MP1484EN-LF-Z


3A sync buck converter, 4.75-18V in, 0.925-20V out, 340kHz, 85mΩ FETs, 95% eff, SOIC-8 EP, NRND

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Manufacturer Part:

MP1484EN-LF-Z

Package:

SOIC-8 EP (5.0 x 4.0 x 1.5 mm, 1.27mm pitch, exposed pad)

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Description

The MP1484EN-LF-Z from Monolithic Power Systems (MPS) is a 3 A, 18 V, 340 kHz synchronous step-down converter in an 8-pin SOIC package with exposed pad. It integrates 85 mΩ top and bottom MOSFETs, supports 4.75 V to 18 V input, and provides adjustable output from 0.925 V to 20 V. Current-mode control ensures fast transient response and cycle-by-cycle current limit. Features include programmable soft-start, shutdown current below 1 µA, and up to 95% efficiency. The -LF-Z suffix denotes lead-free tape-and-reel packaging. Operating temperature range is -20°C to +85°C.

The MP1484 from MPS is a monolithic synchronous buck regulator integrating 85 mΩ top and bottom MOSFETs in a thermally enhanced SOIC-8 EP package. The MP1484EN-LF-Z is the lead-free tape-and-reel version. It delivers 3 A continuous output current from a 4.75 V to 18 V input with output adjustable from 0.925 V to 20 V.

The device uses peak current-mode control with internal slope compensation, providing fast line and load transient response, easy loop compensation, and inherent cycle-by-cycle current limiting. The 0.925 V feedback reference voltage with ±2.7% accuracy over temperature allows precision output regulation.

The integrated synchronous rectifier eliminates the external Schottky catch diode, improving efficiency especially at low output voltages. Up to 95% efficiency is achievable at 12 V input, 3.3 V output, 2 A load.

The programmable soft-start (CSS pin) prevents inrush current by slowly ramping the output voltage. The EN pin provides logic-level shutdown with supply current dropping below 1 µA.

The MP1484 is pin-compatible with the MP1482 (2 A version), offering a simple upgrade path for higher current designs.

Important: MPS designates the MP1484 as “Not Recommended for New Designs” (NRND). The recommended replacement is the MP2307DN-LF, which offers similar performance in a smaller package. Designers should verify availability before using the MP1484 in new designs.

**Synchronous Buck Topology:** The MP1484 uses a synchronous buck converter architecture with an integrated high-side NMOS switch and low-side NMOS synchronous rectifier. During the on-time, the high-side switch connects VIN to the inductor, storing energy in the inductor’s magnetic field. During the off-time, the high-side switch opens and the low-side switch turns on, providing a path for inductor current to continue flowing to the output.

**Current-Mode Control:** The inner current loop compares the peak inductor current (sensed through the high-side switch) against the error amplifier output. This provides cycle-by-cycle current limiting and simplifies loop compensation. Internal slope compensation prevents sub-harmonic oscillation at duty cycles above 50%.

**Bootstrap Supply:** The BS pin provides gate drive voltage for the high-side NMOS switch. An external bootstrap capacitor (0.1 µF) between BS and SW is charged during the off-time when SW is near ground, then provides the voltage above SW needed to drive the high-side gate during on-time.

**Soft-Start:** The SS pin sources a current to charge an external capacitor, creating a voltage ramp that limits the error amplifier output during startup, preventing inrush current and output overshoot.

Pin Name Type Description
1 BS P Bootstrap supply for high-side gate driver; connect 0.1µF ceramic cap from BS to SW; charged during off-time
2 IN P Input supply; 4.75-18V operating; bypass with 4.7µF ceramic to GND; 24V absolute max
3 SW O Switch node; connects to inductor; 85mΩ internal MOSFETs; do not route sensitive traces near this node
4 GND G Ground; connect to PCB ground plane; exposed pad must be soldered to ground plane for thermal performance
5 FB I Feedback input; 0.925V reference; connect resistor divider from VOUT; VOUT = 0.925 x (1 + R1/R2)
6 COMP I/O Compensation; output of transconductance error amplifier; connect series RC from COMP to GND for loop stability
7 EN I Enable; active-high; pull above 2V to enable; pull below 0.4V to shutdown; IQ < 1µA in shutdown; do not float
8 SS I Soft-start; connect external capacitor to GND; larger cap = slower startup; 10nA charge current; leave open for minimum soft-start
Application Description
12V to 3.3V/1.8V Point-of-Load Step down 12V rail to 3.3V or 1.8V for FPGA/ASIC/DSP core and I/O; 3A output; 95% efficiency at 12V→3.3V/2A; synchronous rectifier eliminates Schottky diode
5V to 1.2V Core Supply Generate low-voltage core supply from 5V rail; 0.925V minimum output; high efficiency at low VOUT due to synchronous rectification; soft-start prevents inrush into large ceramic output caps
Model Manufacturer Compatibility Key Difference
MP2307DN-LF-Z MPS Recommended Replacement 3A sync buck; 4.75-23V input; 340kHz; SOIC-8 EP; active and recommended; use for new designs replacing MP1484
MP1482EN-LF-Z MPS Pin-Compatible Downgrade 2A version; same SOIC-8 EP pinout; same application circuit; use for lower current requirements
SY8120ABC Silergy Competitive Alternative 3A sync buck; 4.5-18V; 500kHz; smaller SOT-23-6 package; higher frequency allows smaller inductor
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We have obtained a number of professional certifications and built our own professional testing laboratory.This ensures that every product we deliver to our customers meets the highest quality requirements.We conduct tests in strict accordance with procedures to ensure stable product quality and accurate parameters.To guarantee genuine original parts, we also cooperate with reliable third-party testing institutions for strict quality inspection.We always attach great importance to quality and fully comply with industry standards, relevant regulations, and ISO 9001:2015 requirements.

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All electronic components we source from our partnered supply chains go through strict incoming inspections.Through careful testing, we ensure everything delivered to customers is genuine original parts and meets quality requirements.In addition, we keep complete inspection records to make the entire supply chain process clear and traceable.

Certification
We have obtained a number of professional certifications and built our own professional testing laboratory.This ensures that every product we deliver to our customers meets the highest quality requirements.We conduct tests in strict accordance with procedures to ensure stable product quality and accurate parameters.To guarantee genuine original parts, we also cooperate with reliable third-party testing institutions for strict quality inspection.We always attach great importance to quality and fully comply with industry standards, relevant regulations, and ISO 9001:2015 requirements.

Service & Packaging

All electronic components we source from our partnered supply chains go through strict incoming inspections.Through careful testing, we ensure everything delivered to customers is genuine original parts and meets quality requirements.In addition, we keep complete inspection records to make the entire supply chain process clear and traceable.

Certification
We have obtained a number of professional certifications and built our own professional testing laboratory.This ensures that every product we deliver to our customers meets the highest quality requirements.We conduct tests in strict accordance with procedures to ensure stable product quality and accurate parameters.To guarantee genuine original parts, we also cooperate with reliable third-party testing institutions for strict quality inspection.We always attach great importance to quality and fully comply with industry standards, relevant regulations, and ISO 9001:2015 requirements.