參數(shù)資料
型號: NCP9001SNT1G
廠商: ON SEMICONDUCTOR
元件分類: 穩(wěn)壓器
英文描述: 1.5 MHz, 600 mA, High−Efficiency, Low Quiescent Current, Adjustable Output Voltage Step−Down Converter
中文描述: 1.2 A SWITCHING REGULATOR, 1800 kHz SWITCHING FREQ-MAX, PDSO5
封裝: LEAD FREE, TSOP-5
文件頁數(shù): 10/12頁
文件大?。?/td> 192K
代理商: NCP9001SNT1G
NCP9001
http://onsemi.com
10
APPLICATION INFORMATION
Output Voltage Selection
The output voltage is programmed through an external
resistor divider connected from V
OUT
to FB then to GND.
For low power consumption and noise immunity, the
resistor from FB to GND (R2) should be in the
[100 k
600 k] range. If R2 is 200 k given the V
FB
is 0.6 V,
the current through the divider will be 3.0 A.
The formula below gives the value of V
OUT
, given the
desired R1 and the R1 value:
VOUT
VFB
(1
R1
(eq. 2)
V
OUT
: Output Voltage (Volts)
V
FB
: Feedback Voltage = 0.6 V
R1: Feedback Resistor from V
OUT
to FB
R2: Feedback Resistor from FB to GND
Input Capacitor Selection
In PWM operating mode, the input current is pulsating
with large switching noise. Using an input bypass capacitor
can reduce the peak current transients drawn from the
input supply source, thereby reducing switching noise
significantly. The capacitance needed for the input bypass
capacitor depends on the source impedance of the input
supply.
The maximum RMS current occurs at 50% duty cycle
with maximum output current, which is IO, max/2.
For NCP9001, a low profile, low ESR ceramic capacitor
of 4.7 F should be used for most of the cases. For effective
bypass results, the input capacitor should be placed as close
as possible to the V
IN
pin.
Table 1. List of Input Capacitor
Murata
GRM188R60J475KE
GRM21BR71C475KA
Taiyo Yuden
JMK212BY475MG
TDK
C2012X5ROJ475KB
C1632X5ROJ475KT
Output L
C Filter Design Considerations
The NCP9001 is built in 1.5 MHz frequency and uses
current mode architecture. The correct selection of the
output filter ensures good stability and fast transient
response.
Due to the nature of the buck converter, the output L
C
filter must be selected to work with internal compensation.
For NCP9001, the internal compensation is internally fixed
and it is optimized for an output filter of L = 2.2 H and
C
OUT
= 10 F.
The corner frequency is given by:
1
2
L
COUT
fc
(eq. 3)
1
2
2.2 H
10 F
34 kHz
The device is intended to operate with inductance values
between 1.0 H and maximum of 4.7 H.
If the corner frequency is moved, it is recommended to
check the loop stability depending on the output ripple
voltage accepted and output current required. For lower
frequency, the stability will be increased; a larger output
capacitor value could be chosen without critical effect on
the system. On the other hand, a smaller capacitor value
increases the corner frequency and it should be critical for
the system stability. Take care to check the loop stability.
The phase margin is usually higher than 45
°
.
Table 2. L
C Filter Example
Inductance (L)
Output Capacitor (C
out
)
1.0
H
22
F
2.2
H
10
F
4.7
H
4.7
F
Inductor Selection
The inductor parameters directly related to device
performances are saturation current and DC resistance and
inductance value. The inductor ripple current (I
L
)
decreases with higher inductance:
VOUT
L
fSW
I
L
peak to peak inductor ripple current
L inductor value
f
SW
switching frequency
The saturation current of the inductor should be rated
higher than the maximum load current plus half the ripple
current:
IL
1
VOUT
VIN
(eq. 4)
IL(MAX)
IO(MAX)
IL
2
(eq. 5)
I
L(MAX)
Maximum inductor current
I
O(MAX)
Maximum Output current
The inductor’s resistance will factor into the overall
efficiency of the converter. For best performances, the DC
resistance should be less than 0.3 for good efficiency.
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