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XC6503 Datasheet, PDF (5/26 Pages) Torex Semiconductor – CL Capacitor-Less 500mA Low Power Consumption High Speed LDO Regulator
XC6503
Series
■ELECTRICAL CHARACTERISTICS
●XC6503D Type
PARAMETER
Output Voltage
Maximum Output
Current
Load Regulation
Dropout Voltage (*5)
Supply Current
Stand-by Current
Line Regulation
Input Voltage
Output Voltage
Temperature
Characteristics
Power Supply
Rejection Ratio
Current Limit
Short-circuit Current
CE High Level Voltage
CE Low Level Voltage
CE High Level
Current
CE Low Level Current
CL Discharge
Resistance(*10)
Thermal Shutdown
Detect Temperature
Thermal Shutdown
Release
Temperature
Thermal Shutdown
Hysteresis Width
SYMBOL
V (*2)
OUT(E)
CONDITIONS
2.0V>VOUT(T)(*3), VCE=VIN, IOUT=10mA
2.0V≦VOUT(T), VCE=VIN, IOUT=10mA
IOUTMAX
VCE=VIN
ΔVOUT
Vdif
ISS
ISTBB
ΔVOUT/
(ΔVIN・VOUT)
VIN
VCE=VIN, 0.1mA≦IOUT≦300mA
VCE=VIN , IOUT=300mA
VIN=VCE=6.0V, IOUT=0mA
VIN=6.0V, VCE=VSS
VOUT(T)+0.5V≦VIN≦6.0V,
VCE=VIN, IOUT=30mA
ΔVOUT/
VCE=VIN, IOUT=30mA
(ΔTopr・VOUT) -40℃≦Topr≦85℃
PSRR
ILIM
ISHORT
VCEH
VCEL
VOUT(T)≦4.75V
VIN={VOUT(T)+1.0}VDC+0.5Vp-pAC
VCE=VIN, IOUT=30mA, f=1kHz
VOUT(T)≧4.80V
VIN=5.75VDC+0.5Vp-pAC
VCE=VIN, IOUT=30mA, f=1kHz
VCE=VIN
VCE=VIN
Short VOUT to VSS level
ICEH
VIN=VCE=6.0V
ICEL
VCE=VSS
RDCHG
VIN=6.0V, VOUT=5.0V, VCE=VSS
TTSD
Junction Temperature
TTSR
Junction Temperature
THYS
TTSD-TTSR
MIN.
-0.02 (*4)
×0.99 (*4)
500
-
-
-
-
-
TYP.
VOUT(T)
MAX.
+0.02 (*4)
×1.01 (*4)
-
-
20
50
E-1(*8)
15
30
0.01
0.1
E-2(*9)
UNITS
Ta=25℃
CIRCUITS
V
①
mA
①
mV
①
mV
①
μA
②
μA
②
%/V
①
1.7
-
6.0
V
①
-
±30
-
ppm/℃
①
-
55
-
dB
③
510
630
750
mA
①
-
120
210
mA
①
1.0
-
6.0
V
①
VSS
-
0.3
V
①
3.5
6
10
μA
①
-0.1
-
0.1
μA
①
300
430
500
Ω
①
-
150
-
℃
-
-
125
-
℃
-
-
25
-
℃
-
NOTE:
(*1) Unless otherwise stated regarding input voltage conditions, VIN=VOUT(T)(*3)+1.0V.
(*2) 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.)
(*3) VOUT(T): Nominal output voltage
(*4) Characteristics of the actual VOUT(E) by setting output voltage is shown in the voltage chart.
(*5) Vdif=VIN1(*7)-VOUT1(*6)
(*6) VOUT1 is a voltage equal to 98% of the output voltage whenever an amply stabilized IOUT {VOUT(T)+1.0V} is input
(*7) VIN1 is an input voltage when VOUT1 appears at the VOUT pin while the input voltage is gradually decreased.
(*8) E-1:DROPOUT VOLTAGE (Refer to Voltage Chart.)
(*9) E-2:LINE REGULATION (Refer to Voltage Chart.)
(*10) This function is built in the XC6503B/D series only.
The XC6503A/C series discharges by only R1+ R2 resistors as shown in the block diagrams.
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