| Isolator Koaksial RF Dual / Multi Junction RFTYT 60MHz-18.0GHz | ||||||||||
| Modél | Rentang Frékuénsi | Lebar pita (maks) | Leungitna Sisipan (dB) | Isolasi (dB) | VSWR (maks) | Kakuatan Maju (W) | Daya Balik (W) | Diménsi P×L×T(mm) | SMA Lembar data | N Lembar data |
| TG12060E | 80-230MHz | 5~30% | 1.2 | 40 | 1.25 | 150 | 10-100 | 120.0*60.0*25.5 | PDF SMA | PDF N |
| TG9662H | 300-1250MHz | 5~20% | 1.2 | 40 | 1.25 | 300 | 10-100 | 96.0*62.0*26.0 | PDF SMA | PDF N |
| TG9050X | 300-1250MHz | 5~20% | 1.0 | 40 | 1.25 | 300 | 10-100 | 90.0*50.0*18.0 | PDF SMA | PDF N |
| TG7038X | 400-1850MHz | 5~20% | 0.8 | 45 | 1.25 | 300 | 10-100 | 70.0*38.0*15.0 | PDF SMA | PDF N |
| TG5028X | 700-4200MHz | 5~20% | 0.6 | 45 | 1.25 | 200 | 10-100 | 50.8*28.5*15.0 | PDF SMA | PDF N |
| TG7448H | 700-4200MHz | 5~20% | 0.6 | 45 | 1.25 | 200 | 10-100 | 73.8*48.4*22.5 | PDF SMA | PDF N |
| TG14566K | 1.0-2.0GHz | Pinuh | 1.4 | 35 | 1.40 | 150 | 100 | 145.2*66.0*26.0 | PDF SMA | / |
| TG6434A | 2.0-4.0GHz | Pinuh | 1.2 | 36 | 1.30 | 100 | 10-100 | 64.0*34.0*21.0 | PDF SMA | / |
| TG5028C | 3.0-6.0GHz | Pinuh | 1.0 | 40 | 1.25 | 100 | 10-100 | 50.8*28.0*14.0 | PDF SMA | PDF N |
| TG4223B | 4.0-8.0GHz | Pinuh | 1.2 | 34 | 1.35 | 30 | 10 | 42.0*22.5*15.0 | PDF SMA | / |
| TG2619C | 8.0-12.0GHz | Pinuh | 1.0 | 36 | 1.30 | 30 | 10 | 26.0*19.0*12.7 | PDF SMA | / |
| Isolator Drop-in RF Dual / Multi Junction RFTYT 60MHz-18.0GHz | ||||||||||
| Modél | Rentang Frékuénsi | Lebar pita (maks) | Leungitna Sisipan (dB) | Isolasi (dB) | VSWR (maks) | Kakuatan Maju (W) | Daya Balik (W) | Diménsi P×L×T(mm) | Garis strip Lembar data | |
| WG12060H | 80-230MHz | 5~30% | 1.2 | 40 | 1.25 | 150 | 10-100 | 120.0*60.0*25.5 | / | |
| WG9662H | 300-1250MHz | 5~20% | 1.2 | 40 | 1.25 | 300 | 10-100 | 96.0*48.0*24.0 | / | |
| WG9050X | 300-1250MHz | 5~20% | 1.0 | 40 | 1.25 | 300 | 10-100 | 96.0*50.0*26.5 | / | |
| WG5025X | 350-4300MHz | 5~15% | 0.8 | 45 | 1.25 | 250 | 10-100 | 50.8*25.0*10.0 | / | |
| WG7038X | 400-1850MHz | 5~20% | 0.8 | 45 | 1.25 | 300 | 10-100 | 70.0*38.0*13.0 | / | |
| WG4020X | 700-2700MHz | 5~20% | 0.8 | 45 | 1.25 | 100 | 10-100 | 40.0*20.0*8.6 | / | |
| WG4027X | 700-4000MHz | 5~20% | 0.8 | 45 | 1.25 | 100 | 10-100 | 40.0*27.5*8.6 | / | |
| WG6434A | 2.0-4.0GHz | Pinuh | 1.2 | 36 | 1.30 | 100 | 10-100 | 64.0*34.0*21.0 | / | |
| WG5028C | 3.0-6.0GHz | Pinuh | 1.0 | 40 | 1.25 | 100 | 10-100 | 50.8*28.0*14.0 | / | |
| WG4223B | 4.0-8.0GHz | Pinuh | 1.2 | 34 | 1.35 | 30 | 10 | 42.0*22.5*15.0 | / | |
| WG2619C | 8.0 - 12.0 GHz | Pinuh | 1.0 | 36 | 1.30 | 30 | 5-30 | 26.0*19.0*13.0 | / | |
Salah sahiji ciri konci isolator sambungan ganda nyaéta isolasi, anu ngagambarkeun tingkat isolasi sinyal antara port input sareng port output. Biasana, isolasi diukur dina (dB), sareng isolasi anu luhur hartosna isolasi sinyal anu langkung saé. Isolasi isolator sambungan ganda biasana tiasa ngahontal puluhan desibel atanapi langkung. Tangtosna, nalika isolasi meryogikeun waktos anu langkung lami, isolator multi-sambungan ogé tiasa dianggo.
Parameter penting anu sanés tina isolator sambungan ganda nyaéta leungitna sisipan (Insertion Loss), anu nujul kana leungitna sinyal ti port input ka port output. Karugian sisipan anu langkung handap hartosna sinyal tiasa ngarambat langkung efisien ngalangkungan isolator. Isolator sambungan ganda umumna gaduh leungitna sisipan anu handap pisan, biasana di handap sababaraha desibel.
Salian ti éta, isolator sambungan ganda ogé gaduh rentang frékuénsi anu lega sareng kamampuan penanganan daya. Isolator anu béda-béda tiasa diterapkeun dina pita frékuénsi anu béda-béda, sapertos pita frékuénsi gelombang mikro (0,3 GHz - 30 GHz) sareng pita frékuénsi gelombang milimeter (30 GHz - 300 GHz). Dina waktos anu sami, éta tiasa nahan tingkat daya anu lumayan luhur, mimitian ti sababaraha watt dugi ka puluhan watt.
Desain sareng pabrikasi isolator sambungan ganda meryogikeun pertimbangan seueur faktor sapertos rentang frékuénsi operasi, sarat isolasi, leungitna sisipan, kendala ukuran, jsb. Biasana, insinyur nganggo simulasi médan éléktromagnétik sareng metode optimasi pikeun nangtukeun struktur sareng parameter anu cocog. Prosés pabrikasi isolator sambungan ganda biasana ngalibatkeun téknik mesin sareng perakitan anu canggih pikeun mastikeun reliabilitas sareng kinerja alat.
Sacara umum, isolator sambungan ganda mangrupikeun alat pasif anu penting anu seueur dianggo dina sistem gelombang mikro sareng gelombang milimeter pikeun ngasingkeun sareng ngajaga sinyal tina pantulan sareng gangguan silih. Éta ngagaduhan ciri isolasi anu luhur, leungitna sisipan anu handap, rentang frékuénsi anu lega sareng kapasitas penanganan daya anu luhur, anu gaduh dampak anu penting kana kinerja sareng stabilitas sistem. Kalayan pamekaran komunikasi nirkabel sareng téknologi radar anu terus-terusan, paménta sareng panalungtikan isolator sambungan ganda bakal teras ngalegaan sareng ngajero.