10116602-101LF

Amphenol FCI
649-10116602-101LF
10116602-101LF

Mfr.:

Description:
High Speed/Modular Connectors VSe AIRMAX, VERT HDR 150P,SMALL PRESS-FI

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In Stock: 49

Stock:
49 Can Dispatch Immediately
Factory Lead Time:
7 Weeks Estimated factory production time for quantities greater than shown.
Quantities greater than 49 will be subject to minimum order requirements.
Minimum: 1   Multiples: 1
Unit Price:
£-.--
Ext. Price:
£-.--
Est. Tariff:

Pricing (GBP)

Qty. Unit Price
Ext. Price
£18.51 £18.51
£18.04 £180.40

Product Attribute Attribute Value Select Attribute
Amphenol
Product Category: High Speed/Modular Connectors
RoHS:  
Headers
150 Position
10 Row
2 mm
Press Fit
Gold
AirMax VSe
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: 29
Subcategory: Backplane Connectors
Tradename: Airmax Vse
Unit Weight: 14.662 g
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CNHTS:
8536901100
CAHTS:
8536690020
USHTS:
8536694040
JPHTS:
853669000
KRHTS:
8536691000
TARIC:
8536693000
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.