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convertidores dc dc

B62SR12424A
B62SR12424A
$180.588 $150.49000/pedazo
TEP 160-4816-CM
TEP 160-4816-CM
$347.508 $289.59000/pedazo
CQB50W8-36S24-CMFD
CQB50W8-36S24-CMFD
$201.696 $168.08000/pedazo
RSD-200C-12
RSD-200C-12
$142.644 $118.87000/pedazo
UFED20-48S12W
UFED20-48S12W
$1198.8 $999.00000/pedazo
1010814CH
1010814CH
$133.248 $111.04000/pedazo
WAF300-110S48W
WAF300-110S48W
$1198.8 $999.00000/pedazo
1010766CHCO
1010766CHCO
$233.796 $194.83000/pedazo
UFEC40-12T3315
UFEC40-12T3315
$1198.8 $999.00000/pedazo
AM20EW-4812SH30-NZ-ST
AM20EW-4812SH30-NZ-ST
$73.932 $61.61000/pedazo
STMGFS302415-R
STMGFS302415-R
$114.828 $95.69000/pedazo
TMDC 10-7212H
TMDC 10-7212H
$73.968 $61.64000/pedazo
UFED40-24S05W
UFED40-24S05W
$1198.8 $999.00000/pedazo
IRV300-24W80R-C
IRV300-24W80R-C
$430.2315 $358.52625/pedazo
SNDBS400B12
SNDBS400B12
$422.964 $352.47000/pedazo
CPP7B24P
CPP7B24P
$86.664 $72.22000/pedazo
DTE0648S48
DTE0648S48
$55.44 $46.20000/pedazo
CFB750-300S28-CMFD
CFB750-300S28-CMFD
$411.396 $342.83000/pedazo
OHD35-5-1
OHD35-5-1
$1680 $1400.00000/pedazo

26641 Resultados

convertidores dc dc

 

  1. Input and Output Voltage Range
    First, confirm the required input and output voltage range for the converter. Different applications may demand specific input voltage ranges; for example, industrial equipment might require a higher input voltage, while consumer electronics typically operate within a lower voltage range. The output voltage must meet the load's requirements while minimizing energy waste.

  2. Power and Efficiency
    Choose a power level and efficiency rating appropriate for your application. Higher power demands often increase the size and cost of the converter. High-efficiency converters reduce energy loss, lower heat output, and help extend the equipment's performance and lifespan.

  3. Topology
    DC-DC converters are commonly available in buck (step-down), boost (step-up), and buck-boost topologies. A buck converter is suitable for applications needing a lower output voltage than the input; a boost converter is used for stepping up low input voltage to a higher output; and buck-boost topology provides stable output even with significant input voltage fluctuations. Choose the right topology based on the load’s voltage requirements and power input characteristics.

  4. Switching Frequency
    Switching frequency affects the converter's size, efficiency, and electromagnetic interference (EMI). High-frequency converters can use smaller components to reduce size but may generate more EMI and losses. Lower-frequency converters might need larger components but typically have lower EMI. Consider the trade-off between size, efficiency, and EMI requirements when selecting a switching frequency.

  5. Packaging and Thermal Design
    Ensure the DC-DC converter packaging suits your application. Various packaging types exist, such as SIP, DIP, and SMD. Selection depends on circuit board space and thermal design. High-power converters require adequate thermal management and may need heatsinks or fans for cooling.

  6. Protection Features
    To enhance system reliability, many DC-DC converters include protection features such as overcurrent protection, thermal shutdown, and short-circuit protection. These features safeguard the device from damage under abnormal conditions.

  7. EMC and Certification Requirements
    Ensure the selected converter complies with relevant electromagnetic compatibility (EMC) requirements and has necessary certifications. This is especially important in industrial and medical applications to ensure product safety and regulatory compliance.

 

V300A48M400BL: Powering the Future of Electronic Systems

 

A Procurement Guide of Isolated DC/DC Converters

 

MGDB-04-C-C: Reliable DC DC Converters for Aerospace and Defense Applications

 

Key Considerations When Choosing the Right DC-DC Converter

 

XCL223A143D2-G

LXDC2XQ15A-277

BZ6A7D06GM-TR

AM1LD-0505SNZ

LMTM78_03-0.5

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