UA7815CKCSE3 [TI]

Fixed Positive Voltage Regulators;
UA7815CKCSE3
型号: UA7815CKCSE3
厂家: TEXAS INSTRUMENTS    TEXAS INSTRUMENTS
描述:

Fixed Positive Voltage Regulators

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μA7800 SERIES  
www.ti.com  
SLVS056O MAY 1976REVISED AUGUST 2012  
FIXED POSITIVE VOLTAGE REGULATORS  
Check for Samples: μA7800 SERIES  
1
FEATURES  
2
3-Terminal Regulators  
Internal Thermal-Overload Protection  
Available in fixed 5V/8V/10V/12V/15V/24V  
options  
High Power-Dissipation Capability  
Internal Short-Circuit Current Limiting  
Output Transistor Safe-Area Compensation  
Output Current up to 1.5 A  
KC (TO-220) PACKAGE  
(TOP VIEW)  
KCS OR KCT (TO-220) PACKAGE  
(TOP VIEW)  
OUTPUT  
COMMON  
INPUT  
OUTPUT  
COMMON  
INPUT  
KTE (PowerFLEXTM) PACKAGE  
(TOP VIEW)  
KTT (TO-263) PACKAGE  
(TOP VIEW)  
OUTPUT  
COMMON  
INPUT  
OUTPUT  
COMMON  
INPUT  
DESCRIPTION/ORDERING INFORMATION  
This series of fixed-voltage integrated-circuit voltage regulators is designed for a wide range of applications.  
These applications include on-card regulation for elimination of noise and distribution problems associated with  
single-point regulation. Each of these regulators can deliver up to 1.5 A of output current. The internal current-  
limiting and thermal-shutdown features of these regulators essentially make them immune to overload. In  
addition to use as fixed-voltage regulators, these devices can be used with external components to obtain  
adjustable output voltages and currents, and also can be used as the power-pass element in precision  
regulators.  
1
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.  
2
PowerFLEX, PowerPAD are trademarks of Texas Instruments.  
PRODUCTION DATA information is current as of publication date.  
Products conform to specifications per the terms of the Texas  
Instruments standard warranty. Production processing does not  
necessarily include testing of all parameters.  
Copyright © 1976–2012, Texas Instruments Incorporated  
μA7800 SERIES  
SLVS056O MAY 1976REVISED AUGUST 2012  
www.ti.com  
ORDERING INFORMATION(1)  
ORDERABLE PART  
NUMBER  
TOP-SIDE  
MARKING  
TJ  
VO(NOM)  
PACKAGE(2)  
TO-220, short shoulder – KCS  
Tube of 50  
Tube of 50  
Reel of 500  
UA7805CKCS  
UA7805C  
TO-220, single gauge – KCT  
TO-263 – KTT  
UA7805CKCT  
UA7805CKTTR  
OBSOLETE  
UA7805C  
5 V  
UA7805C  
PowerFLEX™ – KTE  
TO-220 – KC  
OBSOLETE  
OBSOLETE  
UA7808C  
OBSOLETE  
TO-220, short shoulder – KCS  
TO-220, single gauge – KCT  
TO-263 – KTT  
Tube of 50  
Tube of 50  
Reel of 500  
UA7808CKCS  
UA7808CKCT  
UA7808CKTTR  
OBSOLETE  
UA7808C  
8 V  
UA7808C  
PowerFLEX – KTE  
TO-220 – KC  
OBSOLETE  
OBSOLETE  
UA7810C  
OBSOLETE  
TO-220, short shoulder – KCS  
TO-263 – KTT  
Tube of 50  
Reel of 500  
UA7810CKCS  
UA7810CKTTR  
OBSOLETE  
UA7810C  
10 V  
12 V  
PowerFLEX – KTE  
TO-220 – KC  
OBSOLETE  
OBSOLETE  
UA7812C  
OBSOLETE  
0°C to 125°C  
TO-220, short shoulder – KCS  
TO-220, single gauge – KCT  
TO-263 – KTT  
Tube of 50  
Tube of 50  
Reel of 500  
UA7812CKCS  
UA7812CKCT  
UA7812CKTTR  
OBSOLETE  
UA7812C  
UA7812C  
PowerFLEX – KTE  
TO-220 – KC  
OBSOLETE  
OBSOLETE  
UA7815C  
OBSOLETE  
TO-220, short shoulder – KCS  
TO-220, single gauge – KCT  
TO-263 – KTT  
Tube of 50  
Tube of 50  
Reel of 500  
UA7815CKCS  
UA7815CKCT  
UA7815CKTTR  
OBSOLETE  
UA7815C  
15 V  
24 V  
UA7815C  
PowerFLEX – KTE  
TO-220 – KC  
OBSOLETE  
OBSOLETE  
UA7824C  
OBSOLETE  
TO-220, short shoulder – KCS  
TO-263 – KTT  
Tube of 50  
Reel of 500  
UA7824CKCS  
UA7824CKTTR  
OBSOLETE  
UA7824C  
PowerFLEX – KTE  
TO-220 – KC  
OBSOLETE  
OBSOLETE  
OBSOLETE  
(1) For the most current package and ordering information, see the Package Option Addendum at the end of this document, or see the TI  
web site at www.ti.com.  
(2) Package drawings, thermal data, and symbolization are available at www.ti.com/packaging.  
2
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Copyright © 1976–2012, Texas Instruments Incorporated  
 
 
μA7800 SERIES  
www.ti.com  
SLVS056O MAY 1976REVISED AUGUST 2012  
Figure 1. SCHEMATIC  
INPUT  
OUTPUT  
COMMON  
Absolute Maximum Ratings(1)  
over virtual junction temperature range (unless otherwise noted)  
MIN  
MAX  
40  
UNIT  
μA7824C  
Vl  
Input voltage  
V
All others  
35  
TJ  
Operating virtual junction temperature  
Lead temperature  
150  
260  
150  
°C  
°C  
°C  
1,6 mm (1/16 in) from case for 10 s  
Tstg  
Storage temperature range  
–65  
(1) 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.  
Package Thermal Data(1)  
(2)  
PACKAGE  
BOARD  
θJA  
θJC  
θJP  
PowerFLEX (KTE) – OBSOLETE  
High K, JESD 51-5  
23°C/W  
3°C/W  
2.7°C/W  
TO-220 (KCS), (KCT)  
(KC – OBSOLETE)  
High K, JESD 51-5  
High K, JESD 51-5  
19°C/W  
17°C/W  
18°C/W  
3°C/W  
TO-263 (KTT)  
25.3°C/W  
1.94°C/W  
(1) Maximum power dissipation is a function of TJ(max), θJA, and TA. The maximum allowable power dissipation at any allowable ambient  
temperature is PD = (TJ(max) – TA)/θJA. Operating at the absolute maximum TJ of 150°C can affect reliability.  
(2) For packages with exposed thermal pads, such as QFN, PowerPAD™, or PowerFLEX, θJP is defined as the thermal resistance between  
the die junction and the bottom of the exposed pad.  
Copyright © 1976–2012, Texas Instruments Incorporated  
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3
μA7800 SERIES  
SLVS056O MAY 1976REVISED AUGUST 2012  
www.ti.com  
Recommended Operating Conditions  
MIN  
7
MAX  
25  
UNIT  
μA7805  
μA7808  
μA7810  
μA7812  
μA7815  
μA7824  
10.5  
12.5  
14.5  
17.5  
27  
25  
28  
Vl  
Input voltage  
V
30  
30  
38  
IO  
Output current  
1.5  
125  
A
TJ  
Operating virtual junction temperature  
0
°C  
4
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Copyright © 1976–2012, Texas Instruments Incorporated  
μA7800 SERIES  
www.ti.com  
SLVS056O MAY 1976REVISED AUGUST 2012  
uA7805 Electrical Characteristics  
at specified virtual junction temperature, VI = 10 V, IO = 500 mA (unless otherwise noted)  
μA7805C  
(1)  
PARAMETER  
TEST CONDITIONS  
TJ  
UNIT  
V
MIN  
4.8  
TYP  
MAX  
5.2  
25°C  
5
IO = 5 mA to 1 A, VI = 7 V to 20 V,  
D 15 W  
Output voltage  
P
0°C to 125°C  
4.75  
5.25  
100  
50  
VI = 7 V to 25 V  
3
1
Input voltage regulation  
Ripple rejection(2)  
25°C  
0°C to 125°C  
25°C  
mV  
dB  
VI = 8 V to 12 V  
VI = 8 V to 12 V, f = 120 Hz  
VI = 8 V to 12 V, f = 120 Hz (KCT)  
IO = 5 mA to 1.5 A  
IO = 250 mA to 750 mA  
f = 1 kHz  
62  
78  
68  
15  
100  
50  
Output voltage regulation  
mV  
5
Output resistance  
0°C to 125°C  
0°C to 125°C  
25°C  
0.017  
–1.1  
40  
mV/°C  
μV  
Temperature coefficient of output voltage  
Output noise voltage  
Dropout voltage  
IO = 5 mA  
f = 10 Hz to 100 kHz  
IO = 1 A  
25°C  
2
V
Bias current  
25°C  
4.2  
8
1.3  
0.5  
mA  
VI = 7 V to 25 V  
IO = 5 mA to 1 A  
Bias current change  
0°C to 125°C  
mA  
Short-circuit output current  
Peak output current  
25°C  
25°C  
750  
2.2  
mA  
A
(1) Pulse-testing techniques maintain the junction temperature as close to the ambient temperature as possible. Thermal effects must be  
taken into account separately. All characteristics are measured with a 0.33-μF capacitor across the input and a 0.1-μF capacitor across  
the output.  
(2) This parameter is validated by design and verified during product characterization. It is not tested in production.  
uA7808 Electrical Characteristics  
at specified virtual junction temperature, VI = 14 V, IO = 500 mA (unless otherwise noted)  
μA7808C  
(1)  
PARAMETER  
TEST CONDITIONS  
TJ  
UNIT  
V
MIN  
7.7  
TYP  
MAX  
8.3  
25°C  
8
IO = 5 mA to 1 A, VI = 10.5 V to 23 V,  
D 15 W  
Output voltage  
P
0°C to 125°C  
7.6  
8.4  
VI = 10.5 V to 25 V  
6
2
160  
80  
Input voltage regulation  
Ripple rejection(2)  
25°C  
0°C to 125°C  
25°C  
mV  
VI = 11 V to 17 V  
VI = 11.5 V to 21.5 V, f = 120 Hz  
55  
72  
dB  
VI = 11.5 V to 21.5 V, f = 120 Hz  
(KCT)  
62  
IO = 5 mA to 1.5 A  
IO = 250 mA to 750 mA  
f = 1 kHz  
12  
4
160  
80  
Output voltage regulation  
mV  
Output resistance  
0°C to 125°C  
0°C to 125°C  
25°C  
0.016  
–0.8  
52  
mV/°C  
μV  
Temperature coefficient of output voltage  
Output noise voltage  
Dropout voltage  
IO = 5 mA  
f = 10 Hz to 100 kHz  
IO = 1 A  
25°C  
2
V
Bias current  
25°C  
4.3  
8
1
mA  
VI = 10.5 V to 25 V  
IO = 5 mA to 1 A  
Bias current change  
0°C to 125°C  
25°C  
mA  
mA  
0.5  
Short-circuit output current  
450  
(1) Pulse-testing techniques maintain the junction temperature as close to the ambient temperature as possible. Thermal effects must be  
taken into account separately. All characteristics are measured with a 0.33-μF capacitor across the input and a 0.1-μF capacitor across  
the output.  
(2) This parameter is validated by design and verified during product characterization. It is not tested in production.  
Copyright © 1976–2012, Texas Instruments Incorporated  
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5
μA7800 SERIES  
SLVS056O MAY 1976REVISED AUGUST 2012  
www.ti.com  
uA7808 Electrical Characteristics (continued)  
at specified virtual junction temperature, VI = 14 V, IO = 500 mA (unless otherwise noted)  
μA7808C  
TYP  
(1)  
PARAMETER  
Peak output current  
TEST CONDITIONS  
TJ  
UNIT  
MIN  
MAX  
25°C  
2.2  
A
uA7810 Electrical Characteristics  
at specified virtual junction temperature, VI = 17 V, IO = 500 mA (unless otherwise noted)  
μA7810C  
TYP  
(1)  
PARAMETER  
TEST CONDITIONS  
TJ  
UNIT  
MIN  
9.6  
MAX  
10.4  
10.5  
200  
25°C  
10  
IO = 5 mA to 1 A, VI = 12.5 V to 25 V,  
D 15 W  
Output voltage  
V
P
0°C to 125°C  
9.5  
VI = 12.5 V to 28 V  
VI = 14 V to 20 V  
VI = 13 V to 23 V, f = 120 Hz  
IO = 5 mA to 1.5 A  
IO = 250 mA to 750 mA  
f = 1 kHz  
7
2
Input voltage regulation  
Ripple rejection(2)  
25°C  
0°C to 125°C  
25°C  
mV  
dB  
100  
55  
71  
12  
200  
100  
Output voltage regulation  
mV  
4
Output resistance  
0°C to 125°C  
0°C to 125°C  
25°C  
0.018  
–1  
mV/°C  
μV  
Temperature coefficient of output voltage  
Output noise voltage  
Dropout voltage  
IO = 5 mA  
f = 10 Hz to 100 kHz  
IO = 1 A  
70  
25°C  
2
V
Bias current  
25°C  
4.3  
8
1
mA  
VI = 12.5 V to 28 V  
IO = 5 mA to 1 A  
Bias current change  
0°C to 125°C  
mA  
0.5  
Short-circuit output current  
Peak output current  
25°C  
25°C  
400  
2.2  
mA  
A
(1) Pulse-testing techniques maintain the junction temperature as close to the ambient temperature as possible. Thermal effects must be  
taken into account separately. All characteristics are measured with a 0.33-μF capacitor across the input and a 0.1-μF capacitor across  
the output.  
(2) This parameter is validated by design and verified during product characterization. It is not tested in production.  
uA7812 Electrical Characteristics  
at specified virtual junction temperature, VI = 19 V, IO = 500 mA (unless otherwise noted)  
μA7812C  
(1)  
PARAMETER  
TEST CONDITIONS  
TJ  
UNIT  
V
MIN  
11.5  
11.4  
TYP  
MAX  
12.5  
12.6  
240  
25°C  
12  
IO = 5 mA to 1 A, VI = 14.5 V to 27 V,  
D 15 W  
Output voltage  
P
0°C to 125°C  
VI = 14.5 V to 30 V  
VI = 16 V to 22 V  
10  
3
Input voltage regulation  
Ripple rejection(2)  
25°C  
0°C to 125°C  
25°C  
mV  
dB  
120  
VI = 15 V to 25 V, f = 120 Hz  
VI = 15 V to 25 V, f = 120 Hz (KCT)  
IO = 5 mA to 1.5 A  
IO = 250 mA to 750 mA  
f = 1 kHz  
55  
71  
61  
12  
4
240  
120  
Output voltage regulation  
mV  
Output resistance  
0°C to 125°C  
0°C to 125°C  
25°C  
0.018  
–1  
mV/°C  
μV  
Temperature coefficient of output voltage  
Output noise voltage  
IO = 5 mA  
f = 10 Hz to 100 kHz  
IO = 1 A  
75  
2
Dropout voltage  
25°C  
V
(1) Pulse-testing techniques maintain the junction temperature as close to the ambient temperature as possible. Thermal effects must be  
taken into account separately. All characteristics are measured with a 0.33-μF capacitor across the input and a 0.1-μF capacitor across  
the output.  
(2) This parameter is validated by design and verified during product characterization. It is not tested in production.  
6
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Copyright © 1976–2012, Texas Instruments Incorporated  
μA7800 SERIES  
www.ti.com  
SLVS056O MAY 1976REVISED AUGUST 2012  
uA7812 Electrical Characteristics (continued)  
at specified virtual junction temperature, VI = 19 V, IO = 500 mA (unless otherwise noted)  
μA7812C  
TYP  
(1)  
PARAMETER  
TEST CONDITIONS  
TJ  
UNIT  
mA  
MIN  
MAX  
8
Bias current  
25°C  
4.3  
VI = 14.5 V to 30 V  
IO = 5 mA to 1 A  
1
Bias current change  
0°C to 125°C  
mA  
0.5  
Short-circuit output current  
Peak output current  
25°C  
25°C  
350  
2.2  
mA  
A
uA7815 Electrical Characteristics  
at specified virtual junction temperature, VI = 23 V, IO = 500 mA (unless otherwise noted)  
μA7815C  
TYP  
(1)  
PARAMETER  
TEST CONDITIONS  
TJ  
UNIT  
V
MIN  
14.4  
MAX  
15.6  
15.75  
300  
25°C  
15  
IO = 5 mA to 1 A, VI = 17.5 V to 30 V,  
D 15 W  
Output voltage  
P
0°C to 125°C  
14.25  
VI = 17.5 V to 30 V  
11  
3
Input voltage regulation  
Ripple rejection(2)  
25°C  
0°C to 125°C  
25°C  
mV  
VI = 20 V to 26 V  
150  
VI = 18.5 V to 28.5 V, f = 120 Hz  
54  
70  
dB  
VI = 18.5 V to 28.5 V, f = 120 Hz  
(KCT)  
60  
IO = 5 mA to 1.5 A  
IO = 250 mA to 750 mA  
f = 1 kHz  
12  
4
300  
150  
Output voltage regulation  
mV  
Output resistance  
0°C to 125°C  
0°C to 125°C  
25°C  
0.019  
–1  
mV/°C  
μV  
Temperature coefficient of output voltage  
Output noise voltage  
Dropout voltage  
IO = 5 mA  
f = 10 Hz to 100 kHz  
IO = 1 A  
90  
25°C  
2
V
Bias current  
25°C  
4.4  
8
1
mA  
VI = 17.5 V to 30 V  
IO = 5 mA to 1 A  
Bias current change  
0°C to 125°C  
mA  
0.5  
Short-circuit output current  
Peak output current  
25°C  
25°C  
230  
2.1  
mA  
A
(1) Pulse-testing techniques maintain the junction temperature as close to the ambient temperature as possible. Thermal effects must be  
taken into account separately. All characteristics are measured with a 0.33-μF capacitor across the input and a 0.1-μF capacitor across  
the output.  
(2) This parameter is validated by design and verified during product characterization. It is not tested in production.  
uA7824 Electrical Characteristics  
at specified virtual junction temperature, VI = 33 V, IO = 500 mA (unless otherwise noted)  
μA7824C  
(1)  
PARAMETER  
TEST CONDITIONS  
TJ  
UNIT  
MIN  
23  
TYP  
MAX  
25  
25°C  
24  
IO = 5 mA to 1 A, VI = 27 V to 38 V,  
D 15 W  
Output voltage  
V
P
0°C to 125°C  
22.8  
25.2  
480  
240  
VI = 27 V to 38 V  
18  
6
Input voltage regulation  
Ripple rejection(2)  
25°C  
mV  
dB  
VI = 30 V to 36 V  
VI = 28 V to 38 V, f = 120 Hz  
0°C to 125°C  
50  
66  
(1) Pulse-testing techniques maintain the junction temperature as close to the ambient temperature as possible. Thermal effects must be  
taken into account separately. All characteristics are measured with a 0.33-μF capacitor across the input and a 0.1-μF capacitor across  
the output.  
(2) This parameter is validated by design and verified during product characterization. It is not tested in production.  
Copyright © 1976–2012, Texas Instruments Incorporated  
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μA7800 SERIES  
SLVS056O MAY 1976REVISED AUGUST 2012  
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uA7824 Electrical Characteristics (continued)  
at specified virtual junction temperature, VI = 33 V, IO = 500 mA (unless otherwise noted)  
μA7824C  
TYP  
12  
(1)  
PARAMETER  
TEST CONDITIONS  
TJ  
UNIT  
MIN  
MAX  
480  
IO = 5 mA to 1.5 A  
Output voltage regulation  
25°C  
mV  
IO = 250 mA to 750 mA  
f = 1 kHz  
4
240  
Output resistance  
0°C to 125°C  
0°C to 125°C  
25°C  
0.028  
–1.5  
170  
2
mV/°C  
μV  
Temperature coefficient of output voltage  
Output noise voltage  
Dropout voltage  
IO = 5 mA  
f = 10 Hz to 100 kHz  
IO = 1 A  
25°C  
V
Bias current  
25°C  
4.6  
8
1
mA  
VI = 27 V to 38 V  
IO = 5 mA to 1 A  
Bias current change  
0°C to 125°C  
mA  
0.5  
Short-circuit output current  
Peak output current  
25°C  
25°C  
150  
2.1  
mA  
A
APPLICATION INFORMATION  
+V  
+V  
O
µA78xx  
0.33 µF  
0.1 µF  
Figure 2. Fixed-Output Regulator  
IN  
OUT  
µA78xx  
+
G
V
I
I
L
COM  
−V  
O
Figure 3. Positive Regulator in Negative Configuration (VI Must Float)  
Input  
Output  
µA78xx  
R1  
R2  
I
O
0.33 µF  
0.1 µF  
A: The following formula is used when V is the nominal output voltage (output to common) of the fixed regulator:  
xx  
Vxx  
R1  
) ǒ  
ǓR2  
) IQ  
VO + Vxx  
Figure 4. Adjustable-Output Regulator  
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μA7800 SERIES  
www.ti.com  
SLVS056O MAY 1976REVISED AUGUST 2012  
µA78xx  
Input  
R1  
Output  
V
0.33 µF  
O(Reg)  
I
O
I
O
= (V /R1) + I Bias Current  
O O  
Figure 5. Current Regulator  
1N4001  
20-V Input  
µA7815C  
V
O
= 15 V  
1N4001  
0.33 µF  
0.1 µF  
0.1 µF  
1 µF  
2 µF  
1N4001  
= −15 V  
−20-V Input  
µA7915C  
V
O
1N4001  
Figure 6. Regulated Dual Supply  
Operation With a Load Common to a Voltage of Opposite Polarity  
In many cases, a regulator powers a load that is not connected to ground but, instead, is connected to a voltage  
source of opposite polarity (e.g., operational amplifiers, level-shifting circuits, etc.). In these cases, a clamp diode  
should be connected to the regulator output as shown in Figure 7. This protects the regulator from output polarity  
reversals during startup and short-circuit operation.  
µA78xx  
+V  
I
+V  
O
1N4001  
or  
Equivalent  
−V  
O
Figure 7. Output Polarity-Reversal-Protection Circuit  
Reverse-Bias Protection  
Occasionally, the input voltage to the regulator can collapse faster than the output voltage. This can occur, for  
example, when the input supply is crowbarred during an output overvoltage condition. If the output voltage is  
greater than approximately 7 V, the emitter-base junction of the series-pass element (internal or external) could  
break down and be damaged. To prevent this, a diode shunt can be used as shown in Figure 8.  
Copyright © 1976–2012, Texas Instruments Incorporated  
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μA7800 SERIES  
SLVS056O MAY 1976REVISED AUGUST 2012  
www.ti.com  
V
I
+V  
O
µA78xx  
Figure 8. Reverse-Bias-Protection Circuit  
10  
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Copyright © 1976–2012, Texas Instruments Incorporated  
μA7800 SERIES  
www.ti.com  
SLVS056O MAY 1976REVISED AUGUST 2012  
REVISION HISTORY  
Changes from Revision M (January 2009) to Revision N  
Page  
Added KCT package and orderable part number to the ORDERING INFORMATION table. .............................................. 2  
Changes from Revision N (June 2012) to Revision O  
Page  
Added KCT Orderable Part Numbers for 8V & 12V ............................................................................................................. 2  
Copyright © 1976–2012, Texas Instruments Incorporated  
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11  
PACKAGE OPTION ADDENDUM  
www.ti.com  
5-Sep-2012  
PACKAGING INFORMATION  
Status (1)  
Eco Plan (2)  
MSL Peak Temp (3)  
Samples  
Orderable Device  
Package Type Package  
Drawing  
Pins  
Package Qty  
Lead/  
Ball Finish  
(Requires Login)  
UA7805CKC  
UA7805CKCE3  
UA7805CKCS  
UA7805CKCSE3  
UA7805CKCT  
UA7805CKTER  
UA7805CKTTR  
OBSOLETE  
OBSOLETE  
ACTIVE  
TO-220  
TO-220  
TO-220  
TO-220  
TO-220  
PFM  
KC  
KC  
3
3
3
3
3
3
3
TBD  
TBD  
Call TI  
Call TI  
CU SN  
CU SN  
CU SN  
Call TI  
CU SN  
Call TI  
Call TI  
KCS  
KCS  
KCT  
KTE  
KTT  
50  
50  
50  
Pb-Free (RoHS)  
Pb-Free (RoHS)  
Pb-Free (RoHS)  
TBD  
N / A for Pkg Type  
N / A for Pkg Type  
N / A for Pkg Type  
Call TI  
ACTIVE  
ACTIVE  
OBSOLETE  
ACTIVE  
DDPAK/  
TO-263  
500  
500  
Green (RoHS  
& no Sb/Br)  
Level-3-245C-168 HR  
UA7805CKTTRG3  
ACTIVE  
DDPAK/  
TO-263  
KTT  
3
Green (RoHS  
& no Sb/Br)  
CU SN  
Level-3-245C-168 HR  
UA7805QKC  
UA7805QKTE  
UA7808CKC  
OBSOLETE  
OBSOLETE  
OBSOLETE  
OBSOLETE  
ACTIVE  
TO-220  
PFM  
KC  
KTE  
KC  
3
3
3
3
3
3
3
3
3
TBD  
TBD  
Call TI  
Call TI  
Call TI  
Call TI  
CU SN  
CU SN  
CU SN  
Call TI  
CU SN  
Call TI  
Call TI  
TO-220  
TO-220  
TO-220  
TO-220  
TO-220  
PFM  
TBD  
Call TI  
UA7808CKCE3  
UA7808CKCS  
UA7808CKCSE3  
UA7808CKCT  
UA7808CKTER  
UA7808CKTTR  
KC  
TBD  
Call TI  
KCS  
KCS  
KCT  
KTE  
KTT  
50  
50  
50  
Pb-Free (RoHS)  
Pb-Free (RoHS)  
Pb-Free (RoHS)  
TBD  
N / A for Pkg Type  
N / A for Pkg Type  
N / A for Pkg Type  
Call TI  
ACTIVE  
ACTIVE  
OBSOLETE  
ACTIVE  
DDPAK/  
TO-263  
500  
500  
Green (RoHS  
& no Sb/Br)  
Level-3-245C-168 HR  
UA7808CKTTRG3  
ACTIVE  
DDPAK/  
TO-263  
KTT  
3
Green (RoHS  
& no Sb/Br)  
CU SN  
Level-3-245C-168 HR  
UA7808QKTE  
UA7810CKC  
OBSOLETE  
OBSOLETE  
OBSOLETE  
ACTIVE  
PFM  
KTE  
KC  
3
3
3
3
3
3
3
TBD  
TBD  
Call TI  
Call TI  
Call TI  
CU SN  
CU SN  
Call TI  
CU SN  
Call TI  
TO-220  
TO-220  
TO-220  
TO-220  
PFM  
Call TI  
UA7810CKCE3  
UA7810CKCS  
UA7810CKCSE3  
UA7810CKTER  
UA7810CKTTR  
KC  
TBD  
Call TI  
KCS  
KCS  
KTE  
KTT  
50  
50  
Pb-Free (RoHS)  
Pb-Free (RoHS)  
TBD  
N / A for Pkg Type  
N / A for Pkg Type  
Call TI  
ACTIVE  
OBSOLETE  
ACTIVE  
DDPAK/  
TO-263  
500  
Green (RoHS  
& no Sb/Br)  
Level-3-245C-168 HR  
Addendum-Page 1  
PACKAGE OPTION ADDENDUM  
www.ti.com  
5-Sep-2012  
Status (1)  
Eco Plan (2)  
MSL Peak Temp (3)  
Samples  
Orderable Device  
Package Type Package  
Drawing  
Pins  
Package Qty  
Lead/  
Ball Finish  
(Requires Login)  
UA7810CKTTRG3  
ACTIVE  
DDPAK/  
TO-263  
KTT  
3
500  
Green (RoHS  
& no Sb/Br)  
CU SN  
Level-3-245C-168 HR  
UA7810QKTE  
UA7812CKC  
OBSOLETE  
OBSOLETE  
OBSOLETE  
ACTIVE  
PFM  
KTE  
KC  
3
3
3
3
3
3
3
3
TBD  
TBD  
Call TI  
Call TI  
Call TI  
CU SN  
CU SN  
CU SN  
Call TI  
CU SN  
Call TI  
TO-220  
TO-220  
TO-220  
TO-220  
TO-220  
PFM  
Call TI  
UA7812CKCE3  
UA7812CKCS  
UA7812CKCSE3  
UA7812CKCT  
UA7812CKTER  
UA7812CKTTR  
KC  
TBD  
Call TI  
KCS  
KCS  
KCT  
KTE  
KTT  
50  
50  
50  
Pb-Free (RoHS)  
Pb-Free (RoHS)  
Pb-Free (RoHS)  
TBD  
N / A for Pkg Type  
N / A for Pkg Type  
N / A for Pkg Type  
Call TI  
ACTIVE  
ACTIVE  
OBSOLETE  
ACTIVE  
DDPAK/  
TO-263  
500  
500  
Green (RoHS  
& no Sb/Br)  
Level-3-245C-168 HR  
UA7812CKTTRG3  
ACTIVE  
DDPAK/  
TO-263  
KTT  
3
Green (RoHS  
& no Sb/Br)  
CU SN  
Level-3-245C-168 HR  
UA7812QKTE  
UA7815CKC  
OBSOLETE  
OBSOLETE  
ACTIVE  
PFM  
KTE  
KC  
3
3
3
3
3
3
3
TBD  
TBD  
Call TI  
Call TI  
CU SN  
CU SN  
CU SN  
Call TI  
CU SN  
Call TI  
TO-220  
TO-220  
TO-220  
TO-220  
PFM  
Call TI  
UA7815CKCS  
UA7815CKCSE3  
UA7815CKCT  
UA7815CKTER  
UA7815CKTTR  
KCS  
KCS  
KCT  
KTE  
KTT  
50  
50  
50  
Pb-Free (RoHS)  
Pb-Free (RoHS)  
Pb-Free (RoHS)  
TBD  
N / A for Pkg Type  
N / A for Pkg Type  
N / A for Pkg Type  
Call TI  
ACTIVE  
ACTIVE  
OBSOLETE  
ACTIVE  
DDPAK/  
TO-263  
500  
500  
Green (RoHS  
& no Sb/Br)  
Level-3-245C-168 HR  
UA7815CKTTRG3  
ACTIVE  
DDPAK/  
TO-263  
KTT  
3
Green (RoHS  
& no Sb/Br)  
CU SN  
Level-3-245C-168 HR  
UA7815QKTE  
UA7824CKC  
OBSOLETE  
OBSOLETE  
OBSOLETE  
ACTIVE  
PFM  
KTE  
KC  
3
3
3
3
3
3
3
TBD  
TBD  
Call TI  
Call TI  
Call TI  
CU SN  
CU SN  
Call TI  
CU SN  
Call TI  
TO-220  
TO-220  
TO-220  
TO-220  
PFM  
Call TI  
UA7824CKCE3  
UA7824CKCS  
UA7824CKCSE3  
UA7824CKTER  
UA7824CKTTR  
KC  
TBD  
Call TI  
KCS  
KCS  
KTE  
KTT  
50  
50  
Pb-Free (RoHS)  
Pb-Free (RoHS)  
TBD  
N / A for Pkg Type  
N / A for Pkg Type  
Call TI  
ACTIVE  
OBSOLETE  
ACTIVE  
DDPAK/  
TO-263  
500  
500  
Green (RoHS  
& no Sb/Br)  
Level-3-245C-168 HR  
UA7824CKTTRG3  
ACTIVE  
DDPAK/  
TO-263  
KTT  
3
Green (RoHS  
& no Sb/Br)  
CU SN  
Level-3-245C-168 HR  
Addendum-Page 2  
PACKAGE OPTION ADDENDUM  
www.ti.com  
5-Sep-2012  
Status (1)  
Eco Plan (2)  
MSL Peak Temp (3)  
Samples  
Orderable Device  
Package Type Package  
Drawing  
Pins  
Package Qty  
Lead/  
Ball Finish  
(Requires Login)  
UA7885CKC  
UA7885CKTER  
UA7885QKTE  
OBSOLETE  
OBSOLETE  
OBSOLETE  
TO-220  
PFM  
KC  
3
3
3
TBD  
TBD  
TBD  
Call TI  
Call TI  
Call TI  
Call TI  
Call TI  
Call TI  
KTE  
KTE  
PFM  
(1) The marketing status values are defined as follows:  
ACTIVE: Product device recommended for new designs.  
LIFEBUY: TI has announced that the device will be discontinued, and a lifetime-buy period is in effect.  
NRND: Not recommended for new designs. Device is in production to support existing customers, but TI does not recommend using this part in a new design.  
PREVIEW: Device has been announced but is not in production. Samples may or may not be available.  
OBSOLETE: TI has discontinued the production of the device.  
(2) Eco Plan - The planned eco-friendly classification: Pb-Free (RoHS), Pb-Free (RoHS Exempt), or Green (RoHS & no Sb/Br) - please check http://www.ti.com/productcontent for the latest availability  
information and additional product content details.  
TBD: The Pb-Free/Green conversion plan has not been defined.  
Pb-Free (RoHS): TI's terms "Lead-Free" or "Pb-Free" mean semiconductor products that are compatible with the current RoHS requirements for all 6 substances, including the requirement that  
lead not exceed 0.1% by weight in homogeneous materials. Where designed to be soldered at high temperatures, TI Pb-Free products are suitable for use in specified lead-free processes.  
Pb-Free (RoHS Exempt): This component has a RoHS exemption for either 1) lead-based flip-chip solder bumps used between the die and package, or 2) lead-based die adhesive used between  
the die and leadframe. The component is otherwise considered Pb-Free (RoHS compatible) as defined above.  
Green (RoHS & no Sb/Br): TI defines "Green" to mean Pb-Free (RoHS compatible), and free of Bromine (Br) and Antimony (Sb) based flame retardants (Br or Sb do not exceed 0.1% by weight  
in homogeneous material)  
(3) MSL, Peak Temp. -- The Moisture Sensitivity Level rating according to the JEDEC industry standard classifications, and peak solder temperature.  
Important Information and Disclaimer:The information provided on this page represents TI's knowledge and belief as of the date that it is provided. TI bases its knowledge and belief on information  
provided by third parties, and makes no representation or warranty as to the accuracy of such information. Efforts are underway to better integrate information from third parties. TI has taken and  
continues to take reasonable steps to provide representative and accurate information but may not have conducted destructive testing or chemical analysis on incoming materials and chemicals.  
TI and TI suppliers consider certain information to be proprietary, and thus CAS numbers and other limited information may not be available for release.  
In no event shall TI's liability arising out of such information exceed the total purchase price of the TI part(s) at issue in this document sold by TI to Customer on an annual basis.  
Addendum-Page 3  
PACKAGE MATERIALS INFORMATION  
www.ti.com  
28-Aug-2012  
TAPE AND REEL INFORMATION  
*All dimensions are nominal  
Device  
Package Package Pins  
Type Drawing  
SPQ  
Reel  
Reel  
A0  
B0  
K0  
P1  
W
Pin1  
Diameter Width (mm) (mm) (mm) (mm) (mm) Quadrant  
(mm) W1 (mm)  
UA7805CKTTR  
UA7808CKTTR  
UA7810CKTTR  
UA7812CKTTR  
UA7815CKTTR  
UA7824CKTTR  
DDPAK/  
TO-263  
KTT  
KTT  
KTT  
KTT  
KTT  
KTT  
3
3
3
3
3
3
500  
500  
500  
500  
500  
500  
330.0  
330.0  
330.0  
330.0  
330.0  
330.0  
24.4  
24.4  
24.4  
24.4  
24.4  
24.4  
10.6  
10.6  
10.6  
10.6  
10.6  
10.6  
15.8  
15.8  
15.8  
15.8  
15.8  
15.8  
4.9  
4.9  
4.9  
4.9  
4.9  
4.9  
16.0  
16.0  
16.0  
16.0  
16.0  
16.0  
24.0  
24.0  
24.0  
24.0  
24.0  
24.0  
Q2  
Q2  
Q2  
Q2  
Q2  
Q2  
DDPAK/  
TO-263  
DDPAK/  
TO-263  
DDPAK/  
TO-263  
DDPAK/  
TO-263  
DDPAK/  
TO-263  
Pack Materials-Page 1  
PACKAGE MATERIALS INFORMATION  
www.ti.com  
28-Aug-2012  
*All dimensions are nominal  
Device  
Package Type Package Drawing Pins  
SPQ  
Length (mm) Width (mm) Height (mm)  
UA7805CKTTR  
UA7808CKTTR  
UA7810CKTTR  
UA7812CKTTR  
UA7815CKTTR  
UA7824CKTTR  
DDPAK/TO-263  
DDPAK/TO-263  
DDPAK/TO-263  
DDPAK/TO-263  
DDPAK/TO-263  
DDPAK/TO-263  
KTT  
KTT  
KTT  
KTT  
KTT  
KTT  
3
3
3
3
3
3
500  
500  
500  
500  
500  
500  
340.0  
340.0  
340.0  
340.0  
340.0  
340.0  
340.0  
340.0  
340.0  
340.0  
340.0  
340.0  
38.0  
38.0  
38.0  
38.0  
38.0  
38.0  
Pack Materials-Page 2  
MECHANICAL DATA  
MPFM001E – OCTOBER 1994 – REVISED JANUARY 2001  
KTE (R-PSFM-G3)  
PowerFLEX PLASTIC FLANGE-MOUNT  
0.375 (9,52)  
0.365 (9,27)  
0.080 (2,03)  
0.070 (1,78)  
0.360 (9,14)  
0.350 (8,89)  
0.050 (1,27)  
0.040 (1,02)  
0.220 (5,59)  
NOM  
0.010 (0,25) NOM  
Thermal Tab  
(See Note C)  
0.360 (9,14)  
0.350 (8,89)  
0.295 (7,49)  
NOM  
0.320 (8,13)  
0.310 (7,87)  
0.420 (10,67)  
0.410 (10,41)  
1
3
0.025 (0,63)  
0.031 (0,79)  
Seating Plane  
0.004 (0,10)  
0.010 (0,25)  
M
0.100 (2,54)  
0.200 (5,08)  
0.005 (0,13)  
0.001 (0,03)  
0.041 (1,04)  
0.031 (0,79)  
0.010 (0,25)  
NOM  
Gage Plane  
3°6°  
0.010 (0,25)  
4073375/F 12/00  
NOTES: A. All linear dimensions are in inches (millimeters).  
B. This drawing is subject to change without notice.  
C. The center lead is in electrical contact with the thermal tab.  
D. Dimensions do not include mold protrusions, not to exceed 0.006 (0,15).  
E. Falls within JEDEC MO-169  
PowerFLEX is a trademark of Texas Instruments.  
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TI warrants performance of its components to the specifications applicable at the time of sale, in accordance with the warranty in TI’s terms  
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