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Ethernet stepper motor controller SMSD‑8.0LAN
1 /2Pages

Ethernet stepper motor controller SMSD‑8.0LAN

Ethernet stepper motor controller SMSD‑8.0LAN
1 /2Pages

Catalog excerpts

Ethernet stepper motor controller SMSD‑8.0LAN-1

SMSD-8.0LAN Stepper motor controller SMSD-8.0LAN SMSD-8.0LAN is a new-generation stepmotor controller with an advanced communication protocol. The most useful advantage of the controller - remote control and Ethernet connection and control of a stepper motor using a local network. Digital I/O of the controller make it easy to use the controller together with other electronics of a system. USB connection is also provided. The main parameters: • Max. current per phase: 8.0 Amp • Power supply: 12 48 VDC • Microstepping mode: 1, 1/2, 1/4,1/8, 1/16, 1/32, 1/64, 1/128 • Communication interfaces: Ethernet, USB The controller provides 5 different control modes: • Direct control mode - real-time control by commands; • Program mode - motion control according to one of 4 executing programs, which are stored in a controller's memory; • Analog speed control; • Analog position control; • STEP/DIR pulse position control. The controller provides two phases commutation modes - current and voltage: The voltage mode provides smooth motion at low speeds and accurate microstepping division. Another special feature of the voltage control mode - the controller can detect if the rotor is locked. The current mode provides better torque and higher speed. Dimensions: Tallinn Science Park Tehnopol, Phone: + 372 6559914, Maealuse st. 4, Tallinn 12618, Estonia e-mail: [email protected]

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Ethernet stepper motor controller SMSD‑8.0LAN-2

SMSD-8.0LAN Functions and possibilities of stepper motor controllers SMSD-8.0LAN: • Remote control through Ethernet; • Standalone motor control according to one of 4 independent executing program sequences, stored in the controller's memory; • Real time stepper motor control by commands forwarded from a computer via USB or through a local network Ethernet; • The controller keeps in memory up to 4 independent executing program sequences. Each one can be started in a standalone control mode or called via communication interface (Ethernet or USB); every program can be called and used as a subprogram...

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