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STMicroelectronics-L79L05ACUTR Linear Regulators Standard Regulator Neg -5V 0.1A 4-Pin(3+Tab) SOT-89 T/R
Integrated Circuits (ICs)

L79L05ACUTR

Active
STMicroelectronics

FIXED LINEAR VOLTAGE REGULATOR, 7905, 3-TERMINAL, NEGATIVE, -20V TO -8V IN, -5V / 0.1A OUT, SOT-89-3

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STMicroelectronics-L79L05ACUTR Linear Regulators Standard Regulator Neg -5V 0.1A 4-Pin(3+Tab) SOT-89 T/R
Integrated Circuits (ICs)

L79L05ACUTR

Active
STMicroelectronics

FIXED LINEAR VOLTAGE REGULATOR, 7905, 3-TERMINAL, NEGATIVE, -20V TO -8V IN, -5V / 0.1A OUT, SOT-89-3

Technical Specifications

Parameters and characteristics for this part

SpecificationL79L05ACUTR
Current - Output100 mA
Current - Quiescent (Iq)5.5 mA
Current - Supply (Max) [Max]6 mA
Mounting TypeSurface Mount
Number of Regulators1
Operating Temperature [Max]125 °C
Operating Temperature [Min]0 °C
Output ConfigurationNegative
Package / CaseTO-243AA
Protection FeaturesShort Circuit, Over Temperature
PSRR49 dB
Supplier Device PackageSOT-89-3
Voltage - Input (Max) [Max]-30 V
Voltage - Output (Min/Fixed) [Min]-5 V
PartProtection FeaturesNumber of RegulatorsCurrent - Quiescent (Iq)Mounting TypeSupplier Device PackageOperating Temperature [Min]Operating Temperature [Max]PSRRVoltage - Input (Max) [Max]Output ConfigurationCurrent - Supply (Max) [Max]Current - OutputVoltage - Output (Min/Fixed)Package / CaseVoltage - Output (Min/Fixed) [Min]Package / CasePackage / CasePackage / Case
SOT-89 SERIES
STMicroelectronics
Over Temperature
Short Circuit
1
6 mA
Surface Mount
SOT-89-3
0 °C
125 °C
42 dB
-35 V
Negative
6.5 mA
100 mA
-12 V
TO-243AA
L79L08ACZ-AP
STMicroelectronics
Over Temperature
Short Circuit
1
5.5 mA
Through Hole
TO-92-3
0 °C
125 °C
45 dB
-30 V
Negative
6 mA
100 mA
TO-226-3
TO-92-3 (TO-226AA) Formed Leads
-8 V
L79L05ABUTR
STMicroelectronics
Over Temperature
Short Circuit
1
5.5 mA
Surface Mount
SOT-89-3
-40 C
125 °C
49 dB
-30 V
Negative
6 mA
100 mA
TO-243AA
-5 V
8-SOIC
STMicroelectronics
Over Temperature
Short Circuit
1
5.5 mA
Surface Mount
8-SOIC
-40 C
125 °C
49 dB
-30 V
Negative
6 mA
100 mA
8-SOIC
-5 V
0.154 in
3.9 mm
STMicroelectronics-L79L05ACUTR Linear Regulators Standard Regulator Neg -5V 0.1A 4-Pin(3+Tab) SOT-89 T/R
STMicroelectronics
Over Temperature
Short Circuit
1
5.5 mA
Surface Mount
SOT-89-3
0 °C
125 °C
49 dB
-30 V
Negative
6 mA
100 mA
TO-243AA
-5 V
8-SOIC
STMicroelectronics
Over Temperature
Short Circuit
1
6 mA
Surface Mount
8-SOIC
0 °C
125 °C
39 dB
-35 V
Negative
6.5 mA
100 mA
-15 V
8-SOIC
0.154 in
3.9 mm
STMICROELECTRONICS M95128-DRMN3TP/K
STMicroelectronics
Over Temperature
Short Circuit
1
6 mA
Surface Mount
8-SOIC
0 °C
125 °C
42 dB
-35 V
Negative
6.5 mA
100 mA
-12 V
8-SOIC
0.154 in
3.9 mm
L79L05ACZ
STMicroelectronics
Over Temperature
Short Circuit
1
5.5 mA
Through Hole
TO-92-3
0 °C
125 °C
49 dB
-30 V
Negative
6 mA
100 mA
TO-226-3
TO-92-3
-5 V
TO-226AA
L79L15ACUTR
STMicroelectronics
Over Temperature
Short Circuit
1
6 mA
Surface Mount
SOT-89-3
0 °C
125 °C
39 dB
-35 V
Negative
6.5 mA
100 mA
-15 V
TO-243AA
TO-92-3(StandardBody),TO-226_bentlead
STMicroelectronics
Over Temperature
Short Circuit
1
5.5 mA
Through Hole
TO-92-3
-40 C
125 °C
49 dB
-30 V
Negative
6 mA
100 mA
TO-226-3
TO-92-3 (TO-226AA) Formed Leads
-5 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyN/A 13980$ 0.44
NewarkEach (Supplied on Cut Tape) 1$ 0.44
10$ 0.28
25$ 0.27

Description

General part information

L79L Series

The L79L series of three-terminal negative regulators employ internal current limiting and thermal shutdown, making them essentially indestructible. If adequate heat-sink is provided, they can deliver up to 100 mA output current. They are intended as fixed voltage regulators in a wide range of applications including local or 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. The L79L series used as Zener diode/resistor combination replacement, offers an effective output impedance improvement of typically two orders of magnitude, along with lower quiescent current and lower noise.