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WS9441P Datasheet(PDF) 5 Page - Shenzhen Winsemi Microelectronics Co., Ltd

Part # WS9441P
Description  Non-isolated BuckOffline LED Driver
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Manufacturer  WINSEMI [Shenzhen Winsemi Microelectronics Co., Ltd]
Direct Link  http://www.winsemi.com
Logo WINSEMI - Shenzhen Winsemi Microelectronics Co., Ltd

WS9441P Datasheet(HTML) 5 Page - Shenzhen Winsemi Microelectronics Co., Ltd

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WS9441P Product Description
WINSEMI MICROELECTRONICS
WINSEMI MICROELECTRONICS
WINSEMI MICROELECTRONICS
WINSEMI MICROELECTRONICS
WINSEMI MICROELECTRONICS
Function Description
The WS9441P is a high performance non-isolated buck
converter specially designed for LED lighting. The device
integrates a 500V power MOSFET. With the help of
advanced constant current control and gate drive technology,
the
converter
achieves
excellent
constant
current
performance with very few external components. It does not
need auxiliary winding for powering the IC or voltage sensing,
hence the system size and cost is greatly reduced.
Start Up
After system powered on, the VCC pin capacitor is
charged up by the start up resistor. When the VCC pin
voltage reaches the turn on threshold, the internal circuits
start operating. The WS9441P integrates a 17V ZENER
diode to clamp the VCC voltage. Due to the ultra-low
operating current, the auxiliary winding is not needed to
supply the IC.
The typical value of the start-up current is 200uA (the
maximum value is 300uA). For the application of 176VAC—
264VAC, the start-up resistor can be calculated by the
equation:
K
I
V
R
MAX
ST
MIN
IN
ST
910
270
414
.
1
176
414
.
1
_
_
Two resistors in 1206 size SMD can be used in series.
VCC Capacitor Selection
The Vcc capacitor is used to bypass noise to IC, so that
to assure its stable operation, and should be as close as
possible to the chip.
A 1uF or above capacitor can be used in Vcc. If
selecting MLCC, the material of X7R will be used to satisfy
the stability of the capacity under high temperatures. Due to
external damage resulted from small volume and brittle
texture of MLCC, the Vcc is easy to leakage currents, which
will make the WS9441P unable to start. Strict control
measures are taken in its layout and productive process.
Constant Current Control
The WS9441P utilizes proprietary current control
method. It can achieve precise LED output current with a few
external components. Cycle by Cycle current sense is
adopted in WS9441P, the CS pin is connected to the current
sense comparator, and the voltage on CS pin is compared
with the internal 400mV reference voltage. The MOSFET will
be switched off when the voltage on CS pin reaches the
threshold. The CS comparator includes a 350ns leading edge
blanking time.
The peak inductor current is calculated by the equation:
)
(
400
mA
R
I
CS
PK
Where, RCS is the current sense resistor value.
The current in LED can be calculated by the equation:
)
(
2
mA
I
I
PK
LED
Where, IPK is the peak current of the inductor.
Freewheeling Diode
The diode will b
ear the reverse voltage equal to the
input voltage when the MOSFET is on. A 600V diode was
suggested to use. Besides, the operating frequency of
freewheeling diode is from 20K to 120 KHz, such ultra fast
recovery diodes as ES and ER whose Trr is less than 50ns are
good choice.
Input Electrolytic Capacitor
Input voltage should be considered in to the capacitor
pressure, and the common value is 400V.
In general, the capacity design can be calculated by the
following empirical equations:
90Vac~264Vac: 1W output uses1uF
buck electrolytic
capacitor;
176Vac~264Vac: 1W output uses 0.5uF buck electrolytic
capacitor.
Output Capacitor
Electrolytic capacitor is recommended to be used. Its
stable capacitance can improve the efficiency of power supply,
the LED ripple current and luminous efficiency.
Vovp voltage should be considered in output capacitor
pressure.


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