10116601-101LF

Amphenol FCI
649-10116601-101LF
10116601-101LF

Mfr.:

Description:
High Speed/Modular Connectors VSe AIRMAX, VERT HDR 54P, SMALL PRESS-FI

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In Stock: 170

Stock:
170 Can Dispatch Immediately
Factory Lead Time:
7 Weeks Estimated factory production time for quantities greater than shown.
Minimum: 1   Multiples: 1
Unit Price:
-,-- kr.
Ext. Price:
-,-- kr.
Est. Tariff:

Pricing (DKK)

Qty. Unit Price
Ext. Price
40,73 kr. 40,73 kr.
34,61 kr. 346,10 kr.
30,96 kr. 774,00 kr.
29,47 kr. 1.414,56 kr.
28,65 kr. 2.750,40 kr.
28,20 kr. 8.121,60 kr.

Product Attribute Attribute Value Select Attribute
Amphenol
Product Category: High Speed/Modular Connectors
RoHS:  
Headers
54 Position
6 Row
2 mm
Press Fit
Gold
Tube
Brand: Amphenol FCI
Contact Material: Copper Alloy
Housing Material: Thermoplastic (TP)
Mounting Angle: Vertical
Orientation: Vertical
Product Type: High Speed / Modular Connectors
Stack Height: 12.5 mm
Factory Pack Quantity: 48
Subcategory: Backplane Connectors
Tradename: Airmax Vse
Unit Weight: 6,157 g
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TARIC:
8536693000
CNHTS:
8536901100
CAHTS:
8536690020
USHTS:
8536694040
JPHTS:
853669000
KRHTS:
8536691000
MXHTS:
85366999
BRHTS:
85366990
ECCN:
EAR99

AirMax VS® Connectors

Amphenol FCI AirMax VS® Hard Metric connector family is comprised of the VS, VS2, and VSe backplane connectors as well as Hard Metric power connectors. The AirMax series ranges in speeds of 12.5Gb/s up to 25Gb/s and are backward compatible with existing AirMax designs allowing designers to easily upgrade to higher speed performance.

AirMax VS2e® High-Speed Backplane Connectors

Amphenol FCI AirMax VS2e® High-Speed Backplane Connectors provide a migration path for up to 25Gb/s per differential pair with the flexibility of an open-pin field design. The connectors also feature backward mating-compatible interfaces to existing AirMax VS® connectors with minimal changes to connector footprints. The connectors combine a shieldless design with no metallic plates and closely edge-coupled differential pairs with innovative design improvements to yield low loss and low crosstalk. The mating-compatible interfaces and the capability to preserve critical pin assignments can provide cost-effective opportunities as new or upgraded equipment is deployed.