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  • 參數(shù)資料
    型號: TS87C51RC2-VCB
    廠商: Atmel
    文件頁數(shù): 11/84頁
    文件大小: 0K
    描述: IC MCU 8BIT 32K OTP 40MHZ 44PLCC
    標準包裝: 27
    系列: 87C
    核心處理器: 8051
    芯體尺寸: 8-位
    速度: 40/30MHz
    連通性: UART/USART
    外圍設備: POR,PWM,WDT
    輸入/輸出數(shù): 32
    程序存儲器容量: 32KB(32K x 8)
    程序存儲器類型: OTP
    RAM 容量: 512 x 8
    電壓 - 電源 (Vcc/Vdd): 4.5 V ~ 5.5 V
    振蕩器型: 內部
    工作溫度: 0°C ~ 70°C
    封裝/外殼: 44-LCC(J 形引線)
    包裝: 管件
    dsPIC33FJ32GP302/304, dsPIC33FJ64GPX02/X04, AND dsPIC33FJ128GPX02/X04
    DS70292G-page 20
    2007-2012 Microchip Technology Inc.
    FIGURE 2-1:
    RECOMMENDED
    MINIMUM CONNECTION
    2.2.1
    TANK CAPACITORS
    On boards with power traces running longer than six
    inches in length, it is suggested to use a tank capacitor
    for integrated circuits including DSCs to supply a local
    power source. The value of the tank capacitor should
    be determined based on the trace resistance that con-
    nects the power supply source to the device, and the
    maximum current drawn by the device in the applica-
    tion. In other words, select the tank capacitor so that it
    meets the acceptable voltage sag at the device. Typical
    values range from 4.7 F to 47 F.
    2.3
    CPU Logic Filter Capacitor
    Connection (VCAP)
    A low-ESR (< 5 Ohms) capacitor is required on the
    VCAP pin, which is used to stabilize the voltage
    regulator output voltage. The VCAP pin must not be
    connected to VDD, and must have a capacitor between
    4.7 F and 10 F, preferably surface mount connected
    within one-eights inch of the VCAP pin connected to
    ground. The type can be ceramic or tantalum. Refer to
    for
    additional information.
    The placement of this capacitor should be close to the
    VCAP. It is recommended that the trace length not
    exceed one-quarter inch (6 mm). Refer to Section 27.2
    2.4
    Master Clear (MCLR) Pin
    The MCLR pin provides for two specific device
    functions:
    Device Reset
    Device programming and debugging
    During device programming and debugging, the
    resistance and capacitance that can be added to the
    pin must be considered. Device programmers and
    debuggers drive the MCLR pin. Consequently,
    specific voltage levels (VIH and VIL) and fast signal
    transitions must not be adversely affected. Therefore,
    specific values of R and C will need to be adjusted
    based on the application and PCB requirements.
    For example, as shown in Figure 2-2, it is
    recommended that the capacitor C, be isolated from
    the MCLR pin during programming and debugging
    operations.
    Place the components shown in Figure 2-2 within
    one-quarter inch (6 mm) from the MCLR pin.
    FIGURE 2-2:
    EXAMPLE OF MCLR PIN
    CONNECTIONS
    dsPIC33F
    V
    DD
    V
    SS
    VDD
    VSS
    VDD
    AV
    DD
    AV
    SS
    V
    DD
    V
    SS
    0.1 F
    Ceramic
    0.1 F
    Ceramic
    0.1 F
    Ceramic
    0.1 F
    Ceramic
    C
    R
    VDD
    MCLR
    0.1 F
    Ceramic
    V
    CA
    P
    L1(1)
    R1
    10 F
    Tantalum
    Note 1:
    As an option, instead of a hard-wired connection, an
    inductor (L1) can be substituted between VDD and
    AVDD to improve ADC noise rejection. The inductor
    impedance should be less than 1
    Ω and the inductor
    capacity greater than 10 mA.
    Where:
    f
    FCNV
    2
    --------------
    =
    f
    1
    2
    π LC
    ()
    -----------------------
    =
    L
    1
    2
    πfC
    ()
    ---------------------
    2
    =
    (i.e., ADC conversion rate/2)
    Note 1: R
    ≤ 10 kΩ is recommended. A suggested
    starting value is 10 k
    Ω. Ensure that the MCLR
    pin VIH and VIL specifications are met.
    2: R1
    ≤ 470Ω will limit any current flowing into
    MCLR from the external capacitor C, in the
    event of MCLR pin breakdown, due to
    Electrostatic Discharge (ESD) or Electrical
    Overstress (EOS). Ensure that the MCLR pin
    VIH and VIL specifications are met.
    C
    R1(2)
    R(1)
    VDD
    MCLR
    dsPIC33F
    JP
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