9G1212G1021 SANYO DENKI - SANACE FANS, 9G1212G1021 Datasheet - Page 10

AXIAL FAN, 120MM, 12VDC, 980mA

9G1212G1021

Manufacturer Part Number
9G1212G1021
Description
AXIAL FAN, 120MM, 12VDC, 980mA
Manufacturer
SANYO DENKI - SANACE FANS
Datasheet

Specifications of 9G1212G1021

External Height
120mm
External Width
120mm
External Depth
38mm
Current Type
DC
Supply Voltage
12VDC
Flow Rate
137CFM
Noise Rating
49dBA
Power Connection Type
Lead Wires
Bearing Type
Ball
Flow Rate - Imperial
137CFM
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
TECHNICAL MATERIAL
Characteristics calculation procedure
and description
It is very difficult to measure air flow and static pressure. In
fact, the performance curve may vary greatly according to the
type of measuring equiment.
The commonly-used type of measuring equipment is a wind
tunnel using a Pitot tube. Sanyo Denki uses a very precise
method using double chamber equipped with many nozzles.
Static pressure
1mm H
1mm H
1inch H
1Pa=0.102mm H
1inch H
8
Measuring air flow and static pressure
Conversion Table
U-shaped tube
Ps
2
2
2
2
O=0.0394inch H
O=9.8Pa(Pascal)
O=25.4mm H
O=249Pa
Double chamber measuring equipment
Chamber A
2
O
2
O
Pn
2
O
Fan to be measured
U-shaped tube
Nozzle
Chamber B
Auxiliary blower
Throttle device
BM
Q=60A ¯
where
Q = air flow(m
A = cross sectional area of nozzle=−
D = nozzle diameter
γ : Air specific gravity(kg/m
g = acceleration of gravity = 9.8(m/sec
Pn = differential pressure(mm H
Ps = static pressure(mm H
The measuring equipment using double chanber is method to be
calculated from air flow goes through nozzle and differential pres-
sure between pressure of inside of chamber (Ps) and atomos-
pheric pressure by measuring differetial pressure between air
intake and exhaust of nozzle (Ph).
Air flow
1m
1CFM=0.0283m
1m
1CFM=0.472R/sec
1R/sec=0.06m
¯ v = average air flow velocity of nozzle= 2g ─
(γ=1.2kg/m
3
3
/min=35.31ft
/min=16.67R/sec
v(A)
3
3
/min)
/min
3
3
/min
3
/min(CFM)
at 20℃, 1 atmospheric pressure)
2
O)
3
2
O)
4
π
D
(m
2
2
2
Pn
γ
(m/sec)

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