UMW
R
UMW XC6206
Linear voltage regulator
■ Product introduction
XC6206 series is a CMOS step - down voltage regulator with high ripple rejection, low power
consumption, low dropout, overcurrent and short - circuit protection. These devices have a very low
static bias current (6.0μA Typ.), which can provide an output current of 250mA even if the
difference between the input and output voltages is very small, and still maintain a good
regulation rate. Because the voltage difference between input and outpu t is very small and the
static bias current is very small, these devices are especially suitable for battery- powered
products that want to prolong the battery life, such as computers, consumer products and
industrial equipment.
■ Product features
●
High precision output voltage:
gear A: ±1%, gear B: ±2.5%
● Output voltage: 1.5V~5.0V (step
size 0.1V)
●
●
Very low static bias current
(Typ.=6.0 μ A)
Low temperature adjustment
coefficient
● The highest input voltage can reach 8V.
● With strong load capacity: when Vin=4.3V and
Vout=3.3V, Iout=250mA.
● It can be used as regulator and reference voltage.
● Good input stability: Typ. 0.03%/V
● Package form: SOT89 -3, SOT23-3
■ product usage
● Battery power supply system
● Cordless telephone equipment
● Wireless control system
● Portable/palm computer
●
Portable consumer equipment
●
Portable instrument
●
Automobile electronic equipment
●
Voltage reference source
■ Package form and pin definition function
Pin serial
number
Pin
MR
PR
definition
package package
SOT23-3 SOT89-3
1
2
1
3
3
2
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VSS
OUT
VIN
function
declaration
Chip grounding terminal
Output
Input
1
UTD Semiconductor Co.,Limited
UMW
R
UMW XC6206
Ver 2.0
■
Model description
XC6206P ①② ③ ④ ⑤
Representat
symbol
describe
describe
ive number
①②
③
precision
④
package
⑤
■
12~50
Output voltage
Belt
loading
: e.g. output 3.0V →① =3,
② =0
2
: ±2.5%
1
: ±1%
M
: SOT-23
P
: SOT-89
R
: embossed belt, standard inflow
functional block diagram
Vout
Vi n
Vre f
C ur re n t
Lim i t
Vs s
■
Limit parameter
project
parameter
symbo l
Vin
voltage
Vout
voltage
input
Output
voltage
limit value
unit
9
V
Vss-0.3 ~Vout+0.3
V
500
mA
Iout
output current
elect riccurrent
power
SOT23
consumptio n
temperature
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300
PD
SOT89- 3
Maximum allowable
power consumption
mW
500
Tw
Working
temperature
- 25~+80
℃
Tc
Storage
temperature
- 40 ~+125
℃
Th
welding
temperature
260
℃ ,10s
2
UTD Semiconductor Co.,Limited
UMW
R
UMW XC6206
Ver 2.0
■
O
Electrical characteristics (Cin=Cout=10uF,Ta=25 C unless otherwise specified)
trait
symbol
minimum
value
VOUT(T)
condition
VOUT(E)
Output voltage
IOUT=1mA,VIN= VOUT(T)+1V
IOUT (max)
Maximum output
current
IOUT =50mA
ISS
quiescent
current
Load stability
∆VOUT
∆VOUT/(∆VIN
Input
stability
Output
voltage
280
2.6V≤VOUT(T)≤3.3V
160
240
3.4V≤VOUT(T)≤5.5V
120
200
mV
VIN= VOUT(T)+1V
7
μ A
VIN= VOUT(T)+1V,1mA≤IOUT≤80mA
20
mV
VIN= VOUT(T)+1V,IOUT=10mA
0.1
0.2
%/V
±100
-40℃≤Ta≤85℃
VIN
Overcurrent
protection
current
V
1.02
200
∆VOUT/(∆Ta
1.8
--
VIN= [VOUT(T)+1]V +1Vp-pAC
PSRR
VOUT(T)*
1.5V≤VOUT(T)≤2.5V
VOUT(T)+0.5V ≤VIN≤5.5V
Ripple
suppression
ratio
Short circuit
current
unit
mA
IOUT =1mA,
•VOUT)
maximum
100
•VOUT)
temperature
coefficient
input voltage
VOUT(T)
*0.98
VIN=VOUT(T)+1V
Vdrop
Drop pressure
difference
typical
value
IOUT =10mA,f=1kHz
ppm/℃
8.0
V
40
dB
Ishort
VIN= VOUT(T)+1.5V ,VOUT=Vss
30
mA
Ilimt
VIN= VOUT(T)+1.5V
380
mA
Note:
1. VOUT (T): the specified output voltage.
.
2. VOUT (E): effective output voltage (that is, the output voltage when IOUT keeps a certain value and VIN = (VOUT (T)+1.0V))
3. IOUT (max):VIN=VOUT(T)+1V, slowly increase the output current, and the current value when the output
voltage is ≤ VOUT(E)*95%.
4. Vdrop = Vin1 – Vout (e) s: Vin1 = the input voltage when the output voltage drops to 98% of VOUT (E)1. VOUT
(E)s= VOUT (E)*98%
VOUT (E)1= the output voltage value when vin = vout (t)+1V and iout = a certain value.
■
test circuit
V IN
+
V IN
A
VOUT
+
VOUT
OPEN
VSS
V
V
CL
10u F
VSS
CL
10u F
A
Figure 2
图1
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3
UTD Semiconductor Co.,Limited
UMW
R
UMW XC6206
Ver 2.0
■ Applied circuit
1. Basic circuit
Vo ut
Vin
VOUT
XC6206
VIN
+
C1
1 uF
+
C2
1 uF
GND
Sin g le Point GND
COMMON
COMMON
2. Positive voltage regulator with large output current
Vo ut
Vin
VIN
VOUT
XC6206
R1
+
C1
1 uF
+
C2
1 uF
GND
COMMON
COMMON
Sin g le Point GND
3. Circuit for increasing
output voltage (1)
VIN
Vin
+
C1
1 uF
Vout
XC6206
VOUT
+
GND
C2
1 uF
R1
Vxx
Iss
R2
Single Point GND
COMMON
COMMON
Vout=Vxx(1+R2/R1)+IssR2
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4
UTD Semiconductor Co.,Limited
R
UMW
UMW XC6206
Ver 2.0
4. Circuit for increasing output voltage (2)
Vin
VIN
+
Vout
VOUT
XC6206
C1
1 uF
+
C2
1 uF
GND
R1
Vxx
Iss
D1
COMMON
COMMON
Single Point GND
Vout=Vxx+VD1
5. Constant current regulator
Vout
Vin
VIN
XC6206
XC6206
+
C1
1 uF
+
GND
C2
1 uF
R1
Vxx
Iss
Iout
RL
Single Point GND
COMMON
Iout=Vxx/RA+Iss
6. Double
output
Vin
Vout
XC6206
VIN
VOUT
+
GND
C3
10u F
IC2
Vin
+
C1
10u F
Vout
XC6206
+
C2
10u F
R1
VOUT
GND
COMMON
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COMMON
5
UTD Semiconductor Co.,Limited
UMW
R
UMW XC6206
Ver 2.0
■ Characteristic curve
2. Output voltage and input voltage
1. Output voltage-output current
(when the load current increases)
3. Dropout voltage and output current
4. Dropout voltage and output voltage
6. Ripple suppression
5. Output voltage and temperature
7. Transient response
Load transient input response characteristics
Input transient response characteristics
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6
UTD Semiconductor Co.,Limited
semiconductor co.,
ltd
UMW
R
UMW XC6206
Ver 2.0
■ Packag Info mation
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7
UTD Semiconductor Co.,Limited
UMW
R
UMW XC6206
Ver 2.0
SOT-23
www.umw-ic.com
8
UTD Semiconductor Co.,Limited
semiconductor co.,
ltd
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