LM7800Series-Terminal Low Current Positive Voltage Regulators

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1 LM00Series-Terminal Low Current Positive oltage Regulators 00000These voltage regulators are monolithic integrated circuits designed as fixed-voltage regulators for a wide variety of applications including local, on-card regulation. These regulators employ internal current limiting, thermal shutdown, and safe-area compensation. With adequate heatsinking they can deliver output currents in excess of.0. lthough designed primarily as a fixed voltage regulator, these devices can be used with external components to obtain adjustable voltages and currents Pin.nput Pin.Ground Pin.Output TO-0 T SUFFX DPK DT SUFFX DPK DT SUFFX Standard pplication Output Current in Excess of.0. No External Components Required. nternal Thermal Overload Protection. nternal Short Circuit Current Limiting. Output Transistor Safe-rea Compensation. Output oltage Offered in % and % Tolerance. vailable in Surface Mount D PK0and 00Standard -Lead Transistor Packages. nput LMXX Output C in* 0. F C O** 00 common ground is required between the input and the s. The input voltage must remain typically above the even during the low point on the input ripple voltage. *C in is required if regulator is located in 0appreciable distance from power supply filter. **C O is not needed for stability; however, it does 00improve transient response. Representative Schematic Diagram NPUT OUTPUT GND P

2 LM00Series-Terminal Low Current Positive oltage Regulators BSOLUTE MXMUM RTNGS OER OPERTNG TEMPERTURE RNGE (unless otherwise noted) Characteristics LM 0 THRU LM 0 LM LM UNT nput voltage 0 Operating free-air, case, or virtual junction temperature 0 to 0 to range Storage temperature range -6 to -6 to C Lead temperature.6 mm (/6 inch) from case for 0 seconds RECOMMENDED OPERTNG CONDTONS PRMETER MN MX UNT LM0 LM06 nput voltage, LM0 LM09. LM0. LM. 0 LM. 0 LM LM0 6 LM 6. 9 LM 0 0 Output current,. Operating virtual junction temperature, T J 0 C P

3 LM00Series-Terminal Low Current Positive oltage Regulators LM0 ELECTRCL CHRCTERSTCS T SPECFED RTUL JUNCTON TEMPERTURE, =0, =0m (unless otherwise noted) PRMETER nput regulation change TEST CONDTONS* = m to, = to 0, P W = to = to = to, f= 0Hz = m to. = 0m tom f= KHz = m f=0hz to 00KHz = = to = m to 0 to 0 to 0 to 0 to 0 to MN.. 6 LM MX UNT m m m/ m LM06 ELECTRCL CHRCTERSTCS T SPECFED RTUL JUNCTON TEMPERTURE, =, =0m (unless otherwise noted) PRMETER nput regulation change TEST CONDTONS* = m to, = to, P W = to = 9 to = 9 to 9, f= 0Hz = m to. = 0m tom f= KHz = m f=0hz to 00KHz = = to = m to 0 to 0 to 0 to 0 to 0 to MN.. 9 LM MX UNT m m m/ m LM0 ELECTRCL CHRCTERSTCS T SPECFED RTUL JUNCTON TEMPERTURE, =, =0m (unless otherwise noted) PRMETER nput regulation change TEST CONDTONS* = m to, = to, P W = to = to =. to., f= 0Hz = m to. = 0m tom f= KHz = m f=0hz to 00KHz = = to = m to P 0 to 0 to 0 to 0 to 0 to MN..6 LM MX UNT m m m/ m

4 LM00Series-Terminal Low Current Positive oltage Regulators LM09 ELECTRCL CHRCTERSTCS T SPECFED RTUL JUNCTON TEMPERTURE, =6, =0m (unless otherwise noted) PRMETER nput regulation change TEST CONDTONS* = m to, =. to, P W =. to = to 9 = to, f= 0Hz = m to. = 0m tom f= KHz = m f=0hz to 00KHz = =. to = m to 0 to 0 to 0 to 0 to 0 to MN.6. LM MX UNT m m m/ m LM0 ELECTRCL CHRCTERSTCS T SPECFED RTUL JUNCTON TEMPERTURE, =, =0m (unless otherwise noted) PRMETER nput regulation change TEST CONDTONS* = m to, =. to, P W =. to = to 0 = to, f= 0Hz = m to. = 0m tom f= KHz = m f=0hz to 00KHz = =. to = m to 0 to 0 to 0 to 0 to 0 to MN LM MX UNT m m m/ m LM ELECTRCL CHRCTERSTCS T SPECFED RTUL JUNCTON TEMPERTURE, =9, =0m (unless otherwise noted) PRMETER nput regulation change TEST CONDTONS* = m to, =. to, P W =. to 0 = 6 to = to, f= 0Hz = m to. = 0m tom f= KHz = m f=0hz to 00KHz = =. to 0 = m to P 0 to 0 to 0 to 0 to 0 to MN.. LM MX UNT m m m/ m

5 LM00Series-Terminal Low Current Positive oltage Regulators LM ELECTRCL CHRCTERSTCS T SPECFED RTUL JUNCTON TEMPERTURE, =, =0m (unless otherwise noted) PRMETER nput regulation change TEST CONDTONS* = m to, =. to 0, P W =. to 0 = 0 to 6 =. to., f= 0Hz = m to. = 0m tom f= KHz = m f=0hz to 00KHz = =. to 0 = m to 0 to 0 to 0 to 0 to 0 to MN.. LM MX UNT m m m/ m LM ELECTRCL CHRCTERSTCS T SPECFED RTUL JUNCTON TEMPERTURE, =, =0m (unless otherwise noted) PRMETER nput regulation change TEST CONDTONS* = m to, = to, P W = to = to 0 = to, f= 0Hz = m to. = 0m tom f= KHz = m f=0hz to 00KHz = = to = m to 0 to 0 to 0 to 0 to 0 to MN.. LM MX UNT m m m/ m LM0 ELECTRCL CHRCTERSTCS T SPECFED RTUL JUNCTON TEMPERTURE, =9, =0m (unless otherwise noted) PRMETER nput regulation change TEST CONDTONS* = m to, = to, P W = to = 6 to = to, f= 0Hz = m to. = 0m tom f= KHz = m f=0hz to 00KHz = = to = m to 0 to 0 to 0 to 0 to 0 to MN 9. 9 LM MX UNT m m m/ m P

6 LM00Series-Terminal Low Current Positive oltage Regulators LM ELECTRCL CHRCTERSTCS T SPECFED RTUL JUNCTON TEMPERTURE, =, =0m (unless otherwise noted) PRMETER nput regulation change = m to, = to, P W = to = 0 to 6 = to, f= 0Hz = m to. TEST CONDTONS* = 0m tom f= KHz f=0hz to 00KHz = to = m = = m to 0 to 0 to 0 to 0 to 0 to MN. LM MX UNT m m m/ m LM ELECTRCL CHRCTERSTCS T SPECFED RTUL JUNCTON TEMPERTURE, =6, =0m (unless otherwise noted) PRMETER nput regulation change = m to, = 0 to 0, P W = 0 to 0 = to 9 = 0 to 0, f= 0Hz = m to. TEST CONDTONS* = 0m tom f= KHz f=0hz to 00KHz = 0 to 0 = m = = m to 0 to 0 to 0 to 0 to 0 to MN.9. LM MX UNT m m m/ m P6

7 LM00Series-Terminal Low Current Positive oltage Regulators * Pulse testing techniques are used to maintain the junction temperature as colse to the ambient temperature as possible. Thermal effects must be taken into account separately. ll characteristics are measured with a 0. F capacitor across the input and a 0. F capacitor across the output. ** This specification applies only for dc power dissipation permitted by absolute maximum ratings. P

8 LM00Series-Terminal Low Current Positive oltage Regulators 0 OUTPUT CURRENT() T = C J T = C J T = -0C J T = 0C J T = C J RR RPPLE REJECTON () 0 0 PRT# in LM0=0 LM06= LM0= LM=9 LM= LM= LM= f=0hz lo=0m in=.0(rms) in-out NPUT/OUPUTOLTGE DFFERENTL() Figure.Peak Output Current as a Function of nput/output Differential oltage O OUTPUT OLTGE() Figure.Ripple Rejection as a Function of Output oltages 0 RR RPPLE REJECTON () 0 0 LMCXX in =.0to O = 0m f = 0Hz T = C O OUTPUT OLTGE().0.9 in=0 lo=.0m f,freouency(khz) Figure.Ripple Rejection as a Function of Frequency T JUNCTON TEMPERTURE (C ) J Figure.Output oltage as a Function of Junction Temperature Z O OUTPUT MPEDNCE(m ) f = 0Hz O = 0m CL = 0 F B QUESCENT CURRENT(m) in=0 0= ll=0m OUTPUT OLTGE() O Figure.Output lmpedance as a Function of Output oltage T JUNCTON TEMPERTURE (C ) J Figure 6.Quiescent Current as a Function of Temperature P

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