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    參數(shù)資料
    型號: SD-14551FX-432Q
    廠商: DATA DEVICE CORP
    元件分類: 位置變換器
    英文描述: SYNCHRO OR RESOLVER TO DIGITAL CONVERTER, CDMA34
    封裝: CERAMIC, FP-34
    文件頁數(shù): 7/12頁
    文件大?。?/td> 115K
    代理商: SD-14551FX-432Q
    4
    Data Device Corporation
    www.ddc-web.com
    SD-14550 Series
    Rev. H
    GENERAL SETUP CONSIDERATIONS
    The following recommendations should be considered when
    using the SD-14550 Series converters:
    1) The power supply is +5 V DC.
    2) Direct inputs are referenced to AGND.
    3) Connect (close to hybrid) pin 31 (Analog Ground) to pin 7
    (GND).
    4) Connect a 33 F/10 VDC tantalum filter capacitor externally
    between pin 5 (filter point) to pin 7 (ground).
    PROGRAMMABLE RESOLUTION
    Resolution is controlled by pins 27 and 28. The resolution can be
    changed during converter operation so that the appropriate res-
    olution and velocity dynamics can be set as needed. To insure
    that a race condition does not exist between counting and
    changing the resolution, the resolution control is latched inter-
    nally. Refer to TABLE 2 for resolution control.
    BIT (BUILT-IN-TEST)
    This output is a logic line that will flag an internal fault condition
    or LOS (Loss-Of-Signal). The internal fault detector monitors the
    internal loop error and, when it exceeds approximately ±100
    LSBs, will set the line to a logic 0; this condition will occur during
    a large-step input and will reset to a logic 1 after the converter
    settles out. (The error voltage is filtered with a 500 s filter.) BIT
    will set for an over velocity condition because the converter loop
    cannot maintain input/output sync. BIT will also be set if a total
    LOS (loss of all signals) occurs. Additionally, in the SD-14550XS
    version, BIT will set when a Loss-of-Reference (LOR) condition
    occurs.
    THEORY OF OPERATION
    The SD-14550 Series of converters are based upon a single
    chip CMOS custom monolithic. They are implemented using the
    latest IC technology, which merges precision analog circuitry
    with digital logic to form a complete high performance tracking
    synchro/resolver-to-digital converter.
    CONVERTER OPERATION
    FIGURE 1 is the functional block diagram of the SD-14550
    Series. The converter operates with a single +5 V DC power sup-
    ply and internally generates a negative voltage of approximate-
    ly 5 volts. This negative voltage comes out on pin 5 (filter point)
    — see GENERAL SETUP CONSIDERATIONS.
    The converter is made up of three main sections; an input front-
    end, an error processor, and a digital interface. The converter
    front-end differs for synchro, resolver and direct inputs. An elec-
    tronic Scott-T is used for synchro inputs, a resolver conditioner
    for resolver inputs, and a sine and cosine voltage follower for
    direct inputs. These amplifiers feed the high accuracy Control
    Transformer (CT). Its other input is the 16-bit digital angle
    φ. Its
    output is an analog error angle, or difference angle, between the
    two inputs. The CT performs the ratiometric trigonometric com-
    putation of SIN
    θCOSφ - COSθSINφ = SIN(θ - φ) using amplifiers,
    switches, logic, and capacitors in precision ratios.
    The converter accuracy is limited by the precision of the com-
    puting elements in the CT. In these converters ratioed capacitors
    are used in the CT, instead of the more conventional precision
    ratioed resistors. Capacitors used as computing elements with
    op-amps need to be sampled to eliminate voltage drifting.
    Therefore, the circuits are sampled at a high rate to eliminate
    this drifting and at the same time to cancel out the op-amp off-
    sets.
    The error processing is performed using the industry standard
    technique for type II tracking R/D converters. The DC error is
    integrated yielding a velocity voltage which in turn drives a volt-
    age controlled oscillator (VCO). This VCO is an incremental inte-
    grator (constant voltage input to position rate output) which
    together with the velocity integrator forms a type II servo feed-
    back loop. A lead in the frequency response is introduced to sta-
    bilize the loop and another lag at higher frequency is introduced
    to reduce the gain and ripple at the carrier frequency and above.
    TABLE 2. RESOLUTION CONTROL (A AND B)
    RESOLUTION
    B
    A
    10 bit
    0
    12 bit
    0
    1
    14 bit
    1
    0
    16 bit
    1
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