• 參數(shù)資料
    型號: ADSP-BF536BBC-4A
    廠商: Analog Devices Inc
    文件頁數(shù): 68/68頁
    文件大?。?/td> 0K
    描述: IC DSP CTLR 16BIT 182CSPBGA
    產(chǎn)品培訓(xùn)模塊: Blackfin® Processor Core Architecture Overview
    Blackfin® Device Drivers
    Blackfin® Optimizations for Performance and Power Consumption
    Blackfin® System Services
    標準包裝: 1
    系列: Blackfin®
    類型: 定點
    接口: CAN,SPI,SSP,TWI,UART
    時鐘速率: 400MHz
    非易失內(nèi)存: 外部
    芯片上RAM: 100kB
    電壓 - 輸入/輸出: 2.50V,3.30V
    電壓 - 核心: 1.20V
    工作溫度: -40°C ~ 85°C
    安裝類型: 表面貼裝
    封裝/外殼: 182-LFBGA,CSPBGA
    供應(yīng)商設(shè)備封裝: 182-CSPBGA(12x12)
    包裝: 托盤
    Rev. J
    |
    Page 9 of 68
    |
    February 2014
    In addition to the dedicated peripheral DMA channels, there are
    two memory DMA channels provided for transfers between the
    various memories of the processor system. This enables trans-
    fers of blocks of data between any of the memories—including
    external SDRAM, ROM, SRAM, and flash memory—with mini-
    mal processor intervention. Memory DMA transfers can be
    controlled by a very flexible descriptor-based methodology or
    by a standard register-based autobuffer mechanism.
    The ADSP-BF534/ADSP-BF536/ADSP-BF537 processors also
    have an external DMA controller capability via dual external
    DMA request pins when used in conjunction with the external
    bus interface unit (EBIU). This functionality can be used when a
    high speed interface is required for external FIFOs and high
    bandwidth communications peripherals such as USB 2.0. It
    allows control of the number of data transfers for memDMA.
    The number of transfers per edge is programmable. This feature
    can be programmed to allow memDMA to have an increased
    priority on the external bus relative to the core.
    REAL-TIME CLOCK
    The real-time clock (RTC) provides a robust set of digital watch
    features, including current time, stopwatch, and alarm. The
    RTC is clocked by a 32.768 kHz crystal external to the
    processor. The RTC peripheral has dedicated power supply pins
    so that it can remain powered up and clocked even when the
    rest of the processor is in a low power state. The RTC provides
    several programmable interrupt options, including interrupt
    per second, minute, hour, or day clock ticks, interrupt on pro-
    grammable stopwatch countdown, or interrupt at a
    programmed alarm time.
    The 32.768 kHz input clock frequency is divided down to a 1 Hz
    signal by a prescaler. The counter function of the timer consists
    of four counters: a 60-second counter, a 60-minute counter, a
    24-hour counter, and an 32,768-day counter.
    When enabled, the alarm function generates an interrupt when
    the output of the timer matches the programmed value in the
    alarm control register. There are two alarms: The first alarm is
    for a time of day, while the second alarm is for a day and time of
    that day.
    The stopwatch function counts down from a programmed
    value, with one-second resolution. When the stopwatch is
    enabled and the counter underflows, an interrupt is generated.
    Like the other peripherals, the RTC can wake up the processor
    from sleep mode upon generation of any RTC wake-up event.
    Additionally, an RTC wake-up event can wake up the processor
    from deep sleep mode, and wake up the on-chip internal voltage
    regulator from the hibernate operating mode.
    Connect RTC pins RTXI and RTXO with external components
    as shown in Figure 4.
    WATCHDOG TIMER
    The ADSP-BF534/ADSP-BF536/ADSP-BF537 processors
    include a 32-bit timer that can be used to implement a software
    watchdog function. A software watchdog can improve system
    availability by forcing the processor to a known state through
    generation of a system reset, nonmaskable interrupt (NMI), or
    general-purpose interrupt, if the timer expires before being reset
    by software. The programmer initializes the count value of the
    timer, enables the appropriate interrupt, then enables the timer.
    Thereafter, the software must reload the counter before it
    counts to zero from the programmed value. This protects the
    system from remaining in an unknown state where software,
    which would normally reset the timer, has stopped running due
    to an external noise condition or software error.
    If configured to generate a hardware reset, the watchdog timer
    resets both the core and the processor peripherals. After a reset,
    software can determine if the watchdog was the source of the
    hardware reset by interrogating a status bit in the watchdog
    timer control register.
    The timer is clocked by the system clock (SCLK), at a maximum
    frequency of fSCLK.
    TIMERS
    There are nine general-purpose programmable timer units in
    the processor. Eight timers have an external pin that can be con-
    figured either as a pulse-width modulator (PWM) or timer
    output, as an input to clock the timer, or as a mechanism for
    measuring pulse widths and periods of external events. These
    timers can be synchronized to an external clock input to the sev-
    eral other associated PF pins, to an external clock input to the
    PPI_CLK input pin, or to the internal SCLK.
    The timer units can be used in conjunction with the two UARTs
    and the CAN controller to measure the width of the pulses in
    the data stream to provide a software auto-baud detect function
    for the respective serial channels.
    The timers can generate interrupts to the processor core provid-
    ing periodic events for synchronization, either to the system
    clock or to a count of external signals.
    In addition to the eight general-purpose programmable timers,
    a ninth timer is also provided. This extra timer is clocked by the
    internal processor clock and is typically used as a system tick
    clock for generating periodic interrupts in an operating system.
    Figure 4. External Components for RTC
    RTXO
    C1
    C2
    X1
    SUGGESTED COMPONENTS:
    X1 = ECLIPTEK EC38J (THROUGH-HOLE PACKAGE) OR
    EPSON MC405 12 pF LOAD (SURFACE-MOUNT PACKAGE)
    C1 = 22 pF
    C2 = 22 pF
    R1 = 10 M
    NOTE: C1 AND C2 ARE SPECIFIC TO CRYSTAL SPECIFIED FOR X1.
    CONTACT CRYSTAL MANUFACTURER FOR DETAILS. C1 AND C2
    SPECIFICATIONS ASSUME BOARD TRACE CAPACITANCE OF 3 pF.
    RTXI
    R1
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