參數(shù)資料
    型號: TC7135
    廠商: TelCom Semiconductor, Inc.
    英文描述: 4-1/2 DIGIT ANALOG-TO-DIGITAL CONVERTER
    中文描述: 4-1/2數(shù)字模擬到數(shù)字轉(zhuǎn)換器
    文件頁數(shù): 9/13頁
    文件大小: 224K
    代理商: TC7135
    3-121
    TELCOM SEMICONDUCTOR, INC.
    7
    6
    5
    4
    3
    1
    2
    8
    TC7135
    4-1/2 DIGIT
    ANALOG-TO-DIGITAL CONVERTER
    POLARITY Output
    A positive input is registered by a logic "1" polarity signal.
    The POLARITY output (pin 23) is valid at the beginning of
    reference integrate and remains valid until determined dur-
    ing the next conversion.
    The POLARITY bit is valid even for a zero reading.
    Signals less than the converter's LSB will have the signal
    polarity determined correctly. This is useful in null applica-
    tions.
    Digit Drive Outputs
    Digit drive outputs are positive-going signals. Their scan
    sequence is D
    5
    , D
    4
    , D
    3
    , D
    2
    and D
    1
    (pins 12, 17, 18, 19 and
    20, respectively). All positive signals are 200 clock pulses
    wide, except D
    5
    , which is 201 clock pulses.
    All five digits are continuously scanned, unless an
    overrange condition occurs. In an overrange condition, all
    digit drives are held low from the final STROBE pulse until
    the beginning of the next reference-integrate phase. The
    scanning sequence is then repeated, providing a blinking
    visual display.
    BCD Data Outputs
    The binary coded decimal (BCD) outputs, B
    8
    , B
    4
    , B
    2
    and
    B
    1
    (pins 16, 15, 14 and 13, respectively) are positive true-
    logic signals. They become active simultaneously with digit
    drive signals. In an overrange condition, all data bits are
    logic "0".
    APPLICATIONS INFORMATION
    Component Value Selection
    Integrating Resistor
    The integrating resistor (R
    INT
    ) is determined by the full-
    scale input voltage and output current of the buffer used to
    charge the integrator capacitor (C
    INT
    ). Both the buffer ampli-
    fier and the integrator have a Class A output stage, with 100
    μ
    A of quiescent current. A 20
    μ
    A drive current gives negli-
    gible linearity errors. Values of 5
    μ
    A to 40
    μ
    A give good
    results. The exact value of R
    INT
    for a 20
    μ
    A current is easily
    calculated:
    R
    INT
    =
    .
    Full-scale voltage
    20
    μ
    A
    Integrating Capacitor
    The product of R
    INT
    and C
    INT
    should be selected to give
    the maximum voltage swing to ensure tolerance build-up will
    not saturate integrator swing (approximately 0.3V from
    either supply). For
    ±
    5V supplies, and analog common tied to
    supply ground, a
    ±
    3.5V to
    ±
    4V full-scale integrator swing is
    C
    INT
    =
    =
    .
    [10,000 x clock period] x I
    INT
    Integrator output voltage swing
    (10,000) (clock period) (20
    μ
    A)
    Integrator output voltage swing
    Conversion Timing
    Line Frequency Rejection
    A signal-integration period at a multiple of the 60 Hz line
    frequency will maximize 60 Hz "line noise" rejection.
    A 100 kHz clock frequency will reject 50 Hz, 60 Hz and
    400 Hz noise, corresponding to 2.5 readings per second.
    A very important characteristic of the C
    INT
    is that it has
    low dielectric absorption to prevent roll-over or ratiometric
    errors. A good test for dielectric absorption is to use the
    capacitor with the input tied to the reference. This ratiometric
    condition should read half-scale 0.9999. Any deviation is
    probably due to dielectric absorption. Polypropylene
    capacitors give undetectable errors at reasonable cost.
    Polystyrene and polycarbonate capacitors may also be
    used in less critical applications.
    Auto-Zero and Reference Capacitors
    The size of the auto-zero capacitor (C
    AZ
    ) has some
    influence on system noise. A large capacitor reduces noise.
    The reference capacitor (C
    REF
    ) should be large enough
    such that stray capacitance from its nodes to ground is
    negligible.
    The dielectric absorption of C
    REF
    and C
    AZ
    is only impor-
    tant at power-on, or when the circuit is recovering from an
    overload. Smaller or cheaper capacitors can be used if
    accurate readings are not required during the first few
    seconds of recovery.
    Reference Voltage
    The analog input required to generate a full-scale output
    is V
    IN
    = 2 V
    REF
    .
    The stability of the reference voltage is a major factor in
    overall absolute accuracy of the converter. Therefore, it is
    recommended that high-quality references be used where
    high-accuracy, absolute measurements are being made.
    Suitable references are:
    Part Type
    Manufacturer
    TC04
    TC05
    TelCom Semiconductor
    TelCom Semiconductor
    adequate. A 0.10
    μ
    F to 0.47
    μ
    F is recommended. In general,
    the value of C
    INT
    is given by:
    相關(guān)PDF資料
    PDF描述
    TC7135 4-1/2 Digit A/D Converter
    TC7135CBU 4-1/2 Digit A/D Converter
    TC7135CLI 4-1/2 Digit A/D Converter
    TC7135CPI 4-1/2 Digit A/D Converter
    TC7135CBU 4-1/2 DIGIT ANALOG-TO-DIGITAL CONVERTER
    相關(guān)代理商/技術(shù)參數(shù)
    參數(shù)描述
    TC7135_04 制造商:MICROCHIP 制造商全稱:Microchip Technology 功能描述:4-1/2 Digit A/D Converter
    TC7135CBU 功能描述:LED顯示驅(qū)動器 4-1/2 Digit A/D BCD RoHS:否 制造商:Micrel 數(shù)位數(shù)量:5 片段數(shù)量: 安裝風格:SMD/SMT 封裝 / 箱體:PLCC-44 工作電源電壓:4.75 V to 11 V 最大電源電流:10 mA 最大工作溫度:+ 85 C 最小工作溫度:- 40 C 封裝:Tube
    TC7135CBU713 功能描述:LED顯示驅(qū)動器 4-1/2 Digit A/D BCD RoHS:否 制造商:Micrel 數(shù)位數(shù)量:5 片段數(shù)量: 安裝風格:SMD/SMT 封裝 / 箱體:PLCC-44 工作電源電壓:4.75 V to 11 V 最大電源電流:10 mA 最大工作溫度:+ 85 C 最小工作溫度:- 40 C 封裝:Tube
    TC7135CKW 制造商:MICROCHIP 制造商全稱:Microchip Technology 功能描述:4-1/2 Digit A/D Converter
    TC7135CLI 功能描述:LED顯示驅(qū)動器 4-1/2 Digit A/D BCD RoHS:否 制造商:Micrel 數(shù)位數(shù)量:5 片段數(shù)量: 安裝風格:SMD/SMT 封裝 / 箱體:PLCC-44 工作電源電壓:4.75 V to 11 V 最大電源電流:10 mA 最大工作溫度:+ 85 C 最小工作溫度:- 40 C 封裝:Tube