L7800 SERIES POSITIVE VOLTAGE REGULATORS

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1 L7800 SERIES POSITIVE VOLTAGE REGULATORS OUTPUT CURRENT TO 1.5A OUTPUT VOLTAGES OF 5; 5.2; 6; 8; 8.5; 9; 12; 15; 18; 24V THERMAL OVERLOAD PROTECTION SHORT CIRCUIT PROTECTION OUTPUT TRANSITION SOA PROTECTION DESCRIPTION The L7800 series of three-terminal positive regulators is available in TO-220, TO-220FP, TO-220FM, TO-3 and D 2 PAK packages and several fixed output voltages, making it useful in a wide range of applications. These regulators can provide local on-card regulation, eliminating the distribution problems associated with single point regulation. Each type employs internal current limiting, thermal shut-down and safe area protection, making it essentially indestructible. If adequate heat sinking is provided, they can deliver over 1A output current. Although designed primarily as fixed voltage regulators, these devices can be used with external components to obtain adjustable voltage and currents. TO-220 D 2 PAK TO-220FP TO-220FM TO-3 SCHEMATIC DIAGRAM April /33

2 ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit DC Input Voltage for V O =5to18V 35 V I for V O =20,24V 40 V I O Output Current Internally Limited P tot Power Dissipation Internally Limited T stg Storage Temperature Range -65 to 150 C T op Operating Junction Temperature for L to 150 Range for L7800C 0 to 150 C Absolute Maximum Ratings are those values beyond which damage to the device may occur. Functional operation under these condition is not implied. THERMAL DATA Symbol Parameter D 2 PAK TO-220 TO-220FP TO-220FM TO-3 Unit R thj-case Thermal Resistance Junction-case Max C/W R Thermal Resistance Junction-ambient thj-amb Max C/W SCHEMATIC DIAGRAM 2/33

3 CONNECTION DIAGRAM (top view) TO-220 (Any Type) TO-220FP/TO-220FM D 2 PAK (Any Type) TO-3 ORDERING CODES TYPE TO-220 (A Type) TO-220 (C Type) TO-220 (E Type) D 2 PAK (A Type) (*) D 2 PAK (C Type) (T & R) TO-220FP TO-220FM TO-3 L7805 L7805T L7805C L7805CV L7805C-V L7805CV1 L7805CD2T L7805C-D2TR L7805CP L7805CF L7805CT L7852C L7852CV L7852CD2T L7852CP L7852CF L7852CT L7806 L7806T L7806C L7806CV L7806C-V L7806CD2T L7806CP L7806CF L7806CT L7808 L7808T L7808C L7808CV L7808C-V L7808CD2T L7808CP L7808CF L7808CT L7885C L7885CV L7885CD2T L7885CP L7885CF L7885CT L7809C L7809CV L7809C-V L7809CD2T L7809CP L7809CF L7809CT L7812 L7812T L7812C L7812CV L7812C-V L7812CD2T L7812CP L7812CF L7812CT L7815 L7815T L7815C L7815CV L7815C-V L7815CD2T L7815CP L7815CF L7815CT L7818 L7818T L7818C L7818CV L7818CD2T L7818CP L7818CF L7818CT L7820 L7820T L7820C L7820CV L7820CD2T L7820CP L7820CF L7820CT L7824 L7824T L7824C L7824CV L7824CD2T L7824CP L7824CF L7824CT (*) Available in Tape & Reel with the suffix "-TR". 3/33

4 APPLICATION CIRCUITS TEST CIRCUITS Figure 1 : DC Parameter Figure 2 : Load Regulation 4/33

5 Figure 3 : Ripple Rejection ELECTRICAL CHARACTERISTICS OF L7805 (refer to the test circuits, T J = -55 to 150 C, V I = 10V, V O Output Voltage T J = 25 C V V V I =8to20V V O (*) Line Regulation V I =7to25V T J = 25 C 3 50 mv V I =8to12V T J = 25 C 1 25 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 100 mv I O = 250 to 750 ma T J = 25 C 25 I d Quiescent Current T J = 25 C 6 ma V I = 8 to 25 V 0.8 V O / T Output Voltage Drift I O =5mA 0.6 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 40 µv/v O SVR Supply Voltage Rejection V I = 8 to 18 V f = 120Hz 68 db V d Dropout Voltage I O =1A T J =25 C V R O Output Resistance f = 1 KHz 17 mω I sc Short Circuit Current V I =35V T J = 25 C A I scp Short Circuit Peak Current T J = 25 C A 5/33

6 ELECTRICAL CHARACTERISTICS OF L7806 (refer to the test circuits, T J = -55 to 150 C, V I = 11V, V O Output Voltage T J = 25 C V V V I =9to21V V O (*) Line Regulation V I =8to25V T J = 25 C 60 mv V I =9to13V T J = 25 C 30 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 100 mv I O = 250 to 750 ma T J = 25 C 30 I d Quiescent Current T J = 25 C 6 ma V I = 9 to 25 V 0.8 V O / T Output Voltage Drift I O =5mA 0.7 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 40 µv/v O SVR Supply Voltage Rejection V I = 9 to 19 V f = 120Hz 65 db V d Dropout Voltage I O =1A T J =25 C V R O Output Resistance f = 1 KHz 19 mω I sc Short Circuit Current V I =35V T J = 25 C A I scp Short Circuit Peak Current T J = 25 C A ELECTRICAL CHARACTERISTICS OF L7808 (refer to the test circuits, T J = -55 to 150 C, V I = 14V, V O Output Voltage T J = 25 C V V V I =11.5to23V V O (*) Line Regulation V I =10.5to25V T J = 25 C 80 mv V I =11to17V T J = 25 C 40 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 100 mv I O = 250 to 750 ma T J = 25 C 40 I d Quiescent Current T J = 25 C 6 ma V I =11.5to25V 0.8 V O / T Output Voltage Drift I O =5mA 1 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 40 µv/v O SVR Supply Voltage Rejection V I = 11.5 to 21.5 V f = 120Hz 62 db V d Dropout Voltage I O =1A T J =25 C V R O Output Resistance f = 1 KHz 16 mω I sc Short Circuit Current V I =35V T J = 25 C A I scp Short Circuit Peak Current T J = 25 C A 6/33

7 ELECTRICAL CHARACTERISTICS OF L7812 (refer to the test circuits, T J = -55 to 150 C, V I = 19V, V O Output Voltage T J = 25 C V V V I =15.5to27V V O (*) Line Regulation V I =14.5to30V T J = 25 C 120 mv V I =16to22V T J = 25 C 60 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 100 mv I O = 250 to 750 ma T J = 25 C 60 I d Quiescent Current T J = 25 C 6 ma V I =15to30V 0.8 V O / T Output Voltage Drift I O =5mA 1.5 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 40 µv/v O SVR Supply Voltage Rejection V I =15to25V f=120hz 61 db V d Dropout Voltage I O =1A T J =25 C V R O Output Resistance f = 1 KHz 18 mω I sc Short Circuit Current V I =35V T J = 25 C A I scp Short Circuit Peak Current T J = 25 C A ELECTRICAL CHARACTERISTICS OF L7815 (refer to the test circuits, T J = -55 to 150 C, V I = 23V, V O Output Voltage T J = 25 C V V V I =18.5to30V V O (*) Line Regulation V I =17.5to30V T J = 25 C 150 mv V I =20to26V T J = 25 C 75 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 150 mv I O = 250 to 750 ma T J = 25 C 75 I d Quiescent Current T J = 25 C 6 ma V I = 18.5 to 30 V 0.8 V O / T Output Voltage Drift I O =5mA 1.8 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 40 µv/v O SVR Supply Voltage Rejection V I = 18.5 to 28.5 V f = 120Hz 60 db V d Dropout Voltage I O =1A T J =25 C V R O Output Resistance f = 1 KHz 19 mω I sc Short Circuit Current V I =35V T J = 25 C A I scp Short Circuit Peak Current T J = 25 C A 7/33

8 ELECTRICAL CHARACTERISTICS OF L7818 (refer to the test circuits, T J = -55 to 150 C, V I = 26V, V O Output Voltage T J = 25 C V V V I =22to33V V O (*) Line Regulation V I =21to33V T J = 25 C 180 mv V I =24to30V T J = 25 C 90 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 180 mv I O = 250 to 750 ma T J = 25 C 90 I d Quiescent Current T J = 25 C 6 ma V I =22to33V 0.8 V O / T Output Voltage Drift I O =5mA 2.3 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 40 µv/v O SVR Supply Voltage Rejection V I =22to32V f=120hz 59 db V d Dropout Voltage I O =1A T J =25 C V R O Output Resistance f = 1 KHz 22 mω I sc Short Circuit Current V I =35V T J = 25 C A I scp Short Circuit Peak Current T J = 25 C A ELECTRICAL CHARACTERISTICS OF L7820 (refer to the test circuits, T J = -55 to 150 C, V I = 28V, V O Output Voltage T J = 25 C V V V I =24to35V V O (*) Line Regulation V I =22.5to35V T J = 25 C 200 mv V I =26to32V T J = 25 C 100 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 200 mv I O = 250 to 750 ma T J = 25 C 100 I d Quiescent Current T J = 25 C 6 ma V I =24to35V 0.8 V O / T Output Voltage Drift I O =5mA 2.5 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 40 µv/v O SVR Supply Voltage Rejection V I =24to35V f=120hz 58 db V d Dropout Voltage I O =1A T J =25 C V R O Output Resistance f = 1 KHz 24 mω I sc Short Circuit Current V I =35V T J = 25 C A I scp Short Circuit Peak Current T J = 25 C A 8/33

9 ELECTRICAL CHARACTERISTICS OF L7824 (refer to the test circuits, T J = -55 to 150 C, V I = 33V, V O Output Voltage T J = 25 C V V V I =28to38V V O (*) Line Regulation V I =27to38V T J = 25 C 240 mv V I =30to36V T J = 25 C 120 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 240 mv I O = 250 to 750 ma T J = 25 C 120 I d Quiescent Current T J = 25 C 6 ma V I =28to38V 0.8 V O / T Output Voltage Drift I O =5mA 3 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 40 µv/v O SVR Supply Voltage Rejection V I =28to38V f=120hz 56 db V d Dropout Voltage I O =1A T J =25 C V R O Output Resistance f = 1 KHz 28 mω I sc Short Circuit Current V I =35V T J = 25 C A I scp Short Circuit Peak Current T J = 25 C A ELECTRICAL CHARACTERISTICS OF L7805C (refer to the test circuits, T J = 0 to 125 C, V I = 10V, V O Output Voltage T J = 25 C V V V I =7to20V V O (*) Line Regulation V I =7to25V T J = 25 C mv V I =8to12V T J = 25 C 1 50 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 100 mv I O = 250 to 750 ma T J = 25 C 50 I d Quiescent Current T J = 25 C 8 ma V I = 7 to 25 V 0.8 V O / T Output Voltage Drift I O = 5 ma -1.1 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 40 µv/v O SVR Supply Voltage Rejection V I = 8 to 18 V f = 120Hz 62 db V d Dropout Voltage I O =1A T J =25 C 2 V R O Output Resistance f = 1 KHz 17 mω I sc Short Circuit Current V I =35V T J =25 C 0.75 A I scp Short Circuit Peak Current T J = 25 C 2.2 A 9/33

10 ELECTRICAL CHARACTERISTICS OF L7852C (refer to the test circuits, T J = 0 to 125 C, V I = 10V, V O Output Voltage T J = 25 C V V V I =8to20V V O (*) Line Regulation V I =7to25V T J = 25 C mv V I =8to12V T J = 25 C 1 52 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 105 mv I O = 250 to 750 ma T J = 25 C 52 I d Quiescent Current T J = 25 C 8 ma V I = 7 to 25 V 1.3 V O / T Output Voltage Drift I O = 5 ma -1 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 42 µv/v O SVR Supply Voltage Rejection V I = 8 to 18 V f = 120Hz 61 db V d Dropout Voltage I O =1A T J =25 C 2 V R O Output Resistance f = 1 KHz 17 mω I sc Short Circuit Current V I =35V T J =25 C 0.75 A I scp Short Circuit Peak Current T J = 25 C 2.2 A ELECTRICAL CHARACTERISTICS OF L7806C (refer to the test circuits, T J = 0 to 125 C, V I = 11V, V O Output Voltage T J = 25 C V V V I =8to21V V O (*) Line Regulation V I =8to25V T J = 25 C 120 mv V I =9to13V T J = 25 C 60 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 120 mv I O = 250 to 750 ma T J = 25 C 60 I d Quiescent Current T J = 25 C 8 ma V I = 8 to 25 V 1.3 V O / T Output Voltage Drift I O = 5 ma -0.8 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 45 µv/v O SVR Supply Voltage Rejection V I = 9 to 19 V f = 120Hz 59 db V d Dropout Voltage I O =1A T J =25 C 2 V R O Output Resistance f = 1 KHz 19 mω I sc Short Circuit Current V I =35V T J =25 C 0.55 A I scp Short Circuit Peak Current T J = 25 C 2.2 A 10/33

11 ELECTRICAL CHARACTERISTICS OF L7808C (refer to the test circuits, T J = 0 to 125 C, V I = 14V, V O Output Voltage T J = 25 C V V V I =10.5to25V V O (*) Line Regulation V I =10.5to25V T J = 25 C 160 mv V I =11to17V T J = 25 C 80 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 160 mv I O = 250 to 750 ma T J = 25 C 80 I d Quiescent Current T J = 25 C 8 ma V I =10.5to25V 1 V O / T Output Voltage Drift I O = 5 ma -0.8 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 52 µv/v O SVR Supply Voltage Rejection V I = 11.5 to 21.5 V f = 120Hz 56 db V d Dropout Voltage I O =1A T J =25 C 2 V R O Output Resistance f = 1 KHz 16 mω I sc Short Circuit Current V I =35V T J =25 C 0.45 A I scp Short Circuit Peak Current T J = 25 C 2.2 A ELECTRICAL CHARACTERISTICS OF L7885C (refer to the test circuits, T J = 0 to 125 C, V I = 14.5V, V O Output Voltage T J = 25 C V V V I =11to26V V O (*) Line Regulation V I =11to27V T J = 25 C 160 mv V I = 11.5 to 17.5 V T J = 25 C 80 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 160 mv I O = 250 to 750 ma T J = 25 C 80 I d Quiescent Current T J = 25 C 8 ma V I =11to27V 1 V O / T Output Voltage Drift I O = 5 ma -0.8 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 55 µv/v O SVR Supply Voltage Rejection V I =12to22V f=120hz 56 db V d Dropout Voltage I O =1A T J =25 C 2 V R O Output Resistance f = 1 KHz 16 mω I sc Short Circuit Current V I =35V T J =25 C 0.45 A I scp Short Circuit Peak Current T J = 25 C 2.2 A 11/33

12 ELECTRICAL CHARACTERISTICS OF L7809C (refer to the test circuits, T J = 0 to 125 C, V I = 15V, V O Output Voltage T J = 25 C V V V I =11.5to26V V O (*) Line Regulation V I =11.5to26V T J = 25 C 180 mv V I =12to18V T J = 25 C 90 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 180 mv I O = 250 to 750 ma T J = 25 C 90 I d Quiescent Current T J = 25 C 8 ma V I =11.5to26V 1 V O / T Output Voltage Drift I O = 5 ma -1 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 70 µv/v O SVR Supply Voltage Rejection V I =12to23V f=120hz 55 db V d Dropout Voltage I O =1A T J =25 C 2 V R O Output Resistance f = 1 KHz 17 mω I sc Short Circuit Current V I =35V T J =25 C 0.40 A I scp Short Circuit Peak Current T J = 25 C 2.2 A ELECTRICAL CHARACTERISTICS OF L7812C (refer to the test circuits, T J = 0 to 125 C, V I = 19V, V O Output Voltage T J = 25 C V V V I =14.5to27V V O (*) Line Regulation V I =14.5to30V T J = 25 C 240 mv V I =16to22V T J = 25 C 120 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 240 mv I O = 250 to 750 ma T J = 25 C 120 I d Quiescent Current T J = 25 C 8 ma V I =14.5to30V 1 V O / T Output Voltage Drift I O = 5 ma -1 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 75 µv/v O SVR Supply Voltage Rejection V I =15to25V f=120hz 55 db V d Dropout Voltage I O =1A T J =25 C 2 V R O Output Resistance f = 1 KHz 18 mω I sc Short Circuit Current V I =35V T J =25 C 0.35 A I scp Short Circuit Peak Current T J = 25 C 2.2 A 12/33

13 ELECTRICAL CHARACTERISTICS OF L7815C (refer to the test circuits, T J = 0 to 125 C, V I = 23V, V O Output Voltage T J = 25 C V V V I =17.5to30V V O (*) Line Regulation V I =17.5to30V T J = 25 C 300 mv V I =20to26V T J = 25 C 150 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 300 mv I O = 250 to 750 ma T J = 25 C 150 I d Quiescent Current T J = 25 C 8 ma V I =17.5to30V 1 V O / T Output Voltage Drift I O = 5 ma -1 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 90 µv/v O SVR Supply Voltage Rejection V I = 18.5 to 28.5 V f = 120Hz 54 db V d Dropout Voltage I O =1A T J =25 C 2 V R O Output Resistance f = 1 KHz 19 mω I sc Short Circuit Current V I =35V T J =25 C 0.23 A I scp Short Circuit Peak Current T J = 25 C 2.2 A ELECTRICAL CHARACTERISTICS OF L7818C (refer to the test circuits, T J = 0 to 125 C, V I = 26V, V O Output Voltage T J = 25 C V V V I =21to33V V O (*) Line Regulation V I =21to33V T J = 25 C 360 mv V I =24to30V T J = 25 C 180 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 360 mv I O = 250 to 750 ma T J = 25 C 180 I d Quiescent Current T J = 25 C 8 ma V I =21to33V 1 V O / T Output Voltage Drift I O = 5 ma -1 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 110 µv/v O SVR Supply Voltage Rejection V I =22to32V f=120hz 53 db V d Dropout Voltage I O =1A T J =25 C 2 V R O Output Resistance f = 1 KHz 22 mω I sc Short Circuit Current V I =35V T J =25 C 0.20 A I scp Short Circuit Peak Current T J = 25 C 2.1 A 13/33

14 ELECTRICAL CHARACTERISTICS OF L7820C (refer to the test circuits, T J = 0 to 125 C, V I = 28V, V O Output Voltage T J = 25 C V V V I =23to35V V O (*) Line Regulation V I =22.5to35V T J = 25 C 400 mv V I =26to32V T J = 25 C 200 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 400 mv I O = 250 to 750 ma T J = 25 C 200 I d Quiescent Current T J = 25 C 8 ma V I =23to35V 1 V O / T Output Voltage Drift I O = 5 ma -1 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 150 µv/v O SVR Supply Voltage Rejection V I =24to35V f=120hz 52 db V d Dropout Voltage I O =1A T J =25 C 2 V R O Output Resistance f = 1 KHz 24 mω I sc Short Circuit Current V I =35V T J =25 C 0.18 A I scp Short Circuit Peak Current T J = 25 C 2.1 A ELECTRICAL CHARACTERISTICS OF L7824C (refer to the test circuits, T J = 0 to 125 C, V I = 33V, V O Output Voltage T J = 25 C V V V I =27to38V V O (*) Line Regulation V I =27to38V T J = 25 C 480 mv V I =30to36V T J = 25 C 240 V O (*) Load Regulation I O =5mAto1.5A T J = 25 C 480 mv I O = 250 to 750 ma T J = 25 C 240 I d Quiescent Current T J = 25 C 8 ma V I =27to38V 1 V O / T Output Voltage Drift I O = 5 ma -1.5 mv/ C en Output Noise Voltage B =10Hz to 100KHz T J = 25 C 170 µv/v O SVR Supply Voltage Rejection V I =28to38V f=120hz 50 db V d Dropout Voltage I O =1A T J =25 C 2 V R O Output Resistance f = 1 KHz 28 mω I sc Short Circuit Current V I =35V T J =25 C 0.15 A I scp Short Circuit Peak Current T J = 25 C 2.1 A 14/33

15 Figure 4 : Dropout Voltage vs Junction Temperature Figure 7 : Output Voltage vs Junction Temperature Figure 5 : Peak Output Current vs Input/output Differential Voltage Figure 8 : Output Impedance vs Frequency Figure 6 : Supply Voltage Rejection vs Frequency Figure 9 : Quiescent Current vs Junction Temperature 15/33

16 Figure 10 : Load Transient Response Figure 12 : Quiescent Current vs Input Voltage Figure 11 : Line Transient Response Figure 13 : Fixed Output Regulator NOTE: 1. To specify an output voltage, substitute voltage value for "XX". 2. Although no output capacitor is need for stability, it does improve transient response. 3. Required if regulator is locate an appreciable distance from power supply filter. 16/33

17 Figure 14 : Current Regulator V xx I O = +I d R 1 Figure 15 : Circuit for Increasing Output Voltage I R1 5Id R 2 V O =V XX (1+ )+I d R 2 R 1 Figure 16 : Adjustable Output Regulator (7 to 30V) 17/33

18 Figure 17 : 0.5 to 10V Regulator R 4 V O =V xx R 1 Figure 18 : High Current Voltage Regulator V R BEQ1 1 = I I Q1 REQ - βq1 V I BEQ1 O =I REG +Q 1 (I REG ) R 1 Figure 19 : High Output Current with Short Circuit Protection V BEQ2 R SC = I SC 18/33

19 Figure 20 : Tracking Voltage Regulator Figure 21 : Split Power Supply (± 15V - 1 A) * Against potential latch-up problems. Figure 22 : Negative Output Voltage Circuit 19/33

20 Figure 23 : Switching Regulator Figure 24 : High Input Voltage Circuit V IN =V I- (V Z +V BE ) Figure 25 : High Input Voltage Circuit Figure 26 : High Output Voltage Regulator 20/33

21 Figure 27 : High Input and Output Voltage V O =V XX + V Z1 Figure 28 : Reducing Power Dissipation with Dropping Resistor V I(min) - V XX - V DROP(max) R= I O(max) + I d(max) Figure 29 : Remote Shutdown 21/33

22 Figure 30 : Power AM Modulator (unity voltage gain, I O 0.5) NOTE: The circuit performs well up to 100 KHz. Figure 31 : Adjustable Output Voltage with Temperature Compensation R 2 V O =V XX (1+ ) + V BE R 1 NOTE: Q 2 is connected as a diode in order to compensate the variation of the Q 1 V BE withthetemperature.callowsaslowrisetimeofthev O. Figure 32 : Light Controllers (V Omin =V XX +V BE ) V O falls when the light goes up V O rises when the light goes up 22/33

23 Figure 33 : Protection against Input Short-Circuit with High Capacitance Loads Application with high capacitance loads and an output voltage greater than 6 volts need an external diode (see fig. 33) to protect the device against input short circuit. In this case the input voltage falls rapidly while the output voltage decrease slowly. The capacitance discharges by means of the Base-Emitter junction of the series pass transistor in the regulator. If the energy is sufficiently high, the transistor may be destroyed. The external diode by-passes the current from the IC to ground. 23/33

24 TO-3 MECHANICAL DATA DIM. mm. inch MIN. TYP MAX. MIN. TYP. MAX. A B C D E G N P R U V P G A D C N O U V B E R P003C/C 24/33

25 TO-220 (A TYPE) MECHANICAL DATA DIM. mm. inch MIN. TYP MAX. MIN. TYP. MAX. A b b c D E e e F H J L L L L φp Q /M 25/33

26 TO-220 (C TYPE) MECHANICAL DATA DIM. mm. inch MIN. TYP MAX. MIN. TYP. MAX. A b b c D E e e F H J L L L L φp Q /M 26/33

27 TO-220 (E TYPE) MECHANICAL DATA DIM. mm. inch MIN. TYP MAX. MIN. TYP. MAX. A b b c D E e e F H J L L L φp Q /A 27/33

28 TO-220FP MECHANICAL DATA DIM. mm. inch MIN. TYP MAX. MIN. TYP. MAX. A B D E F F F G G H L L L L L DIA B D A E L6 L7 L3 F1 H G G1 F L2 F2 L /G 28/33

29 TO-220FM MECHANICAL DATA DIM. mm. inch MIN. TYP MAX. MIN. TYP. MAX. A B D E F F G G H L L L L L DIA C/G 29/33

30 D 2 PAK (A TYPE) MECHANICAL DATA DIM. mm. inch MIN. TYP MAX. MIN. TYP. MAX. A A b b c c D D E E e e H J L L L R V /J 30/33

31 D 2 PAK (C TYPE) MECHANICAL DATA DIM. mm. inch MIN. TYP MAX. MIN. TYP. MAX. A A b b c c D D E E e e H J L L L R V /J 31/33

32 Tape & Reel D 2 PAK-P 2 PAK-D 2 PAK/A-P 2 PAK/A MECHANICAL DATA DIM. mm. inch MIN. TYP MAX. MIN. TYP. MAX. A C D N T Ao Bo Ko Po P /33

33 Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products are not authorized for use as critical components in life support devices or systems without express written approval of STMicroelectronics. The ST logo is a registered trademark of STMicroelectronics All other names are the property of their respective owners 2004 STMicroelectronics - All Rights Reserved STMicroelectronics GROUP OF COMPANIES Australia - Belgium - Brazil - Canada - China - Czech Republic - Finland - France - Germany - Hong Kong - India - Israel - Italy - Japan - Malaysia - Malta - Morocco - Singapore - Spain - Sweden - Switzerland - United Kingdom - United States. 33/33

L7800 SERIES POSITIVE VOLTAGE REGULATORS

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