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UPD64AMC датащи(PDF) 28 Page - NEC |
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UPD64AMC датащи(HTML) 28 Page - NEC |
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28 / 64 page ![]() 28 µPD64A, 65 Data Sheet U14380EJ2V0DS00 7.1 Functions of POC Circuit The POC circuit has the following functions: • Generates an internal reset signal when VDD ≤ VPOC. • Cancels an internal reset signal when VDD > VPOC. Here, VDD: power supply voltage, VPOC: POC-detected voltage. Notes 1. In reality, there is the oscillation stabilization wait time until the circuit is switched to OPERATING mode. The oscillation stabilization wait time is about 252/fX to 700/fX (when about 70 to 190 µs; fX = 3.64 MHz). 2. For the POC circuit to generate an internal reset signal when the power supply voltage has fallen, it is necessary for the power supply voltage to be kept less than the VPOC for the period of 1 ms or more. Therefore, in reality, there is the time lag of up to 1 ms until the reset takes effect. 3. The POC-detected voltage (VPOC) varies between approximately 1.7 to 2.0 V; thus, the resetting may be canceled at a power supply voltage smaller than the assured range (VDD = 2.0 to 3.6 V). However, as long as the conditions for operating the POC circuit are met, the actual lowest operating power supply voltage becomes lower than the POC-detected voltage. Therefore, there is no malfunction occurring due to the shortage of power supply voltage. However, malfunction for such reasons as the clock not oscillating due to low power supply voltage may occur (refer to Cautions 3. in 7. POC CIRCUIT). 7.2 Oscillation Check at Low Supply Voltage A reliable resetting operation can be expected of the POC circuit if it satisfies the condition that the clock can oscillate even at low power supply voltage (the oscillation start voltage of the resonator being even lower than the POC-detected voltage). Whether this condition is being met or not can be checked by measuring the oscillation status on a product which actually contains a POC circuit, as follows. <1> Connect a storage oscilloscope to the XOUT pin so that the oscillation status can be measured. <2> Connect a power supply whose output voltage can be varied and then gradually raise the power supply voltage VDD from 0 V (making sure to avoid VDD > 3.6V). At first (during VDD < approx. 1.7 V), the XOUT pin is 0 V regardless of the VDD. However, at the point that VDD reaches the POC-detected voltage (VPOC = 1.85 V (TYP.)), the voltage of the XOUT pin jumps to about 0.5 VDD. Maintain this power supply voltage for a while to measure the waveform of the XOUT pin. If, by any chance, the oscillation start voltage of the resonator is lower than the POC-detected voltage, the growing oscillation of the XOUT pin can be confirmed within several ms after the VDD has reached the VPOC. VDD 3.6 V 2.0 V VPOC Approx. 1.7 V 0 V Internal reset signal Reset Operating ambient temperature TA = – 40 to + 85 °C Clock frequency fX = 2.4 to 8 MHz ←POC-detected voltage VPOC = 1.85 V (TYP.)Note 3 → t OPERATING mode ↑ Reset Note 2 ↑ Note 1 |
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