XC6214
Series
8/23
PARAMETER
SYMBOL
CONDITIONS
MIN.
TYP.
MAX.
UNITS
CIRCUIT
Output Voltage
Maximum Output Current
Load Regulation
Dropout Voltage (*2)
Supply Current
V
OUT(E)
(*1)
I
OUT
max
△
V
OUT
Vdif
I
SS
△
V
OUT
△
V
IN
V
OUT
V
IN
=3.5V, I
OUT
=50mA
V
IN
=3.5V, V
OUT
=V
OUT(E)
×
0.93
V
IN
=3.5V, 1mA
≦
I
OUT
≦
200mA
I
OUT
=500mA
V
IN
=3.5V
I
OUT
=50mA
3.5V
≦
V
IN
≦
6.0V
2.450
500
-
-
-
2.500
-
20
600
8
2.550
-
50
900
15
V
mA
mV
mV
μ
A
①
①
①
①
②
Line Regulation
-
0.05
0.20
%
/
V
①
Input Voltage
Output Voltage
V
IN
1.8
-
6.0
V
-
I
OUT
=50mA
- 40
℃≦
Topr
≦
85
℃
V
IN
=3.5V, V
OUT
=0V
Temperature Characteristics
Short-Circuit Current
△
V
OUT
△
Topr
V
OUT
-
+ 100
-
ppm
/℃
①
Ilim
-
50
-
mA
①
PARAMETER
SYMBOL
CONDITIONS
MIN.
TYP.
MAX.
UNITS
CIRCUIT
Output Voltage
Maximum Output Current
Load Regulation
Dropout Voltage (*2)
Supply Current
V
OUT(E)
(*1)
I
OUT
max
△
V
OUT
Vdif
I
SS
△
V
OUT
△
V
IN
V
OUT
V
IN
=4.0V, I
OUT
=50mA
V
IN
=4.0V, V
OUT
=V
OUT(E)
×
0.96
V
IN
=4.0V, 1mA
≦
I
OUT
≦
200mA
I
OUT
=500mA
V
IN
=4.0V
I
OUT
=50mA
4.0V
≦
V
IN
≦
6.0V
2.940
500
-
-
-
3.000
-
20
560
8
3.060
-
50
820
15
V
mA
mV
mV
μ
A
①
①
①
①
②
Line Regulation
-
0.05
0.20
%
/
V
①
Input Voltage
Output Voltage
V
IN
1.8
-
6.0
V
-
I
OUT
=50mA
- 40
℃≦
Topr
≦
85
℃
V
IN
=4.0V, V
OUT
=0V
Temperature Characteristics
Short-Circuit Current
△
V
OUT
△
Topr
V
OUT
-
+ 100
-
ppm
/℃
①
Ilim
-
50
-
mA
①
■
ELECTRICAL CHARACTERISTICS (Continued)
●
XC6214P252
Ta=25
℃
NOTE:
*1: V
OUT(E)
: Effective output voltage (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.)
*2: Vdif={V
IN1
(*4)
-V
OUT1
(*3)
}
*3: V
OUT1
= A voltage equal to 98% of the output voltage whenever an amply stabilized I
OUT
{V
OUT(T)+
1.0V} is input.
*4: V
IN1
=The Input Voltage when V
OUT1
appears as input voltage is gradually decreased.
*5:
Unless otherwise stated,
{
V
IN
=V
OUT(T)
+1.0V
}
●
XC6214P302
Ta=25
℃
NOTE:
*1: V
OUT(E)
: Effective output voltage (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.)
*2: Vdif={V
IN1
(*4)
-V
OUT1
(*3)
}
*3: V
OUT1
= A voltage equal to 98% of the output voltage whenever an amply stabilized I
OUT
{V
OUT(T)+
1.0V} is input.
*4: V
IN1
=The Input Voltage when V
OUT1
appears as input voltage is gradually decreased.
*5:
Unless otherwise stated,
{
V
IN
=V
OUT(T)
+1.0V
}