Torex XC6219A091MR, XC6219A091PR, XC6219A092MR, XC6219A092PR, XC6219A101MR Schematic [ru]

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XC6219/XC6211 Series
ETR0307_009
300mA High Speed LDO Regulators with ON/OFF Switch
GENERAL DESCRIPTION
The XC6219/XC6211 series are highly accurate, low noise, CMOS LDO Voltage Regulators. Offering low output noise, high ripple rejection ratio, low dropout and very fast turn-on times, the XC6219/XC6211 series is ideal for today’s cutting edge mobile phone. Internally the XC6219/XC6211 includes a reference voltage source, error amplifiers, driver transistors, current limiters and phase compensators. The XC6219/XC6211’s current limiters' foldback circuit also operates as a short protect for the output current limiter and. the output pin. The output voltage is set by laser trimming. Voltages are selectable in 50mV steps within a range of 0.9V to 5.0V. The XC6219/XC6211 series is also fully compatible with low ESR ceramic capacitors, reducing cost and improving output stability. This high level of output stability is maintained even during frequent load fluctuations, due to the excellent transient response performance and high PSRR achieved across a broad range of frequencies. The CE function allows the output of regulator to be turned off, resulting in greatly reduced power consumption.
■APPLICATIONS
Mobile phones
Cordless phones, radio communication equipment
Portable games
Cameras, Video cameras
Reference voltage sources
Battery powered equipment
TYPICAL APPLICATION CIRCUIT
XC6219 series
C
IN
1μF
1
2
3
V
OUT
V
IN
V
SS
CE NC
SOT-25
5
CL 1μF
4
FEATURES
Maximum Output Current
Dropout Voltage Operating Voltage Range Output Voltage Range Highly Accuracy
Low Power Consumption Standby Current High Ripple Rejection Operating Ambient Tempera ture Low ESR Capacitor Ultra Small Packages
Environmentally Friendly
TYPICAL PERFORMANCE
CHARACTERISTICS
Ripple Rejection Rate
: 150mA (VOUT<1.75V, A~D type) 240mA (V 300mA (V : 200mV @ 100mA : 2.0V ~ 6.0V : 0.9V ~ 5.0V (0.05V steps) : +
2% (VOUT>1.5V)
+30mV (VOUT≦1.5V) +
1% (VOUT3.0V) : 25μA (TYP.) : Less than 0.1μA (TYP.) : 65dB @10kHz : -40 ~ 85 : Ceramic capacitor compatible : SOT-25 SOT-89-5 (for XC6219 only) USP-6B (for XC6219 only) : EU RoHS Compliant, Pb Free
OUT>1.8V, A~D type) OUT>1.3V, E~H type)
XC6219/XC6211
1/30
XC6219/XC6211 Series
PIN CONFIGURATION
[XC6219 Series]
VOUT
2 3
1
VIN
VSS
SOT-25
(TOP VIEW)
NC
4 5
CE
VOUT 5 VSS
[XC6211 Series]
VIN
1
(TOP VIEW)
VOUT
45
2 3
VSS NCCE
SOT-25
PIN ASSIGNMENT
1
NC
SOT-89-5
(TOP VIEW)
PIN NUMBER XC6211 XC6219 SOT-25 SOT-25 SOT-89-5 USP-6B
5 1 4 1 VIN Power Input 2 2 2 5 VSS Ground 1 3 3 6 CE ON / OFF Control 3 4 1 2, 4 NC No Connection 4 5 5 3 VOUT Output
FUNCTION
TYPE A,E TYPE B,F
PIN NAME SIGNAL STATUS PIN NAME SIGNAL STATUS
L Stand-by L Stand-by
CE
H Active H Active
OPEN Stand-by
TYPE C,G TYPE D,H
PIN NAME SIGNAL STATUS PIN NAME SIGNAL STATUS
L Active L Active
2
2
VSS
VIN
4
CE 6
VSS 5
3
CE
NC 4
USP-6B
(BOTTOM VIEW)
PIN NAME FUNCTIONS
CE
OPEN Undefined state
1 VIN
2 NC
3 VOUT
* The dissipation pad for the USP-6B package should be solder-plated in recommended mount pattern and metal masking so as to enhance mounting strength and hear release. If the pad needs to be connected to other pins, it should be connected to the V
SS pin.
CE
H Stand-by H Stand-by
OPEN Stand-by
CE
OPEN Undefined state
*If XC6211/XC6219 B,D,F,H types are used with the CE pin opened, the IC goes into “Undefined state”.
The CE pin voltage should be fixed in low or high for stable operation.
2/30
PRODUCT CLASSIFICATION
Ordering Information
XC6219 ①②③④⑤⑥-⑦ XC6211 ①②③④⑤⑥-⑦
(*1)
(Standard pin layout versions)
(*1)
(Different pin layout version in SOT-25)
DESIGNATOR ITEM SYMBOL DESCRIPTION
A 150mA, High Active, pull-down resistor built in B 150mA, High Active, no pull-down resistor built in (Standard) C 150mA, Low Active, pull-up resistor built in
CE Pin Logic
D 150mA, Low Active, no pull-up resistor built in (Semi-custom) E 300mA, High Active, pull-down resistor built in F 300mA, High Active, no pull-down resistor built in (Standard) G 300mA, Low Active, pull-up resistor built in H 300mA, Low Active, no pull-up resistor built in (Semi-custom)
XC6219/XC6211
Series
(*4)
(Semi-custom)
(*4)
(Semi-custom)
(*4)
(Semi-custom)
(*4)
(Semi-custom)
②③
Output Voltage
Output Voltage Accuracy
0950
(*3)
2
(*2)
1
(*3)
A
(*2)
B
e.g. =3, =0, 3.0V
0.1V increments, ±2% accuracy
e.g. =2, =8, =2 2.80V, ±2%
0.1V increments, ±1% accuracy
e.g. =3, =0, =1 3.00V, ±1%
0.05V increments, ±2% accuracy
e.g. =2, =8, =A 2.85V, ±2%
0.05V increments, ±1% accuracy
e.g. =3, =0, =B 3.05V, ±1%
MR SOT-25(3,000/Reel)
MR-G SOT-25(3,000/Reel)
⑤⑥-
Packages
(Order Unit)
PR SOT-89-5 (for XC6219 only) (1,000/Reel)
PR-G SOT-89-5 (for XC6219 only) (1,000/Reel)
DR USP-6B (for XC6219 only) (3,000/Reel)
DR-G USP-6B (for XC6219 only) (3,000/Reel)
(*1)
The “-G” suffix denotes Halogen and Antimony free as well as being fully RoHS compliant.
(*2)
Output voltage of the ±1% accuracy product is 3.0V or more.
(*3)
Output voltage accuracy of the V
(*4)
With the pull-up resistor or pull-down resistor built-in types, the supply current during operation will increase by VIN / 2.0MΩ (TYP.)
1.5V is ±30mV.
OUT
3/30
A
XC6219/XC6211 Series
BLOCK DIAGRAM
*Diode inside the circuit are an ESD protection diode and a parasitic diode.
BSOLUTE MAXIMUM RATINGS
Power Dissipation
Operating Ambient Temperature Topr - 40 ~ + 85
All voltages are described based on the V
(*1)
I
Pd/VIN-V
OUT
(*2)
The power dissipation figure shown is PCB mounted and is for reference only. Please refer to page 24~26 for details.
XC6211,XC6219 series Type A,E XC6211,XC6219 series Type B,D,F,H
XC6211,XC6219 series Type C,G
Ta =2 5
PAR AMETER SYMBOL RATINGS UNITS
Input Voltage VIN 7 V
Output Current IOUT 500
(*1)
mA
Output Voltage VOUT VSS - 0.3 ~ VIN + 0.3 V
CE Pin Voltage VCE VSS - 0.3 ~ VIN + 0.3 V
SOT-25
SOT-89
USP-6B
Pd
600 (PCB mounted)
1300 (PCB mounted)
1000 (PCB mounted)
250
(*2)
mW
500
(*2)
120
(*2)
Storage Temperature Tstg - 55 ~ + 125
pin.
SS
OUT
4/30
ELECTRICAL CHARACTERISTICS
XC6219/XC6211 Type A,B
PARAMETER SYMBOL CONDITIONS MIN. TYP. MAX. UNITS CIRCUIT
Output Voltage
Output Voltage
Maximum Output
Current
(2%)
(1%)
(*5)
(*6)
(*3)
I
V
OUT(E)
I
OUTMAX
=30mA
OUT
0.9V≦V
1.8V≦V
OUT(T)
OUT(T)
1.75V
5.0V
V
OUT(T)
×0.98
V
OUT(T)
×0.99
(*2)
(*2)
V
V
OUT(T)
OUT(T)
(*2)
(*2)
V
OUT(T)
×1.02
V
OUT(T)
×1.01
(*2)
(*2)
150 - -
240 - -
XC6219/XC6211
Series
Ta =2 5
V
mA
Load Regulation ΔV
Dropout Voltage
(*4)
Supply Current
(Type A)
Supply Current
(Type B)
Stand-by Current I
Line Regulation
(ΔV
OUT
Vdif1 I
Vdif2 I
I
DD
STB
ΔV
/
OUT
)
IN・VOUT
1mA≦I
OUT
OUT
V
V
V
V
V
V
I
OUT
V
100mA
OUT
=30mA - E-1
=100mA - E-2
CE=VIN=VOUT(T)
0.95V, VIN=VCE=2.0V
OUT
IN=VOUT(T)
0.95V, VIN=2.0V
OUT
OUT(T)
0.95V, 2.0VVIN≦6.0V
OUT
+1.0V
+1.0V、VCE=V
+1.0V≦VIN≦6.0V
SS
=30mA
1.75V, I
OUT
OUT
=10mA
- 15 50 mV
mV
- 28 55
μA
- 25 50
- 0.01 0.10
μA
- 0.01 0.20 %/V
Input Voltage VIN - 2 - 6 V -
Output Voltage
Temperature
Characteristics
ΔV
(ΔToprV
Power Supply
Rejection Ratio
Current Limiter Ilim
Short Circuit Current I
CE ‘High’ Level Voltage V
CE ‘Low’ Level Voltage V
CE ‘High’ Level Current
(Type A)
CE ‘High’ Level Current
(Type B)
OUT
PSRR
SHORT
CEH
CEL
I
CEH
I
/
OUT
=30mA
OUT
)
-40℃≦Topr85
=[V
V
IN
OUT(T)
V
1.5, VIN=2.5V+1.0Vp-p
OUT
I
=50mAf=10kHz
OUT
VIN=V
OUT(T)
0.9V≦V
V
IN=VOUT(T)
1.8V≦V
V
IN=VOUT(T)
V
1.75V, VIN=V
OUT
+1.0]V+1.0Vp-pAC
+2.0V、VCE=V
1.75V
OUT(T)
+1.0V、VCE=V
5.0V
OUT(T)
+1.0V VCE=V
OUT(T)
IN
IN
IN
+2.0V
- ±100 -
AC
- E-3 - dB
- 300 -
240 300 -
- 50 - mA
ppm/
mA
- 1.6 - VIN V
- - - 0.25 V
V
IN=VCE=VOUT(T)
0.95V, VIN=VCE=2.0V
V
OUT
+1.0V
-0.10 - 5.0
μA
-0.10 - 0.10
CE ‘Low’ Level Current I
(*1) Unless otherwise stated, VIN=V
(*2) V
(*3) V
(*4) Vdif={V
*5If V*6Only for the V
= Specified output voltage
OUT(T)
= Effective output voltage
OUT(E)
The output voltage when "V
V
=A voltage equal to 98% of the output voltage whenever an amply stabilized I
OUT1
=The Input Voltage when V
V
IN1
OUT(T)
IN1-VOUT1
is less than 1.45V, V
OUT(T)
CEL
+1.0V. If V
OUT(T)
+1.0V" is provided at the VIN pin while maintaining a certain I
OUT(T)
}
appears as Input Voltage is gradually decreased.
OUT1
-30mV (MIN.), V
OUT(T)
is more than 3.0V products.
V
V
+1.0V、VCE=VSS
IN=VOUT(T)
0.95V, VIN=2.0V
OUT
is less than 0.95V, VIN= 2.0V.
OUT
+ 30mV (MAX.)
OUT(T)
-0.10 - 0.10
value.
OUT
{V
OUT
+1.0V} is input.
OUT(T)
μA
5/30
XC6219/XC6211 Series
ELECTRICAL CHARACTERISTICS
XC6219/XC6211 Type C,D
PARAMETER SYMBOL CONDITIONS MIN. TYP. MAX. UNITS CIRCUIT
Output Voltage
Output Voltage
Maximum Output
Current
(2%)
(1%)
(*5)
(*6)
(*3)
I
V
OUT(E)
I
OUTMAX
=30mA
OUT
0.9V≦V
1.8V≦V
OUT(T)
OUT(T)
1.75V
5.0V
V
OUT(T)
×0.98
V
OUT(T)
×0.99
(*2)
(*2)
V
V
OUT(T)
OUT(T)
(*2)
(*2)
V
OUT(T)
×1.02
V
OUT(T)
×1.01
(*2)
(*2)
150 - -
240 - -
V
mA
Ta =2 5
Load Regulation ΔV
Dropout Voltage
(*4)
Supply Current
(Type C)
Supply Current
(Type D)
Stand-by Current I
Line Regulation
Input Voltage VIN - 2 - 6 V -
Output Voltage
Temperature
Characteristics
Power Supply
Rejection Ratio
Current Limiter Ilim
Short Circuit Current I
CE ‘High’ Level Voltage V
CE ‘Low’ Level Voltage V
CE ‘High’ Level Current I
CE ‘Low’ Level Current
(Type C)
CE ‘Low’ Level Current
(Type D)
(*1) Unless otherwise stated, VIN=V
(*2) V
(*3) V
(*4) Vdif={V
*5If V*6Only for the V
= Specified output voltage
OUT(T)
= Effective output voltage
OUT(E)
The output voltage when "V
=A voltage equal to 98% of the output voltage whenever an amply stabilized I
V
OUT1
V
=The Input Voltage when V
IN1
OUT(T)
}
IN1-VOUT1
is less than 1.45V, V
is more than 3.0V products.
OUT(T)
OUT
Vdif1 I
Vdif2 I
1mA≦I
OUT
OUT
V
I
DD
V
V
STB
V
V
V
V
/
I
)
OUT
(ΔV
ΔV
IN・VOUT
OUT
V
ΔV
OUT
(ΔToprV
I
/
OUT
)
-40℃≦Topr85
OUT
V
PSRR
V
I
OUT
VIN=V
0.9V≦V
V
1.8V≦V
V
SHORT
CEH
CEL
CEH
I
CEL
OUT(T)
+1.0V" is provided at the VIN pin while maintaining a certain I
OUT(T)
OUT1
OUT(T)
V
- 1.6 - VIN V
- - - 0.25 V
V
V
V
V
+1.0V. If V
appears as Input Voltage is gradually decreased.
-30mV (MIN.), V
100mA
OUT
=30mA - E-1
=100mA - E-2
+1.0V
IN=VOUT(T)
0.95V, VIN=2.0V
OUT
CE=VSS
+1.0V、VCE=V
IN=VOUT(T)
0.95V, VIN=VCE=2.0V
OUT
+1.0V≦VIN≦6.0V
OUT(T)
0.95V, 2.0VVIN≦6.0V
OUT
IN
=30mA
1.75V, I
OUT
OUT
=10mA
=30mA
=[V
IN
OUT
+1.0]V+1.0Vp-pAC
OUT(T)
1.5, VIN=2.5V+1.0Vp-p
AC
=50mAf=10kHz
+2.0V、VCE=V
OUT(T)
1.75V
OUT(T)
+1.0V、VCE=V
IN=VOUT(T)
5.0V
OUT(T)
+1.0V VCE=V
IN=VOUT(T)
1.75V, VIN=V
OUT
CE=VIN=VOUT(T)
0.95V, VCE=VIN=2.0V
OUT
+1.0V,VCE=V
IN=VOUT(T)
0.95V, VIN=2.0V
OUT
is less than 0.95V, VIN= 2.0V.
OUT
+ 30mV (MAX.)
OUT(T)
+1.0V
OUT(T)
SS
SS
IN
+2.0V
SS
- 15 50 mV
- 28 55
- 25 50
- 0.01 0.10
- 0.01 0.20 %/V
- ±100 -
- E-3 - dB
- 300 -
240 300 -
- 50 - mA
-0.10 - 0.10
-5.0 - 0.10
-0.10 - 0.10
value.
OUT
{V
OUT
+1.0V} is input.
OUT(T)
mV
μA
μA
ppm/℃
mA
μA
μA
6/30
ELECTRICAL CHARACTERISTICS
XC6219/XC6211 Type E,F
PARAMETER SYMBOL CONDITIONS MIN. TYP. MAX. UNITS CIRCUIT
(2%)
(*5)
(*6)
(*3)
I
V
OUT(E)
OUT
=30mA
Output Voltage
Output Voltage
(1%)
Maximum Output
Current
Load Regulation ΔV
Load Regulation2 ΔV
Dropout Voltage
(*4)
I
VIN=E-5
OUTMAX
OUT
OUT2
Vdif1 I
Vdif2 I
(*7)
E-4 - - mA
1mA≦I
1mA≦I
OUT
OUT
100mA
OUT
300mA
OUT
=30mA - E-1
=100mA - E-2
Supply Current
(Type E)
Supply Current
I
DD
V
CE=VIN=VOUT(T)
0.95V, VCE=VIN=2.0V
V
OUT
+1.0V
(Type F)
Stand-by Current I
Line Regulation
(ΔV
STB
ΔV
IN・VOUT
OUT
V
V
V
V
/
I
)
OUT
V
+1.0V、VCE=V
IN=VOUT(T)
0.95V, VCE=VIN=2.0V
OUT
+1.0V≦VIN≦6.0V
OUT(T)
0.95V, 2.0VVIN≦6.0V
OUT
=30mA
1.75V, I
OUT
OUT
=10mA
SS
Input Voltage VIN - 2 - 6 V -
Output Voltage
Temperature
Characteristics
ΔV
(ΔToprV
Power Supply
Rejection Ratio
Current Limiter Ilim
Short Circuit Current I
CE ‘High’ Level Voltage V
CE ‘Low’ Level Voltage V
OUT
PSRR
SHORT
CEH
CEL
I
/
OUT
=30mA
OUT
)
-40℃≦Topr85
=[V
V
IN
OUT(T)
1.5, VIN=2.5V+1.0Vp-p
V
OUT
I
=50mAf=10kHz
OUT
VIN=V
OUT(T)
0.9V≦V
V
IN=VOUT(T)
1.8V≦V
V
IN=VOUT(T)
V
1.75V, VIN=V
OUT
+1.0]V+1.0Vp-pAC
+2.0V、VCE=V
1.75V
OUT(T)
+1.0V、VCE=V
5.0V
OUT(T)
+1.0V VCE=V
OUT(T)
IN
IN
IN
+2.0V
- 1.6 - VIN V
- - - 0.25 V
CE ‘High’ Level Current
(Type E)
CE ‘High’ Level Current
I
CEH
V
IN=VCE=VOUT(T)
0.95V, VIN=VCE=2.0V
V
OUT
+1.0V
(Type F)
CE ‘Low’ Level Current I
(*1) Unless otherwise stated, VIN=V
(*2) V
(*3) V
(*4) Vdif={V
*5If V*6Only for the V*7Please refer to the “Voltage Chart” table.
= Specified output voltage
OUT(T)
= Effective output voltage
OUT(E)
The output voltage when "V
V
=A voltage equal to 98% of the output voltage whenever an amply stabilized I
OUT1
V
=The Input Voltage when V
IN1
OUT(T)
}
IN1-VOUT1
is less than 1.45V, V
OUT(T)
OUT(T)
is more than 3.0V products.
CEL
OUT(T)
V
+1.0V. If V
V
+1.0V" is provided at the VIN pin while maintaining a certain I
appears as Input Voltage is gradually decreased.
OUT1
-30mV (MIN.), V
OUT(T)
+1.0V、VCE=VSS
IN=VOUT(T)
0.95V, VIN=2.0V
OUT
is less than 0.95V, VIN= 2.0V.
OUT
+ 30mV (MAX.)
OUT(T)
(*2)
V
OUT(T)
×0.98
V
OUT(T)
×0.99
(*2)
V
V
OUT(T)
OUT(T)
(*2)
(*2)
- 15 50 mV
- - 100 mV
- 28 55
- 25 50
- 0.01 0.10
- 0.01 0.20 %/V
- ±100 -
AC
- 70 - dB
- 380 - mA
- 50 - mA
-0.10 - 5.0
-0.10 - 0.10
-0.1 - 0.1
value.
OUT
{V
OUT
+1.0V} is input.
OUT(T)
V
OUT(T)
×1.02
V
OUT(T)
×1.01
(*2)
(*2)
mV
μA
μA
ppm/℃
μA
μA
XC6219/XC6211
Series
Ta =2 5
V
7/30
XC6219/XC6211 Series
ELECTRICAL CHARACTERISTICS
XC6219/XC6211 Type G,H
PARAMETER SYMBOL CONDITIONS MIN. TYP. MAX. UNITS CIRCUIT
Output Voltage
Output Voltage
Maximum Output
Current
Load Regulation ΔV
Load Regulation2 ΔV
Dropout Voltage
Supply Current
(Type G)
Supply Current
(Type H)
Stand-by Current I
Line Regulation
Input Voltage VIN - 2 - 6 V -
Output Voltage
Temperature
Characteristics
Power Supply
Rejection Ratio
Current Limiter Ilim
Short Circuit Current I
CE ‘High’ Level Voltage V
CE ‘Low’ Level Voltage V
CE ‘High’ Level Current I
CE ‘Low’ Level Current
(Type G)
CE ‘Low’ Level Current
(Type H)
(*1) Unless otherwise stated, VIN=V
(*2) V
OUT(T)
(*3) V
OUT(E)
The output voltage when "V
(*4) Vdif={V
V
OUT1
=The Input Voltage when V
V
IN1
*5If V
OUT(T)
*6Only for the V*7Please refer to the “Voltage Chart” table.
(*5)
(2%)
(*6)
V
OUT(E)
(*3)
I
OUT
=30mA
(1%)
(*7)
E-4 - - mA
1mA≦I
1mA≦I
OUT
OUT
V
V
V
V
V
V
V
I
OUT
V
I
OUT
100mA
OUT
300mA
OUT
=30mA - E-1
=100mA - E-2
CE=VIN=VOUT(T)
0.95V, VIN=2.0V
OUT
CE=VSS
IN=VOUT(T)
0.95V, VCE=VIN=2.0V
OUT
OUT(T)
0.95V, 2.0VVIN≦6.0V
OUT
+1.0V
+1.0V、VCE=V
+1.0V≦VIN≦6.0V
IN
=30mA
1.75V, I
OUT
OUT
=10mA
=30mA
-40℃≦Topr85
=[V
V
IN
V
OUT
I
OUT
VIN=V
0.9V≦V
V
IN=VOUT(T)
1.8V≦V
V
IN=VOUT(T)
V
OUT
V
CE=VIN=VOUT(T)
V
OUT
V
IN=VOUT(T)
V
OUT
+1.0]V+1.0Vp-pAC
OUT(T)
1.5, VIN=2.5V+1.0Vp-p
=50mAf=10kHz
+2.0V、VCE=V
OUT(T)
1.75V
OUT(T)
+1.0V、VCE=V
5.0V
OUT(T)
+1.0V VCE=V
1.75V, VIN=V
OUT(T)
SS
SS
ss
+2.0V
+1.0V
0.95V, VCE=VIN=2.0V
+1.0V、VCE=VSS
0.95V, VIN=2.0V
is less than 0.95V, VIN= 2.0V.
OUT
(*4)
VIN=E-5
I
OUTMAX
OUT
OUT2
Vdif1 I
Vdif2 I
I
DD
STB
ΔV
OUT
(ΔV
IN・VOUT
ΔV
OUT
(ΔToprV
/
)
/
)
OUT
PSRR
SHORT
- 1.6 - VIN V
CEH
- - - 0.25 V
CEL
CEH
I
CEL
+1.0V. If V
OUT(T)
= Specified output voltage
= Effective output voltage
+1.0V" is provided at the VIN pin while maintaining a certain I
OUT(T)
IN1-VOUT1
}
=A voltage equal to 98% of the output voltage whenever an amply stabilized I
appears as Input Voltage is gradually decreased.
is less than 1.45V, V
is more than 3.0V products.
OUT(T)
OUT1
-30mV (MIN.), V
OUT(T)
+ 30mV (MAX.)
OUT(T)
(*2)
V
OUT(T)
×0.98
V
OUT(T)
×0.99
(*2)
V
V
OUT(T)
OUT(T)
(*2)
(*2)
- 15 50 mV
- - 100 mV
- 28 55
- 25 50
- 0.01 0.10
- 0.01 0.20 %/V
- ±100 -
AC
- 70 - dB
- 380 - mA
- 50 - mA
-0.10 - 0.10
-5.0 - 0.10
-0.10 - 0.10
value.
OUT
{V
OUT
+1.0V} is input.
OUT(T)
V
OUT(T)
×1.02
V
OUT(T)
×1.01
(*2)
(*2)
mV
μA
μA
ppm/℃
μA
μA
V
Ta =2 5
8/30
ELECTRICAL CHARACTERISTICS (Continued)
Voltage Chart
SYMBOL E-0 E-1 E-2 E-3
PARAMETER
OUTPUT VOLTAGE
V
OUT(T)
0.90 0.870 0.930 - -
0.95 0.920 0.980 - -
1.00 0.970 1.030 - -
1.05 1.020 1.080 - -
1.10 1.070 1.130 - -
1.15 1.120 1.180 - -
1.20 1.170 1.230 - -
1.25 1.220 1.280 - -
1.30 1.270 1.330 - -
1.35 1.320 1.380 - -
1.40 1.370 1.430 - -
1.45 1.420 1.480 - -
1.50 1.470 1.530 - -
1.55 1.519 1.581 - -
1.60 1.568 1.632 - -
1.65 1.617 1.683 - -
1.70 1.666 1.734 - -
1.75 1.715 1.785 - -
1.80 1.764 1.836 - -
1.85 1.813 1.887 - -
1.90 1.862 1.938 - -
1.95 1.911 1.989 - -
2.00 1.960 2.040 - -
2.05 2.009 2.091 - -
2.10 2.058 2.142 - -
2.15 2.107 2.193 - -
2.20 2.156 2.244 - -
2.25 2.205 2.295 - -
2.30 2.254 2.346 - -
2.35 2.303 2.397 - -
2.40 2.352 2.448 - -
2.45 2.401 2.499 - -
2.50 2.450 2.550 - -
2.55 2.499 2.601 - -
2.60 2.548 2.652 - -
2.65 2.597 2.703 - -
2.70 2.646 2.754 - -
2.75 2.695 2.805 - -
2.80 2.744 2.856 - -
2.85 2.793 2.907 - -
2.90 2.842 2.958 - -
2.95 2.891 3.009 - -
OUTPUT VOLTAGE
(2%)
(V)
V
V
OUT
MIN MAX MIN MAX TYP MAX TYP MAX TYP
OUTPUT VOLTAGE
(1%)
(V)
Vdif1 Vdif2 PSRR
OUT
DROPOUT
VOLTAGE1 (mV)
(I
=30mA)
OUT
Ta=25 Ta=25 Ta=25
1100 1110 1150 1200
1000 1010 1050 1100
900 910 950 1000
800 810 850 900
700 710 750 800
600 610 650 700
500 510 550 600
400 410 500 550
300 310 400 450
200 210 300 400
120 150 280 380
80 120 240
70 100 220
XC6219/XC6211
DROPOUT
VOLTAGE2 (mV)
(I
=100mA)
OUT
350
330
310
290
270
Series
Power
Supply
Rejection
Ratio
65
70
9/30
XC6219/XC6211 Series
ELECTRICAL CHARACTERISTICS (Continued)
Voltage Chart
SYMBOL E-0 E-1 E-2 E-3
PARAMETER
OUTPUT VOLTAGE
V
OUT(T)
3.00 2.940 3.060 2.970 3.030
3.05 2.989 3.111 3.020 3.081
3.10 3.038 3.162 3.069 3.131
3.15 3.087 3.213 3.119 3.182
3.20 3.136 3.264 3.168 3.232
3.25 3.185 3.315 3.218 3.283
3.30 3.234 3.366 3.267 3.333
3.35 3.283 3.417 3.317 3.384
3.40 3.332 3.468 3.366 3.434
3.45 3.381 3.519 3.416 3.485
3.50 3.430 3.570 3.465 3.535
3.55 3.479 3.621 3.515 3.586
3.60 3.528 3.672 3.564 3.636
3.65 3.577 3.723 3.614 3.687
3.70 3.626 3.774 3.663 3.737
3.75 3.675 3.825 3.713 3.788
3.80 3.724 3.876 3.762 3.838
3.85 3.773 3.927 3.812 3.889
3.90 3.822 3.978 3.861 3.939
3.95 3.871 4.029 3.911 3.990
4.00 3.920 4.080 3.960 4.040
4.05 3.969 4.131 4.010 4.091
4.10 4.018 4.182 4.059 4.141
4.15 4.067 4.233 4.109 4.192
4.20 4.116 4.284 4.158 4.242
4.25 4.165 4.335 4.208 4.293
4.30 4.214 4.386 4.257 4.343
4.35 4.263 4.437 4.307 4.394
4.40 4.312 4.488 4.356 4.444
4.45 4.361 4.539 4.405 4.494
4.50 4.410 4.590 4.455 4.545
4.55 4.459 4.641 4.504 4.595
4.60 4.508 4.692 4.554 4.646
4.65 4.557 4.743 4.603 4.696
4.70 4.606 4.794 4.653 4.747
4.75 4.655 4.845 4.702 4.797
4.80 4.704 4.896 4.752 4.848
4.85 4.753 4.947 4.801 4.898
4.90 4.802 4.998 4.851 4.949
4.95 4.851 5.049 4.900 4.999
5.00 4.900 5.100 4.950 5.050 50 70 160 210
OUTPUT VOLTAGE
(2%)
(V)
V
V
OUT
MIN MAX MIN MAX TYP MAX TYP MAX TYP
OUTPUT VOLTAGE
(1%)
(V)
Vdif1 Vdif2 PSRR
OUT
DROPOUT
VOLTAGE1 (mV)
(I
=30mA)
OUT
Ta=25 Ta=25 Ta=25
60
DROPOUT
VOLTAGE2 (mV)
(I
=100mA)
OUT
270
90 200
250
80 180 230
Power
Supply
Rejection
Ratio
70
10/30
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