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  • 參數(shù)資料
    型號: SD-14597F1-314Y
    廠商: DATA DEVICE CORP
    元件分類: 位置變換器
    英文描述: SYNCHRO OR RESOLVER TO DIGITAL CONVERTER, CDFP36
    封裝: CERAMIC, FP-36
    文件頁數(shù): 8/14頁
    文件大?。?/td> 416K
    代理商: SD-14597F1-314Y
    3
    SynchroZIN(ZSO)
    ResolverZIN
    180
    100 k
    -
    30 k
    20 k
    30 k
    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.
    360 - 1000 Hz
    18 - 130 V
    40 k
    min
    1200 V peak
    360-1000 Hz
    700 V peak
    PARAMETER
    VALUE
    Notes:
    (1) Pin Programmable.
    (2) See TABLE 7.
    (3) VEL polarity is negative volltage for positive angular rate
    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
    TABLE 1. SD-14595/96/97 SPECIFICATIONS (CONTD)
    THEORY OF OPERATION
    The SD-14595/96/97 series are small, 36-pin DDIP synchro-to-
    digital hybrid converters. As shown in the block diagram (FIG-
    URE 1), the SD-14595/96/97 can be broken down into the fol-
    lowing functional parts: Signal Input Option, Converter, Analog
    Conditioner, Power Supply Conditioner, and Digital Interface.
    CONVERTER OPERATION
    As shown in FIGURE 1, the converter section of the SD-
    14595/96/97 contains a high accuracy control transformer,
    demodulator, error processor, voltage controlled oscillator
    (VCO), up-down counter, and reference conditioner. The con-
    verter produces a digital angle which tracks the analog input
    angle to within the specified accuracy of the converter.The con-
    trol transformer performs the following trigonometric computa-
    tion:
    sin(
    θ - φ) = sinθ cosφ - cosθ sinφ
    Where:
    θ is angle theta representing the resolver shaft position.
    φ is digital angle phi contained in the up/down counter.
    The tracking process consists of continually adjusting
    φ to make
    (
    θ - φ) = 0, so that φ will represent the shaft position θ.
    The output of the demodulator is an analog dc level proportional
    to sin(
    θ - φ). The error processor receives its input from the
    demodulator and integrates this sin(
    θ - φ) error signal which then
    drives the VCO. The VCO’s clock pulses are accumulated by the
    up/down counter. The velocity voltage accuracy, linearity and off-
    set are determined by the quality of the VCO. Functionally, the
    up/down counter is an incremental integrator. Therefore, there
    are two stages of integration which makes the converter a Type
    II tracking servo.
    In a Type II servo, the VCO always settles to a counting rate
    which makes d
    φ/dt equal to dθ/dt without lag. The output data will
    always be fresh and available as long as the maximum tracking
    rate of the converter is not exceeded.
    The reference conditioner is a comparator that produces the
    square wave reference voltage which drives the demodulator. It’s
    single ended Input Z is 250k ohms/min, 500k ohms differential.
    SPECIAL FUNCTIONS
    REFERENCE SYNTHESIZER-QUADRATURE VOLTAGES.
    The synthesized reference section of the SD-14595 eliminates
    errors caused by quadrature voltage. Due to the inductive nature
    of synchros and resolvers, their signals typically lead the refer-
    ence signal (RH and RL) by about 6°. When an uncompensated
    reference signal is used to demodulate the control transformer’s
    output, quadrature voltages are not completely eliminated. In a
    14-bit converter it is not necessary to compensate for the refer-
    ence signal’s phase shift. A 6° phase shift will, however, cause
    problems for the one minute accuracy converters. As shown in
    FIGURE 1, the converter synthesizes its own cos(
    ωt + α) refer-
    TRANSFORMER
    CHARACTERISTICS
    (See ordering information for list
    of Transformers.
    Reference Transformers are
    Optional for Both Solid-State
    and Voltage Follower Input
    Options.)
    400 Hz TRANSFORMERS
    Reference Transformer
    Carrier Frequency Range
    Voltage Range
    Input Impedance
    Breakdown Voltage to GND
    Signal Transformer
    Carrier Frequency Range
    Breakdown Voltage to GND
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