Hx8872-f Datasheet Pdf ((free)) «Genuine ◎»
Ultimate Guide to the HX8872-F Datasheet: Pinout, Specifications, and PDF Downloads
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Understanding the HX8872-F: Technical Datasheet Overview, Specifications, and Applications hx8872-f datasheet pdf
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Understanding the pinout is vital for integrating the HX8872-F into a PCB design. The IC generally consists of: VDDcap V sub cap D cap D end-sub VSScap V sub cap S cap S end-sub : Power supply for logic components. VGHcap V sub cap G cap H end-sub VGLcap V sub cap G cap L end-sub If you share with third parties, their policies apply
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: Pins dedicated to initializing parameters, configuring I2C or SPI register settings, and executing device resets ( RSTBcap R cap S cap T cap B Understanding the pinout is vital for integrating the
Practical evidence points to the HX8872-F operating in a environment, aligning with the official datasheet. From repair logs, key voltage rails found on a TCON board using an HX8872-F were as follows:
serves as the bridge between host graphic processors (such as an SoC or multimedia processor) and the display panel's column/row drivers. Its primary role is to decode incoming video data, manage system clock synchronization, and generate precise timing signals to refresh individual pixels. Specification Notes / Conditions Himax Technologies, Inc Primary display-related semiconductor provider Supported Resolutions HD / FHD (Up to 1366 x 768 / 1920 x 1080) Panel dependent variant optimization Logic Supply Voltage ( VDDcap V sub cap D cap D end-sub ) 2.3V to 3.6V (3.3V Typical) Standard digital logic operations Output Driver Voltage Range 10V to 40V High-voltage swing for Gate/Source driver operation Maximum Power Dissipation Peak power capability under full load Operating Frequency Up to 18 MHz – 24 MHz Clock source dependency Package Type TQFP-64 / QFN Package Surface-mount configuration Operating Temperature -20°C to +85°C (Standard) / -40°C to +105°C Automotive grade configurations Key Technical Features
): Supports 3.3V interfaces for wide compatibility with modern microcontrollers (MCUs) and FPGAs.