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  What's new
(2009.03.26)

Industry Leading FI-JK Series
Ultra-Thin Coaxial Connector
Has Been Developed, Harness Assembly Can Pass
Through 3.0mm Diameter Hinge

FI-JK series connector

 

 

 

 


 

Along with the global trends for mobile phones of incorporating information terminal and audiovisual functions, further slimming and minimization of the phone size is accelerating. And because of the incorporation of numerous features within a small device, the demand for anti-noise performance to prevent noise interference among the functions is increasing. To meet these needs the FI-JK Series connector has been developed. The FI-JK Series connector can pass through a 3.0 mm dia. hinge, after harness assembly (connection to cable), the key feature for slimming and minimization, and has with an improved anti-noise performance.

 

:: Features

 

  • Industry leading compact plug side, can pass through 3.0 mm dia. hinge after harness assembly.
    (When using 40 pos., #44 AWG)
  • Noise-resistance characteristic is enhanced by Gold plated ground contacts on the plug and receptacle,
    not only on the sides, but also in the center of the connector.
  • Small size achieved: 1.34 mm height, 3.7 mm depth and 17.4 mm width (40 pos.)
  • Mis-mating prevention structure.
  • Applicable wire: #42, #44, and #46 AWG fine-coaxial wire
  • Receptacle is available in embossed reel compatible with automated mounting
  • Solder migration prevention structure with Nickel barrier on receptacle

:: Applicable market

 

mobile phones, small portable devices, etc.

:: General specifications

 
  1. No. of Contacts: 30, 34, 40 pos.
  2. Rated Current: AC, DC 0.25 Amps per terminal
  3. Pitch: 0.3 mm
  4. Rated Voltage: AC, DC 50 V per terminal
  5. Operating Temperature: -40 deg. C to 85 deg. C
  6. Insulation Resistance: 100 megohms min.
  7. Contact Resistance: 40 milliohms max. (initial)
  8. Dielectric Withstanding Voltage: 100 VACr.m.s. per minute
  9. Durability: 20 mating cycles
  10. Applicable Cable: #42, #44, and #46 AWG
 

 

Link to Series Information

 

 

 


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