ZXCL SERIES
Micropower SC70-5 & SOT23-5 low dropout regulators
ZXCL5213V25, ZXCL5213V26, ZXCL5213V28, ZXCL5213V30, ZXCL5213V33,
ZXCL250, ZXCL260, ZXCL280, ZXCL300, ZXCL330
Description
Features
The ZXCL series have been designed with space
sensitive systems in mind. They are available in
the ultra small SC70-5 package, which is half the
size of SOT23 based regulators.
The devices can be used with all types of output
capacitors including low ESR ceramics and
typical dropout voltage, is only 85mV at 50mA
load. Supply current is minimised with a ground
pin current of only 50 A at full 150mA load.
Logic control allows the devices to be shut
down, consuming typically less than 10nA.
These features make the device ideal for battery
powered applications where power economy is
critical.
For
applications
requiring
improved
performance over alternative devices, the
ZXCL is also offered in the 5 pin SOT23
package with an industry standard pinout.
The devices feature thermal overload and
over-current protection and are available with
output voltages of 2.5V, 2.6V, 2.8V, 3V, 3.3V.
•
•
•
•
•
•
Low 85mV dropout at 50mA load
50 A ground pin current with full 150mA load
2.5, 2.6, 2.8, 3, & 3.3 volts output
Very low noise, without bypass capacitor
5-pin SC70 and SOT23 package
No-load stable
Applications
•
•
•
•
•
•
Cellular and Cordless phones
PDA
Hand held instruments
Camera, Camcorder, Personal stereo
PC cards
Portable and battery-powered equipment
No-Load Stability,
the ZXCL device will maintain regulation and
is stable with no external load. e.g. CMOS RAM applacations.
Typical application circuit
Package footprint
SOT23-5 (see P7 for SC70-5)
Package suffix - E5
V
IN
GND
EN
Top view
V
O
NC
Issue 8 - October 2007
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ZXCL SERIES
Ordering information
Order reference
Voltage
(V)
2.5
2.6
2.8
3.0
3.3
4.0
2.5
2.6
2.8
3.0
3.3
4.0
Package
Part
marking
L25A
L26A
L28A
L30A
L33A
L40A
L25C
L26C
L28C
L30C
L33C
L40C
Status
Reel size
(inches)
7
7
7
7
7
7
7
7
7
7
7
7
Tape
width
(mm)
8
8
8
8
8
8
8
8
8
8
8
8
Quantity
per reel
3000
3000
3000
3000
3000
3000
3000
3000
3000
3000
3000
3000
ZXCL250H5TA
ZXCL260H5TA
ZXCL280H5TA
ZXCL300H5TA
ZXCL330H5TA
ZXCL400H5TA
ZXCL5213V25H5TA
ZXCL5213V26H5TA
ZXCL5213V28H5TA
ZXCL5213V30H5TA
ZXCL5213V33H5TA
ZXCL5213V40H5TA
SC70-5
SC70-5
SC70-5
SC70-5
SC70-5
SC70-5
SC70-5
SC70-5
SC70-5
SC70-5
SC70-5
SC70-5
Active
Active
Active
Active
Active
Obsolete
Active
Active
Active
Active
Active
Not rec.
for new
designs
Active
Active
Active
Active
Active
Obsolete
ZXCL250E5TA
ZXCL260E5TA
ZXCL280E5TA
ZXCL300E5TA
ZXCL330E5TA
ZXCL400E5TA
2.5
2.6
2.8
3.0
3.3
4.0
SOT23-5
SOT23-5
SOT23-5
SOT23-5
SOT23-5
SOT23-5
L25B
L26B
L28B
L30B
L33B
L40B
7
7
7
7
7
7
8
8
8
8
8
8
3000
3000
3000
3000
3000
3000
Absolute maximum rating
Terminal Voltage with respect to GND
V
IN
E
N
V
O
SC70-5
SOT23-5
-0.3V to 7.0V
-0.3V to 10V
-0.3V to 5.5V
Output short circuit duration
Infinite
Continuous power dissipation Internally limited
Operating temperature range -40°C to +85°C
Storage temperature range
-55°C to +125°C
Package power dissipation (T
A
=25°C)
300mW (Note 1)
450mW (Note 1)
Stresses beyond those listed under “Absolute maximum ratings” may cause permanent damage
to the device. These are stress ratings only, and functional operation of the device at these or any
other conditions beyond those indicated in the operational sections of the specifications is not
implied. Exposure to absolute maximum conditions for extended periods may affect device
reliability.
Issue 8 - October 2007
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ZXCL SERIES
Recommended operating conditions
Symbol
V
IN
V
ENH
V
ENL
T
A
Parameter
Input voltage range
Enable pin logic level High pin
Enable pin logic level Low pin
Ambient temperature range
Min
2.0*
2.2
0
-40
Max
5.5
10
0.8
85
Units
V
V
V
°C
* Output voltage will start to rise when V
IN
exceeds a value or approximately 1.3V. For normal operation,
V
IN(min)
> V
OUT(nom)
+ 0.5V.
Pin description
Symbol
V
IN
G
ND
E
N
N/C
V
O
Parameter
Supply voltage
Ground
Active HIGH enable input. TTL/CMOS logic compatible. Connect to V
IN
or logic high for normal operation
No connection
Regulator output
Issue 8 - October 2007
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ZXCL SERIES
Electrical characteristics
V
IN
= V
O
= 0.5V, all values at T
A
= 25°C
(Unless otherwise stated)
Symbol Parameter
V
O
Output voltage
Conditions
I
O
=1mA
I
O
=100mA
V
O
+0.5V < V
IN
< V
IN
max
Limits
Min. Typ. Max.
-2%
+2%
-3%
-15
+3%
Units
V
V
ppm/°C
V
O
/ T
I
O(Max)
I
OLIM
I
O
Output voltage
temperature
coefficient
Output current
XCL250/5213V25 only
Over current limit
Ground pin
current
Dropout voltage
note 3
XCL250/5213V25 only
No Load
I
O
=150mA
I
O
=100mA
I
O
=10mA
All variants
I
O
=50mA
I
O
=100mA ZXCL250 / 5213V25
I
O
=100mA ZXCL260 / 5213V26
I
O
=100mA ZXCL280 / 5213V28
I
O
=100mA ZXCL300 / 5213V30
I
O
=100mA ZXCL330 / 5213V33
I
O
=100mA ZXCL400 / 5213V40
V
IN
=(V
O
+0.5V) to 5.5V, I
O
=1mA
I
O
=1mA to 100mA
f=10Hz to 100kHz, C
O
=10 F
150
100
160
105
mA
800
750
50
120
100
mA
A
A
A
mV
mV
mV
mV
mV
mV
mV
mV
%/V
%/mA
V
RMS
mV
100
1
nV
A
°C
V
DO
V
LNR
V
LDR
E
N
V
ENHS
I
EN
I
OSD
T
SD
Line regulation
Load regulation
Output noise
voltage
Enable pin
hysteresis
Enable pin input
V
EN
=5.5V
current
Shutdown supply V
EN
=0V
current
Thermal shutdown
temperature
230
25
50
40
15
85
163
155
140
140
140
140
0.02
0.01
50
150
325
310
280
280
280
280
0.1
0.04
125
165
Device testing is performed at T
A
=25°C. Device thermal performance is guaranteed by design.
Note1: Maximum power dissipation is calculated assuming the device is mounted on a PCB measuring 2 inches square
Note2:Output voltage will start to rise when V
IN
exceeds a value or approximately 1.3V. For normal operation,
V
IN(min)
> V
OUT(nom)
+ 0.5V.
Note3:Dropout voltage is defined as the difference between V
IN
and V
O
, when V
O
has dropped 100mV below its nominal
value. Nominal value of V
O
is defined at V
IN
=V
O
+0.5V.
Issue 8 - October 2007
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ZXCL SERIES
Typical characteristics
(ZXCL280 / 5213 shown)
6
5
0.25
Dropout Voltage (V)
5
6
0.20
0.15
0.10
0.05
0.00
Voltage (V)
4
V
IN
3
2
I
OUT
= 100mA
1
I
OUT
= 1mA
0
0
1
2
3
4
0
25
50
75
100
125
150
175
Input Voltage (V)
Output Current (mA)
Input to Output Characteristics
2.81
25.0
Dropout Voltage v Output Current
Ground Current (µA)
Output Voltage (V)
V
IN
= 3.3V
No Load
24.8
24.6
24.4
24.2
24.0
23.8
23.6
23.4
23.2
23.0
-50
V
IN
= 3.3V
No Load
2.80
2.79
-50
-25
0
25
50
75
100
-25
0
25
50
75
100
Temperature (˚C)
Temperature (˚C)
Output Voltage v Temperature
30
60
Ground Current v Temperature
Ground Current (µA)
25
20
15
10
5
0
0
1
2
3
4
5
Ground Current (µA)
No Load
55
50
45
40
35
30
25
20
0
25
50
75
100
125
150
V
IN
= 5V
V
IN
= 3.3V
Input Voltage (V)
Load Current (mA)
Ground Current v Input Voltage
Ground Current v Load Current
Issue 8 - October 2007
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