MAX4358ECE+TD
- Manufacturer's Part No.:MAX4358ECE+TD
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- Description:IC VIDEO CROSSPOINT SWIT 144TQFP
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- In Stock: 7686
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The MAX4358 is a 32 ✕ 16 highly integrated video crosspoint switch matrix with input and output buffers and On-Screen Display (OSD) Insertion. This device operates from dual ±3V to ±5V supplies or from a single +5V supply. Digital logic is supplied from an independent single +2.7V to +5.5V supply. Individual outputs can be switched between an input video signal source and OSD information through an internal, dedicated fast 2:1 mux (40ns switching times) located before the output buffer. All inputs and outputs are buffered, with all outputs able to drive standard 75Ω reverse-terminated video loads.
The switch matrix configuration and output buffer gain are programmed through an SPI/QSPI™-compatible, three-wire serial interface and initialized with a single update signal.
The unique serial interface operates in two modes facilitating both fast updates and initialization. On power-up, all outputs are initialized in the disabled state to avoid output conflicts in large-array configurations.Superior flexibility, high integration, and space-saving packaging make this nonblocking switch matrix ideal for routing video signals in security and video-on-demand systems.
The MAX4358 is available in a 144-pin TQFP packageand specified over an extended -40°C to +85°C temperature range.
The MAX4358 evaluation kit is available to speed designs.
Features
♦ 32 ✕ 16 Nonblocking Matrix with Buffered Inputs and Outputs
♦ Operates from a ±3V, ±5V, or +5V Supply
♦ Fast Switching (40ns) 2:1 OSD Insertion Mux
♦ Each Output Individually Addressable
♦ Individually Programmable Output Buffer Gain (AV = +1V/V or +2V/V)
♦ High-Impedance Output Disable for Wired-OR Connections
♦ 0.1dB Gain Flatness to 12MHz
♦ Minimum -62dB Crosstalk, -110dB Isolation at 6MHz
♦ 0.05%/0.1° Differential Gain/Differential Phase Error
♦ Low 195mW Power Consumption (0.38mW per point)Applications Security Systems Video Routing Video-On-Demand Systems
Functional Equivalent (FE) materials, including Fused Filament Fabrication (FFF) form, assembly, and functionally compatible substitute materials.
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