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ADV7619KSVZ

ADV7619KSVZ

Analog Devices
The discrete HDMI receiver IC used on the evaluation board; consider the chip if you only need receiver functionality.

Overview

The ADV7619KSVZ is a single-chip HDMI 1.4a-compliant receiver IC from Analog Devices in a 128-TQFP exposed-pad package. It provides HDMI video and audio receive functionality and exposes control and audio interfaces for integration with host processors or video processors. The device is intended for designs that need only the receiver side of an HDMI link, and is the same receiver used on Analog Devices evaluation hardware.

Why Choose This Part

Choosing the ADV7619KSVZ gives you a dedicated, production-grade HDMI 1.4a receiver in a single package so you can avoid building discrete TMDS front-ends. It provides standard audio interfaces and a serial control interface for register configuration, simplifying integration with host processors or audio/video SoCs. The 128-TQFP exposed-pad package is suitable for automated assembly and thermal management in compact designs.

Applications

HDMI input for video systems
Add an HDMI 1.4a input to set-top boxes, media players, or video capture products.
Digital signage and kiosks
Receive HDMI content from media players or PCs for commercial displays and signage players.
Automotive and infotainment
Integrate an HDMI input for rear-seat entertainment or head-unit AV inputs.
Video processing and scalers
Use as the front-end receiver feeding an FPGA or video processor for scaling, overlay, or encoding.

Key Specifications

Function Receiver
Standards HDMI 1.4a, IEC 60958
Applications Video Display
Mounting Type Surface Mount
Package / Case 128-TQFP Exposed Pad
Voltage - Supply 3.14V ~ 3.46V
Control Interface I2S, Serial
Supplier Device Package 128-TQFP-EP (14x14)

Getting Started

Start with Analog Devices application notes and the ADV7619 evaluation board/reference design to see typical connections, register initialization sequences, and configuration examples. Use a known-good HDMI source and an HDMI cable for functional testing, and a host processor (or FPGA) to read/write the receiver's control registers over the serial control interface and to accept the receiver's video/audio outputs. A logic analyzer or I2C/SPI monitor can help during bring-up to verify register traffic.