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date
02/10/2020
page
1 of 5
SERIES: CFM-92 │ DESCRIPTION: DC AXIAL FAN
92 x 92 mm frame
high fan speed for greater air flow
dual ball bearing construction
auto restart protection standard on all models
MODEL
input
voltage
range
(Vdc)
CFM-9225-13*
12
6~13.8
CFM-9225-23*
24
16~26.4
rated
speed
air
flow1
static
pressure2
noise
typ
(A)
max
(A)
max
(W)
typ
(RPM)
(CFM)
(inch H2O)
max
(dBA)
0.40
0.5
6
4,200
96.06
0.37
49.8
0.24
0.32
6.72
4,200
96.06
0.37
49.8
1. At 0 inch H20 static pressure.
2. At 0 CFM airflow.
*. Discontinued CFM-9225-13-11, CFM-9225-23-10, CFM-9225-23-11, CFM-9225-23-20, and CFM-9225-23-22 models.
PART NUMBER KEY
N
Notes:
input
power
TI
rated
(Vdc)
input
current
N
U
•
•
•
•
ED
FEATURES
O
CFM-9225 - X 3 - XX - CXX
Input Voltage
1 = 12 Vdc
2 = 24 Vdc
D
IS
C
Base Number
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Reserved for Custom
Configurations
Fan Signals
10 = no signals
11 = rotation detector signal
20 = tachometer signal
22 = tachometer signal / PWM control signal
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CUI Devices │ SERIES: CFM-92 │ DESCRIPTION: DC AXIAL FAN
date 02/10/2020 │ page 2 of 5
INPUT
operating input voltage
current
12 Vdc input models
24 Vdc input models
power
12 Vdc input models
24 Vdc input models
starting voltage
at 25°C
12 Vdc input models
24 Vdc input models
conditions/description
at 25°C, after 10 minutes
at 0 inch H2O, see performance curves
static pressure
at 0 CFM, see performance curves
noise
at 1 m
PROTECTIONS / SIGNALS1
conditions/description
auto restart protection
available on all models
rotation detector
available on “11” models
tachometer signal
available on “20” and “22” models
PWM control signal
available on “22” models
N
1. See application notes for details.
parameter
conditions/description
insulation resistance of frame
at 500 Vdc between frame and positive terminal
safety approvals
0.40
0.24
0.5
0.32
A
A
4.80
5.76
6
6.72
W
W
Vdc
Vdc
min
typ
max
units
3,780
4,200
4,620
RPM
96.06
CFM
inch H2O
0.37
48.5
49.8
dBA
min
typ
max
units
min
typ
max
units
10
MΩ
at 500 Vac, 60 Hz, 1 minute between frame and
positive terminal
5
mA
UL/cUL 507, TUV (EN 62368-1)
EN 55022:2010+AC:2011 Class B, EN 61000-32:2014, EN 61000-3-3:2013, EN 55024:2010
IS
C
EMI/EMC
Vdc
Vdc
O
dielectric strength
units
13.8
26.4
TI
parameter
SAFETY & COMPLIANCE
max
12
24
N
rated speed
air flow
Notes:
typ
6
16
6
16
PERFORMANCE
parameter
min
ED
conditions/description
12 Vdc input models
24 Vdc input models
U
parameter
life expectancy
at 45°C, 15~65% RH
RoHS
yes
70,000
hours
ENVIRONMENTAL
max
units
operating temperature
parameter
conditions/description
min
-10
typ
70
°C
storage temperature
-40
70
°C
non-condensing
5
90
%
storage humidity
non-condensing
5
95
%
D
operating humidity
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CUI Devices │ SERIES: CFM-92 │ DESCRIPTION: DC AXIAL FAN
date 02/10/2020 │ page 3 of 5
ED
0.39
(mm H2O)
(Inch H2O)
PERFORMANCE CURVES
10.00
9.00
0.32
8.00
7.00
0.24
6.00
5.00
4.00
3.00
0.08
2.00
1.00
0.00
0.00
20.00
40.00
60.00
80.00
100.00
120.00 (CFM)
N
0.00
U
0.16
(CMM)
0.00
0.68
MECHANICAL
1.36
2.04
2.72
conditions/description
motor
4 pole DC brushless
bearing system
ball bearing
direction of rotation
counter-clockwise viewed from front of fan blade
dimensions
92 x 92 x 25.4
material
PBT (UL94V-0)
weight
12 Vdc input models
24 Vdc input models
units: mm [inch]
N
IS
C
wire: UL 1007, 24 AWG
O
MECHANICAL DRAWING
min
TI
parameter
WIRE CONNECTIONS
Wire Color
Function
Red
+Vin
Black
-Vin
1
FG Signal
White1
RD Signal
Blue1
PWM
ōŢţŦŭ
D
Yellow
Note:
3.40
1. Wires only present on versions with output signals.
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typ
max
units
mm
96.3
97.0
g
g
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CUI Devices │ SERIES: CFM-92 │ DESCRIPTION: DC AXIAL FAN
date 02/10/2020 │ page 4 of 5
APPLICATION NOTES
N
U
Figure 1 Current Limit Protection
ED
Auto Restart Protection/Current Limit Protection
When the fan motor is locked, the device will cut off the drive current within two to six seconds and restart automatically
after a few seconds. If the lock situation is continued, the device will work on a repeated cycle of cut-off and restart until
the lock is released. (See Figure 1 below).
TI
Lock Sensor/Rotation Detector
Lock Sensor is used to detect if the fan motor is operating or stopped. Alarm High: the output will be logical low when fan
is operating and be logical high when fan motor is locked. (See Figures 2~3 below).
Figure 3 RD Signal Output Circuit:
Open Collector
Ic=5mA max
N
Figure 2 Alarm High
Output Waveform
O
Pulse Sensor/Tachometer Signal/FG
Pulse Sensor is for detecting the rotational speed of the fan motor. At locked rotor condition, the signal stops cycling and
the output is fixed at VoH or VoL (See Figures 4~5 below).
Figure 5 FG Signal Output Circuit:
Open Collector
IS
C
Figure 4 Output Waveform
Ic=10mA max
D
PMW Control Signal
A speed control lead can be provided that will accept a PWM signal from the customer circuit to vary the speed of the fan.
The change in speed is linear by changing the Duty-Cycle of the PWM. Open collector type and pull-up voltage is changed
by maximum operating voltage and sink current by consuming current. (See Figure 6 below).
Figure 6 Duty Cycle
Vs=4~5 V
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CUI Devices │ SERIES: CFM-92 │ DESCRIPTION: DC AXIAL FAN
date 02/10/2020 │ page 5 of 5
REVISION HISTORY
rev.
description
date
08/15/2016
initial release
updated datasheet
1.02
discontinued CFM-9225-13-11, CFM-9225-23-10, CFM-9225-23-11,
CFM-9225-23-20, and CFM-9225-23-22 models
01/29/2018
1.03
updated to be certified to EN 62368-1 safety standard
07/09/2019
1.04
brand update
ED
1.0
1.01
07/27/2017
02/10/2020
D
IS
C
O
N
TI
N
U
The revision history provided is for informational purposes only and is believed to be accurate.
CUI Devices offers a one (1) year limited warranty. Complete warranty information is listed on our website.
CUI Devices reserves the right to make changes to the product at any time without notice. Information provided by CUI Devices is believed to be accurate and reliable. However, no
responsibility is assumed by CUI Devices for its use, nor for any infringements of patents or other rights of third parties which may result from its use.
CUI Devices products are not authorized or warranted for use as critical components in equipment that requires an extremely high level of reliability. A critical component is any
component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or
effectiveness.
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