1043915

1043915

  • Description:RELAY SAFETY 3PST 6A 24V
  • Series:UE10-2FG
  • Mfr:SICK, Inc.
  • Package:Bulk

SKU:4bdff1199f95 Category: Brand:

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Product Detailed Parameters

  • Description:RELAY SAFETY 3PST 6A 24V
  • Series:UE10-2FG
  • Mfr:SICK, Inc.
  • Package:Bulk
  • Mounting Type:DIN Rail
  • Coil Voltage:24VDC
  • Contact Form:3PST-2NO/1NC (2 Form A, 1 Form B)
  • Contact Rating (Current):6:00 AM
  • Switching Voltage:250VAC, 250VDC - Max
  • Features:-
  • Termination Style:Screw Terminal
  • Must Operate Voltage:-
  • Must Release Voltage:-
  • Operate Time:10 ms
  • Release Time:30 ms
  • Operating Temperature:-
  • Contact Material:Silver (Ag), Gold (Au)

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1043915

Buying Guide
Summary

SICK, Inc. 1043915 is used in Safety Relays category when predictable switching behavior and derating under real loads are required. Key specs include Description (RELAY SAFETY 3PST 6A 24V), Mounting (DIN Rail), and Packaging (Bulk).

Selection Notes
  • For 1043915, confirm the coil voltage requirement (24VDC) is supported by your control logic rails.
  • Double-check Operate Time (10 ms) against your specification and operating conditions.
  • Verify the mounting type (DIN Rail) fits your manufacturing and inspection workflow.
  • If you have special packaging needs (cut tape, full reel, tray), state it in the inquiry.
Alternates & Substitutions
  • In Safety Relays designs, define acceptance criteria up front so alternates can be qualified and repeated in production.
  • Before approving a second source, compare the functional mode matrix and the test conditions behind the marketing headline specs.
  • Start with mechanical equivalence and keep mounting DIN Rail, packaging Bulk aligned so the alternate is footprint-safe.
FAQ

What details help you quote 1043915 quickly?
Provide the part number (1043915), quantity, required lead time, and any packaging or documentation requirements.

Who is the manufacturer of 1043915?
SICK, Inc.

What should I verify for switching parts like 1043915?
Confirm electrical ratings, expected life/duty cycle, interface requirements, and verify behavior under worst-case load.

What is the mounting method for 1043915?
DIN Rail

Application Scenarios

In the Safety Relays category, SICK, Inc. 1043915 is often evaluated by how well it fits electrical, thermal, and mechanical constraints in the target system. In practice, for user-accessible switching, safety approvals and ingress protection often define the shortlist more than headline specs. A disciplined selection reduces nuisance faults and keeps service procedures straightforward in the field. Safety relay designs emphasize deterministic failure modes, contact monitoring, and wiring practices so the safety function remains verifiable in the field. With the basics in place, the design effort moves to the application context and the real failure modes seen in deployment. In industrial safety, switching is chosen for predictable behavior and validated failure modes under contamination and vibration. In the long run, predictable integration tends to reduce both field returns and engineering time spent on intermittent issues.

Compatibility Advice
  • For compatibility, check derating and thermal rise for continuous duty so performance does not drift after heat soak with the final enclosure and cabling.
  • For Safety Relays, before release to production, verify that service procedures keep the safety state deterministic during field replacement and reassembly. This keeps acceptance criteria measurable and repeatable.
  • For Safety Relays, to avoid late surprises, check ingress and corrosion assumptions so mechanical reliability does not degrade outside the lab environment. This keeps acceptance criteria measurable and repeatable.
Project Fit
  • Ideal when you can test and document SICK, Inc. 1043915 for Safety Relays integration with the real wiring and cabling, typically when you need deterministic behavior in safety, interlock, or control paths and can validate it under real stress. That said, riskier when integrating SICK, Inc. 1043915 for Safety Relays, field service conditions are uncertain and wiring/labeling vary, because validation would rely on assumptions that cannot be re-tested later.
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