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  • 參數(shù)資料
    型號: PCA9535
    廠商: NXP Semiconductors N.V.
    英文描述: 16-bit I2C and SMBus, low power I/O port with interrupt
    中文描述: 16位I2C和SMBus,低功率的I / O端口中斷
    文件頁數(shù): 10/19頁
    文件大小: 139K
    代理商: PCA9535
    Philips Semiconductors
    Product data
    PCA9535
    16-bit I
    2
    C and SMBus, low power I/O port with interrupt
    2003 Jun 27
    10
    TYPICAL APPLICATION
    SW02094
    I/O
    0.0
    I/O
    0.1
    I/O
    0.2
    I/O
    0.3
    I/O
    0.4
    I/O
    0.5
    V
    DD
    V
    DD
    SCL
    SDA
    INT
    RESET
    MASTER
    CONTROLLER
    GND
    SCL
    SDA
    PCA9535
    A2
    A1
    A0
    V
    SS
    V
    DD
    SUBSYSTEM 3
    (e.g. alarm system)
    SUBSYSTEM 2
    (e.g. counter)
    SUBSYSTEM 1
    (e.g. temp sensor)
    INT
    V
    DD
    ALARM
    Controlled Switch
    (e.g. CBT device)
    ENABLE
    1.6 k
    1.6 k
    1.1 k
    2 k
    NOTE:
    Device address configured as 0100100 for this example
    I/O
    0.0
    , I/O
    0.1
    , I/O
    0.2
    , configured as outputs
    I/O
    0.3
    , I/O
    0.4
    , I/O
    , configured as inputs
    I/O
    0.6
    , I/O
    0.7
    , and I/O
    1.0
    to I/O
    1.7
    configured as inputs
    A
    B
    2 k
    INT
    I/O
    0.6
    I/O
    0.7
    I/O
    1.0
    I/O
    1.1
    I/O
    1.2
    I/O
    1.3
    I/O
    1.4
    I/O
    1.5
    I/O
    1.6
    I/O
    1.7
    10 DIGIT
    NUMERIC
    KEYPAD
    Figure 11. Typical application
    Minimizing I
    DD
    when the I/O is used to control LEDs
    When the I/Os are used to control LEDs, they are normally connected to V
    DD
    through a resistor as shown in Figure 11. Since the LED acts as a
    diode, when the LED is off the I/O V
    IN
    is about 1.2 V less than V
    DD
    . The supply current, I
    DD
    , increases as V
    IN
    becomes lower than V
    DD
    and is
    specified as
    I
    DD
    in the DC characteristics table.
    Designs needing to minimize current consumption, such as battery power applications, should consider maintaining the I/O pins greater than or
    DD
    when the LED is off. Figure 12 shows a high value resistor in parallel with the LED. Figure 13 shows V
    DD
    less than the LED supply
    voltage by at least 1.2 V. Both of these methods maintain the I/O V
    IN
    at or above V
    DD
    and prevents additional supply current consumption when
    the LED is off.
    V
    DD
    V
    DD
    LEDx
    LED
    100 k
    SW02086
    Figure 12. High value resistor in parallel with the LED
    V
    DD
    3.3 V
    LEDx
    LED
    SW02087
    5 V
    Figure 13. Device supplied by a lower voltage
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