YAW512

YAW512

  • Description:AC/DC CONVERTER +/-12V 5W
  • Series:YAW (5W)
  • Mfr:Cosel USA, Inc.
  • Package:Box

SKU:0b8379936765 Category: Brand:

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Product Detailed Parameters

  • Description:AC/DC CONVERTER +/-12V 5W
  • Series:YAW (5W)
  • Mfr:Cosel USA, Inc.
  • Package:Box
  • Type:Enclosed
  • Number of Outputs:2
  • Voltage - Input:85 ~ 264 VAC, 110 ~ 370 VDC
  • Voltage - Output 1:12V
  • Voltage - Output 2:-
  • Voltage - Output 3:-
  • Voltage - Output 4:-
  • Current - Output (Max):220mA, 220mA
  • Applications:ITE (Commercial)
  • Features:Universal Input
  • Operating Temperature:-10°C ~ 70°C (With Derating)
  • Efficiency:67%
  • Mounting Type:Through Hole
  • Package / Case:6-DIP Module
  • Size / Dimension:2.28" L x 1.77" W x 0.77" H (58.0mm x 45.0mm x 19.5mm)
  • Approval Agency:CE, CSA, cURus, TUV
  • Standard Number:-
  • Power (Watts):5 W

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YAW512

Buying Guide
Summary

Cosel USA, Inc. YAW512 is selected in AC DC Converters category when protection behavior and transient response must be validated under realistic load steps. Key specs include Description (AC/DC CONVERTER +/-12V 5W), Temperature (-10°C ~ 70°C (With Derating)), Package/case (6-DIP Module), Mounting (Through Hole), and Packaging (Box).

Selection Notes
  • For YAW512, check the efficiency (67%) under your specific load conditions to estimate thermal dissipation.
  • Check Voltage - Input (85 ~ 264 VAC, 110 ~ 370 VDC) against the datasheet conditions and your system-level constraints.
  • Double-check the mounting type (Through Hole) for your intended installation method.
  • Confirm the supply current (220mA) is acceptable for standby and active operation.
Alternates & Substitutions
  • For AC DC Converters substitutions, lock footprint/pinout and operating envelope first, then verify the critical performance conditions on your hardware.
  • Validate the min/max operating conditions (temperature -10°C ~ 70°C (With Derating)) and keep headroom for worst-case corners.
  • For regulators/converters, match input range 85 ~ 264 VAC, 110 ~ 370 VDC and validate startup, protection behavior, and thermal headroom under transients.
  • If you need a second source, provide (package 6-DIP Module) and we will suggest options to evaluate under a clear test plan.
FAQ

Any tips for derating and validation for YAW512?
Validate at worst-case temperature and load, confirm thermal headroom, and check protection and startup behavior with margin.

Which Voltage - Output 1 is specified for YAW512?
12V

What Approval Agency does YAW512 have?
CE, CSA, cURus, TUV

What Number of Outputs is listed for YAW512?
2

Application Scenarios

Across production AC DC Converters builds, parts like Cosel USA, Inc. YAW512 are shortlisted for predictable behavior, clear documentation, and stable supply. Teams often favor power parts with clear documentation and repeatable measurement points, because bring-up depends on what can be verified. A disciplined power selection improves robustness by reducing sensitivity to layout parasitics and component tolerance. In laboratory equipment, clean rails reduce measurement drift and improve repeatability across calibration workflows. Across automotive body electronics, converters must be robust to harness noise and intermittent load changes without injecting audible or RF interference. Within industrial PLCs and gateways, power stages convert 24 V buses into low-noise rails inside sealed enclosures where surges and heat are common.

Compatibility Advice
  • For production stability, validate the design with the real output capacitors and layout, because stability and EMI are board-dependent on the assembled PCB.
  • To keep validation repeatable, verify ripple and load-step response at the point of load, because rails can look fine at the regulator but fail at the consumer. This reduces the chance that substitutions push hidden limits.
Project Fit
  • Good fit when you can qualify Cosel USA, Inc. YAW512 for AC DC Converters integration on the assembled PCB, and you need predictable rails under load steps and can validate stability, EMI, and thermal rise in the final layout.
  • Poor fit when layout and capacitor choices vary and stability cannot be guaranteed, because the key behaviors cannot be confirmed on the assembled system.
YAW512YAW512

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