XKA20420R

XKA20420R

$47.29
  • Description:SSR RELAY SPST-NO 5A 12-275V
  • Series:XKA
  • Mfr:Celduc Inc.
  • Package:Box

SKU:350512529003 Category: Brand:

  
  • Quantity
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Product Detailed Parameters

  • Description:SSR RELAY SPST-NO 5A 12-275V
  • Series:XKA
  • Mfr:Celduc Inc.
  • Package:Box
  • Mounting Type:Chassis Mount
  • Circuit:SPST-NO (1 Form A)
  • Output Type:AC, Zero Cross
  • Voltage - Input:6 ~ 30VAC/DC
  • Voltage - Load:12 V ~ 275 V
  • Load Current:5:00 AM
  • Termination Style:Spring Terminal
  • Package / Case:Module
  • Supplier Device Package:-
  • On-State Resistance (Max):-
  • Grade:-
  • Qualification:-
  • Operating Temperature:-40°C ~ 80°C
  • Approval Agency:CE, UL

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XKA20420R

Buying Guide
Summary

Celduc Inc. XKA20420R is evaluated in Solid State Relays (SSR) category where failure modes and qualification evidence matter as much as headline ratings. Key specs include Description (SSR RELAY SPST-NO 5A 12-275V), Temperature (-40°C ~ 80°C), Package/case (Module), Mounting (Chassis Mount), and Packaging (Box).

Selection Notes
  • For XKA20420R, ensure the supply range (12 V ~ 275 V) is compatible with your power tree and tolerance budget.
  • Match the output type (AC, Zero Cross) when selecting alternates or second sources.
  • Validate the operating temperature range (-40°C ~ 80°C) for your environment and margin.
  • Confirm Load Current (5:00 AM) meets your design constraints and system-level expectations.
Alternates & Substitutions
  • For Solid State Relays (SSR), compare the datasheet test conditions behind key specs and re-check the margins that were tightest during bring-up.
  • When replacing parts, validate corner behavior and recovery paths so failures remain diagnosable in the deployed system.
  • Treat package/case Module, mounting Chassis Mount, packaging Box as the first filter, then move on to electrical and performance checks.
  • For switching parts, align contact form SPST-NO (1 Form A) and validate life expectancy under your real duty cycle.
FAQ

What details help you quote XKA20420R quickly?
Share the part number (XKA20420R), quantity, target delivery date, and any packaging or documentation requirements.

Can you confirm the package/case for XKA20420R?
Module

What temperature range is listed for XKA20420R?
-40°C ~ 80°C

Which Approval Agency is listed for XKA20420R?
CE, UL

Application Scenarios

When sourcing Celduc Inc. XKA20420R for Solid State Relays (SSR), engineers typically focus on de-risking integration and keeping validation repeatable. Engineers generally validate EMI and fault behavior with real loads because edge rates and wiring inductance often dominate outcomes. A robust switching choice reduces intermittent issues by staying stable under contamination, vibration, and repetitive surges. Engineers often prioritize testability and clear failure behavior so service diagnostics remain straightforward. Across industrial safety, switching is chosen for predictable behavior and validated failure modes under contamination and vibration. In real deployments, across modern control systems, solid-state switching reduces wear but requires validation of load transients, fault behavior, and heat soak margins. In industrial I/O and automation, solid-state switches drive loads where EMI, thermal rise, and dv/dt immunity must be validated with real cabling.

Compatibility Advice
  • In practice, confirm contact materials match the load profile so aging and corrosion remain predictable over life during bring-up and production test.
  • For second-source planning, ensure the switching element matches the load type and transient profile so inductive kick and wear are controlled. This avoids one-off tuning in production.
  • For Solid State Relays (SSR), to keep validation repeatable, confirm contact materials match the load profile so aging and corrosion remain predictable over life across temperature and supply corners.
Project Fit
  • Less ideal when integrating Celduc Inc. XKA20420R for Solid State Relays (SSR), field service conditions are uncertain and wiring/labeling vary, because the key behaviors cannot be confirmed on the assembled system.
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