The safety monitoring board is the core component of the FSCS functional safety monitoring system. It complies with the following standards: GB16899-2011 and EN115-1:2017.
The fault acquisition board is used to collect fault signals from the safety chain and display them on the fault display board. The acquisition board can be divided into an upper acquisition board and a lower acquisition board. Cables from switches located closer to the top of the escalator can be connected to the upper acquisition board, while cables from switches located closer to the bottom of the escalator can be connected to the lower acquisition board. The upper and lower acquisition boards are interconnected via CAN communication, which maximizes cable savings. The ES.02/B provides 24 low-voltage signal inputs (24VDC), and its position—whether it’s the upper or lower board—is set using DIP switch SW1.
The fault acquisition board is used to collect fault points from the safety chain and display them on the fault display board. The acquisition boards can be divided into an upper acquisition board and a lower acquisition board. Cables from switches located closer to the upper part of the escalator can be connected to the upper acquisition board, while cables from switches located closer to the lower part of the escalator can be connected to the lower acquisition board. The upper and lower acquisition boards are interconnected via CAN communication, which maximizes cable savings. The ES.02/F can provide 20 channels of high-voltage signals (110VAC/220VAC) input, and its position—whether it’s the upper or lower board—is set using the DIP switch SW1.
The heavy-duty inverter series, ranging from 5.5 kW to 75 kW, fully covers the application requirements for escalators. High power density and smaller size—this new generation of escalator inverters boasts a 40% increase in power density compared to the previous STEP model. Slim design with a slender profile, perfectly suited to the space constraints of escalator machine rooms. Supports an operating temperature of up to 50ºC without derating, fully accounting for the harsh environmental conditions typical of escalator applications.
The organic integration of escalator control and drive systems Two 32-bit embedded microprocessors work together to handle escalator operational functions and motor drive control Redundant safety design: dual safety protection provided by both the control processor and the drive processor, ensuring the highest level of safety for escalator operation Interference resistance designed to meet and exceed the highest industrial standards The hardware utilizes a new-generation, sixth-generation module. Its junction temperature rating reaches up to 175°C, with low switching and conduction losses, significantly extending its service life The upper and lower safety chain fault detection board uses CAN communication, reducing cable usage; the fault display board features CAN communication as well
It can be connected to the motherboard via CAN communication, and in case of a fault, it can display the escalator fault code. Alternatively, it can directly acquire binary-coded signals from input points and display the fault code.
Escalator Control Cabinet MCP-ESHC-500
ESHC-500 is a commercial escalator control system. Key features: safety, high efficiency, and energy savings, among others. Primary application scenarios: shopping malls, supermarkets, pedestrian walkways, and more.
Cloud platform for the app, featuring data monitoring, recording, storage, accessory certification, EOCD, and intelligent debugging.