参数资料
型号: CPC9909DB
厂商: IXYS Integrated Circuits Division
文件页数: 6/12页
文件大小: 0K
描述: DEMO BOARD FOR CPC9909
应用说明: CPC9909 Design Considerations
标准包装: 1
电流 - 输出 / 通道: 350mA
输出及类型: 1,非隔离
特点: 可调光
输入电压: 90 ~ 265VAC
已供物品:
已用 IC / 零件: CPC9909
其它名称: CLA329
I NTEGRATED C IRCUITS D IVISION
2. Functional Description
Figure 1 Typical Application Circuit
8 - 550 V
CPC9909
V DD
V DD
V IN
V oltage
CPC9909
D1
Reg u lator
One Shot
R T
V oltage
Reference
R T Minim u m Off-Time
TRIG
Q
Q1
L1
-
S
Q
GATE
+
LD
P W MD
-
+
R
CS
C V DD
R T
GND
R SENSE
B u ck Config u ration
2.1 Overview
The CPC9909 drives the LEDs via a minimum
off-time, peak-current-limited, pulse-frequency
modulation scheme. This control scheme is inherently
stable, and the driver can be operated above a 50%
duty cycle without any open-loop instability or
sub-harmonic oscillations. Since the switching
frequency depends on the LED load current, it results
in a high efficiency operation.
2.2 LED Driver Theory of Operation
The typical application circuit is as shown in Figure 1
When PWMD is high, the control circuit is enabled and
The peak current limit threshold is set by the external
sense resistor, R SE N SE , and the internal voltage
threshold, V CS(high) . This internal voltage threshold can
also be set externally via the LD pin. The lower of
these two thresholds and R SE N SE set the peak current
in the inductor.
A soft start function can be implemented by ramping
up the DC voltage at the LD pin from 0V to V CS(high) at
the desired rate. To utilize the soft start function,
connect a resistor divider from V DD to ground and a
capacitor from the LD pin to ground, as shown in
Figure 2 Soft-Start Circuit
the gate driver turns on the external power MOSFET
CPC9909
51k Ω
(Q1), causing the inductor (L1) current to ramp up until
the voltage across the current sense resistor (R SE N SE )
exceeds V CS(high) . When the voltage at the CS pin
exceeds this threshold, the gate driver turns Q1 off.
Q1 remains off for the duration of the fixed minimum
V IN
CS
GND
GATE
R T
LD
V DD
P W MD
2.2k Ω
0.1 μ F
off-time. While the switch is off, the inductor continues
to deliver the current to the load though the diode
(D1). When the off-time expires, Q1 turns on again
until the peak current limit is reached, and the process
repeats.
6
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