ABB PP835 3BSE042234R1 touch screen Panel 800.ABB PP835 3BSE042234R1 touch screen is built based on the design concept of high efficiency, stability and safety in industrial automation scenarios. It is designed with full consideration of various complex factors in industrial environments, such as dust, humidity, electromagnetic interference, etc., to ensure that it can work properly even under harsh conditions.
Specification:
Front panel, WxHxD:219x154x6 mm
Mounting depth:56mm (156mm including clearance)
Front panel seal:IP 66
Rear panel seal: IP 20
Weight:1.2 kg
Flash memory for application:12 MB (incl. fonts)
Power consumption at rated voltage:Normal: 0.4 A,Maximum: 0.9 A
Active area of display,W x H:131.5 x 98.6 mm
Power supply:+24V DC (20-30V DC). 3-pin jack connection block.
CE: The power supply must conform with the requirements
according to IEC 60950 and IEC 61558-2-4.
UL and cUL: The power supply must conform with the requirements for class II power supplies.
Ambient temperature:Vertical installation: 0 ° to+50 °C,Horizontal installation: 0 ° to+40 °C
Storage temperature: -20 °C to+70 °C
To learn more about this product click on the file below or download the file:
ABB PP835 3BSE042234R1 touch screen Panel 800.pdf
Touch screen related product parameters for reference:
Safety Features:
A variety of safety features are provided to protect industrial processes and equipment. For example, with the user rights management function, different levels of users can be granted different operating privileges. An ordinary operator may only be able to view the operating status of the equipment and make some basic parameter adjustments, while a senior manager or engineer may be able to carry out more complex system configuration and maintenance operations. In addition, secure communication protocols, such as the TLS/SSL protocols, may be supported for securing data in transit and preventing data leakage or tampering.
Reliability measures:
A series of reliability measures are taken from hardware to software. In terms of hardware, strict quality inspection and durability tests are conducted to ensure stable performance of the equipment during long-term use. For example, environmental simulation tests such as high temperature, high humidity and vibration are conducted to verify the reliability of the equipment under harsh conditions. On the software side, there are data backup and recovery functions to minimise the risk of data loss in the event of system failure or accidental power outage, etc., and to quickly restore the normal operation of the system.
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