Kanomax 6332 User manual

Operation Manual
AIR FLOW TRANSDUCER
MODEL 6332/6332D
Please read this manual carefully and understand the warnings
described in this manual before operating the product.
Keep this manual handy for ready reference
0
2
001
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8
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Kanomax 6332 Airflow Transducer Air Velocity Sensor Anemometer
Kanomax 6332D Airflow Transducer Air Velocity Sensor Anemometer
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Thank you for purchasing a product of Kanomax, Inc.
Please read this operation manual carefully and operate the instrument
appropriately by following the instructions given in this manual.
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Component List
■Standar d
Item Model Remarks
Airflow Transducer
Main Unit (Without Display)
6332 -
Airflow Transducer
Main Unit (With Display) 6332D -
■Pr obe & Cable (Sold Separ ately)
Item Model Remarks
0962-00
0963-00 Uni-directional
0964-01
0964-02 Omni-directional (Needle)
0965-00
0965-01 Omni-directional (Spherical)
0965-03
0965-04
Mini-temperature-compensation-sensor
integrated type
Omni-directional (Spherical)
0965-07
Air Velocity Probe
0965-08
Mini-temperature-compensation-sensor
independent type
Omni-directional (Spherical)
1504-04 Length: 10m
1504-05 Length: 20mProbe Cable
1504-06 Length: 30m
■Optional Accessor y
Item Model Remarks
Display Unit 6332-01 -
AC Adapter 6332-02 -
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Impor tant Safety Infor mation
In this operation manual, warning types and classifications are defined as follows.
[Classifications]
Danger: To Prevent Serious Injury or Death
Warnings in this classification indicate danger that may result in serious injury or
death if not observed.
Caution: To Prevent Damage to the Pr oduct
Warnings in this classification indicate risks of damage to the product that may void
the product warranty if not observed.
[Descr iption of Symbols]
This symbol indicates a condition (including danger) that requires caution.
The subject of each caution is illustrated inside the triangle (e.g., high temperature caution
symbol shown on the left).
This symbol indicates prohibition. Do not take a prohibited action shown inside or near this
symbol (e.g., disassembly prohibition symbol shown on the left).
This symbol indicates a mandatory action. A specific action is given near the symbol.
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○Never bring the pr obe close to a flammable gas
atmosphere.
--- The heated sensor may cause fire or explosion.
○Never disassemble, modify or r epair the instr ument.
--- Failure to observe the above may cause short circuit and
malfunction.
○Use the specified voltage for power supply.
--- Unspecified voltage may cause electrical shock and fire.
○Remove dust and any impur ities from the ter minal block.
--- The dust/impurities may cause fire.
○Do not use the instr ument in a water vapor atmospher e.
--- Failure to observe the above may cause electrical shock,
fire, or damage to the sensor.
○Never touch the sensor.
--- The sensor is heated during operation. Touching the heated sensor
may cause burns, and also may damage the sensor itself.
Particular attention must be paid to spherical type sensors
(Model: 0965-00/ 0965-01/ 0965-03/ 0965-04/ 0965-07/ 0965-08)
as they are very sensitive. Please Handle with care.
Water
drops
Warning:
High Temperature /
Injury
Do not use
unspecified voltage
Danger
Do not use
near
flammable gas
Do not
modify
/
disassemble
Prohibition
Handle Properly
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○Do not use or leave the instr ument in a high
temper atur e/humidity envir onment, or in a dusty
environment. The instr ument must also not be left
under dir ect sunlight for a pr olonged per iod.
--- The instrument may not function properly outside
the specified temperature range of 5 to 40 degrees C.
○Do not wipe the instr ument with a volatile solvent.
--- The body may deform or deteriorate. Use 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 and benzine.
○Do not apply strong shock to the instr ument
and probe.
--- Applying strong shock may cause damage and
malfunction to the instrument and probe.
Caution
Prohibited
Installation
Prohibition
Prohibition
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Table of Contents
Names and Dimensions of Components...................................................... 1
System Configuration Example.................................................................... 5
Connecting the Probe Cable to the Main Unit ............................................. 6
Connecting the Probe Cable to the Probe..................................................... 6
Installing the Data ROM............................................................................... 7
Switching Output (Setting Current/Voltage and Output Range)................. 8
Connecting Output and Power Supply....................................................... 10
Measurement Method ................................................................................. 11
Optional Accessory ..................................................................................... 12
Display Unit ....................................................................................................................12
AC Adapter ....................................................................................................................13
Cleaning the Probe ...................................................................................... 14
Specification of Main Unit.......................................................................... 15
Specification of Probes (Sold Separately) .................................................. 16
Troubleshooting........................................................................................... 18
Product Warranty and After Service........................................................... 19
Contact Information .................................................................................... 20
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1
Names and Dimensions of Components
(1) Model 6332 View inside the Case
Probe Cable Connector
Output Changeover
Switch
Range Changeover
Switch
ROM Socket
Output and Power Terminal Blocks
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2
(2) Model 6332D View inside the Case
Probe Cable Connector
Output Changeover
Switch
Range Changeover
Switch
ROM Socket
Output and Power Terminal Blocks
Display Substrate
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3
(3) Model 6332 View with the Case
72
60
128
116
78
17
103
16
1
30
4-φ4.5 Hole
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4
(4) Model 6332D View with the Case
72
60
128
116
78
17
103
16
1
30
4-φ4.5 Hole
12 26
40
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5
System Configuration Example
Probe (Sold Separately)
Probe Cable (Sold Separately)
Display (Only for 6332D)
AC Adapter (Optional)
Output Cable (Not Provided)
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6
Connecting the Probe Cable to the Main Unit
<Caution>
- Make sure to cut the power supply to the main unit before connecting the probe cable (sold
separately).
- The probe cable must be wired separately from the power line.
Match the concave part of the main unit connector with the convex part of the cable connector (4-pin), and
click them in (not a screw type).
Main Unit Connector
Cable Connector (4-pin)
Connecting the Probe Cable to the Probe
<Caution>
- Make sure to cut the power supply to the main unit before connecting the probe and the probe
cable (do not supply power until both are connected).
- Match the concave part of the cable connector (5-pin) with the convex part of the probe connector.
Connect the probe and probe cable by rotating the screw portion of the cable connector.
Cable Connector (5-pin)
(Probe: Model 0963-00 shown for reference)
A
A
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7
Installing the Data ROM
<Caution>
- Make sure to cut the power supply to the main unit before installing the Data ROM.
- Install the correct Data ROM that corresponds to the probe number.
- Position the Data ROM in the correct orientation.
- After confirming that the Data ROM is properly set, use the flat-blade screwdriver to rotate the
cam 90 degrees clockwise to lock it in.
Match the notches
Data ROM
Enlarged view of cam
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8
Switching Output (Setting Current/Voltage and Output Range)
<Caution>
- Make sure to cut the power supply to the main unit before switching the current/voltage output.
- Output can be set by either voltage output (0 to 5V) or current output (4 to 20mA).
(The factory default setting is provided with current output.)
1. Current / Voltage output can be switched by the DIP switch.
2. Setting of the output range can be made by the rotary switch (setting can be changed also while
the power is supplied to the main unit).
3. Output range can be selected from the following five (5) air velocity ranges. Select the optimum
range according to the air velocity range to be measured.
Example of Output when 2m/s
No. Output Range (m/s) Current Output (mA) Voltage Output (V)
0 0 ~ 2.00 20 5
1 0 ~ 5.00 10.4 2
2 0 ~ 10.00 7.2 1
3 0 ~ 25.0 5.28 0.4
4 ~ 9 0 ~ 50.0 4.64 0.2
4
20
0
10.0
2.0
7.2
Current
Output (mA)
1
5
0
10.0
2.0
Air Velocity
(m/s)
< Relation between Air Velocity and Current/Voltage Output (for Setting No.2) >
Voltage
Output (V)
Air Velocity
(m/s)
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9
Output Changeover
DIP Switch
Range Changeover
Rotary Switch
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10
Connecting Output and Power Supply
<Caution>
- Pay attention to the polarity of power supply when connecting.
- Power supply voltage must be DC 12 to 24V.
(*1) FG: Frame Ground -------- Connect to ground (earthing).
(*2) NC: No Connection ------- Connection is not required.
FG Terminal
DC
-
IN
Term.
-
DC
-
IN Term.
+
OUT Ter
m
.
-
FG (*1)
Power SupplyInput (-)
Power SupplyInput (+)
Signal Output (-)
Signal Output (+)
<NC> (*2)
OUT Ter
m
.
+
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11
Measurement Method
1. Using the Uni-directional Probe (Model 0962-00, 0963-00)
These probes have directivity characteristics which require the direction mark to be faced against the
airflow for measurement. When you are not sure of the airflow direction, slowly rotate the probe in the
horizontal direction, and select the point where the air velocity reading is maximum.
2. Using the Omni-directional Probe (Model 0964-01/02, 0965-00, 0965-01/03/04/07/08)
These probes have uniform sensitivity 360 degrees horizontally. They only need to be set vertical to the
airflow direction for measurement, regardless of the orientation in the horizontal direction.
<Caution>
The probe employs a set of air velocity sensor and temperature compensation sensor to compensate the air
velocity change corresponding to the air temperature change.
In order to obtain this compensation effect, it is required that both the air velocity sensor and the
temperature compensation sensor are exposed to the airflow to be measured under the same temperature
condition. (Refer to the dimensional drawings of probes shown on page 16, 17 to locate the air velocity
sensor and the temperature compensation sensor on each probe.)
Airflow
Direction Mark
Airflow
1. Uni-directional Probe 2. Omni-directional Probe
Probe Direction
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12
Optional Accessory
1. Display Unit (Model 6332-01)
Number of digits and range of air velocity value to be shown on the display corresponds to the setting of
the air velocity output range as shown below.
No. Output Range [m/s] Display Range [m/s]
0 0 ~ 2.00 0.00 ~ 2.00
1 0 ~ 5.00 0.00 ~ 5.00
2 0 ~ 10.00 0.00 ~ 10.00
3 0 ~ 25.0 0.0 ~ 25.0
4 ~ 9 0 ~ 50.0 0.0 ~ 50.0
To add the display substrate to a unit without a display (Model 6332):
- Position the substrate in the correct orientation, and fix the substrate with the supplied two screws
carefully not to bend the connection pins.
- Replace the case without the display window with the case equipped with the display window
(supplied with the display unit).
Supplied Screws
Display Substrate
* The side with the number
must come to the right.
* Pay close attention not to bend
the pins when inserting.
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13
2. AC Adapter (Model 6332-02)
<Caution>
Do not connect the AC plug to the power receptacle before connecting the DC plug to the main unit.
Failure to observe the above may cause short circuit and damage to the AC adapter.
Observe the polarity and firmly insert the DC plug into the main unit as shown below. Then connect the
AC plug to the power receptacle.
* The one which is
marked is minus.
DC Plug
DC-IN Term.
-
DC-IN Term. +
1
2
To AC Receptacle
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