1.0-2.3 Straight Crimp Jack RG-174 RG-188 RG-316 Times LMR-100A 50 Ohm

1.0-2.3 Straight Crimp Jack RG-174 RG-188 RG-316 Times LMR-100A 50 Ohm

282104
Part Status: Active
Product Specifications

Product Specifications

Attributes Details See Similar
Select the attributes below to view similar products
Body Finish
Gold
Body Material
Brass
Cable Group
B
Cable Type (Terminates To)
RG-174, RG-188, RG-316, Times LMR-100A, Belden 7805A, Belden 8216, Belden 83269, Belden 83284, Belden 84316, Times RG-174LL, Shikoku 1.5DS-QFB-TA, Sumitomo 1.5DS-GXC-SP, Leoni DACAR 462, Leoni DACAR 462-2
Contact Finish
Gold
Contact Material
Beryllium Copper
Contact Termination
Solder
Country of Origin
CN
Coupling Mechanism
Push-Pull
ECCN
EAR99
Frequency (Max GHz)
10
Gender
Jack
HTS Code
8536.69.4010
Impedance (Ohms)
50
Insulator Material
PTFE
IP Rating
Not Rated
Isolated
No
Low PIM
No
Mating Cycles (Min)
500
Mil Qualified
Not Mil Qualified
Non Magnetic
Contains Magnetic Materials
Orientation
Straight
Panel Mounting Feature
Not Applicable
PFAS
Contains PFAS
Ports
1 (Single Port)
Size Category
Miniature
Temp (Max Degrees Celsius)
165
Temp (Min Degrees Celsius)
-65
Termination Style
Cable - Crimp
See Similar
All Related Documents

All Related Documents

Document Title Type Publish Date
Assembly Instructions 3 Piece Crimp-Solder (Size: 44.1 KB)
pdf
12/14/2022
282104 PDF Customer Drawing (Size: 33.9 KB)
pdf
7/22/2019

Related Resources

The "High-Density Broadcast Solutions" document from Amphenol RF highlights their range of RF interconnects designed for broadcast connectivity, including BNC, Mini-BNC, 1.0/2.3 DIN, and HD-BNC connectors. These connectors offer various impedances and frequency ranges, with HD-BNC providing the highest density at an 8mm pitch and supporting data rates up to 12 Gb/s. Applications include high-definition transmission, video routing, mobile broadcast equipment, and digital signage, ensuring reliable performance and reduced equipment size without compromising signal integrity​​.
High Density Broadcast Solutions
The "High-Density Broadcast Solutions" document from Amphenol RF highlights their range of RF interconnects designed for broadcast connectivity, including BNC, Mini-BNC, 1.0/2.3 DIN, and HD-BNC connectors. These connectors offer various impedances and frequency ranges, with HD-BNC providing the highest density at an 8mm pitch and supporting data rates up to 12 Gb/s. Applications include high-definition transmission, video routing, mobile broadcast equipment, and digital signage, ensuring reliable performance and reduced equipment size without compromising signal integrity​​.
Read More
The "High Density Interconnect Standards for Next Generation Broadcast Networks" paper discusses the HD-BNC connector, designed to meet modern broadcast systems' demands for higher density and performance. HD-BNC offers significant density improvements over traditional BNC connectors, with a 75 ohm interface optimized for high bandwidth up to 6 GHz. It maintains robustness and user-friendly bayonet-style mating, providing better mechanical and RF performance than other high-density alternatives like 1.0/2.3 and Mini-BNC. The HD-BNC's design ensures compatibility with industry-standard tools and cables, making it a superior choice for next-generation broadcast applications​​.
White Paper: High Density Interconnect Standards
The "High Density Interconnect Standards for Next Generation Broadcast Networks" paper discusses the HD-BNC connector, designed to meet modern broadcast systems' demands for higher density and performance. HD-BNC offers significant density improvements over traditional BNC connectors, with a 75 ohm interface optimized for high bandwidth up to 6 GHz. It maintains robustness and user-friendly bayonet-style mating, providing better mechanical and RF performance than other high-density alternatives like 1.0/2.3 and Mini-BNC. The HD-BNC's design ensures compatibility with industry-standard tools and cables, making it a superior choice for next-generation broadcast applications​​.
Read More

Send us a Message

Please fill in the form below and we will contact you very soon.

Fields marked with an asterisk (*) are required.