參數(shù)資料
    型號(hào): HFBR-2412
    英文描述: Fiber-Optic Receivers(光纖接收器)
    中文描述: 光纖接收器(光纖接收器)
    文件頁數(shù): 3/6頁
    文件大?。?/td> 46K
    代理商: HFBR-2412
    Fiber-Optic Link Receiver
    Reliability Data
    HFBR-2402
    HFBR-2412
    High Temperature Operating Life Test
    A. Demonstrated Performance
    Test
    Equivalent Test Condition
    Samples
    Device Hours
    Failures
    HTOL
    T
    A
    = 85
    °
    C, V
    CC
    = 5.25 V
    3,960
    2,370,000
    1
    B. Failure Criteria
    Failure has occurred when the unit
    fails catastrophically. One device
    failed to switch logic states.
    Point Typical
    Performance
    [1]
    in Time
    MTTF
    [1]
    ( hours)
    2,370,000
    2,880,000
    3,530,000
    4,350,000
    5,400,000
    6,740,000
    8,480,000
    10,700,000
    13,600,000
    17,500,000
    22,700,000
    29,700,000
    39,200,000
    Performance
    in Time
    [2]
    ( 90% Confidence)
    MTTF
    [2]
    ( hours)
    609,000
    742,000
    909,000
    1,120,000
    1,390,000
    1,730,000
    2,180,000
    2,750,000
    3,510,000
    4,520,000
    5,850,000
    7,650,000
    10,000,000
    Ambient
    J unction
    FITs
    [3]
    ( /10
    9
    Hours)
    421
    346
    282
    229
    184
    148
    117
    93
    73
    56
    43
    33
    25
    FITs
    [3]
    ( /10
    9
    Hours)
    1,640
    1,340
    1,090
    892
    719
    576
    458
    362
    284
    221
    170
    130
    99
    Temperature (
    °
    C)
    85
    80
    75
    70
    65
    60
    55
    50
    45
    40
    35
    30
    25
    Temperature (
    °
    C)
    100
    95
    90
    85
    80
    75
    70
    65
    60
    55
    50
    45
    40
    C. Failure Rate Prediction, Receiver
    (V
    CC
    = 5.25 V)
    Notes:
    1. The
    point
    MTTF (representing an esti-
    mate of the mean point MTTF) is the total
    device hours divided by either the number
    of failures or unity if there are no failures.
    2.
    90% confident
    MTTF and failure rate
    represent the minimum level of reliability
    performance that is expected from 90% of
    all samples. This
    confidence interval is
    based on the statistics of the distribution of
    failures. The assumed distribution of
    failures is exponential. This particular
    distribution is commonly used in describing
    useful life failures. Refer to MIL-STD-690 for
    details of this methodology.
    3. 1 FIT = 1 failure per 10
    9
    device hours.
    3
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