Prinsip kerja isolator pandu gelombang adhedhasar transmisi medan magnet asimetris.Nalika sinyal lumebu ing garis transmisi waveguide saka siji arah, materi Magnetik bakal nuntun sinyal kanggo ngirim menyang arah liyane.Amarga kasunyatan manawa bahan magnetik mung tumindak ing sinyal ing arah tartamtu, isolator pandu gelombang bisa entuk transmisi sinyal unidirectional.Kangge, amarga sifat khusus saka struktur waveguide lan pengaruh bahan magnetik, isolator waveguide bisa entuk isolasi dhuwur lan nyegah bayangan sinyal lan gangguan.
Isolator Waveguide duwe sawetara kaluwihan.Kaping pisanan, nduweni mundhut sisipan sing sithik lan bisa nyuda atenuasi sinyal lan mundhut energi.Kapindho, isolator waveguide duwe isolasi dhuwur, sing bisa misahake sinyal input lan output kanthi efektif lan ngindhari gangguan.Kajaba iku, isolator pandu gelombang duwe ciri broadband lan bisa ndhukung macem-macem frekuensi lan syarat bandwidth.Uga, isolator waveguide tahan kanggo daya dhuwur lan cocok kanggo aplikasi daya dhuwur.
Isolator Waveguide digunakake ing macem-macem sistem RF lan gelombang mikro.Ing sistem komunikasi, isolator pandu gelombang digunakake kanggo ngisolasi sinyal antarane piranti ngirim lan nampa, nyegah gema lan gangguan.Ing sistem radar lan antena, isolator pandu gelombang digunakake kanggo nyegah refleksi sinyal lan gangguan, ningkatake kinerja sistem.Kajaba iku, isolator pandu gelombang uga bisa digunakake kanggo aplikasi tes lan pangukuran, kanggo analisis sinyal lan riset ing laboratorium.
Nalika milih lan nggunakake isolator waveguide, perlu kanggo nimbang sawetara paramèter penting.Iki kalebu rentang frekuensi operasi, sing mbutuhake milih rentang frekuensi sing cocok;Tingkat isolasi, njamin efek isolasi sing apik;mundhut selipan, nyoba kanggo milih piranti mundhut kurang;Kapabilitas pangolahan daya kanggo nyukupi syarat daya sistem.Miturut syarat aplikasi tartamtu, macem-macem jinis lan spesifikasi isolator pandu gelombang bisa dipilih.
Spesifikasi Isolator Waveguide RFTYT 4.0-46.0G | |||||||||
Model | Range Frekuensi(GHz) | Bandwidth(MHz) | Lebokake mundhut(dB) | Isolasi(dB) | VSWR | ukuranW×L× Hmm | Pandhu ombakMode | ||
BG8920-WR187 | 10% | 0.25 | 23 | 1.15 | 200 | 88.9 | 63.5 | WR187 | |
4.0-6.0 | 20% | 0.3 | 20 | 1.2 | 200 | 88.9 | 63.5 | WR187 | |
BG6816-WR137 | 5.4-8.0 | 20% | 0.3 | 23 | 1.2 | 160 | 68.3 | 49.2 | WR137 |
BG5010-WR137 | 6.8-7.5 | kebak | 0.3 | 20 | 1.25 | 100 | 50 | 49.2 | WR137 |
BG3676-WR112 | 7.0-10.0 | 10% | 0.3 | 23 | 1.2 | 76 | 36 | 48 | WR112 |
7.4-8.5 | kebak | 0.3 | 23 | 1.2 | 76 | 36 | 48 | WR112 | |
7.9-8.5 | kebak | 0.25 | 25 | 1.15 | 76 | 36 | 48 | WR112 | |
BG2851-WR90 | 8.0-12.4 | 5% | 0.3 | 23 | 1.2 | 51 | 28 | 42 | WR90 |
8.0-12.4 | 10% | 0.4 | 20 | 1.2 | 51 | 28 | 42 | WR90 | |
BG4457-WR75 | 10.0-15.0 | 500 | 0.3 | 23 | 1.2 | 57.1 | 44.5 | 38.1 | WR75 |
10.7-12.8 | kebak | 0.25 | 25 | 1.15 | 57.1 | 44.5 | 38.1 | WR75 | |
10.0-13.0 | kebak | 0.40 | 20 | 1.25 | 57.1 | 44.5 | 38.1 | WR75 | |
BG2552-WR75 | 10.0-15.0 | 5% | 0.25 | 25 | 1.15 | 52 | 25 | 38 | WR75 |
10% | 0.3 | 23 | 1.2 | ||||||
BG2151-WR62 | 12.0-18.0 | 5% | 0.3 | 25 | 1.15 | 51 | 21 | 33 | WR62 |
10% | 0.3 | 23 | 1.2 | ||||||
BG1348-WR90 | 8.0-12.4 | 200 | 0.3 | 25 | 1.2 | 48.5 | 12.7 | 42 | WR90 |
300 | 0.4 | 23 | 1.25 | ||||||
BG1343-WR75 | 10.0-15.0 | 300 | 0.4 | 23 | 1.2 | 43 | 12.7 | 38 | WR75 |
BG1338-WR62 | 12.0-18.0 | 300 | 0.3 | 23 | 1.2 | 38.3 | 12.7 | 33.3 | WR62 |
500 | 0.4 | 20 | 1.2 | ||||||
BG4080-WR75 | 13.7-14.7 | kebak | 0.25 | 20 | 1.2 | 80 | 40 | 38 | WR75 |
BG1034-WR140 | 13.9-14.3 | kebak | 0.5 | 21 | 1.2 | 33.9 | 10 | 23 | WR140 |
BG3838-WR140 | 15.0-18.0 | kebak | 0.4 | 20 | 1.25 | 38 | 38 | 33 | WR140 |
BG2660-WR28 | 26.5-31.5 | kebak | 0.4 | 20 | 1.25 | 59.9 | 25.9 | 22.5 | WR28 |
26.5-40.0 | kebak | 0.45 | 16 | 1.4 | 59.9 | 25.9 | 22.5 | ||
BG1635-WR28 | 34.0-36.0 | kebak | 0.25 | 18 | 1.3 | 35 | 16 | 19.1 | WR28 |
BG3070-WR22 | 43.0-46.0 | kebak | 0.5 | 20 | 1.2 | 70 | 30 | 28.6 | WR22 |