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 CMOS Low Power Consumption Operating Voltage Range : up to 20V Dropout Voltage : 0.20V @ 30mA Maximum Output Current : more than 100mA Highly Accurate : 2% Output Voltage Range : 1.8V to 15.0V Current Limiter Circuit Built-In SOT-23 / SOT-89 Package
Applications Battery Powered Equipment Reference Voltage Sources Cameras, Video Cameras Palmtops
General Description
The XC6202 series are highly precise, low power consumption, high voltage, positive voltage regulators manufactured using CMOS and laser trimming technologies. The XC6202 consists of a current limiter circuit, a driver transistor, a precision reference voltage and an error correction circuit. Since the current limiter circuit is built-in, the IC is protected against overshoot currents at such times of output shorts etc. SOT-23 (150mW) and SOT-89 (500mW) packages are available.
Features
Maximum Output Current : 100mA Dropout Voltage : 0.20V @ 30mA Operating Voltage Range : up to 20V Output Voltage Range : 1.8V to 6.0V (selectable in 0.1V steps) 8.0V, 12V & 15V also possible Highly Accurate : 2% Low Power Consumption : TYP 7.0 A (5.0V) Output VoltageTemp. Characteristics : TYP 100ppm/ OC Input Stability : TYP 0.2% / V Ultra Small Packages : SOT-23 (150mW), SOT-89 (500mW)
Pin Configuration
Pin Assignment
PIN NUMBER SOT-23 1 3 2
1 V OUT 2 VS S 3 V IN
VS S 3
PIN SOT-89 1 2 3 NAME VOUT VSS VI N
FUNCTION Output Ground Power Input
1 V OUT
2 V IN
S O T -2 3 (TO P V IE W )
S O T -8 9 (TO P V IE W )
Absolute Maximum Ratings
Ta = 25 OC
PARAMETER Input Voltage Output Current Output Voltage Continuous Total Power Dissipation SOT-23 SOT-89
SYMBOL VI N IOUT VOUT Pd Pd Topr Tstg
RATINGS 22 500
VSS -0.3 to VIN +0.3
UNITS V mA V mW
O
150 500 -40 to +85 -40 to +125
Operating Ambient Temperature Storage Temperature
O
C C
B
B
Electrical Characteristics
3.0V Part, VOUT(T) = 3.0V (Note 1) PARAMETER Output Voltage Maximum Output Current Load Stability Dropout Voltage( Note 3 ) Supply Current Input Stability Input Voltage Output Voltage Temperature Characteristics Ta=25 OC UNITS V mA mV mV A %/V 20 IOUT=30mA -40OC Topr 85OC 100 V ppm/ OC
SYMBOL VOUT(E)
(Note2)
IOUT max VOUT Vdif 1 ISS VOUT VIN * VOUT VIN VOUT Topr * VOUT
CONDITIONS IOUT=30mA VIN=4.0V VIN=4.0V, VOUT(E) 2.7V VIN=4.0V ; 1mA IOUT 30mA IOUT=30mA VIN=4.0V IOUT=1mA 4.0V VIN 20.0V
MIN 2.940
TYP 3.000 100 9 200 7.0 0.2
MAX 3.060
5.0V Part, VOUT(T) = 5.0V (Note 1) PARAMETER Output Voltage Maximum Output Current Load Stability Dropout Voltage( Note 3 ) Supply Current Input Stability Input Voltage Output Voltage Temperature Characteristics
SYMBOL VOUT(E)
(Note2)
IOUT max VOUT Vdif 1 ISS VOUT VIN * VOUT VIN VOUT Topr * VOUT
CONDITIONS IOUT=30mA VIN=6.0V VIN=6.0V, VOUT(E) 4.5V VIN=6.0V ; 1mA IOUT 30mA IOUT=30mA VIN=6.0V IOUT=1mA 6.0V VIN 20.0V IOUT=30mA -40OC Topr 85OC
MIN 4.900
TYP 5.000 100 12 200 7.0 0.2
MAX 5.100
Ta=25 OC UNITS V mA mV mV A %/V
20 100
V ppm/ OC
12.0V Part, VOUT(T) = 12.0V (Note 1) PARAMETER Output Voltage Maximum Output Current Load Stability Dropout Voltage( Note 3 ) Supply Current Input Stability Input Voltage Output Voltage Temperature Characteristics
SYMBOL VOUT(E)
(Note2)
IOUT max VOUT Vdif 1 ISS VOUT VIN * VOUT VIN VOUT Topr * VOUT
CONDITIONS IOUT=30mA VIN=13.0V VIN=13.0V, VOUT(E) 10.8V VIN=13.0V ; 1mA IOUT 30mA IOUT=30mA VIN=13.0V IOUT=1mA 13.0V VIN 20.0V IOUT=30mA -40OC Topr 85OC
MIN 11.760
TYP 12.000 100 23 200 10 0.2
MAX 12.240
Ta=25OC UNITS V mA mV mV A %/V
20 100
V ppm/ OC
15.0V Part, VOUT(T) = 15.0V (Note 1) PARAMETER Output Voltage Maximum Output Current Load Stability Dropout Voltage( Note 3 ) Supply Current Input Stability Input Voltage Output Voltage Temperature Characteristics
SYMBOL VOUT(E)
(Note2)
B
IOUT max VOUT Vdif 1 ISS VOUT VIN * VOUT VIN VOUT Topr * VOUT
CONDITIONS IOUT=30mA VIN=16.0V VIN=16.0V, VOUT(E) 14.4V VIN=16.0V ; 1mA IOUT 30mA IOUT=30mA VIN=16.0V IOUT=1mA 16.0V VIN 20.0V IOUT=30mA -40OC Topr 85OC
MIN 14.700
TYP 15.000 100 27 200 11 0.2
MAX 15.300
Ta=25OC UNITS V mA mV mV A %/V
20 100
V ppm/ OC
Note : 1. V OUT (T) = Specified Output Voltage. 2. V OUT (E) = Effective Output Voltage (i.e. the output voltage when "V OUT (T)+1.0V" is provided at the VIN pin while maintaining a certain IOUT value). 3. Vdif = V IN1 - VOUT1 4. V OUT 1 = A voltage equal to 98% of the output voltage when "VOUT (T)+1.0V" is input.e 5. V IN 1 = The input voltage when VOUT1 is output following a gradual decrease in the input voltage.
B


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