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Analog Devices LT3430EFE#PBF — Memory (DRAM / SRAM / Flash / EEPROM)

Analog Devices LT3430EFE#PBF Step-Down Regulator, 3A

MPNLT3430EFE#PBF
End of Life

Analog Devices LT3430EFE#PBF, Step-Down regulator, Buck / SEPIC topology, Adjustable output, 3A output, 200kHz switching, 5.5V to 60V input, 0°C to 125°C junction, 16-TSSOP exposed pad, Tube.

$13.93Ref. price · indicative, final on quote
Packaging16-TSSOP (0.173", 4.40mm Width) Exposed Pad
RoHSROHS3 Compliant
Sourced new & surplus through independent channelsAuthenticity-screened · ESD-safe packingListing updated Aug 2026

Specifications

LT3430EFE#PBF specifications
ParameterValue
Output typeAdjustable
MountingSurface Mount
Voltage - input5.5V
Voltage - output57.6V
Voltage - output (Min (Fixed))1.219V
Output current3A
Frequency200kHz
I/O channels1
Operating temperature0°C ~ 125°C (TJ)
PackageTube
FunctionStep-Down
TopologyBuck, SEPIC
Case16-TSSOP (0.173\", 4.40mm Width) Exposed Pad
Output configurationPositive
Synchronous rectifierNo

Product details

Package and thermal — the exposed pad is not optional

The part comes in a 16-lead TSSOP with an exposed pad (16-TSSOP-EP). The supplier device package is the same 16-TSSOP-EP; the Tube shipment format is fine for prototype and low-volume builds.

Lifecycle and compliance — no obsolescence concern

Cross-shop memo — LT3435EFE#PBF vs this part

The closest peer in the same family is the LT3435EFE#PBF. Both are positive-output, adjustable Buck regulators in the same 16-TSSOP-EP package with a 3A output rating and no synchronous rectifier. The key difference is switching frequency: the LT3430EFE#PBF runs at 200kHz, while the LT3435EFE#PBF runs at 500kHz. The higher frequency of the LT3435 shrinks the inductor and capacitor values, saving board space, but increases switching losses. If board area is tight, the LT3435EFE#PBF is the alternative to evaluate.

Frequently asked questions

What is the equivalent or replacement for LT3430EFE#PBF?

The closest functional alternative within the same family is the LT3435EFE#PBF. It shares the same package, output current, and topology but switches at 500kHz instead of 200kHz. Evaluate the inductor size and switching loss trade-off before substituting.