RFTYT DC-6GHz lae PIM-beëindiging | |||||||||
Mag | Connector tipe | Freq.range | Impedansie (Ω) | VSWR maksimum | Pim (dbc@2*43dbm) | Waterdigte graad | Dimensie grootte (mm) | Gegevensblad M -tipe | Datablad F -tipe |
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 |
Etes | 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 | ||
Etes | 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 |
Etes | 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 | ||
Etes | 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 | ||
Etes | 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 |
Die koaksiale las word saamgestel deur verbindings, koelbakke en ingeboude weerstandskyfies. Volgens verskillende frekwensies en kragte gebruik verbindings tipies soorte soos 2,92, SMA, N, DIN, 4,3-10, ens. Die koelkas is ontwerp met ooreenstemmende afmetings van die hittedissipasie volgens die vereistes vir hitte-verspreiding van verskillende kraggroottes. Die ingeboude chip neem 'n enkele skyfie of veelvuldige skyfies volgens verskillende frekwensie- en kragvereistes aan.
Die hoofdoel daarvan is om die krag van radiofrekwensie of mikrogolfstelsels op te neem; Of as 'n dummy -las vir antennas en senderklemme. In sommige RF -toetse, om seinweerkaatsing te voorkom en die toetsresultate te beïnvloed, is dit aan ongebruikte poorte gekoppel as ooreenstemmende vragte om poortenergie op te neem. Dit kan ook dien as 'n dummy -las in die evaluering van stelselprestasie deur gesimuleerde terminale (soos antennas).
Die produkte van die koaksiale ladingreeks het die kenmerke van 'n wye werkfrekwensieband, 'n lae staande golfkoëffisiënt, hoë krag, klein grootte en nie maklik om te verbrand nie.