Loading products…
| Image | Part Number | Manufacturer | Description | Series | Features | RoHS Status | Manufacturer Part Number | Color | Body Material | Body Finish | For Use With/Related Products | Accessory Type |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 127-2701-612 | Bel | CONN SMP RCPT STR 50OHM COMPRESS | - | Field Replaceable, For Hermetically Sealed Pin, Smooth Bore | - | - | - | Stainless Steel | - | - | - | |
| 1-1337415-0 | Agastat Relays / TE Connectivity | CONN N PLUG STR 50 OHM SOLDER | Greenpar | - | - | - | - | Brass | Silver | - | - | |
| PCA.00.250.GTLC17 | LEMO | CONN RCPT STR 50 OHM SOLDER | 00 | - | - | - | - | Polyetheretherketone (PEEK) | - | - | - | |
| 112289 | Amphenol Connex (Amphenol RF) | CONN BNC JACK STR 75 OHM CRIMP | - | - | - | - | - | Brass | Nickel | - | - | |
| 0733280030 | Affinity Medical Technologies - a Molex company | CONN SSMB JACK R/A 50 OHM PCB | 73328 | - | - | - | - | Brass | Gold | - | - | |
| 903-598P-71S | Amphenol Connex (Amphenol RF) | CONN MINI SMB PLUG STR 75 OHM | - | - | - | - | - | Brass | Nickel | - | - | |
| 902-9046 | Amphenol Connex (Amphenol RF) | CONN COAX SWITCH JACK R/A 50 OHM | - | Internal Switch | - | - | - | Brass | Nickel | - | - | |
| 172224 | Amphenol Connex (Amphenol RF) | CONN N RCPT STR 50 OHM SOLDER | - | Extended Insulation | - | - | - | Brass | Nickel | - | - | |
| 142214 | Amphenol Connex (Amphenol RF) | CONN SMB PLUG R/A 50 OHM SOLDER | - | - | - | - | - | Brass | Gold | - | - | |
| FFB.0S.250.CTAC32 | LEMO | CONN COAX PLUG STR 50 OHM SOLDER | 0S | - | - | - | - | Brass | Chrome | - | - |
Coaxial RF connectors are essential components in the electronics industry, designed for connecting and transmitting radiofrequency signals. These connectors feature a coaxial cable and connectors with an inner conductor, outer conductor, and insulating material. Widely used in telecommunications, broadcasting, and aerospace applications, coaxial RF connectors provide a reliable and standardized solution for transmitting high-frequency signals while minimizing electromagnetic interference.