Video Interface ICs

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LMH6572MQ
Texas Instruments
Analog Multiplexer Triple 2:1 16-Pin SSOP Rail
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PI3VST01UEX
DIODES
IC HPD SIGNAL GEN VGA 8-MSOP
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TS3V330DR
Rochester Electronics
TS3V330 QUAD-SPDT WIDE-BANDWIDTH
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ADV7390WBCPZ-RL
Analog Devices
10bit LFCSP-32-WQ SMD mount,glue mount 5mm*5mm*730μm
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PI3VDP3212ZLE
DIODES
2-Lane Display Port Rev 1.2 Compliant Switch
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MAX459CQH-D
Analog Devices
IC VIDEO CROSSPOINT SWIT 44PLCC
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AD9824KCPZ
Analog Devices
14bit LFCSP SMD mount 7mm*7mm*830μm
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TW8835-BA2-CRT
Renesas Electronics
IC VIDEO PROCESSOR 144TFBGA
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TW8809-NA2-CRT
Renesas Electronics
Video Decoder 8 ADC 10bit Automotive AEC-Q100 56-Pin QFN EP T/R
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TW8809AT-NA2-GR
Renesas Electronics
IC VIDEO CONVERTER 56QFN
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AK8817VQ
Asahi Kasei Microdevices
Video Encoder 1 DAC 9bit 48-Pin LQFP
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HD3SS212ZQET
Texas Instruments
Passive Switch 48-Pin BGA MICROSTAR JUNIOR T/R
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PI3HDMI521FBE
DIODES
2:1 HDMI 1.4 Source Side Switch With ARC and Fast Switching 48-Pin LQFP EP
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FSAV433BQX
Rochester Electronics
VIDEO MULTIPLEXER
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TDA19977AHV15C184:
NXP Semiconductors
IC HDMI RECEIVER 144HLQFP
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AD9822JRSZ
Analog Devices
14bit SSOP-28 SMD mount 10.2mm*5.3mm*1.75mm
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PI3WVR12612NEE
DIODES
IC VIDEO SWITCH DP/HDMI 50TFBGA
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PI3HDMI412-BAE
DIODES
IC INTERFACE SPECIALIZED 48TSSOP
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PI3V724ZLE
DIODES
7-Channel Video Mux/Demux
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PI3WVR12412ZHE
DIODES
Wide Voltage Range DP and HDMI Video Switch 500mW 42-Pin TQFN EP
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TW6802B-LA2-GR
Renesas Electronics
IC VIDEO DECODER 128QFP
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GS1575BCNTE3
SEMTECH
IC VIDEO RECLOCKER 64QFN
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Video Interface ICs

Video Interface IC (VIC) is a type of integrated circuit specifically designed to process and manage video signals for display devices such as televisions, monitors, and projectors. Here's a concise overview:

Definition:
A Video Interface IC is an electronic component that facilitates the conversion and transmission of video signals between different devices. It ensures compatibility and optimal performance by handling tasks like signal processing, synchronization, and color management.

Functions:
1. Signal Processing: VICs process analog or digital video signals, converting them into a format suitable for display.
2. Synchronization: They manage the timing of video signals to ensure proper display without artifacts or distortion.
3. Color Management: VICs handle color depth and accuracy, ensuring true-to-life color reproduction.
4. Scaling: They can upscale or downscale video resolutions to match the display's native resolution.
5. Interfacing: VICs provide compatibility with various video input/output standards, such as HDMI, DisplayPort, or VGA.

Applications:
- Consumer Electronics: Used in TVs, gaming consoles, and home theater systems.
- Professional Equipment: Employed in broadcast equipment, medical imaging devices, and industrial displays.
- Automotive: Integrated into infotainment systems and rearview cameras.
- Computer Peripherals: Found in monitors, graphics cards, and video capture devices.

Selection Criteria:
1. Compatibility: Ensure the VIC supports the necessary input/output standards for your application.
2. Resolution Support: Choose a VIC that can handle the desired video resolution and refresh rate.
3. Color Depth: Consider the VIC's ability to process high color depths for better image quality.
4. Latency: For real-time applications, select a VIC with low latency to minimize delay.
5. Power Consumption: Evaluate the power efficiency, especially for portable or energy-sensitive devices.
6. Integration: Some VICs offer additional features like audio processing or built-in memory, which can simplify system design.
7. Cost: Balance performance with budget constraints when selecting a VIC.

In summary, a Video Interface IC is a crucial component in the video signal chain, offering a range of functions to ensure high-quality video display across various applications. When selecting a VIC, it's important to consider compatibility, performance, and cost to meet the specific requirements of the system.
Please refer to the product rule book for details.