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      • 您現(xiàn)在的位置:買賣IC網(wǎng) > PDF目錄192428 > SD-14531F3-515K (DATA DEVICE CORP) SYNCHRO OR RESOLVER TO DIGITAL CONVERTER, CDMA36 PDF資料下載
      參數(shù)資料
      型號: SD-14531F3-515K
      廠商: DATA DEVICE CORP
      元件分類: 位置變換器
      英文描述: SYNCHRO OR RESOLVER TO DIGITAL CONVERTER, CDMA36
      封裝: CERAMIC, FP-36
      文件頁數(shù): 12/16頁
      文件大小: 170K
      代理商: SD-14531F3-515K
      第1頁第2頁第3頁第4頁第5頁第6頁第7頁第8頁第9頁第10頁第11頁當(dāng)前第12頁第13頁第14頁第15頁第16頁
      5
      Data Device Corporation
      www.ddc-web.com
      SD-14531
      and reset after the converter settles out. BIT will also change to logic
      1 for an over-velocity condition, because the converter loop cannot
      maintain input-output and/or if the converter malfunctions where it
      cannot maintain the loop at a null. BIT will also be set for a Loss-of-
      Signal (LOS) and/or a Loss-of-Reference (LOR).
      PROGRAMMABLE RESOLUTION (14B, PIN 16)
      Resolution is controlled by one logic input,14B. The resolution
      can be changed during converter operation so the appropriate
      resolution and velocity dynamics can be changed as needed. To
      insure that a race condition does not exist between counting and
      changing the resolution, input 14B is latched internally on the
      trailing edge of CB (see FIGURE 2).
      INTERFACING - INPUTS
      SIGNAL INPUT OPTIONS
      The SD-14531 series offers programmable synchro or resolver
      inputs. In a synchro or resolver, shaft angle data is transmitted as
      the ratio of carrier amplitudes across the input terminals.
      Synchro signals, which are of the form sin
      θcosωt, sin(θ+120°)
      (e) in the converter. A digital position error will result due to the
      interaction of this quadrature voltage and a reference phase shift
      between the converter signal and reference inputs. The magni-
      tude of this error is given by the following formula:
      Magnitude of Error=(Quadrature Voltage/F.S.signal) tan(
      α)
      Where:
      Magnitude of Error is in radians,
      Quadrature Voltage is in volts,
      Full Scale signal is in volts,
      α = signal-to-REF phase shift.
      An example of the magnitude of error is as follows:
      Let:
      Quadrature Voltage = 11.8 mV
      Let:
      F.S. signal = 11.8 V
      Let:
      α = 6°
      Then: Magnitude of Error = 0.35 min
      1 LSB in the 16th bit.
      Note: Quadrature is composed of static quadrature which is
      specified by the synchro or resolver supplier plus the speed volt-
      age which is determined by the following formula:
      Speed Voltage=(rotational speed/carrier frequency) F.S. signal
      Where:
      Speed Voltage is the quadrature due to rotation,
      Rotational speed is the rps (rotations per second) of the
      synchro or resolver,
      Carrier frequency is the REF in Hz.
      BUILT-IN-TEST (BIT, PIN 15)
      The Built-In-Test output (BIT) monitors the level of error (D) from the
      demodulator. D represents the difference in the input and output
      angles and ideally should be zero; if it exceeds approximately 180
      LSBs (of the selected resolution) the logic level at BIT will change
      from a logic 0 to logic 1. This condition will occur during a large step
      ;;;
      ;;
      14B
      0
      s MIN
      CB
      0.1
      s MIN
      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)
      CW
      In
      Phase
      with
      RH-RL
      of
      Converter
      and
      R2-R4
      of
      RX.
      0
      S2-S4 = V
      COS
      θ
      MAX
      S3-S1 = V
      SIN(
      θ)
      MAX
      - V
      MAX
      + V
      MAX
      FIGURE 2. RESOLUTION CONTROL TIMING DIAGRAM
      Standard Resolver Control Transmitter (RX) Outputs as a Function of CW Rotation
      From Electrical Zero (EZ) With R2-R4 Excited.
      Standard Synchro Control Transmitter (CX) Outputs as a Function of CCW Rotation
      From Electrical Zero (EZ).
      FIGURE 3. SYNCHRO AND RESOLVER SIGNALS
      相關(guān)PDF資料
      PDF描述
      SD-14531F3-515L SYNCHRO OR RESOLVER TO DIGITAL CONVERTER, CDMA36
      SD-14531F3-515S SYNCHRO OR RESOLVER TO DIGITAL CONVERTER, CDMA36
      SD-14531F3-515Y SYNCHRO OR RESOLVER TO DIGITAL CONVERTER, CDMA36
      SD-14531F3-522Q SYNCHRO OR RESOLVER TO DIGITAL CONVERTER, CDMA36
      SD-14531F3-522S SYNCHRO OR RESOLVER TO DIGITAL CONVERTER, CDMA36
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