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TPS54360BDDA - 8-HSOP

TPS54360BDDA

Active
Texas Instruments

60-V INPUT, 3.5-A, STEP-DOWN DC/DC CONVERTER WITH ECO-MODE™ 8-SO POWERPAD -40 TO 150

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TPS54360BDDA - 8-HSOP

TPS54360BDDA

Active
Texas Instruments

60-V INPUT, 3.5-A, STEP-DOWN DC/DC CONVERTER WITH ECO-MODE™ 8-SO POWERPAD -40 TO 150

Technical Specifications

Parameters and characteristics commom to parts in this series

SpecificationTPS54360BDDATPS54360B Series
Current - Output3.5 A3.5 A
Frequency - Switching [Max]2.5 MHz2.5 MHz
Frequency - Switching [Min]100 kHz100 kHz
FunctionStep-DownStep-Down
Mounting TypeSurface MountSurface Mount
Number of Outputs11
Operating Temperature [Max]150 C150 C
Operating Temperature [Min]-40 °C-40 °C
Output ConfigurationPositivePositive
Output TypeAdjustableAdjustable
Package / Case8-PowerSOIC8-PowerSOIC
Package / Case [custom]3.9 mm3.9 mm
Package / Case [custom]0.154 in0.154 in
Supplier Device Package8-SO PowerPad8-SO PowerPad
Synchronous RectifierFalseFalse
TopologyBuckBuck, Split Rail, Buck
Voltage - Input (Max) [Max]60 V60 V
Voltage - Input (Min) [Min]4.5 V4.5 V
Voltage - Output (Max) [Max]58.8 V58.8 V
Voltage - Output (Min/Fixed)0.8 V0.8 V

Pricing

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

TPS54360B Series

60-V input, 3.5-A, step-down DC/DC converter with Eco-Mode™

PartVoltage - Output (Min/Fixed)Supplier Device PackageOutput TypeFrequency - Switching [Min]Frequency - Switching [Max]Voltage - Input (Max) [Max]Voltage - Input (Min) [Min]Current - OutputOperating Temperature [Max]Operating Temperature [Min]Voltage - Output (Max) [Max]Mounting TypeFunctionPackage / Case [custom]Package / CasePackage / Case [custom]Output ConfigurationSynchronous RectifierTopologyNumber of Outputs
Texas Instruments
TPS54360BDDAR
The TPS54360B is a 60-V, 3.5-A, step-down regulator with an integrated high side MOSFET. Current mode control provides simple external compensation and flexible component selection. A low ripple pulse skip mode reduces the no-load supply current to 146 µA. Shutdown supply current is reduced to 2 µA when the enable pin is pulled low. Undervoltage lockout is internally set at 4.3 V but can be increased using the enable pin. The output voltage start-up ramp is internally controlled to provide a controlled start-up and eliminate overshoot. A wide switching-frequency range allows either efficiency or external component size to be optimized. Frequency foldback and thermal shutdown protect internal and external components during an overload condition. The TPS54360B is available in an 8-pin thermally enhanced HSOIC PowerPAD™ package. The TPS54360B is a 60-V, 3.5-A, step-down regulator with an integrated high side MOSFET. Current mode control provides simple external compensation and flexible component selection. A low ripple pulse skip mode reduces the no-load supply current to 146 µA. Shutdown supply current is reduced to 2 µA when the enable pin is pulled low. Undervoltage lockout is internally set at 4.3 V but can be increased using the enable pin. The output voltage start-up ramp is internally controlled to provide a controlled start-up and eliminate overshoot. A wide switching-frequency range allows either efficiency or external component size to be optimized. Frequency foldback and thermal shutdown protect internal and external components during an overload condition. The TPS54360B is available in an 8-pin thermally enhanced HSOIC PowerPAD™ package.
0.8 V
8-SO PowerPad
Adjustable
100 kHz
2.5 MHz
60 V
4.5 V
3.5 A
150 C
-40 °C
58.8 V
Surface Mount
Step-Down
3.9 mm
8-PowerSOIC
0.154 in
Positive
Buck, Split Rail
1
Texas Instruments
TPS54360BDDA
The TPS54360B is a 60-V, 3.5-A, step-down regulator with an integrated high side MOSFET. Current mode control provides simple external compensation and flexible component selection. A low ripple pulse skip mode reduces the no-load supply current to 146 µA. Shutdown supply current is reduced to 2 µA when the enable pin is pulled low. Undervoltage lockout is internally set at 4.3 V but can be increased using the enable pin. The output voltage start-up ramp is internally controlled to provide a controlled start-up and eliminate overshoot. A wide switching-frequency range allows either efficiency or external component size to be optimized. Frequency foldback and thermal shutdown protect internal and external components during an overload condition. The TPS54360B is available in an 8-pin thermally enhanced HSOIC PowerPAD™ package. The TPS54360B is a 60-V, 3.5-A, step-down regulator with an integrated high side MOSFET. Current mode control provides simple external compensation and flexible component selection. A low ripple pulse skip mode reduces the no-load supply current to 146 µA. Shutdown supply current is reduced to 2 µA when the enable pin is pulled low. Undervoltage lockout is internally set at 4.3 V but can be increased using the enable pin. The output voltage start-up ramp is internally controlled to provide a controlled start-up and eliminate overshoot. A wide switching-frequency range allows either efficiency or external component size to be optimized. Frequency foldback and thermal shutdown protect internal and external components during an overload condition. The TPS54360B is available in an 8-pin thermally enhanced HSOIC PowerPAD™ package.
0.8 V
8-SO PowerPad
Adjustable
100 kHz
2.5 MHz
60 V
4.5 V
3.5 A
150 C
-40 °C
58.8 V
Surface Mount
Step-Down
3.9 mm
8-PowerSOIC
0.154 in
Positive
Buck
1

Description

General part information

TPS54360B Series

The TPS54360B is a 60-V, 3.5-A, step-down regulator with an integrated high side MOSFET. Current mode control provides simple external compensation and flexible component selection. A low ripple pulse skip mode reduces the no-load supply current to 146 µA. Shutdown supply current is reduced to 2 µA when the enable pin is pulled low.

Undervoltage lockout is internally set at 4.3 V but can be increased using the enable pin. The output voltage start-up ramp is internally controlled to provide a controlled start-up and eliminate overshoot.

A wide switching-frequency range allows either efficiency or external component size to be optimized. Frequency foldback and thermal shutdown protect internal and external components during an overload condition.