Product Overview
The DVP10PM00M (DVP10PM00M) is a high-speed, specialized Motion Controller from Delta’s DVP-PM series, designed for applications requiring complex multi-axis interpolation and synchronized movement. Unlike standard PLCs, the PM series is built with a dual-core architecture to handle high-level motion trajectories—such as 2-axis linear and circular interpolation—independently of the standard logic scan. This unit provides 10 integrated I/O points and is specifically engineered for high-precision machines including CNC controllers, gantry systems, digital shear cutters, and high-speed labeling equipment where motion synchronization is the primary requirement.
Technical Configuration
The DVP10PM00M operates as a professional-grade motion CPU that supports pulse-train output at speeds up to 1 MHz, providing compatibility with ultra-high resolution servo systems. Its internal hardware supports differential input and output, which significantly improves noise immunity in electrically noisy industrial environments. The controller features specialized motion instructions (G-code/M-code compatible functions) that allow for smooth path planning. It includes an integrated RS-232 and RS-485 port for communication and is powered by a robust "H Type" AC input power supply. The unit can also function as a standard PLC for logic tasks, while its dedicated motion registers handle real-time position, speed, and torque commands.
Technical Specifications
| Attribute |
Specification Details |
| Model |
DVP10PM00M |
| Brand |
DELTA |
| Series |
DVP-PM Series |
| Device Type |
General Purpose Motion Controller |
| Total I/O Points |
10 (High-Speed Specialized) |
| Input Power |
100 to 240 VAC |
| Pulse Output Speed |
Up to 1 MHz (Differential) |
| Motion Axes |
2-axis independent or interpolated |
| Interpolation |
Linear (2-axis), Circular (2-axis) |
| Program Capacity |
64k steps |
| Execution Speed |
0.13 $\mu s$ (Basic instruction) |
| Communication Ports |
RS-232, RS-485 |
| Shipping Weight |
3.0 kg |
Technical FAQs
What makes the DVP-PM series different from the DVP-EH3 series?
While the EH3 is a high-speed PLC with motion capabilities, the DVP10PM00M is a dedicated motion controller. The PM series supports higher pulse output frequencies (1 MHz vs 200 kHz) and specialized interpolation hardware. This allows for much smoother circular paths and the ability to execute complex G-code-like trajectories that a standard PLC would struggle to calculate in real-time.
Can I use the DVP10PM00M to control more than 2 axes?
The base unit handles 2 axes of high-speed interpolation directly. However, the DVP-PM series is expandable. You can add additional motion modules or use the communication ports to coordinate larger systems, though the primary high-speed differential outputs are dedicated to the main 2-axis control.
Does this unit support electronic cams (E-CAM)?
Yes, the DVP-PM series features robust E-CAM functionality. You can define custom slave profiles relative to a master axis (or an external encoder), which is ideal for rotary cutting, flying shears, and synchronized packaging applications.
Engineering & Installation Guide
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High-Speed Differential Wiring: To achieve the 1 MHz pulse frequency, you must use differential (Line Driver) wiring. This requires four wires per signal (Pulse+, Pulse-, Direction+, Direction-). Use shielded twisted-pair (STP) cables and ensure the shield is bonded to a clean earth ground to prevent signal degradation at high frequencies.
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Program Optimization: Utilize the specialized motion instructions in Delta's ISPSoft or WPLSoft. Because the motion execution is separated from the logic scan, ensure that your motion commands are triggered correctly within the logic to avoid "interruption" of the trajectory path.
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Cooling and Mounting: The DVP10PM00M is a high-performance CPU that generates more heat than a standard entry-level PLC. Mount the unit on a 35 mm DIN rail in a vertical orientation. Maintain at least 80 mm of clearance above and below the unit to ensure proper convective cooling for the internal processors.