Features:
- Low vswr
In Proin Circuitsas, in virtute signa est saepe valde altum. Si nimia potentia non potest esse plene regi, facile difficultates in circuitu, ut excedens maximum industria tolerantia range circuitu components et causing variis deviationibus. Usus Waveguide variabilis attenuators potest efficaciter occursum de demanda ad reducendo signum potestatem et ensure normalis operatio de microwave circuits.
Et opus principium continue variabilis attenuator fundatur in propagatione characteres electro fluctus in Waveguides. Eam maxime consistit in Waveguides, impedimentis matching cogitationes et variabilis conductor cuneos. Cum signum transit per Waveguide pars industria absorbetur per conductor obstructionum, ita redigo signo potentia
Cum conductor obstructionum est mechanica structuram quod potest esse manually accommodetur per user, quod est gyratorius egressus Attenuators. In manually variabilis attenuators sunt necessaria adiutores in electronic communicationis systems.
I. Ad ensure in statera de signo campester in signum torquem, Waveguide variabilis attenuatores potest effectum reducendo signo virtute.
II. Expanding dynamic range de systematis est etiam fortis punctum gyratorius egressus Attenuator, quod can stabilis operatio ratio.
III. Providentia matching potest vitare signum cogitationis et damnum, ensuring stabilitatem signi transmissio.
In Waveguide variabilis attenuator late in Proin Communication et Laboratorium probationem. Potest esse ad adjust signum fortitudinem ad occursum diversas necessitates. Exempli gratia, in Laboratory, Gyratorius gradum potest providere flexibile temperatio elit, cum signum viribus indiget mutari ad test apparatu perficientur. In Proin Communication, continuo variabilis attenuatores potest esse ad adjust signum virtute ut signo non est fortis aut nimium infirma per tradenda.
Commoda varius attenuatores simplicitas, otium usum, et flexibile temperatio. Per manual operandi, users potest pressius imperium moles signo attenuatione ut opus. Autem, comparari automatic Waveguide Attenuators, ad temperatio range of manual Waveguide attenuators potest angustior, et temperatio processus requirit quaedam moles et accurate.
QUALWAVEVictualia low Vswr et altitudinem ATTENIGATIO ATTENIGATIO a 0.96 ad 500GHz. ADTENUPSATIO range est 0 ~ 40DB.
Pars numerus | Frequentia(GHz, min). | Frequentia(GHz, max). | Attenuation range(DB) | Vswr(Max.) | Waveguide Location | Flange | Materia | DUCEO(Weeks) |
---|---|---|---|---|---|---|---|---|
QWVA-2.2-B-VII | CCCXXV | D | 0 ~ XL | 1.4 | -R-2.2 | UG387 / U | Aes | II ~ VI |
QWVA-3.4-B, VI | CCXX | CCCXXV | 0 ~ XXX | 1.3 | -R 3,4 | UG385 / U | Aes | II ~ VI |
QWVA-3.4-B, VII | CCXX | CCCXXV | 0 ~ XL | 1.4 | -R 3,4 | UG387 / U | Aes | II ~ VI |
QWVA-4.3-B, VI | CLXX | CCLX | 0 ~ XXX | 1.3 | -R 4,3 | UG385 / U | Aes | II ~ VI |
QWVA-5.1-B, VI | CXL | CCXX | 0 ~ XXX | 1.3 | 5,1 wR | UG385 / U | Aes | II ~ VI |
QWVA-5.1-B-VII | CXL | CCXX | 0 ~ XL | 1.4 | 5,1 wR | UG387 / U | Aes | II ~ VI |
QWVA-6,5-B, VI | CX | CLXX | 0 ~ XXX | 1.2 | -R 6,5 | UG385 / U | Aes | II ~ VI |
QWVA-VIII-B, VI | 90 | CXL | 0 ~ XXX | 1.2 | -R-VIII | UG385 / U | Aes | II ~ VI |
QWVA-X-B-XII | 73.8 | CX | 0 ~ XXX | 1.3 | -R-X (BJ900) | UG387 / UM | Aes | II ~ VI |
QWVA-XII-B, VII | 60.5 | 91.5 | 0 ~ XXX | 1.4 | -R XII (BJ740) | UG387 / U | Aes | II ~ VI |
QWVA-XV-B, VI | 49.8 | 75.8 | 0 ~ XXX | 1.3 | -R-XV (BJ620) | UG385 / U | Aes | II ~ VI |
QWVA-XIX-B, X | 39.2 | 59.6 | 0 ~ XXX | 1,25 | -R-XIX (BJ500) | UG383 / UM | Aes | II ~ VI |
QWVA-XXII-B-V | 32.9 | 50.1 | 0 ~ XXX | 1.3 | -R-XXII (BJ400) | UG, CCCLXXXIII / U | Aes | II ~ VI |
QWVA-XXVIII-B, I | 26.5 | 40.0 | 0 ~ XXX | 1.2 | WR-XXVIII (BJ320) | Fbp320 | Aes | II ~ VI |
QWVA-XXXIV-B, I | 21,7 | 33.0 | 0 ~ XXX | 1.3 | -R XXXIV (BJ260) | Fbp260 | Aes | II ~ VI |
QWVA-XLII-B, I | 17,6 | 26.7 | 0 ~ XXX | 1.3 | -R-XLII (BJ220) | Fbp220 | Aes | II ~ VI |
QWVA-LI-B, I | 14.5 | 22.0 | 0 ~ XXX | 1,25 | -R-LI (BJ180) | Fbp180 | Aes | II ~ VI |
QWVA-LXII-B, I | 11,9 | 18.0 | 0 ~ XXX | 1,25 | -R-LXII (BJ140) | Fbp140 | Aes | II ~ VI |
QWVA-LXXV-B, I | 9.84 | 15.0 | 0 ~ XXX | 1,25 | -R-LXXV (BJ120) | Fbp120 | Aes | II ~ VI |
QWVA-XC-A-II | 10 | 11 | 0 ~ XXX | 1.5 | -R-XC (BJ100) | Fdp100 | Aluminium | II ~ VI |
QWVA-XC-B, I | 9,2 | 9,8 | 0 ~ XXX | 1.35 | -R-XC (BJ100) | Fbp100 | Aes | II ~ VI |
QWVA-CXII-A-II | 7 | 8 | 0 ~ XXX | 1.5 | -R-CXII (BJ84) | Fdp84 | Aluminium | II ~ VI |
QWVA-CXII-B, I | 6.57 | 9.99 | 0 ~ XXX | 1,25 | -R-CXII (BJ84) | Fbp84 | Aes | II ~ VI |
QWVA-CXII-B-II | 7 | 10 | 0 ~ XXX | 1.2 | -R-CXII (BJ84) | Fdp84 | Aes | II ~ VI |
QWVA-CXXXVII-A-II | 6 | 7 | 0 ~ XXX | 1.6 | -R-CXXXVII (BJ70) | Fdp70 | Aluminium | II ~ VI |
QWVA-CXXXVII-B, II | 5,38 | 8,17 | 0 ~ XXX | 1,25 | -R-CXXXVII (BJ70) | Fdp70 | Aes | II ~ VI |
QWVA-CLIX-A-II | 4.64 | 7.05 | 0 ~ XXX | 1,25 | -R-CLIX (BJ58) | Fdp58 | Aluminium | II ~ VI |
QWVA-CLXXXVII-A-II | 3.94 | 5.99 | 0 ~ XXX | 1,25 | -R-CLXXXVII (BJ48) | Fdp48 | Aluminium | II ~ VI |
QWVA-CCXXIX-A-II | 3.22 | 4.90 | 0 ~ XXX | 1,25 | -R-CCXXIX (BJ40) | Fdp40 | Aluminium | II ~ VI |
QWVA-CCLXXXIV-A-II | 2.60 | 3.95 | 0 ~ XXX | 1,25 | -R-CCLXXXIV (BJ32) | Fdp32 | Aluminium | II ~ VI |
QWVA-CCCXL-A-II | 2.17 | 3.3 | 0 ~ XXX | 1,25 | -C CCCXL (BJ26) | Fdp26 | Aluminium | II ~ VI |
QWVA-CDXXX-A-II | 1.72 | 2.61 | 0 ~ XXX | 1,25 | -R-CDXXX (BJ22) | Fdp22 | Aluminium | II ~ VI |
QWVA-DX-A-II | 1.45 | 2.20 | 0 ~ XXX | 1,25 | -R-DX (BJ18) | Fdp18 | Aluminium | II ~ VI |
QWVA-DCL-A-II | 1.13 | 1.73 | 0 ~ XXX | 1,25 | -R-DCL (BJ14) | FDP14 | Aluminium | II ~ VI |
QWVA-DCCLXX-A-II | 0,96 | 1.46 | 0 ~ XXX | 1,25 | -R-DCCLXX (BJ12) | FDP12 | Aluminium | II ~ VI |