SMT Power Inductor
Shielded Drum Core - PA4333.XXXNLT Series
Height: 3.2mm Max
Footprint: 7.4mm x 6.8mm Max
Current Rating: up to 14A
Inductance Range: 0.22uH to 22uH
Shielded magnetic circuit reduces leakage flux, Fe
base metal core enables high saturation and
metalized core termination results in excellent shock
resistance.
Electrical Specifications @ 25°C - Operating Temperature -40°C to +125°C
Part
Number
PA4333.221NLT
PA4333.331NLT
PA4333.471NLT
PA4333.681NLT
PA4333.751NLT
PA4333.102NLT
PA4333.152NLT
PA4333.222NLT
PA4333.332NLT
PA4333.472NLT
PA4333.682NLT
PA4333.822NLT
PA4333.103NLT
PA4333.153NLT
PA4333.223NLT
Inductance
1MHz, 1V
Rated
Current
Min.
Self-Resonant
Frequency
uH ±20%
0.22
0.33
0.47
0.68
0.75
1.0
1.5
2.2
3.3
4.7
6.8
8.2
10
15
22
A
14.00
12.40
11.00
9.50
9.50
9.50
6.00
5.65
4.60
3.80
3.20
3.10
3.00
2.50
1.70
MHz
108
78
71
57
55
41
37
24
23
15
14
13
12
11
8
Notes:
1. Actual temperature of the component during system operation (ambient plus temperature
rise) must be within the standard operating range.
2. The rated current as listed is either the saturation current (@ 20°C) or the heating current
(∆ T ~ 40°C) depending on which value is lower.
3. The saturation current is the current at which the initial inductance drops approximately
30% at the stated ambient temperature. This current is determined by placing the component in the specified ambient environment and applying a short duration pulse current (to
eliminate self-heating effect) to the component.
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Germany 49 7032 7806 0
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Singapore 65 6287 8998
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DC
Resistance
MAX.
mΩ
4.0
5.1
6.6
8.7
8.7
8.7
13.8
18.0
30.5
43.5
64.0
69.0
77.4
127.0
177.0
Heating
Current
TYP.
Saturation
Current
(20�C)
∆ T ≈ 40�C
mΩ
3.3
4.3
5.5
7.3
7.3
7.3
11.5
15.0
25.5
36.5
53.5
58.0
64.5
106.0
148.0
A
18.00
17.00
16.50
12.80
11.50
9.50
8.00
6.50
4.60
3.80
3.20
3.20
3.00
3.00
1.70
A
14.00
12.40
11.00
9.50
9.50
9.50
6.00
5.65
4.60
3.80
3.20
3.10
3.00
2.50
2.00
4. The heating current is the DC current required to raise the component temperature by
approximately 40°C. Take note that the components’ performance varies depending on
the system condition. It is suggested that the component be tested at the system level, to
verify the temperature rise of the component during system operation.
5. Maximum voltage across terminals to be limited to
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