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Operator Interface Display
QPI21100E2P
Spare Part Number
PNQPI-ABD-201, QPI-21100-E2P
Product Information:
The QPI21100E2P (QPI-21100-E2P) is an industrial human-machine interface (HMI) touchscreen device in GE's Fanuc QuickPanel series, used for monitoring and control operations in automated production lines. It typically serves as the operating interface for a PLC (Programmable Logic Controller), allowing operators to view equipment status and set parameters via the touchscreen.
This model is typically equipped with an approximately 8.9-inch (close to 9-inch) display using high-brightness EL (Electroluminescent) display technology, with a resolution generally of 640×400 pixels. This display method maintains high contrast even in bright light, making it suitable for industrial environments with complex lighting conditions, such as factory workshops.
In terms of structure and performance, the QPI21100E2P is designed for long-term industrial operation. The front panel typically meets NEMA 4X/IP65 protection standards, providing dust and water resistance, and supports a 120 VAC power input. The device typically has approximately 2 MB of internal Flash/EPROM storage for storing HMI screens and logic configurations.
In terms of communication and software, the device can connect to various PLCs (such as Modbus or GE systems) via serial port and uses QuickDesigner software for screen design and program download. Since this model is discontinued, it is currently mainly used for maintenance of older production lines, spare parts replacement, or equipment repair; in the field of industrial automation, it is a typical "legacy HMI" device.
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What are the foundational electro-optical characteristics embedded within the QPI21100E2P, and how do they define its HMI visualization paradigm?
A: The QPI21100E2P is typically designed as an 8.9-inch industrial HMI device featuring a high-intensity electroluminescent (EL) or monochrome display architecture. How does the QPI21100E2P leverage EL backlighting physics to achieve high contrast visibility under extreme ambient illumination conditions
What geometric and mechanical footprint constraints govern the panel integration design of the QPI21100E2P, and how are they standardized across QuickPanel EL platforms?
A: The QPI21100E2P conforms to a compact industrial enclosure with an approximate front dimension around 274 mm × 216 mm and a depth near 56–64 mm depending on revision. Which mechanical tolerance strategy within the QPI21100E2P ensures repeatable panel cutout alignment and gasket compression sealing integrity
How does the QPI21100E2P maintain signal integrity and system stability under industrial EMI/RFI stress conditions?
A: The QPI21100E2P is engineered with hardened industrial shielding and grounding topology. What electromagnetic suppression mechanisms within the QPI21100E2P architecture reduce susceptibility to high-frequency noise injection and transient disturbances
What electrical power architecture is implemented in the QPI21100E2P, and how does it support legacy industrial voltage domains?
A: The QPI21100E2P typically operates on a 100–120 VAC industrial supply at 50/60 Hz. How does its internal power conditioning circuitry of the QPI21100E2P stabilize voltage fluctuations and ensure deterministic startup behavior under brownout conditions
In what way does the QPI21100E2P optimize human-machine interaction latency through its resistive input layer design?
A: The QPI21100E2P generally employs a resistive touch sensing mechanism suited for glove-operable industrial environments. Which signal sampling and debounce filtering strategies within the QPI21100E2P minimize input jitter while preserving operator responsiveness
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Moore Disclaimer: Moore Automated's sales automation equipment and related solutions are intended for industrial automation and business operational efficiency improvement purposes only. Product information, technical parameters, and application cases are for reference only and do not constitute an absolute guarantee of performance for any specific industry, scenario, or final application. Actual equipment performance may vary depending on factors such as the usage environment, system integration method, and maintenance conditions. Users should confirm compatibility and safety based on professional technical assessments. Moore Automated assumes no liability for any direct or indirect losses caused by improper use, modification, or failure to operate according to specifications, to the extent permitted by law.