
6/20 
XC6413/XC6414 
Series
PARAMETER 
SYMBOL 
CONDITIONS 
MIN. 
TYP. 
MAX. 
UNIT
CIRCUIT
Output Voltage (* 2,3) 
Maximum Output Current 
(XC6413, 0.9 ~ 1.7V) 
V
ROUT(E)
IR
OUT
=30mA 
×
0.98
V
ROUT(T)
×
1.02 
V 
1 
I
ROUTMAX
V
IN
 = 3.1V 
150 
- 
- 
mA 
1 
Maximum Output Current 
 (XC6413, 1.8 ~ 5.3V) 
I
ROUTMAX
When V
ROUT
≦
 2.1V, V
IN
=3.1V 
300 
- 
- 
mA 
1 
Maximum Output Current 
 (XC6414, 0.9 ~ 2.4V) 
I
ROUTMAX
V
IN
 = V
ROUT(T)
+
2.0V 
400 
- 
- 
mA 
1 
Maximum Output Current 
 (XC6414, 2.5 ~ 4.9V) 
I
ROUTMAX
V
IN
= V
ROUT
(T)
+
2.0V 
500 
- 
- 
mA 
1 
Load Regulation 
△
V
ROUT
Vdif1 
Vdif2 
1mA 
≦
 I
ROUT
≦
 100mA 
I
ROUT
=30mA 
I
ROUT
=100mA 
- 
15 
E-1 
E-2 
50 
mV 
mV 
mV 
1 
1 
1 
Dropout Voltage (*4) 
Supply Current 
(FV / FX / FY / FZ Series) 
I
DD
V
IN
=V
ROUT(T)
+
1.0V 
- 
35 
70 
μ
A 
2 
Line Regulation 
△
V
ROUT
△
V
IN
V
OUT
V
IN
△
V
ROUT
△
Topr
VR
OUT
V
ROUT(T)
+
1.0V 
≦
V
IN 
≦
10.0V 
I
ROUT
=30mA 
I
ROUT
=30mA 
-40
℃
 < Topr< 85
℃
V
IN
=[V
ROUT(T)
+
1.0]V
+
0.5Vp-pAC
When V
ROUT(T)
<1.25V 
→
V
IN
=2.25V+0.5Vp-pAC 
I
ROUT
=50mA, f=10kHz 
- 
0.01 
0.20 
% / V
1 
Input Voltage 
2.0 
- 
10.0 
V 
- 
Output Temperature  
Characteristics 
- 
±
100 
- 
ppm /
℃
1 
Ripple Rejection Rate 
PSRR 
- 
65 
- 
dB 
3 
Current Limit 
(XC6413, V
ROUT
 1.8V or more)
IRlim 
VR
OUT 
< 2.1V
 時(shí)
 V
IN
=3.1V 
300 
380 
- 
mA 
1 
Current Limit 
(XC6413, V
ROUT
 1.7V or more)
IRlim 
V
IN
=3.1V 
- 
380 
- 
mA 
1 
Current Limit 
(XC6414, V
ROUT
 2.4V or more)
IRlim 
V
IN
=V
ROUT(T)
+
2.0V 
- 
600 
- 
mA 
1 
Current Limit 
(XC6414, V
ROUT
 2.5V or more)
IRlim 
V
IN
=V
ROUT(T)
+
2.0V 
500 
600 
- 
mA 
1 
R
Short Circuit Current 
IRshort 
V
IN
=V
ROUT(T)
+
1.0V 
When V
IN
=3.1V, V
ROUT 
≦
2.1V 
- 
50 
- 
mA 
1 
Detect Voltage (*7,8) 
V
DF
 (E) 
×
0.98
V
DF
(T)
×
0.02
2.0 
4.0 
5.0 
6.0 
6.5 
7.0 
7.5 
8.0 
8.5 
V
DF
(T)
V
DF
(T)
×
0.05 
5.0 
7.5 
9.5 
10.5 
11.5 
12.5 
13.5 
14.5 
14.5 
×
1.02 
V
DF (T)
×
0.08 
- 
- 
- 
- 
- 
- 
- 
- 
- 
V 
4 
Hysteresis Range (*7) 
VHYS 
V 
4 
V
IN
 = 2.0V 
V
IN
 = 3.0V 
V
IN
 = 4.0V 
V
IN
 = 5.0V 
V
IN
 = 6.0V 
V
IN
 = 7.0V 
V
IN
 = 8.0V 
V
IN
 = 9.0V 
V
IN
 = 10.0V 
V
DOUT
 = 0.5V 
Output Current (*9) 
I
DOUT
mA 
5 
Detect Voltage Temperature 
Characteritsics 
△
V
DF 
△
Topr
V
DF
-40
℃
≦
 Topr 
≦
 85
℃
- 
±
100 
- 
ppm /
℃
4 
V
IN
=7.0V, Cd=0V 
D
Delay Resistance 
Delay 
Delay Resistance=7.0V/Delay Current
1.0 
2.0 
3.5 
M
Ω
6 
■
ELECTRICAL CHARACTERISTICS
XC6413/14 FV / FX / FY / FZ Series 
Ta=25
℃
NOTE:  
*1 
*2 
*3 
: Unless otherwise stated, VIN=VOUT(T)+1.0V 
: VROUT(T)=Specified VR output voltage 
: VOUT(E)=Actual VR output voltage  
(i.e. the VR output voltage when "VROUT(T)+1.0V" is provided at the VIN pin while maintaining a certain IROUT value).        
: Vdif={VIN1
(*6)
-VROUT1
(*5)
} 
: A voltage equal to 98% of the VR output voltage whenever a stabilized VROUT1=IROUT{VROUT(T)+1.0V} is input. 
: VIN1=The input voltage when VOUT1, which appears as Input voltage is gradually decreased. 
: VDF(T) : Specified detect voltage value 
: VDF(E) : Actual detect voltage value. Refer to the E-0 chart for VDF(T) values less than 1.5V. 
*9  : VD supply current = sink current during detection. 
*4 
*5 
*6 
*7 
*8