Pulse motor controller equipped with MCX314A capable of outputting from 1PPS to a maximum of 4MPPS.
The "HT3030" is a pulse motor controller equipped with the Nova Electronics MCX314As, capable of controlling 4-axis pulse input servo motors and stepping motors with a single chip. In addition to independent positioning control and speed control for each axis, it allows for linear interpolation, circular interpolation, and bit pattern interpolation by selecting any 2 or 3 axes out of the 4 axes. Furthermore, since the MCX314As performs interpolation calculations in hardware, the CPU only needs to set parameters such as endpoint coordinates, arc center coordinates, and speed, and execute the interpolation drive command. 【Features】 ■ Equipped with Nova Electronics MCX314As ■ Constant speed, trapezoidal, and S-curve speed profiles ■ Position management function ■ Real-time monitoring function ■ Compare register *For more details, please download the PDF or feel free to contact us.
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【Specifications】 ■ Controller: MCX314As (Nova Electronics) with 4-axis control and interpolation function ■ Number of control axes ・ 2 axes (HT3030-P02) ・ 4 axes (HT3030-P04) ■ Output speed: 1PPS to 4MPPS ■ Output speed accuracy: ±0.1% or less (relative to set value) ■ S-curve acceleration/deceleration rate: 954PPS/SEC² to 31.25×10⁹PPS/SEC² ■ Acceleration/Deceleration: 125PPS/SEC to 500×10⁶PPS/SEC ■ Output pulse count: 0 to 268,435,455 ■ Speed curve: Constant speed, trapezoidal, parabolic S-curve *For more details, please download the PDF or feel free to contact us.
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Our company supports various facilities, including the wireless communication infrastructure essential for the spread of IoT, from both hardware and software perspectives. Regarding hardware, our experienced staff can provide appropriate proposals at the stages required by our customers, from product planning to circuit design, printed circuit board design and implementation, procurement of necessary components, and design and wiring of enclosures. In terms of software, we excel in programming microcontrollers and creating firmware that handles communication and control of devices.