PA4470.005NL [PULSE]
High Frequency Wire Wound Transformers;型号: | PA4470.005NL |
厂家: | PULSE A TECHNITROL COMPANY |
描述: | High Frequency Wire Wound Transformers 变压器 |
文件: | 总3页 (文件大小:463K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
High Frequency Wire Wound Transformers
ER7.5 Platforms - SMT - PA4470.XXXNL
Power Range: Up to 1.8 W
Height: 6.0 mm Max
Footprint: 9.5 mm x 8.0 mm Max
Topology: Flyback
1
Pulse PN
Schematic
Electrical Specifications @25°C - Operating Temper ature -40°C to 130° C
Pri. Inductance
Lk. Inductance
(4-3)
(4-3)
216
uH +/- 25%
3.5
uH Max
5
4
w/ (5,6,7,8) shorted
33-57v
200kHz
3.3v/0.9W
3.3v/0.9W
7.43
1
1
DCR
(4-3)
(2-1)
(5-6)
(7-8)
Pri-Sec
7187
2.6
2.72
0.11
0.12
1650
6
7
3
2
PA4470.001NL
Ohms Max
10v/50mA
2.86
8
1
Hi-Pot
K1 Factor
Vdc
Flyback Transformer
Pri. Inductance
Lk. Inductance
(4-3)
(4-3)
216
uH +/- 25%
uH Max
5
4
3.5
w/ (5,6,7,8) shorted
(4-3)
33-57v
200kHz
5.0v/0.9W
5.0v/0.9W
5.2
2.0
1
1
DCR
2.6
1.8
0.32
0.32
1650
3
2
6
7
PA4470.002NL
PA4470.003NL
PA4470.004NL
(2-1)
(5-6)
(7-8)
Pri-Sec
7187
Ohms Max
10v/50mA
8
1
Hi-Pot
K1 Factor
Vdc
Flyback Transformer
Pri. Inductance
Lk. Inductance
(4-3)
(4-3)
216
uH +/- 25%
uH Max
5
4
3.5
w/ (5,6,7,8) shorted
(4-3)
33-57v
200kHz
12v/0.9W
2.17
0.83
1
1
DCR
2.6
2.72
1.2
1.2
1650
3
2
6
7
(2-1)
(5-6)
(7-8)
Pri-Sec
7187
Ohms Max
10v/50mA
12v/0.9W
8
1
Hi-Pot
K1 Factor
Pri. Inductance
Lk. Inductance
Vdc
Flyback Transformer
(4-3)
(4-3)
21.8
0.5
uH +/- 25%
uH Max
5
4
w/ (5,6,7,8) shorted
(4-3)
10-14v
200kHz
3.3v/0.9W
3.3v/0.9W
2.89
2.86
1
1
DCR
0.3
1.6
0.11
0.12
1650
3
2
6
7
(2-1)
(5-6)
(7-8)
Pri-Sec
2357
Ohms Max
10v/50mA
8
1
Hi-Pot
K1 Factor
Vdc
Flyback Transformer
Power.PulseElectronics.com
P847.D (08/20)
1
High Frequency Wire Wound Transformers
ER7.5 Platforms - SMT - PA4470.XXXNL
1
Electrical Specifications @25°C - Operating Temper ature -40° C to 130° C
Schematic
Pulse PN
Pri. Inductance
Lk. Inductance
(4-3)
(4-3)
21.8
uH +/- 25%
0.5
uH Max
5
4
w/ (5,6,7,8) shorted
10-14v
200kHz
5v/0.9W
5v/0.9W
1.6
2.0
1
1
DCR
(4-3)
(2-1)
(5-6)
(7-8)
Pri-Sec
2357
0.3
1.6
0.15
0.16
1650
3
2
6
7
PA4470.005NL
Ohms Max
10v/50mA
8
1
Hi-Pot
K1 Factor
Vdc
Flyback Transformer
Pri. Inductance
Lk. Inductance
(4-3)
(4-3)
21.8
0.5
uH +/- 25%
uH Max
5
4
w/ (5,6,7,8) shorted
(4-3)
10-14v
200kHz
12v/0.9W
12v/0.9W
0.67
0.83
1
1
DCR
0.3
1.6
1.15
1.2
3
2
6
7
PA4470.006NL
(2-1)
(5-6)
(7-8)
Pri-Sec
2357
Ohms Max
10v/50mA
8
1
Hi-Pot
K1 Factor
1650
Vdc
Flyback Transformer
Notes:
1. The temperature of the component (ambient plus temperature rise) must be within
the stated operating temperature range.
2. For flyback topology applications, it is necessary to ensure that the transformer will
not saturate in the application. The peak flux density (Bpk) should remain below
2600Gauss. To calculate the peak flux density use the following formula:
Bpk (Gauss) = K1_Factor * Ipk(A)
4. Optional Tape & Reel packaging can be ordered by adding a “T” suffix to the part
number (i.e. (PA4470.001NL becomes PA4470.001NLT). Pulse complies with industry
standard tape and reel specification EIA481. The tape and reel for this product has a
width (W=24mm), pitch (Po=16mm) and depth (Ko=5.8mm).
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)
Power.PulseElectronics.com
2
P847.D (08/20)
High Frequency Wire Wound Transformers
ER7.5 Platforms - SMT - PA4470.XXXNL
Mechanical
PA4470.XXXNL
8
5
9.5 MAX
9.70
7.50
6.6
1
4
8X 0.6
1.75
3X 1.75 (=5.25)
8X 1.00
1.75
3X 1.75 (=5.25)
8.0 MAX
7.8 MAX
SUGGESTED PAD LAYOUT
6.0 MAX
0.13
8 SURFACES
8X 0.5 0.2
TAPE & REEL INFO
B
A
N
G
SURFACE MOUNTING TYPE, REEL/TAPE LIST
REEL SIZE (mm)
TAPE SIZE (mm)
QTY
PCS/REEL
700
0
0
0
A
1
0
A
B
B
G
N
E
F
P
P
P
W
T
K
K
PA4470.XXXNLT Ø330
Notes:
9.4
N/A
8.3
12
100
N/A
11.5
N/A
4
N/A
24
N/A
5.8
3.3
1. Inductance is measure, where applicable, with both primary windings connected in series (2 to 5, with 3 and 4 shorted).
2. Leakage inductance is measured with both primary windings connected in series (where applicable) with all other windings shorted.
Power.PulseElectronics.com
P847.D (08/20)
3
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