10CPV240

10CPV240

$65.11
  • Description:SSR RELAY SPST-NO 10A 180-280V
  • Series:CPV
  • Mfr:Sensata-Crydom
  • Package:Bulk

SKU:4801bdbc613f Category: Brand:

  
  • Quantity
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Product Detailed Parameters

  • Description:SSR RELAY SPST-NO 10A 180-280V
  • Series:CPV
  • Mfr:Sensata-Crydom
  • Package:Bulk
  • Mounting Type:Chassis Mount
  • Circuit:SPST-NO (1 Form A)
  • Output Type:AC
  • Voltage - Input:0 ~ 5VDC
  • Voltage - Load:180 V ~ 280 V
  • Load Current:10:00 AM
  • Termination Style:Screw Terminal
  • Package / Case:Hockey Puck
  • Supplier Device Package:-
  • On-State Resistance (Max):-
  • Grade:-
  • Qualification:-
  • Operating Temperature:-30°C ~ 80°C
  • Approval Agency:-

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10CPV240

Buying Guide
Summary

Sensata-Crydom 10CPV240 is used in Solid State Relays (SSR) category when predictable switching behavior and derating under real loads are required. Key specs include Description (SSR RELAY SPST-NO 10A 180-280V), Temperature (-30°C ~ 80°C), Package/case (Hockey Puck), Mounting (Chassis Mount), and Packaging (Bulk).

Selection Notes
  • For 10CPV240, verify the operating temperature range (-30°C ~ 80°C) and derate as needed in your application.
  • Verify Voltage - Input (0 ~ 5VDC) matches your requirements and the datasheet test conditions.
  • Verify the switch configuration (SPST-NO (1 Form A)) is correct for your intended control path.
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.
  • Lock the mechanical constraints first (package/case Hockey Puck, mounting Chassis Mount, packaging Bulk) before comparing performance specs.
  • For switching parts, align contact form SPST-NO (1 Form A) and validate life expectancy under your real duty cycle.
  • For faster alternate proposals, share the constraints you cannot change (package Hockey Puck, supply 180 V ~ 280 V, interface AC) and your acceptable trade-offs.
FAQ

Who is the manufacturer of 10CPV240?
Sensata-Crydom

How do I choose an alternate for 10CPV240?
Match footprint and ratings first, then confirm operating conditions and test conditions behind key specs before approval.

Which package/case is listed for 10CPV240?
Hockey Puck

Which operating temperature range is listed for 10CPV240?
-30°C ~ 80°C

Application Scenarios

In real deployments, across practice, the question for Sensata-Crydom 10CPV240 in Solid State Relays (SSR) is whether it stays inside the electrical/thermal envelope while remaining easy to validate and support. Solid-state switching focuses on leakage, thermal rise, dv/dt immunity, and load transients so behavior remains predictable over temperature. Well-chosen switching elements improve safety and reduce maintenance costs. Across many products, switching choices define failure modes, so teams favor predictable behavior and qualification evidence over headline ratings. In field equipment, sealing and contact materials determine long-term reliability under dust and moisture. In modern control systems, solid-state switching generally 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. This approach helps keep sourcing changes safer because the design is anchored to testable criteria.

Compatibility Advice
  • In board-level integration, confirm contact materials match the load profile so aging and corrosion remain predictable over life. This keeps acceptance criteria measurable and repeatable.
  • For Solid State Relays (SSR), on the assembled PCB, ensure the switching element matches the load type and transient profile so inductive kick and wear are controlled. This keeps integration from depending on typical-only conditions.
Project Fit
  • Most suitable when you can verify Sensata-Crydom 10CPV240 for Solid State Relays (SSR) integration with production-like fixtures, and you must survive high cycle counts with materials matched to the environment.
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