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UCC3889 Series

Off-line power supply controller, 0C to 70C

Manufacturer: Texas Instruments

Catalog(3 parts)

PartVoltage - Start UpInternal Switch(s)Voltage - Supply (Vcc/Vdd)Voltage - Supply (Vcc/Vdd)Supplier Device PackageFault ProtectionTopologyOperating TemperatureOperating TemperatureMounting TypeOutput IsolationPackage / CasePackage / CasePackage / Case
Texas Instruments
UCC3889DTR
Converter Offline Flyback Topology 8-SOIC
8.399999618530273 V
6.300000190734863 V
9.300000190734863 V
8-SOIC
Short Circuit
Flyback
70 °C
0 °C
Surface Mount
Non-Isolated
0.003899999894201755 m
8-SOIC
Texas Instruments
UCC3889DG4
Converter Offline Flyback Topology 8-SOIC
8.399999618530273 V
6.300000190734863 V
9.300000190734863 V
8-SOIC
Short Circuit
Flyback
70 °C
0 °C
Surface Mount
Non-Isolated
0.003899999894201755 m
8-SOIC
Texas Instruments
UCC3889N
Converter Offline Flyback Topology 8-PDIP
8.399999618530273 V
6.300000190734863 V
9.300000190734863 V
8-PDIP
Short Circuit
Flyback
70 °C
0 °C
Through Hole
Non-Isolated
0.007619999814778566 m
8-DIP
0.007619999814778566 m

Key Features

Transformerless Off-line ApplicationsIdeal Primary-side Bias SupplyEfficient BiCMOS DesignWide Input RangeFixed or Adjustable Low Voltage OutputUses Low Cost SMD InductorsShort Circuit ProtectedOptional Isolation CapabilityTransformerless Off-line ApplicationsIdeal Primary-side Bias SupplyEfficient BiCMOS DesignWide Input RangeFixed or Adjustable Low Voltage OutputUses Low Cost SMD InductorsShort Circuit ProtectedOptional Isolation Capability

Description

AI
The UCC1889 controller is optimized for use as an off-line, low power, low voltage, regulated bias supply. The unique circuit topology utilized in this device can be visualized as two cascaded flyback converters, each operating in the discontinuous mode, and both driven from a single external power switch. The significant benefit of this approach is the ability to achieve voltage conversion ratios of 400V to 12V with no transformer and low internal losses. The control algorithm utilized by the UCC1889 is to force the switch on time to be inversely proportional to the input line voltage while the switch off time is made inversely proportional to the output voltage. This action is automatically controlled by an internal feedback loop and reference. The cascaded configuration allows a voltage conversion from 400V to 12V to be achieved with a switch duty cycle greater than 10%. This topology also offers inherent short circuit protection since as the output voltage falls to zero, the switch off time approaches infinity. The output voltage can be easily set to 12V or 18V. Moreover, it can be programmed for other output voltages less than 18V with a few additional components. An isolated version can be achieved with this topology as described further in Unitrode Application Note U-149. The UCC1889 controller is optimized for use as an off-line, low power, low voltage, regulated bias supply. The unique circuit topology utilized in this device can be visualized as two cascaded flyback converters, each operating in the discontinuous mode, and both driven from a single external power switch. The significant benefit of this approach is the ability to achieve voltage conversion ratios of 400V to 12V with no transformer and low internal losses. The control algorithm utilized by the UCC1889 is to force the switch on time to be inversely proportional to the input line voltage while the switch off time is made inversely proportional to the output voltage. This action is automatically controlled by an internal feedback loop and reference. The cascaded configuration allows a voltage conversion from 400V to 12V to be achieved with a switch duty cycle greater than 10%. This topology also offers inherent short circuit protection since as the output voltage falls to zero, the switch off time approaches infinity. The output voltage can be easily set to 12V or 18V. Moreover, it can be programmed for other output voltages less than 18V with a few additional components. An isolated version can be achieved with this topology as described further in Unitrode Application Note U-149.