| Isolator Koaksial RF Dual / Multi Junction RFTYT 60MHz-18.0GHz | ||||||||||
| Model | Rentang Frekuensi | Bandwidth (maks) | Kerugian Penyisipan (dB) | Isolasi (dB) | VSWR (maks) | Daya Maju (W) | Daya Balik (W) | Dimensi 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 | Kebak | 1.4 | 35 | 1.40 | 150 | 100 | 145.2*66.0*26.0 | PDF SMA | / |
| TG6434A | 2.0-4.0GHz | Kebak | 1.2 | 36 | 1.30 | 100 | 10-100 | 64.0*34.0*21.0 | PDF SMA | / |
| TG5028C | 3.0-6.0GHz | Kebak | 1.0 | 40 | 1.25 | 100 | 10-100 | 50.8*28.0*14.0 | PDF SMA | PDF N |
| TG4223B | 4.0-8.0GHz | Kebak | 1.2 | 34 | 1.35 | 30 | 10 | 42.0*22.5*15.0 | PDF SMA | / |
| TG2619C | 8.0-12.0GHz | Kebak | 1.0 | 36 | 1.30 | 30 | 10 | 26.0*19.0*12.7 | PDF SMA | / |
| Isolator Drop-in RF RFTYT 60MHz-18.0GHz Dual / Multi Junction | ||||||||||
| Model | Rentang Frekuensi | Bandwidth (maks) | Kerugian Penyisipan (dB) | Isolasi (dB) | VSWR (maks) | Daya Maju (W) | Daya Balik (W) | Dimensi 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 | Kebak | 1.2 | 36 | 1.30 | 100 | 10-100 | 64.0*34.0*21.0 | / | |
| WG5028C | 3.0-6.0GHz | Kebak | 1.0 | 40 | 1.25 | 100 | 10-100 | 50.8*28.0*14.0 | / | |
| WG4223B | 4.0-8.0GHz | Kebak | 1.2 | 34 | 1.35 | 30 | 10 | 42.0*22.5*15.0 | / | |
| WG2619C | 8.0 - 12.0 GHz | Kebak | 1.0 | 36 | 1.30 | 30 | 5-30 | 26.0*19.0*13.0 | / | |
Salah sawijining ciri utama isolator sambungan ganda yaiku isolasi, sing nuduhake tingkat isolasi sinyal antarane port input lan port output. Biasane, isolasi diukur ing (dB), lan isolasi sing dhuwur tegese isolasi sinyal sing luwih apik. Isolasi isolator sambungan ganda biasane bisa tekan puluhan desibel utawa luwih. Mesthi wae, nalika isolasi mbutuhake wektu sing luwih suwe, isolator multi-sambung uga bisa digunakake.
Parameter penting liyané saka isolator sambungan ganda yaiku kerugian penyisipan (Insertion Loss), sing nuduhake kerugian sinyal saka port input menyang port output. Kerugian penyisipan sing luwih murah tegese sinyal bisa lelungan kanthi luwih efisien liwat isolator. Isolator sambungan ganda umume duwe kerugian penyisipan sing sithik banget, biasane ing ngisor sawetara desibel.
Kajaba iku, isolator sambungan ganda uga nduweni rentang frekuensi lan kemampuan penanganan daya sing amba. Isolator sing beda-beda bisa diterapake ing pita frekuensi sing beda-beda, kayata pita frekuensi gelombang mikro (0,3 GHz - 30 GHz) lan pita frekuensi gelombang milimeter (30 GHz - 300 GHz). Ing wektu sing padha, isolator iki bisa tahan tingkat daya sing cukup dhuwur, wiwit saka sawetara watt nganti puluhan watt.
Desain lan pabrikasi isolator sambungan ganda mbutuhake pertimbangan saka akeh faktor kayata rentang frekuensi operasi, syarat isolasi, kerugian penyisipan, kendala ukuran, lan liya-liyane. Biasane, insinyur nggunakake simulasi medan elektromagnetik lan metode optimasi kanggo nemtokake struktur lan parameter sing cocog. Proses pabrikasi isolator sambungan ganda biasane nglibatake teknik mesin lan perakitan sing canggih kanggo njamin keandalan lan kinerja piranti.
Sakabèhé, isolator sambungan ganda minangka piranti pasif penting sing akèh digunakaké ing sistem gelombang mikro lan milimeter kanggo ngisolasi lan nglindhungi sinyal saka pantulan lan gangguan bebarengan. Piranti iki nduwèni ciri isolasi sing dhuwur, kerugian penyisipan sing sithik, rentang frekuensi sing amba, lan kapasitas penanganan daya sing dhuwur, sing nduwèni dampak penting marang kinerja lan stabilitas sistem. Kanthi perkembangan komunikasi nirkabel lan teknologi radar sing terus-terusan, panjaluk lan riset isolator sambungan ganda bakal terus ngembang lan saya jero.