2.2-5 Straight Solder Jack RG-405 0.086-inch Conformable Bulkhead 50 Ohm

2.2-5 Straight Solder Jack RG-405 0.086-inch Conformable Bulkhead 50 Ohm

225-109J-52S
Part Status: Active
Product Specifications

Product Specifications

Attributes Details See Similar
Select the attributes below to view similar products
Applications
High Frequency, Low-PIM
Body Finish
White Bronze
Body Material
Brass
Cable Group
SR1
Cable Type (Terminates To)
0.085-inch Semi-Rigid, 0.086-inch Semi-Rigid, 0.085-inch Conformable, 0.086-inch Conformable, RG-405, Times Tflex 405, Belden 1671A
Contact Finish
Silver
Contact Material
Beryllium Copper
Contact Termination
Solder
Country of Origin
CN
Coupling Mechanism
Threaded
ECCN
EAR99
Frequency (Max GHz)
20
Gender
Jack
HTS Code
8536.69.4010
Impedance (Ohms)
50
Insulator Material
PTFE
IP Rating
Not Rated
Isolated
No
Low PIM
Yes
Mating Cycles (Min)
100
Mil Qualified
Not Mil Qualified
Non Magnetic
Contains Magnetic Materials
Orientation
Straight
Panel Mounting Feature
Bulkhead - Rear Mount
PFAS
Contains PFAS
Ports
1 (Single Port)
Size Category
Miniature
Temp (Max Degrees Celsius)
165
Temp (Min Degrees Celsius)
-65
Termination Style
Cable - Solder
Thread Direction
Standard
Unit Weight (Grams)
33.730
See Similar
All Related Documents

All Related Documents

Document Title Type Publish Date
225-109J-52S PDF Customer Drawing (Size: 185.9 KB)
pdf
5/28/2021

Related Resources

Give 5G wireless technology a boost with new 2.2-5 connectors
Amphenol RF is pleased to introduce the expansion of our 2.2-5 product series. This expansion includes new plug and jack cable mount configurations designed for 0.141” conformable, RG-402, Times Tflex 402 and Belden 1673A semi-rigid cable.
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The Amphenol RF 2.2-5 Product Data Sheet highlights the 2.2-5 connector series, designed for high-performance RF applications requiring compact size, low PIM, and superior electrical performance. This connector series is engineered to support high-frequency, low-loss signal transmission, making it ideal for 5G networks, small cells, and distributed antenna systems (DAS). With a rugged, weatherproof design, these connectors ensure reliable performance in harsh environments while maintaining ease of installation through various coupling mechanisms, including threaded, push-pull, and hand-screw options.
2.2-5 Connector Series
The Amphenol RF 2.2-5 Product Data Sheet highlights the 2.2-5 connector series, designed for high-performance RF applications requiring compact size, low PIM, and superior electrical performance. This connector series is engineered to support high-frequency, low-loss signal transmission, making it ideal for 5G networks, small cells, and distributed antenna systems (DAS). With a rugged, weatherproof design, these connectors ensure reliable performance in harsh environments while maintaining ease of installation through various coupling mechanisms, including threaded, push-pull, and hand-screw options.
Read More
The document "Passive Intermodulation Distortion in Connectors, Cable and Cable Assemblies" by David Weinstein of Amphenol Corporation discusses the causes, impacts, and measurement of Passive Intermodulation Distortion (PIM) in RF components. It explains how PIM is generated by non-linear mixing in passive devices like connectors and cables, causing unwanted signals that can interfere with communication systems. The paper outlines design guidelines to minimize PIM, including contact design, material choices and cleanliness, and describes testing methods to ensure low PIM performance​​.
White Paper: Passive Intermodulation Distortion
The document "Passive Intermodulation Distortion in Connectors, Cable and Cable Assemblies" by David Weinstein of Amphenol Corporation discusses the causes, impacts, and measurement of Passive Intermodulation Distortion (PIM) in RF components. It explains how PIM is generated by non-linear mixing in passive devices like connectors and cables, causing unwanted signals that can interfere with communication systems. The paper outlines design guidelines to minimize PIM, including contact design, material choices and cleanliness, and describes testing methods to ensure low PIM performance​​.
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