VLD25-600-DIP

VLD25-600-DIP

  • Description:LED DRIVER CC BUCK 3.3-36V 600MA
  • Series:VLD25-DIP
  • Mfr:CUI Inc.
  • Package:Tube

SKU:e4e11afd5ed4 Category: Brand:

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Product Detailed Parameters

  • Description:LED DRIVER CC BUCK 3.3-36V 600MA
  • Series:VLD25-DIP
  • Mfr:CUI Inc.
  • Package:Tube
  • Type:Constant Current
  • Topology:Buck
  • Number of Outputs:1
  • Voltage - Input (Min):5.5V
  • Voltage - Input (Max):46V
  • Voltage - Output:3.3 ~ 36V
  • Current - Output (Max):600mA
  • Power (Watts):22 W
  • Dimming:Analog, PWM
  • Features:Remote On/Off, SCP
  • Operating Temperature:-40°C ~ 71°C
  • Efficiency:95%
  • Mounting Type:Through Hole
  • Package / Case:6-DIP Module
  • Size / Dimension:0.90" L x 0.40" W x 0.37" H (22.9mm x 10.2mm x 9.5mm)
  • Approval Agency:CE, EN, IEC
  • Standard Number:-
  • Grade:-
  • Qualification:-

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VLD25-600-DIP

Buying Guide
Summary

CUI Inc. VLD25-600-DIP is used in LED Drivers category where optical output and mechanical fit must be validated in the real enclosure. Key specs include Description (LED DRIVER CC BUCK 3.3-36V 600MA), Temperature (-40°C ~ 71°C), Package/case (6-DIP Module), and Mounting (Through Hole).

Selection Notes
  • For VLD25-600-DIP, make sure Power (Watts) (22 W) aligns with your design targets and verification plan.
  • Ensure the package/case (6-DIP Module) and land pattern match your PCB layout before procurement.
  • Ensure the supply range (3.3 ~ 36V) is compatible with your power tree and tolerance budget.
  • Check the efficiency (95%) under your specific load conditions to estimate thermal dissipation.
Alternates & Substitutions
  • For LED Drivers, treat alternates as an integration task and validate the assumptions that matter on the assembled system.
  • Confirm startup states and fault behavior are equivalent so the alternate does not change system behavior during brownouts or resets.
  • For substitutions, match the footprint-related items first: package/case 6-DIP Module, mounting Through Hole, packaging Tube.
  • For LEDs/opto parts, match optical output requirements and confirm drive current and thermal limits to avoid early degradation.
FAQ

What details help you quote VLD25-600-DIP quickly?
Share the part number (VLD25-600-DIP), quantity, target delivery date, and any packaging or documentation requirements.

Which Features is specified for VLD25-600-DIP?
Remote On/Off, SCP

Can you confirm the packaging for VLD25-600-DIP?
Tube

What Power (Watts) is listed for VLD25-600-DIP?
22 W

Application Scenarios

Within practice, the question for CUI Inc. VLD25-600-DIP in LED Drivers is whether it stays inside the electrical/thermal envelope while remaining easy to validate and support. In practice, they manage conversion, sequencing, and supervision so rails remain stable under load steps, brownouts, and surge conditions. In practice, engineers typically evaluate efficiency, thermal rise, transient response, EMI behavior, and fault handling to protect sensitive downstream circuits. Within industrial gateways, robust fault handling prevents cascading issues when supplies dip or surge on long field wiring. In industrial indicators and lighting, LED drivers regulate current across temperature and supply variation so brightness and lifetime stay consistent. In automotive and transportation, constant-current drivers must tolerate transients and thermal cycling while meeting EMC and fault-detection requirements. That combination typically reduces re-spin risk and shortens the path to compliance and production release.

Compatibility Advice
  • In qualification work, validate current regulation, thermal rise, and dimming behavior so brightness remains stable after heat soak. This reduces the chance that substitutions push hidden limits.
Project Fit
  • Good fit when you can verify CUI Inc. VLD25-600-DIP for LED Drivers integration across temperature and supply corners, and you want bounded fault behavior under open/short LED strings with predictable diagnostics.
  • Poor fit when thermal rise and wiring environment are unknown, so brightness and lifetime margins cannot be proven, because it becomes difficult to prove margin across production variance.
VLD25-600-DIPVLD25-600-DIP

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