Prinsip gawé isolator waveguide dumasar kana transmisi asimétri médan magnét.Nalika sinyal asup kana jalur transmisi waveguide ti hiji arah, bahan magnét bakal pituduh sinyal pikeun ngirimkeun ka arah séjén.Alatan kanyataan yén bahan magnét ukur meta dina sinyal dina arah husus, isolator waveguide bisa ngahontal transmisi unidirectional sinyal.Samentara éta, alatan sipat husus tina struktur waveguide jeung pangaruh bahan magnét, nu waveguide isolator bisa ngahontal isolasi tinggi jeung nyegah pantulan sinyal jeung gangguan.
Isolator Waveguide gaduh sababaraha kaunggulan.Anu mimiti, éta kaleungitan sisipan anu rendah sareng tiasa ngirangan atenuasi sinyal sareng leungitna énergi.Bréh, isolator pandu gelombang gaduh isolasi anu luhur, anu sacara efektif tiasa misahkeun sinyal input sareng kaluaran sareng ngahindarkeun gangguan.Salaku tambahan, isolator pandu gelombang gaduh ciri pita lebar sareng tiasa ngadukung sajumlah syarat frékuénsi sareng bandwidth.Ogé, isolator waveguide tahan kana kakuatan tinggi sareng cocog pikeun aplikasi kakuatan tinggi.
Isolator Waveguide seueur dianggo dina sababaraha sistem RF sareng gelombang mikro.Dina sistem komunikasi, isolator pandu gelombang dipaké pikeun ngasingkeun sinyal antara alat nu ngirim jeung nu narima, nyegah gema jeung gangguan.Dina sistem radar sareng anteneu, isolator pandu gelombang dianggo pikeun nyegah pantulan sinyal sareng gangguan, ningkatkeun kinerja sistem.Salaku tambahan, isolator pandu gelombang ogé tiasa dianggo pikeun nguji sareng aplikasi pangukuran, pikeun analisa sinyal sareng panalungtikan di laboratorium.
Nalika milih sareng nganggo isolator waveguide, perlu mertimbangkeun sababaraha parameter penting.Ieu ngawengku rentang frékuénsi operasi, nu merlukeun milih rentang frékuénsi merenah;gelar isolasi, mastikeun éfék isolasi alus;Leungitna sisipan, cobian milih alat leungitna anu handap;Kamampuh ngolah kakuatan pikeun nyumponan sarat kakuatan sistem.Numutkeun syarat aplikasi husus, tipena béda jeung spésifikasi isolator waveguide bisa dipilih.
RFTYT 4.0-46.0G Waveguide Isolator spésifikasi | |||||||||
Modél | Rentang Frékuénsi(GHz) | Bandwidth(MHz) | Leungitkeun sisipan(dB) | Isolasi(dB) | VSWR | DiménsiW×L×Hm | Panungtun gelombangModus | ||
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 | Pinuh | 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 | Pinuh | 0.3 | 23 | 1.2 | 76 | 36 | 48 | WR112 | |
7.9-8.5 | Pinuh | 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 | Pinuh | 0.25 | 25 | 1.15 | 57.1 | 44.5 | 38.1 | WR75 | |
10.0-13.0 | Pinuh | 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 | Pinuh | 0.25 | 20 | 1.2 | 80 | 40 | 38 | WR75 |
BG1034-WR140 | 13.9-14.3 | Pinuh | 0.5 | 21 | 1.2 | 33.9 | 10 | 23 | WR140 |
BG3838-WR140 | 15.0-18.0 | Pinuh | 0.4 | 20 | 1.25 | 38 | 38 | 33 | WR140 |
BG2660-WR28 | 26.5-31.5 | Pinuh | 0.4 | 20 | 1.25 | 59.9 | 25.9 | 22.5 | WR28 |
26.5-40.0 | Pinuh | 0.45 | 16 | 1.4 | 59.9 | 25.9 | 22.5 | ||
BG1635-WR28 | 34.0-36.0 | Pinuh | 0.25 | 18 | 1.3 | 35 | 16 | 19.1 | WR28 |
BG3070-WR22 | 43.0-46.0 | Pinuh | 0.5 | 20 | 1.2 | 70 | 30 | 28.6 | WR22 |