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UC2902 Series

20V load share controller, -40°C to 85°C

Manufacturer: Texas Instruments

Catalog(3 parts)

PartSupplier Device PackageOperating TemperatureOperating TemperatureVoltage - SupplyVoltage - SupplyMounting TypePackage / CasePackage / CaseApplicationsCurrent - SupplyPackage / Case
Texas Instruments
UC2902D
Load Share Controller PMIC 8-SOIC
8-SOIC
100 °C
-40 °C
2.700000047683716 V
20 V
Surface Mount
0.003899999894201755 m
8-SOIC
Load Share Controller
0.004000000189989805 A
Texas Instruments
UC2902DG4
Load Share Controller PMIC 8-SOIC
8-SOIC
100 °C
-40 °C
2.700000047683716 V
20 V
Surface Mount
0.003899999894201755 m
8-SOIC
Load Share Controller
0.004000000189989805 A
Texas Instruments
UC2902N
Load Share Controller PMIC 8-PDIP
8-PDIP
100 °C
-40 °C
2.700000047683716 V
20 V
Through Hole
0.007619999814778566 m
8-DIP
Load Share Controller
0.004000000189989805 A
0.007619999814778566 m

Key Features

2.7-V to 20-V Operation8-Pin PackageRequires Minimum Number of External ComponentsCompatible with Existing Power Supply DesignsIncorporating Remote Output Voltage SensinDifferential Share BusPrecision Current Sense Amplifier (40 Gain)UVLO (Undervoltage Lockout) CircuitryUser Programmable Share Loop CompensationAPPLICATIONSParalelled Power Supplies2.7-V to 20-V Operation8-Pin PackageRequires Minimum Number of External ComponentsCompatible with Existing Power Supply DesignsIncorporating Remote Output Voltage SensinDifferential Share BusPrecision Current Sense Amplifier (40 Gain)UVLO (Undervoltage Lockout) CircuitryUser Programmable Share Loop CompensationAPPLICATIONSParalelled Power Supplies

Description

AI
The UC3902 load share controller is an 8-pin device that balances the current drawn from independent, paralleled power supplies. Load sharing is accomplished by adjusting each supplies’ output current to a level proportional to the voltage on a share bus. The master power supply, which is automatically designated as the supply that regulates to the highest voltage, drives the share bus with a voltage proportional to its output current. The UC3902 trims the output voltage of the other paralleled supplies so that they each support their share of the load current. Typically, each supply is designed for the same current level although that is not necessary for use with the UC3902. By appropriately scaling the current sense resistor, supplies with different output current capability can be paralleled with each supply providing the same percentage of their output current capability for a particular load. A differential line is used for the share bus to maximize noise immunity and accommodate different voltage drops in each power converter’s ground return line. Trimming of each converter’s output voltage is accomplished by injecting a small current into the output voltage sense line, which requires a small resistance (typically 20 Ω to 100 Ω) to be inserted. The UC3902 load share controller is an 8-pin device that balances the current drawn from independent, paralleled power supplies. Load sharing is accomplished by adjusting each supplies’ output current to a level proportional to the voltage on a share bus. The master power supply, which is automatically designated as the supply that regulates to the highest voltage, drives the share bus with a voltage proportional to its output current. The UC3902 trims the output voltage of the other paralleled supplies so that they each support their share of the load current. Typically, each supply is designed for the same current level although that is not necessary for use with the UC3902. By appropriately scaling the current sense resistor, supplies with different output current capability can be paralleled with each supply providing the same percentage of their output current capability for a particular load. A differential line is used for the share bus to maximize noise immunity and accommodate different voltage drops in each power converter’s ground return line. Trimming of each converter’s output voltage is accomplished by injecting a small current into the output voltage sense line, which requires a small resistance (typically 20 Ω to 100 Ω) to be inserted.