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SAF7113 Datasheet(PDF) 44 Page - NXP Semiconductors |
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SAF7113 Datasheet(HTML) 44 Page - NXP Semiconductors |
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44 / 80 page ![]() 2000 May 08 44 Philips Semiconductors Product specification 9-bit video input processor SAF7113H Fig.30 Vertical timing diagram for 60 Hz [nominal input signal, VNL in normal mode (VNOI = 00), HPLL in VCR or fast mode (HTC = 01 or 11)]. HREF: selectable on RTS0 and/or RTS1 via I2C-bus bits RTSE03 to RTSE00 and/or RTSE13 to RTSE10 = 7H. ODD: selectable on RTS0 and/or RTS1 via I2C-bus bits RTSE03 to RTSE00 and/or RTSE13 to RTSE10 = AH. VS: selectable on RTS0 and/or RTS1 via I2C-bus bits RTSE03 to 00 and/or RTSE13 to RTSE10 = BH. V123: selectable on RTS0 and/or RTS1 via I2C-bus bits RTSE03 to RTSE00 and/or RTSE13 to RTSE10 = CH. VREF: selectable on RTS0 and/or RTS1 via I2C-bus bits RTSE03 to RTSE00 and/or RTSE13 to RTSE10 = EH. FID: selectable on RTS0 and/or RTS1 via I2C-bus bits RTSE03 to RTSE00 and/or RTSE13 to RTSE10 = FH. (1) Line numbers in parenthesis refer to ITU line counting. (2) VREF range short or long can be programmed via I2C-bus bit VRLN. The luminance peaking and the chrominance trap are bypassed during VREF = 0 if I2C-bus bit VBLB is set to logic 1. The chrominance delay line (chrominance-comb filter for NTSC, phase error correcting for PAL) is disabled during VREF = 0. (3) FID changing line number and polarity programmable via VSTA8 to VSTA0 and FIDP, see Table 52. (4) The inactive going edge of the V123-signal indicates whether the field is odd or even. If HREF is active during the falling edge of V123, the field is even. If HREF is inactive during the falling edge of V123, the field is odd. The specific position of the slope is dependent on the internal processing delay and may change a few clock cycles from version to version. handbook, full pagewidth RTS0/1 VS VRLN = 1(2) (b) 2nd field (a) 1st field input CVBS (4) (5) (6) (7) (8) (9) (10) (11) (20) (3) (2) (1) (525) (21) (22)(1) VRLN = 1(3) (2) VRLN = 0(3) (2) 1 2 34 56 7 8 17 525 524 523 522 18 19 (266) (267) (268) (269) (270) (271) (272) (273) (274) (283) (284) (265) (264) (263) (262) 263 264 265 266 267 268 269 270 271 280 281 262 261 260 259 (285)(1) 282 MHB337 520 × 2/LLC RTS0/1 ODD 81 × 2/LLC VRLN = 0(2) RST0/1 HREF RTS0/1 VREF RTS0/1 VREF RTS0/1 VREF RTS0/1 VREF RTS0/1 VS RTS0/1 HREF input CVBS RTS0/1 ODD RTS0/1 V123(4) RTS0/1 FID(3) RTS0/1 V123(4) RTS0/1 FID(3) |
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