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MC79L05 Series

100-mA, negative linear voltage regulator

Manufacturer: Texas Instruments

Catalog(7 parts)

PartMounting TypeOutput ConfigurationCurrent - OutputOperating TemperatureOperating TemperaturePackage / CasePackage / CaseVoltage Dropout (Max)Supplier Device PackagePSRRVoltage - Input (Max)Number of RegulatorsVoltage - Output (Min/Fixed)Output Type
Texas Instruments
MC79L05ACD
Linear Voltage Regulator IC Negative Fixed 1 Output 100mA 8-SOIC
Surface Mount
Negative
0.10000000149011612 A
0 °C
125 °C
0.003899999894201755 m
8-SOIC
1.7000000476837158 V
8-SOIC
49 ul
-20 V
1 ul
-5 V
27.030000686645508 °C/W
Texas Instruments
MC79L05ACLPME3
Linear Voltage Regulator IC Negative Fixed 1 Output 100mA TO-92-3
Through Hole
Negative
0.10000000149011612 A
0 °C
125 °C
TO-226-3, TO-92-3 (TO-226AA) Formed Leads
1.7000000476837158 V
TO-92-3
49 ul
-20 V
1 ul
-5 V
27.030000686645508 °C/W
Texas Instruments
MC79L05ACLPM
Linear Voltage Regulator IC Negative Fixed 1 Output 100mA TO-92-3
Through Hole
Negative
0.10000000149011612 A
0 °C
125 °C
TO-226-3, TO-92-3 (TO-226AA) Formed Leads
1.7000000476837158 V
TO-92-3
49 ul
-20 V
1 ul
-5 V
27.030000686645508 °C/W
Texas Instruments
MC79L05ACDE4
Linear Voltage Regulator IC Negative Fixed 1 Output 100mA 8-SOIC
Surface Mount
Negative
0.10000000149011612 A
0 °C
125 °C
0.003899999894201755 m
8-SOIC
1.7000000476837158 V
8-SOIC
49 ul
-20 V
1 ul
-5 V
27.030000686645508 °C/W
Texas Instruments
MC79L05ACLPRE3
Linear Voltage Regulator IC Negative Fixed 1 Output 100mA TO-92-3
Through Hole
Negative
0.10000000149011612 A
0 °C
125 °C
TO-226-3, TO-92-3 (TO-226AA) Formed Leads
1.7000000476837158 V
TO-92-3
49 ul
-20 V
1 ul
-5 V
27.030000686645508 °C/W
Texas Instruments
MC79L05ACDR
Linear Voltage Regulator IC Negative Fixed 1 Output 100mA 8-SOIC
Surface Mount
Negative
0.10000000149011612 A
0 °C
125 °C
0.003899999894201755 m
8-SOIC
1.7000000476837158 V
8-SOIC
49 ul
-20 V
1 ul
-5 V
27.030000686645508 °C/W
Texas Instruments
MC79L05ACDRG4
Linear Voltage Regulator IC Negative Fixed 1 Output 100mA 8-SOIC
Surface Mount
Negative
0.10000000149011612 A
0 °C
125 °C
0.003899999894201755 m
8-SOIC
1.7000000476837158 V
8-SOIC
49 ul
-20 V
1 ul
-5 V
27.030000686645508 °C/W

Key Features

3-Terminal RegulatorsOutput Current up to 100 mANo External Components RequiredInternal Thermal-Overload ProtectionInternal Short-Circuit Current LimitingDirect Replacement for Industry-Standard MC79L00 SeriesAvailable in 5% or 10% Selections3-Terminal RegulatorsOutput Current up to 100 mANo External Components RequiredInternal Thermal-Overload ProtectionInternal Short-Circuit Current LimitingDirect Replacement for Industry-Standard MC79L00 SeriesAvailable in 5% or 10% Selections

Description

AI
This series of fixed negative-voltage integrated-circuit voltage regulators is designed for a wide range of applications. These include on-card regulation for elimination of noise and distribution problems associated with single-point regulation. In addition, they can be used to control series pass elements to make high-current voltage-regulator circuits. One of these regulators can deliver up to 100 mA of output current. The internal current-limiting and thermal-shutdown features essentially make the regulators immune to overload. When used as a replacement for a Zener-diode and resistor combination, these devices can provide an effective improvement in output impedance of two orders of magnitude, with lower bias current. This series of fixed negative-voltage integrated-circuit voltage regulators is designed for a wide range of applications. These include on-card regulation for elimination of noise and distribution problems associated with single-point regulation. In addition, they can be used to control series pass elements to make high-current voltage-regulator circuits. One of these regulators can deliver up to 100 mA of output current. The internal current-limiting and thermal-shutdown features essentially make the regulators immune to overload. When used as a replacement for a Zener-diode and resistor combination, these devices can provide an effective improvement in output impedance of two orders of magnitude, with lower bias current.