| RFTYT DC-6GHz Lege PIM-terminaasje | |||||||||
| Krêft | Ferbiningstype | Frekwinsjeberik | Impedânsje (Ω) | VSWR maks | PIM (dBc@2*43dBm) | Wetterdichte klasse | Diminsjegrutte (mm) | Gegevensblêd M Type | Gegevensblêd F Type |
| 10W | N | DC-3G | 50 | 1.20 | ≥140dBc@2*33dBm | IP65 | Φ35.0*40.0 | CT10W-RX3540-IP65-NJ-3G | CT10W-RX3540-IP65-NK-3G |
| DIN | DC-3G | 50 | 1.20 | ≥140dBc@2*33dBm | IP65 | Φ35.0*40.0 | CT10W-RX3540-IP65-DINJ-3G | CT10W-RX3540-IP65-DINK-3G | |
| 5-50W | N | 0.35-4G | 50 | 1.25 | ≤-150/-155/-160 | IP65 of IP67 | Φ50.0*150.0 | CT30W-RX5015-IP65-NJ/0.35-4G | CT30W-RX5015-IP65-NK/0.35-4G |
| 0.35-6G | 50 | 1.30 | ≤-150/-155/-160 | IP65 of IP67 | Φ50.0*150.0 | CT30W-RX5015-IP65-NJ/0.35-6G | CT30W-RX5015-IP65-NK/0.35-6G | ||
| 4.3-10 | 0.35-4G | 50 | 1.25 | ≤-150/-155/-160 | IP65 of IP67 | Φ50.0*150.0 | CT30W-RX5015-IP65-4310J/0.35-4G | CT30W-RX5015-IP65-4310K/0.35-4G | |
| 0.35-6G | 50 | 1.30 | ≤-150/-155/-160 | IP65 of IP67 | Φ50.0*150.0 | CT30W-RX5015-IP65-4310J/0.35-6G | CT30W-RX5015-IP65-4310K/0.35-6G | ||
| DIN | 0.35-4G | 50 | 1.25 | ≤-150/-155/-160 | IP65 of IP67 | Φ50.0*150.0 | CT30W-RX5015-IP65-DINJ/0.35-4G | CT30W-RX5015-IP65-DINK/0.35-4G | |
| 0.35-6G | 50 | 1.30 | ≤-150/-155/-160 | IP65 of IP67 | Φ50.0*150.0 | CT30W-RX5015-IP65-DINJ/0.35-6G | CT30W-RX5015-IP65-DINK/0.35-6G | ||
| 50W | N | DC-3G | 50 | 1.20 | ≤-120 | IP65 of IP67 | 60.0*60.0*80.0 | CT50W-FH6080-IP65-NJ-3G | CT50W-FH6080-IP65-NK-3G |
| DIN | DC-3G | 50 | 1.20 | ≤-120 | IP65 of IP67 | 60.0*60.0*80.0 | CT50W-FH6080-IP65-DINJ-3G | / | |
| 100W | N | 0.35-4G | 50 | 1.25 | ≤-150/-155/-160 | IP65 of IP67 | Φ83.0*150.0 | CT100W-RX8315-IP65-NJ/0.35-4G | CT100W-RX8315-IP65-NK/0.35-4G |
| 0.35-6G | 50 | 1.30 | ≤-150/-155/-160 | IP65 of IP67 | Φ83.0*150.0 | CT100W-RX8315-IP65-NJ/0.35-6G | CT100W-RX8315-IP65-NK/0.35-6G | ||
| 4.3-10 | 0.35-4G | 50 | 1.25 | ≤-150/-155/-160 | IP65 of IP67 | Φ83.0*150.0 | CT100W-RX8315-IP65-4310J/0.35-4G | CT100W-RX8315-IP65-4310K/0.35-4G | |
| 0.35-6G | 50 | 1.30 | ≤-150/-155/-160 | IP65 of IP67 | Φ83.0*150.0 | CT100W-RX8315-IP65-4310J/0.35-6G | CT100W-RX8315-IP65-4310K/0.35-6G | ||
| DIN | 0.35-4G | 50 | 1.25 | ≤-150/-155/-160 | IP65 of IP67 | Φ83.0*150.0 | CT100W-RX8315-IP65-DINJ/0.35-4G | CT100W-RX8315-IP65-DINK/0.35-4G | |
| 0.35-6G | 50 | 1.30 | ≤-150/-155/-160 | IP65 of IP67 | Φ83.0*150.0 | CT100W-RX8315-IP65-DINJ/0.35-6G | CT100W-RX8315-IP65-DINK/0.35-6G | ||
| 200W | N | 0.35-4G | 50 | 1.25 | ≤-150/-155/-160 | IP65 of IP67 | Φ83.0*150.0 | CT200W-RX1720-IP65-NJ/0.35-4G | CT200W-RX1720-IP65-NK/0.35-4G |
| 0.35-6G | 50 | 1.30 | ≤-150/-155/-160 | IP65 of IP67 | Φ83.0*150.0 | CT200W-RX1720-IP65-NJ/0.35-6G | CT200W-RX1720-IP65-NK/0.35-6G | ||
| 4.3-10 | 0.35-4G | 50 | 1.25 | ≤-150/-155/-160 | IP65 of IP67 | Φ83.0*150.0 | CT200W-RX1720-IP65-4310J/0.35-4G | CT200W-RX1720-IP65-4310K/0.35-4G | |
| 0.35-6G | 50 | 1.30 | ≤-150/-155/-160 | IP65 of IP67 | Φ83.0*150.0 | CT200W-RX1720-IP65-4310J/0.35-6G | CT200W-RX1720-IP65-4310K/0.35-6G | ||
| DIN | 0.35-4G | 50 | 1.25 | ≤-150/-155/-160 | IP65 of IP67 | Φ83.0*150.0 | CT200W-RX1720-IP65-DINJ/0.35-4G | CT200W-RX1720-IP65-DINK/0.35-4G | |
| 0.35-6G | 50 | 1.30 | ≤-150/-155/-160 | IP65 of IP67 | Φ83.0*150.0 | CT200W-RX1720-IP65-DINJ/0.35-6G | CT200W-RX1720-IP65-DINK/0.35-6G | ||
De koaksiale lading wurdt gearstald troch ferbiningen, waarmteôffierders en ynboude wjerstânschips. Neffens ferskate frekwinsjes en krêften brûke ferbiningen typysk typen lykas 2.92, SMA, N, DIN, 4.3-10, ensfh. De waarmteôffierder is ûntworpen mei oerienkommende waarmteôffierôfmjittings neffens de waarmteôffiereasken fan ferskate krêftgrutte. De ynboude chip brûkt ien chip of meardere chipsets neffens ferskate frekwinsje- en krêfteasken.
It wichtichste doel is om de krêft fan radiofrekwinsje- of mikrogolfsystemen te absorbearjen; Of as in dummy-load foar antennes en stjoerderterminals. 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).
De koaksiale ladingsearjeprodukten hawwe de skaaimerken fan in brede wurkfrekwinsjebân, lege steande golfkoëffisjint, hege krêft, lytse grutte en net maklik te ferbaarnen.