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XC6214_2 Datasheet, PDF (4/26 Pages) Torex Semiconductor – 500mA Output Current, High Speed LDO Regulators, Thermal Shutdown Function, Ceramic Capacitor Compatible
XC6214 Series
˙ELECTRICAL CHARACTERISTICS
˔XC6214P122
PARAMETER
SYMBOL
CONDITIONS
MIN.
Output Voltage
Maximum Output Current
Load Regulation
Dropout Voltage (*2)
VOUT(E) (*1)
VIN=2.2V, IOUT=50mA
1.170
IOUTmax VIN=2.25V, VOUT=VOUT(E) Ê·0.90 500
˚VOUT VIN=2.2V, 1mAʽIOUTʽ200mA
-
Vdif
IOUT=500mA
-
Supply Current
ISS
VIN=2.5V
-
˚VOUT
IOUT=50mA
Line Regulation
-
˚VINɾVOUT
2.5VʽVINʽ6.0V
Input Voltage
VIN
1.8
Output Voltage
˚VOUT
IOUT=50mA
-
Temperature Characteristics ˚Topr ɾVOUT
- 40ˆʽ Topr ʽ85ˆ
Short-Circuit Current
Ilim
VIN=2.2V, VOUT=0V
-
TYP.
1.200
-
20
900
8
0.05
-
ʶ100
50
MAX.
1.230
-
50
1350
15
Ta=25 ˆ
UNITS CIRCUIT
V
ᶃ
mA
ᶃ
mV
ᶃ
mV
ᶃ
ЖA
ᶄ
0.20 % ö V
ᶃ
6.0
V
-
- ppm öˆ ᶃ
-
mA
ᶃ
NOTE:
*1: VOUT(E) : Effective output voltage (i.e. the output voltage when “VOUT(T)+1.0V” is provided at the VIN pin while maintaining a certain IOUT
value.)
*2: Vdif={VIN1(*4) -VOUT1(*3) }
*3: VOUT1= A voltage equal to 98% of the output voltage whenever an amply stabilized IOUT {VOUT(T)+1.0V} is input.
*4: VIN1=The Input Voltage when VOUT1 appears as input voltage is gradually decreased.
*5: Unless otherwise stated, {VIN=VOUT(T) +1.0V}
˔XC6214P152
PARAMETER
SYMBOL
CONDITIONS
Output Voltage
VOUT(E) (*1)
VIN=2.5V, IOUT=50mA
Maximum Output Current IOUTmax VIN=2.5V, VOUT=VOUT(E) Ê·0.90
Load Regulation
˚VOUT VIN=2.5V, 1mAʽIOUTʽ200mA
Dropout Voltage (*2)
Vdif
IOUT=500mA
Supply Current
ISS
Line Regulation
˚VOUT
˚VINɾVOUT
Input Voltage
VIN
Output Voltage
˚VOUT
Temperature Characteristics ˚Topr ɾVOUT
Short-Circuit Current
Ilim
VIN=2.5V
IOUT=50mA
2.5VʽVINʽ6.0V
IOUT=50mA
- 40ˆʽ Topr ʽ85ˆ
VIN=2.5V, VOUT=0V
MIN.
1.470
500
-
-
-
-
1.8
-
-
TYP.
1.500
-
20
800
8
0.05
-
ʶ100
50
MAX.
1.530
-
50
1200
15
Ta=25 ˆ
UNITS CIRCUIT
V
ᶃ
mA
ᶃ
mV
ᶃ
mV
ᶃ
ЖA
ᶄ
0.20 % ö V
ᶃ
6.0
V
-
- ppm öˆ ᶃ
-
mA
ᶃ
NOTE:
*1: VOUT(E) : Effective output voltage (i.e. the output voltage when “VOUT(T)+1.0V” is provided at the VIN pin while maintaining a certain IOUT
value.)
*2: Vdif={VIN1(*4) -VOUT1(*3) }
*3: VOUT1= A voltage equal to 98% of the output voltage whenever an amply stabilized IOUT {VOUT(T)+1.0V} is input.
*4: VIN1=The Input Voltage when VOUT1 appears as input voltage is gradually decreased.
*5: Unless otherwise stated, {VIN=VOUT(T) +1.0V}
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