PG0702NL [PULSE]

SMT Power Inductors;
PG0702NL
型号: PG0702NL
厂家: PULSE A TECHNITROL COMPANY    PULSE A TECHNITROL COMPANY
描述:

SMT Power Inductors

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SMT Power Inductors  
Round Wire Coils - PG0702NL Series  
Height: 8.0mm Max  
Footprint: 10.8mm x 9.2mm Max  
Saturation Current: up to 42.5A  
No thermal aging  
Electrical Specifications @ 25°C - Operating Temperature -40°C to +130°C1  
Saturation  
Current Isat (A TYP)  
Inductance2  
@ Irated  
(µH TYP)  
Irated3  
(A)  
Factor  
DCR4  
(mΩ)  
6%)  
Inductance  
@ 0ADC  
(µH 20%)  
Heating6  
Current IDC  
(A TYP)  
Core Loss7  
Factor  
K2  
Part  
Number  
(
25°C  
42.5  
43.0  
41.0  
32.0  
26.0  
15.9  
16.0  
8.4  
100°C  
33.5  
34.0  
31.7  
25.5  
20.3  
12.7  
12.5  
6.7  
PG0702.301NL  
PG0702.401NL  
PG0702.451NL  
PG0702.601NL  
PG0702.102NL  
PG0702.222NL  
PG0702.302NL  
PG0702.472NL  
PG0702.682NL  
0.24  
0.38  
0.41  
0.48  
0.80  
1.76  
42.5  
38.0  
38.0  
32.0  
26.0  
15.9  
12.4  
8.4  
0.68  
0.30  
0.40  
0.45  
0.60  
1.00  
2.20  
3.00  
4.70  
6.80  
47.0  
38.0  
38.0  
38.0  
26.1  
16.4  
12.4  
13.2  
9.6  
30.8  
27.4  
0.91  
0.91  
091  
30.8  
41.1  
1.76  
3.30  
5.90  
5.30  
7.70  
51.4  
90.5  
102.8  
161.0  
155.4  
2.90  
3.76  
5.44  
8.5  
8.5  
6.8  
Mechanical  
Schematic  
PG0702.XXXNL  
Part Number X (mm) Y (mm)  
PG0702.301NL 1.80 0.2 4.5 0.4  
PG0702.401NL 1.80 0.2 4.5 0.4  
PG0702.451NL 1.80 0.2 4.5 0.4  
PG0702.601NL 1.80 0.2 4.5 0.4  
PG0702.102NL 1.80 0.2 4.5 0.4  
PG0702.222NL 1.6 0.2 4.8 0.4  
PG0702.302NL 1.6 0.2 4.8 0.4  
PG0702.472NL 1.6 0.2 4.8 0.4  
PG0702.682NL 1.6 0.2 4.8 0.4  
Weight (TYP) ...................2.6grams  
Tray ....................................500/tray  
Dimensions: mm  
Unless otherwise specified,  
all tolerances are 0.25  
http://www.power.pulseelectronics.com/contact  
power.pulseelectronics.com  
P667.G (01/19)  
1
SMT Power Inductors  
Round Wire Coils - PG0702NL Series  
Notes:  
1. Actual temperature of the component (ambient plus temperature rise) must be within 7. Core Loss approximation is based on published core data:  
thestandard operating temperature range.  
Core Loss = K1 * (f)1.12 * (K2ΔI)2.17  
2. Inductance at Irated is a typical inductance value for the component taken at rated  
current.  
Where: Core Loss = in Watts  
K1 = 2.20E-11  
3. The rated current listed is the lower of the saturation current (@ 25°C) or the heating  
current depending on which value is lower.  
f = switching frequency in kHz  
K1 & K2 = core loss factors  
4. 4. The DCR of the part is measured at an ambient temperature of 20C 3C from point a  
and b as shown above on the mechanical drawing.  
ΔI = delta I across the component in Ampere  
K2*ΔI = one half of the peak to peak flux density  
5. The saturation current, ISAT, is the current at which the component inductance drops  
by 20% (typical) at an ambient temperature of 25°C. This current is determined by  
placing the component in the specified ambient environment and applying a short  
duration pulse current (to eliminate self-heating effects) to the component.  
6. The heating current, IDC, is the DC current required to raise the component tempera-  
ture byapproximately 40°C. The heating current is determined by mounting the  
component on a typical PCB and applying current for 30 minutes. The temperature  
is measured by placing the thermocouple on top of the unit under test. Take note  
that the component’s 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.  
across the component in Gauss  
8. Unless otherwise specified, all testing is made at 100kHz, 0.1VAC.  
9. Optional Tape & Reel packaging can be ordered by adding a “T” suffix to the part  
number (i.e. PG0702.401NL becomes PG0702.401NLT). Pulse complies to industry  
standard tape and reel specification EIA481. The tape and reel for this product has a  
width (W=24.0mm), pitch (Po=16mm) and depth (Ko=8.9mm).  
10. The core is a conductive material so care should be taken when mounting this  
component over an exposed via or if the voltage across the terminals exceeds 24V.  
Trickle current through the core material may generate additional losses and potential  
overheating. Please contact Pulse to discuss an alternative solution if required.  
0.7  
.682NL @ 100°C  
7.0  
.601NL @ 100°C  
0.6  
.682NL @ 25°C  
.601NL @ 25°C  
6.0  
0.5  
.472NL @ 100°C  
5.0  
.451NL @ 100°C  
.451NL @ 25°C  
.401NL @ 100°C  
.472NL @ 25°C  
0.4  
.401NL @ 25°C  
.301NL @ 100°C  
4.0  
.301NL @ 25°C  
0.3  
.302NL @ 100°C  
3.0  
.302NL @ 25°C  
.222NL @ 100°C  
0.2  
0.1  
0.0  
2.0  
.222NL @ 25°C  
.102NL @ 100°C  
1.0  
.102NL @ 25°C  
0.0  
0.00  
5.00  
10.00  
15.00  
20.00  
25.00  
30.00  
0
10  
20  
30  
40  
50  
DC BIAS (A)  
DC BIAS (A)  
For More Information  
Pulse Worldwide  
Pulse Europe  
Pulse Electronics GmbH  
Am Rottland 12  
58540 Meinerzhagen  
Germany  
Pulse China Headquarters  
Pulse Electronics (ShenZhen) CO., LTD  
D708, Shenzhen Academy of  
Aerospace Technology,  
The 10th Keji South Road,  
Nanshan District, Shenzhen,  
P.R. China 518057  
Pulse North China  
Room 2704/2705  
Super Ocean Finance Ctr. 0428 DUO Tower  
2067 Yan An Road West  
Shanghai 200336  
China  
Pulse South Asia  
3 Fraser Street  
Pulse North Asia  
1F., No.111 Xiyuan Rd  
Zhongli City  
Taoyuan City 32057  
Taiwan (R.O.C)  
Headquarters  
15255 Innovation Drive Ste 100  
San Diego, CA 92128  
U.S.A.  
Singapore 189352  
Performance warranty of products offered on this data sheet is limited to the parameters specified. Data is subject to change without notice. Other brand and product names mentioned herein may  
be trademarks or registered trademarks of their respective owners. © Copyright, 2019. Pulse Electronics, Inc. All rights reserved.  
http://www.power.pulseelectronics.com/contact  
power.pulseelectronics.com  
P667. G (01/19)  
2

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