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    參數(shù)資料
    型號: JANTXV1N822TR-1-1
    廠商: Microsemi Corporation
    英文描述: 6.2 & 6.55 Volt Temperature Compensated 6.2 & 6.55 Volt Temperature Compensated
    中文描述: 6.2
    文件頁數(shù): 2/3頁
    文件大小: 232K
    代理商: JANTXV1N822TR-1-1
    6.2 & 6.55 Volt Temperature Compensated
    Zener Reference Diodes
    SCOTTSDALE DIVISION
    1N821 thru 1N829A-1 DO-7
    W
    M
    .
    C
    1
    *ELECTRICAL CHARACTERISTICS @ 25
    o
    C, unless otherwise specified
    ZENER
    VOLTAGE
    (Note 1 and 4)
    V
    Z
    @ I
    ZT
    ZENER
    TEST
    CURRENT
    I
    ZT
    MAXIMUM
    ZENER
    IMPEDANCE
    (Note 2)
    Z
    ZT
    @ I
    ZT
    MAXIMUM
    REVERSE
    CURRENT
    I
    R
    @ 3 V
    μA
    2.0
    2.0
    2.0
    2.0
    2.0
    2.0
    2.0
    2.0
    2.0
    2.0
    2.0
    2.0
    2.0
    2.0
    VOLTAGE
    TEMPERATURE
    STABILITY
    (
    V
    ZT
    MAX)
    -55
    o
    C to +100
    o
    C
    (Note 3 and 4)
    EFFECTIVE
    TEMPERATURE
    α
    VZ
    JEDEC
    TYPE NUMBER
    (Note 1, 5 & 6)
    VOLTS
    5.9 – 6.5
    5.9 – 6.5
    5.9 – 6.5
    5.9 – 6.5
    5.9 – 6.5
    5.9 – 6.5
    5.9 – 6.5
    5.9 – 6.5
    6.2 – 6.9
    5.9 – 6.5
    5.9 – 6.5
    6.2 – 6.9
    5.9 – 6.5
    5.9 – 6.5
    mA
    7.5
    7.5
    7.5
    7.5
    7.5
    7.5
    7.5
    7.5
    7.5
    7.5
    7.5
    7.5
    7.5
    7.5
    OHMS
    15
    10
    15
    15
    10
    15
    15
    10
    15
    15
    10
    15
    15
    10
    mV
    96
    96
    96
    48
    48
    48
    19
    19
    20
    9
    9
    10
    5
    5
    %/
    o
    C
    0.01
    0.01
    0.01
    0.005
    0.005
    0.005
    0.002
    0.002
    0.002
    0.001
    0.001
    0.001
    0.0005
    0.0005
    1N821
    1N821A
    1N822
    1N823
    1N823A
    1N824
    1N825
    1N825A
    1N826
    1N827
    1N827A
    1N828
    1N829
    1N829A
    *JEDEC Registered Data.
    Double Anode; electrical specifications apply under both bias polarities.
    NOTES:
    1.
    Add a “-1” suffix for internal metallurgical bond. When ordering devices with tighter tolerances than specified for the V
    Z
    voltage nominal of
    6.35 V, add a hyphened suffix to the part number for desired tolerance, e.g. 1N827-1-2%, 1N829-1-1%, 1N829A-1%, 1N829A-1-1%, etc.
    2.
    Zener impedance measured by superimposing 0.75 mA ac rms on 7.5 mA dc @ 25
    C.
    3.
    The maximum allowable change observed over the entire temperature range i.e., the diode voltage will not exceed the specified mV
    change at discrete temperature between the established limits.
    4.
    Voltage measurements to be performed 15 seconds after application of dc current.
    5.
    1N821, 1N823, 1N825, 1N827, and 1N829 also have qualification to MIL-PRF-19500/159 by adding the JAN,
    JANTX, JANTXV, or
    JANS prefix to part numbers as well as the “-1” suffix; e.g. JANTX1N827-1, JANTXV1N829-1, etc.
    6.
    Designate Radiation Hardened devices with “RH” prefix instead of “1N”, e.g. RH829A instead of 1N829A.
    GRAPHS
    C
    o
    C
    C
    o
    C
    FIGURE 1
    TYPICAL CHANGE OF TEMPERATURE COEFFICIENT
    WITH CHANGE IN OPERATING CURRENT.
    The curve shown in Figure 1 is typical of the diode series and
    greatly simplifies the estimation of the Temperature Coefficient
    (TC) when the diode is operated at currents other than 7.5mA.
    EXAMPLE: A diode in this series is operated at a current of
    7.5mA and has specified Temperature Coefficient (TC) limits of
    +/-0.005%/
    C. To obtain the typical Temperature Coefficient
    limits for this same diode operated at a current of 6.0mA, the
    new TC limits (%/
    C) can be estimated using the graph in
    FIGURE 1.
    At a test current of 6.0mA the change in Temperature Coefficient
    (TC) is approximately –0.0006%.
    C. The algebraic sum of +/-
    0.005%
    C and –0.0006%/
    C gives the estimated limits of
    +0.0044%/
    C and -0.0056%/
    C.
    Microsemi
    Scottsdale Division
    8700 E. Thomas Rd. PO Box 1390, Scottsdale, AZ 85252 USA, (480) 941-6300, Fax: (480) 947-1503
    Page 2
    Copyright
    2003
    10-27-2003 REV C
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