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P83C366 Datenblatt(PDF) 39 Page - NXP Semiconductors |
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P83C366 Datenblatt(HTML) 39 Page - NXP Semiconductors |
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39 / 92 page ![]() 1999 Mar 10 39 Philips Semiconductors Product specification Microcontrollers for PAL/SECAM TV with OSD and VST P8xCx66 family For example, if the contents of VSTL = 000 0000, no additional pulses are generated; if the contents of VSTL = 111 1111, the number of additional pulses that are generated is 127. Therefore, up to 127 additional pulses can be added during a Tstd period. Additional pulses must be distributed equally in one Tstd period (pulse distribution procedure). Figure 25 shows some examples of OUT2. 15.2.4 THE TPWM OUTPUT If the contents of VSTH = 001 1101, and the contents of VSTL = 000 0010, then the TPWM output is as shown in Fig.26. The additional OUT2 pulses are generated in subperiods 32 and 96. Two extreme cases are worthy of further analysis: • VSTH = 000 0000, and VSTL = 000 0000. No coarse pulses will be generated and OUT1 is LOW for the whole Tstd period. No fine pulses will be generated and consequently TPWM is LOW for the whole Tstd period. • VSTH = 111 1111 and VSTL = 111 1111. This value of VSTH results in OUT1 being LOW for the first t0 period but will go HIGH for the remaining 127 × t0 periods in the Tsub cycle. This value of VSTL will generate 127 additional fine pulses (in every Tsub cycle except in Tsub0). These additional fine pulses fill the gaps in the OUT1 output (except in Tsub0). Consequently, the TPWM output will be LOW for the first t0 period (Tsub0) but will be HIGH for the remainder of the Tstd period. Table 39 Additional pulse distribution VSTL CONTENTS ADDITIONAL PULSE GENERATED IN SUBPERIOD Tsubn BINARY POSITION TOTAL NUMBER OF ADDITIONAL OUT2 PULSES 000 0000 −− 0 000 0001 64 100 0000 1 000 0010 32, 96 010 0000 2 000 0011 32, 64, 96 100 0000 010 0000 3 000 0100 16, 48, 80, 112 001 0000 4 000 0101 16, 48, 64, 80, 112 100 0000 001 0000 5 000 1000 8, 24, 40, 56, 72, 88, 104, 120 000 1000 8 001 0000 4, 12, 20, 28, 36, 44, 52, 60, ...116, 124 000 0100 16 010 0000 2, 6, 10, 14, 18, 22, 26, 30, ...122, 126 000 0010 32 100 0000 1, 3, 5, 7, 9, 11, 13, 15, ...125, 127 000 0001 64 111 1110 1, 2, 3, 4, ...62, 63, 65, 66, ...125, 126, 127 010 0000 001 0000 000 1000 000 0100 000 0010 000 0001 126 111 1111 1, 2, 3, 4, 5, 6, 7, ...125, 126, 127 100 0000 010 0000 001 0000 000 1000 000 0100 000 0010 000 0001 127 |
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