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CKPP0807
Energy storage
Contain high - frequency ferrite
Comparatively large rated current
Product Info
Product Uses
Power supples,DC-DC converters,TVs,VTRs,Computers
Computer Peripherals, Home Elecyric Appliance,Electronic toys and games
Product Parameters
Sample Apply
Series
Model
PDF
Inductance
(μH)
CommonMode
(Ω)
Impedance
(Ω)
Inductance/
Impedance tolerance
Test conditions
DCR
(mΩ)
Isat
TYP(A)
Irms
TYP(A)
Use
State
Temperature
(℃)
Length
(mm)
Width
(mm)
Height
(mm)
Package
Shield
Material
3D Image
Drum Core Inductor
CKPP0807-10mH/K
10000
-
-
±10%
1kHz/0.25V
35000
0.074
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-8.2mH/K
8200
-
-
±10%
1kHz/0.25V
30600
0.081
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-6.8mH/K
6800
-
-
±10%
1kHz/0.25V
23000
0.089
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-5.6mH/K
5600
-
-
±10%
1kHz/0.25V
20400
0.099
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-4.7mH/K
4700
-
-
±10%
1kHz/0.25V
14700
0.110
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-3.9mH/K
3900
-
-
±10%
1kHz/0.25V
12900
0.120
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-3.3mH/K
3300
-
-
±10%
1kHz/0.25V
9740
0.130
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-2.7mH/K
2700
-
-
±10%
1kHz/0.25V
8540
0.140
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-2.2mH/K
2200
-
-
±10%
1kHz/0.25V
7560
0.160
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-1.8mH/K
1800
-
-
±10%
1kHz/0.25V
6810
0.170
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-1.5mH/K
1500
-
-
±10%
1kHz/0.25V
4500
0.190
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-1.2mH/K
1200
-
-
±10%
1kHz/0.25V
3980
0.210
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-1mH/K
1000
-
-
±10%
1kHz/0.25V
2720
0.230
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-820uH/K
820
-
-
±10%
1kHz/0.25V
2330
0.260
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-680uH/K
680
-
-
±10%
1kHz/0.25V
2070
0.280
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-560uH/K
560
-
-
±10%
1kHz/0.25V
1610
0.310
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-470uH/K
470
-
-
±10%
1kHz/0.25V
1440
0.340
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-390uH/K
390
-
-
±10%
1kHz/0.25V
1280
0.370
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-330uH/K
330
-
-
±10%
1kHz/0.25V
900
0.410
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-270uH/K
270
-
-
±10%
1kHz/0.25V
860
0.450
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-220uH/K
220
-
-
±10%
1kHz/0.25V
760
0.50
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-180uH/K
180
-
-
±10%
1kHz/0.25V
570
0.550
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-150uH/K
150
-
-
±10%
1kHz/0.25V
510
0.600
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-120uH/K
120
-
-
±10%
1kHz/0.25V
360
0.670
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-100uH/K
100
-
-
±10%
1kHz/0.25V
320
0.740
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-82uH/K
82
-
-
±10%
1kHz/0.25V
270
0.810
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-68uH/K
68
-
-
±10%
1kHz/0.25V
210
0.890
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-56uH/K
56
-
-
±10%
1kHz/0.25V
190
0.990
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-47uH/K
47
-
-
±10%
1kHz/0.25V
170
1.1
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-39uH/K
39
-
-
±10%
1kHz/0.25V
150
1.2
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-33uH/K
33
-
-
±10%
1kHz/0.25V
140
1.3
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-27uH/K
27
-
-
±10%
1kHz/0.25V
100
1.4
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Drum Core Inductor
CKPP0807-22uH/K
22
-
-
±10%
1kHz/0.25V
80
1.6
-
consumer
In Production
-25~85
9.5
9.5
9
DIP
N
NiZn Ferrite
Notes
All data is tested under the condition of ambient temperature of 25℃.
Inductance test condition is 100kHz, 1.0V.
Saturation current: the actual DC current value applied when the inductance value drops by 30% from its initial value.
Temperature rise current: the actual DC current value applied to raise the product temperature by ΔT40℃ (Ta=2030℃).
Special reminder: Circuit design, component layout, printed circuit board (PCB) size and thickness, and heat dissipation system can all affect the product temperature.
Please make sure to verify the heat dissipation status of the product in the final application.
Save
Storage conditions for the product in packaging: Temperature of 5-40°C, relative humidity ≤ 70%.
If removed for use, please seal the remaining product in a plastic bag and store it according to the above conditions to prevent oxidation of the terminals (electrodes) and affect the soldering status.
It is not recommended to store the product for more than 2015 months as the terminals may degrade under other influences, leading to poor solderability.
Please do not store the product in environments with high temperature, high humidity, dust, or corrosive gases.
Handle with care and avoid damage caused by dropping or improper handling of the product.
Grease on hands can reduce solderability, so direct contact with terminals should be avoided.
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