Izici:
- Ukuzihlukanisa Okuphezulu
- Ukulahlekelwa Kokufaka Okuphansi
Ama-Cryogenic Coaxial Isolators angamadivayisi akhethekile ama-microwave angabuyeli aklanyelwe ukusebenza emazingeni okushisa aphansi kakhulu (imvamisa amazinga okushisa e-helium ewuketshezi, angu-4K noma ngaphansi). Ama-Isolators amadivayisi anezimbobo ezimbili avumela amasiginali we-microwave ukuthi adlule aye ohlangothini olulodwa ngokulahleka okuncane ngenkathi enikeza ukuncishiswa okuphezulu kokuya emuva. Lokhu kuziphatha okungaqondile kubalulekile ukuze kuvikelwe izingxenye ezizwelayo kumasignali abonisiwe nomsindo. Izindawo ze-Incryogenic, izihlukanisi zibalulekile ezinhlelweni zokusebenza ezifana ne-quantumcomputing, i-superconducting electronics, nokuhlolwa kwezinga lokushisa eliphansi, lapho ubuqotho besignali kanye nokunciphisa umsindo kubalulekile.
1. Ukusebenza Kwe-Cryogenic: Izihlukanisi ze-RF cryogenic coaxial eziklanyelwe ukusebenza ngokuthembekile emazingeni okushisa e-cryogenic (isb., 4K, 1K, noma ngisho nangaphansi). Yakhiwe kusetshenziswa izinto ezigcina izakhiwo zazo zikazibuthe nezikagesi emazingeni okushisa aphansi, njengama-ferrites nama-superconductors.
2. Ukulahlekelwa Kokufaka Okuphansi: Iqinisekisa ukuncishwa kwesignali okuncane ekuqondeni phambili, okubalulekile ekugcineni ubuqotho besignali ezinhlelweni ezibucayi.
3. Ukuhlukaniswa Okuphezulu: Inikeza ukuncishiswa okuhle kakhulu lapho ibheka emuva, ivimbela amasignali abonisiwe nomsindo ekuphazamiseni uhlelo.
4. I-Wide Frequency Range: I-BroadBand cryogenic coaxial isolator isekela uhla olubanzi lwamafrikhwensi, ngokuvamile ukusuka kuma-MHz ambalwa ukuya kuma-GHz amaningana, kuye ngomklamo nokusetshenziswa.
5. Idizayini Ehlangene Nesindo Esilula: Kwenzelwe ukuhlanganiswa ezinhlelweni ze-cryogenic, lapho isikhala nesisindo kuvame ukukhawulelwa.
6. Umthwalo Oshisayo Ophansi: Yehlisa ukudluliswa kokushisa endaweni ye-cryogenic, iqinisekise ukusebenza okuzinzile kwesistimu yokupholisa.
7. Ukuphatha Amandla Aphezulu: Iyakwazi ukuphatha amazinga abalulekile amandla ngaphandle kokuwohloka kokusebenza, okubalulekile ezinhlelweni zokusebenza ezifana ne-quantum computing kanye ne-radio astronomy.
1. I-Quantum Computing: Isetshenziswa kuma-superconducting quantum processors ukuze kuvikelwe isilawuli se-microwave namasiginali okufundwayo ekuboniseni kanye nomsindo, ukuqinisekisa ukudluliswa kwesignali okuhlanzekile kanye nokunciphisa ukuhlangana kwama-qubits. Kuhlanganiswe eziqandisini zokuhlanza ukuze kugcinwe ubumsulwa besignali kumazinga okushisa ama-millikelvine.
2. I-Superconducting Electronics: Iqashwe kumasekethe e-superconducting nezinzwa ukuze kuvikelwe izingxenye ezizwelayo kumasiginali abonisiwe nomsindo, iqinisekisa ukucubungula nokukalwa kwesignali okunembile.
3. Ukuhlolwa Kwezinga Eliphansi Lokushisa: Kusetshenziswa ekusetheni ucwaningo lwe-cryogenic, njengezifundo ze-superconductivity noma i-quantum phenomena, ukuze kugcinwe ukucaca kwesignali nokunciphisa umsindo.
4. I-Radio Astronomy: Isetshenziswa kuma-cryogenic receives of radio telescopes ukuvikela izikhulisa-zwi ezizwelayo kumasignali abonisiwe nomsindo, ukuthuthukisa ukuzwela kokubhekwa kwezinkanyezi.
5. Ukufanekisa Kwezokwelapha: Kusetshenziswa ezinhlelweni zokuthwebula ezithuthukisiwe njenge-MRI (I-Magnetic Resonance Imaging) esebenza kumazinga okushisa e-cryogenic ukuze kuthuthukiswe ikhwalithi yesignali.
6. Ukuxhumana Kwendawo kanye Nesathelayithi: Kuqashwe ezinhlelweni zokupholisa i-cryogenic zezinsimbi ezisekelwe emkhathini ukuze kuphathwe amasignali futhi kuthuthukiswe ukusebenza kahle kokuxhumana.
Qualwaveinikeza ama-cryogenic coaxial isolator ebangeni elibanzi ukusuka ku-4GHz ukuya ku-8GHz. I-coaxial isolators yethu isetshenziswa kabanzi ezindaweni eziningi.
Inombolo Yengxenye | Imvamisa(GHz, Min.) | Imvamisa(GHz, Max.) | Umkhawulokudonsa(MHz, Max.) | IL(dB, Max.) | Ukuzihlukanisa(dB, Min.) | I-VSWR(Ubuningi.) | Fwd Amandla(W, Max.) | Umfundisi Amandla(W) | Izixhumi | Izinga lokushisa(K) | Usayizi(mm) | Isikhathi esiholayo(Amaviki) |
---|---|---|---|---|---|---|---|---|---|---|---|---|
I-QCCI-4000-8000-77-S | 4 | 8 | 4000 | 0.7 | 16 | 1.5 | - | - | I-SMA | 77 (-196.15℃) | 24.2*25.5*13.7 | 2~4 |