6PPT30.0573-20B B & R Automation
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The B & R Automation 6PPT30.0573-20B is part of the 6PPT Power Touch Panels series and features a 5.7 inch analog resistive touchscreen with a display resolution of 640 by 480 pixels and a brightness level of 400 cd/m². It runs on an ARM Cortex-A8 processor with a clock frequency of 600 MHz, 256 MB system RAM, and 512 MB flash memory. The panel operates on a nominal voltage of 24 VDC and has a maximum power consumption of 7.66 watts.
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Product Description:
The 6PPT30.0573-20B is an operator panel in the 6PPT Power Touch Panels series from B&R Automation. It provides a human-machine interface for automated equipment, combining the display, touchscreen, processor, and 24 V power stage in a single enclosure. On the machine, it shows process data and accepts touch input, which helps reduce external buttons and wiring.
Visual performance is driven by a 5.7 in. TFT screen that renders at 640 × 480 pixels, allowing standard VGA graphics to be shown without scaling. The panel handles 262,144 display colors for detailed status icons and trend graphs, and a contrast ratio of 850:1 keeps those graphics legible in bright shop lighting. Luminance reaches 400 cd/m², enabling operators to read the screen under overhead fixtures without glare shields. Input is captured through analog resistive touch technology, which responds to finger or stylus contact even when gloves are worn. The housing measures 172 mm in width, 140 mm in height, and 47.8 mm in depth, giving the panel a small footprint for switchgear doors or pendants while still meeting the clearance required for cable bend radii.
Application logic and graphics are executed by an ARM Cortex-A8 processor clocked at 600 MHz. The system carries 256 MB of DDR-type RAM to buffer variables and screen objects, and the non-volatile program space is 512 MB of flash for firmware, recipes, and data logging. Electrical integration requires a nominal supply of 24 VDC; at that voltage, the panel draws up to 319 mA and its peak consumption is 7.66 W, so it can share a standard control-cabinet power bus without exceeding auxiliary-load budgets. These electronics sit behind the analog resistive front glass, so no moving parts are exposed, and the low thermal load supports fanless installation in sealed enclosures.