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ST72734 数据表(PDF) 64 Page - STMicroelectronics |
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ST72734 数据表(HTML) 64 Page - STMicroelectronics |
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64 / 144 page ![]() ST72774/ST727754/ST72734 64/144 SYNC PROCESSOR (SYNC) (Cont’d) 4.4.7 Output Processing 4.4.7.1 Generating Free-Running Frequencies The free-running frequencies function is used to: – Drive the monitor when no or bad sync signals are received. – Stabilize the OSD screen when the monitor is unlocked. – Perform fast alignment for maintenance purpos- es. Note: When free-running mode is active, the analyzer and corrector modes must be disabled. – VCORDIS = 1, VEXT = 0 in CFGR and POLR registers for vertical output measurement – 2FHINH = 0 in CFGR register for horizontal low level measurment – VACQ, HACQ = 0, in CFGR register for ana- lyzer mode The Sync processor can generate any of the following output sync signals HSYNCO, VSYNCO, CLAMPOUT, BLANKOUT. To select the generation mode: – Program the horizontal period using the HGENR register. – Program the vertical period using the VGENR (8 bits) and CFGR (3 bits) registers (2047 scan lines per frame). Refer to Figure 44. – Configure the following bits: SYNOP = 0 HVGEN = 1 HACQ = 0 VACQ = 0 Horizontal Period PH = Horizontal period = ((HGENR+1)/4) µs Pulse width: 2 µs => HGENR min=8 Polarity: Positive HGENR range: [8..255] Vertical Period PV = Vertical period = (PH * V11bits) µs V11bits is a concatenation of VGENR and the Q'2 Q'1 Q'0 bits of the CFGR register. Refer to Figure 44. Pulse width: 4 * PH => min value= 8µs Polarity: Positive VGENR/CFGR range: [5..7FF] Table 17. Typical values for generated HSYNC signals Table 18. Typical values for generated VSYNC signals HGENR (hex value) H Period HFREQ Pulse Width Duty Cycle 13 5 µs 200 kHz 2 µs 40% 1F 8 µs 125 kHz 2 µs 25% 3F 16 µs 62.5 kHz 2 µs 12.5% 7F 32 µs 31.25 kHz 2 µs 6.2% FF 64 µs 15.6 kHz 2 µs 3.1% HGENR (hex value) H Period H Freq V11bits (hex value) V Period V Freq Pulse width 13 5 µs 200 kHz 7FF (2047) 10.2 ms 97.7 Hz 20 µs 13 5 µs 200 kHz 400 (1024) 5.1 ms 195 Hz 20 µs 1F 8 µs 125 kHz 7FF (2047) 16.3 ms 61 Hz 32 µs 1F 8 µs 125 kHz 400 (1024) 8.2 ms 122 Hz 32 µs 3F 16 µs 62.5 kHz 7FF (2047) 32.6 ms 30.6 Hz 64 µs 3F 16 µs 62.5 kHz 400 (1024) 16.4 ms 60.9 Hz 64 µs 7F 32 µs 31.25 kHz 7FF (2047) 65.5 ms 15 Hz 128 µs 7F 32 µs 31.25 kHz 400 (1024) 32.8 ms 30 Hz 128 µs |
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