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    參數(shù)資料
    型號: AD581J
    廠商: Analog Devices, Inc.
    英文描述: High Precision 10 V IC Reference
    中文描述: 高精密10 V的IC參考
    文件頁數(shù): 3/6頁
    文件大?。?/td> 218K
    代理商: AD581J
    AD581
    REV. B
    –3–
    ABSOLUTE MAXIMUM RATINGS
    Input Voltage . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 40 V
    Power Dissipation @ +25
    °C . . . . . . . . . . . . . . . . . . . . 600 mW
    Operating Junction Temperature Range . . . . –55
    °C to +150°C
    Lead Temperature (Soldering 10 sec) . . . . . . . . . . . . . +300
    °C
    Thermal Resistance
    Junction-to-Ambient . . . . . . . . . . . . . . . . . . . . . . . 150
    °C/W
    APPLYING THE AD581
    The AD581 is easy to use in virtually all precision reference
    applications. The three terminals are simply primary supply,
    ground, and output, with the case grounded. No external com-
    ponents are required even for high precision applications; the
    degree of desired absolute accuracy is achieved simply by select-
    ing the required device grade. The AD581 requires less than
    1 mA quiescent current from an operating supply range of
    12 to 30 volts.
    Figure 1. AD581 Pin Configuration (Bottom View)
    An external fine trim may be desired to set the output level to
    exactly 10.000 volts within less than a millivolt (calibrated to a
    main system reference). System calibration may also require a
    reference slightly different from 10.00 volts. In either case, the
    optional trim circuit shown in Figure 2 can offset the output by
    up to
    ±30 millivolts (with the 22 resistor), if needed, with
    minimal effect on other device characteristics.
    Figure 2. Optional Fine Trim Configuration
    Figure 3. Simplified Schematic
    VOLTAGE VARIATION VS. TEMPERATURE
    Some confusion exists in the area of defining and specifying
    reference voltage error over temperature. Historically, references
    have been characterized using a maximum deviation per degree
    Centigrade; i.e., 10 ppm/
    °C. However, because of nonlinearities
    in temperature characteristics, which originated in standard
    Zener references (such as “S” type characteristics) most manu-
    facturers have begun to use a maximum limit error band approach
    to specify devices. This technique involves measurement of the
    output at 3, 5 or more different temperatures to guarantee that
    the output voltage will fall within the given error band. The
    temperature characteristic of the AD581 consistently follows the
    S-curve shown in Figure 4. Three-point measurement of each
    device guarantees the error band over the specified temperature
    range.
    Figure 4. Typical Temperature Characteristic
    The error band which is guaranteed with the AD581 is the
    maximum deviation from the initial value at +25
    °C; this error
    band is of more use to a designer than one which simply guaran-
    tees the maximum total change over the entire range (i.e., in the
    latter definition, all of the changes could occur in the positive
    direction). Thus, with a given grade of the AD581, the designer
    can easily determine the maximum total error from initial
    tolerance plus temperature variation (e.g., for the AD581T,
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