THT POWER INDUCTORS
Toroid - Bare Coil Series
Low cost solutions for VRM, Game Console
and Consumer applications
Current Range:
up to 48A
Inductance Range:
5µH to 12µH
Frequency Range:
up to 1MHz
Custom configurations are possible
Electrical Specifications @ 25°C — Operating Temperature -40°C to +130°C
Reference Data
Part*
Number
Inductance
@ Irated
(µH TYP)
0.48
Irated
2
(A)
30.5
DCR
(mΩ MAX)
2.0
Inductance
@0A
DC
(µH ±20%)
0.60
Build
H1
K1
Design Calculation Data
K2
K3
K4
K5
PG0122
Material 18
T60-18
3x18GA,4T
Material 18
T60-18
3x17GA,5T
Material 52
T44-52
1x16GA,5T
Material 8/90
T50-8/90
1x17GA,7T
Material 52
T44-52
1x16GA,7T
Material 52
T68-52
2x16GA,7T
Material 52
T68-52
1x16GA,6T
Material 52
T44-52
1x18GA,7T
Material 52
T44-52
1x16GA,8T
Material 52
T50-52
3x22GA,9T
Material 52
T44-52
1x17GA,10T
Material 52
T68-52
1x16GA,14T
Material 52
T80-52
1x16GA,17T
1.3
134
8.2E-03
1.2
2.3
47
PG0123
0.49
48.0
0.85
0.86
1.7
107
8.2E-03
1.2
2.3
47
PA0690
0.50
22.5
1.5
0.88
2.4
202
3.1E-03
1.3
2.1
80
PA0235L
0.67
22.5
2.6
0.86
2.8
128
6.4E-03
1.1
2.4
64
PA0689
0.80
21.5
2.0
1.70
3.3
144
3.1E-03
1.3
2.1
80
PA0430L
0.86
37.5
1.6
1.96
2.1
80
8.8E-03
1.3
2.1
42
P1967L
0.93
23.8
3.8
1.44
1.8
93
8.8E-03
1.3
2.1
42
PG0116
1.02
14.9
4.2
1.70
3.3
144
3.1E-03
1.3
2.1
80
PA0489L
1.05
19.0
2.7
2.24
3.8
126
3.1E-03
1.3
2.1
80
PG0112
1.10
13.8
7.0
2.50
3.6
99
4.2E-03
1.3
2.1
64
P1715L
1.81
14.3
5.0
3.50
4.7
101
3.1E-03
1.3
2.1
80
PA0431L
3.22
20.5
5.5
7.80
4.2
40
8.8E-03
1.3
2.1
42
PA0432L
5.00
20.5
7.5
12.10
4.2
25
1.4E-02
1.3
2.1
32
*NOTE:
RoHS compliant parts are being introduced. Please contact Pulse for RoHS compliant part availability. If available, order part by adding the suffix “NL” to the
part number (i.e. PG0122 becomes PG0122NL).
USA 858 674 8100
•
Germany 49 7032 7806 0
•
Singapore 65 6287 8998
•
Shanghai
86 21 54643211 / 2
•
China 86 755 33966678
•
Taiwan 886 3 4641811
www.pulseeng.com
81
SPM2007 (7/07)
THT POWER INDUCTORS
Toroid - Bare Coil Series
Notes from Tables
1. The temperature of the component (ambient plus temperature rise)
must be within the stated operating temperature range.
2. The rated current is the current that will cause the temperature
of the part to increase by 40°C with 3.6 volt * µsec across the
component and 100LFM of forced air cooling.
3. To determine the inductance of a component at a different operating
current, use the graph below for the appropriate material type.
4. In high volt-µsec applications additional heating may occur due to
core losses in the inductor which may necessitate derating the
current in order to limit the temperature rise of the component. In
order to determine the approximate total losses (or temperature rise)
of the component in particular applications, the following formulas
can be used.
Estimated Temperature Rise:
Trise
= AirFlowFactor * K5 * (Coreloss(W) + Copperloss(W))
.833
(C)
Where
AirFlowFactor = 1 (no air flow), 0.53 (100LFM), 0.39 (200LFM), 0.35
(300LFM), 0.30 (400LFM)
CopperLoss
= Irms
2
* DCR_Typical (mΩ) / 1000
DCR_Typical (mΩ) = .85 * DCR_Max(from table)
CoreLoss
= K2 * (Freq_kHz)
K3
* (ΔB/2000)
K4
ΔB
= K1 * Volt-µsec
Mechanical
Dimensions (in/mm)
Part No.
PG0122
PG0123
PA0690
PA0235L
PA0689
PA0430L
P1967L
PG0116
PA0489L
PG0112
P1715L
PA0431L
PA0432L
A
.807
20,50
.807
20,50
.625
15,90
N/A
.625
15,90
.874
22,20
.906
23,00
.571
14,50
.604
15,30
.630
16,00
.610
15,50
.874
22,20
.980
24,90
B
.374
9,50
.413
10,50
.345
8,80
.400
10,20
.345
8,80
.374
9,50
.492
12,50
.276
7,00
.323
8,20
.374
9,50
.325
8,30
.374
9,50
.440
11,20
C
.748
19,00
.748
19,00
.545
13,80
.660
16,80
.545
13,80
N/A
.906
23,00
.571
14,50
.556
14,10
.630
16,00
N/A
N/A
.980
24,90
D
.126
3,20
.126
3,20
.129
3,30
.150
3,80
.129
3,30
.250
6,40
.130
3,30
.126
3,20
.157
4,00
.126
3,20
.130
3,30
.250
6,40
.250
6,40
E
.098
2,50
.106
2,68
.052
1,30
.050
1,30
.052
1,30
N/A
.055
1,40
.041
1,05
.048
1,20
.063
1,60
.045
1,10
.054
1,40
.054
1,40
F
.354
9,00
.354
9,00
.300
7,60
.300
7,60
.300
7,60
.245
6,20
.300
7,60
.276
7,00
.250
6,40
.295
7,50
.300
7,60
.240
6,10
.310
7,90
Percent of Intial Inductance
120
100
80
60
40
20
0
0
10
20
30
40
50
60
Material -8/90 (35µ)
Material -18 (55µ)
Material -52 (75µ)
70
80
90 100 110 120
C
MAX
A
MAX
B
MAX
D
NOM
E
MAX
F
NOM
Schematic
1
Dimensions:
Inches
mm
2
Inductance vs Magnetizing Force
H-DC (Oe) = H1 * Current (A)
USA 858 674 8100
•
Germany 49 7032 7806 0
•
Singapore 65 6287 8998
•
Shanghai
86 21 54643211 / 2
•
China 86 755 33966678
•
Taiwan 886 3 4641811
www.pulseeng.com
82
SPM2007 (7/07)