TS5215CX533 [TSC]

300mA Low Noise LDO Voltage Regulator with Enable; 300mA低压噪声LDO稳压器具有使能
TS5215CX533
型号: TS5215CX533
厂家: TAIWAN SEMICONDUCTOR COMPANY, LTD    TAIWAN SEMICONDUCTOR COMPANY, LTD
描述:

300mA Low Noise LDO Voltage Regulator with Enable
300mA低压噪声LDO稳压器具有使能

稳压器
文件: 总9页 (文件大小:213K)
中文:  中文翻译
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TS5215  
300mA Low Noise LDO  
Voltage Regulator with Enable  
SOT-25  
SOT-89-5L  
SOP-8  
Pin Definition:  
1. Input  
Pin Definition:  
1. Bypass / Adjust  
2. Ground  
Pin Definition:  
1. Enable  
2. Input  
8. Ground  
7. Ground  
6. Ground  
2. Ground  
3. Enable  
3. Enable  
3. Output  
4. Bypass / Adjust  
5. Output  
4. Input  
4. Bypass / Adj 5. Ground  
5. Output  
General Description  
TS5215 is an efficient linear voltage regulator with ultra low noise output, very low dropout voltage (typically 17mV at  
light loads and 300mV at 300mA), and very low power consumption (125uA at 100uA), providing high output current  
even when the application requires very low dropout voltage. The Chip Enable (EN) includes a CMOS or TTL  
compatible input allows the output to be turned off to prolong battery life. When shutdown, power consumption drops  
nearly to zero.  
TS5215 is included a precision voltage reference, error correction circuit, a current limited output driver, over  
temperature shutdown, revered battery protection and a reference bypass pin to improve its already excellent low-  
noise performance.  
Features  
Typical Application Circuit  
Ultra Low Noise Output  
Output Current up to 350mA  
Low Dropout Voltage  
TS5215CX5xx  
VIN  
VOUT  
Low Power Consumption  
“Zero” Off-mode Current  
Logic Controlled Electronic Enable  
Internal Current Limit  
COUT  
2.2uF  
EN  
Thermal Shutdown Protection  
on  
off  
Application  
CBYP  
470pF  
Cellular Telephones  
Palmtops, Notebook Computers  
Battery Powered Equipment  
TS5215CX5  
VIN  
Consumer and Personal Electronics  
SMPS Post Regulator and DC to DC Modules  
High-efficiency Linear Power Supplies  
Portable Application  
VOUT  
R1  
R2  
COUT  
2.2uF  
EN  
on  
Ordering Information  
off  
Part No.  
Package  
SOT-25  
Packing  
CBYP  
470pF  
TS5215CX5xx RF  
3Kpcs / 7” Reel  
1Kpcs / 7” Reel  
2.5Kpcs / 13” Reel  
TS5215CY5xx RM SOT-89-5L  
TS5215CSxx RL SOP-8  
Adjustable Version: VOUT = 1.24 (R1+R2)/R2  
(Adjustable output range up to 8V)  
Note: Where xx denotes voltage option, available are  
50=5.0V  
33=3.3V  
EN (pin3) may be connected directly to VIN (pin 1)  
Low noise operation: CBYP =470pF, COUT >2.2uF  
Basic operation: CBYP =not used, COUT >2uF  
25=2.5V  
Leave blank for adjustable version.  
Contact factory for additional voltage options.  
1/9  
Version: B07  
TS5215  
300mA Low Noise LDO  
Voltage Regulator with Enable  
Absolute Maximum Rating (Note 1)  
Parameter  
Symbol  
VIN  
Limit  
-20~ +20  
-20~ +20  
Internal limited  
220  
Unit  
V
Input Supply Voltage  
Enable Input Voltage  
Power Dissipation (Note 2)  
SOT-25  
VCE  
V
PD  
Thermal Resistance  
ӨJA  
oC/W  
SOT-89-5L  
SOP-8  
Operating Junction Temperature Range  
110  
160  
TJ  
-40 ~ +125  
-65 ~ +150  
5
oC  
oC  
S
Storage Temperature Range  
Lead Soldering Temperature (260oC)  
TSTG  
Recommend Operating Rating (Note 2)  
Parameter  
Symbol  
VIN  
Limit  
+2.5 ~ +16  
0 ~ VIN  
Unit  
V
Input Supply Voltage  
Enable Input Voltage  
VCE  
V
Electrical Specification (VIN =Vo+1V, Io=100uA, COUT=1uF, Vce2V, TJ = 25oC, unless otherwise specified.)  
Parameter  
Conditions  
VIN=Vo + 1V  
Min  
Typ  
VOUT  
40  
Max  
1.02|Vo|  
--  
Unit  
Output Voltage  
0.98|Vo|  
V
ppm/ oC  
%
Output Voltage Temp. Coefficient  
Line Regulation  
(Note 4)  
--  
--  
--  
--  
--  
--  
--  
--  
--  
--  
--  
--  
--  
--  
--  
--  
--  
Vo+1V VIN 16V  
0.1mA Io 300mA  
Io=100uA  
0.005  
0.02  
40  
0.05  
0.2  
Load Regulation (Note 5)  
%
48  
Io=50mA  
150  
220  
300  
80  
190  
265  
360  
125  
600  
1500  
5000  
1
Dropout Voltage (Note 6)  
mV  
Io=150mA  
Io=300mA  
Io=100uA  
Io=50mA  
350  
1000  
2500  
0.01  
--  
Ground Pin Current (Note 7)  
Quiescent Current  
uA  
uA  
Io=150mA  
Io=300mA  
VIN <0.4V (Shutdown)  
VIN <0.18V (Shutdown)  
VOUT=0V  
5
Output Current Limit  
400  
75  
600  
--  
mA  
dB  
Power Supply Rejection Ratio  
Thermal Regulation (Note 8)  
Output Noise  
At f=100Hz, Io=100uA,  
0.05  
260  
--  
%/W  
nVHz  
Io=50mA, COUT=2.2uF,  
--  
Enable Function  
Enable Input Logic-Low Voltage  
Enable Input Logic-Low Voltage  
Regulation shutdown  
Regulation enable  
VIL0.4V  
--  
2.0  
--  
--  
--  
0.4  
--  
V
V
0.01  
5
-1  
Enable input Current  
uA  
VIH2.0V  
--  
20  
2/9  
Version: B07  
TS5215  
300mA Low Noise LDO  
Voltage Regulator with Enable  
Electrical Specification (Continue)  
Note:  
1. Exceeding the absolute maximum rating may damage the device.  
2. The maximum allowable power dissipation at any Ta is Pd(max) = [TJ(MAX) - Ta] + ӨJA. Exceeding the maximum  
allowable power dissipation will result in excessive die temperature, and the regulator will go into thermal shutdown.  
3. The device is not guaranteed to function outside its operating rating.  
4, Output voltage temperature coefficient is defined as the worst case voltage change divided by the total temperature  
range.  
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 1mA to 300mA (5V version) and 1mA to 120mA (VOUT <5V version). Changes  
in output voltage due to heating effects are covered by the thermal regulation specification.  
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.  
7, Ground pin current is the regulator quiescent current plus pass transistor base current. The total current drawn from  
the supply is the sum of the load current plus the ground pin current.  
8, Thermal regulation is defined as the change in output voltage at a time “t” after a change in power dissipation is  
applied, excluding load or line regulation effects. Specifications are for a 300mA load pulse at Vin=16V for t=10mS.  
Block Diagrams  
3/9  
Version: B07  
TS5215  
300mA Low Noise LDO  
Voltage Regulator with Enable  
Application Information  
Enable Input  
TS5215 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 VIN and pulled up to the maximum supply voltage.  
Input Capacitor Requirement  
An input capacitor of 0.1uF 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 TS5215 series requires an output capacitor to maintain stability and improve transient response is necessary.  
2.2uF minimum is recommended. Larger values improve the regulator’s transient response. The output capacitor  
value may be increased without limit.  
The output capacitor should have an ESR (effective series resistance) less than 5Ω and a resonant frequency above  
1MHz. Ultra low ESR capacitors can cause a low amplitude oscillation on the output and/or under damped transient  
response. Most of tantalum or aluminum electrolytic capacitors are adequate; film types will work. Since many  
aluminum electrolytic have electrolytes that freeze at about –30oC, solid tantalums are recommended for operation  
below –25oC. At lower values of output current, less output capacitance is required for output stability. The capacitor  
can be reduced to 0.47uF for current below 10mA or 0.33uF for currents below 1mA.  
Reference Bypass Capacitor  
Bypass is connected to the internal voltage reference. A 470pF capacitor (CBYPASS) connected from Bypass to  
Ground quiets this reference, providing a significant reduction in output noise. CBYPASS reduces the regulator phase  
margin; when using CBYPASS, output capacitors of 2.2uF or greater are generally required to maintain stability.  
The star up speed of the TS5215 is inversely proportional to the size of the reference bypass capacitor. Applications  
requiring a slow ramp up of output voltage should consider larger values of CBYPASS. Likewise, if rapid turn on is  
necessary, consider omitting CBYPASS. If output noise is not a major concern, omitted CBYPASS and leave Bypass open.  
No Load Stability  
The TS5215 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.  
Adjustable Regulator Design  
The adjustable regulator versions can be adjusted to a specific output voltage by using two external resistors to  
programming the output voltage anywhere between 1.25 and the 8V maximum operating rating of the family.  
Two resistors are used. Resistors can be quite large up to 470kΩ, because of the very high input impedance and low  
bias current of the sense comparator, the resistor values are calculated by:  
A capacitor from Adjust to Ground provides greatly improved noise performance.  
TS5215CX5  
VOUT  
VIN  
R1  
R2  
COUT  
2.2uF  
EN  
on  
off  
CBYP  
470pF  
Adjustable Version: VOUT = 1.24 (1+R2/R1)  
(Adjustable output range up to 8V)  
4/9  
Version: B07  
TS5215  
300mA Low Noise LDO  
Voltage Regulator with Enable  
Application Information (Continue)  
Dual Supply Operation  
When used in dual supply systems where the regulator load is returned to a negative supply, the output voltage must  
be diode clamped to ground.  
Thermal Characteristics  
TS5215 series is designed to provide 300mA (5V version) 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:  
PD(MAX) = [ TJ(MAX) – TA ] /ΘJA  
TJ(MAX) is the maximum junction temperature of the die(125oC), and Ta is the ambient operating temperature. ΘJA is  
layout dependent, the actual power dissipation of the regulator circuit can be determined using the equation:  
PD = (VIN – VOUT) * IOUT + VIN * IGND  
Substituting Pd(max) for Pd 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 TS5215CX33 at room  
temperature with a minimum footprint layout, the maximum input voltage for a set output current can be determined  
as follows:  
PD(MAX) = (125oC – 25oC) / 220oC/W  
PD(MAX) = 455mW  
The junction to ambient thermal resistance for the minimum footprint is 220oC/W, the maximum power dissipation  
must not be exceeded for proper operation. Using the output voltage of 3.3V and an output current of 120mA, the  
maximum input voltage can be determined. From the electrical characteristics table, the maximum ground current for  
120mA output current is 2.5mA.  
445mW = (VIN – 3.3V ) * 300mA + VIN * 2.5mA  
445mW = VIN * 300mA – 3.3 * 300mA + VIN * 2.5mA  
445mW = VIN * 300mA – 990mW + VIN * 2.5mA  
1435mW = VIN * 302.5mA  
VIN (max) = 4.74V  
Therefore, a 3.3V application at 300mA of output current can accept a maximum input voltage of 4.74V in a SOT-25  
package.  
Fixed Output Regulator Design  
TS5215CX5xx  
TS5215CX5xx  
VIN  
VOUT  
VIN  
VOUT  
COUT  
2.2uF  
COUT  
2.2uF  
EN  
on  
off  
CBYP  
470pF  
Ultra Low Noise Fixed Voltage Application  
Includes a 470pF capacitor for low noise operation and  
shows EN connected to IN for an application where  
enable/shutdown is not required. COUT= 2.2uF minimum.  
Low Noise Fixed Voltage Application  
An example of a low noise configuration where  
bypass is not required. COUT= 2.2uF minimum  
5/9  
Version: B07  
TS5215  
300mA Low Noise LDO  
Voltage Regulator with Enable  
SOT-25 Mechanical Drawing  
SOT-25 DIMENSION  
MILLIMETERS  
INCHES  
MIN  
DIM  
MIN  
0.09  
0.30  
0.09  
2.70  
1.40  
MAX  
1.25  
0.50  
0.25  
3.10  
1.80  
MAX.  
0.0492  
0.0197  
0.0098  
0.1220  
0.0709  
A+A1  
B
C
D
E
0.0354  
0.0118  
0.0035  
0.1063  
0.0551  
E
1.90 BSC  
0.0748 BSC  
H
2.40  
3.00  
0.09449  
0.1181  
L
0.35 BSC  
0.0138 BSC  
Ө1  
S1  
0º  
10º  
0º  
10º  
0.95 BSC  
0.0374 BSC  
Marking Diagram  
H = Device Code  
X = Voltage Code  
(5 = 5.0V, S = 3.3V, K = 2.5V)  
Y = Year Code  
M = Month Code  
(A=Jan, B=Feb, C=Mar, D=Apl, E=May, F=Jun, G=Jul, H=Aug, I=Sep,  
J=Oct, K=Nov, L=Dec)  
L = Lot Code  
6/9  
Version: B07  
TS5215  
300mA Low Noise LDO  
Voltage Regulator with Enable  
SOP-8 Mechanical Drawing  
SOP-8 DIMENSION  
MILLIMETERS  
INCHES  
MIN  
DIM  
MIN  
4.80  
3.80  
1.35  
0.35  
0.40  
MAX  
5.00  
4.00  
1.75  
0.49  
1.25  
MAX.  
0.196  
0.157  
0.068  
0.019  
0.049  
A
B
C
D
F
0.189  
0.150  
0.054  
0.014  
0.016  
G
K
M
P
R
1.27BSC  
0.05BSC  
0.10  
0º  
0.25  
7º  
0.004  
0º  
0.009  
7º  
5.80  
0.25  
6.20  
0.50  
0.229  
0.010  
0.244  
0.019  
Marking Diagram  
XX = Voltage Code  
(50 = 5.0V, 33 = 3.3V, 25 = 2.5V)  
= Year Code  
Y
M
= Month Code  
(A=Jan, B=Feb, C=Mar, D=Apl, E=May, F=Jun, G=Jul, H=Aug, I=Sep,  
J=Oct, K=Nov, L=Dec)  
L
= Lot Code  
7/9  
Version: B07  
TS5215  
300mA Low Noise LDO  
Voltage Regulator with Enable  
SOT-89-5L Mechanical Drawing  
SOT-89-5L DIMENSION  
MILLIMETERS INCHES  
DIM  
MIN  
4.40  
4.05  
1.50  
0.35  
2.40  
0.80  
MAX  
4.60  
4.25  
1.70  
0.41  
2.60  
--  
MIN  
0.17  
0.16  
0.06  
0.01  
0.09  
0.03  
MAX  
0.18  
0.17  
0.07  
0.02  
0.10  
--  
A
B
C
D
E
F
G
H
I
3.00(typ)  
1.50(typ)  
0.12(typ)  
0.06(typ)  
0.40  
1.40  
0.52  
1.60  
0.01  
0.05  
0.02  
0.06  
J
Marking Diagram  
Y
= Year Code  
M
= Month Code  
(A=Jan, B=Feb, C=Mar, D=Apl, E=May, F=Jun, G=Jul, H=Aug, I=Sep,  
J=Oct, K=Nov, L=Dec)  
L
= Lot Code  
XX = Voltage Code  
(50 = 5.0V, 33 = 3.3V, 25 = 2.5V)  
= Package Code for Adjustable type  
(CY5 = SOT-89-5L)  
8/9  
Version: B07  
TS5215  
300mA Low Noise LDO  
Voltage Regulator with Enable  
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.  
9/9  
Version: B07  

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