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1. GTS HDMI Intel® FPGA IP Quick Reference
2. HDMI Overview
3. Release Information
4. GTS HDMI Intel® FPGA IP Getting Started
5. GTS HDMI Intel® FPGA IP Hardware Design Examples
6. HDMI Source
7. HDMI Sink
8. Transceiver Handling (HDMI Wrapper = HDMI and Transceiver)
9. HDMI Parameters
10. HDMI Simulation Example
11. GTS HDMI Intel® FPGA IP User Guide Archives
12. Document Revision History for the GTS HDMI Intel® FPGA IP User Guide
6.1.1. Source Scrambler, TMDS/TERC4 Encoder
6.1.2. Source Video Resampler
6.1.3. Source Window of Opportunity Generator
6.1.4. Source Auxiliary Packet Encoder
6.1.5. Source Auxiliary Packet Generators
6.1.6. Source Auxiliary Data Path Multiplexers
6.1.7. Source Auxiliary Control Port
6.1.8. Source Audio Encoder
6.1.9. TX Core-PHY Interface
6.1.10. I2C Controller
7.1.1. Sink Word Alignment and Channel Deskew
7.1.2. Sink Descrambler, TMDS/TERC4 Decoder
7.1.3. Sink Auxiliary Decoder
7.1.4. Sink Auxiliary Packet Capture
7.1.5. Sink Video Resampler
7.1.6. Sink Auxiliary Data Port
7.1.7. Sink Audio Decoder
7.1.8. Status and Control Data Channel (SCDC) Interface
7.1.9. RX Core-PHY Interface
7.1.10. I2C Target
7.1.11. I2C and EDID RAM Blocks
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6.1.1. Source Scrambler, TMDS/TERC4 Encoder
The TMDS/TERC4 encoder implements 8-bit to 10-bit and 4-bit to 10-bit algorithms as defined in the HDMI 1.4b Specification Section 5.4. Each data channel, with exception of the clock channel, has its own encoder. You can configure the core to enable scrambling, as defined in the HDMI 2.0b Specification Section 6.1.2, before TMDS/TERC4 encoding.
The encoder processes symbol data at 1, 2, or 4 symbols per clock. When the encoder operates in 2 or 4 symbols per clock, it also produces the output in the form of two or four encoded symbols per clock.
The TMDS/TERC4 encoder also produces digital visual interface (DVI) signaling when you deassert the mode input signal. DVI signaling is identical to HDMI signaling, except for the absence of data and video islands and TERC4 auxiliary data.
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