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    • 參數(shù)資料
      型號(hào): DS1685Q-3+
      廠商: Maxim Integrated Products
      文件頁(yè)數(shù): 30/34頁(yè)
      文件大?。?/td> 0K
      描述: IC RTC 3V 64-BIT Y2KC 28-PLCC
      產(chǎn)品培訓(xùn)模塊: Lead (SnPb) Finish for COTS
      Obsolescence Mitigation Program
      標(biāo)準(zhǔn)包裝: 37
      類(lèi)型: 時(shí)鐘/日歷
      特點(diǎn): 警報(bào)器,NVSRAM,方波輸出,Y2K
      存儲(chǔ)容量: 242B
      時(shí)間格式: HH:MM:SS(12/24 小時(shí))
      數(shù)據(jù)格式: YY-MM-DD-dd
      接口: 并聯(lián)
      電源電壓: 2.7 V ~ 3.7 V
      電壓 - 電源,電池: 2.5 V ~ 3.7 V
      工作溫度: 0°C ~ 70°C
      安裝類(lèi)型: 表面貼裝
      封裝/外殼: 28-LCC(J 形引線(xiàn))
      供應(yīng)商設(shè)備封裝: 28-PLCC(11.51x11.51)
      包裝: 管件
      DS1685/DS1687 3V/5V Real-Time Clocks
      5 of 34
      PIN DESCRIPTIONS (continued)
      PIN
      NAME
      FUNCTION
      DS1685
      DS1687
      PDIP,
      SO,
      TSSOP
      PLCC
      EDIP
      18
      22
      18
      KS
      Kickstart Input, Active Low. When VCC is removed from the
      DS1685/DS1687, the system can be powered on in response to an active-
      low transition on the KS pin, as might be generated from a key closure.
      VBAUX must be present and the auxiliary-battery enable bit (ABE) and kick-
      start enable bit (KSE) must be set to 1 if the kickstart function is used, and
      the KS pin must be pulled up to the VBAUX supply. While VCC is applied, the
      KS
      pin can be used as an interrupt input. If not used, connect to VCC, or to
      VBAUX if VBAUX is used.
      19
      23
      19
      IRQ
      Interrupt-Request Output, Open Drain, Active Low. The IRQ pin is an
      active-low output of the DS1685/DS1687 that can be connected to the
      interrupt input of a processor. The IRQ output remains low as long as the
      status bit causing the interrupt is present and the corresponding interrupt-
      enable bit is set. To clear the IRQ pin, the application software must clear
      all the enabled flag bits contributing to IRQ’s active state asserted but
      without asserting CS latch addresses. However, no data transfer occurs.
      20
      24
      VBAT
      Battery Input for Any Standard 3V Lithium Cell or Other Energy Source.
      Battery voltage must be held between 2.5V and 3.7V for proper operation.
      VBAT must be grounded if not used. Diodes should not be placed between
      VBAT and the battery. See “Conditions of Acceptability” at
      21
      25
      21
      RCLR
      RAM Clear Input, Active Low. If enabled by software, taking RCLR low
      clears the 242 bytes of user RAM to FFh. When enabled, RCLR can be
      activated whether or not VCC is present. The RCLR function is designed to
      be used by a human interface (shorting to ground manually or by a switch)
      and not to be driven with external buffers. This pin is internally pulled up.
      Do not use an external pullup resistor on this pin.
      22
      26
      22
      VBAUX
      Auxiliary Battery Input. Required for kickstart and wake-up features. This
      input also supports clock/ calendar and user RAM if VBAT is at lower voltage
      or is not present. A standard +3V lithium cell or other energy source can be
      used. Battery voltage must be held between +2.5V and +3.7V for proper
      operation. If VBAUX is not going to be used it should be grounded, and
      Auxiliary-Battery Enable bit bank 1, register 4BH, should be written to 0.
      See “Conditions of Acceptability” at
      23
      27
      23
      SQW
      Square-Wave Output. The SQW pin provides a 32kHz square-wave output,
      tREC, after a power-up condition has been detected. This condition sets the
      following bits, enabling the 32kHz output; DV1 = 1, and E32K = 1. A square
      wave is output on this pin if either SQWE = 1 or E32K = 1. If E32K = 1, then
      32kHz is output regardless of the other control bits. If E32K = 0, then the
      output frequency is dependent on the control bits in register A. The SQW
      pin can output a signal from one of 13 taps provided by the 15 internal
      divider stages of the RTC. The frequency of the SQW pin can be changed
      by programming Register A as shown in Table 3. The SQW signal can be
      turned on and off using the SQWE bit in register B or the E32K bit in
      extended register 4Bh. A 32kHz SQW signal is output when the enable-
      32kHz (E32K) bit in extended register 4Bh is a logic 1 and VCC is above
      VPF. A 32kHz square wave is also available when VCC is less than VPF if
      E32K = 1, ABE = 1, and voltage is applied to the VBAUX pin.
      24
      28
      24
      VCC
      DC Power for Primary Power Supply. When VCC is applied within the
      normal limits, the device sis fully accessible and data can be written and
      read. When VCC is below VPF reads and writes are inhibited.
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