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Home ›  LL6 > L79L05ACD-L79L05ACZ-L79L08ACD-L79L08ACZ-L79L12ACD-L79L12ACU-L79L12ACZ,NEGATIVE VOLTAGE REGULATORS
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L79L05ACDSTMN/a10000avaiNEGATIVE VOLTAGE REGULATORS
L79L05ACDST,STN/a10000avaiNEGATIVE VOLTAGE REGULATORS
L79L05ACDSTN/a1950avaiNEGATIVE VOLTAGE REGULATORS
L79L05ACZSTN/a2500avaiNEGATIVE VOLTAGE REGULATORS
L79L08ACDSTN/a491avaiNEGATIVE VOLTAGE REGULATORS
L79L08ACZSTN/a207avaiNEGATIVE VOLTAGE REGULATORS
L79L12ACDSTN/a192avaiNEGATIVE VOLTAGE REGULATORS
L79L12ACUSTN/a1436avaiNEGATIVE VOLTAGE REGULATORS
L79L12ACZSTN/a48900avaiNEGATIVE VOLTAGE REGULATORS


L79L12ACZ ,NEGATIVE VOLTAGE REGULATORSELECTRICAL CHARACTERISTICS OF L79L05 (refer to the test circuits, T = 0 to 125°C, V = -10V,J II =40 ..
L79L12ACZ-AP ,NEGATIVE VOLTAGE REGULATORSELECTRICAL CHARACTERISTICS OF L79L05 (refer to the test circuits, T = 0 to 125°C, V = -10V,J II =40 ..
L79L15ABD13TR ,NEGATIVE VOLTAGE REGULATORSELECTRICAL CHARACTERISTICS OF L79L06 (refer to the test circuits, T = 0 to 125°C, V = -12V,J II =40 ..
L79L15ACD13TR ,NEGATIVE VOLTAGE REGULATORSL79L00SERIESNEGATIVE VOLTAGE REGULATORS■ OUTPUT CURRENT UP TO 100 mA■ OUTPUT VOLTAGES OF -5; -6; -8 ..
L79M05T ,-5 to -12V 0.5A 3-Pin Voltage RegulatorsOperating Characteristics at Ta= 25°C,V1N = - 10V,IoUT= 350mA,Cm = 2pF,Cour=1pFmin typ max unitOutp ..
L79M10T ,-5 to -12V 0.5A 3-Pin Voltage RegulatorsOperating Characteristics at Ta = 25°C,V1N = - 11V,IOUT= 350mA,Cm = 2pF,COUT= lpFmin typ max unitOu ..
LC6543F ,CMOS LSI SINGLE-CHIP 4-BIT MICROCOMPUTER FOR SMALL-SCALE CONTROL-ORIENTED APPLICATIONSFeatures1) CMOS technology for a low-power operation (with instruction-controlled standby function) ..
LC6543F ,CMOS LSI SINGLE-CHIP 4-BIT MICROCOMPUTER FOR SMALL-SCALE CONTROL-ORIENTED APPLICATIONSOrdering number: EN 4364AOvervigwSINGLE-CHH‘3 4-Bl'i' MICROCOMPUTER FORMN543N/F/1.,, 6546N/F/L .CMO ..
LC6543H ,CMOS LSI SINGLE-CHIP 4-BIT MICROCOMPUTERS FOR SMALL-SCALE CONTROL-ORIENTED APPLICATIONSFeatures1) CMOS technology for Iow-power operation (with instruction-gon2) ROM/RAML66543C/H ROM; 2K ..
LC6543N ,CMOS LSI SINGLE-CHIP 4-BIT MICROCOMPUTER FOR SMALL-SCALE CONTROL-ORIENTED APPLICATIONSFeatures1) CMOS technology for a low-power operation (with instruction-controlled standby function) ..
LC6546H ,CMOS LSI SINGLE-CHIP 4-BIT MICROCOMPUTER FOR SMALL-SCALE CONTROL-ORIENTED APPLICATIONSFeatures1) CMOS technology for Iow-power operation (with instruction-gon2) ROM/RAML66543C/H ROM; 2K ..
LC6546N ,CMOS LSI SINGLE-CHIP 4-BIT MICROCOMPUTER FOR SMALL-SCALE CONTROL-ORIENTED APPLICATIONSFeatures1) CMOS technology for a low-power operation (with instruction-controlled standby function) ..


L79L05ACD-L79L05ACZ-L79L08ACD-L79L08ACZ-L79L12ACD-L79L12ACU-L79L12ACZ
NEGATIVE VOLTAGE REGULATORS
1/15February 2003 OUTPUT CURRENT UP TO 100 mA OUTPUT VOLTAGES OF-5;-6; -8;-9; -12;
-15V THERMAL OVERLOAD PROTECTION SHORT CIRCUIT PROTECTION NO EXTERNAL COMPONENTS ARE
REQUIRED AVAILABLE INEITHER± 5% (AC) OR± 10%
(C) SELECTION
DESCRIPTION

The L79L00 series of three-terminal positive
regulators employ internal current limiting and
thermal shutdown, making them essentially
indestructible.If adequate heat-sinkis provided,
they can deliverupto 100 mA output current.
They are intendedas fixed voltage regulatorsina
wide range of applications including local or
on-card regulation for eliminationof 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.
The L79L00 series used as Zener diode/resistor
combination replacement, offers an effective
output impedance improvementof typically two
ordersof magnitude, along with lower quiescent
current and lower noise.
L79L00
SERIES

NEGATIVE VOLTAGE REGULATORS
SCHEMATIC DIAGRAM
L79L00 SERIES
2/15
ABSOLUTE MAXIMUM RATINGS

(*) Our SO-8 package usedfor Voltage Regulatorsis modified internallyto have pins2,3,6 and7 electrically communedtothedie attach
flag. This particular frame decreasesthe total thermal resistanceofthe packageand increasesits abilityto dissipate power whenan appro-
priate area ofcopperonthe printed circuit boardis available forheat-sinking.The external dimensionsarethe same asforthestandardSO-8.
THERMAL DATA

(*) Considering6cm2of copper Board heat-sink.
CONNECTION DIAGRAM
(top view)
L79L00 SERIES
3/15
ORDERING CODES
TEST CIRCUITS
L79L00 SERIES
4/15
ELECTRICAL CHARACTERISTICS OF L79L05
(referto the test circuits,TJ=0to 125°C,VI= -10V, =40 mA,CI =0.33 μF, CO= 0.1 μF unless otherwise specified).
ELECTRICAL CHARACTERISTICS OF L79L06
(referto the test circuits,TJ=0to 125°C,VI= -12V, =40 mA,CI =0.33 μF, CO= 0.1 μF unless otherwise specified).
L79L00 SERIES
5/15
ELECTRICAL CHARACTERISTICS OF L79L08
(referto the test circuits,TJ=0to 125°C,VI= -14V, =40 mA,CI =0.33 μF, CO= 0.1 μF unless otherwise specified).
ELECTRICAL CHARACTERISTICS OF L79L09
(referto the test circuits,TJ=0to 125°C,VI= -15V, =40 mA,CI =0.33 μF, CO= 0.1 μF unless otherwise specified).
L79L00 SERIES
6/15
ELECTRICAL CHARACTERISTICS OF L79L12
(referto the test circuits,TJ=0to 125°C,VI= -19V, =40 mA,CI =0.33 μF, CO= 0.1 μF unless otherwise specified).
ELECTRICAL CHARACTERISTICS OF L79L15
(referto the test circuits,TJ=0to 125°C,VI= -23V, =40 mA,CI =0.33 μF, CO= 0.1 μF unless otherwise specified).
L79L00 SERIES
7/15
ELECTRICAL CHARACTERISTICS OF L79L05AB AND L79L05AC
(referto the test circuits,VI= -10V, =40 mA,CI =0.33 μF, CO =0.1 μF,TJ=0to 125°C for L79L05AC,TJ= -40to 125°Cfor L79L05AB,
unless otherwise specified).
ELECTRICAL CHARACTERISTICS OF L79L06AB AND L79L06AC
(referto the test circuits,VI= -12V, =40 mA,CI =0.33 μF, CO =0.1 μF,TJ=0to 125°C for L79L06AC,TJ= -40to 125°Cfor L79L06AB,
unless otherwise specified).
L79L00 SERIES
8/15
ELECTRICAL CHARACTERISTICS OF L79L08AB AND L79L08AC
(referto the test circuits,VI= -14V, =40 mA,CI =0.33 μF, CO =0.1 μF,TJ=0to 125°C for L79L08AC,TJ= -40to 125°Cfor L79L08AB,
unless otherwise specified).
ELECTRICAL CHARACTERISTICS OF L79L09AB AND L79L09AC
(referto the test circuits,VI= -15V,O =40 mA,CI =0.33 μF,CO =0.1 μF,TJ=0to 125°C for L79L09AC,TJ= -40to 125°Cfor L79L09AB,
unless otherwise specified).
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