参数资料
型号: AS1339-BWLT
厂商: ams
文件页数: 20/26页
文件大小: 0K
描述: IC CONV BUCK 650MA 16-WLP
标准包装: 1
应用: 转换器,WCDMA、NCDMA 功率放大器应用
输入电压: 2.7 V ~ 5.5 V
输出数: 2
输出电压: 0.8 V ~ 3.85 V
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 16-UFBGA,WLCSP
供应商设备封装: 16-WLP(2x2)
包装: 标准包装
其它名称: AS1339-BWLTDKR
AS1339
Datasheet - A p p l i c a t i o n I n f o r m a t i o n
Capacitor Selection for LDO’s
Input Capacitor
The capacitor for the LDO Input should have at least a value of the sum of the output capacitors of LDO1 and LDO2.
With a larger input capacitance and lower ESR a better noise rejection and line transient response can be achieved.
Output Capacitor
For the LDO outputs the capacitor value depends on the needed load current. For a stable operation with rated maxi-
mum load currents a minimum output capacitor of 1μF is recommended. At light loads of 10mA or less a 0.1μF capac-
itor is sufficient. With larger output capacitance a reduced output noise, improved load-transient response, better
stability and power-supply rejection can be achieved.
Table 7. Recommended Capacitors for the LDO’s
Name
C IN2 , C LDO1 ,
C LDO2
Part Number
C0402C104K4RAC
GRM155R61A105KE15
C
100nF
1μF
Voltage
16V
10V
Type
X7R
X5R
Size
0402
0402
Manufacturer
KEMET
Murata
Inductor Selection
For most applications the value of the external inductor should be in the range of 1.5μH to 4.7μH as the inductor value
has a direct effect on the ripple current. The selected inductor must be rated for its DC resistance and saturation cur-
rent. The inductor ripple current ( Δ I L ) decreases with higher inductance and increases with higher V IN to V OUT .
In Equation (EQ 3) the maximum inductor current in PWM mode under static load conditions is calculated. The satura-
tion current of the inductor should be rated higher than the maximum inductor current as calculated with Equation (EQ
4) . This is recommended because the inductor current will rise above the calculated value during heavy load tran-
sients.
The inductor current ripple Δ I L (see EQ 3) is defined by the slope of the current (dI / dt) (see EQ 1) multiplied by the
PFET on-time t ON (see EQ 2) .
Figure 51. Ripple Current Diagram
I L
I Lmax
I OUTmax
t ON
dI
dt
1/f
Δ I L
t
dI -
V IN – V OUT
---- = ----------------------------
dt L
(EQ 1)
t ON = DutyCycle × ---
V OUT
1
f
DutyCycle = -------------
V IN
(EQ 2)
Revision 1.05
19 - 25
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