High Isolation Power Transformers
Toroid Platform SMD
Push Pull Converter Transformer
4KVrms Isolation (550Vrms Continuous)
Reinforced insulation, 8.5mm Creepage
Sidecar Package
Patented:
US Pat 9,646,755
Electrical Specifications @ 25°C - Operating Temperature -40°C to +125°C
Leakage Inductance
Capacitance
DCR (1-3)
DCR (4-6)
(1-3) with (4-6) shorted (1, 2, 3) to (4, 5, 6)
(Ω MAX)
(Ω MAX)
(μH MAX)
(pF MAX)
0.30
0.33
0.30
0.35
0.35
0.40
0.30
0.30
0.30
0.40
0.65
0.25
0.52
0.65
0.90
0.30
0.22
0.42
Part
Number
Inductance
(1-3)
(μH
±35%)
MAX (1-3)
1
(V-μsec Max)
24
24
24
27
27
27
24
24
24
Turns Ratio
(1:3) (6:4)
1CT : 1CT
1CT : 2CT
2CT : 1CT
3CT : 4CT
3CT : 5CT
3CT : 8CT
4CT : 3CT
8CT : 3CT
8CT :9CT
Isolated Voltage
(Vrms)
PH9384.011NL
538
0.8
20
PH9384.012NL
538
0.6
30
PH9384.021NL
538
1.6
15
PH9384.034NL
680
0.6
30
PH9384.035NL
680
0.7
30
PH9384.038NL
538
0.7
30
PH9384.043NL
538
0.8
20
PH9384.083NL
538
2.0
15
PH9384.089NL
538
0.6
30
Notes:
1. The ET Max is calculated to limit the core loss and temperature rise at 200KHz based on
a bipolar flux swing of 130mT Peak.
2. For Push-Pull topology, where the voltage is applied across half the primary winding
turns, the ET needs to be derated by 50% for the same flux swing.
3. The applied ET may need to be further derated for higher frequencies based on the 4.
temperature rise which results from the core and copper losses
A. To calculate total copper loss (W), use the following formula:
5.
2
Copper Loss (W) = Irms_Primary * DCR_Primary + Irms_
Secondary
2
*DCR_Secondary
B. To calculate total core loss (W), use the following formula:
6.
2.43
2.5
Core Loss (W) = 2.72E-12 * (Frequency in kHz) *(130 * [ET/ET Max])
4000
Where ET is the applied Volt Second, ET Max is the rated Volt Second
for 130mT flux swing
C. To calculate temperature rise, use the following formula:
Temperature Rise (°C) = 154 * (Core Loss(W) + Copper Loss (W))
The AEC-Q200 temperature and humidity operational life testing was completed using
a dielectric strength test of 4000Vdc.
Optional Tape & Reel packing can be ordered by adding a “T” suffix to the part number
(i.e. PH9384.012NL becomes PH9384.012NLT). Pulse complies to industry standard tape
and reel specification EIA481.
The “NL” suffix indicates an RoHS-compliant part number.
Mechanical
PH9384.XXXNL
1
Schematic
6
2
5
3
PRIMARY
SECONDARY
4
Weight
...........................0.85grams
Tape & Reel
........................400/reel
Tray
......................................55/tray
Dimensions: mm
Unless otherwise specified,
all tolerances are
±0.25
1
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High Isolation Power Transformers
Toroid Platform SMD
Application
PH9384NL is a series of high isolation power supply transformer drivers. Intended to operate in a fixed duty cycle Push
Pull topology, it is a part of a low cost solution for delivering lower power (up to 3W) from a low voltage source. A
typical implementation would be an isolated RS-485/RS-232 power supply driver circuit, the design is compatible with the
MAXIM™ MAX253 IC.
A schematic diagram for the Push Pull converter topology is given below.
V
IN
V
CC
D1
PH9384
V
OUT
DRIVER
IC
D2
GND
For a fixed 50% duty cycle mode of operation, the output voltage is simply determined by the input voltage and turns
ratio. So, with the available turns ratios, a variety of output voltages can be selected. PH9384.034NL has been certified by
UL to comply with UL60950-1 2 edition with reinforced insulation for a working voltage up to 300Vac. 7mm creepage and
3000Vrms isolation voltage is guaranteed to meet this requirement. The actual isolation voltage (550Vrms) and creepage
(8.5mm) capability of the design exceeds these UL ratings.
The remainder of the PH9384.XXXNL series was not included in the UL certification but are fully complaint with the
requirements for reinforced insulation.
MAXIM is a registered trademark of Maxim Integrated Products.
For More Information
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Aerospace Technology,
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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, 2018. Pulse Electronics, Inc. All rights reserved.
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