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      參數(shù)資料
      型號: SDC-14560-441Q
      廠商: DATA DEVICE CORP
      元件分類: 位置變換器
      英文描述: SYNCHRO OR RESOLVER TO DIGITAL CONVERTER, DIP36
      封裝: 1.900 X 0.780 INCH, 0.210 INCH HEIGHT, DOUBLE WIDTH, KOVAR, DIP-36
      文件頁數(shù): 6/12頁
      文件大?。?/td> 196K
      代理商: SDC-14560-441Q
      INTRODUCTION
      The circuit shown in FIGURE 1, the SDC-14560 Block Diagram,
      consists of three main parts: the signal input; a feedback loop,
      whose elements are the control transformer, demodulator, error
      processor, VCO and up-down counter; and digital interface cir-
      cuitry including various latches and buffers.
      SIGNAL INPUTS
      The SDC-14560 series offers three input options: synchro,
      resolver, and direct. In a synchro or resolver, shaft angle data is
      transmitted as the ratio of carrier amplitudes across the input ter-
      minals. Synchro signals, which are of the form sin
      θcosωt,
      sin(
      θ + 120°)cosωt, and sin(θ + 240°)cosωt are internally con-
      verted to resolver format; sin
      θcosωt and cosθcosωt. Direct inputs
      accept
      1 Vrms inputs in resolver form, (sin
      θcosωt and cosθ
      cos
      ωt) and are buffered prior to conversion. FIGURE 2 illustrates
      synchro and resolver signals as a function of the angle
      θ.
      The solid state signal and reference inputs are true differential
      inputs with high AC and DC common mode rejection.
      Input
      impedance is maintained with power off.
      3
      TABLE 1. SDC-14560 SPECIFICATIONS (CONTD)
      PARAMETER
      UNIT
      VALUE
      TRANSFORMERS
      CHARACTERISTICS (contd)
      Signal Transformer
      Carrier Frequency Range
      Breakdown Voltage to GND
      Minimum Input Impedances
      (Balanced)
      90 V L-L
      26 V L-L
      11.8 V L-L
      60 Hz TRANSFORMERS
      Reference Transformer
      Carrier Frequency Range
      Input Voltage Range
      Input Impedance
      Input Common-Mode Voltage
      Output Description
      Output Voltage
      Power Required
      Signal Transformer
      Carrier Frequency Range
      Input Voltage Range
      Input Impedance
      Input Common Mode Voltage
      Output Description
      Output Voltage
      Power Required
      360- 1000 Hz
      700 V peak
      Synchro ZIN(ZSO) Resolver ZlN
      180
      100k
      -
      30k
      20k
      30k
      47 - 440 Hz
      80 - 138 V rms; 115 V rms
      nominal resistive
      600 k
      min resistive
      500 V rms transformer isolated
      +R (in phase with RH-RL)
      and - R (in phase with RL- RH)
      derived from op-amps. Short
      Circuit proof.
      3.0 V nominal riding on ground
      reference V. Output Voltage level
      tracks input level.
      4 mA typ, 7 mA max from
      +15 V supply.
      47 - 440 Hz
      10 - 100 V rms L-L; 90 V rms
      L- L nominal
      148 k
      min L-L balanced
      resistive
      ±500 V rms transformer isolated
      Resolver output,
      - sine (- S) + cosine (+C)
      derived from op-amps.
      Short circuit proof.
      1.0 V rms nominal riding on
      ground reference V.
      Output voltage level tracks
      input level.
      4 mA typ, 7 mA max from
      +15 V supply.
      Note:
      (1) Pin programmable.
      (2) See TABLE 6.
      30
      90
      150
      210
      270
      330
      360
      θ
      (DEGREES)
      CCW
      In
      Phase
      with
      RL-RH
      of
      Converter
      and
      R2-R1
      of
      CX.
      0
      S1-S3 = V
      SIN
      θ
      MAX
      S3-S2 = V
      SIN(
      θ + 120°)
      MAX
      S2-S1 = V
      SIN(
      θ + 240°)
      MAX
      - V
      MAX
      + V
      MAX
      30
      90
      150
      210
      270
      330
      360
      θ
      (DEGREES)
      CCW
      In
      Phase
      with
      RH-RL
      of
      Converter
      and
      R2-R4
      of
      RX.
      0
      S2-S4 = V
      COS
      θ
      MAX
      S1-S3 = –V
      SIN(
      θ)
      MAX
      - V
      MAX
      + V
      MAX
      Standard Synchro Control Transmitter (CX) Outputs as a Function of CCW Rotation
      From Electrical Zero (EZ).
      FIGURE 2. SYNCHRO AND RESOLVER SIGNALS
      Standard Resolver Control Transmitter (RX) Outputs as a Function of CCW
      Rotation From Electrical Zero (EZ) With R2-R4 Excited.
      SOLID-STATE BUFFER INPUT PRODUCTION -
      TRANSIENT VOLTAGE SUPPRESSION
      The solid-state signal and reference inputs are true differential
      inputs with high AC and DC common rejection, so most applica-
      tions will not require units with isolation transformers. Input
      impedance is maintained with power off. The current AC peak
      +DC common mode voltage should not exceed the values in
      TABLE 1.
      The 90 V line-to-line systems may have voltage transients which
      exceed the 500 V specification. These transients can destroy the
      thin-film input resistor network in the hybrid. Therefore, 90 VL-L
      solid-state input modules may be protected by installing voltage
      suppressors as shown. Voltage transients are likely to occur
      whenever synchro or resolver are switched on and off. For
      instance, a 1000 V transient can be generated when the prima-
      ry of a CX or TX driving a synchro or resolver input is opened.
      See FIGURE 3.
      FEEDBACK LOOP
      The feedback loop produces a digital angle
      φ which tracks the
      analog input angle
      θ to within the specified accuracy of the con-
      相關PDF資料
      PDF描述
      SDC-14560-441Y SYNCHRO OR RESOLVER TO DIGITAL CONVERTER, DIP36
      SDC-14560-441Z SYNCHRO OR RESOLVER TO DIGITAL CONVERTER, DIP36
      SDC-14560-441 SYNCHRO OR RESOLVER TO DIGITAL CONVERTER, DIP36
      SDC-14560-451K SYNCHRO OR RESOLVER TO DIGITAL CONVERTER, DIP36
      SDC-14560-451L SYNCHRO OR RESOLVER TO DIGITAL CONVERTER, DIP36
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