TPS76150DBVR [TI]

LOW-POWER 100-mA LOW-DROPOUT LINEAR REGULATORS; 低功耗100mA低压降线性稳压器
TPS76150DBVR
型号: TPS76150DBVR
厂家: TEXAS INSTRUMENTS    TEXAS INSTRUMENTS
描述:

LOW-POWER 100-mA LOW-DROPOUT LINEAR REGULATORS
低功耗100mA低压降线性稳压器

线性稳压器IC 调节器 电源电路 光电二极管 输出元件 信息通信管理 PC
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TPS76130, TPS76132, TPS76133, TPS76138, TPS76150  
LOW-POWER 100-mA LOW-DROPOUT LINEAR REGULATORS  
SLVS178A – DECEMBER 1998 – REVISED FEBRUARY 1999  
DBV PACKAGE  
(TOP VIEW)  
100-mA Low-Dropout Regulator  
Fixed Output Voltage Options: 5 V, 3.8 V,  
3.3 V, 3.2 V, and 3 V  
EN  
GND  
IN  
Dropout Typically 170 mV at 100-mA  
Thermal Protection  
3
4
2
1
5
Less Than 1 µA Quiescent Current in  
Shutdown  
–40°C to 125°C Operating Junction  
Temperature Range  
NC  
OUT  
NC – No internal connection  
5-Pin SOT-23 (DBV) Package  
ESD Protection Verified to 1.5 KV Human  
Body Model (HBM) per MIL-STD-883C  
description  
The TPS761xx is a 100 mA, low dropout (LDO) voltage regulator designed specifically for battery-powered  
applications. A proprietary BiCMOS fabrication process allows the TPS761xx to provide outstanding  
performance in all specifications critical to battery-powered operation.  
The TPS761xx is available in a space-saving SOT-23 (DBV) package and operates over a junction temperature  
range of –40°C to 125°C.  
AVAILABLE OPTIONS  
T
VOLTAGE  
3 V  
PACKAGE  
PART NUMBER  
SYMBOL  
PAEI  
J
TPS76130DBVR  
TPS76132DBVR  
TPS76133DBVR  
TPS76138DBVR  
TPS76150DBVR  
TPS76130DBVT  
TPS76132DBVT  
TPS76133DBVT  
TPS76138DBVT  
TPS76150DBVT  
3.2 V  
3.3 V  
3.8 V  
5 V  
PAFI  
SOT-23  
(DBV)  
40°C to 125°C  
PAII  
PAKI  
PALI  
The DBVR passive indicates tape and reel of 3000 parts.  
The DBVT passive indicates tape and reel of 250 parts.  
functional block diagram  
§
CS  
OUT  
IN  
EN  
Current  
Limit  
V
ref  
+
Thermal  
Sense  
GND  
§
Current sense  
Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of  
Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet.  
Copyright 1999, Texas Instruments Incorporated  
PRODUCTION DATA information is current as of publication date.  
Products conform to specifications per the terms of Texas Instruments  
standard warranty. Production processing does not necessarily include  
testing of all parameters.  
1
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TPS76130, TPS76132, TPS76133, TPS76138, TPS76150  
LOW-POWER 100-mA LOW-DROPOUT LINEAR REGULATORS  
SLVS178A – DECEMBER 1998 – REVISED FEBRUARY 1999  
Terminal Functions  
TERMINAL  
I/O  
DESCRIPTION  
NAME  
EN  
NO.  
3
I
Enable input  
GND  
IN  
2
Ground  
1
I
Input voltage  
NC  
4
No connection  
Regulated output voltage  
OUT  
5
O
absolute maximum ratings over operating free-air temperature range (unless otherwise noted)  
Input voltage range, V (see Note 1) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . –0.3 V to 16 V  
I
Voltage range at EN . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . –0.3 V to V + 0.3 V  
I
Peak output current . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . internally limited  
Continuous total dissipation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . See Dissipation Rating Table  
Operating junction temperature range, T . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . –40°C to 150°C  
J
Storage temperature range, T  
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . –65°C to 150°C  
stg  
ESD rating, HBM . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1.5 kV  
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 under “recommended operating conditions” is not  
implied. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability.  
NOTE 1: All voltages are with respect to device GND pin.  
DISSIPATION RATING TABLE  
25°C DERATING FACTOR  
T
A
T
= 70°C  
T = 85°C  
A
A
PACKAGE  
POWER RATING  
ABOVE T = 25°C  
POWER RATING POWER RATING  
A
Recommended  
Maximum  
DBV  
DBV  
350 mW  
3.5 mW/°C  
3.5 mW/°C  
192 mW  
280 mW  
140 mW  
227 mW  
437 mW  
recommended operating conditions  
MIN NOM  
MAX  
16  
UNIT  
TPS76130  
TPS76132  
3.35  
3.58  
3.68  
4.18  
5.38  
0
16  
Input voltage, V  
TPS76133  
TPS76138  
TPS76150  
16  
V
I
16  
16  
Continuous output current, I  
100  
125  
mA  
O
Operating junction temperature, T  
–40  
°C  
J
2
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TPS76130, TPS76132, TPS76133, TPS76138, TPS76150  
LOW-POWER 100-mA LOW-DROPOUT LINEAR REGULATORS  
SLVS178A – DECEMBER 1998 – REVISED FEBRUARY 1999  
electrical characteristics over recommended operating free-air temperature range,  
V = V  
+ 1 V, I = 1 mA, EN = V , C = 4.7 µF (unless otherwise noted)  
I
O(typ)  
O
I
o
PARAMETER  
TEST CONDITIONS  
MIN  
2.96  
2.9  
TYP  
MAX  
3.04  
3.04  
3.07  
3.24  
3.24  
3.3  
UNIT  
T = 25°C  
3
J
TPS76130  
TPS76132  
TPS76133  
TPS76138  
TPS76150  
T = 25°C,  
J
1 mA < I < 100 mA  
V
O
1 mA < I < 100 mA  
2.89  
3.16  
3.11  
3.08  
3.26  
3.21  
3.18  
3.76  
3.71  
3.68  
4.95  
4.88  
4.86  
O
T = 25°C  
J
3.2  
3.3  
3.8  
5
T = 25°C,  
J
1 mA < I < 100 mA  
V
V
V
O
1 mA < I < 100 mA  
O
T = 25°C  
J
3.34  
3.34  
3.4  
V
O
Output voltage  
T = 25°C,  
J
1 mA < I < 100 mA  
O
1 mA < I < 100 mA  
O
T = 25°C  
J
3.84  
3.84  
3.9  
T = 25°C,  
J
1 mA < I < 100 mA  
O
1 mA < I < 100 mA  
O
T = 25°C  
J
5.05  
5.05  
5.1  
T = 25°C,  
J
1 mA < I < 100 mA  
V
O
1 mA < I < 100 mA  
O
I
Standby current  
EN = 0 V  
1
µA  
I(standby)  
I
I
I
I
I
I
I
I
I
I
= 0 mA,  
= 0 mA  
T = 25°C  
90  
100  
115  
130  
130  
170  
220  
260  
1100  
1200  
3600  
4000  
10  
O
O
O
O
O
O
O
O
O
O
J
= 1 mA,  
= 1 mA  
T = 25°C  
J
= 10 mA,  
= 10 mA  
= 50 mA,  
= 50 mA  
= 100 mA,  
= 100 mA  
T = 25°C  
J
190  
Quiescent current (GND current)  
µA  
T = 25°C  
J
850  
T = 25°C  
J
2600  
TPS76130  
TPS76132  
4 V < V < 16,  
I
O
I
O
I
O
I
O
I
O
= 1 mA  
= 1 mA  
= 1 mA  
= 1 mA  
= 1 mA  
3
3
I
4.2 V < V < 16,  
10  
I
Input regulation  
TPS76133  
TPS76138  
TPS76150  
4.3 V < V < 16,  
3
10  
mV  
I
4.8 V < V < 16,  
3
10  
I
6 V < V < 16  
I
3
10  
V
n
Output noise voltage  
Ripple rejection  
BW = 300 Hz to 50 kHz  
C
= 10 µF, T = 25°C  
190  
63  
µVrms  
o
J
f = 1 kHz,  
C
= 10 µF, T = 25°C  
dB  
o
J
3
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TPS76130, TPS76132, TPS76133, TPS76138, TPS76150  
LOW-POWER 100-mA LOW-DROPOUT LINEAR REGULATORS  
SLVS178A – DECEMBER 1998 – REVISED FEBRUARY 1999  
electrical characteristics over recommended operating free-air temperature range,  
V = V  
+ 1 V, I = 1 mA, EN = V , C = 4.7 µF (unless otherwise noted) (continued)  
I
O(typ)  
O
I
o
PARAMETER  
TEST CONDITIONS  
T = 25°C  
MIN  
TYP  
MAX  
3
UNIT  
I
I
I
I
I
I
I
I
I
I
= 0 mA,  
= 0 mA  
1
O
O
O
O
O
O
O
O
O
O
J
5
= 1 mA,  
= 1 mA  
T = 25°C  
J
7
40  
10  
15  
= 10 mA,  
= 10 mA  
= 50 mA,  
= 50 mA  
= 100 mA,  
= 100 mA  
T = 25°C  
J
60  
Dropout voltage  
mV  
90  
T = 25°C  
J
120  
170  
150  
150  
180  
240  
280  
T = 25°C  
J
Peak output current/current limit  
High level enable input  
T = 25°C  
100  
2
mA  
V
J
Low level enable input  
0.8  
1
V
EN = 0 V  
–1  
0
I
I
Input current (EN)  
µA  
EN = V  
2.5  
5
I
TYPICAL CHARACTERISTICS  
Table of Graphs  
FIGURE  
vs Output current  
1, 2, 3  
4, 5, 6  
7, 8, 9  
10  
V
O
Output voltage  
vs Free-air temperature  
vs Free-air temperature  
vs Frequency  
Ground current  
Output noise  
Z
Output impedance  
Dropout voltage  
vs Frequency  
11  
o
V
vs Free-air temperature  
12  
DO  
Line transient response  
Load transient response  
13, 15  
14, 16  
4
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TPS76130, TPS76132, TPS76133, TPS76138, TPS76150  
LOW-POWER 100-mA LOW-DROPOUT LINEAR REGULATORS  
SLVS178A – DECEMBER 1998 – REVISED FEBRUARY 1999  
TYPICAL CHARACTERISTICS  
TPS76130  
TPS76133  
OUTPUT VOLTAGE  
vs  
OUTPUT CURRENT  
OUTPUT VOLTAGE  
vs  
OUTPUT CURRENT  
3.02  
3.01  
3.32  
3.31  
V = 4 V  
V = 4.3 V  
I
I
C = C = 4.7 µF  
C = C = 4.7 µF  
I
A
O
= 25°C  
I
O
= 25°C  
T
T
A
3
2.99  
2.98  
2.97  
3.3  
3.29  
3.28  
3.27  
2.96  
2.95  
2.94  
3.26  
3.25  
3.24  
0
20  
40  
60  
80  
100  
120  
0
20  
40  
60  
80  
100  
120  
I
O
– Output Current – mA  
I
O
– Output Current – mA  
Figure 1  
Figure 2  
TPS76130  
TPS76150  
OUTPUT VOLTAGE  
vs  
OUTPUT VOLTAGE  
vs  
FREE-AIR TEMPERATURE  
OUTPUT CURRENT  
3.02  
3.01  
5.03  
5.02  
V = 6 V  
I
C = C = 4.7 µF  
I
A
O
= 25°C  
I
L
= 1 mA  
3
2.99  
2.98  
2.97  
T
5.01  
5
4.99  
4.98  
2.96  
2.95  
2.94  
I
= 100 mA  
L
4.97  
4.96  
4.95  
V = 4 V  
I
2.93  
2.92  
2.91  
C = C = 4.7 µF  
I
O
–60 –40 –20  
0
20 40 60 80 100 120 140  
0
20  
40  
60  
80  
100  
120  
T
A
– Free-Air Temperature – °C  
I
O
– Output Current – mA  
Figure 3  
Figure 4  
5
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TPS76130, TPS76132, TPS76133, TPS76138, TPS76150  
LOW-POWER 100-mA LOW-DROPOUT LINEAR REGULATORS  
SLVS178A – DECEMBER 1998 – REVISED FEBRUARY 1999  
TYPICAL CHARACTERISTICS  
TPS76133  
OUTPUT VOLTAGE  
vs  
TPS76150  
OUTPUT VOLTAGE  
vs  
FREE-AIR TEMPERATURE  
FREE-AIR TEMPERATURE  
3.32  
3.31  
5.02  
5
I
= 1 mA  
I
= 1 mA  
L
L
3.3  
3.29  
3.28  
3.27  
4.98  
4.96  
4.94  
4.92  
4.9  
3.26  
3.25  
3.24  
I
L
= 100 mA  
I
L
= 100 mA  
V = 4.3 V  
I
3.23  
3.22  
3.21  
C = C = 4.7 µF  
I
O
V = 6 V  
I
C = C = 4.7 µF  
I
O
–60 –40 –20  
0
20 40 60 80 100 120 140  
–60 –40 –20  
0
20 40 60 80 100 120 140  
T
A
– Free-Air Temperature – °C  
T
A
– Free-Air Temperature – °C  
Figure 5  
Figure 6  
TPS76133  
GROUND CURRENT  
vs  
TPS76130  
GROUND CURRENT  
vs  
FREE-AIR TEMPERATURE  
FREE-AIR TEMPERATURE  
4
4
3
10  
10  
V = 4.3 V  
I
V = 4 V  
I
C = C = 4.7 µF  
C = C = 4.7 µF  
I
O
I
O
I
L
= 100 mA  
I
L
= 100 mA  
I
L
= 50 mA  
I
L
= 50 mA  
3
10  
10  
I
L
= 1 mA  
I
L
= 1 mA  
2
1
2
1
10  
10  
10  
10  
–60 –40 –20  
0
20 40 60 80 100 120 140  
–60 –40 –20  
0
20 40 60 80 100 120 140  
T
A
– Free-Air Temperature – °C  
T
A
– Free-Air Temperature – °C  
Figure 7  
Figure 8  
6
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TPS76130, TPS76132, TPS76133, TPS76138, TPS76150  
LOW-POWER 100-mA LOW-DROPOUT LINEAR REGULATORS  
SLVS178A – DECEMBER 1998 – REVISED FEBRUARY 1999  
TYPICAL CHARACTERISTICS  
TPS76150  
OUTPUT NOISE  
GROUND CURRENT  
vs  
vs  
FREQUENCY  
FREE-AIR TEMPERATURE  
–5  
10  
–6  
10  
–7  
10  
–8  
10  
C
= 2.2 µF  
= 100 mA  
L
4
3
10  
I
L
V = 6 V  
I
I
C = C = 4.7 µF  
C
I
= 2.2 µF  
= 1 mA  
O
L
L
I
= 100 mA  
= 50 mA  
L
I
L
10  
C
= 10 µF  
= 100 mA  
L
I
L
C
= 10 µF  
= 1 mA  
L
I
L
I
L
= 1 mA  
2
1
10  
3
4
5
10  
2
10  
10  
10  
10  
–60 –40 –20  
0
20 40 60 80 100 120 140  
f – Frequency – Hz  
T
A
– Free-Air Temperature – °C  
Figure 9  
Figure 10  
TPS76130  
DROPOUT VOLTAGE  
vs  
OUTPUT IMPEDANCE  
vs  
FREQUENCY  
FREE-AIR TEMPERATURE  
3
10  
2
10  
1
10  
0
10  
300  
250  
200  
150  
100  
V = EN = 2.9 V  
I
C
= 2.2 µF  
= 50 mA  
L
C = C = 4.7 µF  
I
O
I
L
C
I
= 2.2 µF  
= 1 mA  
L
L
I
L
= 100 mA  
C
= 2.2 µF  
= 100 mA  
L
I
L
C
= 10 µF  
= 1 mA  
L
I
L
I
L
= 50 mA  
C
= 10 µF  
= 100 mA  
L
C
= 10 µF  
= 50 mA  
–1  
L
10  
10  
I
L
I
L
50  
0
I
= 0 mA  
L
I
= 1 mA  
L
–2  
10  
1
2
10  
3
4
10  
5
10  
6
10  
10  
–60 –40 –20  
0
20 40 60 80 100 120 140  
f – Frequency – Hz  
T
A
– Free-Air Temperature – °C  
Figure 11  
Figure 12  
7
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TPS76130, TPS76132, TPS76133, TPS76138, TPS76150  
LOW-POWER 100-mA LOW-DROPOUT LINEAR REGULATORS  
SLVS178A – DECEMBER 1998 – REVISED FEBRUARY 1999  
TYPICAL CHARACTERISTICS  
TPS76130  
LINE TRANSIENT RESPONSE  
TPS76130  
LOAD TRANSIENT RESPONSE  
40  
30  
7
6
5
4
C
= 4.7 µF  
O
C
= 4.7 µF  
= 100 mA  
O
I
L
20  
10  
20  
10  
100  
50  
0
0
–10  
20  
–50  
100  
–50  
0
50 100 150 200 250 300 350 400 450  
–300 –200 –100  
0
100 200 300 400 500 600 700  
t – Time – µs  
t – Time – µs  
Figure 13  
Figure 14  
TPS76150  
TPS76150  
LINE TRANSIENT RESPONSE  
LOAD TRANSIENT RESPONSE  
30  
20  
10  
8
C
= 4.7 µF  
O
7
6
30  
20  
0
100  
10  
0
50  
0
–10  
C
= 4.7 µF  
= 100 mA  
O
–50  
20  
–30  
I
L
100  
–50  
0
50 100 150 200 250 300 350 400 450  
t – Time – µs  
–300 –200 –100  
0
100 200 300 400 500 600 700  
t – Time – µs  
Figure 15  
Figure 16  
8
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TPS76130, TPS76132, TPS76133, TPS76138, TPS76150  
LOW-POWER 100-mA LOW-DROPOUT LINEAR REGULATORS  
SLVS178A – DECEMBER 1998 – REVISED FEBRUARY 1999  
APPLICATION INFORMATION  
1
5
OUT  
= 4.7 µF  
IN  
C = 1 µF  
C
I
o
TPS761xx  
3
EN  
2
GND  
Figure 17. TPS761xx Typical Application  
over current protection  
The over current protection circuit forces the TPS761xx into a constant current output mode when the load is  
excessive or the output is shorted to ground. Normal operation resumes when the fault condition is removed.  
NOTE:  
An overload or short circuit may also activate the over temperature protection if the fault  
condition persists.  
over temperature protection  
The thermal protection system shuts the TPS761xx down when the junction temperature exceeds 160°C. The  
device recovers and operates normally when the temperature drops below 150°C.  
input capacitor  
A 1-µF or larger ceramic decoupling capacitor with short leads connected between IN and GND is  
recommended. The decoupling capacitor may be omitted if there is a 1 µF or larger electrolytic capacitor  
connected between IN and GND and located reasonably close to the TPS761xx. However, the small ceramic  
device is desirable even when the larger capacitor is present, if there is a lot of high frequency noise present  
in the system.  
output capacitor  
Like all low dropout regulators, the TPS761xx requires an output capacitor connected between OUT and GND  
to stabilize the internal control loop. The minimum recommended capacitance value is 4.7 µF and the ESR  
(equivalent series resistance) must be between 0.1 and 10 . Solid tantalum electrolytic, aluminum  
electrolytic, and multilayer ceramic capacitors are all suitable, provided they meet the requirements described  
above. Most of the commercially available 4.7-µF surface-mount solid-tantalum capacitors, including devices  
from Sprague, Kemet, and Nichicon, meet the ESR requirements stated above. Multilayer ceramic capacitors  
should have minimum values of 4.7 µF over the full operating temperature range of the equipment.  
enable (EN)  
A logic zero on the enable input shuts the TPS761xx off and reduces the supply current to less than 1µA. Pulling  
the enable input high causes normal operation to resume. If the enable feature is not used, EN should be  
connected to IN to keep the regulator on all of the time. The EN input must not be left floating.  
reverse current path  
The power transistor used in the TPS761xx has an inherent diode connected between IN and OUT as shown  
in the functional block diagram. This diode conducts current from the OUT terminal to the IN terminal whenever  
IN is lower than OUT by a diode drop. This condition does not damage the TPS761xx provided the current is  
limited to 150 mA.  
9
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
TPS76130, TPS76132, TPS76133, TPS76138, TPS76150  
LOW-POWER 100-mA LOW-DROPOUT LINEAR REGULATORS  
SLVS178A – DECEMBER 1998 – REVISED FEBRUARY 1999  
MECHANICAL DATA  
DBV (R-PDSO-G5)  
PLASTIC SMALL-OUTLINE PACKAGE  
0,40  
0,20  
M
0,25  
0,95  
5
4
0,15 NOM  
1,80  
1,50  
3,00  
2,50  
1
3
Gage Plane  
3,10  
2,70  
0,25  
0°8°  
0,55  
0,35  
Seating Plane  
0,10  
1,30  
1,00  
0,05 MIN  
Aug/18/1998  
NOTES: A. All linear dimensions are in millimeters.  
B. This drawing is subject to change without notice.  
C. Body dimensions include mold flash or protrusion.  
10  
POST OFFICE BOX 655303 DALLAS, TEXAS 75265  
IMPORTANT NOTICE  
Texas Instruments and its subsidiaries (TI) reserve the right to make changes to their products or to discontinue  
any product or service without notice, and advise customers to obtain the latest version of relevant information  
to verify, before placing orders, that information being relied on is current and complete. All products are sold  
subject to the terms and conditions of sale supplied at the time of order acknowledgement, including those  
pertaining to warranty, patent infringement, and limitation of liability.  
TI warrants performance of its semiconductor products to the specifications applicable at the time of sale in  
accordance with TI’s standard warranty. Testing and other quality control techniques are utilized to the extent  
TI deems necessary to support this warranty. Specific testing of all parameters of each device is not necessarily  
performed, except those mandated by government requirements.  
CERTAIN APPLICATIONS USING SEMICONDUCTOR PRODUCTS MAY INVOLVE POTENTIAL RISKS OF  
DEATH, PERSONAL INJURY, OR SEVERE PROPERTY OR ENVIRONMENTAL DAMAGE (“CRITICAL  
APPLICATIONS”). TI SEMICONDUCTOR PRODUCTS ARE NOT DESIGNED, AUTHORIZED, OR  
WARRANTED TO BE SUITABLE FOR USE IN LIFE-SUPPORT DEVICES OR SYSTEMS OR OTHER  
CRITICAL APPLICATIONS. INCLUSION OF TI PRODUCTS IN SUCH APPLICATIONS IS UNDERSTOOD TO  
BE FULLY AT THE CUSTOMER’S RISK.  
In order to minimize risks associated with the customer’s applications, adequate design and operating  
safeguards must be provided by the customer to minimize inherent or procedural hazards.  
TI assumes no liability for applications assistance or customer product design. TI does not warrant or represent  
that any license, either express or implied, is granted under any patent right, copyright, mask work right, or other  
intellectual property right of TI covering or relating to any combination, machine, or process in which such  
semiconductor products or services might be or are used. TI’s publication of information regarding any third  
party’s products or services does not constitute TI’s approval, warranty or endorsement thereof.  
Copyright 1999, Texas Instruments Incorporated  

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