Original Rosenberger FAKRA 59Z114-000Z to 59Z113-000Z RF Pigtail Coaxial Cable FAKRA Z Male Plug to Female Jack Extension Cable
Original Rosenberger FAKRA 59Z114-000Z to 59Z113-000Z RF Coaxial Cable GMSL2 FAKRA Z Male to Female Extension Cable for Cameras
Description
The FAKRA Z Male Plug to Female Jack Extension Cable is a high-quality RF coaxial cable assembly that provides a high-performance and reliable connectivity solution for camera systems, radar systems, GPS navigation systems, advanced driver assistance systems (ADAS), antenna systems, and other high-frequency applications. It not only ensures stable RF signal transmission but also offers exceptional durability and long-term reliability.
Specification
Connector 1: FAKRA Male Connector, Z Code, Rosenberger 59Z114-000-Z
Connector 2: FAKRA Female Connector, Z Code, Rosenberger 59Z113-000-Z
DWG No.: PCM-ZC-0001-X
Connector Color: Water Blue / 5021
Cable Length: 0.5m, 1m, 2m
Wire: LEONI Dacar 302-4 Coax Cable
Electrical Impedance: 50 Ohm Nominal
Frequency Range: DC - 6GHz
Temperature Range: -40°C to +105°C
Features
1. High-Frequency Data Transmission: The FAKRA Z Male to Female RF Coaxial Extension Cable supports frequencies up to 6 GHz, making it suitable for in-vehicle infotainment systems, GPS navigation systems, camera systems, wireless communication systems, and other applications where secure and stable high-frequency signal transmission is required.
2. Wide Temperature Range: The GMSL2 FAKRA Cable for Cameras is designed to withstand a wide temperature range, from -40°C to +105°C, ensuring long-term, stable performance in extreme conditions.
3. Excellent Electrical Performance: The FAKRA Z RF Coaxial Cable adopts the high-performance LEONI DACAR 302-4 material, effectively preventing electrical interference, reducing electromagnetic interference (EMI) and radio frequency interference (RFI), and ensuring the stable transmission of high-frequency signals.
4. Stable Connection: The FAKRA connector adopts the latch-locking mechanism to ensure stable and reliable connections even under vibration or external force, reducing the risk of signal loss.