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    參數(shù)資料
    型號: PIC16LC73A-04/SP
    廠商: Microchip Technology
    文件頁數(shù): 60/114頁
    文件大?。?/td> 0K
    描述: IC MCU OTP 4KX14 A/D PWM 28DIP
    產(chǎn)品培訓(xùn)模塊: Asynchronous Stimulus
    8-bit PIC® Microcontroller Portfolio
    標(biāo)準(zhǔn)包裝: 15
    系列: PIC® 16C
    核心處理器: PIC
    芯體尺寸: 8-位
    速度: 4MHz
    連通性: I²C,SPI,UART/USART
    外圍設(shè)備: 欠壓檢測/復(fù)位,POR,PWM,WDT
    輸入/輸出數(shù): 22
    程序存儲器容量: 7KB(4K x 14)
    程序存儲器類型: OTP
    RAM 容量: 192 x 8
    電壓 - 電源 (Vcc/Vdd): 2.5 V ~ 6 V
    數(shù)據(jù)轉(zhuǎn)換器: A/D 5x8b
    振蕩器型: 外部
    工作溫度: 0°C ~ 70°C
    封裝/外殼: 28-DIP(0.300",7.62mm)
    包裝: 管件
    1997 Microchip Technology Inc.
    DS30390E-page 5
    PIC16C7X
    1.0
    GENERAL DESCRIPTION
    The PIC16C7X is a family of low-cost, high-perfor-
    mance, CMOS, fully-static, 8-bit microcontrollers with
    integrated analog-to-digital (A/D) converters, in the
    PIC16CXX mid-range family.
    All PIC16/17 microcontrollers employ an advanced
    RISC architecture. The PIC16CXX microcontroller fam-
    ily has enhanced core features, eight-level deep stack,
    and multiple internal and external interrupt sources.
    The separate instruction and data buses of the Harvard
    architecture allow a 14-bit wide instruction word with
    the separate 8-bit wide data. The two stage instruction
    pipeline allows all instructions to execute in a single
    cycle, except for program branches which require two
    cycles. A total of 35 instructions (reduced instruction
    set) are available. Additionally, a large register set gives
    some of the architectural innovations used to achieve a
    very high performance.
    PIC16CXX microcontrollers typically achieve a 2:1
    code compression and a 4:1 speed improvement over
    other 8-bit microcontrollers in their class.
    The PIC16C72 has 128 bytes of RAM and 22 I/O pins.
    In addition several peripheral features are available
    including: three timer/counters, one Capture/Compare/
    PWM module and one serial port. The Synchronous
    Serial Port can be congured as either a 3-wire Serial
    Peripheral Interface (SPI) or the two-wire Inter-Inte-
    grated Circuit (I2C) bus. Also a 5-channel high-speed
    8-bit A/D is provided. The 8-bit resolution is ideally
    suited for applications requiring low-cost analog inter-
    face, e.g. thermostat control, pressure sensing, etc.
    The PIC16C73/73A devices have 192 bytes of RAM,
    while the PIC16C76 has 368 byes of RAM. Each device
    has 22 I/O pins. In addition, several peripheral features
    are available including: three timer/counters, two Cap-
    ture/Compare/PWM modules and two serial ports. The
    Synchronous Serial Port can be congured as either a
    3-wire Serial Peripheral Interface (SPI) or the two-wire
    Inter-Integrated Circuit (I2C) bus. The Universal Syn-
    chronous
    Asynchronous
    Receiver
    Transmitter
    (USART) is also known as the Serial Communications
    Interface or SCI. Also a 5-channel high-speed 8-bit A/
    D is provided.The 8-bit resolution is ideally suited for
    applications requiring low-cost analog interface, e.g.
    thermostat control, pressure sensing, etc.
    The PIC16C74/74A devices have 192 bytes of RAM,
    while the PIC16C77 has 368 bytes of RAM. Each
    device has 33 I/O pins. In addition several peripheral
    features are available including: three timer/counters,
    two Capture/Compare/PWM modules and two serial
    ports. The Synchronous Serial Port can be congured
    as either a 3-wire Serial Peripheral Interface (SPI) or
    the two-wire Inter-Integrated Circuit (I2C) bus. The Uni-
    versal Synchronous Asynchronous Receiver Transmit-
    ter
    (USART)
    is
    also
    known
    as
    the
    Serial
    Communications Interface or SCI. An 8-bit Parallel
    Slave Port is provided. Also an 8-channel high-speed
    8-bit A/D is provided. The 8-bit resolution is ideally
    suited for applications requiring low-cost analog inter-
    face, e.g. thermostat control, pressure sensing, etc.
    The PIC16C7X family has special features to reduce
    external components, thus reducing cost, enhancing
    system reliability and reducing power consumption.
    There are four oscillator options, of which the single pin
    RC oscillator provides a low-cost solution, the LP oscil-
    lator minimizes power consumption, XT is a standard
    crystal, and the HS is for High Speed crystals. The
    SLEEP (power-down) feature provides a power saving
    mode. The user can wake up the chip from SLEEP
    through several external and internal interrupts and
    resets.
    A highly reliable Watchdog Timer with its own on-chip
    RC oscillator provides protection against software lock-
    up.
    A UV erasable CERDIP packaged version is ideal for
    code development while the cost-effective One-Time-
    Programmable (OTP) version is suitable for production
    in any volume.
    The PIC16C7X family fits perfectly in applications rang-
    ing from security and remote sensors to appliance con-
    trol and automotive. The EPROM technology makes
    customization of application programs (transmitter
    codes, motor speeds, receiver frequencies, etc.)
    extremely fast and convenient. The small footprint
    packages make this microcontroller series perfect for
    all applications with space limitations. Low cost, low
    power, high performance, ease of use and I/O exibility
    make the PIC16C7X very versatile even in areas where
    no microcontroller use has been considered before
    (e.g. timer functions, serial communication, capture
    and compare, PWM functions and coprocessor appli-
    cations).
    1.1
    Family and Upward Compatibility
    Users familiar with the PIC16C5X microcontroller fam-
    ily will realize that this is an enhanced version of the
    PIC16C5X architecture. Please refer to Appendix A for
    a detailed list of enhancements. Code written for the
    PIC16C5X can be easily ported to the PIC16CXX fam-
    ily of devices (Appendix B).
    1.2
    Development Support
    PIC16C7X devices are supported by the complete line
    of Microchip Development tools.
    Please refer to Section 16.0 for more details about
    Microchip’s development tools.
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