| RFTYT DC-110GHz RF koaksiale beëiniging | |||||
| Krêft | Ferbiningstype | Impedânsje (Ω) | VSWR maks | Frekwinsjeberik (GHz) & M-ferbining Gegevensblêd | Frekwinsjeberik (GHz) en F-ferbining Gegevensblêd |
| 1W | 1.0 | 50Ω | 1.50 | 110G-M | 110G-F |
| 1.35 | 50Ω | 1.60 | 90G-M | / | |
| 2W | 1.85 | 50Ω | 1.30 | 67G-M | 67G-F |
| 2.4 | 50Ω | 1.20 | 50G-M | 50G-F | |
| 2.92 | 50Ω | 1.20 | 40G-M | 40G-F | |
| SMP | 50Ω | 1.30 | 40G-M | 40G-F | |
| SMA | 50Ω | 1.35 | 3G 4G 6G 8G 10G 12.4G 18G | 3G 4G 6G 8G 10G 12.4G 18G | |
| N | 50Ω | 1.40 | 3G 4G 6G 8G 10G 12.4G 18G | 3G 4G 6G 8G 10G 12.4G 18G | |
| 4.3-10 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| DIN, N29, 7/16 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| 5W | 2.92 | 50Ω | 1.25 | 40G-M | 40G-F |
| SMP | 50Ω | 1.30 | 18G-M | 18G-F | |
| SMA | 50Ω | 1.30 | 3G 4G 6G 8G 10G 12.4G 18G | 3G 4G 6G 8G 10G 12.4G 18G | |
| N | 50Ω | 1.20 | 3G 4G 6G 8G 10G 12.4G 18G | 3G 4G 6G 8G 10G 12.4G 18G | |
| 4.3-10 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| DIN, N29, 7/16 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| 10W | 1.85 | 50Ω | 1.40 | 67G-M | 67G-F |
| 2.4 | 50Ω | 1.40 | 50G-M | 50G-F | |
| SMP | 50Ω | 1.30 | 18G-M | 18G-F | |
| SMA | 50Ω | 1.25 | 3G 4G 6G 8G 10G 12.4G 18G | 3G 4G 6G 8G 10G 12.4G 18G | |
| N | 50Ω | 1.20 | 3G 4G 6G 8G 10G 12.4G 18G | 3G 4G 6G 8G10G 12.4G 18G | |
| 4.3-10 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| DIN, N29, 7/16 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| 20W | 2.92 | 50Ω | 1.30 | 40G-M | 40G-F |
| SMA | 50Ω | 1.30 | 3G 4G 6G 8G 10G 12.4G 18G | 3G 4G 6G 8G 10G 12.4G 18G | |
| N | 50Ω | 1.20 | 3G 4G 6G 8G 10G 12.4G 18G | 3G 4G 6G 8G 10G 12.4G 18G | |
| 4.3-10 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| DIN, N29, 7/16 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| 30W | 2.92 | 50Ω | 1.30 | 40G-M | 40G-F |
| SMA | 50Ω | 1.30 | 3G 4G 6G 8G 10G 12.4G 18G | 3G 4G 6G 8G 10G 12.4G 18G | |
| N | 50Ω | 1.20 | 3G 4G 6G 8G 10G 12.4G 18G | 3G 4G 6G 8G 10G 12.4G 18G | |
| 4.3-10 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| DIN, N29, 7/16 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| 50W | SMA | 50Ω | 1.20 | 3G 4G 6G 8G 10G 12.4G 18G | 3G 4G 6G 8G 10G 12.4G 18G |
| N | 50Ω | 1.20 | 3G 4G 6G 8G 10G 12.4G 18G | 3G 4G 6G 8G 10G 12.4G 18G | |
| 4.3-10 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| DIN, N29, 7/16 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| 100W | SMA | 50Ω | 1.35 | 3G 4G 6G 8G 10G 12.4G 18G | 3G 4G 6G 8G 10G 12.4G 18G |
| N | 50Ω | 1.45 | 3G 4G 6G 8G 10G 12.4G 18G | 3G 4G 6G 8G 10G 12.4G 18G | |
| 4.3-10 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| DIN, N29, 7/16 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| 150ΩW | N | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G |
| 4.3-10 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| DIN, N29, 7/16 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| 200W | N | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G |
| 4.3-10 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| DIN, N29, 7/16 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| 300W | N | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G |
| 4.3-10 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| DIN, N29, 7/16 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| 500W | N | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G |
| 4.3-10 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| DIN, N29, 7/16 | 50Ω | 1.30 | 3G 4G 6G | 3G 4G 6G | |
| 1000W | N | 50Ω | 1.30 | 1G 2G 3G 4G | 1G 2G 3G 4G |
| DIN, N29, 7/16 | 50Ω | 1.30 | 1G 2G 3G 4G | 1G 2G 3G 4G | |
RF Koaksiale Fêste Beëiniging wurdt ek wol Dummy Load neamd, in mikrogolfpassyf ienpoarte-apparaat dat in soad brûkt wurdt yn mikrogolfcircuits en mikrogolfapparatuer. It wichtichste doel is om de krêft fan radiofrekwinsje- of mikrogolfsystemen te absorbearjen; Of as in dummy load foar antennes en stjoerterminals. Yn guon RF-tests, om sinjaalrefleksje te foarkommen en de testresultaten te beynfloedzjen, wurdt it ferbûn mei net-brûkte poarten as oerienkommende loads om poarte-enerzjy te absorbearjen. It kin ek tsjinje as in dummy load by it evaluearjen fan systeemprestaasjes fia simulearre terminals (lykas antennes).
Dummy-loads wurde gearstald út ferbiningen, waarmteôffierders en ynboude wjerstânschips. Neffens ferskate frekwinsjes en fermogen binne ferbiningen meastentiids fan typen lykas 2.92, SMA, N, DIN, 4.3-10, ensfh.
De radiator is ûntworpen mei oerienkommende waarmteôffierôfmjittings basearre op 'e waarmteôffiereasken fan ferskate krêftnivo's. De ynboude chip oannimt in inkele chip of meardere chipgroepen neffens ferskate frekwinsje- en krêfteasken.
De koaksiale fêste beëinigingssearjeprodukten hawwe de skaaimerken fan in brede wurkfrekwinsjebân, lege VSWR-koëffisjint, hege krêft, lytse grutte en net maklik út te baarnen.
Us bedriuw ûndersiket, produseart en ferkeapet benammen dummy loads mei in maksimale frekwinsje fan 110G. Wolkom klanten om oankeapen te dwaan, jo kinne ek kontakt opnimme mei ferkeap om oan te passen neffens jo applikaasjebehoeften.