TSC TS39103_11

TS39103
1A Ultra Low Dropout Voltage Regulator
with Multi-Function
TO-252-4L
(PPAK)
Pin Definition:
1. Enable
2. Input
3. Ground (tab)
4. Output
5. Flag / Feedback
General Description
The TS39103 are 1A ultra low dropout linear voltage regulators that provide low voltage, high current output from
an extremely small package. These regulators offers extremely low dropout (typically 400mV at 1A) and very low
ground current (typically 17mA at 1A).
The TS39103 are fully protected against over current faults, reversed input polarity, reversed lead insertion, over
temperature operation, positive and negative transient voltage spikes, logic level enable control and error flag
which signals whenever the output falls out of regulation.
Features
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Dropout voltage typically 0.4V @Io=1.0A
Output Current up to 1A
Low Ground Current
Extremely Fast Transient Response
Reversed Leakage
Reverse Battery Protection
Current Limit & Thermal Shutdown Protection
Application
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Ordering Information
Part No.
Package
Packing
TS39103CP4xx ROG
TO-252-4L
2.5Kpcs / 13” Reel
Note: “G” denote for Halogen Free Product
Where xx denotes voltage option, available are
18=1.8V
25=2.5V
33=3.3V
50=5.0V
ULDO Linear Regulator for PC add-in Cards
TM
PowerPC Power Supplies
Battery Powered Equipment
Consumer and Personal Electronics
High Efficiency Linear Power Supplies
SMPS Post Regulator and DC to DC Modules
High-efficiency Post Regulator Switching Supply
Portable Application
Low-Voltage microcontrollers and Digital Logic
Typical Application Circuit
TS39103
1/8
Version: D11
TS39103
1A Ultra Low Dropout Voltage Regulator
with Multi-Function
Absolute Maximum Rating (Note 1)
Parameter
Symbol
Limit
Unit
VIN
VEN
TSTG
-20V ~ +20
+20
-65 ~ +150
5
(Note 3)
V
V
o
C
S
Symbol
Limit
Unit
VIN (operate)
VEN (operate)
PD
TJ
RθJC
+2.25 ~ +16
+2.25 ~ +16
Internally Limited
-40 ~ +125
20
V
V
W
o
C
Supply Voltage
Enable Voltage
Storage Temperature Range
o
Lead Soldering Temperature (260 C)
ESD
Operating Rating (Note 2)
Parameter
Operation Input Voltage
Operation Enable Voltage
Power Dissipation (Note 4)
Operating Junction Temperature Range
Thermal Resistance Junction to Case
o
C/W
Electrical Characteristics
o
VIN = VOUT + 1V, VIN =2.5V for fixed reference output voltage, Venable= 2.25V, Ta = 25 C, unless otherwise
specified.
Parameter
Fixed Output Voltage
Line Regulation
Load Regulation
Conditions
10mA ≤ IL ≤ 1.0A,
Vo+1V ≤ VIN ≤ 8V
IL=10mA, Vo+1V ≤ VIN ≤ 16V
VIN =Vout+1V, 8mA≤IL≤300mA
VIN =Vout+1V, 10mA≤IL≤1A
Output Voltage Temp. Coefficient
Dropout Voltage (Note 5)
Quiescent Current (Note 6)
IL=100mA
IL=500mA
IL=1.0A
IL=100mA
VIN= VOUT +1V IL=500mA
IL=1.0A
VOUT =0, VIN = VOUT +1V
∆VOUT = -1%
Current Limited
Adjust Pin Bias Current
Reference Voltage Temp. Coefficient (Note 8)
Adjust Pin Bias Current Temp. Coefficient
Min
Typ
Max
Unit
0.980|Vo|
VOUT
1.020|Vo|
V
---------------
0.05
0.05
0.2
40
100
275
400
0.7
6
17
1.8
40
20
0.1
0.5
0.1
1.0
100
250
350
630
--23
-120
---
%
---93
--
----1
2
400
99
---
%
o
ppm/ C
mV
mA
A
nA
o
ppm/ C
o
nA/ C
Flag Output
Output Leakage Current
Output Low Voltage (Note 9)
Upper Threshold Voltage
Lower Threshold Voltage
Hysteresis
VOH=16V
VIN=0.9 * VOUT, IOL=250uA
% of VOUT
% of VOUT
2/8
uA
mV
%
%
%
Version: D11
TS39103
1A Ultra Low Dropout Voltage Regulator
with Multi-Function
Electrical Characteristics (Continue)
Enable Input
Low (OFF)
--0.8
V
High (ON)
2.25
--VEN =2.25V
--75
Enable Pin Input Current
uA
VEN =0.8V
--4
Note 1: Absolute Maximum Rating is limits beyond which damage to the device may occur. For guaranteed
specifications and test conditions see the Electrical Characteristics.
Note 2: The device is not guaranteed to operate outside its operating rating.
Input Logic Voltage
Note 3: Devices are ESD sensitive. Handling precautions recommended.
Note 4: The maximum allowable power dissipation is a function of the maximum junction temperature, TJ, the
junction to ambient thermal resistance, ӨJA, and the ambient temperature, Ta. Exceeding the maximum
allowable power dissipation will cause excessive die temperature, and the regulator will go into thermal
shutdown. The effective value of ӨJA can be reduced by using a heat sink, Pd(max) = (TJ(max) – Ta) / ӨJA.
Note 5: Dropout voltage is defined as the input to output differential at which the output voltage drops -1% below
its nominal value measured at 1V differential.
Note 6: Ground pin current is the regulator quiescent current. The total current drawn from the source is the sum
of the ground pin current and output load current, IGND = IIN - IOUT for fix output voltage, , IGND = IIN - IOUT
+10mA for fix reference output voltage in full load regulation.
Note 7: VREF ≤ VOUT ≤ (VIN – 1V), 2.25V ≤ VIN ≤ 16V, 10mA ≤ IL ≤ 1.0A.
o
Note 8: Output voltage temperature coefficient is ∆VOUT (worse cast) / (TJ(max) – TJ(MIN)) where is TJ(max) +125 C
o
and TJ(MIN) is 0 C.
Note 9: For adjustable device and fixed device with VOUT > 2.25V.
Pin Description
Pin Configuration
Enable
Input
Pin Description
TTL/COMS compatible input. Logic high is enable; logic low or open is shutdown
Unregulated input: +16V maximum supply
Ground
Ground: Ground pin and TAB / heat sink are internally connected.
Output
Regulator output
Flag (fixed voltage)
Feed Back (adjustable)
Error Flag (output): Open-collector output. Active low indicates an output fault
condition, if no used, leave open.
Adjustment input: Feedback input. Connect to resistive voltage-divider network.
3/8
Version: D11
TS39103
1A Ultra Low Dropout Voltage Regulator
with Multi-Function
Functional Diagram
Application Information
The TS39103 are high performance with low dropout voltage regulator suitable for moderate to high current and
voltage regulator application. Its 630mV dropout voltage at full load and over temperature makes it especially
valuable in battery power systems and as high efficiency noise filters in post regulator applications. Unlike normal
NPN transistor design, where the base to emitter voltage drop and collector to emitter saturation voltage limit the
minimum dropout voltage, dropout performance of the PNP output of these devices is limited only by low VCE
saturation voltage.
The TS39103 is fully protected from damage due to fault conditions. Linear current limiting is provided. Output
current during overload conditions is constant. Thermal shutdown the device when the die temperature exceeds
the maximum safe operating temperature. Transient protection allows device survival even when the input voltage
spikes above and below nominal. The output structure of these regulators allows voltages in excess of the desired
output voltage to be applied without reverse current flow.
Output Capacitor Requirement
The TS39103 requires an output capacitor to maintain stability and improve transient response is necessary. The
value of this capacitor is dependent upon the output current, lower currents allow smaller capacitors. TS39103
output capacitor selection is dependent upon the ESR of the output capacitor to maintain stability. When the output
capacitor is 10uF or greater, the output capacitor should have an ESR less than 2Ω. This will improve transient
response as well as promote stability. Ultra low ESR capacitors (<100mΩ), such as ceramic chip capacitors, may
promote instability. These very low ESR levels may cause an oscillation and/or under damped transient response.
A low ESR solid tantalum capacitor works extremely well and provides good transient response and stability over
temperature aluminum electrolytes can also be used, as long as the ESR of the capacitor is <2Ω. The value of the
output capacitor can be increased without limit. Higher capacitance values help to improve transient response and
ripple rejection and reduce output noise.
Input Capacitor Requirement
An input capacitor of 1uF or greater is recommended when the device is more than 4” away from the bulk AC
supply capacitance or when the supply is a battery. Small, surface mount, ceramic chip capacitors can be used for
bypassing. Larger values will help to improve ripple rejection by bypassing the input to the regulator, further
improving the integrity of the output voltage.
Minimum Load Current
The TS39103 is specified between finite loads. If the output current is too small leakage currents dominate and the
output voltage rises. A 10mA minimum load current is necessary for proper regulation.
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Version: D11
TS39103
1A Ultra Low Dropout Voltage Regulator
with Multi-Function
Application Information (Continue)
Transient Response and 3.3V to 2.5V or 2.5V to 1.8V Conversion
TS39103 has excellent transient response to variations in input voltage and load current. The device have been
designed to respond quickly to load current variations and input voltage variations. Large output capacitors are not
required to obtain this performance. A standard 10uF output capacitor, preferably tantalum, is all that is required.
Larger values help to improve performance even further. By virtue of its low dropout voltage, this device does not
saturate into dropout as readily as similar NPN base designs. When converting from 3.3V to 2.5V or 2.5V to 1.8V,
the NPN based regulators are already operating in dropout, with typical dropout requirements of 1.2V or greater,.
To convert down to 2.5V or 1.8V without operating in dropout, NPN based regulators require an input voltage of
3.7V at the very least. The TS39103 will provide excellent performance with an input as low as 3.0V or 2.5V
respectively. This gives the PNP based regulators a distinct advantage over older, NPN based linear regulators.
Power Dissipation
From under curves, the minimum area of copper necessary for the par to operate safely can be determined. The
maximum allowable temperature rise must be calculated to determine operation along which curve.
Error Flag
TS39101/3 versions feature an Error Flag, which looks at the output voltage and signals an error condition when
this voltage drops 5% below its expected value. The error flag is an open-collector output that pulls low under fault
conditions. It may sink 10mA. Low output voltage signifies a number of possible problems, including an overcurrent fault (the device is in current limit) or low input voltage. The flag output is inoperative during over
temperature shutdown conditions. A pull-up resistor from error flag to either ViN or VOUT is required for proper
operation. For information regarding the minimum and maximum values of pull-up resistance, refer the graph as
follow:
Enable Input
TS39103 versions feature an active-high 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 input
has TTL/CMOS compatible thresholds for simple interfacing with logic interfacing. EN may be directly tied to ViN
and pulled up to the maximum supply voltage.
5/8
Version: D11
TS39103
1A Ultra Low Dropout Voltage Regulator
with Multi-Function
Application Information (Continue)
Copper area lay out information
Determine the power dissipation requirements for the design along with the maximum ambient temperature at
which the device will be operated. Refer to power dissipation with copper area curve, which shows safe operating
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curves for three different ambient temperatures with 25 C, 50 C, 85 C. From these curves, the minimum amount of
copper can be determined by knowing the maximum power dissipation required.
PD = (VIN- VOUT) * IOUT + VIN * IGND
If we used a 5.0V output device and a 6V input at an output current of 350mA, then the power dissipation is as
follows:
PD = (6.0V- 5.0V) * 350mA + 5V * 4mA
PD = 350mW + 20mW
PD = 370mW
o
If the maximum ambient temperature is 85 C and the power dissipation is as above 375mW, the curve is shows
2
that the required area of copper is 80mm .
6/8
Version: D11
TS39103
1A Ultra Low Dropout Voltage Regulator
with Multi-Function
TO-252-4L Mechanical Drawing
Marking Diagram
Y
M
L
XX
= Year Code
= Month Code for Halogen Free Product
(O=Jan, P=Feb, Q=Mar, R=Apl, S=May, T=Jun, U=Jul, V=Aug, W=Sep,
X=Oct, Y=Nov, Z=Dec)
= Lot Code
= Output Voltage
(18=1.8V, 25=2.5V, 33=3.3V, 50=5V)
7/8
Version: D11
TS39103
1A Ultra Low Dropout Voltage Regulator
with Multi-Function
Notice
Specifications of the products displayed herein are subject to change without notice. TSC or anyone on its behalf,
assumes no responsibility or liability for any errors or inaccuracies.
Information contained herein is intended to provide a product description only. No license, express or implied, to
any intellectual property rights is granted by this document. Except as provided in TSC’s terms and conditions of
sale for such products, TSC assumes no liability whatsoever, and disclaims any express or implied warranty,
relating to sale and/or use of TSC products including liability or warranties relating to fitness for a particular
purpose, merchantability, or infringement of any patent, copyright, or other intellectual property right.
The products shown herein are not designed for use in medical, life-saving, or life-sustaining applications.
Customers using or selling these products for use in such applications do so at their own risk and agree to fully
indemnify TSC for any damages resulting from such improper use or sale.
8/8
Version: D11