參數(shù)資料
型號: NCV8800SDW33R2
廠商: ON SEMICONDUCTOR
元件分類: 穩(wěn)壓器
英文描述: Synchronous Buck Regulator with 1.0 Amp Switch
中文描述: 2.5 A SWITCHING REGULATOR, 230 kHz SWITCHING FREQ-MAX, PDSO16
封裝: SOP-16
文件頁數(shù): 10/12頁
文件大?。?/td> 89K
代理商: NCV8800SDW33R2
NCV8800 Series
http://onsemi.com
10
The major advantage of constant frequency operation is
that the component selections, especially the magnetic
component design, become very easy. Oscillator frequency
is fixed at 200 kHz.
StartUp
After the NCV8800 is powered up, the error amplifier will
begin linearly charging the COMP pin capacitor. The COMP
capacitance and the source current of the error amplifier
determine the slew rate of COMP voltage. The output of the
error amplifier is connected internally to the inverting input
of the PWM comparator and it is compared with the divided
down output voltage FB1/FB2 at the noninverting input of
the PWM comparator. At the beginning of each switching
cycle, the oscillator output will set the PWM latch. This
causes the highside switch to turn on and the regulator
output voltage to ramp up.
When the divided down output voltage achieves a level set
by the COMP voltage, the highside switch will be turned
off. The V
2
control loop will adjust the highside switch
duty cycle as required to ensure the regulator output voltage
tracks the COMP voltage. Since the COMP voltage
increases gradually, Soft Start can be achieved.
Overcurrent Protection
The output switch is protected on both the high side and
low side. Current limit is set at 1.0 A (min).
Figure 9. 16 Lead SOW (4 Leads Fused), JA as
a Function of the Pad Copper Area (2 oz. Cu.
Thickness), Board Material = 0.0625 G10/R4
40
70
90
100
T
J
J
,
°
C
0
Copper Area (inch
2
)
0.5
1.0
1.5
2.0
3.0
80
60
50
2.5
Heat Sinks
A heat sink effectively increases the surface area of the
package to improve the flow of heat away from the IC and
into the surrounding air.
Each material in the heat flow path between the IC and the
outside environment will have a thermal resistance. Like
series electrical resistances, these resistances are summed to
determine the value of R
JA
:
RJA
RJC
RCS
where:
R
JC
= the junctiontocase thermal resistance,
R
CS
= the casetoheatsink thermal resistance, and
R
SA
= the heatsinktoambient thermal resistance.
R
JC
appears in the package section of the data sheet. Like
R
JA
, it too is a function of package type. R
CS
and R
SA
are
functions of the package type, heatsink and the interface
between them. These values appear in heat sink data sheets
of heat sink manufacturers.
RSA
(3)
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