µa78m00 SERIES POSITIVE-VOLTAGE REGULATORS
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1 The µa78m15 is obsolete and 3-Terminal Regulators Output Current Up To 500 No External Components Internal Thermal-Overload Protection KC (TO-220) PACKAGE (TOP IEW) µa78m00 SERIES POSITIE-OLTAGE REGULATORS SLS059M JUNE 1976 REISED JULY 2003 High Power-Dissipation Capability Internal Short-Circuit Current Limiting Output Transistor Safe-Area Compensation KTP PACKAGE (TOP IEW) OUTPUT INPUT OUTPUT INPUT KCS (TO-220) PACKAGE (TOP IEW) DCY (SOT-223) PACKAGE (TOP IEW) OUTPUT INPUT OUTPUT 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 500 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 as the power-pass element in precision regulators. 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. 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. Copyright 2003, Texas Instruments Incorporated POST OFFICE BOX DALLAS, TEXAS
2 µa78m00 SERIES POSITIE-OLTAGE REGULATORS SLS059M JUNE 1976 REISED JULY 2003 The µa78m15 is obsolete and description/ordering information (continued) ORDERING INFORMATION TJ O(NOM) () PACKAGE ORDERABLE PART NUMBER TOP-SIDE MARKING 0 C to 125 C Power Flex (KTP) Reel of 3000 µa78m33cktpr UA78M33C 3.3 SOT-223 (DCY) 5 Tube of 80 Reel of 2500 µa78m33cdcy µa78m33cdcyr TO-220 (KC) Tube of 50 µa78m33ckc UA78M33C Power Flex (KTP) Reel of 3000 µa78m05cktpr UA78M05C SOT-223 (DCY) Tube of 80 Reel of 2500 µa78m05cdcy µa78m05cdcyr TO-220 (KC) Tube of 50 µa78m05ckc TO-220, short shoulder (KCS) Tube of 20 µa78m05ckcs C3 C5 UA78M05C 6 Power Flex (KTP) Reel of 3000 µa78m06cktpr UA78M06C Power Flex (KTP) Reel of 3000 µa78m08cktpr UA78M08C 8 SOT-223 (DCY) Tube of 80 Reel of 2500 µa78m08cdcy µa78m08cdcyr TO-220 (KC) Tube of 50 µa78m08ckc UA78M08C 9 Power Flex (KTP) Reel of 3000 µa78m09cktpr UA78M09C 10 Power Flex (KTP) Reel of 3000 µa78m10cktpr UA78M10C 12 Power Flex (KTP) Reel of 3000 µa78m12cktpr UA78M12C TO-220 (KC) Tube of 50 µa78m12ckc UA78M12C Package drawings, standard packing quantities, thermal data, symbolization, and PCB design guidelines are available at C8 2 POST OFFICE BOX DALLAS, TEXAS 75265
3 The µa78m15 is obsolete and µa78m00 SERIES POSITIE-OLTAGE REGULATORS SLS059M JUNE 1976 REISED JULY 2003 schematic INPUT 140 kω 96 Ω 0.6 Ω 0 to 20 kω OUTPUT 5.4 kω Resistor values shown are nominal. POST OFFICE BOX DALLAS, TEXAS
4 µa78m00 SERIES POSITIE-OLTAGE REGULATORS SLS059M JUNE 1976 REISED JULY 2003 The µa78m15 is obsolete and absolute maximum ratings over virtual junction temperature range Input voltage, I Operating virtual junction temperature, T J C Lead temperature 1,6 mm (1/16 inch) from case for 10 seconds C Storage temperature range, T stg C to 150 C 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 (see Note 1) NOTE 1: PACKAGE BOARD θjc θja POWER-FLEX (KTP) High K, JESD C/W 28 C/W SOT-223 (DCY) High K, JESD C/W 53 C/W TO-220 (KC/KCS) High K, JESD C/W 19 C/W 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. recommended operating conditions I Input voltage MIN MAX µa78m µa78m µa78m µa78m µa78m µa78m µa78m µa78m IO Output current 500 TJ Operating virtual junction temperature C 4 POST OFFICE BOX DALLAS, TEXAS 75265
5 The µa78m15 is obsolete and µa78m00 SERIES POSITIE-OLTAGE REGULATORS SLS059M JUNE 1976 REISED JULY 2003 electrical characteristics at specified virtual junction temperature, I = 8, I O = 350, T J = 25 C Output voltage µa78m33c IO = 5 to 350, I = 8 to 20 TJ = 0 C to 125 C I = 5.3 to I = 8 to I = 8 to 18, IO = 100, TJ = 0 C to 125 C 62 f = 120 Hz IO = I = 8, IO = 5 to Temperature coefficient of output voltage IO = 5, TJ = 0 C to 125 C 1 / C Output noise voltage f = 10 Hz to 100 khz µ Dropout voltage 2 Bias current 4.5 6, I = 8 to 25, TJ = 0 C to 125 C 0.8 Short-circuit output current I = Peak output current 700 This specification applies only for dc power dissipation permitted by absolute maximum ratings. electrical characteristics at specified virtual junction temperature, I = 10, I O = 350, T J = 25 C Output voltage µa78m05c IO = 5 to 350, I = 7 to 20 TJ = 0 C to 125 C I = 7 to I = 8 to I = 8 to 18, IO = 100, TJ = 0 C to 125 C 62 f = 120 Hz IO = IO = 5 to IO = 5 to Temperature coefficient of output voltage IO = 5, TJ = 0 C to 125 C 1 / C Output noise voltage f = 10 Hz to 100 khz µ Dropout voltage 2 Bias current 4.5 6, I = 8 to 25, TJ = 0 C to 125 C 0.8 Short-circuit output current I = POST OFFICE BOX DALLAS, TEXAS
6 µa78m00 SERIES POSITIE-OLTAGE REGULATORS SLS059M JUNE 1976 REISED JULY 2003 The µa78m15 is obsolete and electrical characteristics at specified virtual junction temperature, I = 11, I O = 350, T J = 25 C Output voltage IO = 5 to 350, I = 8 to 21 I = 9 to 19, f = 120 Hz Temperature coefficient of output voltage µa78m06c TJ = 0 C to 125 C I = 8 to I = 9 to IO = 100, TJ = 0 C to 125 C 59 IO = IO = 5 to IO = 5 to IO = 5, TJ = 0 C to 125 C 1 / C Output noise voltage f = 10 Hz to 100 khz 45 µ Dropout voltage 2 Bias current I = 9 to 25,, TJ = 0 C to 125 C 0.8 Short-circuit output current I = electrical characteristics at specified virtual junction temperature, I = 14, I O = 350, T J = 25 C Output voltage I = 10.5 to 23, IO = 5 to 350 Temperature coefficient of output voltage µa78m08c TJ = 0 C to 125 C I = 10.5 to I = 11 to I = 11.5 to 21.5, IO = 100, TJ = 0 C to 125 C 56 f = 120 Hz IO = IO = 5 to IO = 5 to IO = 5, TJ = 0 C to 125 C 1 / C Output noise voltage f = 10 Hz to 100 khz 52 µ Dropout voltage 2 Bias current I = 10.5 to 25,, TJ = 0 C to 125 C 0.8 Short-circuit output current I = POST OFFICE BOX DALLAS, TEXAS 75265
7 The µa78m15 is obsolete and µa78m00 SERIES POSITIE-OLTAGE REGULATORS SLS059M JUNE 1976 REISED JULY 2003 electrical characteristics at specified virtual junction temperature, I = 16,I O = 350, T J = 25 C Output voltage I = 11.5 to 24, IO = 5 to 350 Temperature coefficient of output voltage µa78m09c TJ = 0 C to 125 C I = 11.5 to I = 12 to I = 13 to 23, IO = 100, TJ = 0 C to 125 C 56 f = 120 Hz IO = IO = 5 to IO = 5 to IO = 5, TJ = 0 C to 125 C 1 / C Output noise voltage f = 10 Hz to 100 khz 58 µ Dropout voltage 2 Bias current I = 11.5 to 26,, TJ = 0 C to 125 C 0.8 Short-circuit output current I = electrical characteristics at specified virtual junction temperature, I = 17, I O = 350, T J = 25 C Output voltage I = 12.5 to 25, IO = 5 to 350 Temperature coefficient of output voltage µa78m10c TJ = 0 C to 125 C I = 12.5 to I = 14 to I = 15 to 25, IO = 100, TJ = 0 C to 125 C 59 f = 120 Hz IO = IO = 5 to IO = 5 to IO = 5, TJ = 0 C to 125 C 1 / C Output noise voltage f = 10 Hz to 100 khz 64 µ Dropout voltage 2 Bias current I = 12.5 to 28,, TJ = 0 C to 125 C 0.8 Short-circuit output current I = POST OFFICE BOX DALLAS, TEXAS
8 µa78m00 SERIES POSITIE-OLTAGE REGULATORS SLS059M JUNE 1976 REISED JULY 2003 The µa78m15 is obsolete and electrical characteristics at specified virtual junction temperature, I = 19, I O = 350, T J = 25 C Output voltage I = 14.5 to 27, IO = 5 to 350 Temperature coefficient of output voltage µa78m12c TJ = 0 C to 125 C I = 14.5 to I = 16 to I = 15 to 25, IO = 100, TJ = 0 C to 125 C 55 f = 120 Hz IO = IO = 5 to IO = 5 to IO = 5 1 / C Output noise voltage f = 10 Hz to 100 khz 75 µ Dropout voltage 2 Bias current I = 14.5 to 30,, TJ = 0 C to 125 C 0.8 Short-circuit output current I = electrical characteristics at specified virtual junction temperature, I = 23, I O = 350, T J = 25 C Output voltage I = 17.5 to 30, IO = 5 to 350 Temperature coefficient of output voltage µa78m15c TJ = 0 C to 125 C I = 17.5 to I = 20 to I = 18.5 to 28.5, IO = 100, TJ = 0 C to 125 C 54 f = 120 Hz IO = IO = 5 to IO = 5 to IO = 5, TJ = 0 C to 125 C 1 / C Output noise voltage f = 10 Hz to 100 khz 90 µ Dropout voltage 2 Bias current I = 17.5 to 30,, TJ = 0 C to 125 C 0.8 Short-circuit output current I = POST OFFICE BOX DALLAS, TEXAS 75265
9 MECHANICAL DATA MPDS094A APRIL 2001 REISED JUNE 2002 DCY (R-PDSO-G4) PLASTIC SMALL-OUTLINE 6,70 (0.264) 6,30 (0.248) 4 3,10 (0.122) 2,90 (0.114) 0,10 (0.004) M 7,30 (0.287) 3,70 (0.146) 6,70 (0.264) 3,30 (0.130) Gauge Plane 2,30 (0.091) ,60 (0.181) 0,84 (0.033) 0,66 (0.026) 0,10 (0.004) M ,25 (0.010) 0,75 (0.030) MIN 1,80 (0.071) MAX 1,70 (0.067) 1,50 (0.059) 0,35 (0.014) 0,23 (0.009) Seating Plane 0,10 (0.0040) 0,02 (0.0008) 0,08 (0.003) /B 06/2002 NOTES: A. All linear dimensions are in millimeters (inches). B. This drawing is subject to change without notice. C. Body dimensions do not include mold flash or protrusion. D. Falls within JEDEC TO-261 ariation AA. POST OFFICE BOX DALLAS, TEXAS 75265
10 MECHANICAL DATA MPSF001F JANUARY 1996 REISED JANUARY 2002 KTP (R-PSFM-G2) PowerFLEX PLASTIC FLANGE-MOUNT PACKAGE (6,17) (5,91) (5,79) (5,54) (2,03) (1,78) (1,27) (1,02) (3,30) NOM (0,25) NOM (9,68) (9,42) (5,46) NOM (6,27) (6,02) (7,29) (7,03) Thermal Tab (See Note C) (2,54) (2,29) (0,81) MAX Seating Plane (2,29) (4,57) (0,79) (0,63) (0,25) M (0,13) (0,02) (0,10) (0,25) NOM Gage Plane (1,19) (0,94) (0,25) /M 01/02 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 (0,15). E. Falls within JEDEC TO-252 variation AC. PowerFLEX is a trademark of Texas Instruments. POST OFFICE BOX DALLAS, TEXAS
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13 IMPORTANT NOTICE Texas Instruments Incorporated and its subsidiaries (TI) reserve the right to make corrections, modifications, enhancements, improvements, and other changes to its products and services at any time and to discontinue any product or service without notice. Customers should obtain the latest relevant information before placing orders and should verify that such information is current and complete. All products are sold subject to TI s terms and conditions of sale supplied at the time of order acknowledgment. TI warrants performance of its hardware products to the specifications applicable at the time of sale in accordance with TI s standard warranty. Testing and other quality control techniques are used to the extent TI deems necessary to support this warranty. Except where mandated by government requirements, testing of all parameters of each product is not necessarily performed. TI assumes no liability for applications assistance or customer product design. Customers are responsible for their products and applications using TI components. To minimize the risks associated with customer products and applications, customers should provide adequate design and operating safeguards. TI does not warrant or represent that any license, either express or implied, is granted under any TI patent right, copyright, mask work right, or other TI intellectual property right relating to any combination, machine, or process in which TI products or services are used. Information published by TI regarding third-party products or services does not constitute a license from TI to use such products or services or a warranty or endorsement thereof. Use of such information may require a license from a third party under the patents or other intellectual property of the third party, or a license from TI under the patents or other intellectual property of TI. Reproduction of information in TI data books or data sheets is permissible only if reproduction is without alteration and is accompanied by all associated warranties, conditions, limitations, and notices. Reproduction of this information with alteration is an unfair and deceptive business practice. TI is not responsible or liable for such altered documentation. Resale of TI products or services with statements different from or beyond the parameters stated by TI for that product or service voids all express and any implied warranties for the associated TI product or service and is an unfair and deceptive business practice. TI is not responsible or liable for any such statements. Following are URLs where you can obtain information on other Texas Instruments products and application solutions: Products Applications Amplifiers amplifier.ti.com Audio Data Converters dataconverter.ti.com Automotive DSP dsp.ti.com Broadband Interface interface.ti.com Digital Control Logic logic.ti.com Military Power Mgmt power.ti.com Optical Networking Microcontrollers microcontroller.ti.com Security Telephony ideo & Imaging Wireless Mailing Address: Texas Instruments Post Office Box Dallas, Texas Copyright 2004, Texas Instruments Incorporated
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