PG0426101NL [PULSE]

SMT POWER INDUCTORS Flat Coils; SMT功率电感扁平线圈
PG0426101NL
型号: PG0426101NL
厂家: PULSE A TECHNITROL COMPANY    PULSE A TECHNITROL COMPANY
描述:

SMT POWER INDUCTORS Flat Coils
SMT功率电感扁平线圈

功率感应器
文件: 总2页 (文件大小:88K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
SMT POWER INDUCTORS  
Flat Coils - PG0426NL Series  
Height: 3.±mm Max  
Footprint: 7.5mm x 7.2mm Max  
Current Rating: 62Apk  
RoHS compliant  
Low DC Resistance  
High temperature core material, no thermal aging below 152°C  
Electrical Specifications @ 25°C — Operating Temperature -40°C to +130°C 1  
Inductance  
@0ADC  
(μH ±±20)  
Saturation2  
Current Isat  
(A)  
Heating3  
Current IDC  
(A)  
Core Loss4  
Factor  
K2  
6
DCR (mΩ)  
Part  
Number  
TYP  
MAX  
PG0426.101NL  
PG0426.151NL  
PG0426.201NL  
PG0426.221NL  
PG0426.331NL  
PG0426.471NL  
PG0426.681NL  
PG0426.821NL  
PG0426.102NL  
PG0426.152NL  
2.12  
2.15  
2.±2  
2.±±  
2.33  
2.47  
2.68  
2.8±  
1.22  
1.52  
1.3  
±.2  
±.2  
±.2  
3.±  
3.±  
5.±  
7.8  
7.8  
11.5  
1.5  
±.±  
±.±  
±.±  
3.4  
3.4  
5.4  
8.2  
8.2  
11.8  
62  
57  
46  
42  
34  
±6  
±5  
±4  
±±  
18  
34.5  
±6.2  
±6.2  
±6.2  
±2.2  
±2.2  
15.5  
13.2  
13.2  
9.2  
44.4  
42.2  
53.3  
58.6  
6±.8  
89.4  
122.6  
99.3  
1±1.1  
153.6  
Schematic  
Mechanical  
.295  
7,50  
MAX  
.071  
1,80  
1
2
.276  
.118  
3,00  
7,00  
PG0426.XXXNL  
Date Code  
Country of Origin  
MAX  
.146  
3,70  
SUGGESTED PAD LAYOU  
T
.126  
3,20  
MAX  
.134  
3,40  
.472  
12,00  
.630 ± .012  
16,00 ± 0,30  
Weight......................2.6 grams  
Tape & Reel ..............1422/reel  
.280  
7,10  
Inches  
Dimensions:  
mm  
Unless otherwise specified,  
.212  
2,±5  
all tolerances are ±  
USER DIRECTION OF FEED  
TAPE & REEL LAYOUT  
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  
P649.B (4/27)  
SMT POWER INDUCTORS  
Flat Coils - PG0426NL Series  
Notes from Tables  
1. The temperature of the component (ambient plus temperature 4. Core loss approximation is based on published core data:  
Core Loss = K1 * (f)1.33 * (K±ΔI)±.51  
rise) must be within the standard operating temperature range.  
±. The saturation current, ISAT, is the current at which the component  
inductance drops by 320 (typical) at an ambient temperature of  
±5°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.  
Where: Core Loss = in Watts  
K1= 8.75E-1±  
f = switching frequency in kHz  
K1 & K2 = core loss factors  
ΔI = delta I across the component in Ampere  
3. The heating current, IDC, is the DC current required to raise the  
component temperature by approximately 42°C. The heating cur-  
rent is determined by mounting the component on a typical PCB  
and applying current for 32 minutes. The temperature is mea-  
sured 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.  
K2ΔI = one half of the peak to peak flux density  
across the component in Gauss  
5. Unless otherwise specified, all testing is made at  
122kHz, 2.1VAC  
.
6. Optional Tape & Reel packaging can be ordered by adding a "T"  
suffix to the part number (i.e. PG24±6.121NL becomes  
PG24±6.121NLT). Pulse complies to industry standard tape and  
reel specification EIA481.  
Inductance vs Current Characteristics  
Typical Core Loss vs Peak Flux Density  
1.40  
1.0  
PG0426.102NL  
0.9  
100kHz  
200kHz  
300kHz  
400kHz  
500kHz  
1.20  
1.00  
0.8  
0.7  
PG0426.681NL  
0.6  
0.80  
0.60  
0.40  
0.5  
1MHz  
0.4  
PG0426.331NL  
0.3  
PG0426.201NL  
0.2  
0.20  
0.00  
PG0426.101NL  
0.1  
0.0  
100  
200  
300  
400  
500  
600  
700  
800  
900  
1000  
1
4
7
10 13 16 19 22 25 28  
3
34  
3
40 43 46 49 52  
DC BIAS (A)  
DELTA B (GAUSS)  
Delta B = (K2DI)  
Typical Component Temperature vs DC Bias Current  
120  
100  
80  
PG0426.102NL  
PG0426.681NL  
PG0426.331NL  
PG0426.471NL  
PG0426.151NL  
PG0426.201NL  
PG0426.221NL  
PG0426.152NL  
PG0426.101NL  
60  
40  
20  
0
0
6
12  
18  
24  
30  
36  
42  
48  
54  
DC BIAS (A)  
For More Information:  
Pulse Worldwide  
Headquarters  
Pulse  
Pulse China Headquarters  
B42±, Shenzhen  
Tech-Innovation International  
Tenth Kejinan Rd.  
High-Tech Industrial Park  
Nanshan District, Shenzhen  
China  
Pulse North China Pulse South Asia Pulse North Asia  
Room 1523  
152 Kampong Ampat  
#27-21/2±  
No. ±6  
Europe  
1±±±2 World Trade Dr. Einsteinstrasse 1  
XinYin Building  
No. 888 YiShan Rd.  
Shanghai ±22±33  
China  
Kao Ching Rd.  
Yang Mei Chen  
Tao Yuan Hsien  
Taiwan, R. O. C.  
San Diego, CA 9±1±8  
U.S.A.  
www.pulseeng.com  
D-71283 Herrenberg  
Germany  
KA Centre  
Singapore 3683±4  
Tel: 858 674 8122  
Fax: 858 674 8±6±  
Tel: 49 723± 7826 2  
Fax: 49 723± 7826 1± Fax: 86 755 33966722  
Tel: 86 755 33966678  
Tel: 86 ±1 54643±11/± Tel: 65 6±87 8998  
Fax: 86 ±1 54643±12  
Fax: 65 6±82 2282  
Tel: 886 3 4641811  
Fax: 886 3 4641911  
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, ±227. Pulse Engineering, Inc. All rights reserved.  
www.pulseeng.com  
P649.B (4/27)  

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