ETC CYT6218

CYT 6218
400mA CMOS LDO Regulator
Features
General Description
The CYT6218 series of fixed output low
dropout linear regulators are designed for
portable battery powered applications, which
require low noise environment, fast enable
response time, and low dropout voltage. Each
device contains a bandgap voltage reference,
an error amplifier, a PMOS power transistor,
and resistors for setting output voltage, and
current limit and temperature limit protection
circuits.
The CYT6218 has been designed to be
used with low cost capacitors and requires a
minimum output capacitor of 1.0µF. Standard
voltage versions are 5, 1.8, 2.5, 2.8, 3.0, and
3.3V.
Typical 175mV dropout voltage at 150mA.
■ Excellent Line and Load Regulation.
■ Fast Enable Turn-On Time of 20µs
■ Disable Current Less than 0.3µA (Typ.)
■ Ultra-Low Ground Current at 65µA (Typ.)
■ Thermal Protection.
■ Standard SOT-23-5 package.
■
Applications
■
■
■
■
■
Digital camera
USB removable devices
Portable DVD players
MPEG4 devices
Wireless LAN’s
SOT-23-5 Package
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CYT 6218
Pin Configuration
1.VIN
2.GND
3.EN
4.NC
5.VOUT
SOT-23-5
Typical Application
VIN=5V
VIN
ON
CIN:2.2uF
OFF
VOUT
CYT6218-3.3V
EN
GND
Block Diagram
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VOUT=3.3V
COUT:2.2uF
CYT 6218
Ordering/Marking Information
CYT6218- X
X
X
Yield periods:
A-Z : 1-26
a-z : 27-52
Package Type:
L : SOT-23-5L
Output Voltage:
A : 3.3V
B : 2.8V
C : 2.5V
D : 1.8V
E : 1.5V
F : 3.0V
Operating Rating (1)
Parameter
Symbol
Value
Units
Supply Input Voltage
VIN
+2.8 to +5.5
V
Junction Temperature
TJ
0 to +125
℃
Absolute Maximum Rating (2)
Parameter
Symbol
Value
Units
Input Supply Voltage
VIN
6
V
Enable Voltage
VEN
-0.3 to VIN
V
Power Dissipation
PD
Internally Limited (3)
Output Short Circuit Duration
Infinite
Thermal Resistance,
Junction-to-Ambient
ӨJA
230(SOT-23-5L)
180 (SOT-89-5)
Lead Temperature (Soldering,5 sec.)
℃/W
260
℃
Junction Temperature
TJ
+150
℃
Storage Temperature
TS
-40 to +150
℃
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CYT 6218
Electrical Characteristics
VIN = VOUT + 1V; IOUT = 10mA, CIN = 2.2µF; COUT = 2.2µF; IOUT = 10mA; TJ = 25°C; unless otherwise specified.
Symbol
Parameter
Conditions
Min
Typ
Max
Units
VOUT
Output Voltage Accuracy
CYT6218-1.5V
CYT6218-1.8V
CYT6218-2.5V
CYT6218-2.8V
CYT6218-3.0V
CYT6218-3.3V
1.470
1.764
2.450
2.744
2.940
3.234
1.5
1.8
2.5
2.8
3.0
3.3
1.530
1.836
2.550
2.856
3.060
3.366
V
△VOUT/△T
Output Voltage
Temperature Coefficient
Note4
--
0.025
--
mV/℃
△VOUT/VOUT
Line Regulation
VIN=4.3V to 6V,IOUT=10mA
(VOUT=3.3V)
--
1.0
--
%/V
△VOUT/VOUT
Load Regulation(5)
VIN=5V IOUT=10 to 400mA
(VOUT=3.3V)
--
1.0
--
%
IOUT=10mA
--
15
--
IOUT=150mA
--
175
--
IOUT=250mA
--
320
--
IOUT=400mA
--
600
--
Thermal Protection
Temperature
--
150
--
Protection Hysterisys
--
20
--
F=120Hz
--
59
--
VEN=0V
--
0.3
--
VEN=VTH(EN) ; IOUT=10mA
--
65
--
VEN=VTH(EN) ; IOUT=400mA
--
110
--
Voltage Increasing, Output
Tums On, Logic High
1.6
--
--
Voltage Decreasing, Output
Tums Off, Logic Low
--
--
0.4
VOUT=0V
--
600
--
VIN-VOUT
TPROTECTION
PSRR
IQ
VTH(EN)
ILIMIT
Dropout Voltage(6)
Thermal Protection
Ripple Rejection
Quiescent Current
Enable Input Threshold
Voltage
Current Limit
mV
℃
dB
uA
V
mA
Note 1: The device is not guaranteed to function outside its operating rating.
Note 2: Exceeding the absolute maximum rating may damage the device.
Note 3: The maximum allowable power dissipation at any TA (ambient temperature) is calculated using:
PD(MAX) = (TJ(MAX) – TA)/ΘJA. Exceeding the maximum allowable power dissipation will
result in excessive die temperature, and the regulator will go into thermal shutdown. See
“Thermal Consideration” section for details
Note 4: Output voltage temperature coefficient is the worst case voltage change divided by the total
temperature range.
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CYT 6218
Note 5: Regulation is measured at constant junction temperature using low duty cycle pulse testing.
Parts are tested for load regulation in the load range from 10mA to 400mA. Changes in output
voltage due to heating effects are covered by the thermal regulation specification.
Note 6: Dropout voltage is defined as the input to output differential at which the output voltage drops
2% below its nominal value measured at 1V differential.
Application Hints
Like any low dropout regulator, CYT6218 requires external capacitors to ensure stability. The external
capacitors must be carefully selected to ensure performance.
Input Capacitor
An input capacitor of at least 1µF is required. Ceramic or Tantalum can be used. The value can be
increase without upper limit.
Output Capacitor
An output capacitor is required for stability. It must be placed no more than 1 cm away from the
VOUT pin, and connected directly between VOUT and GND pins. The minimum value is 1µF but may be
increase without limit.
Thermal Considerations
It is important that the thermal limit of the package is not exceeded. The CYT6218 has built-in
thermal protection. When the thermal limit is exceeded, the IC will enter protection, and VOUT will be
pulled to ground. The power dissipation for a given application can be calculated as following:
The power dissipation (PD) is
PD = IOUT * [VIN – VOUT]
The thermal limit of the package is then limited to PD(MAX) = [TJ – TA]/ΘJA where TJ is the
junction temperature, TA is the ambient temperature, and ΘJA for SOT-23-5L is around 230°C/W for
CYT6218.CYT6218 is designed to enter thermal protection at 150°C. For example, if TA is 25°C then the
maximum PD is limited to about 0.6W. In other words, if IOUT(MAX) = 400mA, then [VIN – VOUT]
cannot exceed 1.5V.
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CYT 6218
Outline Drawing SOT-23-5
DIM
A
B
C
D
E
F
H
J
K
N
DIMENSIONS
INCHES
MM
MIN
MAX
MIN
MAX
0.110
0.120
2.80
3.05
0.059
0.070
1.50
1.75
0.036
0.051
0.90
1.30
0.014
0.020
0.35
0.50
-
0.037
-
0.95
-
0.075
-
1.90
-
0.006
-
0.15
0.0035
0.008
0.090
0.20
0.102
0.118
2.60
3.00
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