Features:
- High stopband rejectionem
- Parva
Cryogenic humilis transitum Filtra sunt specialioribus electronic components disposito ad operari efficientiae in cryogenic environments (typice ad liquidum Helium temperaturis, 4k vel infra liquid. His filters patitur humilis frequency annuit transire dum attenuatando altior frequentia annuit, faciens se in systems ubi signum integritatem et strepitus reductionem discrimine. Sunt late in quantum computing, superconducting electronics, radio astronomia, et alius provectus scientific et ipsum applications.
I. Cryogenic euismod: Radio frequency cryogenic humilis transiet Filtra disposuerat ad operate fidelissime ad maxime humilis temperaturis (eg, 4k, 1k, vel etiam minus). Materials et components sunt electus pro scelerisque stabilitatem et lowtrymal conductivity ad minimize calor onus in cryogenic ratio.
II. Minimum insertionem damnum: ensures minima signa attenuatione intra Passanden, quae est crucial pro maintaining signum integritatem in sensitivo applications ut quantum computat.
III. Altus attenuatione in stopband: effective cuneos summus frequency sonitus et unwanted annuit, quod est discrimine ad reducendo intercessiones in humilis-temperatus systems.
IV. Pactioni et Lightweight Design: Optimized ad integrationem in cryogenic systems, ubi spacend pondus saepe limited.
V. Wide frequency range: potest disposito operire lata range frequentiis, froma paucis mhz toseveral GHz, secundum applicationem.
VI. High Power Tractantem: Capax Tractantem significant potentia campester sine perficientur degradation, quod est momenti ad applications ut quantum computing et radio astronomia.
VII. Minimum scelerisque onus: Minimizes æstus translatione ad cryogenic environment, cursus stabableoperation de refrigerationem ratio.
I. Quantum Computing: Cryogenic Minimum Pass Filtra ued in superconducting quantum processors ad filter potestate et readout signa, cursus mundus signum tradenda et reducendo sonitus potest decerno cujus. Integratedinto Globuli refrigerators ponere signum puritatem ad Millikelvin temperaturis.
II. Radio Astronomia: usus est in cryogenic receptores de radio telescopes ad filter de summus frequency sonitus et amplio sensitivity astronomicas observationes. Essential ad detectandum infirmi annuit a distant caelestis obiecti.
III. Superconducting Electronics: High frequency cryogenic humilis transitum Filtra in superconducting circuits et sensoriis ad filter de summus frequency intercessiones, cursus accurate signum et mensurae.
4. Low-Temperature Experiments: Microwave cryogenic low pass filters applied in cryogenic research setups, such as studies of superconductivity or quantum phenomena, to maintain signal clarity and reduce noise.
V. Space et Satellite Communication: Cryogenic Refrigerant Systems of Space-Baptedinsturs to Filter annuit et amplio communicationis efficientiam.
VI. Medicing Imaging: Millimeter Wave Cryogenic Minimum Pass Filtra Filtra in Advanced Imaging Systems sicut MRI (Magnetic resonatur imaginatione), quod agunt ad cryogenic temperaturis ad augendae signum in qualis.
QUALWAVESupplementum excelsum stopband rejectio cryogenic humilis transitum Filtra in frequentia range DC 8.5GHz. Et RF Cryogenic Minimum transitum Filtra sunt late in multis applications.
Pars numerus | Passand(GHz, min). | Passand(GHz, max). | Insertionem damnum(DB, max). | Vswr(Max.) | Stopband attenuation(DB) | Connexiones |
---|---|---|---|---|---|---|
Qcl- 11-40 | DC | 0.011 | 1 | 1.45 | 40@0.023~0.2GHz | SMA |
Qcl- 500-25 | DC | 0,5 | 0,5 | 1.45 | 25@2.7~15GHz | SMA |
Qclf-1000-40 | 0,05 | 1 | 3 | 1.58 | 40@2.3~60GHz | Ssmp |
Qclf-8000-40 | 0,05 | 8 | 2 | 1.58 | XL @ XI ~ 60Ghz | Ssmp |
Qclf-8500-30 | DC | 8,5 | 0,5 | 1.45 | XXX @ XV ~ 20GHz | SMA |