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PCD3745A Datasheet(PDF) 7 Page - NXP Semiconductors |
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PCD3745A Datasheet(HTML) 7 Page - NXP Semiconductors |
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7 / 32 page ![]() 1999 Feb 02 7 Philips Semiconductors Product specification 8-bit microcontroller with 4.5 kbytes OTP memory and 32 kHz real-time clock PCD3745A 6 REAL-TIME CLOCK (RTC) The RTC consists of a 32 kHz crystal oscillator, a 32 kHz to 1 second, 1.5 second and 1 minute divider chain, an 8-bit Frequency Adjustment Register (FAR) and the Clock Control Register (CLCR). The complete real-time clock section is independent of the microcontroller status, even in Idle or Stop mode. 6.1 Oscillator The internal 32 kHz oscillator requires an external 32.768 kHz quartz crystal (a positive deviation up to +259 ppm is allowed by using frequency adjustment) and an external feedback resistor (4.7 M Ω) connected between the RTC1 and RTC2 pins. The oscillator is controlled by the RUN bit in the Clock Control Register. 6.2 Divider chain The divider chain operates with the 32 kHz oscillator output and divides this signal down to produce three different clocks with periods of 1 second, 1.5 second and 1 minute. Depending on the state of the ITS and SITS bits in the Clock Control Register, the falling edge of the 1 second, 1.5 second or 1 minute clock is used to set the Clock Interrupt Flag (CIF) in the Clock Control Register. Since the clock interrupt is used to let the microcontroller leave the Stop mode, it is wire ORed with the external interrupt (CE/T0) and has the same functionality, e.g. it must be enabled in the Clock Control Register (ECI = 1) and by execution of EN I. The clock interrupt will then be treated as an external interrupt Additionally, the divider chain generates a 16 kHz clock (RCO) that can be routed through port line P1.7/RCO, controlled by the ERCO bit in the Clock Control Register. 6.3 Frequency adjustment Frequency adjustment is used to extend the interrupt time by defining the number of 16 kHz clocks in the Frequency Adjustment Register that will be counted twice within the first 1 second or 1.5 second period after a minute interrupt. The DIV512 is reset if its contents is equal to FAR, this will extend the time of the next interrupt. This is done within the first 1 second or 1.5 seconds of every minute. If the second interrupt is used (ITS = 1 and SITS = 0), every 60th interval may be up to 15.3 ms longer than the others as a result of the frequency adjustment. If the 1.5 second interrupt is used (ITS = 1 and SITS = 1), the prolongation will affect every 40th interval. The adjusted Minute Interrupt Time (MIT) shows now a maximum deviation of 0.5 ppm. The frequency adjustment value of the real-time clock section is defined by the decimal value of the contents of the 8-bit Frequency Adjustment Register. It can be read or written. The significance of the individual bits is illustrated by the following equation: Table 7 shows the recommended correction factor FAR for all allowed real-time clock frequencies (FRCO). The value of CLCR and FAR at reset is 00H. Minute Interrupt Time (MIT) 60 2 14 FRCO ----------------- FAR 214 ------------ + × = |
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