SINEAX G 536 Phase Angle or Power Factor Transducer

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Transcription:

SIEAX G Carrying rail housing P/0 Application The transducer SIEAX G (Fig. ) measures the phase angle or power factor between current and voltage of a single or -phase balanced network having a sine wave form. The output signal, in the form of a load independent DC current or voltage, is proportional to the phase angle resp. power factor between the measured quantities current and voltage. The transducer fulfi ls all the important requirements and regulations concerning electromagnetic compatibility EMV and Safety (IEC 00 resp. E 00). It was developed and is manufactured and tested in strict accordance with the quality assurance standard ISO 00. Fig.. Transducer SIEAX G in housing P/0 clipped onto a top-hat rail. Measuring input Features / Benefits Measuring input: Sine, rectangular or distorted wave forms of input quantities with dominant fundamental wave Measured variables Phase angle or power factor ominal input current ominal input voltage 0. to A 0 to 0 V Measuring range limits Min. span 0 el Max. span 0 el Measuring output: Unipolar, bipolar or live zero output variables Measuring principle: Measurement of the zero crossing interval AC/DC power supply / Universal Standard as marine version per Lloyd s Register of Shipping Examples of measuring ranges with ϕ-linear output -0-0 -0-0 0 +0 +0 +0 +0 [ el] inductive (lag) capacitive (lead) inductive (lag) capacitive (lead) Motor (incoming) Meas. range: 0 0 Messbereich: -0 0 Measuring range: -0 0 Measuring range: -0 0 (clear indication of ) Examples of measuring ranges with cosϕ-linear output 0. 0. 0. 0. - - 0. 0 0. 0. 0-0. - [cosϕ] Technical data General Measured quantity: Measuring principle: between current and voltage Measurement of the zero crossing interval inductive (lag) capacitive (lead) inductive (lag) capacitive (lead) ominal frequency f : Motor (incoming) 0.-cap- -ind-0. 0.-cap--ind-0 0.-cap--ind-0. -0. ind 0 cap ind 0 cap -0. / 00 Hz Camille Bauer Data sheet G Le 0.0

SIEAX G ominal input voltage U : Response sensitivity: ominal input current I : Response sensitivity: Own consumption: Overload capacity: Input variables I.U umber of applications 0 0 V (max. 0 V with power supply from voltage measuring input) 0 0% U 0. to.0 A < % I < 0. VA per current path U. ma per voltage path Duration of one application. x I continuously 0 x I 0 s 00 s. x U continuously x U 0 s 0 s Interval between two successive applications But max. V with power supply from voltage measurement Measuring output Load-independent DC current: Burden voltage: Load-independent DC voltage: Load capacity: Voltage limit under R ext = : Current limit under overload: Residual ripple in output current: ominal value of response time: Other ranges: Output characteristic.ae AE AA = 0 A EA unipolar EE.EE 0.EA E 0 to 0 0 ma resp. live-zero to 0 ma ± to ± 0 ma + V, resp. V 0 to 0 0 V resp. live-zero 0. to 0 V ± to ± 0 V Max. ma V Approx. 0 ma < 0.% p.p. periods of the nominal frequency, or periods of the nominal frequency.ae 0.AA AE AA = 0.AE 0 A EA live-zero EE.EE 0.EA E.AE 0.AA AE 0 A.EA 0.EE EA AA 0.AA.AE bipolar EE.EE 0.EA Accuracy (acc. to E 0 ) E Legend: E = Input EA = Input start value EE = Input end value A = Output AA = Output start value AE = Output end value Reference value: Δϕ = 0 resp. Δcosϕ = 0. Basic accuracy: Class 0. Reference conditions Ambient temperature 0 C Input current 0.. I Input voltage 0.. U Frequency f ± 0% Wave forms Sine wave Power supply At nominal range Output burden Δ R ext max. Additional errors (maxima): Voltage infl uence between 0. and. U ± 0.% Current infl uence between 0. and. I ± 0.% between 0. and. I ± 0.% Safety Protection class: II (protection isolated, E 00) Housing protection: IP 0, housing (test wire, E 0 ) IP 0, terminals (test fi nger, E 0 ) Contamination level: Overvoltage category: III Rated insulation voltage (against earth): 0 V resp. 00 V, inputs 0 V, power supply 0 V, output Test voltage: 0 Hz, min. acc. to E 00-00 resp. 0 V, inputs versus all other circuits as well as outer surface Data sheet G Le 0.0 Camille Bauer

SIEAX G Test voltage (continuation): Power supply 0 V, input circuits versus each other 00 V, power supply versus output as well as outer surface 0 V, output versus outer surface AC/DC power pack (DC or 0 00 Hz) Table : Rated voltages and permissible variations Rated voltage Tolerance 0 V DC, AC DC + % 0 V DC, AC AC ± % or Power supply from voltage measuring input: 0 V AC or 0 V AC Option: Connect to the low tension to terminals and V AC or 0 V DC Power consumption: Approx. W resp. VA Installation data Mechanical design: Housing P/0 Material of housing: Lexan 0 (polycarbonate), fl ammability Class V-0 acc. to UL, self-extinguishing, non-dripping, free of halogen Mounting: For rail mounting Mounting position: Any Weight: Approx. 0. kg Permissible cross section of the connection leads: Environmental conditions.0 mm single wire or x. mm fi ne wire Operating temperature: 0 to + C Storage temperature: 0 to + 0 C Relative humidity of annual mean: % Altitude: 000 m max. Indoor use statement! Ambient tests E 0 0--: Acceleration: Frequency range: umber of cycles: E 0 0--: Vibration ± g 0 0 0 Hz, rate of frequency sweep: octave/minute 0, in each of the three axes Shock Acceleration: 0 shocks each in directions E 0 0--/-/-: Cold, dry heat, damp heat IEC 000--/-/-/-/- E 0: Electromagnetic compatibility Germanischer Lloyd Type approval certifi cate: Ambient category: Vibration: o. - HH C 0. g Connecting terminals Connection element: Screw-type terminals with indirect wire pressure Table : Specification and ordering information Description *Blocking code no-go with blocking code Article o./ Feature SIEAX G Order Code - xxxx xxxx xx Features, Selection. Mechanical design Housing P/0 for rail mounting. Measuring mode For phase angle (ϕ-linear) A For power factor (cosϕ-linear) B Camille Bauer Data sheet G Le 0.0

SIEAX G Description *Blocking code no-go with blocking code Article o./ Feature SIEAX G Order Code - xxxx xxxx xx Features, Selection. Application Single-phase AC U: & I: or -wire -phase balanced load U: & I: or -wire -phase balanced load U: & I: or -wire -phase balanced load U: & I: or -wire -phase balanced load U: & I: or -wire -phase balanced load U: & I: or -wire -phase balanced load U: & I: or -wire -phase balanced load A U: & I: or -wire -phase balanced load B U: & I: or -wire -phase balanced load C. ominal input frequency 0 Hz 0 Hz on-standard [Hz] 0 to 00 Hz With power supply from measuring input min. 0 Hz. ominal input voltage U = 00 V C U = 0 V C U = 00 V D on-standard [V] 0 to 0 V With power supply from measuring input min. V, max. 0 V, see feature, lines and -phase system: Input voltage = phase to phase voltage. ominal input current A A on-standard [A] 0. to.0 A. Measuring range Phase angle 0 0 + 0 el B cosϕ 0. cap ind 0. A on-standard [ el] or [cosϕ] Measuring range within 0 0 + 0 el or ind 0 cap ind 0 cap, but clear indication only to 0 + el Measuring span 0 el. Output signal 0 0 ma 0 ma on-standard 0.00 to 0 < 0, [ma].00 0.00 to 0 0 0 (symmetrical) to < ( 0) (AA / AE = / ) 0 0 V A on-standard 0.00 to 0 < 0, [V].00 0.00 to 0 0 0 (symmetrical) Z 0. to 0 (AA / AE = / ) AA = Output start value, AE = Output end value Data sheet G Le 0.0 Camille Bauer

SIEAX G Description *Blocking code no-go with blocking code Article o./ Feature SIEAX G Order Code - xxxx xxxx xx Features, Selection. Power supply 0 V DC, AC 0 V DC, AC Internal from measuring input ( 0 V AC) C Internal from measuring input ( 0 V AC) CD Connect to the low tension V AC / 0 V DC 0. Response time periods of the input frequency (standard) periods of the input frequency periods of the input frequency periods of the input frequency * Lines with letter(s) under no-go cannot be combined with preceding lines having the same letter under SCODE. Application notes Current connection in phase Voltage connection between & & & & & & Vector diagrams Current connection in phase Voltage connection between L & & & L & Vector diagrams I U Camille Bauer Data sheet G Le 0.0

SIEAX G Electrical connections + + + ( )(+) 0 0 0 = Measuring input = Measuring output = Power supply U I ( )(+) U I U I Fig.. Power supply connected to terminals and. Fig.. Power supply internal from measuring input, without separated power supply. Fig.. Power supply connected to the low tension terminal side and. Measuring inputs Application Terminal allocation Application Terminal allocation single-phase AC network // or -wire -phase network U: & I: or -wire -phase network U: & I: or -wire -phase network U: & I: or -wire -phase network U: & I: or -wire -phase network U: & I: or -wire -phase network U: & I: or -wire -phase network U: & I: Data sheet G Le 0.0 Camille Bauer

SIEAX G Measuring inputs Application Terminal allocation Application Terminal allocation or -wire -phase network U: & I: or -wire -phase network U: & I: Dimensional drawing. Standard accessories Operating instructions in three languages: German, French, English 0.. 0 Fig.. Housing P/0 clipped onto a top-hat rail ( x or x. mm, acc. to E 0 0). Rely on us. Camille Bauer Ltd. Aargauerstrasse CH-0 Wohlen / Switzerland Phone: + Fax: + e-mail: info@camillebauer.com www.camillebauer.com Subject to change without notice Edition 0.0 Data sheet G Le