Data Brief SiI9127A HDMI Receiver with Deep Color Outputs Data Brief Document # SiI-DB-1059-A03 SiI9127A HDMI Receiver with Deep Color Outputs Data Brief Silicon Image, Inc. September 2010 Copyright Notice Copyright (c) 2009-2010 Silicon Image, Inc. All rights reserved. These materials contain proprietary and confidential information (including trade secrets, copyright and other interests) of Silicon Image, Inc. You may not use these materials except only for your bona fide non-commercial evaluation of your potential purchase of products and/or services from Silicon Image or its affiliates, and/or only in connection with your purchase of products and/or services from Silicon Image or its affiliates, and only in accordance with the terms and conditions herein. You have no right to copy, modify, transfer, sublicense, publicly display, create derivative works of or distribute these materials, or otherwise make these materials available, in whole or in part, to any third party. Trademark Acknowledgment Silicon ImageTM, VastLaneTM, SteelVineTM, PinnaClearTM, SimplayTM, Simplay HDTM, SatalinkTM, InstaPortTM, and TMDSTM are trademarks or registered trademarks of Silicon Image, Inc. in the United States and other countries. HDMI(R), the HDMI logo and High-Definition Multimedia InterfaceTM are trademarks or registered trademarks of, and are used under license from, HDMI Licensing, LLC. x.v.ColorTM is a trademark of Sony Corporation. Export Controlled Document This document contains information subject to the Export Administration Regulations (EAR) and has a classification of EAR99 or is controlled for Anti-Terrorism (AT) purposes. Transfer of this information by any means to an EAR Country Group E: 1 or foreign national thereof (whether in the U.S. or abroad) may require an export license or other approval from the U.S. Department of Commerce. For more information, contact the Silicon Image Director of Global Trade Compliance. Further Information To request other materials, detailed hardware and software guides, and additional information, contact your local Silicon Image, Inc. sales office or visit the Silicon Image, Inc. web site at www.siliconimage.com. Information about obtaining licenses required for using HDMI and HDCP technologies is available from www.hdmi.org and www.digital-cp.com. (c) 2009-2010 Silicon Image, Inc. All rights reserved. ii (c) 2009-2010 Silicon Image, Inc. All rights reserved. SiI-DB-1059-A03 SiI9127A HDMI Receiver with Deep Color Outputs Data Brief . Inputs Introduction The SiI9127A HDMI Receiver with Deep Color Outputs is a 2-port receiver that allows DTVs that can display 10/12-bit color depth to provide the highest quality protected digital audio and video over a single cable. The SiI9127A receiver can receive Deep Color video up to 12-bit, 1080p at 60 Hz. Efficient color space conversion receives RGB or YCbCr video data and sends either standard-definition or high-definition RGB or YCbCr formats. The SiI9127A receiver supports the extended gamut YCC or xvYCC color space described in the IEC 61966-2-4 Specification, which supports approximately 1.8 times the number of colors as the RGB color space. The xvYCC color space also makes full use of the range provided by the standard 8-bit resolution per pixel format. The SiI9127A receiver is pre-programmed with Highbandwidth Digital Content Protection (HDCP) keys and contains an integrated HDCP decryption engine for receiving protected audio and video content. This set of keys helps reduce programming overhead, lowers manufacturing costs, and provides the highest level of security. An integrated Extended Display Identification Data (EDID) block stored in non-volatile memory (NVM) can be programmed at the time of manufacture using the local I2C bus. On-board RAM can also be loaded through the I2C bus with EDID data from the system microcontroller during initialization if the EDID content of the NVM is not used. The EDID is reflected on the two HDMI ports through the DDC bus. The device allows different EDID formats to be mixed in an application. Having the flexibility to provide EDID content from the sources described above or from external ROM can eliminate up to two EDID ROMs and save board space. Flexible power management provides extremely low standby power consumption. Standby power can be supplied from an HDMI 5 V signal or from a separate standby power pin. If the NVM stores the EDID, only the 5 V power from the source device is needed to read the EDID. * * * two HDMI/DVI-compatible ports the TMDSTM core runs at 25-225 MHz dynamic cable equalization automatically detects the equalization required for the incoming signal Digital Video Output * * * * * * xvYCC to extended RGB 36-bit RGB/YCbCr 4:4:4 16/20/24-bit YCbCr 4:2:2 8/10/12-bit YCbCr 4:2:2 (ITU BT.656) true 12-bit accurate output data using an internal 14-bit wide processing path drive strength is programmable from 2 mA to 14 mA Digital Audio Interface * * * * * sends and receives up to two channels of uncompressed digital audio at the rate of 192 kHz I2S output with one data signal for stereo formats S/PDIF output supports PCM, Dolby Digital, DTS digital audio transmission with a 32-192 kHz Fs sample rate intelligent audio mute capability avoids pops and noise with automatic soft mute and unmute IEC60958 or IEC61937 compatible Consumer Electronic Control * * * * Consumer Electronics Control (CEC) interface incorporates an HDMI CEC I/O an integrated CEC Programming Interface (CPI) relieves the burden of the microcontroller having to write low-level commands Automatic Feature Abort response for unsupported commands Automatic Message Retry on transmit Package * 14 mm x 14 mm 128-pin TQFP package with ePadTM Figure 1. Digital Television System Diagram SiI-DB-1059-A03 (c) 2009-2010 Silicon Image, Inc. All rights reserved. 1 SiI9127A HDMI Receiver with Deep Color Outputs Data Brief Silicon Image, Inc. System Applications The SiI9127A receiver is designed for digital televisions that require support for HDMI Deep Color. The device allows receipt of 10/12-bit color depth up to 1080p resolutions. A single receiver chip provides two HDMI input ports. The video output interfaces to a video processor and the audio output can interface directly to an audio DAC or an audio DSP for further processing as shown in Figure 1. Comparing SiI9127A with SiI9125, SiI9135A, SiI9223A and SiI9233A Table 1 summarizes the functional differences among the SiI9127A, SiI9125, SiI9135A, SiI9223A and the SiI9233A receivers. Table 1. Summary of New Features Feature SiI9125 SiI9127A SiI9135A SiI9223A SiI9233A 2 2 2 4 4 8/10/12-bit 8/10/12-bit 8/10/12-bit 8/10/12-bit 8/10/12-bit 2 2 2 4 4 225 MHz 225 MHz 225 MHz 225 MHz 225 MHz HDMI Input Connections TMDS Input Ports Color Depth DDC Input Ports Maximum TMDS Input Clock Video Output Digital Video Output Ports Maximum Output Pixel Clock Maximum Output Bus Width Audio Formats S/PDIF Output Ports I2S Output DSD Output High Bit Rate Audio Support Compressed DTS-HD and Dolby True-HD Maximum Audio Sample Rate (Fs) Video Processing Color Space Converter Pixel Clock Divider Digital Video Bus Mapping Other Features CEC EDID HDCP Repeater Support Interlaced Format Detection Pin Package 2 1 1 1 1 1 165 MHz. 36 165 MHz. 36 165 MHz. 36 165 MHz. 36 165 MHz. 36 1 2 channel 2 channel 1 2 channel NA 1 8 channel 6 channel 1 2 channel NA 1 8 channel 8 channel No No Yes No Yes 192 kHz 192 kHz 192 kHz 192 kHz 192 kHz / 4, / 2 swap Cb, Cr pins RGB to/from YCbCr xvYCC to RGB / 4, / 2 swap Cb, Cr pins RGB to/from YCbCr xvYCC to RGB / 4, / 2 swap Cb, Cr pins No No Yes Yes 144-pin TQFP ePad Yes NVRAM No Yes 144-pin TQFP ePad Yes NVRAM Yes Yes 144-pin TQFP ePad RGB to/from YCbCr xvYCC to RGB / 4, / 2 / 4, / 2 swap Cb, Cr pins swap Cb, Cr pins RGB to/from YCbCr No No No Yes 144-pin TQFP ePad Yes NVRAM No Yes 128-pin TQFP ePad RGB to/from YCbCr (c) 2009-2010 Silicon Image, Inc. All rights reserved. SiI-DB-1059-A03 SiI9127A HDMI Receiver with Deep Color Outputs Data Brief Silicon Image, Inc. Pin Diagram Figure 2 shows the SiI9127A pin assignments of the receiver. Pin names are generalized by type for this document. The list below the diagram describes the purpose of each type. The package is a 14 mm x 14 mm 128-pin TQFP with an ePad. Figure 2. Pin Diagram SiI-DB-1059-A03 (c) 2009-2010 Silicon Image, Inc. All rights reserved. 3 SiI9127A HDMI Receiver with Deep Color Outputs Data Brief Silicon Image, Inc. Package Information ePad Requirements The SiI9127A receiver is packaged in a 128-pin, 14 mm x 14 mm TQFP package with an ExposedPadTM (ePadTM) that is used for the electrical ground of the device and for improved thermal transfer characteristics. The ePad dimensions are 4.445 mm x 4.0604 mm 0.15 mm. Soldering the ePad to the ground plane of the PCB is required to meet package power dissipation requirements at full speed operation, and to correctly connect the chip circuitry to electrical ground. A clearance of at least 0.25 mm should be designed on the PCB between the edge of the ePad and the inner edges of the lead pads to avoid the possibility of electrical shorts. The thermal land area on the PCB may use thermal vias to improve heat removal from the package. These thermal vias also double as the ground connections of the chip and must attach internally in the PCB to the ground plane. An array of vias should be designed into the PCB beneath the package. For optimum thermal performance, the via diameter should be 12 mils to 13 mils (0.30 mm to 0.33 mm) and the via barrel should be plated with 1-ounce copper to plug the via. This design helps to avoid any solder wicking inside the via during the soldering process, which may result in voids in solder between the pad and the thermal land. If the copper plating does not plug the vias, the thermal vias can be tented with solder mask on the top surface of the PCB to avoid solder wicking inside the via during assembly. The solder mask diameter should be at least 4 mils (0.1 mm) larger than the via diameter. Package stand-off when mounting the device also needs to be considered. For a nominal stand-off of approximately 0.1 mm the stencil thickness of 5 mils to 8 mils should provide a good solder joint between the ePad and the thermal land. Figure 3 on the next page shows the package dimensions of the SiI9127A receiver. PCB Layout Guidelines Refer to Silicon Image application note PCB Layout Guidelines: Designing with Exposed Pads for basic PCB design guidelines when designing with thermally enhanced packages using the exposed pad. This application note is intended for use by PCB layout designers. 4 (c) 2009-2010 Silicon Image, Inc. All rights reserved. SiI-DB-1059-A03 SiI9127A HDMI Receiver with Deep Color Outputs Data Brief Silicon Image, Inc. Package Dimensions Figure 3 shows the layout and dimensions of the 128-pin TQFP package. Package drawings are not to scale. JEDEC Package Code MS-026-AFB Item Description Typ Max Item Description Typ Max A A1 A2 D E D1 E1 D2 E2 Thickness Stand-off Body thickness Footprint Footprint Body size Body size Lead Row Width Lead Row Width 1.10 0.10 1.00 1.20 0.15 1.05 b c e L L1 Lead width Lead thickness Lead pitch Lead foot length Lead length 0.16 -- 0.23 0.20 16.00 16.00 14.00 14.00 12.40 12.40 0.40 0.60 0.75 1.00 Dimensions are in millimeters. Overall thickness A = A1 + A2. Figure 3. 128-Pin TQFP Package Diagram SiI-DB-1059-A03 (c) 2009-2010 Silicon Image, Inc. All rights reserved. 5 SiI9127A HDMI Receiver with Deep Color Outputs Data Brief Silicon Image, Inc. Marking Specification Drawing is not to scale and pin count shown is representative. Refer to the specifics in Figure 3 on page 5. Figure 4. Marking Diagram Ordering Information Production Part Numbers: TMDS Input Clock Range Part Number 25-225 MHz SiI9127ACTU The universal package may be used in lead-free and ordinary process lines. 6 (c) 2009-2010 Silicon Image, Inc. All rights reserved. SiI-DB-1059-A03 SiI9127A HDMI Receiver with Deep Color Outputs Data Brief Silicon Image, Inc. Disclaimers These materials are provided on an "AS IS" basis. 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