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HT46C63 데이터시트(PDF) 13 Page - Holtek Semiconductor Inc |
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HT46C63 데이터시트(HTML) 13 Page - Holtek Semiconductor Inc |
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13 / 44 page ![]() HT46R63/HT46C63 Rev. 1.90 13 May 17, 2004 Bit No. Label Function 5 EIF1 External interrupt 1 request flag (1= active; 0= inactive) 6TF Timer/Event Counter overflow request flag (1= active; 0= inactive) 7 ¾ Unused bit, read as ²0² INTC1 Register 0 ETBI Controls the time base interrupt (1= enabled; 0= disabled) 1 EADI Controls the A/D converter interrupt (1= enabled; 0= disabled) 2 ERTI Controls the real time clock interrupt (1= enabled; 0= disabled) 3 ¾ Unused bit, read as ²0² 4 TBF Time base time-out interrupt 0 request flag (1= active; 0= inactive) 5 ADF End of A/D conversion interrupt request flag (1= active; 0= inactive) 6 RTF RTC time-out interrupt request flag (1= active; 0= inactive) 7 ¾ Unused bit, read as ²0² Oscillator Configuration There are four oscillator circuits implemented in the mi- cro-controller. Two of them are designed for system clocks, namely the external RC oscillator and the crystal oscillator, which are determined by options. The HALT mode stops the system oscillator and resists the external signal to con- serve power. Another one is a 32768Hz crystal oscilla- tor, which only provides use for real time clock. The other one is a built-in 12KHz RC oscillator, which is used for WDTOSC. If the system clock uses the external RC oscillator, an external resistor between OSC1 and VDD is required and the resistance should range from 24k W to 1MW. The system clock, divided by 4, is available on OSC2, which can be used to synchronize external logic. If the system clock uses the crystal oscillator, a crystal across OSC1 and OSC2 is needed to provide the feed- back and phase shift required for the oscillator, and no other external components are demanded. Instead of a crystal, the resonator can also be connected between OSC1 and OSC2 to get a frequency reference, but two external capacitors in OSC1 and OSC2 are required. If the RTCOSC is used, a crystal across OSC3 and OSC4 is needed to provide the feedback and phase shift required for the oscillator, and no other external components are demanded. Watchdog Timer - WDT The clock source of WDT (and LCD, RTC, Time Base ) is implemented by a dedicated crystal oscillator (32.768kHz: RTCOSC) or instruction clock (system fre- quency divided by 4: fSYS/4) or a dedicated RC oscillator (12KHz:WDTOSC) decided by options. This timer is de- signed to prevent a software malfunction or sequence from jumping to an unknown location with unpredictable C r y s t a l O s c i l l a t o r f o r s y s t e m c l o c k E x t e r n a l R C O s c i l l a t o r f o r s y s t e m c l o c k O S C 1 O S C 2 N M O S O p e n D r a i n O S C 2 f S Y S / 4 O S C 1 V D D C r y s t a l O s c i l l a t o r f o r R T C O S C O S C 4 O S C 3 3 2 7 6 8 H z X ' t a l System Oscillator f S Y S / 4 W D T t i m e - o u t R T C O S C M U X f S W D T O S C C L R W D T O p t i o n s O p t i o n s T i m e b a s e : f S / 2 1 2 ~ f S / 2 1 5 L C D f r e q u e n c y : f S / 2 2 ~ f S / 2 8 R T C : f S / 2 8 ~ f S / 2 1 5 R T C C . 2 ~ R T C C . 0 R E S 1 6 - B i t C o u n t e r D 1 5 - B i t C o u n t e r 4 t o 1 M U X 7 t o 1 M U X 8 t o 1 M U X Watchdog Timer |
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