XC6227
Series
700mA High Speed LDO Regulator with Reverse Current Protection
ETR0354-004
■GENERAL
DESCRIPTION
The XC6227 series is a highly accurate, low noise, high ripple rejection, low dropout, and low power consumption high speed
voltage regulator.
The series consists of a voltage reference, an error amplifier, a driver transistor, a current limiter, a thermal protection circuit, a
reverse current protection circuit and a phase compensation circuit.
The CE function enables the entire circuit to be placed in a stand-by state by inputting a low level signal to the CE pin.
Over-current protection and thermal protection circuits are integrated. The protection circuit starts to operate when either output
current reaches the current limit level or junction temperature reaches the temperature limit. With the reverse current protection
function of a driver transistor, the reverse current flow is prohibited when V
OUT
voltage is higher than V
IN
voltage. For an example,
when a battery is connected to the V
OUT
pin, battery current will not flow back to the XC6227.
■APPLICATIONS
●
●
●
●
●
USB products and HDMI equipments
E-book Readers / Electronic dictionaries
Smart Phones / Mobile phones
Portable game consoles
Modules (Wireless, Camera, etc.)
■FEATURES
: 700mA
: 120mV @I
OUT
=300mA(V
OUT
=3.0V)
: 1.7V ~ 6.0V
: 0.8V~5.0V (0.05V increments)
: +1% (V
OUT
>2.0V)
+0.02V (V
OUT
≦2.0V)
Low Power Consumption
: 100μA
Chip Enable(CE)
: Active High
Standby Current below 0.1μA
High Ripple Rejection
: 65dB @ 1kHz
Operating Ambient Temperature
: -40℃~+85℃
Low ESR Capacitor
: Ceramic capacitor
Packages
: USP-6C, SOT-25, SOT-89-5
: EU RoHS Compliant, Pb Free
Environmentally Friendly
Maximum Output Current
Dropout Voltage
Operating Voltage Range
Output Voltages
Accuracy
■TYPICAL
APPLICATION CIRCUIT
■
TYPICAL PERFORMANCE
CHARACTERISTICS
●V
OUT
Sink Current VS. Input Voltage
●逆流時V
OUT
端子シンク電流-入力電圧特性例
XC6227C331
V
OUT
=3.3V
I
OUT
=0mA
10
V
OUT
Sink Current:I
REVS
(μA)
8
6
4
2
0
-2
-40℃
25℃
85℃
0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 5.5 6
Input Voltage:V
IN
(V)
1/25
XC6227
Series
■PIN
CONFIGURATION
*The dissipation pad for the USP-6C package should be solder-plated in recommended mount pattern and metal masking so as to enhance
mounting strength and heat release.
If the pad needs to be connected to other pins, it should be connected to the VSS (No. 5) pin.
■PIN
ASSIGNMENT
USP-6C
1
3
2,4
5
6
PIN NUMBER
SOT-25
1
5
4
2
3
SOT-89-5
4
5
3
2
1
PIN NAME
VIN
VOUT
NC
VSS
CE
FUNCTIONS
Power Input
Output
No connection
Ground
ON/OFF Control
■PRODUCT
CLASSIFICATION
●Ordering
Information
XC6227①②③④⑤⑥-⑦
(
*1
)
DESIGNATOR
ITEM
SYMBOL
DESCRIPTION
①
Type of CE
(
*2
)
C
with CE Active High, with CE Pull-down resistor
②③
Output Voltage
08½50
1
B
MR-G
e.g. 2.8V
→
②=2, ③=8
Output voltage {x.x0V} e.g. 2.80V
→
②=2, ③=8, ④=1
Output voltage {x.x5V} e.g. 2.85V
→
②=2, ③=8, ④=B
SOT-25 (3,000/Reel)
SOT-89-5 (1,000/Reel)
USP-6C (3,000/Reel)
④
Output Voltage
(the 2
nd
decimal place)
⑤⑥-⑦
(
*1
)
Packages (Order Unit)
PR-G
ER-G
(*1)
(*2)
The “-G” suffix denotes Halogen and Antimony free as well as being fully EU RoHS compliant.
For without CE Pull-down, please contact your local Torex sales office or representative.
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XC6227
Series
■BLOCK
DIAGRAM
* Diodes inside the circuits are ESD protection diodes and parasitic diodes.
■ABSOLUTE
MAXIMUM RATINGS
PARAMETER
Input Voltage
Output Current
Output Voltage
CE Input Voltage
USP-6C
Power Dissipation
SOT-25
SOT-89-5
Operating Ambient Temperature
Storage Temperature
Topr
Tstg
Pd
SYMBOL
V
IN
I
OUT
V
OUT
V
CE
RATINGS
V
SS
-0.3½+6.5
1400
(*1)
V
SS
-0.3½+6.5
V
SS
-0.3½+6.5
120
1000 (PCB mounted)
(*2)
250
600 (PCB mounted)
(*2)
500
1300 (PCB mounted)
(*2)
-40½+85
-55½+125
Please refer to page 21 to 23 for details.
UNITS
V
mA
V
V
mW
℃
℃
(*1): Please use within the range of Pd > {(V
IN
-V
OUT
) × I
OUT
}
(*2): This is a reference data taken by using the test board.
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XC6227
Series
■ELECTRICAL
CHARACTERISTICS
●XC6227
Series
PARAMETER
Output Voltage
SYMBOL
V
OUT(E) (*2)
CONDITIONS
V
OUT(T)
>2.0V,
V
CE
=V
IN
, I
OUT
=10mA
V
OUT(T)
≦2.0V,
V
CE
=V
IN
, I
OUT
=10mA
V
CE
=V
IN
, V
IN
=V
OUT(T)
+1.0V
V
OUT(T)
>1.5V
V
CE
=V
IN
, V
IN
=2.5V
V
OUT(T)
≦1.5V
V
CE
=V
IN
, 0.1mA≦I
OUT
≦300mA
I
OUT
=300mA, V
CE
=V
IN
I
OUT
=0mA, V
CE
=V
IN
V
IN
=V
CE
=V
OUT(T)
+1.0V, I
OUT
=0mA
V
IN
=6.0V, V
CE
=V
SS
V
OUT(T)
+0.5V≦V
IN
≦6.0V
:V
OUT(T)
≧1.0V
V
CE
=V
IN
, I
OUT
=30mA
1.5V≦V
IN
≦6.0V
:V
OUT(T)
≦0.95V
V
CE
=V
IN
, I
OUT
=30mA
V
CE
=V
IN
, I
OUT
=30mA
-40℃≦Ta≦85℃
V
OUT(T)
≧4.8V,
V
IN
=5.75V
DC
+0.5Vp-p
AC
V
CE
=V
IN
, I
OUT
=30mA, f=1kHz
1.0V≦V
OUT(T)
<4.8V
V
IN
=½V
OUT(T)
+1.0½V
DC
+0.5Vp-p
AC
V
CE
=V
IN
, I
OUT
=30mA, f=1kHz
V
OUT(T)
<1.0V,
V
IN
=2.0V
DC
+0.5Vp-p
AC
V
CE
=V
IN
, I
OUT
=30mA, f=1kHz
V
CE
=V
IN
, V
IN
=V
OUT(T)
+1.0V
V
OUT(T)
>1.5V
V
CE
=V
IN
, V
IN
=2.5V
V
OUT(T)
≦1.5V
V
CE
=V
IN
, Short V
OUT
to V
SS
level
MIN.
×0.99
(*3)
-0.02
(*3)
700
TYP.
V
OUT(T)
(*4)
Ta=25℃
MAX.
×1.01
(*3)
+0.02
(*3)
-
UNITS
V
CIRCUIT
①
Output Current
Load Regulation
Dropout Voltage1
(*5)
Dropout Voltage2
(*5)
Supply Current
Stand-by Current
I
OUTMAX
∆V
OUT
V
dif
V
dif2
I
SS
I
STBY
-
E-1
E-2
E-3
100
0.01
mA
mV
mV
mV
μ
A
μ
A
①
①
①
①
②
②
-
-
220
0.1
Line Regulation
∆V
OUT
/
(∆V
IN
・V
OUT
)
-
0.01
0.1
%/V
①
Input Voltage
Output Voltage
Temperature
Characteristics
V
IN
∆V
OUT
/
(∆Ta
・V
OUT
)
1.7
-
-
±100
6.0
-
V
ppm
/℃
①
①
Power Supply
Rejection Ratio
PSRR
-
65
-
dB
③
Limit Current
Short Current
CE High Level Voltage
CE Low Level Voltage
CE High Level Current
CE Low Level Current
Reverse Current
(*8)
V
OUT
Pin Sink Current
(*9)
Thermal Shutdown
Detect Temperature
Thermal Shutdown
Release Temperature
I
lim
I
short
V
CEH
V
CEL
I
CEH
I
CEL
I
REV
I
REVS
T
TSD
T
TSR
720
-
1.2
-
17.7
-0.1
-
-
-
-
950
55
-
-
24
-
0.01
2.8
150
125
-
-
6.0
0.3
36.9
0.1
1.5
5.3
-
-
mA
mA
V
V
μ
A
μ
A
μ
A
μ
A
℃
℃
①
①
①
①
①
①
①
①
①
①
V
CE
=V
IN
=6.0V, XC6227C Series
V
CE
=V
SS
V
IN
=0V, V
OUT
= 6.0V
(*10)
V
IN
=5.0V, V
OUT
=6.0V
(*10)
Junction Temperature
Junction Temperature
NOTE:
* 1: Unless otherwise stated, input voltage is V
IN
=V
OUT(T)
+1.0V.
* 2: V
OUT(E)
is effective output voltage (Refer to the voltage chart E-1 and E-2)
It is defined as output voltages when an amply stabilized V
OUT(T)
+1.0V is supplied to the VIN pin while maintaining a certain I
OUT
.
* 3: The relation between V
OUT(E)
and V
OUT(T)
is shown in the voltage chart E-1 and E-2.
* 4: V
OUT(T)
is nominal output voltage
* 5: Vdif (Vdif2)= {V
IN1(*7)
-V
OUT1(*6)
}
* 6: V
OUT1
equals 98% of the output voltage when amply stabilized V
OUT (T)
+1.0V are supplied to the V
IN
pin.
* 7: V
IN1
is the input voltage when V
OUT1
appears at the V
OUT
pin while input voltage is gradually decreased.
* 8: Reverse current (I
REV
) flows from V
OUT
to V
IN
.
* 9: V
OUT
pin sink current (I
REVS
) flows from V
OUT
to V
SS
.
*10: Please note when an external power supply connects to the V
OUT
pin, please use it with 6.0V or less.
4/25
XC6227
Series
■OUTPUT
VOLTAGE CHART
●Voltage
Chart 1
NOMINAL
OUTPUT
VOLTAGE
(V)
V
OUT(T)
0.80
0.85
0.90
0.95
1.00
1.05
1.10
1.15
1.20
1.25
1.30
1.35
1.40
1.45
1.50
1.55
1.60
1.65
1.70
1.75
1.80
1.85
1.90
1.95
2.00
2.05
2.10
2.15
2.20
2.25
2.30
2.35
2.40
2.45
2.50
2.55
2.60
2.65
2.70
2.75
2.80
2.85
2.90
2.95
3.00
OUTPUT VOLTAGE
(V)
V
OUT(E)
MIN.
0.7800
0.8300
0.8800
0.9300
0.9800
1.0300
1.0800
1.1300
1.1800
1.2300
1.2800
1.3300
1.3800
1.4300
1.4800
1.5300
1.5800
1.6300
1.6800
1.7300
1.7800
1.8300
1.8800
1.9300
1.9800
2.0295
2.0790
2.1285
2.1780
2.2275
2.2770
2.3265
2.3760
2.4255
2.4750
2.5245
2.5740
2.6235
2.6730
2.7225
2.7720
2.8215
2.8710
2.9205
2.9700
MAX.
0.8200
0.8700
0.9200
0.9700
1.0200
1.0700
1.1200
1.1700
1.2200
1.2700
1.3200
1.3700
1.4200
1.4700
1.5200
1.5700
1.6200
1.6700
1.7200
1.7700
1.8200
1.8700
1.9200
1.9700
2.0200
2.0705
2.1210
2.1715
2.2220
2.2725
2.3230
2.3735
2.4240
2.4745
2.5250
2.5755
2.6260
2.6765
2.7270
2.7775
2.8280
2.8785
2.9290
2.9795
3.0300
TYP.
25
25
25
25
25
30
30
30
30
30
30
30
30
30
30
30
30
30
30
30
30
30
30
30
30
35
35
35
35
35
35
35
35
35
35
35
35
35
35
35
35
35
35
35
43
LOAD REGULATION
E-1 (mV)
∆V
OUT
MAX.
50
50
50
50
50
60
60
60
60
60
60
60
60
60
60
60
60
60
60
60
60
60
60
60
60
70
70
70
70
70
70
70
70
70
70
70
70
70
70
70
70
70
70
70
85
MAX.
720
720
720
720
570
570
570
570
420
420
420
420
320
320
280
280
280
280
280
280
220
220
220
220
200
200
200
200
200
200
200
200
200
200
160
160
160
160
160
160
160
160
160
160
120
DROPOUT VOLTAGE 1
E-2 (mV)
V
dif
TYP.
880
880
880
880
740
740
740
740
570
570
570
570
470
470
410
410
410
410
410
410
350
350
350
350
320
320
320
320
320
320
320
320
320
320
260
260
260
260
260
260
260
260
260
260
200
MAX.
230
230
230
230
75
75
75
75
50
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
40
DROPOUT VOLTAGE 2
E-3 (mV)
V
dif2
TYP.
510
510
510
510
260
260
260
260
135
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
80
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