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Product Detailed Parameters
- Description:RELAY GENERAL PURPOSE DPDT 1A 5V
- Series:MA, CII
- Mfr:TE Connectivity Aerospace, Defense and Marine
- Package:Box
- Mounting Type:Through Hole
- Coil Voltage:5VDC
- Contact Form:DPDT (2 Form C)
- Contact Rating (Current):1:00 AM
- Switching Voltage:28VDC - Nom
- Load - Max Switching:-
- Coil Current:100 mA
- Coil Type:Non Latching
- Features:-
- Termination Style:PC Pin
- Seal Rating:Sealed - Hermetically
- Coil Insulation:-
- Must Operate Voltage:2.7 VDC
- Must Release Voltage:0.22 VDC
- Operate Time:2 ms
- Release Time:1.5 ms
- Operating Temperature:-65°C ~ 125°C
- Contact Material:-
- Approval Agency:-
- Relay Type:General Purpose
- Grade:Military
- Qualification:MIL-R-39016/9
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Buying Guide
TE Connectivity Aerospace, Defense and Marine 1-1617121-6 is evaluated in Signal Relays, Up to 2 Amps category where failure modes and qualification evidence matter as much as headline ratings. Key specs include Description (RELAY GENERAL PURPOSE DPDT 1A 5V), Temperature (-65°C ~ 125°C), Mounting (Through Hole), and Packaging (Box).
- For 1-1617121-6, verify the mounting type (Through Hole) fits your manufacturing and inspection workflow.
- Verify the coil voltage (5VDC) matches your drive circuit and allows for dropout margins.
- Confirm the operating temperature range (-65°C ~ 125°C) meets your deployment conditions.
- Check Coil Current (100 mA) against the datasheet conditions and your system-level constraints.
- For 1-1617121-6, the closest candidates usually match contact form DPDT (2 Form C), coil 5VDC, and contact rating 1:00 AM for the same load profile.
- For 1-1617121-6, the strongest alternatives usually keep contact form DPDT (2 Form C), coil 5VDC, and contact rating 1:00 AM aligned at the same time, because matching only one headline number rarely preserves the whole product role (key constraints: mounting Through Hole, packaging Box).
- In Signal Relays, Up to 2 Amps, close headline specs only matter when the replacement still fits the same board, interface, and use case.
- Good substitutes normally keep the visible function unchanged and move any trade-off into margins your design already has.
Who is the manufacturer of 1-1617121-6?
TE Connectivity Aerospace, Defense and Marine
How do I choose an alternate for 1-1617121-6?
Match footprint and ratings first, then confirm operating conditions and test conditions behind key specs before approval.
Can you confirm the Switching Voltage for 1-1617121-6?
28VDC - Nom
Which Contact Rating (Current) is specified for 1-1617121-6?
1:00 AM
Application Scenarios
Selecting TE Connectivity Aerospace, Defense and Marine 1-1617121-6 for Signal Relays, Up to 2 Amps usually comes down to meeting the system constraints that matter most: limits, interfaces, and testability in the real build. In real systems, switching elements are vetted for bounce, failure modes, and derating under inductive loads and repetitive surges. Mechanical tolerances, mounting style, and assembly workflow can be just as important as the electrical ratings. In dusty or corrosive environments, sealing and contact materials are chosen to keep switching repeatable over years of service. In industrial maintenance scenarios, robust switching and clear failure behavior reduce the risk of unexpected restarts or false enables.
Compatibility Advice
- For Signal Relays, Up to 2 Amps, with TE Connectivity Aerospace, Defense and Marine 1-1617121-6, during bring-up, validate bounce and timing behavior in the full chain so control logic does not see false transitions. Record the exact load, wiring, and limits so the same evidence can be regenerated during ECO or second-source review.
Project Fit
- TE Connectivity Aerospace, Defense and Marine 1-1617121-6 is worth shortlisting for Signal Relays, Up to 2 Amps when the team can must survive high cycle counts with materials matched to the environment.
- TE Connectivity Aerospace, Defense and Marine 1-1617121-6 is more likely to create avoidable rework in Signal Relays, Up to 2 Amps projects when field service conditions are uncertain and wiring/labeling vary because the integration depends on constraints that cannot be controlled across builds.
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