TS5213CX533 RFG

TS5213
Taiwan Semiconductor
Document Number: DS_P0000201 4 Version: G15
ORDERING INFORMATION
OUTPUT VOLTAGE PART NO. PACKAGE PACKING
3.3V
TS5213CX533 RFG
SOT-25
3,000pcs / 7” Reel
5V
TS5213CX550 RFG
SOT-25
3,000pcs / 7” Reel
Note:
1. Compliant to RoHS Directive 2011/65/EU and in accordance to WEEE 2002/96/EC.
2. Halogen-free according to IEC 61249-2-21 definition.
BLOCK DIAGRAMS
APPLICATION INFORMATION
Enable Input
TS5213 series feature an active-high (>2V) enable (EN) input that allows ON/OFF control of the regulator.
Current drain reduces to zero” when the device is shutdown, with only micro-amperes of leakage current. The
EN is compatible with CMOS logic interfacing. EN may be directly tied to V
IH
and pulled up to the maximum
supply voltage.
Input Capacitor Requirement
An input capacitor of 0.17μF or greater is recommended when the device is more than 10” away from the bulk
AC supply capacitance or when the supply is a battery.
Output Capacitor Requirement
The TS5213 series requires an output capacitor to maintain stability and improve transient response is necessary.
The TS5213 is ultra-stable, requiring only 0.47uF of output capacitance for stability. It is stable with all type of
capacitors, including the tiny, low-ESR ceramic chip capacitors. The output capacitor value may be increased
without limit.
No Load Stability
The TS5213 series will remain stable and in regulation with no load, unlike many other voltage regulators. This is
especially important in CMOS RAM keep alive applications.
TS5213
Taiwan Semiconductor
Document Number: DS_P0000201 5 Version: G15
APPLICATION INFORMATION (CONTINUE)
Thermal Characteristics
TS5213 series is designed to provide 80mA of continuous current in a very small package. Maximum power
dissipation can be calculated based on the output current and the voltage drop across the part. To determine the
maximum power dissipation of the package, use the junction-ambient thermal resistance of the device and the
following basic equation:
P
D(MAX)
= [ T
J(MAX)
– T
A
] /Θ
JA
T
J(MAX)
is the maximum junction temperature of the die(125
o
C), and Ta is the ambient operating temperature. Θ
JA
is layout dependent, the actual power dissipation of the regulator circuit can be determined using the equation:
P
D
= (V
IN
– V
OUT
) * I
OUT
+ V
IN
* I
GND
Substituting P
D(MAX)
for P
D
and solving for the operating conditions that are critical to the application will give the
maximum operating conditions for the regulator circuit. For example, when operating the TS5213CX550 at room
temperature with a minimum footprint layout, the maximum input voltage for a set output current can be
determined as follows:
P
D(MAX)
= (125
o
C – 25
o
C) / 220
o
C/W
P
D(MAX)
= 455mW
The junction to ambient thermal resistance for the minimum footprint is 220
o
C/W, the maximum power dissipation
must not be exceeded for proper operation. Using the output voltage of 5.0V and an output current of 80mA, the
maximum input voltage can be determined. Form the electrical characteristics table, the maximum ground
current for 80mA output current is 1mA.
445mW = (V
IN
– 5.0V ) * 80mA + V
IN
* 1.8mA
445mW = V
IN
* 80mA – 5.0 * 80mA + V
IN
* 1.8mA
445mW = V
IN
* 80mA – 400mW + V
IN
* 1.8mA
845mW = V
IN
* 81.8mA
V
IN
(max) = 10.33V
Therefore, a 5.0V application at 80mA of output current can accept a maximum input voltage of 10.33V in a SOT-
25 package.
TS5213
Taiwan Semiconductor
Document Number: DS_P0000201 6 Version: G15
CHARACTERISTICS CURVES
(T
C
= 25°C unless otherwise noted)
Figure 1. Output Voltage vs. Input Voltage
Figure 2. Ground Current vs. Output Current
Figure 3. Dropout Voltage vs. Output Current
Figure 4. Short Circuit Current vs. Input
Voltage
Figure 5. Ripple Rejection vs. Frequency
Figure 6. Ripple Rejection vs. Frequency

TS5213CX533 RFG

Mfr. #:
Manufacturer:
Taiwan Semiconductor
Description:
LDO Voltage Regulators 80mA Low Noise LDO Voltage Regulator 3,3v
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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