Availability: | |
---|---|
Quantitas: | |
J158XFS002
Amplo
Principalis parametri
Exemplar | J158XFS002 |
Poli pairs | 1,16 |
Input voltage | AC XXVI VRMS |
Input frequency | CD HZ |
Ratio transformatio | 0.461 ± X% |
Accurate (de crassum resolver) | ± XX, max |
Accurate (de fine resolver) | ± XV 'max |
Tempus Shift (De Crassa Resolver) | XVII ° ± ° III |
Tempus Shift (de fine resolver) | XLIII ° ± ° III |
Input impeditance (de crassum resolver) | (MMCCLXX ± CCCXXVI) Ω |
Input impedimentis (de fine resolver) | (XXXIII CCXX) Ω |
Output impedimento (de crassum resolver) | (MCCCX ± CXCVII) Ω |
Output impedimentis (de fine resolver) | (LXXI CDLXX) Ω |
Dielectric fortitudinem | N D VRMS 1min |
Nulla resistitur | CCL Mω min |
Maximum Gyrational | CCC RPM |
Operating temperatus rhoncus | -55 ℃ ad + CLV ℃ |
Quid est dual-celeritate resolver?
A summus praecisione angulus mensuræ fabrica in variis agris ut Industrial imperium, aerospace et arma potestate systems.
Ex electro inductione et circuitum commercium, utilizing a 'communi magnetica semita ' structuram duo occidere in eodem core.
Outputs duo sinusoidal voltages cum inaequalibus cum Rotor complet unam rotationem, formatam a crassum-denique dual-channel ratio.
Quid sunt principalis components?
Crasse Resolver: outputs Sine annuit et paucioribus polus paria, providente latior measurement range.
Denique resolver: outputs cosine annuit et habet plus poli pairs, offering pulchritudinem resolutio.
Quid est principalis beneficia?
Reliability accuracy: De consilio concedit superior praecisione et reliability per combining outputs de crassum et denique soles.
Error reductionem: compositum de cibis et denique outputs efficaciter reducit measurement errores.
Applicationem considerations
Error analysis: considerandum est analysis errores in gyratorius transformer scriptor annuit.
Signum dispensando: postulat precise signo dispensando ut accurate ad mensuram results.
Periphericis Circuit Design, involves consilio circuits quod opus cum gyratorius transformer, ut Analog-ut-digital converters et CPLDs ad notitia integration et errorem excambium.
Voltage Conversion, capax convertens voltages ad accommodare diversis voltage campester in potentia systems.
Structural Simplicity: notum est simplex structuram et altum reliability.
Lata Application: Communiter in Industrial Automation, Aerospace, Military Equipment, et alia agri ubi princeps praecisione et reliability sunt discrimine.
Principalis parametri
Exemplar | J158XFS002 |
Poli pairs | 1,16 |
Input voltage | AC XXVI VRMS |
Input frequency | CD HZ |
Ratio transformatio | 0.461 ± X% |
Accurate (de crassum resolver) | ± XX, max |
Accurate (de fine resolver) | ± XV 'max |
Tempus Shift (De Crassa Resolver) | XVII ° ± ° III |
Tempus Shift (de fine resolver) | XLIII ° ± ° III |
Input impeditance (de crassum resolver) | (MMCCLXX ± CCCXXVI) Ω |
Input impedimentis (de fine resolver) | (XXXIII CCXX) Ω |
Output impedimento (de crassum resolver) | (MCCCX ± CXCVII) Ω |
Output impedimentis (de fine resolver) | (LXXI CDLXX) Ω |
Dielectric fortitudinem | N D VRMS 1min |
Nulla resistitur | CCL Mω min |
Maximum Gyrational | CCC RPM |
Operating temperatus rhoncus | -55 ℃ ad + CLV ℃ |
Quid est dual-celeritate resolver?
A summus praecisione angulus mensuræ fabrica in variis agris ut Industrial imperium, aerospace et arma potestate systems.
Ex electro inductione et circuitum commercium, utilizing a 'communi magnetica semita ' structuram duo occidere in eodem core.
Outputs duo sinusoidal voltages cum inaequalibus cum Rotor complet unam rotationem, formatam a crassum-denique dual-channel ratio.
Quid sunt principalis components?
Crasse Resolver: outputs Sine annuit et paucioribus polus paria, providente latior measurement range.
Denique resolver: outputs cosine annuit et habet plus poli pairs, offering pulchritudinem resolutio.
Quid est principalis beneficia?
Reliability accuracy: De consilio concedit superior praecisione et reliability per combining outputs de crassum et denique soles.
Error reductionem: compositum de cibis et denique outputs efficaciter reducit measurement errores.
Applicationem considerations
Error analysis: considerandum est analysis errores in gyratorius transformer scriptor annuit.
Signum dispensando: postulat precise signo dispensando ut accurate ad mensuram results.
Periphericis Circuit Design, involves consilio circuits quod opus cum gyratorius transformer, ut Analog-ut-digital converters et CPLDs ad notitia integration et errorem excambium.
Voltage Conversion, capax convertens voltages ad accommodare diversis voltage campester in potentia systems.
Structural Simplicity: notum est simplex structuram et altum reliability.
Lata Application: Communiter in Industrial Automation, Aerospace, Military Equipment, et alia agri ubi princeps praecisione et reliability sunt discrimine.