ITU-R BT 799-4-2007 Interface for digital component video signals in 525-line and 625-line television systems operating at the 4 4 4 level of Recommendation ITU-R BT 601《接口在525线和62.pdf
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1、 Rec. ITU-R BT.799-4 1 RECOMMENDATION ITU-R BT.799-4*Interface for digital component video signals in 525-line and 625-line television systems operating at the 4:4:4 level of Recommendation ITU-R BT.601*(Question ITU-R 42/6) (1992-1994-1995-1998-2007) Scope This Recommendation covers the data struct
2、ure and dual link serial interface for 525/625-line digital signals as defined in Recommendation ITU-R BT.601-5. The ITU Radiocommunication Assembly, considering a) that there are clear advantages for television broadcasting organizations and programme producers in digital studio standards which hav
3、e the greatest number of significant parameter values common to 525-line and 625-line systems; b) that in implementing the above objectives, agreement was reached on the fundamental encoding parameters of digital television for studios in the form of Recommendation ITU-R BT.601; c) that the worldwid
4、e compatible digital approach has permitted the development of equipment with many common features, permitting operating economies and facilitating the international exchange of programmes; d) that the practical implementation of Recommendation ITU-R BT.601 or complex digital studio processes requir
5、es definition of details of an interface at the 4:4:4 level and the data streams traversing them; e) that such an interface should have a maximum of commonality between 525-line and 625-line versions, recognizing a) that in the practical implementation of Recommendation ITU-R BT.601 it is desirable
6、that a serial interface be defined, recommends 1 that where an interface for the 4:4:4 level is required for component-coded digital video signals conforming to Recommendation ITU-R BT.601 in television studios, the interface and the data streams that will traverse them should be in accordance with
7、Annex 1, defining the bit-serial implementation. *This Recommendation should be brought to the attention of ITU-T Study Group 9. *Recommendation ITU-R BT.601-6 - Studio encoding parameters of digital television for standard 4:3 and wide-screen 16:9 aspect ratios. 2 Rec. ITU-R BT.799-4 Annex 1 1 Intr
8、oduction Part 1 in this Annex describes the digital signal format of the interface. Part 2 in this Annex describes the particular characteristics of the bit-serial interface. The particular characteristics of the bit-parallel interface are to be found in Appendix 1 attached to this Annex for informa
9、tion. The interface for the 4:4:4 level is based on the use of the serial interface already developed for use at the 4:2:2 level and described in Recommendation ITU-R BT.656. Whereas at the 4:2:2 level a single interface carries a multiplex of a wideband luminance and two lower-bandwidth colour-diff
10、erence video signals, at the 4:4:4 level a pair of signal representations is used, each carrying a multiplex of two wideband video signals; this gives capacity for carrying the green, blue and red primary signals or, alternatively, the luminance and two colour-difference signals, together with a fou
11、rth wideband signal such as an associated key signal. In this case the signal is at the “4:4:4:4” level. The interfaces for the 4:4:4 level have been specified for 10-bit (see Note 1) data words according to Recommendation ITU-R BT.601. Only two devices will be connected together at one time through
12、 one interface. NOTE 1 Within this Recommendation, the contents of digital words are expressed in hexadecimal form of 10-bit representation. For example, the bit pattern 10010001 is expressed as 245h.Eight-bit words occupy the left most significant bits of a 10-bit word, i.e. bit 9 to bit 2, where b
13、it 9 is the most significant bit. PART 1 Digital signal format of the interface 1 Introduction The interface consists of two unidirectional interconnections between one device and another. The interconnections carry the data corresponding to the television signal and associated data. The two interco
14、nnections are referred to as: link A and link B. The data signals are carried in the form of binary information coded in ten-bit words. These signals are: the video signals themselves, digital blanking data, timing reference signals, ancillary data signals. These signals are time-multiplexed. Rec. I
15、TU-R BT.799-4 3 2 Video data signals 2.1 Coding characteristics The video data signals are derived by coding of the analogue video signal components in accordance with the 4:4:4 level of Recommendation ITU-R BT.601, with the field-blanking definition shown in Table 1. 2.2 Video data format The data
16、words in which the eight most significant bits are all set to 1 or are all set to 0 are reserved for data identification purposes and consequently only 254 of the possible 256 8-bit words or 1 016 of the possible 1 024 10-bit words may be used to express a signal value. TABLE 1 Field interval defini
17、tions 625 525 V-digital field blanking Field 1 Start (V = 1) Line 624 Line 1 Finish (V = 0) Line 23 Line 20 Field 2 Start (V = 1) Line 311 Line 264 Finish (V = 0) Line 336 Line 283 F-digital field identification Field 1 F = 0 Line 1 Line 4 Field 2 F = 1 Line 313 Line 266 NOTE 1 Signals F and V chang
18、e state synchronously with the end of active video timing reference code at the beginning of the digital line. NOTE 2 Definition of line numbers is to be found in Recommendation ITU-R BT.1700. Note that digital line number changes state prior to OHas described in Recommendation ITU-R BT.601. NOTE 3
19、Designers should be aware that the “1” to “0” transition of the V-bit may not necessarily occur on line 20 (283) in some equipment conforming to previous versions of this Recommendation for 525-line signals. 2.3 Multiplex structure The video data words are conveyed in two separate 27 Mword/s data-st
20、reams. The multiplex sequence is: for links carrying colour primaries link A: B0G0R0G1B2G2R2G3B4. link B: B1K0R1K1B3K2R3K3B5. 4 Rec. ITU-R BT.799-4 where R, G and B represent the red, green and blue signal data words, and K represents the key signal data words, if present. The first sample of the di
21、gital active line shall be B0for link A and B1for link B. The distribution of the red, green, blue and key signals between link A and link B is shown in Fig. 1a); for links carrying luminance and colour-difference signals link A: CB 0 Y0CR 0 Y1CB2 Y2CR2. link B: CB1 K0CR1 K1CB3 K2CR3. where Y, CBand
22、 CRrepresent the luminance and colour-difference signals respectively, and K represents the key signal data words, if present. The first sample of the digital active line shall be CB 0 for link A and CB1 for link B. The distribution of the luminance, colour-difference and key signals between link A
23、and link B is shown in Fig. 1b). 2.4 Interface signal structure Figure 2 shows the ways in which the video sample data is incorporated in the interface data stream. Sample identification in Fig. 2 is in accordance with the identification in Recommendation ITU-R BT.601. FIGURE 1 Link contents when us
24、ed for R, G, B, K and Y, CR, CB, K signals 2.5 Video timing reference signals (SAV, EAV) There are two timing reference signals, one at the beginning of each video data block (start of active video, SAV) and one at the end of each video data block (end of active video, EAV) as shown in Fig. 2. Each
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