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Product Detailed Parameters
- Description:CONN EDGE DUAL FMALE 26POS 0.156
- Series:337
- Mfr:EDAC Inc.
- Package:Box
- Card Type:Non Specified - Dual Edge
- Gender:Female
- Number of Positions/Bay/Row:13
- Number of Positions:26
- Card Thickness:0.054" ~ 0.070" (1.37mm ~ 1.78mm)
- Number of Rows:2
- Pitch:0.156" (3.96mm)
- Read Out:Dual
- Features:-
- Mounting Type:Through Hole
- Termination:Wire Wrap
- Contact Material:Copper Alloy
- Contact Finish:Gold
- Contact Finish Thickness:10.0µin (0.25µm)
- Contact Type:Cantilever
- Color:Green
- Flange Feature:Flush Mount, Top Opening, Threaded Insert, M3
- Operating Temperature:-40°C ~ 105°C
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Buying Guide
EDAC Inc. 337-026-540-207 is evaluated in Edgeboard Connectors category when mechanical interface details determine downstream rework and reliability risk. Key specs include Description (CONN EDGE DUAL FMALE 26POS 0.156), Mounting (Through Hole), Temperature (-40°C ~ 105°C), and Packaging (Box).
- For 337-026-540-207, validate the operating temperature range (-40°C ~ 105°C) for your environment and margin.
- Make sure Read Out (Dual) aligns with your design targets and verification plan.
- Confirm the mounting type (Through Hole) matches your assembly process and reliability requirements.
- For 337-026-540-207, the closest choices usually preserve mating compatibility together with positions 26, pitch 0.156" (3.96mm), and termination/finish Wire Wrap.
- For 337-026-540-207, when several parts look near-equivalent, the better substitute is usually the one that keeps positions 26, pitch 0.156" (3.96mm), and termination/finish Wire Wrap together in the same design context (key constraints: mounting Through Hole, packaging Box).
- For Edgeboard Connectors, the strongest connector alternates usually preserve the same mating family, keying, and retention style because those details decide whether a substitute is practical.
- A practical alternate review starts by asking which product assumptions stay fixed and which trade-offs the design can absorb.
Which Read Out is specified for 337-026-540-207?
Dual
What Card Thickness is listed for 337-026-540-207?
0.054" ~ 0.070" (1.37mm ~ 1.78mm)
Which Color is specified for 337-026-540-207?
Green
What Termination is listed for 337-026-540-207?
Wire Wrap
Application Scenarios
EDAC Inc. 337-026-540-207 in the Edgeboard Connectors category is typically shortlisted after engineers pin down the interface, margin, and field condition that will decide acceptance on assembled hardware. For high-speed links, controlled impedance and return-path continuity matter as much as pin count and pitch. In serviceable products, keying and labeling reduce assembly errors and shorten repair time in the field. Once the interface and envelope are agreed, engineers focus on proving behavior on the actual PCB stack-up. In rack systems, latch behavior and retention define whether hot-swap maintenance is predictable during service windows. In networking platforms, high-density backplane connectors enable hot-swap line cards and controlled-impedance links. In high-speed links, controlled impedance and return-path continuity matter because small discontinuities can create hard-to-debug dropouts. By keeping assumptions testable, teams can iterate faster without accumulating hidden technical debt.
Compatibility Advice
- With EDAC Inc. 337-026-540-207, in production qualification, confirm mechanical stack-up and strain relief so vibration and cable pull do not degrade contact stability with the final enclosure and cabling.
- To avoid late rework, confirm shield termination strategy and return paths so EMI behavior stays predictable in the final enclosure before committing to volume builds.
- During bring-up, confirm pinout and polarization prevent mis-mates during field service and reassembly during bring-up and production test.
Project Fit
- EDAC Inc. 337-026-540-207 is worth shortlisting for Edgeboard Connectors when the project has defined assembly and service workflows for modular systems.
- Avoid relying on EDAC Inc. 337-026-540-207 in Edgeboard Connectors designs when field handling is unpredictable and intermittent contact behavior cannot be reproduced for validation because validation would rely on assumptions that cannot be re-tested later.
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