HIMA LM002-MAX 985020002 framework
HIMA LM002-MAX 985020002 Differential Line Driver Encoder
Very suitable for the use of single ended or differential line drive encoder signals, with three complementary inputs of 4.5-7.5 and 12-26VDC, and a frequency response of up to 1 MHz. Using three complementary open collector outputs, rated at 5-36VDC, it can be used in single ended configurations. Separate the input signal and output at 1800 volts through optical isolation. This module can convert the differential line driver encoder signal into an open collector single end signal, or change the encoder signal voltage to match the receiving electronic input. The FC-IOS-D high-speed optical isolation module is very suitable for signal input and output of encoders and servo driven encoders. This module has three differential line drive outputs rated at 5VDC and is optically isolated from 1800V. The FC-ISOD module converts the single ended encoder signal into a differential line driver signal, or the differential line driver encoder signal into a single ended signal. This module can also change the encoder signal voltage to match the received electronic input.
F6705 is an HIMA dark horse 8-channel analog output module
Distributed control system is a new generation of instrument control system based on microprocessors, adopting the design principles of decentralized control functions, centralized display operations, balancing separation and autonomy, and comprehensive coordination. Distributed Control System, abbreviated as DCS, can also be translated as “Distributed Control System” or “Distributed Computer Control System”.
It adopts the basic design concept of decentralized control, centralized operation and management, and adopts a multi-level hierarchical and cooperative autonomous structural form. Its main feature is its centralized management and decentralized control. DCS has been widely used in various industries such as power, metallurgy, and petrochemicals.
DCS usually adopts a hierarchical structure, with each level consisting of several subsystems, each subsystem achieving specific finite goals, forming a pyramid structure.
Reliability is the lifeblood of DCS development, and there are three main measures to ensure the high reliability of DCS: first, widely use high reliability hardware equipment and production processes; Secondly, redundancy technology is widely adopted; The third is to widely implement fault-tolerant technology, fault self diagnosis, and automatic processing technology in software design.
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