HCJT4-812SK 8P8C Shielded Ganged 1x4 Quad Port Tab-Up RJ45 JACK

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  • HCJT4-812SK 8P8C Shielded Ganged 1x4 Quad Port Tab-Up RJ45 JACK
  • HCJT4-812SK 8P8C Shielded Ganged 1x4 Quad Port Tab-Up RJ45 JACK
  • HCJT4-812SK 8P8C Shielded Ganged 1x4 Quad Port Tab-Up RJ45 JACK
  • HCJT4-812SK 8P8C Shielded Ganged 1x4 Quad Port Tab-Up RJ45 JACK

PRODUCTS DETAILS

HCJT4-812SK 8P8C Shielded Ganged 1x4 Quad Port Tab-Up RJ45 JACK RJ45 JACK 4  Port
Categories  Connectors, Interconnects
 Modular Connectors - Jacks
Application-LAN  ETHERNET(NoN POE)
Connector Type  RJ45
Number of Positions/Contacts  8p8c
Number of Ports  1x4
Applications Speed  RJ45 Without Magnetics
Mounting Type  Through Hole
Orientation  90° Angle (Right)
Termination  Solder
Height Above Board  13.40 mm
LED Color  Without LED
Shielding  Shielded, EMI Finger
Features  Board Guide
Tab Direction  UP
Contact Material  Phosphor Bronze
Packaging  Tray
Operating Temperature  -40°C ~ 85°C
Contact Material Plating Thickness  Gold 6.00µin/15.00µin/30.00µin/50.00µin
Shield Material  Brass
Housing Material  Thermoplastic
RoHS Compliant  YES-RoHS-5 WIth Lead in Solder Exemption
  RJ connector function use: power use RJ connector is necessary to transmit power. Generally, its voltage is very low. Generally used are the following two power transmission methods: dedicated to high-level current power touch transmission and parallel multilateral signal touch. Each of them has advantages and disadvantages. There are two differences between power transmission and signal transmission. The first and most notable one is that it is used to deliver higher currents. The current transmitted by the signal generally does not exceed 1 ampere, and does not exceed a few amperes, while the current transmitted by the power can reach tens or even hundreds of amperes. The second is the temperature increase due to Joule heating caused by the current. The Joule heat generated during the signal touch process is similar to the surrounding temperature. Conversely, the ratio of power transmission is based on the addition of temperature, and the increase of temperature generates a corresponding ratio current. The addition of a temperature of 30 degrees is generally used as a current ratio specification.    

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