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PDF XC6204 Data sheet ( Hoja de datos )

Número de pieza XC6204
Descripción 300mA/150mA High Speed LDO Regulators
Fabricantes Torex Semiconductor 
Logotipo Torex Semiconductor Logotipo



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XC6204/XC6205 Series
300mA/150mA High Speed LDO Regulators with ON-OFF Control
ETR03004-010
GENERAL DESCRIPTION
The XC6204/XC6205 series are highly precise, low noise, positive voltage LDO regulators manufactured using CMOS
processes. The series achieves high ripple rejection and low dropout and consists of a standard voltage source, an error
correction, current limiter and a phase compensation circuit plus a driver transistor.
Output voltage is selectable in 0.05V steps within a range of 0.9V ~ 6.0V.
The series is also compatible with low ESR ceramic capacitors which give added output stability. This stability can be
maintained even during load fluctuations due to the excellent transient response of the series.
The current limiter's foldback circuit also operates as a short protect for the output current limiter and the output pin.
The CE function enables the output to be turned off, resulting in greatly reduced power consumption.
APPLICATIONS
Smart phones / Mobile phones
Portable game consoles
Digital still cameras / Camcorders
Digital audio equipments
Reference voltage sources
Multi-function power supplies
FEATURES
Maximum Output Current : 150mA
300mA(XC6204 E to H type)
Dropout Voltage
: 200mV @ 100mA
60mV @ 30mA
Operating Voltage : 2V ~ 10V
Output Voltage Range : 1.8V ~ 6.0V (XC6204)
0.9V ~ 1.75V (XC6205)
Highly Accurate
: 2%, 1%
Low Power Consumption : 70 A (TYP.)
Standby Current
: 0.1 A (MAX.)
High Ripple Rejection : 70dB@10kHz (XC6204)
60dB@10kHz (XC6205)
Low ESR Capacitor Compatible
: Ceramic capacitor
Operating Ambient Temperature
: -40 ~ 85
Packages
: SOT-25, SOT-89-5, USP-6B
Environmentally Friendly : EU RoHS Compliant, Pb Free
TYPICAL APPLICATION CIRCUIT
TYPICAL PERFORMANCE
CHARACTERISTICS
1/51

1 page




XC6204 pdf
XC6204/XC6205
Series
ELECTRICAL CHARACTERISTICS (Continued)
XC6204C, D Type
PARAMETER
SYMBOL
CONDITIONS
Output Voltage
(2% products)
Output Voltage
VOUT(E) IOUT = 30mA
(1% products)
Maximum Output Current IOUTMAX -
Load Regulation
UVOUT 1mA IOUT 100mA
Dropout Voltage
Vdif1
Vdif2
IOUT = 30mA
IOUT = 100mA
Supply Current
(C type)
Supply Current
(D type)
VIN = VOUT(T)+1.0V, VCE = VSS
IDD
VIN = VOUT(T)+1.0V, VCE = VSS
Standby Current
Line Regulation
Input Voltage
ISTBY
UVOUT
UVIN VOUT
VIN
VIN = VCE = VOUT(T)+1.0V
VOUT(T)+1.0V
IOUT = 30mA
-
VIN 10V
Output Voltage
UVOUT IOUT = 30mA
Temperature Characteristics UTopr VOUT -40 Topr 85
Output Noise
IOUT = 10mA
en 300Hz~50kHz
Power Supply
Rejection Ratio
PSRR
VIN = {VOUT(T)+1.0}V+1.0Vp-pAC
IOUT = 50mA, f = 10kHz
Current Limiter
Ilim VIN = VOUT(T)+1.0V, VCE = VSS
Short-circuit Current
Ishort VIN = VOUT(T)+1.0V, VCE = VSS
CE “High” Voltage
VCEH
-
CE “Low” Voltage
VCEL
-
CE “High” Current
ICEH
VIN = VCE = VOUT(T)+1.0V
CE “Low” Current
(C type)
CE “Low” Current
(D type)
ICEL
VIN = VOUT(T)+1.0V, VCE = VSS
VIN = VOUT(T)+1.0V, VCE = VSS
Ta = 25
-40 <Ta<85
UNITS CIRCUIT
MIN. TYP. MAX. MIN. TYP. MAX.
0.98
VOUT(T)
0.99
1.02
1.01
0.97
VOUT(T)
0.98
1.03
1.02
V
1
150 -
- 150 -
- mA
- 15 50 - 30 80 mV
E-1
mV
E-2
1
1
1
50 80 120 50 90 145
40 70 100 40 80 120
A2
- 0.01 0.10 - 0.05 1.00 A 2
- 0.01 0.20 - 0.05 0.30 %/V
1
2 - 10
- 100 -
2
-
- 10 V
-
- - ppm/ 1
30 - - - - Vrms 3
-
-
-
1.6
-
-0.10
-20.0
70
300
50
-
-
-
-
-0.10 -
-
-
-
VIN
0.25
0.10
-3.2
-
-
-
1.7
-
-0.15
-25.0
-
280
60
-
-
-
-
0.10 -0.15
-
-
-
-
VIN
0.20
0.15
-3.0
0.15
dB
mA
mA
V
A
4
1
1
1
2
NOTE:
(*1) Unless otherwise stated, VIN=VOUT(T)+1.0V
(*2) VOUT(T)=Specified output voltage
(*3) 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).
(*4) Vdif=VIN1-VOUT1
VOUT1=A voltage equal to 98% of the output voltage whenever an amply stabilized IOUT {VOUT(T)+1.0V} is input.
VIN1=The input voltage when VOUT1 appears as input voltage is gradually decreased.
(*5) The values for -40 Ta 85 are designed values.
5/51

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XC6204 arduino
XC6204/XC6205
Series
ELECTRICAL CHARACTERISTICS (Continued)
XC6205G, H Type
PARAMETER
SYMBOL
CONDITIONS
Output Voltage(*5)
Maximum Output Current(*6)
VOUT(E)
IOUTMAX
IOUT = 30mA
VIN = E-5
Load Regulation
UVOUT 1mA IOUT 100mA
Dropout Voltage
Vdif1
Vdif2
IOUT = 30mA
IOUT = 100mA
Supply Current
VIN = VOUT(T)+1.0V, VCE = VSS
(G type)
Supply Current
When VOUT 0.95V, VIN = 2.0V
IDD VIN = VOUT(T)+1.0V, VCE = VSS
(H type)
When VOUT 0.95V, VIN = 2.0V
Standby Current
ISTBY
VIN = VCE =VOUT(T)+1.0V
When VOUT 0.95V, VIN = VCE = 2.0V
Line Regulation
Input Voltage
UVOUT VOUT(T)+1.0V VIN 10V
UVIN VOUT IOUT = 30mA, VCE = VSS
When VOUT 0.95V, 2.0V VIN 10V
VIN -
Output Voltage
UVOUT IOUT = 30mA
Temperature Characteristics UTopr VOUT -40 Topr 85
Output Noise
IOUT = 10mA
en 300Hz~50kHz
Power Supply
Rejection Ratio
PSRR
VIN = {VOUT(T)+1.0}V+1.0Vp-pAC
When VOUT 1.5V, VIN =2.5V+1.0Vp-pAC
IOUT = 50mA, f = 10kHz
Current Limiter
Ilim VIN = VOUT(T)+2.0V, VCE = VSS
Short-circuit Current
Ishort VIN = VOUT(T)+2.0V, VCE = VSS
CE “High” Voltage
VCEH
-
CE “Low” Voltage
VCEL
-
CE “High” Current
ICEH
VIN = VCE = VOUT(T)+1.0V
When VOUT 0.95V, VIN = VCE = 2.0V
CE “Low” Current
VIN = VOUT(T)+1.0V, VCE = VSS
(G type)
CE “Low” Current
ICEL When VOUT 0.95V, VIN = 2.0V
VIN = VOUT(T)+1.0V, VCE = VSS
(H type)
When VOUT 0.95V, VIN = 2.0V
Ta = 25
UNITS CIRCUIT
MIN. TYP. MAX.
0.98 VOUT(T) 1.02 V
1
E-4 -
- mA 1
- 15 50 mV 1
E-1 mV 1
E-2
50 80 120
40 70 100
A2
- 0.01 0.10 A 2
- 0.01 0.20 %/V
1
2 - 10 V -
- 100 - ppm/ 1
- 30 - Vrms 3
- 65 - dB
-
-
1.6
-
-0.10
380
50
-
-
-
-
-
VIN
0.25
0.10
mA
mA
V
-20.0
-
-3.2
A
-0.10 - 0.10
4
1
1
1
2
NOTE:
(*1) Unless otherwise stated, VIN=VOUT(T)+1.0V
However, when VOUT 0.95V, VIN=2.0V
(*2) VOUT(T)=Specified output voltage
(*3) 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).
(*4) Vdif=VIN1-VOUT1
VOUT1=A voltage equal to 98% of the output voltage whenever an amply stabilized IOUT {VOUT(T)+1.0V} is input.
VIN1=The input voltage when VOUT1 appears as input voltage is gradually decreased.
(*5) When VOUT(T) 1.45V, MIN. VOUT(T)-30mV, MAX. VOUT(T)+30mV
(*6) Refer to “Specification & Condition by Series”
11/51

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