DC DC Converters

Image Part Number Description / PDF Quantity Rfq
NME2415SC

NME2415SC

Murata Power Solutions

DC DC CONVERTER 15V 1W

9

CRE1S2405SC

CRE1S2405SC

Murata Power Solutions

DC DC CONVERTER 5V 1W

391

OKX2-T/10-W5P-C

OKX2-T/10-W5P-C

Murata Power Solutions

DC DC CONVERTER 0.75-3.63V 33W

0

ULT-3.3/7.5-D48PM-C

ULT-3.3/7.5-D48PM-C

Murata Power Solutions

DC DC CONVERTER 3.3V 25W

0

NTV0505MC

NTV0505MC

Murata Power Solutions

DC DC CONVERTER +/-5V 1W

446

CRL2S0505SC

CRL2S0505SC

Murata Power Solutions

DC DC CONVERTER 5V 2W

1890

MEV1D2415DC

MEV1D2415DC

Murata Power Solutions

DC DC CONVERTER +/-15V 1W

75

MGJ6D121510LMC-R7

MGJ6D121510LMC-R7

Murata Power Solutions

DC DC CONVERTER 15V -10V 6W

30

NMV2405SAC

NMV2405SAC

Murata Power Solutions

DC DC CONVERTER 5V 1W

0

NMV1209SC

NMV1209SC

Murata Power Solutions

DC DC CONVERTER +/-9V 1W

51

NCS12S4812C

NCS12S4812C

Murata Power Solutions

DC DC CONVERTER 12V 12W

83

NTE0515MC-R

NTE0515MC-R

Murata Power Solutions

DC DC CONVERTER 15V 1W

0

DBE0340V2N1BC

DBE0340V2N1BC

Murata Power Solutions

DC DC CONVERTER 3.3V 132W

0

OKL2-T/20-W12N2-C

OKL2-T/20-W12N2-C

Murata Power Solutions

DC DC CONVERTER 0.69-5.5V 110W

630

DBE0340V2P1BC

DBE0340V2P1BC

Murata Power Solutions

DC DC CONVERTER 3.3V 132W

0

LME0512SC

LME0512SC

Murata Power Solutions

DC DC CONVERTER 12V 250MW

36

MYRGM080150W31RA

MYRGM080150W31RA

Murata Power Solutions

DC DC CONVERTER 0.8-3.6V

0

NDS6D2405EC

NDS6D2405EC

Murata Power Solutions

DC DC CONVERTER 5-12V -5V 6W

8

NTV0509MC-R

NTV0509MC-R

Murata Power Solutions

DC DC CONVERTER +/-9V 1W

0

CRE1S1212SC

CRE1S1212SC

Murata Power Solutions

DC DC CONVERTER 12V 1W

416

DC DC Converters

1. Overview

Board Mount DC-DC Converters are electronic devices that convert direct current (DC) from one voltage level to another through switching technology. They enable voltage regulation and power distribution in embedded systems, providing galvanic isolation, voltage matching, and efficiency optimization. These converters are critical in modern electronics for enabling compact designs, improving energy efficiency, and ensuring stable power delivery in applications ranging from consumer devices to industrial equipment.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Non-Isolated ConvertersShared ground reference, high efficiency (85-95%), low costPoint-of-load regulation in servers
Isolated ConvertersGalvanic isolation (1-6kV), reinforced safety, wide input rangeMedical equipment power supplies
Step-Down (Buck)Converts higher input to lower output voltage12V to 3.3V for microprocessors
Step-Up (Boost)Increases input voltage to higher output levels5V to 12V for display backlighting
BidirectionalSupports power flow in both directionsEnergy storage systems in EVs

3. Structure and Components

Typical construction includes:

  • Input EMI filter (common-mode choke + capacitors)
  • Power MOSFET/IGBT switching stage
  • Planar transformer (for isolation types)
  • PWM controller IC with feedback loop
  • Synchronous rectifier (for high-efficiency designs)
  • Output LC filter (inductor + ceramic capacitors)

4. Key Technical Specifications

ParameterImportance
Input Voltage RangeDetermines compatibility with power sources
Output Voltage AccuracyEnsures stable power for sensitive circuits
Efficiency (Typ. 80-97%)Impacts thermal performance and energy costs
Power Density (W/in )Key metric for space-constrained applications
Operating TemperatureDefines performance in harsh environments
Isolation VoltageSafety compliance for medical/industrial use

5. Application Fields

Major industries include:

  • Telecommunications (5G base stations, optical networking equipment)
  • Industrial Automation (PLCs, robotics controllers)
  • Medical Devices (patient monitoring systems, imaging equipment)
  • Consumer Electronics (gaming consoles, VR headsets)
  • Renewable Energy (solar inverters, energy storage systems)

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
TI (Texas Instruments)LM514565V input, 2.5A output, 95% efficiency
Monolithic PowerMPQ442045V input, 2A output, 3x3mm QFN package
VicorDCM311448V to 12V, 180W, 342W/in power density
CUI IncVX78-10001000V isolation, 10W output, medical grade

7. Selection Guidelines

Key factors to consider:

  • Input/output voltage requirements and transient response
  • Load current profile (continuous vs peak demands)
  • Thermal management capabilities
  • Form factor constraints (e.g., 1/16th brick standard)
  • Protection features (OVP, OCP, OTP)
  • Compliance certifications (CE, UL, IEC 60601-1)

8. Industry Trends

Current development directions include:

  • Adoption of GaN/SiC wide bandgap semiconductors for >97% efficiency
  • Digital control loops for dynamic voltage scaling
  • 3D packaging to achieve >500W/in power density
  • Integrated magnetics for reduced component count
  • Smart converters with PMBus interface for telemetry

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