PA3855.006NL [PULSE]

High Frequency Wire Wound Transformers;
PA3855.006NL
型号: PA3855.006NL
厂家: PULSE A TECHNITROL COMPANY    PULSE A TECHNITROL COMPANY
描述:

High Frequency Wire Wound Transformers

变压器
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中文:  中文翻译
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High Frequency Wire Wound Transformers  
EP13Plus Platforms - SMT PA3855/56.XXXNLT  
Industry standard footprint, 30% more power  
handling  
Power Range: Up to 70W  
Height: 14.0mm Max  
Footprint: 17.7mm x 14.5mm Max  
Topology: Forward and Flyback  
Part Number  
PA3855.001NL  
Electrical Specifications @25°C – Operating Temperature -40°C to 130°C 1  
Schematic  
Pri. Inductance  
(1-3)  
54uH +/- 10%  
(1-3) w/  
(10,9,6,7,4,5) shorted  
Lk. Inductance  
0.67uH Max  
8
3
1
(1-3)  
(9-6)  
(10-7)  
(4-5)  
Pri-Sec  
1125.0  
(1-3)  
62  
6.5  
DCR  
mΩ Max  
1
6.5  
120  
2250  
Hi-Pot  
K1 Factor  
Pri. Inductance  
Vdc  
Flyback Transformer  
48uH +/- 10%  
0.67uH Max  
(1-3) w/  
(10,9,6,7,4,5) shorted  
Lk. Inductance  
DCR  
5.33  
2
1
1
(1-3)  
(9-6)  
(10-7)  
(4-5)  
Pri-Sec  
1000.0  
(1-3)  
62  
10  
10  
120  
2250  
PA3855.002NL  
PA3855.003NL  
PA3855.004NL  
mΩ Max  
Hi-Pot  
K1 Factor  
Vdc  
Flyback Transformer  
Pri. Inductance  
41uH +/- 10%  
0.67uH Max  
(1-3) w/  
(10,9,6,7,4,5) shorted  
Lk. Inductance  
DCR  
2.67  
1
1
1
(1-3)  
(9-6)  
(10-7)  
(4-5)  
Pri-Sec  
854.2  
(1-3)  
62  
20  
23  
120  
2250  
mΩ Max  
Hi-Pot  
K1 Factor  
Pri. Inductance  
Vdc  
Flyback Transformer  
21uH +/- 10%  
0.3uH Max  
(1-3) w/  
(10,9,6,7,4,5) shorted  
Lk. Inductance  
DCR  
4.33  
3
1
1
(1-3)  
(9-6)  
(10-7)  
(4-5)  
Pri-Sec  
538.5  
31  
10  
10  
180  
2250  
mΩ Max  
Hi-Pot  
K1 Factor  
Vdc  
Flyback Transformer  
power.pulseelectronics.com  
http://www.power.pulseelectronics.com/contact  
P719. I (03/20)  
1
High Frequency Wire Wound Transformers  
EP13Plus Platforms - SMT PA3855/56.XXXNLT  
Part Number  
Electrical Specifications @25°C – Operating Temperature -40°C to 130°C 1  
Schematic  
Pri. Inductance  
(1-3)  
21uH +/- 10%  
(1-3) w/  
(10,9,6,7,4,5) shorted  
Lk. Inductance  
0.3uH Max  
3
1
1
(1-3)  
(9-6)  
(10-7)  
(4-5)  
Pri-Sec  
583.3  
(1-3)  
31  
14  
14  
180  
2250  
PA3855.005NL  
DCR  
mΩ Max  
2.25  
Hi-Pot  
K1 Factor  
Pri. Inductance  
Vdc  
Flyback Transformer  
21uH +/- 10%  
0.3uH Max  
(1-3) w/  
(10,9,6,7,4,5) shorted  
Lk. Inductance  
DCR  
1.33  
0.89  
1
1
(1-3)  
(9-6)  
(10-7)  
(4-5)  
Pri-Sec  
583.3  
(6-9)  
31  
58  
58  
180  
2250  
PA3855.006NL  
PA3855.008NL  
PA3856.001NL  
mΩ Max  
Hi-Pot  
K1 Factor  
Pri. Inductance  
Vdc  
Flyback Transformer  
2.5uH +/- 10%  
0.2uH Max  
(6-9 w/  
0.25  
1
Lk. Inductance  
(1,2,3,5) shorted  
(1-2)  
(3-5)  
(6,7-9,10)  
Pri-Sec  
208.3  
80  
100  
9
DCR  
mΩ Max  
0.25  
Hi-Pot  
K1 Factor  
Pri. Inductance  
2250  
Vdc  
Flyback Transformer  
(1-3)  
(1-3) w/  
(10,9,6,7,4,5) shorted  
100  
uH +/- 15%  
Lk. Inductance  
DCR  
0.4uH Max  
6
3
1
1
(1-3)  
(9-6)  
(10-7)  
(4-5)  
Pri-Sec  
27.8  
29.4  
6.5  
6.5  
120  
2250  
mΩ Max  
Hi-Pot  
K1 Factor  
Vdc  
Forward Transformer  
Pri. Inductance  
(1-3)  
(1-3) w/  
(10,9,6,7,4,5) shorted  
100uH +/- 15%  
0.4uH Max  
Lk. Inductance  
DCR  
4
2
1
1
(1-3)  
(9-6)  
(10-7)  
(4-5)  
Pri-Sec  
27.8  
29.4  
10  
10  
120  
2250  
PA3856.002N  
mΩ Max  
Hi-Pot  
K1 Factor  
Vdc  
Forward Transformer  
power.pulseelectronics.com  
http://www.power.pulseelectronics.com/contact  
P719. I (03/20)  
2
High Frequency Wire Wound Transformers  
EP13Plus Platforms - SMT PA3855/56.XXXNLT  
Part Number  
Electrical Specifications @25°C – Operating Temperature -40°C to 130°C 1  
Schematic  
Pri. Inductance  
(1-3)  
100uH +/- 15%  
(1-3) w/  
(10,9,6,7,4,5) shorted  
Lk. Inductance  
0.4uH Max  
1.71  
1
1
(1-3)  
(9-6)  
(10-7)  
(4-5)  
Pri-Sec  
27.8  
29.4  
31.6  
36  
120  
2250  
DCR  
PA3856.003NL  
mΩ Max  
0.86  
Hi-Pot  
K1 Factor  
Vdc  
Forward Transformer  
Pri. Inductance  
(1-3)  
(1-3) w/  
(10,9,6,7,4,5) shorted  
128uH +/- 25%  
0.15uH Max  
Lk. Inductance  
DCR  
1.6  
1.2  
1
1
(1-3)  
(9-6)  
(10-7)  
(4-5)  
Pri-Sec  
41.7  
17.6  
14.4  
17  
410  
2250  
PA3856.004NL  
PA3856.005NL  
PA3856.006NL  
PA3856.007NL  
mΩ Max  
Hi-Pot  
K1 Factor  
Vdc  
Forward Transformer  
Pri. Inductance  
(1-3)  
(1-3) w/  
(10,9,6,7,4,5) shorted  
128uH +/- 15%  
0.15uH Max  
Lk. Inductance  
DCR  
1.14  
2
1
1
(1-3)  
(9-6)  
(10-7)  
(4-5)  
Pri-Sec  
41.7  
17.6  
31.6  
36  
410  
2250  
mΩ Max  
Hi-Pot  
K1 Factor  
Pri. Inductance  
Vdc  
Forward Transformer  
(1-3)  
(1-3) w/  
(10,9,6,7,4,5) shorted  
128uH +/- 15%  
0.15uH Max  
Lk. Inductance  
DCR  
1
1
0.47  
0.82  
(1-3)  
(9-6)  
(10-7)  
(4-5)  
Pri-Sec  
41.7  
17.6  
105.6  
122  
426  
2250  
mΩ Max  
Hi-Pot  
K1 Factor  
Pri. Inductance  
Vdc  
Forward Transformer  
(1-2)  
(1-2) w/  
(7,8,9,10) shorted  
200uH +/- 25%  
0.36uH Max  
Lk. Inductance  
0.91  
0.91  
1
1
(1-2)  
(3-4)  
(8-7)  
60  
75  
90  
DCR  
mΩ Max  
(10-9)  
Pri-Sec  
33.3  
90  
2250  
Hi-Pot  
K1 Factor  
Vdc  
Forward Transformer  
power.pulseelectronics.com  
http://www.power.pulseelectronics.com/contact  
P719. I (03/20)  
3
High Frequency Wire Wound Transformers  
EP13Plus Platforms - SMT PA3855/56.XXXNLT  
Notes:  
1. The temperature of the component (ambient plus temperature rise) must be within the 4. The standard pin-numbering for this package is indicated in the below mechanical  
stated operating temperature range.  
2. For flyback topology applications, it is necessary to ensure that the transformer will not  
drawing showing pin 1 on the lower right corner and the numbers proceeding clockwise  
to pin 10 on the upper right corner.  
saturate in the application. The peak flux density (Bpk) should remain below 2700Gauss. 5. Optional Tape & Reel packaging can be ordered by adding a “T” suffix to the part num-  
To calculate the peak flux density use the following formula:  
Bpk (Gauss) = K1_Factor * Ipk(A)  
ber (i.e. (PA2160.001NL becomes PA2160.001NLT). Pulse complies with industry standard  
tape and reel specification EIA481.  
3. In high volt-μsec applications, it is important to calculate the core loss of the trans-  
former. Approximate transformer core loss can be calculated as:  
CoreLoss (W) = 3.84E-14 * (Freq_kHz)1.63 * (ΔB_Gauss)2.63  
where ΔB can be calculated as:  
For Flyback Topology: ΔB = K1_Factor * ΔI(A)  
For Forward Topology: ΔB = K1_Factor * Volt-μsec  
Mechanical  
PM2160.XXXNL  
PART NUMBER  
power.pulseelectronics.com  
http://www.power.pulseelectronics.com/contact  
P719. I (03/20)  
4
High Frequency Wire Wound Transformers  
EP13Plus Platforms - SMT PA3855/56.XXXNLT  
TAPE & REEL INFO  
W
A
K
0
P1  
G
Direction of tape  
SURFACE MOUNTING TYPE, REEL/TAPE LIST  
REEL SIZE (mm)  
TAPE SIZE (mm)  
QTY  
PCS/REEL  
130  
PART NUMBER  
A
G
P1  
W
32  
K0  
PA3855/56.XXXNLT  
Ø330  
32.4  
24  
13.2  
For More Information  
Pulse Worldwide  
Headquarters  
15255 Innovation Drive Ste 100  
San Diego, CA 92128  
U.S.A.  
Pulse Europe  
Pulse Electronics GmbH  
Am Rottland 12  
58540 Meinerzhagen  
Germany  
Pulse China Headquarters  
Pulse North China  
Room 2704/2705  
Super Ocean Finance Ctr.  
2067 Yan An Road West  
Shanghai 200336  
China  
Pulse South Asia  
3 Fraser Street  
0428 DUO Tower  
Singapore 189352  
Pulse North Asia  
1F., No.111 Xiyuan Rd  
Zhongli City  
Taoyuan City 32057  
Taiwan (R.O.C)  
Pulse Electronics (ShenZhen) CO., LTD  
D708, Shenzhen Academy of  
Aerospace Technology,  
The 10th Keji South Road,  
Nanshan District, Shenzhen,  
P.R. China 518057  
Tel: 858 674 8100  
Fax: 858 674 8262  
Tel: 49 2354 777 100  
Fax: 49 2354 777 168  
Tel: 86 755 33966678  
Fax: 86 755 33966700  
Tel: 86 21 62787060  
Fax: 86 2162786973  
Tel: 65 6287 8998  
Fax: 65 6280 0080  
Tel: 886 3 4356768  
Fax: 886 3 4356820  
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, 2020. Pulse Electronics, Inc. All rights reserved.  
power.pulseelectronics.com  
http://www.power.pulseelectronics.com/contact  
P719. I (03/20)  
5

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