3-TERMINAL 0.1A NEGATIVE VOLTAGE REGULATOR

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1 3-TERMINAL A NEGATIE OLTAGE REGULATOR FEATURES Output Current Up to 1 No External Components Internal Thermal Overload Protection Internal Short-Circuit Limiting Output oltage of 5, 6, 8, 9, 12, 15, 18 and 24 Moisture Sensitivity Level 3 PKG DESCRIPTION This series of fixed-voltage monolithic 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. In addition, they can be used with power-pass elements to make high current voltage regulators. Each of these regulators can deliver up to 1 of output current. The internal limiting and thermal shutdown features of these regulators make them essentially immune to overload. When used as a replacement for a zener diode-resistor combination, an effective improvement in output impedance can be obtained together with lower-bias current. SOT-89 PKG ORDERING INFORMATION Device Package (Bulk) TA (Taping) F SOT-89 XX : Output oltage = 5, 6, 8, 9, 12, 15, 18, 24 Absolute Maximum Ratings CHARACTERISTIC SYMBOL MIN. MAX. UNIT LM79L5 ~ LM79L Input oltage LM79L12 ~ LM79L LM79L IN Maximum Power Dissipation at T A = 25 C / P DMax -.77 W Thermal Resistance Junction-To-Ambient / θ JA /W Lead Temperature (Soldering, 1 sec) T SOL - 26 Storage Temperature Range T STG Operating Junction Temperature Range T JOPR 15 Oct Rev HTC

2 3-TERMINAL A NEGATIE OLTAGE REGULATOR Recommended Operating Conditions Input oltage CHARACTERISTIC SYMBOL MIN. MAX. UNIT LM79L LM79L LM79L LM79L LM79L LM79L LM79L LM79L Output Current Io - 1 Operating irtual Junction Temperature T J 125 IN Ordering Information Package Order No. Description Supplied As Status 5. LM79L5 A, Negative Bulk Active LM79L5TA A, Negative Taping Active SOT-89 LM79L5F A, Negative Reel Active 6. LM79L6 A, Negative Bulk Active LM79L6TA A, Negative Taping Active SOT-89 LM79L6F A, Negative Reel Active 8. LM79L8 A, Negative Bulk Active LM79L8TA A, Negative Taping Active SOT-89 LM79L8F A, Negative Reel Active 9. LM79L9 A, Negative Bulk Active LM79L9TA A, Negative Taping Active SOT-89 LM79L9F A, Negative Reel Active 12 LM79L12 A, Negative Bulk Active LM79L12TA A, Negative Taping Active SOT-89 LM79L12F A, Negative Reel Active 15 LM79L15 A, Negative Bulk Active LM79L15TA A, Negative Taping Active SOT-89 LM79L15F A, Negative Reel Active Oct Rev HTC

3 3-TERMINAL A NEGATIE OLTAGE REGULATOR Ordering Information (Continued) Package Order No. Description Supplied As Status 18 LM79L18 A, Negative Bulk Active LM79L18TA A, Negative Taping Active SOT-89 LM79L18F A, Negative Reel Active 24 LM79L24 A, Negative Bulk Active LM79L24TA A, Negative Taping Active SOT-89 LM79L24F A, Negative Reel Active LM 79L XX Package Type Blank TA F : (Bulk) : (Taping) : SOT-89 Output oltage () : 5 / 6 / 8 / 9 / 12 / 15 / 18 / 24 Root Name Product Code Oct Rev HTC

4 3-TERMINAL A NEGATIE OLTAGE REGULATOR PIN CONFIGURATION SOT-89 PIN DESCRIPTION Pin No. Name / SOT-89 3 LEAD Function 1 GND Ground 2 IN Input oltage 3 Output oltage TYPICAL APPLICATION INPUT 2 3 (Note 1) PUT.33uF uf Note 1. To specify an output voltage, substitute voltage for "XX". Note 2. Bypass capacitors are recommended for optimum stability and transient response and should be located as close as possible to the regulators. Oct Rev HTC

5 3-TERMINAL A NEGATIE OLTAGE REGULATOR ELECTRICAL CHARACTERISTICS LM79L5 (At specified virtual junction temperature, IN = -1, Io = 4 (Unless otherwise noted) Output oltage Change Δ LINE Δ LOAD Io 4-7 IN 2 ~ Io IN IN Io Io IN -2 ~ 1 Io 4 1 Output Noise oltage N 1Hz f 1kHz 42 u -8 IN -18, db Dropout oltage D 1.7 LM79L6 (At specified virtual junction temperature, IN = -11, Io = 4 (Unless otherwise noted) Output oltage Change Δ LINE Δ LOAD Io 4-8 IN -21 ~ Io IN IN Io Io IN -21 ~ 1 Io 4 1 Output Noise oltage N 1Hz f 1kHz 5 u -9 IN -19, db Dropout oltage D 1.7 Oct Rev HTC

6 3-TERMINAL A NEGATIE OLTAGE REGULATOR LM79L8 (At specified virtual junction temperature, IN = -14, Io = 4 (Unless otherwise noted) Output oltage Change Δ LINE Δ LOAD Io IN -23 ~ Io IN IN Io Io IN -23 ~ 1 Io 4 1 Output Noise oltage N 1Hz f 1kHz 6 u -12 IN -23, db Dropout oltage D 1.7 LM79L9 (At specified virtual junction temperature, IN = -15, Io = 4 (Unless otherwise noted) Output oltage Change Δ LINE Δ LOAD Io 4-11 IN -24 ~ Io IN IN Io Io IN -24 ~ 1 Io 4 1 Output Noise oltage N 1Hz f 1kHz 64 u -8 IN -18, db Dropout oltage D 1.7 Oct Rev HTC

7 3-TERMINAL A NEGATIE OLTAGE REGULATOR LM79L12 (At specified virtual junction temperature, IN = -19, Io = 4 (Unless otherwise noted) Output oltage Change Δ LINE Δ LOAD Io IN -27 ~ Io IN IN Io Io IN -27 ~ 1 Io 4 1 Output Noise oltage N 1Hz f 1kHz 7 u -15 IN -25, db Dropout oltage D 1.7 LM79L15 (At specified virtual junction temperature, IN = -23, Io = 4 (Unless otherwise noted) Output oltage Change Δ LINE Δ LOAD Io IN -3 ~ Io IN IN Io Io IN -3 ~ 1 Io 4 1 Output Noise oltage N 1Hz f 1kHz 82 u IN -28.5, db Dropout oltage D 1.7 Oct Rev HTC

8 3-TERMINAL A NEGATIE OLTAGE REGULATOR LM79L18 (At specified virtual junction temperature, IN = -26, Io = 4 (Unless otherwise noted) Output oltage Change Δ LINE Δ LOAD Io IN -33 ~ Io IN IN Io Io IN -33 ~ 1 Io 4 1 Output Noise oltage N 1Hz f 1kHz 82 u -23 IN -33, db Dropout oltage D 1.7 LM79L24 (At specified virtual junction temperature, IN = -32, Io = 4 (Unless otherwise noted) Output oltage Change Δ LINE Δ LOAD Io 4-27 IN -38 ~ Io IN IN Io Io IN -38 ~ 1 Io 4 1 Output Noise oltage N 1Hz f 1kHz 82 u -29 IN -35, 3 33 db Dropout oltage D 1.7 Oct Rev HTC

9 3-TERMINAL A NEGATIE OLTAGE REGULATOR Note 1. Pulse testing techniques are used to 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.33uf capacitor across the input and a uf capacitor across the output. Note 2. This specification applies only for DC power dissipation permitted by absolute maximum ratings. Oct Rev HTC

10 PUT OLTAGE () PUT OLTAGE () QUIESCENT CUENT () MAX POWER DISSIPATION (W DROP OLTAGE IN - () 3-TERMINAL A NEGATIE OLTAGE REGULATOR TYPICAL OPERATING CHARACTERISTICS Iout = 1 Iout = 4 Iout = AMBIENT TEMPERATURE TA( C) Power Dissipation vs. Ambient Temperature, AMBIENT TEMPERATURE TA ( C ) Dropout oltage vs. Ambient Temperature Iout=1 Iout=4 Iout= INPUT OLTAGE () -7-8 Output oltage vs. Input oltage INPUT OLTAGE IN () Quiescent Current vs. Input oltage TA = 25 C TA = 11 C PUT CUENT I () Output oltage vs. Output Current Oct Rev HTC

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