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7/16 RF Connectors

7/16 RF Connector

RF Connectors > 7/16 RF Connectors

Description

The 7/16 series name drives from the metric dimensions of the connector interface: 7mm OD of inner contact, 16 mm ID of outer contact. 7/16 connectors are designed for use in communications systems with power levels of 100 watts per channel. Long popular in Europe, the 7/16 interface has gained acceptance in the U.S. for its ability to operate at elevated power levels.

Deutsh Industries Norm (DIN) is an acronym for German standards that apply to 7/16 connectors and are gaining acceptance worldwide. There are three families of 7/16 DIN connectors: corrugated cable (both Annular and Superflex), standard cable connectors, and custom.

RF coaxial connectors are the most important element in the cable system. Corrugated copper coaxial cables have the potential to deliver all the performance your system requires, but they are often limited by the performance of the connectors. Corrugated connectors have been designed from the ground up to deliver optimum performance, while retaining ease of installation. Inter-modulation distortion, a major concern in today’s communications systems, is consistently low with these connectors. Typical performance is -125 dBm (-168 dBc).

Features & Benefits

  • Low IMD and low VSWR provides improved system performance.
  • Self-flaring design ensures ease of installation with standard hand tool.
  • Pre-assembled gasket protects against dust (P68) and water (IP68) per IEC 169.
  • Limited internal junctions reduce sources of IMD.
  • Silver-plated contacts and silver or white bronze-plated bodies deliver a high conductivity and corrosion resistance for a long, trouble-free life.
  • Easy-Hex coupling nut allows tightening by hand or with a standard wrench for ease of mating.

Applications

  • Antennas
  • Base Stations
  • Broadcast
  • Cable Assembly
  • Components (Control)
  • Lightning Protection
  • Satellite Communications
7/16 Corrugated Cable Specifications
Impedance 50 Ω
Operating Frequency 5.20 GHz maximum
Return Loss, 3 foot assembly 30 dB @ 0.045 - 1.0 GHz
28 dB @ 1.000 - 2.0 GHz
21 dB @ 2.0 - 3.0 GHz
Dielectric Withstanding Voltage 2,300
RF Operating Voltage Maximum 813 VRMS
Peak Power Maximum 13.2 kW
Average Power Maximum 3.0 kW
Insulation Resistance 5,000 MΩ minimum
Insertion Loss Maximum 0.05vdB (Frequency in GHz)
Shielding Effectiveness 125 dB minimum
3rd Order IM product Typical, dBm (dBc) -120 (-163) (Two +43 dBm carriers, IM product @ 910 MHz)
Inner Attachment Method Captivated
Outer Attachment Method Compression
Connector Durability Test Pass (DIN 47275 part 2/10.82, section 2.10, 500 cycles)
Assembly Torque (Body to Clamp nut), lb-ft (n-m) Positive stop, 18/22 (25/30)
Coupling Torque, lb-ft (n-m) 15/20 (20/28)
Coupling Nut Retention Force 100 (445) lbs (N)
Center Contact Beryllium Copper per ASTM-B196, silver plated per QQ-S-365
Body and Outer Contacts Brass per ASTM B16, silver or white bronze
Insulator PTFE resin, ASTM D1457
Gasket Silicone rubber, ZZ-R-765
Other Metal Parts Brass per ASTMB16, silver or white bronze
Protective Coating on Silver Plate Clear Chromate
Temperature Range - 40°C to +150°C
Storage Temperature Range - 70° C to +100° C
Thermal Shock Test Pass per IEC 68, part 2-14, test N/A
Immersion Test Pass per IEC 529, IP68
Corrosion Test Pass per IEC 68, part 2-1, test Ka
Vibration Test Pass per IEC 68, part 2-6
Mechanical Shock Test Pass per IEC 68, part 2-27
7/16 Semi-Rigid & RG Cable Specifications
Impedance 50 Ω
Frequency Range 7.0 GHz maximum
Voltage Rating 2700 vrms
Dielectric Withstanding Voltage 4000 vrms
VSWR 1.3 maximum @ 0 - 7.0 GHz
Insulation Resistance 5000 M ? minimum
Mating M29×1.5 threaded coupling
Captivated Contact All configurations unless uncaptivated
Body & Outer Contact Brass with silver or white bronze plating
Female Contacts Beryllium copper with silver plating
Other Metal Parts Brass with silver or white bronze plating
Insulators PTFE
Weatherproof Gaskets Silicone rubber
Temperature Range - 40°C to +150°C
Thermal Shock Pass per IEC 68, part 2-14, test Na
Corrosion Pass per IEC 68, part 2-1, test Ka
Vibration Pass per IEC 68, part 2-6