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XC6213B402NR 参数 Datasheet PDF下载

XC6213B402NR图片预览
型号: XC6213B402NR
PDF下载: 下载PDF文件 查看货源
内容描述: 高速LDO稳压器,低ESR帽。兼容,超小型封装 [High Speed LDO Regulators, Low ESR Cap. Compatible, Ultra Small Package]
分类和应用: 稳压器
文件页数/大小: 28 页 / 1015 K
品牌: TOREX [ TOREX SEMICONDUCTOR ]
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XC6213
Series
■ELECTRICAL
CHARACTERISTICS
●XC6213B
series
PARAMETER
Output Voltage
SYMBOL
V
OUT(E)
CONDITIONS
I
OUT
=30mA, CE=V
IN
V
IN
=V
OUT(T)
+1.0V,
V
OUT(T)
=1.20~1.45V, CE=V
IN
V
IN
=V
OUT(T)
+1.0V,
V
OUT(T)
=1.50~2.95V, CE=V
IN
V
IN
=V
OUT(T)
+1.0V,
V
OUT(T)
=3.00~4.05V, CE=V
IN
V
IN
=V
OUT(T)
+1.0V,
V
OUT(T)=
4.10~5.00V, CE=V
IN
V
IN
=V
OUT(T)
+1.0V,
1mA≦I
OUT
≦100mA,
CE=V
IN
I
OUT
= 30mA, CE=V
IN
I
OUT
=100mA, CE=V
IN
V
IN
=V
OUT(T)
+1.0V, CE=V
IN
V
IN
=V
OUT(T)
+1.0V∼6.0V, CE=V
SS
V
OUT(T)
+1.0V≦V
IN
≦6V
I
OUT
=30mA, CE=V
IN
-
I
OUT
=30mA, CE=V
IN
- 40℃≦Topr≦85℃
V
IN
=[V
OUT(T)+
1.0 V] +0.5V
p-pAC
I
OUT
=50mA, f=10kHz, CE=V
IN
V
IN
=V
OUT(T)
+ 1.0V, CE=V
IN
-
-
V
CE
= V
IN
=V
OUT(T)
+ 1.0V
V
IN
=V
OUT(T)
+1.0V, V
CE
=V
SS
25
-
-
2.0
-
-
-
1.3
-
- 0.1
- 0.1
MIN.
V
OUT(T)
x 0.98
100
120
150
200
-
TYP.
V
OUT(T)
-
-
-
-
15
E-1
E-2
35
0.01
0.01
-
±100
60
50
-
-
-
-
50
0.10
0.20
6.0
-
-
-
6.0
0.25
0.1
0.1
MAX.
V
OUT(T)
x 1.02
-
-
mA
-
-
50
mV
mV
mV
μA
μA
%/V
V
ppm/℃
dB
mA
V
V
μA
μA
-
Ta=25℃
UNITS
CIRCUITS
V
Maximum Output Current
I
OUTMAX
Load Regulation
Dropout Voltage
Supply Current
Stand-by Current
Line Regulation
Input Voltage
△V
OUT
Vdif1
Vdif2
I
SS
Istby
△V
OUT
△V
IN
�½�
V
OUT
V
IN
Output Voltage
△V
OUT
Temperature Characteristics
△Topr
�½�
V
OUT
Ripple Rejection Rate
Short Circuit Current
CE ‘H’ Level Voltage
CE ‘L’ Level Voltage
CE ‘H’ Level Current
CE ‘L’ Level Current
NOTE:
*1:
*2:
*3:
*4:
*5:
*6:
*7:
V
OUT(T):
Setting output voltage
V
OUT(E)
= Effective output voltage
PSRR
Ishort
V
CEH
V
CEL
I
CEH
I
CEL
(i.e. the output voltage when “V
OUT (T)
+ 1.0V” is provided at the V
IN
pin while maintaining a certain I
OUT
value).
Vdif = { V
IN1
(*5)
– V
OUT1
(*4)
}
V
OUT1
= A voltage equal to 98% of the output voltage whenever an amply stabilized I
OUT
{ V
OUT(T)
+ 1.0V } is input.
V
IN1
= The input voltage when V
OUT1
appears as input voltage is gradually decreased.
Unless otherwise stated, (V
IN
= V
OUT(T)
+ 1.0V).
V
OUT(T)
<1.45V = Minimum: V
OUT(T)
-30mV, Maximum: V
OUT(T)
+30mV
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