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HT56R656 数据表(PDF) 82 Page - Holtek Semiconductor Inc |
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HT56R656 数据表(HTML) 82 Page - Holtek Semiconductor Inc |
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82 / 108 page ![]() HT56R62/HT56R65 HT56R642/HT56R644/HT56R654/HT56R656 Rev. 1.00 82 July 20, 2009 Oscillator Various oscillator options offer the user a wide range of functions according to their various application require- ments. Five types of system clocks can be selected while various clock source options for the Watchdog Timer are provided for maximum flexibility. All oscillator options are selected through the configuration options. System Clock Configurations There are five methods of generating the system clock, two high oscillators, two low oscillators and an externally supplied clock. The two high oscillators are the external crystal/ceramic oscillator and the external RC network. The two low oscillators are the fully integrated 32K_INT oscillator and the external 32768Hz oscillator. Selecting whether the low or high oscillator is used as the system oscillator is implemented using the HLCLK bit in the CLKMOD register. The source clock for the high and low oscillators is chosen via configuration options. The fre- quency of the slow oscillator is also determined using the SLOWC0~SLOWC2 bits in the CLKMOD register. System Crystal/Ceramic Oscillator After selecting the external crystal configuration option, the simple connection of a crystal across OSC1 and OSC2, is normally all that is required to create the nec- essary phase shift and feedback for oscillation, without requiring external capacitors. However, for some crystal types and frequencies, to ensure oscillation, it may be necessary to add two small value capacitors, C1 and C2. Using a ceramic resonator will usually require two small value capacitors, C1 and C2, to be connected as shown for oscillation to occur. The values of C1 and C2 should be selected in consultation with the crystal or resonator manufacturer ¢s specification. In most applica- tions, resistor RP1 is not required, however for those ap- plications where the LVR function is not used, RP1 may be necessary to ensure the oscillator stops running when VDD falls below its operating range. The internal oscillator circuit contains a filter circuit to reduce the possibility of erratic operation due to noise on the oscil- lator pins. An additional configuration option must be setup to configure the device according to whether the oscillator frequency is high, defined as equal to or above 1MHz, or low, which is defined as below 1 MHz. More information regarding oscillator applications is lo- cated on the Holtek website. Crystal Oscillator C1 and C2 Values Crystal Frequency C1 C2 12MHz ¾¾ 8MHz ¾¾ 4MHz ¾¾ 1MHz ¾¾ 455kHz (see Note 2) 10pF 10pF Note: 1. C1 and C2 values are for guidance only. 2. XTAL mode configuration option: 455kHz. 3. RP1=5M W~10MW is recommended. Crystal Recommended Capacitor Values External System RC Oscillator After selecting the correct configuration option, using the external system RC oscillator requires that a resis- tor, with a value between 47k W and 1.5MW,iscon- nected between OSC1 and VDD, and a 470pF capacitor is connected to ground. Although this is a cost effective oscillator configuration, the oscillation frequency can vary with VDD, temperature and process variations and is therefore not suitable for applications where timing is critical or where accurate oscillator frequencies are re- quired. For the value of the external resistor ROSC refer to the Appendix section for typical RC Oscillator vs. Temperature and VDD characteristics graphics. Note that an internal capacitor together with the external resistor, ROSC, are the components which determine the frequency of the oscillator. The external capacitor shown on the diagram does not influence the frequency of oscillation. This external capacitor should be added to improve oscillator stability if the open-drain OSC2 out- put is utilised in the application circuit. The internal oscil- lator circuit contains a filter circuit to reduce the possibility of erratic operation due to noise on the oscil- lator pins. O S C 2 O S C 1 C 2 C 1 R P 1 Crystal/Ceramic Oscillator O S C 1 O S C 2 f S Y S / 4 N M O S O p e n D r a i n 4 7 0 p F V D D R O S C RC Oscillator |
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