sensor will impede accurate measurements.
Do not apply force to the sensor.
If the sensor is deformed, the accuracy of the sensor may be
affected.
When measuring, ensure that the direction mark is facing into
the airflow.
Otherwise, the measurement may be inaccurate, as some sensors
(uni-directional probes) have a specific directivity.
iii
Do not remodel/
disassemble
Electrified
Forbidden
Forbidden
Forbidden
Forbidden
Forbidden
Forbidden
Set up properly
Use properly
Do not use or leave the instrument in a high temperature,
high humidity or dusty environment. Do not leave this
instrument under direct sunlight for a prolonged period.
The instrument may not function properly out of the specified
operating conditions.
Do not subject the instrument or the probe to strong impacts.
Dropping the unit or placing heavy objects on it may cause damage
or malfunction to the instrument.
Never disassemble, modify or repair the product.
Failure to observe the above may cause a short circuit and/or other
failures that will affect the performance.
Do not pick up or carry the instrument by the probe cable.
It may cause a malfunction or the wire may break.
Remove the batteries from the battery compartment when
storing the instrument for a long period. Do not leave
exhausted batteries in the battery compartment. When
inserting batteries be sure to insert them with the polarity
facing the correct direction.
Failure to do so may cause battery leakage.
Do not wipe the instrument with a volatile solvent.
The body may deform or deteriorate. Use a soft dry cloth to remove
stains. If stains persist, soak the cloth in a neutral detergent and
wipe the instrument with the soft cloth. Never use volatile solvents
such as thinner or benzene.
Discharge any built-up static electricity from your body before
touching the instrument.
The built-up static electricity may influence the readings and cause
damage to the circuit.
Regularly check the head of the probe for contamination.
Impurities (such as dust) on the sensor may affect the
accuracy of the measurements.
To get rid of dust, use a blow blush for cameras to blow it off, or you
can rinse it with water and allow it to air-dry completely.
*Be sure to turn the power off before you clean it.
*Never dry the probe with heat. (Heat may cause permanent damage
to the sensor.)
iv
Use properly
Forbidden
Forbidden
Forbidden
Do not move the main unit and the probe from a cold place to
a warm place quickly. It will cause condensation.
Even when used in an environment within the specified operating
temperature and humidity, a sudden temperature change may
cause condensation. Condensation generated on the sensor may
cause inaccurate measurements. Condensation on metal parts may
cause rusting and lead to a malfunction.
Do not touch the LCD screen with a sharp-pointed object or
with excessive pressure.
It may cause distortion of the screen or a malfunction. Also a rapid
temperature change may cause a malfunction of the screen.
When storing the instrument, put the instrument in the
carrying case and keep it in a place with an ambient
temperature of -10 to 50°C and no condensation.
Do not dispose of the instrument as household waste.
Please note that the disposal of the instrument and the batteries
should be in line with your local or national legislation. For details,
please contact your local distributor.
v
Table of Contents
§ 1 Part Names and Functions ....................................................................... 7
Main Body ............................................................................................................. 7
There are 8 different types of probes available for CLIMOMASTER.
The model number and specifications depends on the type of the
probe you have. The compatibility feature of the probes allows you
to swap out probes freely without having to recalibrate the main
unit.
MODEL6542-21
MODEL6531-21/6541-21/6561-21
MODEL6543-21
MODEL6533-21
MODEL6551-21
MODEL6552-21
3
Temperature Sensor ○4Humidity Sensor
2○3
*Model6531 only
9
Probe Connector
Main Body Connector
*Unit: mm
*Unit: mm
*Unit: mm
Approx.Φ15
Approx.Φ16
Approx.230 to 870
Approx.50
Approx.130
Approx.Φ23
Cable length: Approx.2000 including the rod
Cable length: Approx.2000 including the rod
Approx.Φ15
Approx.Φ23
Approx.130
Approx.330 to 960
Approx.50
Approx.Φ16
Approx.2000
Approx.43
Approx.43
Approx. Φ15
Approx. Φ14
Probe Cable
The probe can be extended by using a probe cable between the main
unit and the probe.
Extension Rod (Optional)
Straight
Flexible
Do not use the Flexible Extension Rod in an environment with an air
velocity of 20 m/s or greater; use the Straight Extension Rod for
these higher velocities.
10 Part Names and Functions
4. Insert the batteries according to the
batteries. Failure to observe this may
cause battery leakage or damage the
3. Lift the cover away from the body.
2. Slide the cover until it stops.
5. Put the cover back on by reversing
1. Press down on the battery cover.
Ni-MH AA size batteries
Types of batteries that can be used are:
§ 2 Getting Started
Installing Batteries
Backside of the body
indicated polarity chart. This
instrument requires six (6) AA size
batteries that must be of the same
type. DO NOT mix different types of
instrument.
*Batteries CANNOT be recharged by
the AC adapter.
Manganese AA size batteries
Alkaline AA size batteries
Ni-Cd AA size batteries
the above procedure.
11
Probe Terminal to connect
1. Align the connector of the probe or
2. Line up the connector of the probe
1. Lightly lift the locking ring of the
probe/probe cable (A, as shown left).
A
2.Pull the probe/probe cable out
Probe Number
Probe No.
Connecting the Probe and the Probe Cable
This section describes how to connect the probe or the probe cable
to the main unit.
Make sure that the power is turned OFF when connecting or
disconnecting the probe or the probe cable.
the Probe/Probe Cable
Disconnecting the Probe/Probe Cable
To remove the probe, follow the procedure below:
Make sure that the power is turned OFF when connecting or
disconnecting the probe or the probe cable.
the probe cable with the probe
terminal on the body.
*When connecting the probe, make sure
the probe number faces towards the front
side of the main unit.
and the terminal of the body and
gently push until it clicks.
*DO NOT FORCE in the probe/probe cable
connector to the main body and DO NOT
ROTATE the probe/probe cable once it is
connected. Doing so may cause serious
damage to the instrument.
vertically while holding the lock ring
up.
*DO NOT rotate the connector of the
probe/probe cable when it is connected to
the main body. Doing so may cause serious
damage to the instrument.
12 Getting Started
CONNECT PROBE
AND RESTART!
NO PROBE!
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TCC1
0.87f
25.3e
64.1g
Power Switch
|: Power ON
O: Power OFF
Power ON
Connect the probe/probe
cable to the instrument
Normal Mode Screen (refer to P.18 for details)
3. Air velocity 6. Battery level indicator
*1Air temperature is available only on MODEL6531/6541/6542/6543/6533/6561.
*2Humidity is available only on MODEL6531/6533.
Batteries must
be replaced.
Blinks
-Locked Status -
will be cancelled and data will NOT be saved. To release
the lock, turn off the power and replace the batteries.
Probe is not
connected
properly
Annual Calibration
A year after
calibration
Press anykeyor
10 sec later…
When the probe is not connected
properly, the “NO PROBE!” warning will
be displayed as shown above. Turn the
power off, and check the connection of
the probe.
Normal
Flow
Last calibration
date
A year after the last calibration, a notice to
measurement mode 10 seconds later or after any
key is pressed.
The power switch to turn the power ON/OFF is located at the side of
the instrument. When you turn the power on after connecting the
probe/probe cable, a test screen with the Kanomax logo, model, and
the version of the firmware will be displayed for a few seconds
before it switches to the Normal Mode screen.
perform the annual calibration will be displayed
on the screen. The screen will switch to normal
1. Current date and time 4. Air temperature*1
2. Time constant (P.20) 5. Humidity*2
Battery Level Indicator
The screen may freeze if a high velocity is measured when the battery
level indicator is blinking.
The indicator changes as indicated below according to the remaining
battery level:
When is displayed, all functions of the
instrument will be locked. The current measurement
Check the “Battery Level Indicator” to
confirm the remaining battery level. The
battery consumption rate largely depends
on the measured air velocity. When the
batteries need to be replaced (or
recharged), the indicator will start blinking.
13
Direction Mark
Airflow
*For more
information on proper
handling of the
counterpart standards
that apply.
ASSMAN
Psychrometer, please
refer to Japanese
Industrial Standard
(JIS-Z8806 “Method
of measuring
Humidity), or its
Precautions for Measurements
Air Velocity
●MODEL6531/6541/6561: The probe has its own
directivity characteristics. Make sure that the
direction mark is facing into the airflow. If you
are not sure of the airflow direction, slowly rotate
the probe and select the point where you get the
maximum velocity reading.
●MODEL6533/6542/6543/6551/6552: This omnidirectional
probe has a horizontal, 360 degree dynamic characteristic
(Refer to “Directivity of the Probe” on P.57 for details).
●The probe relies on both an air velocity sensor and temperature
compensation sensor to accurately measure air velocity. In order
to do so, it is necessary that both sensors are evenly exposed to the
airflow under the same temperature conditions (Refer to the figures
of the probes on P.9 for the location of the sensors).
●For measurements in an environment with rapid air temperature
changes, measure for at least 20 seconds and wait for the reading to
stabilize before starting the actual measurement (i.e. the data will
not be accurate until the probe has time to acclimate to the
environment.)
Air Temperature
●The faster the wind, the shorter the response time for temperature
measurements. The normal response time is approximately 30
seconds when the air velocity is 1 m/s (90% response). Wait for the
reading to become stable before taking a measurement.
●When no airflow is present, the air temperature reading may be
higher than the actual temperature due to the heat generated by the
air velocity sensor. It is recommended that you SLOWLY wave the
probe to create an environment with approx. 0.1m/s airflow to
obtain accurate temperature readings.
Humidity
●Humidity readings in an atmosphere with extremely high humidity
or rapid temperature changes may be higher than the actual
humidity due to condensation generated on the surface of the sensor.
If this occurs, allow the probe to dry in an atmosphere with 40%RH
humidity or less for 24 hours.
――Comparing with ASSMANN Psychrometer ――
The humidity measurement function of CLIMOMASTER is strictly
calibrated, traceable to Japanese National Standards carried by JEMIC
(Japan Electric Meters Inspection Corporation), and it assures you highly
accurate performance.
The electronic hygrometer, used in CLIMOMASTER, is known to be more
stable and has a shorter response time compared to conventional
ASSMAN Psychrometers. Also, the electronic hygrometer is not dependent
upon the measurement conditions, while an ASSMANN Psychrometer can
easily be influenced by many factors such as dust, condensation and the
way the gauze is wrapped.
●Do not expose the pressure sensor to more than 75kPa of pressure.
Excess pressure may cause serious damage to the sensor.
●The operating temperature must be between 5oC and 40oC or 41oF
and 104oF when measuring pressure. The instrument may not
operate properly outside of this temperature range.
●Make sure to perform a zero adjustment before measuring
pressure. When performing a zero adjustment, leave both pressure
ports (+) and (-) open.
●The zero adjustment range is – 0.5 to 0.5 kPa. If the reading is out
of this range, an error message will be displayed.
■Zero Adjustment Procedure
Press to enter the Main Menu.
Use to select “8. PRESSURE ZERO”
and press .
Use to select “1. ZERO ADJUST”
and press
.
Use to select “YES”.
Press
to display 0.00 kPa.
Use to select “2. SAVE INFO”.
Press . This will complete the zero
adjustment and you are back in Main
Menu.
an accurate
measurement,
tube is properly
secured without
any leakage, or
If you press
without completing the zero adjustment.
before you save, you will go back to the Main Menu
■ Connecting the Pressure Tube
Connect the pressure tube to the (+) or (-)
port as you see on the left.
Connect/insert the other end of the tube to the
measuring hole of the duct. If the pressure
that you are going to measure is positive,
connect the tube to (+) port. If it is negative,
connect the tube to (-) port.
Before measuring the volumetric flow rate, the duct shape and size
settings must be entered. Up to 25 different duct types can be
registered in this instrument.
Select a duct type from the registered duct types to measure the air
flow rate.
Press to enter the Main Menu.
Use
to select ”2. DUCT TYPE”.
Press .
<To Set Duct ENTRY No.>
You can choose a memory address from 1 to 25 to store the duct
data in.
Use to select “1. ENTRY No.”
and press .
Use to select ENTRY No. and
press .
<To Set Duct SHAPE (RECTANGLE/CIRCLE)>
Use to select “2. SHAPE” and press .
16 Getting Started
Use to select “RECTANGLE” or “CIRCLE” and press
Rectangular Duct Circular Duct
.
aaaaaaaDUCTaTYPE
1.ENTRYaNo.aaaaaaaa1
2.SHAPEaaaaRECTANGLE
3.WIDTHoooooooooo800
4.HEIGHTooooooooo500
5.UNIT(mm/inch)aaamm
6.SAVEaINFO
aaaaaaaDUCTaTYPE
1.ENTRYaNo.aaaaaaaa1
2.SHAPEaaaaRECTANGLE
3.WaSIZEaaaaaaaaa800
4.HaSIZEaaaaaaaaa500
5.UNIT(mm/inch)aaamm
6.SAVEaINFO
aaaaaaaDUCTaTYPE
1.ENTRYaNo.aaaaaaaa1
2.SHAPEaaaaRECTANGLE
3.WaSIZEaaaaaaaaa800
4.HaSIZEaaaaaaaaa500
5.UNIT(mm/inch)aaamm
6.SAVEaINFO
aaaaaaaDUCTaTYPE
1.ENTRYaNo.aaaaaaaa1
2.SHAPEaaaaCIRCLE
3.DIAMETERaaaaaaa300
4.UNIT(mm/inch)aaamm
6.SAVEaINFO
<To Set Duct Size>
Registering a Rectangular Duct
Use to select “3. WIDTH” and
press
.
width and press
Use to enter the
.
Use to select “4. HEIGHT” and
press . Use to enter the
height and press .
The maximum is 9999mm or 999.9 inch.
Registering a Circular Duct
Use to select “3. DIAMETER”
and press . Use to enter
the diameter of the duct and press .
The maximum is 9999mm or 999.9inch.
<To Set Units (mm/inch)>
Use to select “5. UNIT(mm/inch)”
and press .
*For a circular duct, select
“4. UNIT (mm/inch)”.
Use to select mm or inch and
press .
<To Save the Setting>
Use to select “6. SAVE INFO” and
press .
This will complete the Duct Shape/Size
Input and you are back in Main Menu.
If you press
before you save, you will go back to the Main
Menu without completing the Duct Shape/Size Input.
This is the mode that you will be in, when you first turn on the
instrument. In this mode you cannot save any data. The display is
updated every 1 second.
To move to NORMAL Mode from
another measuring mode, press .
available on
■ Air temperature is
only available on
MODEL6531/6541
/6542/6533/6543/
6561
available on
MODEL6501-B0
Select “1. NORMAL” and press .
Selecting the Measuring Parameters
The measurement parameters can be selected in Normal Mode as
described below.
<Air Velocity Measurement Screen>
While in Normal Mode as shown left,
the measured item can be changed by
pressing . The item changes in the
following sequence: Pressure→Air
Rate→Air Velocity
<Pressure Measurement Screen>
Pressure measurement is a feature for
MODEL 6501-B0/6501-C0.
This screen is displayed on MODEL
6501-B0/-C0, which has a built-in
pressure sensor.
<Flow Rate Measurement Screen>
18 Normal Measurement NORMAL MODE
The selected duct type will be
displayed at the lower left of the
screen.
To select the duct type, use
while pressing .
If you have not selected a duct type or your selected
duct type (number) is not available, the instrument will
not give you the flow rate reading. Make sure the duct
type is properly registered and selected. See “Getting
Started Duct Shape/Size Input” on P.16 for details.
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TCC1
HOLD
0.87f
25.3e
64.1g
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TCC1
0.87f
25.3e
64.1g
'12/04/12a15:40:23 ~
TCC1
HOLD
0.87f
25.3e
64.1g
'12/04/12a15:40:23 ~
TCC1
0.87f
25.3e
64.1g
■ Humidity is only
MODEL6531/6533.
■ Pressure is only
Hold the Reading
While measuring (in NORMAL Mode),
available on
■ Air temperature is
only available on
MODEL6531/6541
/6542/6533/6543/
6561.
press the
reading. This is applicable in both the
flow rate and pressure measurement
screens as well.
The ”HOLD” indicator appears on the
display to indicate that the reading
shown is held.
Press again to release.
Hold the Maximum Value
While measuring (NORMAL Mode),
press and hold .
The “HOLD” indicator appears on the
display. As long as you keep pressing
down the button you can hold the
key to hold the current
available on
MODEL6501-B0/-C0.
maximum value of each parameter (air
velocity, air temperature, humidity and
pressure).
When you release , the reading
shown will be frozen. Press
to release.
again
19
MODE
How To Take In Measured Data
EXPLANATION
TC1
Displays the
instantaneous value at
every 1 sec.
TC5
Updates every second.
The value displayed is
the average of the past 5
seconds.
TC10
Updates every second.
The value displayed is
the average of the past
10 seconds.
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TCC1
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25.3e
64.1g
Time Constant
Data for 1 sec
Average of 5 sec
Average of 10 sec
■ Humidity is only
MODEL6531/6533.
sec. (Measuring Time)
sec. (Measuring Time)
sec. (Measuring Time)
■ Pressure is only
Setting the Time Constant
In NORMAL Mode, you can change the
available on
■ Air temperature is
only available on
MODEL6531/6541
/6542/6533/6543/
6561.
You can select the Time Constant from 1, 5 or 10seconds.
Time Constant (TC) by pressing .
TC1: Displays the instantaneous value at every 1 second
available on
MODEL6501-B0/-C0.
TC5: Displays moving average for 5 seconds
TC10: Displays moving average for 10 seconds
*The Time Constant is only effective in Normal Mode. When you first turn
on the instrument, it is effective only for the AIR VELOCITY and the AIR
FLOW measurements in Normal Mode. If you need to apply the time
constant to the AIR TEMPERATURE, HUMIDITY and PRESSURE
measurements in Normal Mode, refer to the next section “Changing
Time Constant Application”.
*** What is Time Constant? ***
Time Constant determines the time span of the moving average. When you set the Time
Constant to a larger (longer) value, the readings will become stable. When you select a smaller
(shorter) value, the readings will become more responsive and sensitive to changes in air
velocity. This function is not available in Calculation or Flow Rate Mode.
T indicates Air Temperature (MODEL6531/6541/6542/6533/6543/6561).
*H indicates Humidity (MODEL6531/6533).
oooooooUTILITY
1.TIMEoADJUST
2.UNIToSELECT
3.ANALOGoOUTPUT
4.TC(T.H.P)oSET
5.BACKLIGHToON/OFF
■ Pressure is only
available on
/-C0.
MODEL6501-B0
Changing the Time Constant Application
When you first turn on the instrument, the Time Constant is only
effective for AIR VELOCITY and AIR FLOW in Normal Mode. If you
want to make it effective for AIR TEMPERATURE, HUMIDITY and
PRESSURE, the following change must be made.
Press to enter the Main Menu.
Use and select “7. UTILITY”.
Press .
Use and select
“4. TC(T.H.P) SET”. Press .
*If your instrument does not have the
optional pressure sensor, the screen will
display “4. TC(T.H)”.
Select “1. TC(T.H.P) SET” and press
. Use to select YES or NO.
Press .
YES: The time constant is effective for
all parameters in Normal Mode.
NO: The time constant is only effective
for the AIR VELOCITY and FLOW RATE.
<Save the Settings>
Use to select “2. SAVE INFO”.
Press to save the new settings
and go back to Main Menu.
If you press
the Main Menu and any setting changes you made will not be saved.
before saving the settings you will return back to
Measuring Time……Sampling Time x N (Number of Trial)
Sampling Time
CALCULATE R20000/20000
1.MODE11111111AVERAGE
2.SAMPLING(TIME)0012s
3.SAMPLING(n)110050
4.DATA2STORAGE2?22YES
5.SET2TO2START
§ 4 Measuring Max, Min, and Mean: CALCULATION Mode
CALCULATION Mode will automatically calculate the maximum,
minimum and mean of the measured data.
Press to enter the Main Menu. Use
to select “3. CALCULATION”
and press .
CALCULATION Mode Display Icons
1. CALCULATION Mode
AVERAGE: Takes a measurement
every second and then displays the
average for the set sampling time.
INSTANT: Takes a single
measurement at the end of the
sampling time.
2. SAMPLING TIME (1 to 999 sec)
To set the length of the sampling time.
3. No. TRIAL (N) (1 to 9999 times)
To set the number of samples (trials) needed. Each trial will be
for the duration specified in sampling time.
4. DATA STORAGE (YES or NO)
5. SET TO START
Save the settings and return to standby.
22 Measuring Max, Min, and Mean: CALCULATION Mode
CALCULATE R20000/20000
1.MODE11111111AVERAGE
2.SAMPLING(TIME)0012s
3.SAMPLING(n)110050
4.DATA2STORAGE2?22YES
5.SET2TO2START
CALCULATE R20000/20000
1.MODE11111111AVERAGE
2.SAMPLING(TIME)0012s
3.SAMPLING(n)110050
4.DATA2STORAGE2?22YES
5.SET2TO2START
CALCULATE R20000/20000
1.MODE11111111AVERAGE
2.SAMPLING(TIME)0012s
3.SAMPLING(n)110050
4.DATA2STORAGE2?22YES
5.SET2TO2START
CALCULATE R20000/20000
1.MODE11111111AVERAGE
2.SAMPLING(TIME)0012s
3.SAMPLING(n)110050
4.DATA2STORAGE2?22YES
5.SET2TO2START
CALCULATE R20000/20000
1.MODE11111111AVERAGE
2.SAMPLING(TIME)0012s
3.SAMPLING(n)110050
4.DATA2STORAGE2?22YES
5.SET2TO2START
<Setting the CALCULATION MODE>
Select “1. MODE“ and press .
Use to select AVERAGE or
INSTANT and press .
<Setting the SAMPLING TIME>
Use to select
“2. SAMPLING (TIME)” and press
Use to select SAMPLING TIME
(1 to 999 sec) and press .
<Setting the No. TRIAL (N)>
Use to select “3. SAMPLING(n)”
and press .
Use to select No. TRIAL
(1 to 9999 times) and press .
Data obtained by the number of trials
set here will be stored.
<DATA STORAGE>
.
Use to select
“4. DATA STORAGE?” and press
Use to select YES or NO and
press .
There must be sufficient memory to store the calculation data. If the
measured data would exceed the available number of empty data
locations, Climomaster will automatically adjust the number of trials to
match the amount of free remaining memory locations. (Ex.: if there is
R0020/20000 remaining, you can only measure 20 times even if you
set the No. TRIAL to more than 20.
<Save the Settings>
Use to select
“5. SET TO START” and press
(In the example shown at the left, the
instrument will perform fifty (50)
measurements of one (1) second
.
.
intervals.)
23
'12/04/12a15:40:23 ~
RDY.
N2221
/2250
0.87f
25.3e
64.1g
■ Humidity is only
available on
MODEL6531/6533.
'12/04/12a15:42:57 ~
SMP .
N2223
/2250
2.11f
25.3e
64.2g
2222CALCULATION
MAX
AVG
MIN
2.76f
1.43f
0.81f
■ Pressure is only
/-C0.
<READY>
The instrument is ready for measuring.
■ Air temperature is
only available on
MODEL6531/6541
/6542/6533/6543/
6561.
available on
MODEL6501-B0
<While Measuring>
<RESULT>
Press to change the applied
parameters. (Air Velocity, Air Temp,
Humidity – Flow Rate, Air Temp,
Humidity – Pressure)
Press to start.
Press
to stop.
If you have selected “YES” for “4. DATA
STORAGE?”, the measured data will be
stored.
Pressing will also stop the
measurement but the data will not be
saved.
After all the trials are finished, the
calculated results will be displayed.
Press to check each parameter
in the following sequence: Air Velocity
(or Air Flow) Air Temp. Humidity
Dew Point Temperature (DT),
Discomfort Index (DI).
*If you measured Pressure, only Pressure will be displayed.
Press to return to the setup menu of the CALCULATION Mode.
Press to return to the Main Menu. If YES is selected for “DATA
STORAGE”, the results will be stored.
Related Functions:
■ If a printer is connected, press to print out the results.
■ To recall stored data → P.31
■ Print out → P.34
■ What is Dew Point Temperature (DT) and Discomfort Index (DI)?
Time needed to measure a point…Sampling Time X N (Number of Trial)
Value at point 1 Value at point 2 Value at point M
POINT(1): avg(1)=ΣTRIAL(N)/N
POINT(M): avg(M)=ΣTRIAL(N)/N
<Result>
Minimum (MIN): MIN= Minimum value from avg(1) to avg(M).
§ 5 Measurement of Air Flow FLOW RATE Mode
CLIMOMASTER features an accurate Flow Rate Mode which
corresponds to the industry measurement standards such as
ASHRAE.
SINGLE FLOW RATE Mode
This mode is useful for performing a measurement of the airflow of
duct (i.e. a duct traverse). Following the steps listed below, you
can program Climomaster with the following parameters:
Sampling Time: The instrument will take a sample at the end
of this entered sampling time. Example: if you setup a
sampling time of 10 seconds, Climomaster will wait 10
seconds and then take a measurement. If you are taking
multiple samples, it will wait 10 seconds between each one
before taking the next sample.
Number of Trials: this is the number of samples you wish to
collect from a single point in the traverse.
Number of Points: this is the total number of points in the
In single mode, the average, maximum and minimum values from
all points will be calculated. The instrument will record the average
from each point as well as providing a final average of all the points
in the traverse.
traverse.
POINT(1) POINT(2) ……………… POINT(M)
The value of each point is
recorded as the average of
TRIAL(1) to TRIAL(N). This value
(for each individual point) is stored
in the memory.
POINT(2): avg(2)=ΣTRIAL(N)/N
・・・
Average (AVG): AVG=(avg(1)+ avg(2)+ ・・・・+avg(M))/M
Maximum (MAX): MAX= Maximum value from avg(1) to avg(M).
To take an accurate measurement of the airflow of duct, you need to figure
out the average velocity of air inside the duct and the area of the cross
section of the duct.
MULTI FLOW RATE is very similar to the SINGLE FLOW RATE MODE,
except it adds an additional parameter for the number of locations.
This allows you to take several air flow measurements (i.e.
traverses) and get a total average, for example measuring flow rate
from multiple ducts to get an overall average.
The value of each point is the
average of TRIAL(1) to TRIAL(N).
The value of each location is the
average of POINT(1) to
POINT(M). The value of each
location will be stored in the
memory.
Use to select the page that
you would like to recall and press .
………… Measured Mode (CALCULATION (A): AVERAGE/(I): INSTANT )
………………… Measured Date (Year/Month/Day)
………………… Measured Time (Hour : Minute : Second)
……………………… Duct Shape/Size (For Air Flow Measurement only)
………………… Measured Date (Year/Month/Day)
………………… Measured Time (Hour : Minute : Second)
……………………… Duct Shape/Size
……… Number of Trial
………… Measured Mode
………
……………………… Duct Shape/Size
………… Measured Mode
………………… Measured Date (Year/Month/Day)
………………… Measured Time (Hour : Minute : Second)
………
<Displaying the Recalled Data>
The recalled data of the selected page will be displayed.
available on
■ Air temperature is
only available on
MODEL6531/6541
/6542/6533/6543/
6561.
available on
MODEL6501-B0
32 Store and Recall Measured Data
Use to scroll.
………
If you measured Flow Rate in CALCULATION Mode or if you
measured in FLOW RATE Mode, you can select Flow Rate or Air
Velocity to be displayed by pressing .
Only Pressure will be displayed if you measured Pressure.
START:00100END:050
NUM.
0m/s0000°C000%RH
001
000.810025.400
64.7
002
000.950025.400
64.7
003
000.980025.600
64.9
004
001.050025.700
65.1
005
001.210025.700
65.0
006000.990025.90065.2
aNEXT1FLOW2RATE
MAX
AVG
MIN
106433a
085134a
066797a
<Setting the CALCULATION RANGE>
You can select the range of calculation.
If the data range is correct, press to calculate the range of data
displayed on the screen.
If the range is not correct, press to
display a cursor on “START”.
Use to select the first number of
the data (START) that is to be calculated
and press .
The cursor will move to “END”. Use
to select the number of
the last data (END) that is to be calculated and press .
Press to calculate for the displayed
data range.
*You CANNOT set more than one range.
<In FLOW RATE Mode>
Press to shift the calculation results in the following
sequence: Flow RateAir TemperatureHumidityAir Velocity.
<In CALCULATION Mode>
Press to shift the calculation results in the following sequence:
Air Velocity (Flow Rate)Air TemperatureHumidityDew Point
Temperature, Discomfort Index.
Press to return to PAGE SET.
Press
to return to the MAIN MENU.
33
Data Bit Length
8 bits
Parity
None
Baud Rate
Set Value *
Stop Bit
1
'12/04/12a15:40:23 ~
TC
C1
HOLD
0.87f
25.3e
64.1g
*To change the BAUD RATE, refer to
“Units and Baud Rate” on P.
*
printer, refer to the printer operation
manual.
2001/06/19 13:42:09
Velocity 0.12 m/s
Temperature 25.9 ゚ C
Humidity 62.7 %RH
…Air Velocity
…Air Temperature
2001/06/19 13:42:28
Pressure 0.23 kPa
Serial
Communication
Terminal
■ Humidity is only
MODEL6531/6533.
■ Pressure is only
/-C0.
§ 7 Print Out
Preparation for Printing
Connect the printer cable to the Serial
Communication terminal located on
the side of the instrument to print out
measurement data.
<Requirements>
●Printer (optional)……Recommended: Seiko Instruments Model
DPU-S245
●Printer Cable (optional)
<Check the BAUD RATE>
You need to enter the same baud rate and data transmission
conditions on both the Main Body and the printer.
The factory setting of the Main Body is as follows:
<Connecting the Printer>
1. Connect the printer to the Main Body (Serial Communication
Terminal) using the printer cable.
2. Turn ON the CLIMOMASTER first, and then turn the printer ON.
3. Make sure that the CLIMOMASTER is displaying NORMAL Mode.
46.
To configure the settings of the
Print Out in NORMAL Mode
available on
■ Air temperature is
only available on
MODEL6531/6541
/6542/6533/6543/
6561.
available on
MODEL6501-B0
34 Print Out
* If the printer is not connected properly, ”PERR” will be displayed in
the lower left of the display.
Examples of Print Out
When the screen is displaying in
NORMAL Mode, press to HOLD the
display. Press to print out the data
on the screen.
Air Velocity Mode Pressure Mode
Stored Location
Measurement Mode
No. of Data Records
No. of Points Measured
Calculation Range
Dew Point Temperature
Discomfort Index
PAGE:004
MODE:CALCULATION(A)
DI 74.1
PAGE:002
MIN 0.35 m/s
aNEXCALCULATION
MAX
AVG
MIN
102.76f
081.43f
060.81f
aNEXT1FLOW2RATE
MAX
AVG
MIN
106433a
085134a
066797a
Print Out in CALCULATION Mode and FLOW RATE Mode
<Measurement and Calculation Mode (CALCULATION)>
Press after the measurement and
calculation has been performed to print
out the result.
<Airflow Measurement Mode (FLOW RATE)>
Examples of Print Out
DATE:2001/06/19
TIME:17:24:33
DATA:005
SAMPLING TIME:001
START:001 END:005
MAX 1.26 m/s
AVG 0.90 m/s
MIN 0.55 m/s
MAX 25.6 ゚ C
AVG 25.6 ゚ C
MIN 25.5 ゚ C
MAX 64.6 %RH
AVG 64.5 %RH
MIN 64.4 %RH
DT 18.4 ゚ C
Press
after the measurement and
calculation has been performed to print
out the result.
MODE:FLOW RATE
Measured Date
Measured Time
DATE:2001/06/19
TIME:13:35:23
DATA:003
DIV.:002
Sampling Time
SAMPLING TIME:001
START:001 END:002
Duct Type
Air Velocity
Flow Rate
Air Temperature
Humidity
SHAPE D 900mm
MAX 361554 m3/h
AVG 220582 m3/h
MIN 79609 m3/h
MAX 25.5 ゚ C
AVG 25.4 ゚ C
MIN 25.4 ゚ C
MAX 63.7 %RH
AVG 62.6 %RH
MIN 61.4 %RH
Air Velocity
MAX 1.58 m/s
AVG 0.96 m/s
35
START:00100END:050
NUM.
0m/s0000°C000%RH
001
000.810025.400
64.7
002
000.950025.400
64.7
003
000.980025.600
64.9
004
001.050025.700
65.1
005
001.210025.700
65.0
006000.990025.90065.2
START:00100END:050
NUM.
0m/s0000°C000%RH
001
000.810025.400
64.7
002
000.950025.400
64.7
003
000.980025.600
64.9
004
001.050025.700
65.1
005
001.210025.700
65.0
006000.990025.90065.2
MENUaa1.NORMAL
aaaaaa
2.DUCTaTYPE
aaaaaa
3.CALCULATION
aaaaaa
4.FLOWaRATE
aaaaaa
5.DATAaOUTPUT
aaaaaa
6.DATAaCLEAR
aaaaaa
7.UTILITY
aaaaaa8.PRESSUREaZERO
DATA OUTPUT
1.DISPLAY
2.PRINTER(SINGLE)
3.PRINTER(MULTI)
……………………… Page Number
……………………… Duct Shape/Size (for Air Flow Measurement only)
………… Calculation Range
……… Data Number, Air Velocity, Air Temperature, Humidity
2. After “AS”, the data will be displayed as described below.
Output Content
Measuring Parameter (WTH, VTH or PRS); Time Constant (P. 20);
Duct Size (Width, Height, Diameter); Units of the Duct Size
■ WTH: Flow Rate, Temperature, Humidity
■ VTH: Air Velocity, Temperature, Humidity
■ PRS: Pressure
<To Download the Measuring Units>
1. Type “U ”
2. After “AU”, the data will be displayed.
Output Content
Velocity Unit; Temperature Unit; Humidity Unit; Pressure Unit; Flow
Rate Unit
40 Digital Output
■ The format of the date
Year/Month/Day. This
is not affected by date
Example
Example
AP
P0011
Example
■ ”0000000” will be
displayed for
6552
■ Pressure is only
MODEL6501-B0/-C0.
humidity on
MODEL6541,
6542, 6543 and
6561.
■ ”0000000” will be
displayed for
temperature and
humidity on
MODEL6551 and
available on
output is fixed to
setting of the main
body.
Transmission of Stored Memory
<To Download the Duct Setting>
1. Type “K ”
2. After “AK”, the data will be displayed.
3. All stored duct settings
(1 through 25) will be downloaded.
Output Content
Entry No. (Data Location); Width; Height; Diameter; Units of Duct
Size
<To Download the Page Number>
1. Type “P”.
2. After “AP”, the data will be displayed.
3. Number of data stored pages will be downloaded.
<To Download the Stored Data>
1. Type “T**** ”.
* Type in the desired page number(4 digits) after “T”.
2. After “AT”, the data will be displayed.
Output Content
■ Air Velocity Mode: Number of Data; Velocity; Temperature; Humidity
■ Flow Rate Mode: Number of Data; Flow Rate; Temperature; Humidity
■ Pressure Mode: Number of Data; 0000000; 0000000; Pressure
*The data will be displayed in the currently selected units.
NOT in the units the data was saved with.
*Calculated data will not be downloaded.
41
A B C D E F G H I
Example
Example
Example
■ Pressure is only
/-C0.
<To Download the Measuring Condition of Stored Data>
1. Press “M**** ”.
*Type in the desired page number(4 digits) after “M”.
2. After “AM”, the data will be displayed.
Output Content
A. Measuring Parameter
WTH: Flow Rate; Temperature; Humidity
WT: Flow Rate; Temperature
VTH: Velocity; Temperature; Humidity
VT: Velocity; Temperature
PRS: Pressure
available on
MODEL6501-B0
B. Measuring Mode
000: Calculation Mode
001: Flow Rate Mode
C. Sampling Time
D. Number of Data
E. Calculation Mode
AVG: Average
INS: Instantaneous
In the case of Flow Rate Mode, the number of points is indicated.
F. Width
G. Height
H. Diameter
I. Units of Duct Size
<To Download the Measuring Conditions of All Pages>
1. Press “B ”
2. After “AB”, the data will be displayed.
Output Content
*Same as shown above.
<Error Message>
Re-type the command.
42 Digital Output
Parameter
Output Range
Conversion Formula
(V: voltage)
Velocity
(U)
0 to 5 m/s
U= 5×V m/s
0 to 10 m/s
U= 10×V m/s
0 to 30 m/s
U= 30×V m/s
0 to 50 m/s
U= 50x V m/s
0 to 1000 FPM
U= 1000×V FPM
0 to 2000 FPM
U= 2000×V FPM
0 to 6000 FPM
U= 6000× V FPM
0 to 10000 FPM
U= 10000×V FPM
Humidity
(H)
0 to 50 %RH
H= 50×V %RH
0 to 100 %RH
H= 100×V %RH
Temperature
(T)
-20 to 30 °C
T= 50×V-20 °C
0 to 50 °C
T= 50×V °C
0 to 100 °C
T= 100×V °C
-4 to 86 oF
T= 90×V - 4 oF
32 to 122 oF
T= 90×V+32 oF
32 to 212 oF
T= 180×V+32 oF
Pressure
(P)
-2 to +2 kPa
P= 4×V- 2 kPa
-5 to +5 kPa
P= 10×V- 5 kPa
Mode
Ways To Take In Measured Data (Analog Output)
Explanation
TC1
Take 10
measurements each
second and indicate
the average as an
instantaneous value
at every 1 sec.
TC5
Output the average
measured value for
5 seconds at every
0.1 second. Data
shifts by 0.1 second.
TC10
Output the average
measured value for
10 seconds at every
0.1 second. Data
shifts by 0.1 second.
Analog Output
0 5 10 15 20sec
Measuring time
0 0.5 1.0 1.5 2.0sec
0 2.5 5.0 7.5 10sec
Average of 10sec
Average of 5sec
Average of 1 sec
■ Analog output is only
MODEL6501-A0/-C0.
■ To change the setting
P. 20
§ 9 Analog Output
1. Data Update……every 0.1 sec
available on
(Except Humidity; updated every1sec)
2. Load Impedance……Above 5KΩ
3. Output Voltage……DC 0 to 1V
For analog output, you must select one setting
from the table below.
(There is no analog output for Flow Rate)
Terminal
of Time Constant,
refer to “To change
Time Constant” on
.
For the output range, the low end will be set at 0V and the high end
will be set at 1V. The voltage is linear.
The Time Constant will be in effect.
43
MENUaa1.NORMAL
aaaaaa
2.DUCTaTYPE
aaaaaa
3.CALCULATION
aaaaaa
4.FLOWaRATE
aaaaaa
5.DATAaOUTPUT
aaaaaa
6.DATAaCLEAR
aaaaaa
7.UTILITY
aaaaaa8.PRESSUREaZERO
AaaANALOG OUTPUT
1.OUTPUT
2SELECT22V
EL.
2.VEROCITY
22222222222
0-1022m/s
3.SAVE
2INFO
AaaANALOG OUTPUT
1.OUTPUT
2SELECT22
VEL.
2.VEROCITY
22222222222
0-1022m/s
3
.SAVE2INFO
aaaaaaaUTILITY
1.TIME AJUST
2.UNIT SELECT
3
.ANALOG OUTPUT
4.TC(T.H.P) SET
oooooooUTILITY
1.TIMEoADJUST
2.UNIToSELECT
3.ANALOGoOUTPUT
4.TC(T.H.P)oSET
5.BACKLIGHToON/OFF
AaaANALOG OUTPUT
1.OUTPUT
2SELECT22
VEL.
2.VEROCITY
22222222222
0-3022m/s
3.SAVE
2INFO
MODEL6531/6533
6561.
Press to enter the Main Menu.
■ Pressure is only
available on
MODEL6501-B0
/-C0.
■ Humidity is only
available on
■ Air temperature is
only available on
MODEL6531/6541
/6542/6533/6543/
Use
Press .
to select “7. UTILITY”.
Use
to select
“3. ANALOG OUTPUT”.
Press
<To Select Data>
Select “1. OUTPUT SELECT” and press
.
Use to select “VEL.” (Velocity), “PRS.” (*Pressure),
“HUM.” (*Humidity), or “TMP.” (*Temperature).
Press .
<To Set the Output Range>
44 Analog Output
Use
parameter) and press
Use
press
<To Save the Settings>
Use to select “3. SAVE INFO”.
Press .
If you press
before you save, you will return to the Main Menu
and the settings will not be saved.
to select “2.” (selected
.
to select the range and
.
AaaaaTIME2ADJUST
1.STYLE:
222JP
2.DATE
2:22012/04/12
3.TIME
2:22214:37:27
4.SAVE2INFO
AaaaaTIME2ADJUST
1.STYLE:
222JP
2.DATE
2:22012/04/12
3.TIME
2:22214:37:27
4.SAVE2INFO
oooooooUTILITY
1.TIMEoADJUST
2.UNIToSELECT
3.ANALOGoOUTPUT
4.TC(T.H.P)oSET
5.BACKLIGHToON/OFF
AaaaaTIME2ADJUST
1
.STYLE:222JP
2.DATE
2:22012/04/12
3.TIME
2:22214:37:27
4.SAVE2INFO
MENUaa1.NORMAL
aaaaaa
2.DUCTaTYPE
aaaaaa
3.CALCULATION
aaaaaa
4.FLOWaRATE
aaaaaa
5.DATAaOUTPUT
aaaaaa
6.DATAaCLEAR
aaaaaa
7.UTILITY
aaaaaa8.PRESSUREaZERO
*The style of date
screen or for printer
§ 10 Other Settings
Date
Press .
Use to select “7. UTILITY” and
press .
Useto select “1. TIME ADJUST”
and press .
Use to select "1. STYLE" or
displayed on the
"2. DATE" and press
output depends on
this setting,
Japanese style (JP): YYYY/MM/DD
however, the style
of the output to
digital port is fixed
to Japanese style.
US style (US): MM/DD/YYYY
EU style (EU): DD/MM/YYYY
2. DATE: Date
3. TIME: hour/minute/sec
1. STYLE: Select JP, US or EU
.
Use to select the desired item.
Use to change the setting.
Press to select the setting and
move the cursor back to “1” or “2”.
<To Save the Setting>
Use to select “4. SAVE INFO”
and press to save the change. The screen returns to the Main Menu.
*When the date is changed, the dates of existing stored
measurements will change as well.
If you press before you save, you will return to the Main Menu
and the settings will not be saved.
45
22222DUNITASELECT
1
.VELOCITY2222222m/s
2.TEMPERATURE
22222°C
3.FLOW
2RATE222m³/h
4.PRESSURE
2222222kPa
5.BAUD RATE
222219200
6.SAVE INFO
22222DUNITASELECT
1.VELOCITY
2222222m/s
2.TEMPERATURE
22222°C
3.FLOW
2RATE222m³/h
4.PRESSURE
2222222kPa
5.BAUD RATE
222219200
6.SAVE INFO
22222DUNITASELECT
1.VELOCITY
2222222m/s
2.TEMPERATURE
22222°C
3.FLOW
2RATE222m³/h
4.PRESSURE
2222222kPa
5.BAUD RATE
222219200
6.SAVE INFO
oooooooUTILITY
1.TIMEoADJUST
2.UNIToSELECT
3.ANALOGoOUTPUT
4.TC(T.H.P)oSET
5.BACKLIGHToON/OFF
MENUaa1.NORMAL
aaaaaa
2.DUCTaTYPE
aaaaaa
3.CALCULATION
aaaaaa
4.FLOWaRATE
aaaaaa
5.DATAaOUTPUT
aaaaaa
6.DATAaCLEAR
aaaaaa
7.UTILITY
aaaaaa8.PRESSUREaZERO
<Units Conversion Table>
Flow Rate 1m3/h = 35.32ft3/h
………m/s or FPM for velocity
………m
3
/h, m3/min, ft3/min, or ft3/h for flow rate
………4800, 9600, 19200, or 38400 baud rate
Units and Baud Rate
Velocity 1m/s = 196 FPM
Temperature T(oF) = 1.8×T(°C)+32
■ Air temperature is
only available on
MODEL6531/6541
/6542/6533/6543/
6561.
■ Pressure is only
available on
MODEL6501-B0
/-C0.
Press to enter the Main Menu.
Use to select “7. UTILITY”.
Press
.
Useto select “2. UNIT SELECT”
and press .
<Units and Baud Rate>
Use to select the desired item (1 through 5). Press .
………°C or oF for temperature
………kPa or Pa for pressure
Use to change the setting.
Press .
<To Save the Setting>
If you press
and the settings will not be saved.
46 Other Settings
Use to select “6. SAVE INFO”
and press
. The change will be saved
and the screen will return to the Main
Menu.
before you save, you will return to the Main Menu
ooooLCDoBACKLIGHT
1.BACKLIGHToON
ooooFORoooooooo01omin
2.SAVEoINFO
ooooLCDoBACKLIGHT
1.BACKLIGHToON
ooooFORoooooooo01omin
2.SAVEoINFO
ooooLCDoBACKLIGHT
1.BACKLIGHToON
ooooFORoooooooo01omin
2.SAVEoINFO
oooooooUTILITY
1.TIMEoADJUST
2.UNIToSELECT
3.ANALOGoOUTPUT
4.TC(T.H.P)oSET
5.BACKLIGHToON/OFF
MENUaa1.NORMAL
aaaaaa
2.DUCTaTYPE
aaaaaa
3.CALCULATION
aaaaaa
4.FLOWaRATE
aaaaaa
5.DATAaOUTPUT
aaaaaa
6.DATAaCLEAR
aaaaaa
7.UTILITY
aaaaaa8.PRESSUREaZERO
Settings for LCD Backlight
Press .
Use to select “7. UTILITY”.
Press .
Use
to select
“5. BACKLIGHT ON/OFF”.
Press
.
Use to select “1. BACKLIGHT”.
Press .
Use to select
BACKLIGHT ON/OFF. Press .
BACKIGHT OFF:Backlight is always off.
BACKLIGHT ON:If you press any button, the backlight will turn on
according to the following settings:
<Settings for Backlight Lit-Up Time>
Use and set the amount of
time which the backlight will stay on.
ALWAYS: The backlight is always on.
FOR ***: The backlight is on for the
specified amount of time (***).
e.g.) FOR 2min: It’s on for 2 minutes
<Saving the Change>
Use and select “6.SAVE INFO”
Press .
If you press
before you save, you will return to the Main Menu
and the settings will not be saved.
47
MENUaa1.NORMAL
aaaaaa
2.DUCTaTYPE
aaaaaa
3.CALCULATION
aaaaaa
4.FLOWaRATE
aaaaaa
5.DATAaOUTPUT
aaaaaa
6.DATAaCLEAR
aaaaaa
7.UTILITY
aaaaaa8.PRESSUREaZERO
AaaaaDATARCLEAR
1
.CLEARLSTART:000001
00000000
END00:000001
00000000
SET00:002YES
2.ALL
2CLEAR0000000NO
000000000R19950/20000
AaaaaDATARCLEAR
1.CLEAR
LSTART:000001
00000000
END00:000001
00000000
SET00:002YES
2.ALL
2CLEAR0000000NO
000000000R19950/20000
AaaaaDATARCLEAR
1.CLEAR
LSTART:000001
00000000
END00:000006
00000000
SET00:002YES
2.ALL
2CLEAR0000000NO
000000000R19950/20000
AaaaaDATARCLEAR
1.CLEAR
LSTART:000001
00000000
END00:000006
00000000
SET00:002YES
2.ALL
2CLEAR0000000NO
000000000R19950/20000
Page 1
Page 2
Page 4
Page 1
Page 2
Page 3
……Starting Page Number
Page Number will change
Page 1
Page 2
Page 3
Page 4
To Delete Data
Press to enter the Main Menu.
Use to select “6. DATA CLEAR”
and press .
Use to select “1. CLEAR” (delete
the selected data only) and press .
…… Ending Page Number
…… Partial Delete (YES or NO)
…… All Delete (YES or NO)
…… Remaining Memory / Total Memory
(The number of sampling data that can be stored)
Use to select the starting page.
Press .
Use to select the ending page.
Press .
Use to select “YES” for partial
delete.
Press .
The selected page will be deleted and
the remaining data will shift up.
(See diagram below)
automatically
48 Other Settings
AaaaaDATARCLEAR
1.CLEAR
LSTART:000001
00000000
END00:000001
00000000
SET00:0020NO
2
.ALL2CLEAR0000000NO
000000000R19950/20000
AaaaaDATARCLEAR
1.CLEAR
LSTART:000001
00000000
END00:000001
00000000
SET00:0020NO
2.ALL
2CLEAR000000YES
000000000R19950/20000
AaaaaDATARCLEAR
1.CLEAR
LSTART:000001
00000000
END00:000001
00000000
SET00:0020NO
2
.ALL2CLEAR000000YES
000000000R20000/20000
MENUaa1.NORMAL
aaaaaa
2.DUCTaTYPE
aaaaaa
3.CALCULATION
aaaaaa
4.FLOWaRATE
aaaaaa
5.DATAaOUTPUT
aaaaaa
6.DATAaCLEAR
aaaaaa
7.UTILITY
aaaaaa8.PRESSUREaZERO
(The number of sampling data that can be stored)
To Delete All the Data
Press to enter the Main Menu.
Use t to select “6. DATA CLEAR”.
Press
.
Use to select “2. ALL CLEAR”. Press
……All Delete (YES or NO)
……Remaining Memory / Total Memory
Use to select “YES” to delete.
Press .
.
All the data will be deleted and the
Remaining Memory will be 20000.
49
Contrast Adjusting Dial
Lightens Darkens
Contrast Adjustment
If the LCD display of the CLIMOMASTER is
too dark or too light, there is an
adjustment dial at the back, bottom of the
unit, inside the battery cover.
You can adjust the contrast by using a precision screwdriver (-)
(0.9 to 1.5mm).
Turn the dial clockwise to darken the LCD and counterclockwise
to lighten it.
50 Other Settings
Procedure
DO NOT place the sensor in an
coulddamage the sensor.
Ultrasonic Cleaner
for 10 to 20 seconds
Dry with Cool Air
§ 11 How to Clean a Probe
Dust or particles attached to the velocity sensor would alter the
amount of heat diffusion, which leads to a less precise reading. Also,
deformation or clogging of the protective mesh around the sensor of
the probe would also affect the accuracy of the instrument.
Users are encouraged to clean the probe regularly to maintain the
accuracy of measurements.
Clean the sensor by soaking it in water in an ultrasonic cleaner for 10
to 20 seconds. Do not soak it for too long, since there is an
increased risk of damaging the coating.
Please use only water for cleaning the probe.
!CAUTION!
!) When cleaning, make sure that the power is turned OFF.
!) Make sure that the sensor is dry before turning it ON.
!) DO NOT let the humidity sensor come into contact with water
(MODEL6531/6533). When wet, let it air dry by placing it in an
environment with less than 40%RH for more than 24 hours.
!) NEVER USE alcohol or any other organic fluid.
Alcohol will cause permanent damage to the humidity sensor.
Once the sensor is damaged, it will need to be replaced even if it
seems to be functioning.
upward position until it is
completelydryas residual water
51
Product
CLIMOMASTER Air Velocity Meter
Model No. of the Main Body
6501
Model No. of the Probe
6531-21
6541
-21
6561
-21
6542
-21
6551
-21
6552
-21
6533-21
6543
-21
Measuring Object
Clean air flow
Air Velocity
[m/s]
Measuring Range
0.01 to 30.0, 0.01 to 50.0 (6561-21 only)
0.01 to 5.00
Resolution
0 to 9.99: 0.01
10 to 30: 0.1
30 to 50: 0.1 (6561-21 only)
0.01
Accuracy
±2% of reading or ±0.015 (±3FPM),
whichever is greater
0.01 to 0.99:±0.02
0.99 to 5.00:
±2% of reading or
±0.015 (±3FPM),
whichever is greater
Response Time
[sec.]
Approx. 1
Approx. 4
Approx. 7
Approx. 7
(at 1m/s, 90% response time)
Air
Temperature
[o
C]
Measuring Range
-20.0 to 70.0
-
-20.0 to 70.0
Resolution
0.1
-
0.1
Accuracy
±0.5
-
±0.5
Response Time
[sec.]
Approx. 30
(at 1m/s, 90% response time)
-
Approx. 30
(at 1m/s, 90%
response time)
Humidity
*1
[%RH]
Measuring Range
2.0 to 98.0
-
2.0 to 98.0
-
Resolution
0.1 - 0.1
-
Accuracy
2 to 80:
±2.0
80 to 98:
±3.0
-
2 to 80:
±2.0
80 to 98:
±3.0
-
Response Time
[sec.]
Approx.
15
-
Approx.
15
-
Pressure
※2
[kPa]
Measuring Range
-5.00~+5.00
Resolution
0.01
Accuracy
±3% of reading or ±0.01
Response Time
[sec.]
Approx. 1
Temperature Compensation
[m/s]
±5% of reading or ±0.015 (±3FPM), whichever is greater
(in the temperature range of 5 to 60.0oC)
Functions
Readings Hold, Max Hold, Time Constant (1, 5, 10 sec.), Battery Level
Indicator (5 Levels),
Unit selection (Air Velocity: m/s or FPM, Flow Rate: m3/min, m3/h,
ft3/min, or ft3/h, Temperature*1: oC or oF, Humidity*2: %RH, Static
Pressure*3: kPa or Pa)
Max., Min., and Average Calculation, Sampling Time: 1 to 999 sec.
No. of trails: 1 to 9999, Store up to 25 Duct Sizes (Square/Round, Size
Range: 1 to 9999mm or 0.1 to 999.9inch(diameter, height, width))
Max.Data Storage: 20000
Output
Digital Output: USB (when connected to a printer, automatically switch
to RS-232C, Baud Rate 4800, 9600, 19200 and 38400 bps)
Analog Output*3: DC 0 to 1V (select one from Air Velocity,
Temperature*1, Humidity*2 and Pressure*3)
Power
6 × AA Batteries , AC Adaptor*4: AC 100 to 240V (50/60Hz)
Battery Life
Approximately 10 continuous hours (at air velocity 5m/s, 20oC, with
alkaline batteries)
Operating Environment
Main Body: 5 to 40oC (41 to 104oF) with no visible condensation
Probe: -20 to 70oC (-4 to 158 oF) with no visible condensation
Storage Environment
-10 to 50oC (14 to 122o F) with no visible condensation
Spare probe, Analog output, Pressure sensor, Extension rod, Printer,
Printer cable, Software (for Windows), AC adaptor, Hands-free Case
*1: Air temperature is only available on MODEL6531/6541/6542/6533/6543/6561
*4: Optional.
§ 12 Specification
*2: Humidity is only available on MODEL6531/6533
*3: Pressure is only available on MODEL6501-B0/-C0 , Analog Output is only available on MODEL6501-A0/-C0
52 Specification
Cooling
Current
Sensor (Platinum Coil)
Velocity m/s
Current
2
RIH
UbaRI
2
fomulasKingTaTUbaH ・・・・・・'))((
Current (i)
Velocity [U]
Ta1 < Ta2
Heat Diffusion
Quantity [H]
Ta1
Ta2
Compensation
Heat Diffusion
Quantity [H]
Velocity [U]
))((TaTUba
Wind
Air Velocity
Sensor
§ 13 Principle of Measurement
Principle of Hot-wire Anemometer
The principle of the thermal Probe is
based on a heated element from which
heat is extracted by the colder impact
flow. The temperature is kept
constant via a regulating switch. The
controlling current is directly
proportional to the velocity. When
thermal velocity Probes are used in
turbulent flows, the measured result is
influenced by the flows impacting the
heated body from all directions.
In turbulent flows, a thermal velocity sensor indicates
higher measured values than a vane Probe. This can be
observed during measurements in ducts. Depending on
the design of the duct, turbulent flows can occur even at
low velocities. The amount of heat that is extracted by
the colder impact flow from the sensor can be expressed
by:
Where H: Heat diffusion quantity T: Temperature of
the sensor Ta: Air temperature U: Air velocity
a, b: Constant
Also, heat diffusion quantity can be expressed by the
formula:
Where R is resistance and I is current
(R is kept constant regardless of air velocity since the
temperature in constant).
Therefore,
The Temperature Compensation
The air velocity sonsor is heated to an elevated temperature
relative to the surrounding air by means of control
electronics. The temperature compensation sensor senses
the ambient, or surrounding air temperature and forces the
velocity sensor to stay at a constant overheat above the
ambient. The circuit forces the voltage to be equal by
means of an operational amplifier. Air flowing past the
sensor tends to cool the sensor, thus driving down its
resistance. The amplifier responds by immediately
delivering more power to the circuit to maintain voltage
equilibrium. Delivered power is converted into an
electrical signal to display.
53
Pic.2
Upper
Electrode
Lower
Electrode
Glass
Foundation
Macromolecule
Membrane
Diaphragm
Pressure
Pic.1 Pressure Sensor
R1
R
R4
R1~R4:Diffusion Resistant
Pic.3 Detecting Circuit
R1
R2
R4
R3
Current i
Output
Temp Sensor
(Platinum Resistor)
Wind
Measurement of Wind-Temperature
(MODEL 6531/6541/6542/6533/6543/6561)
The coefficient of resistance of the temperature sensor has a
direct proportional relationship with the temperature. We can
measure the wind temperature by adjusting the sensor’s
temperature to the wind-temperature, and measuring its
coefficient of resistance.
Measurement of Humidity (Hygrometer)
(MODEL6531/6533)
The sensor is a pair of condensers and its
electro-capacity is dependent upon the amount of
water contained in its hydrophilic macromolecule
(humidity sensitive) membrane.
The components of the sensors are a glass
foundation; a lower electrode; a macromolecule
membrane and an upper electrode.
The upper electrode will capture the change in
permittivity caused by condensation or
evaporation of water vapors to the macromolecule
membrane. (Electrostatic Capacity Type)
There is another type of hygrometer that uses a resistor instead of a condenser.
Typically Electrostatic Capacity types are good for low humidity measurements and the
resistor types are good for high humidity measurements.
Theory of detecting static pressure (MODEL6501-B0/6501-C0)
To measure static pressure, we use a diffusion-type semiconductor pressure sensor.
The diffusion-type semiconductor pressure sensor is incorporated under the principle
that the resonant frequency of a piezo-crystal decreases linearly with the pressure
applied. On a thin diaphragm of silicon, there are four diffusion resistors (sensor chips)
placed in a fixed distant apart. (Pic.1)
When the pressure is applied from above, the diaphragm will deflect downward. When
it is deflected, the sensors near the center (R3 and R4) will have compressing stress and
the sensors near the perimeter (R1 and R2) will have tensile stress instead. (Pic.2) The
diffusion coefficient of the diffusion resistor changes according to these two stresses.
If we create a bridge among these diffusion resistors (Pic.3), it is possible to detect
voltage that is proportional to the amount of pressure applied. These sensors can be
affected by the temperature, and therefore, a temperature compensation circuit must be
added.
54 Principle of Measurement
)((℃) RH HumidityH:RelativeureT:Temperat
Where
THTDI
%
3.46)3.1499.0(01.081.0
Comfortable
Little
Uncomfortable
Uncomfortable
Very
Uncomfortable
Cannot
Endure
235)]ln(5614.23/[183.4030
::
:%:
100
322.133)]235/(183.40306686.18exp[
eDT
PaureVaporPressePareaporPressuSaturatedVE
eTemperaturTRHmidityRelativeHuH
Where
EH
e
TE
)() (
(℃)) (
What are Discomfort Index (DI) and Dew Point Temperature
(DT)?
**What is DI and DT?**
● Discomfort Index (DI)
Discomfort Index is an index to show how uncomfortable it is in the summer
time.
CLIMOMASTER use the formula, shown below, which is used by
Meteorological Agencies.
DI Scale
68 70 75 80 86
● There are many formulas to calculate Dew Point Temperature,
but for A531, we have adopted the most general “Antnione” formula,
which is used to calculate saturated vapor pressure.
55
Uc
Pm
Um
1013
About Compensation
This instrument has been calibrated at normal temperature and
pressure. Therefore, if you are going to measure velocity at a
different temperature and pressure, the indicating value will be
affected.
Influence of Measuring Temperature
This instrument has been calibrated at normal temperature.
Because of theoretical fundamentals of hot-wire anemometers, it
can easily be effected by the ambient temperature. To prevent
such influence, temperature compensation is needed. The
temperature compensation sensor senses the ambient, or
surrounding air temperature and forces the velocity sensor to stay
at a constant overheat above the ambient temperature. By
adopting temperature compensation sensors, you can measure air
velocity accurately within a range of 5~60
Influence of Pressure at Measuring Point
The instrument is calibrated under atmospheric pressure of 1013
hPa. Since change in the atmospheric pressure will influence the
heat dissipation amount, compensation of the atmospheric pressure
is required. Compensation can be provided by using the following
formula.
o
C (41~140oF)
Where: Um: Actual Velocity[m/s]
Uc: Indicating Value
Pm: AtmosphericPressure at the Measuring Point [hPa]
Measuring Gas Components
This instrument has been calibrated using normal air (i.e. 79%
nitrogen concentration & 21% oxygen concentration). If you wish
to use the instrument in an environment other than normal air, you
will need to compensate for the characteristics of the gas mixture
you’ll be using the instrument in. Please contact your local
Probe Directivity (Air Velocity)
MOD E L 65 33-21 / 6543- 2 1 / 6 551-2 1 /655 2 - 21
58 Probe Directivity (Air Velocity)
Problem
Possible cause(s) / Solution(s)
Reference
The instrument will not
turn on
Battery is inserted in wrong polarity.
Turn off the power and insert the battery
correctly.
Page 11 &
13
The display is not visible
Display contrast is not set up properly.
Adjust the contrast volume switch.
Page 50
The battery level indicator
flashes on the display
The battery is low.
Turn off the instrument and replace the
batteries.
Page 11 &
13
Problem
Possible cause(s) / Solution(s)
Reference
The display is not visible
The display contrast is not set up properly.
Adjust the contrast dial.
Page 50
[NO PROBE] is displayed
The probe is not connected.
Turn off the instrument and connect a
probe.
Page 12
Can I change the
measurement unit?
Yes, you can change measurement units by
following the steps on page 46.
Page 46
Problem
Possible cause(s) / Solution(s)
Reference
[**.*] is displayed as
measured value.
It indicates the measurement is outside the
measuring range.
The instrument must be used in the range
stated in the specifications.
Page 52
[- - - - ] is displayed as air
velocity measurement.
The probe or the probe cable is not connected
properly.
Check the connection between the probe
and the probe cable.
Page 12
The probe or the probe cable may be
damaged.
Contact your local Kanomax
representative for repair or replacement.
Page 62
The instrument is not
reading the correct air
speed.
The probe might be not facing into the wind.
Make sure the wind direction indicator is
facing into the wind.
Page 14
The instrument reads a
higher temperature with
no wind.
CLIMOMASTER can’t measure the correct
temperature with no wind (less than 0.1m/s
of wind). *Model 6533 and 6543 can
measure less than 0.1 m/s.
Page 14
The response time is slow
Set the correct time constant (TC).
Page 20
[ - - - - ] is displayed as
the air volumetric flow
measurement.
The duct information (shape and size) is not
stored.
Register duct information.
Page 16
§ 15 Trouble Shooting
Check battery
Initial operational check
Normal operational check
59
Problem
Possible cause(s) / Solution(s)
Reference
The printer doesn’t
operate.
The printer is not connected properly.
Confirm the printer connection.
Page 34
The Baud Rate might not be set properly.
Check both the instrument and printer
settings.
Page 46
Make sure to use the optional printer (Model
DPU-S245) and printer cable (Model
6000-31).
Page 34
Confirm the connection procedure.
Connect the printer to the printer port,
then turn on the instrument and printer.
Page 34
Cannot printout the
display
Display is not frozen.
1. Press to hold the display.
2. Press to print out.
Page 34
Want to cancel printing
You can’t cancel print while it is operating.
Page 34
Problem
Possible cause(s) / Solution(s)
Reference
PC doesn’t load the
measuring data.
Confirm the USB connection, which is
different from printer connection.
Page 39
The Baud Rate might not be set properly.
Check both the instrument and PC
settings.
Page 34
Confirm the communication command (ex.
Hyper Terminal command).
Page 39
Problem
Possible cause(s) / Solution(s)
Reference
No data is generated.
Check the connection and confirm the
polarity.
Page 43
The HOLD function might be active.
Press to cancel the HOLD function.
Page 43
Data is tiered.
Data is outputted every one second.
Page 43
The output data is not
correct.
Confirm the setting for analog output.
Page 43
Confirm the output range.
Page 43
The load impedance might not be optimum.
Set the load impedance larger than 5kΩ.
Page 43
Output check (1) - Print out
Output check (2) - Digital output
Output check (3) - Analog output
60 Trouble Shooting
§ 16 Warranty and After Service
Kanomax Limited Warranty
The limited warranty set forth below is given by KANOMAX JAPAN, Inc. (hereafter
referred to as “KJI”) with respect to the KANOMAX brand anemometer, and its
attachment parts including probe and other accessories (hereafter referred to as
“PRODUCT”) purchased directly from KJI or from and authorized distributor.
Your PRODUCT, when delivered to you in new condition in its original container, is
warranted against defects in materials or workmanship as follows: for a period of
two (2) years from the date of original purchase, defective parts or a defective
PRODUCT returned to KJI, as applicable, and proven to be defective upon inspection,
will be exchanged for a new or comparable rebuilt parts, or a refurbished PRODUCT
as determined by KJI. Warranty for such replacements shall not extend the original
warranty period of the defective PRODUCT.
This limited warranty covers all defects encountered in normal use of the PRODUCT,
and does not apply in the following cases:
(1) Use of parts or supplies other than the PRODUCT sold by KJI, which cause
damage to the PRODUCT or cause abnormally frequent service calls or
(2) If any PRODUCT has its serial number or date altered or removed.
(3) Loss of damage to the PRODUCT due to abuse, mishandling, alternation,
NO IMPLIED WARRANTY, INCLUDING ANY IMPLIED WARRANTY OF
MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE, APPLIES TO THE
PRODUCT AFTER THE APPLICABLE PERIOD OF THE EXPRESS LIMITED WARRANTY
STATED ABOVE, AND NO OTHER EXPRESS WARRANTY OR GUARANTY, EXCEPT AS
MENTIONED ABOVE, GIVEN BY ANY PERSON OR ENTITY WITH RESPECT TO THE
PRODUCT SHALL BIND KJI. KJI SHALL NOT BE LIABLE FOR LOSS OF STORAGE
CHARGES, LOSS OR CORRUPTION OF DATA OR ANY OTHER SPECIAL, INCIDENTAL
OR CONSEQUENTIAL DAMAGES CAUSED BY THE USE OR MISUSE OF, OR INABILITY
TO USE OR CONSEQUENTIAL DAMAGES CAUSED BY THE USE OR MISUSE OF, OR
INABILITY TO USE, THE PRODUCT, REGARDLESS OF THE LEGAL THEORY ON WHICH
THE CLAIMS IS BASED, AND EVEN IF KJI HAS BEEN ADVISED OF THE POSSIBILITY
OF SUCH DAMAGES. IN NO EVENT SHALL RECOVERY OF ANY KIND AGAINST KJI BE
GREATER IN AMOUNT THAN THE PURCHASE PRICE OF THE PRODUCT SOLD BY KJI
AND CAUSING THE ALLEGED DAMAGE. WITHOUT LIMITING THE FOREGOING, THE
OWNER ASSUMES ALL RISK AND LIABILITY FOR LOSS, DAMAGE OF, OR INJURY TO
THE OWNER AND THE OWNER'S PROPERTY AND TO OTHERS AND THEIR PROPERTY
ARISING OUT OF USE OR MISUSE OF, OR INABILITY TO USE, THE PRODUCT NOT
CAUSED DIRECTLY BY THE NEGLIGENCE OF KJI. THIS LIMITED WARRANTY SHALL
NOT EXTEND TO ANYONE OTHER THAN THE ORIGINAL PURCHASER OF THE
PRODUCT, OR THE PERSON FOR WHOM IT WAS PURCHASED AS A GIFT, AND
STATES THE PURCHASER'S EXCLUSIVE REMEDY.
After Service
●When you have a problem with your instrument, please check out
“Troubleshooting” first.
●If that does not solve the problem, please contact your local distributor or call our
service center. (See last page for contact information.)
●During the warranty period, we will repair at no charge a product that proves to be
defective due to material or workmanship under normal use. (Kanomax Limited
Warranty.)
●Repair after warranty expiration:
Upon request, we will repair the instrument at the customer’s expense, if the
instrument’s performance is found to be recoverable by providing the repair.
●Replacement parts are available for minimum period of five (5) years after
termination of production. This storage period of replacement parts is considered as
the period during which we can provide repair service. For further information,
please contact your local distributor or our service center.
service problems.
improper packaging by the owner, accident, natural disaster, electrical
current fluctuations, failure to follow operation, maintenance or
environmental instructions prescribed in the PRODUCT’s operation manual
provided by KJI, or service performed by other than KJI.
No copying, distribution, publication, modification, or incorporation of this
document, in whole or part, is permitted for commercial purposes without the
01002/12.04
§ 17 Contact Information
U.S.A.
KANOMAX USA, INC.
PO Box 372, 219 Route 206, Andover, NJ 07821 U.S.A.
TEL: (800)-247-8887 / (973)-786-6386 FAX: (973)-786-7586
URL: http://www.kanomax-usa.com/
E-Mail: info@kanomax-usa.com
JAPAN
KANOMAX JAPAN, INC.
2-1 Shimizu, Suita City, Osaka 565-0805, Japan
TEL: 81-6-6877-0183 FAX: 81-6-6879-5570
URL: http://www.kanomax.co.jp
E-Mail: sales@kanomax.co.jp
CHINA
Shenyang Kano Scientific Instrument Co., Ltd.
#2610, 51 Wulihe Street Heping District Shenyang P.R.C.
TEL: 86-24-23846440 FAX: 86-24-23898417
URL: http://www.kanomax.com.cn/
E-Mail: sales@kanomax.com.cn
express written permission of Kanomax.
The contents of this document may be changed without prior notice.
62 Contact Information
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