TA78M05F TOSHIBA | Alldatasheet

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TOSHIBA TA78M05,06,08~ 10,12,15,18,20,24F TOSHIBA BIPOLAR LINEAR INTEGRATED CIRCUIT SILICON MONOLITHIC TA78MO5F, TA78MO6F, TA78MO8F, TA78MO9F, TA78M10F TA78M12F, TA78M15F, TA78M18F, TA78M20F, TA78M24F

0.5 A THREE TERMINAL POSITIVE VOLTAGE REGULATORS

5V, 6V, 8V, 9V, 10V, 12V, 15V, 18V, 20V, 24V The TA78M x xF series of fixed-voltage monolithic TA78XXF integrated circuit voltage regulators is designed for a (~ wide range of applications. These regulators employ | internal current-limiting, thermal-shutdown and safe-area mee compensation, making them essentially indestructible. One of these regulators can drive up to 0.5A of output current. 132 HSIP3-P-2.30B FEATURES TA78XXF 1. INPUT (LBSTA1) 2. OUTPUT @ Suitable for CMOS, TTL and the other Digital IC’s Power (TE16L/R) 3. COMMON (CASE) Supply. fs @ Output Current in Excess of 0.5A J ,) @ Internal Thermal Overload Protection 3 @ Internal Short Circuit Current Limiting © Packaged in POWER MOLD. HSOP3-P-2.30A Weight HSIP3-P-2.30B : 0.36g (Typ.) HSOP3-P-2.30A : 0.36g (Typ.) 980910EBA1 @ TOSHIBA is continually working to improve the quality and the reliability of its products. Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress. It is the responsibility of the buyer, when utilizing TOSHIBA products, to observe standards of safety, and to avoid situations in which a malfunction or failure of a TOSHIBA product could cause loss of human life, bodily injury or damage to property. In developing your designs, please ensure that TOSHIBA products are used within specified operating ranges as set forth in the most recent products specifications. Also, please keep in mind the precautions and conditions set forth in the TOSHIBA Semiconductor Reliability Handbook. Sire products described in this document are subject to the foreign exchange and foreign trade laws. The information contained herein is presented only as a guide for the applications of our products. No responsibility is assumed by TOSHIBA CORPORATION for any infringements of intellectual property or other rights of the third parties which may result, from its use. No license is granted by implication of otherwise under any. intellectual property or other rights of TOSHIBA CORPORATION or others. @ The information contained herein is subject to change without notice. 1999-10-15 1/20

TOSHIBA TA78M05,06,08~10,12,15,18,20,24F EQUIVALENT CIRCUIT (3 ™ Qi7 [——* \\ batik " ae o a0 i @ oureut Gy * ) Gnd MAXIMUM RATINGS (Ta = 25°C) TA78MO6F TA78MO8F TA78M10F | Vol V Vv nput Voltage TA78M12F IN TA78M15F TA78M18F TA78M24F vower Daspaton [ita = 250 a, ‘ower Dissipation (Te = 25°C) [10 | Operating Temperature =30~75 Storage Temperature = 55~150 Thermal Resistance c/W P Ringe [125 | 1999-10-15 2/20

TOSHIBA TA78M05,06,08~ 10,12,15,18,20,24F TA78MO5F

ELECTRICAL CHARACTERISTICS

(Vin = 10V, lout = 350 mA, 0°C S Tj S 125°C, Cin = 0.33 uF, CouT = 0.1 uF, unless otherwise specified) TEST} CHARACTERISTIC SYMBOL TEST CONDITION | re. [ax UNIT CUIT Output Vertage | Vout | 1 [= 25 Las, so, 52] v | 7V 5 Vin = 25V a . . | | one-|!ouT = 200 ma Line Regulation Reg.Line Tj = 25°C 8V = Vin = 25V mV lout = 200 mA 5mA S lout = 500mA Load Regulation Reg.Load IT) = 25°C) m OUT m [= [25] mV SmA=lour=200ma| — | 10] 50 | o-|7V = Vin = 20V Output Voltage | vour | + fr = 25°C 5 mA S loyr < 350mA 4.75 | — | 525| Vv [Quiescent Covent | ppt [yeaseSSC*P CYS BO ma . i 8.5V = Vin = 25.5V, Quiescent Line lout = 200 mA OUT = Current change [oad] algo _|_1 [Sma = lyr = 350mA | — | — | 05 | Output Noise Voltage Ta = 25°C, 10Hz= f= 100kHz | — | 50[ 200 [Vrms] : a f = 120Hz, Ioyt = 50mA Ripple Rejection | re | 3 lev < vin = 18V,7; = 25°C 67 Short Circuit Current °, time SO | se ft fuszre | = | 0] = | ma Dropout Voltage | Vp | 7 [Ta = 25% [= appv Average Temperature Coefficient Of Output Tcvo lout = 5mA mvV/°C| Voltage 1999-10-15 3/20

TOSHIBA TA78M05,06,08~ 10,12,15,18,20,24F TA78MO6F (Vin = 11V, louT = 350 mA, 0°C S Tj S 125°C, Cin = 0.33 uF, CouT = 0.1 uF, unless otherwise specified) TEST} CHARACTERISTIC SYMBOL TEST CONDITION | re. [ax UNIT CUIT Output Vetage | Vout | 1 [= 25 [ss | sof eas] v | S FS Line Regulation Reg.Line It, = 25ec|OuT = 200mA mv . J 9V= Vin = 25V 2 louT = 200 mA 5mA S lout = 500mA Load Regulation Reg.Load Tj = 25°C| m = OUT m [= [25] mV SmA=lour=200mA| — | 10] 60 | ; 5-|8V = Vin = 21V Output Voltage VouT bhi = 25°C 5 mA S loyr < 350mA 5.7 6.3 Vv [Quiescent Covent [ip pt |[yeaseSSSCiPC A BO mY . a 9.5V = Vin = 25.5V, Quiescent Line | = 200mA Current Change our=aen ma [toad] ago | 1 [5mA= Iur = 350mA [= [= [5] Output Noise Voltage Ta = 25°C, 10HzS f= 100kHz | — | 55] 220 [~Vrms| : a f = 120Hz, lout = 50mA Ripple Rejection a 3 lov < vin = 19V, T; = 25°C Short Circuit Current , time EN Ye 1 [unas [= | so] — | ma | Dropout Voltage | Vp | 7 [Ta = 25% [= pat — pv Average Temperature Coefficient Of Output Tcvo lout = 5mA -0.7 mvV/°C| Voltage 1999-10-15 4/20

TOSHIBA TA78M05,06,08~ 10,12,15,18,20,24F TA78MO8F (Vin = 14V, louT = 350 mA, 0°C S Tj S 125°C, Cin = 0.33 uF, CouT = 0.1 uF, unless otherwise specified) TEST} CHARACTERISTIC SYMBOL TEST CONDITION | re. [ax UNIT CUIT Output Vetage | Vout | 1 [= 25 [7 [sop as] v | 10.5V 5 Vin = 25V . . . | one-|!ouT = 200 ma Line Regulation Reg.Line Tj = 25°C 11V = Vin = 25V 0 mV lout = 200 mA 5mA S| S 500mA Load Regulation Reg.Load Tj = 25°C| m = OUT m | = [26] 160 | mV 5mA=loyt= 200mA| — | 10] 80 | - Spop| 10.5V = Vin S 23V Output Voltage VouT bhi = 25°C 5 mA S loyt < 350mA 76 Vv [Quiescent Covent | pp |[yeaseSSC~C YC BO mY ; ; T1V = Vin = 255V, Quiescent Line \\ = 200 mA Current Change our=aen ma [toad] ago | 1 [5mA= Iur = 350mA [= [= [5] Output Noise Voltage Ta = 25°C, 10HzS f= 100kHz | — | 60| 250 [~Vrms| : f = 120Hz, lout = 50mA Ripple Rejection a 3 415 < Vin < 21.5V, T= 25°¢ | > Short Circuit Current , time SO | se | t [n=a5e [= | oe] = | ma] Dropout Voltage | Vp | 7 [Ta = 25% [= pat — pv Average Temperature Coefficient Of Output Tcvo lout = 5mA -1.0 mvV/°C| Voltage 1999-10-15 5/20

TOSHIBA TA78M05,06,08~ 10,12,15,18,20,24F TA78MO9F (Vin = 15V, lout = 350 mA, 0°C S Tj S 125°C, Cin = 0.33 uF, CouT = 0.1 uF, unless otherwise specified) TEST} CHARACTERISTIC SYMBOL TEST CONDITION | re. [ax UNIT CUIT Output Vetage | Vout | 1 [= 25 [sea | sof ese | Vv 11.5V 5 Vin = 26V 100 Line Regulation Reg.Line Ir, = 25ec|!QuT = 200 mA mv . J 13V = Vin S$ 26V lout = 200 mA 5mA S lout = 500mA Load Regulation Reg.Load Tj = 25°C| m = OUT m [= | 26] mV SmA=lour=200mA| — | 10] 90 | ; o-| 11-5V 5 Vin S 24V Output Voltage VouT bhi = 25°C 5 mA S loyr < 350mA Vv Quiescent Current [tp] tt [tj=2sc PTT 8.0] ma | - A 12V = Vin = 26.5V, Quiescent Line \\ = 200 Current Change our = 200 mA ma [toad] ago | 1 [5mA= Iur = 350mA [= [= [5] Output Noise Voltage Ta = 25°C, 10HzS f= 100kHz | — | 60| 270 [~Vrms| : a f = 120Hz, lout = 50mA Ripple Rejection a 3 |125Vs Vin = 22.5V, T; = 25°C $1 Short Circuit Current , time TEN Ye 1 [unas [= | so] — | ma | Dropout Voltage | Vp | 7 [Ta = 25% [= pat — pv Average Temperature Coefficient Of Output Tcvo lout = 5mA -1.1 mvV/°C| Voltage 1999-10-15 6/20

TOSHIBA TA78M05,06,08~ 10,12,15,18,20,24F TA78M10F (Vin = 16V, louT = 350 mA, 0°C S Tj S 125°C, Cin = 0.33 uF, CouT = 0.1 uF, unless otherwise specified) TEST} CHARACTERISTIC SYMBOL TEST CONDITION | re. [ax UNIT CUIT Output Vetage | Vout | 1 [= 25 [36 [too to4 | v_ 12.5V 5 Vin = 26V 100 Line Regulation Reg.Line It, = 25ec|OUT = 200 mA mv : , 14V = Vin S 26V lout = 200 mA 5mA S| S 500mA Load Regulation Reg.Load Tj =25°C m —OUT m | = | 26] 200 | mV SmA=lour=200mA| — | 10] 100 | ogo) 12.5V 5 Vin = 25V Output Voltage VouT | Tj =25°C 5 mA S loyr < 350mA Vv [Quiescent Covent | pp [yeaseSSSCiPC A BO mY ; ; 13V = Vin = 265V, Quiescent Line 1 = 200 Current Change our = 200 mA mA [toad] ago | 1 [5mA= Iur = 350mA [= [= [5] Output Noise Voltage Ta = 25°C, 10HzS f= 100kHz | — | 65] 280 [~Vrms| : f = 120Hz, lout = 50mA Ripple Rejection a 3 |435Vvs vin = 235v, 7, = 25°C | ] 9 Short Circuit Current , time TEN Ye 1 [unas [= | so] — | ma | Dropout Voltage | Vp | 7 [Ta = 25% [= pat — pv Average Temperature Coefficient Of Output Tcvo lout = 5mA -1.3 mvV/°C| Voltage 1999-10-15 7/20

TOSHIBA TA78M05,06,08~ 10,12,15,18,20,24F TA78M12F (Vin = 19V, louT = 350 mA, 0°C S Tj S 125°C, Cin = 0.33 uF, CouT = 0.1 uF, unless otherwise specified) TEST} CHARACTERISTIC SYMBOL TEST CONDITION | re. [ax UNIT CUIT Output Vetage | Vout | 1 [= 25 = FS Line Regulation Reg.Line Ir, = 25ec|!QuT = 200 mA mv . J 16V = Vin = 30V lout = 200 mA ecl5mA= tour = 500mA| — | 27 | 2A0 | Load Regulation Reg.Load + fn = 25°C 5mA = lout = 200mA L— [10 120 | mV oo | 14.5V 5 Vin = 27V Output Voltage VouT | Tj =25°C 5 mA S loyr < 350mA 12.6 Vv [Quiescent Covent [ppt |yeaseSSCSC~C BO mA ; ; 15V = Vin = 305V, Quiescent Line \\ = 200 Current Change our = 200 mA ma [toad] ago | 1 [5mA= Iur = 350mA [= [= [5] Output Noise Voltage Ta = 25°C, 10HzS f= 100kHz | — | 70| 300 [~Vrms| : f = 120Hz, lout = 50mA Ripple Rejection a 3 |45Vv 5 vin = 25V, T, = 25°C 57 Short Circuit Current , time EN Ye 1 [unas [= | so] — | ma | Dropout Voltage | Vp | 7 [Ta = 25% [= pat — pv Average Temperature Coefficient Of Output Tcvo lout = 5mA -1.6 mvV/°C| Voltage 1999-10-15 8/20

TOSHIBA TA78M05,06,08~ 10,12,15,18,20,24F TA78M15F (Vin = 23V, louT = 350 mA, 0°C S Tj S 125°C, Cin = 0.33 uF, CouT = 0.1 uF, unless otherwise specified) TEST} CHARACTERISTIC SYMBOL TEST CONDITION | re. [ax UNIT CUIT Output Vetage | Vout | 1 [= 25 [waa] 50 | 56] Vv 17.5V 5 Vin = 30V 100 Line Regulation Reg.Line It, = 25ec|QUT = 200 mA mv . J 20V = Vin = 30V lout = 200 mA 5mA S lout = 500mA Load Regulation Reg.Load Tj = 25°C| m = OUT m = mV SmA=lour=200ma| — | 10] 150] ; 5, 17-5V = Vin = 30V Output Voltage VouT bhi = 25°C 5 mA S loyr < 350mA 14.25 15.75] V Quiescent Current [tp] tt [aac 8 8.0] ma | - A 18V = Vin = 30.5V, Quiescent Line \\ = 200 Current Change our = 200 mA ma [toad] ago | 1 [5mA= Iur = 350mA [= [= [5] Output Noise Voltage Ta = 25°C, 10HzS f= 100kHz | — | 80| 450[Vrms| : a f = 120Hz, lout = 50mA Ripple Rejection a 3 |185V 5 Vin = 28.5V, T; = 25°C 55 Short Circuit Current , time TEN Ye 1 [unas [= | so] — | ma | Dropout Voltage | Vp | 7 [Ta = 25% [= pat — pv Average Temperature Coefficient Of Output Tcvo lout = 5mA -2.0 mvV/°C| Voltage 1999-10-15 9/20

TOSHIBA TA78M05,06,08~ 10,12,15,18,20,24F TA78M18F (Vin = 27V, louT = 350 mA, 0°C S Tj S 125°C, Cin = 0.33 uF, CouT = 0.1 uF, unless otherwise specified) TEST} CHARACTERISTIC SYMBOL TEST CONDITION | re. [ax UNIT CUIT Output Vetage | Vout | 1 [= 25 [7s [tao [a7] Vv 21V = Vin = 33V 100 Line Regulation Reg.Line Ir, = 25ec|OUT = 200 mA mv : , 24V = Vin = 33V lout = 200 mA 5mA S| S 500mA Load Regulation Reg.Load Tj =25°C m —OUT m | = | 28] 360 | mV SmA=lour=200mA| — | 10] 180 | »- |21V = Vin = 33V comm | vo | fee smal" | — [9] 9 [Quiescent Covent [ppt |[yeaseSSC~C BO mY Quiescent Line I = 200 Current Change our = 200 mA mA [toad] ago | 1 [5mA= Iur = 350mA [= [= [5] Output Noise Voltage Ta = 25°C, 10HzS f= 100kHz | — | 90| 490 [~Vrms| : f = 120Hz, lout = 50mA Ripple Rejection a 3 |o2V Ss vin 5 32V, T; = 25°C 53 Short Circuit Current , time EN Ye 1 [unas [= | so] — | ma | Dropout Voltage | Vp | 7 [Ta = 25% [= pat — pv Average Temperature Coefficient Of Output Tcvo lout = 5mA -2.5 mvV/°C| Voltage 1999-10-15 10/20

TOSHIBA TA78M05,06,08~ 10,12,15,18,20,24F TA78M20F (Vin = 29V, louT = 350 mA, 0°C S Tj S 125°C, Cin = 0.33 uF, CouT = 0.1 uF, unless otherwise specified) TEST} CHARACTERISTIC SYMBOL TEST CONDITION | re. [ax UNIT CUIT Output vortage | Vout _| 1 [= 25% [192 | 200208 | Vv = FS Line Regulation Reg.Line Ir, = 25ec|OuT = 200 mA mv . J 24V = Vin = 35V lout = 200 mA 5mA S| S 500mA Load Regulation Reg.Load Tj = 25°C m = OUT m [= [28] 400 | mV SmA=lour=200mA| — | 10] 200 | ; »-|23V 5 Vin = 35V Output Voltage VouT Loh = 25°C| 5 mA S loyr = 350mA 21.0 Vv [Quiescent Covent | ip pt [yam SSCiP CY BO ma Quiescent Line 1 = 200 Current Change our = 200 mA ma [toad] ago | 1 [5mA= Iur = 350mA [= [= [5] Output Noise Voltage Ta = 25°C, 10HzS f= 100kHz | — | 95] 540 [~Vrms| : f = 120Hz, lout = 50mA Ripple Rejection a 3 |oav Ss Vin = 34V, T; = 25°C 53 Short Circuit Current o, time TEN |e | unas [= | so] — | ma | Dropout Voltage | Vp | 7 [Ta = 25% [= pat — pv Average Temperature Coefficient Of Output Tcvo lout = 5mA -3.0 mvV/°C| Voltage 1999-10-15 11/20

TOSHIBA TA78M05,06,08~ 10,12,15,18,20,24F TA78M24F (Vin = 33V, louT = 350 mA, 0°C S Tj S 125°C, Cin = 0.33 uF, CouT = 0.1 uF, unless otherwise specified) TEST} CHARACTERISTIC SYMBOL TEST CONDITION | re. [ax UNIT CUIT Output vortage | Vout _| 1 [= 25% [230 | 2a0 50] Vv = FS Line Regulation Reg.Line Ir, = 25ec|QuT = 200 mA mv . J 28V = Vin = 38V 7 lout = 200 mA 5mA S lout = 500mA Load Regulation Reg.Load Tj = 25°C m = OUT m = mV SmA= lout = 200mA| — | 10 240 | _-|27V = Vin = 38V Output Voltage | vour | + fr = 25°C 5 mA S loyr = 350mA 22.8 | - | 25.2 Vv [Quiescent Covent [ip pt [yameSSCiP CS BO ma Quiescent Line 1 = 200 Current Change our = 200 mA ma [toad] ago | 1 [5mA= Iur = 350mA [= [= [5 | Output Noise Voltage Ta = 25°C, 10HzS f= 100kHz | — | 115] 650 [~Vrms| : a f = 120Hz, lout = 50mA Ripple Rejection a 3 |ogv s vin = 38V, T; = 25°C 53 Short Circuit Current o, time TEN |e | unas [= | so] — | ma | Dropout Voltage | Vp | 7 [Ta = 25% [= pat — pv Average Temperature Coefficient Of Output Tcvo lout = 5mA -3.5 mvV/°C| Voltage 1999-10-15 12/20

TOSHIBA TA78M05,06,08~10,12,15,18,20,24F TEST CIRCUIT 1/STANDARD APPLICATION 3 © Se le fiw 3 i sJ fe 2 TEST CIRCUIT 2 VNo pozzsooeaay Noise ® a pe Sa)! acer METER nv © - 6 o 00 kz TEST CIRCUIT3 RR. £=30cm ead . t OSCILLOSCOPE v " ® © RR. = 20f0g ro (a8) 1999-10-15 13/20

TOSHIBA TA78M05,06,08~10,12,15,18,20,24F VouT - Ta Isc - VIN Cy ee CO er] Vin = 10V z et Tt Tt I tress “itt ttt ty ee ee PT TTT ey] 2 5 ¢ po ae e —<—=- o NY E = ee ee et i | | | Nf I re ee gE TT TN 48D 0 50 100 150, % 10 20 30 40 AMBIENT TEMPERATURE Ta (°C) INPUT VOLTAGE Vin (V) IB - VIN Vout - VIN TTTT ETT] TTTITIII e [| | | rvmse | oT | ee ee ee 5 — f— 4 : Lier oe a 2 8 L e | yt Tb tT es LLIYI_ [I I a & ZEIT rerenose | °F 10 20 30 40 °F 10 20 30 40 INPUT VOLTAGE Vin (V) INPUT VOLTAGE Vin (V) : Pp - Ta RR - louT = freon} THERMAL RESISTANCE [LILI vw = oven e FN Geb 5 mer LIE 1 | On z J -/ 1 =ciw é ravemosr_| | | {II == ail

2 TIN TTT a

5 fe] Fe ee ee es » FEN Pe Fi | z 2 |no wear anu es 3 ie | S| = ee A nt 0 40 80 120 160 200 10 30 50 100 300 500 1000 AMBIENT TEMPERATURE Ta (°C) OUTPUT CURRENT Igyr (mA)

TOSHIBA TA78M05,06,08~10,12,15,18,20,24F RR - f 80; geome LUT TT TT = ot TE Th 2 ame UST UMM TIMING TT BLAINE TIMI TTI St et LTE LI TATE PS E Pe el ze Till AT ET 10 6 100 300 tk 3k 10k «30k = 100k FREQUENCY f (Hz) TTT 8ST TST

TOSHIBA TA78M05,06,08~ 10,12,15,18,20,24F PRECAUTIONS ON APPLICATION (1) In regard to GND, be careful not to apply a negative voltage to the input/output terminal. Further, special care is necessary in case of a voltage boost application. (2) When a surge voltage exceeding maximum rating is applied to the input terminal or when a voltage in excess of the input terminal voltage is applied to the output terminal, the circuit may be destroyed. Specially, in the latter case, great care is necessary. Further, if the input terminal sorts to GND in a state of normal operation, the output terminal voltage becomes higher than the input voltage (GND potential), and the electric charge of a chemical capacitor connected to the output terminal flows into the input side, which may cause the destruction of circuit. In these cases, take such steps as a zener diode and a general silicon diode are connected to the circuit, as shown in the following figure. Sf Output surge and input short protecting diode. vin Lg TA78M x x F = Vout SERIES ) 1S) Input surge protecting diode. 7 |” Vz> Vin (3) | When the input voltage is too high, the power dissipation of three terminal regulator increases because of series regulator, so that the junction temperature rises. In such a case, it is recommended to reduce the power dissipation by inserting the power limiting resistor Rsp in the input terminal, and to reduce the junction temperature as a result. Rep Vint vin © G] TA78M x x F [2 Your lout SERIES | ° The power dissipation Pp of IC is expressed in the following equation. Pp = (Vin’ - Vout) ‘lout + VIN"!B If Vin’ is reduced below the lowest voltage necessary for the IC, the parasitic oscillation will be caused according to circumstances. In determing the resistance value of Rsp, design with margin should be made by making reference to the following equation. Vin = Vint Rsp< 77a SDS “Tour + IB 1999-10-15 16/20

TOSHIBA TA78M05,06,08~ 10,12,15,18,20,24F (4) Connect the input terminal and GND, and the output terminal and GND, by capacitor respectively. The capacitances should be determined experimentally because they depend on prented patterns. In particular, adequate investigation should be made so that there is no problem even at time of high or low temperature. (5) The molded plastic portion of this unit, measuring 5.5mm (L) [seae] of some by 6.5mm (W) by 2.3mm (T), is more compact compared to | m4 ot Tt its equivalents TO-220. on oa The collector fin extends directly out of the main body, and | ] can be soldered directly to the ceramic circuitboard, to | i 4 3 significantly increase the collector power dissipation of the asso18 It © 5 collector. come fA | ci 1 1 For obtaining high reliability on the heat sink design of the esos | anus regulator IC, it is generally required to derate more than 20% Les as) . of maximum junction temperature Tj MAX.). Further, full consideration should be given to the installation of IC to the heat sink. __ _ f APPLICATION CIRCUITS a | Fl ae (1) VOLTAGE BOOST REGULATOR EB a8 (a) Voltage boost by use of zener diode vin © O ta7em x xF OVvour a ye Vout = Vout (ic) + Vz (b) Voltage boost by use of resistor vin GO ta7em x xF OVour “| 8 ‘| Fe Vour = Vou (ic) ( 2) + Role (c) Adjustable output regulator vin © GO ta7em x xF Ovour a <The ETP TA75558P, TA75S558S x + = Ro Vout = Vout (ic) ( +2) 1999-10-15 17/20

TOSHIBA TA78M05,06,08~10,12,15,18,20,24F (2) CURRENT BOOST REGULATOR (a) CURRENT BOOST VOLTAGE REGULATOR Vin © Heat sink is needed for Qy iy G) +[% where, a en Vpe1 —: Vee of external ° ° transistor Qy. Ig MAX : Quiescent current of IC. (b) | SHORT-CIRCUIT PROTECTION vi &, ® +f S where, ‘| | fe Isc : Short-circuit current (3) NEGATIVE REGULATOR PE ee PT rT p: © -VouT (4) POSITIVE AND NEGATIVE REGULATOR LJ si

2 Cty Paar P

LJ Eon, © -VouT (5) CURRENT REGULATOR G) R ‘| == lout 1999-10-15 18/20

TOSHIBA TA78M05,06,08~10,12,15,18,20,24F OUTLINE DRAWING HSIP3-P-2.30B Unit : mm 6.8MAX ~ . 5,240.2 & ocemax ai app CN 0.95MAX i 0.640.15 _|I| : | g 0.6MAX R Weight : 0.36 (Typ.) 9799-10-15 19/20

TOSHIBA TA78M05,06,08~10,12,15,18,20,24F OUTLINE DRAWING HSOP3-P-2.30A Unit : mm 6.8MAX. on Fs O.6MAX. ianint ossois TT TT 4 a ee O.95MAX. oss015__ Jl | o.eMAX. \\_29 | 23 | 1 3 ql 2 E 3 bs] =I all Weight : 0.36g (Typ.) 9899-10-15 20/20